From efc6bb4c913f4d8b449fd7344aa769220828a3a5 Mon Sep 17 00:00:00 2001 From: fred Date: Thu, 9 Mar 2023 19:42:41 +0100 Subject: [PATCH] qrcode API extension --- API/QRCODE.sh | 111 +- install.sh | 2 +- templates/register.html | 8 +- tools/make_image_ipfs_index_carousel.sh | 28 +- www/AESBox/aes-ctr.js | 295 + www/AESBox/aes.js | 35 + www/AESBox/crypto-js-4.1.1/CONTRIBUTING.md | 28 - www/AESBox/crypto-js-4.1.1/LICENSE | 24 - www/AESBox/crypto-js-4.1.1/README.md | 261 - www/AESBox/crypto-js-4.1.1/aes.js | 234 - www/AESBox/crypto-js-4.1.1/bower.json | 39 - www/AESBox/crypto-js-4.1.1/cipher-core.js | 890 --- www/AESBox/crypto-js-4.1.1/core.js | 807 --- www/AESBox/crypto-js-4.1.1/crypto-js.js | 6191 -------------------- .../crypto-js-4.1.1/docs/QuickStartGuide.wiki | 470 -- www/AESBox/crypto-js-4.1.1/enc-base64.js | 136 - www/AESBox/crypto-js-4.1.1/enc-base64url.js | 140 - www/AESBox/crypto-js-4.1.1/enc-hex.js | 18 - www/AESBox/crypto-js-4.1.1/enc-latin1.js | 18 - www/AESBox/crypto-js-4.1.1/enc-utf16.js | 149 - www/AESBox/crypto-js-4.1.1/enc-utf8.js | 18 - www/AESBox/crypto-js-4.1.1/evpkdf.js | 134 - www/AESBox/crypto-js-4.1.1/format-hex.js | 66 - www/AESBox/crypto-js-4.1.1/format-openssl.js | 18 - www/AESBox/crypto-js-4.1.1/hmac-md5.js | 18 - www/AESBox/crypto-js-4.1.1/hmac-ripemd160.js | 18 - www/AESBox/crypto-js-4.1.1/hmac-sha1.js | 18 - www/AESBox/crypto-js-4.1.1/hmac-sha224.js | 18 - www/AESBox/crypto-js-4.1.1/hmac-sha256.js | 18 - www/AESBox/crypto-js-4.1.1/hmac-sha3.js | 18 - www/AESBox/crypto-js-4.1.1/hmac-sha384.js | 18 - www/AESBox/crypto-js-4.1.1/hmac-sha512.js | 18 - www/AESBox/crypto-js-4.1.1/hmac.js | 143 - www/AESBox/crypto-js-4.1.1/index.js | 18 - www/AESBox/crypto-js-4.1.1/lib-typedarrays.js | 76 - www/AESBox/crypto-js-4.1.1/md5.js | 268 - www/AESBox/crypto-js-4.1.1/mode-cfb.js | 80 - www/AESBox/crypto-js-4.1.1/mode-ctr-gladman.js | 116 - www/AESBox/crypto-js-4.1.1/mode-ctr.js | 58 - www/AESBox/crypto-js-4.1.1/mode-ecb.js | 40 - www/AESBox/crypto-js-4.1.1/mode-ofb.js | 54 - www/AESBox/crypto-js-4.1.1/package.json | 42 - www/AESBox/crypto-js-4.1.1/pad-ansix923.js | 49 - www/AESBox/crypto-js-4.1.1/pad-iso10126.js | 44 - www/AESBox/crypto-js-4.1.1/pad-iso97971.js | 40 - www/AESBox/crypto-js-4.1.1/pad-nopadding.js | 30 - www/AESBox/crypto-js-4.1.1/pad-pkcs7.js | 18 - www/AESBox/crypto-js-4.1.1/pad-zeropadding.js | 47 - www/AESBox/crypto-js-4.1.1/pbkdf2.js | 145 - www/AESBox/crypto-js-4.1.1/rabbit-legacy.js | 190 - www/AESBox/crypto-js-4.1.1/rabbit.js | 192 - www/AESBox/crypto-js-4.1.1/rc4.js | 139 - www/AESBox/crypto-js-4.1.1/ripemd160.js | 267 - www/AESBox/crypto-js-4.1.1/sha1.js | 150 - www/AESBox/crypto-js-4.1.1/sha224.js | 80 - www/AESBox/crypto-js-4.1.1/sha256.js | 199 - www/AESBox/crypto-js-4.1.1/sha3.js | 326 -- www/AESBox/crypto-js-4.1.1/sha384.js | 83 - www/AESBox/crypto-js-4.1.1/sha512.js | 326 -- www/AESBox/crypto-js-4.1.1/tripledes.js | 779 --- www/AESBox/crypto-js-4.1.1/x64-core.js | 304 - www/AESBox/index.html | 73 +- www/AESBox/openpgp.min.mjs | 17 + www/AESBox/openpgp.min.mjs.map | 1 + www/G1PalPay/favicon.ico | Bin 0 -> 13569 bytes www/G1PalPay/index.html | 119 +- www/Reveal/index.html | 26 +- 67 files changed, 633 insertions(+), 14170 deletions(-) create mode 100644 www/AESBox/aes-ctr.js create mode 100644 www/AESBox/aes.js delete mode 100644 www/AESBox/crypto-js-4.1.1/CONTRIBUTING.md delete mode 100644 www/AESBox/crypto-js-4.1.1/LICENSE delete mode 100644 www/AESBox/crypto-js-4.1.1/README.md delete mode 100644 www/AESBox/crypto-js-4.1.1/aes.js delete mode 100644 www/AESBox/crypto-js-4.1.1/bower.json delete mode 100644 www/AESBox/crypto-js-4.1.1/cipher-core.js delete mode 100644 www/AESBox/crypto-js-4.1.1/core.js delete mode 100644 www/AESBox/crypto-js-4.1.1/crypto-js.js delete mode 100644 www/AESBox/crypto-js-4.1.1/docs/QuickStartGuide.wiki delete mode 100644 www/AESBox/crypto-js-4.1.1/enc-base64.js delete mode 100644 www/AESBox/crypto-js-4.1.1/enc-base64url.js delete mode 100644 www/AESBox/crypto-js-4.1.1/enc-hex.js delete mode 100644 www/AESBox/crypto-js-4.1.1/enc-latin1.js delete mode 100644 www/AESBox/crypto-js-4.1.1/enc-utf16.js delete mode 100644 www/AESBox/crypto-js-4.1.1/enc-utf8.js delete mode 100644 www/AESBox/crypto-js-4.1.1/evpkdf.js delete mode 100644 www/AESBox/crypto-js-4.1.1/format-hex.js delete mode 100644 www/AESBox/crypto-js-4.1.1/format-openssl.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac-md5.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac-ripemd160.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac-sha1.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac-sha224.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac-sha256.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac-sha3.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac-sha384.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac-sha512.js delete mode 100644 www/AESBox/crypto-js-4.1.1/hmac.js delete mode 100644 www/AESBox/crypto-js-4.1.1/index.js delete mode 100644 www/AESBox/crypto-js-4.1.1/lib-typedarrays.js delete mode 100644 www/AESBox/crypto-js-4.1.1/md5.js delete mode 100644 www/AESBox/crypto-js-4.1.1/mode-cfb.js delete mode 100644 www/AESBox/crypto-js-4.1.1/mode-ctr-gladman.js delete mode 100644 www/AESBox/crypto-js-4.1.1/mode-ctr.js delete mode 100644 www/AESBox/crypto-js-4.1.1/mode-ecb.js delete mode 100644 www/AESBox/crypto-js-4.1.1/mode-ofb.js delete mode 100644 www/AESBox/crypto-js-4.1.1/package.json delete mode 100644 www/AESBox/crypto-js-4.1.1/pad-ansix923.js delete mode 100644 www/AESBox/crypto-js-4.1.1/pad-iso10126.js delete mode 100644 www/AESBox/crypto-js-4.1.1/pad-iso97971.js delete mode 100644 www/AESBox/crypto-js-4.1.1/pad-nopadding.js delete mode 100644 www/AESBox/crypto-js-4.1.1/pad-pkcs7.js delete mode 100644 www/AESBox/crypto-js-4.1.1/pad-zeropadding.js delete mode 100644 www/AESBox/crypto-js-4.1.1/pbkdf2.js delete mode 100644 www/AESBox/crypto-js-4.1.1/rabbit-legacy.js delete mode 100644 www/AESBox/crypto-js-4.1.1/rabbit.js delete mode 100644 www/AESBox/crypto-js-4.1.1/rc4.js delete mode 100644 www/AESBox/crypto-js-4.1.1/ripemd160.js delete mode 100644 www/AESBox/crypto-js-4.1.1/sha1.js delete mode 100644 www/AESBox/crypto-js-4.1.1/sha224.js delete mode 100644 www/AESBox/crypto-js-4.1.1/sha256.js delete mode 100644 www/AESBox/crypto-js-4.1.1/sha3.js delete mode 100644 www/AESBox/crypto-js-4.1.1/sha384.js delete mode 100644 www/AESBox/crypto-js-4.1.1/sha512.js delete mode 100644 www/AESBox/crypto-js-4.1.1/tripledes.js delete mode 100644 www/AESBox/crypto-js-4.1.1/x64-core.js create mode 100644 www/AESBox/openpgp.min.mjs create mode 100644 www/AESBox/openpgp.min.mjs.map create mode 100644 www/G1PalPay/favicon.ico diff --git a/API/QRCODE.sh b/API/QRCODE.sh index 50eb6cc..fdb181e 100755 --- a/API/QRCODE.sh +++ b/API/QRCODE.sh @@ -32,33 +32,120 @@ mkdir -p ~/.zen/tmp/${MOATS}/ if [[ ${QRCODE} == "station" ]]; then ## GENERATE PLAYER G1 TO ZEN ACCOUNTING ISTATION=$($MY_PATH/../tools/make_image_ipfs_index_carousel.sh | tail -n 1) + echo $ISTATION > ~/.zen/ISTATION + ## SEND TO ISTATION PAGE sed "s~_TWLINK_~${myIPFSGW}${ISTATION}/~g" ~/.zen/Astroport.ONE/templates/index.302 > ~/.zen/tmp/${MOATS}/index.redirect echo "url='"${myIPFSGW}${ISTATION}"'" >> ~/.zen/tmp/${MOATS}/index.redirect ( cat ~/.zen/tmp/${MOATS}/index.redirect | nc -l -p ${PORT} -q 1 > /dev/null 2>&1 ) & - exit 0 fi +## CHECK IF QRCODE is ASTRONAUTENS or G1PUB format +ASTROPATH=$(grep $QRCODE ~/.zen/game/players/*/.playerns | cut -d ':' -f 1 | rev | cut -d '/' -f 2- | rev 2>/dev/null) +if [[ $ASTROPATH != "" ]]; then + rm ~/.zen/game/players/.current + ln -s $ASTROPATH ~/.zen/game/players/.current + echo "LINKING $ASTROPATH to .current" + #### SELECT PARRAIN "G1PalPé" + + ## SEND TO TW PAGE + sed "s~_TWLINK_~${myIPFSGW}${QRCODE}/~g" ~/.zen/Astroport.ONE/templates/index.302 > ~/.zen/tmp/${MOATS}/index.redirect + echo "url='"${myIPFSGW}${QRCODE}"'" >> ~/.zen/tmp/${MOATS}/index.redirect + ( + cat ~/.zen/tmp/${MOATS}/index.redirect | nc -l -p ${PORT} -q 1 > /dev/null 2>&1 + ) & +fi + ## FILTRAGE NON G1 TO IPFS READY QRCODE -ASTRONAUTENS=$(~/.zen/Astroport.ONE/tools/g1_to_ipfs.py ${QRCODE}) - [[ ! ${ASTRONAUTENS} ]] \ +ASTROTOIPFS=$(~/.zen/Astroport.ONE/tools/g1_to_ipfs.py ${QRCODE}) + [[ ! ${ASTROTOIPFS} ]] \ && (echo "$HTTPCORS ERROR - ASTRONAUTENS !!" | nc -l -p ${PORT} -q 1 > /dev/null 2>&1 &) \ && exit 1 -echo ">>> ${QRCODE} g1_to_ipfs $ASTRONAUTENS" +echo ">>> ${QRCODE} g1_to_ipfs $ASTROTOIPFS" ## SEND MESSAGE TO CESIUM+ ACCOUNT (ME or .current) MYPLAYERKEY=$(grep ${QRCODE} ~/.zen/game/players/*/secret.dunikey | cut -d ':' -f 1) [[ ! $MYPLAYERKEY ]] && MYPLAYERKEY="$HOME/.zen/game/players/.current/secret.dunikey" -## COUCOU MSG -## CCHANGE + -$MY_PATH/../tools/jaklis/jaklis.py -n $myGCHANGE -k $MYPLAYERKEY send -d "${QRCODE}" -t "COUCOU" -m "ASTROPORT CONTACT" -## CESIUM + -$MY_PATH/../tools/jaklis/jaklis.py -n $myCESIUM -k $MYPLAYERKEY send -d "${QRCODE}" -t "COUCOU" -m "ASTROPORT CONTACT" +CURPLAYER=$(cat ~/.zen/game/players/.current/.player) +CURG1=$(cat ~/.zen/game/players/.current/.g1pub) +CURCOINS=$(~/.zen/Astroport.ONE/tools/timeout.sh -t 20 ${MY_PATH}/../tools/jaklis/jaklis.py balance -p ${CURG1}) +echo "CURRENT PLAYER : $CURCOINS G1" + +if [[ ${CURG1} == ${QRCODE} ]]; then + + echo "SAME PLAYER AS CURRENT" + +else + ## GET VISITOR G1 WANNET AMOUNT : VISITORCOINS + VISITORCOINS=$(~/.zen/Astroport.ONE/tools/timeout.sh -t 20 ${MY_PATH}/../tools/jaklis/jaklis.py balance -p ${QRCODE}) + if [[ $VISITORCOINS == "" || $VISITORCOINS == "null" ]]; then + PALPE=${RANDOM:0:2} + else + PALPE=0 + fi + + ## DOES CURRENT IS RICHER THAN 100 G1 + if [ $CURCOINS -gt 99 ]; then + + ## LE COMPTE VISITOR EST VIDE + echo "## PARRAIN $CURPLAYER SEND $PALPE TO ${QRCODE}" + ## G1 PAYEMENT + $MY_PATH/../tools/jaklis/jaklis.py -k ~/.zen/game/players/.current/secret.dunikey pay -a ${PALPE} -p ${QRCODE} -c "ASTRO:ZEN_${PALPE}" -m + ## MESSAGE CESIUM + + $MY_PATH/../tools/jaklis/jaklis.py -n $myCESIUM -k $MYPLAYERKEY send -d "${QRCODE}" -t "CADEAU" \ + -m "ASTRO:${CURPLAYER} VOUS ENVOI ${PALPE} JUNE. + GAGNEZ 100 JUNE EN PLUS ! + CREEZ ET GEOLOCALISEZ VOTRE COMPTE SUR https://gchange.fr \ + ENSUITE REVENEZ SCANNER VOTRE QRCODE" + + else + ## CURRENT PLAYER IS TOO POOR + PALPE=0 + echo "VISITEUR POSSEDE ${CURCOINS} G1" + + ## GET G1 WALLET HISTORY + $MY_PATH/../tools/jaklis/jaklis.py history -p ${QRCODE} -j > ~/.zen/tmp/${MOATS}/g1history.json + + ## SCAN CCHANGE + + curl -s ${myDATA}/user/profile/${QRCODE} > ~/.zen/tmp/${MOATS}/gchange.json + ## CHECK IF RELATED TO CESIUM + CPUB=$(cat ~/.zen/tmp/${MOATS}/gchange.json | jq -r '._source.pubkey' 2>/dev/null) + ## SCAN GPUB CESIUM + + curl -s ${myCESIUM}/user/profile/${QRCODE} > ~/.zen/tmp/${MOATS}/gplus.json 2>/dev/null + + ##### MEMBER ?? + if [[ $CPUB && $CPUB != 'null' ]]; then + + ## SCAN CPUB CESIUM + + curl -s ${myCESIUM}/user/profile/${CPUB} > ~/.zen/tmp/${MOATS}/cplus.json 2>/dev/null + + ## LINKED CESIUM WALLET + $MY_PATH/../tools/jaklis/jaklis.py -n $myCESIUM -k $MYPLAYERKEY send -d "${QRCODE}" -t "FORGERON" \ + -m "ASTROPORT. G1. FORGERON ET RESEAU DE CONFIANCE Ŋ1. \ + INSCRIVEZ VOTRE COMPTE GCHANGE SUR : https://astroport.copylaradio.com" + + + + else + + ## EXTRACT GPS ... CONTINUE THE GAME + + fi + # $MY_PATH/../tools/jaklis/jaklis.py -n $myGCHANGE -k $MYPLAYERKEY send -d "${QRCODE}" -t "COUCOU" -m "ASTRO ZEN CONTACT" + + fi + + echo "************************************************************" + echo "$VISITORCOINS (+ ${PALPE}) JUNE" + echo "************************************************************" + + +fi ################################################################################################### # THAT=$2 AND=$3 THIS=$4 APPNAME=$5 WHAT=$6 OBJ=$7 VAL=$8 ### amzqr "$myASTROPORT/?qrcode=$G1PUB&junesec=$PASsec&askpass=$HPass&tw=$ASTRONAUTENS" \ @@ -68,12 +155,6 @@ if [[ $AND == "junesec" ]]; then echo "♥BOX♥BOX♥BOX♥BOX♥BOX" echo "MAGIC WORLD ASTRONAUT & WISHES" - COINS=$(~/.zen/Astroport.ONE/tools/timeout.sh -t 20 ${MY_PATH}/../tools/jaklis/jaklis.py balance -p ${QRCODE}) - [[ $COINS == "" || $COINS == "null" ]] \ - && $MY_PATH/../tools/jaklis/jaklis.py -k ~/.zen/game/players/.current/secret.dunikey pay -a 50 -p ${QRCODE} -c "ASTRO:PASSPORT_ACTIVATION" -m - echo "************************************************************" - echo "$COINS (+ 50 JUNE IF EMPTY) " - echo "************************************************************" if [[ $APPNAME == "askpass" ]]; then echo ">> ASTRONAUT QRCODE $APPNAME" diff --git a/install.sh b/install.sh index 047e1ae..d597db3 100755 --- a/install.sh +++ b/install.sh @@ -67,7 +67,7 @@ echo "#############################################" echo "######### PATIENCE ######" echo "#############################################" # removed : sqlite -for i in qrencode pv ca-certificates basez jq bc file gawk yt-dlp ffmpeg dnsutils ntpdate v4l-utils espeak vlc mp3info musl-dev openssl* detox nmap httrack html2text ssmtp imagemagick; do +for i in qrencode pv gnupg ca-certificates basez jq bc file gawk yt-dlp ffmpeg dnsutils ntpdate v4l-utils espeak vlc mp3info musl-dev openssl* detox nmap httrack html2text ssmtp imagemagick; do if [ $(dpkg-query -W -f='${Status}' $i 2>/dev/null | grep -c "ok installed") -eq 0 ]; then echo ">>><<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<< Installation $i <<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<" sudo apt install -y $i diff --git a/templates/register.html b/templates/register.html index 4fa676a..088bd72 100644 --- a/templates/register.html +++ b/templates/register.html @@ -61,10 +61,10 @@ header {

-

Hébergement / LA ♥BOX /^3223

-

Téléportez vos DATA 👍 dans IPFS^3222

-

Activez le Voeu 👉G1CopierYoutube👈^3112

-

🔥.^999.^888.^777.^666.^555.^444.3^333.2^222.1^111 Partez 🚀^4321

+

Activez / LA ♥BOX /^3223

+

Copiez une chaine YOUTUBE 👍 dans IPFS^3222

+

Ajoutez des Voeux 👉OpenSource Planet👈^3112

+

🔥.^999.^888.^777.^666.^555.^444.3^333.2^222.1^111 Go 🚀^4321

diff --git a/tools/make_image_ipfs_index_carousel.sh b/tools/make_image_ipfs_index_carousel.sh index 015d7c7..2750e16 100755 --- a/tools/make_image_ipfs_index_carousel.sh +++ b/tools/make_image_ipfs_index_carousel.sh @@ -27,7 +27,7 @@ if [[ ! -d $img_dir ]]; then "https://g1sms.fr/g1barre/image.php?pubkey=${pub}&target=20000&title=${PLAYER}&node=g1.asycn.io&start_date=2020-01-01&display_pubkey=true&display_qrcode=true" echo "GOT ~/.zen/tmp/carousel/${pub}.png" ASTRONAUTENS=$(cat ~/.zen/game/players/${PLAYER}/.playerns) - echo "_REPLACE_" > ~/.zen/tmp/carousel/${pub}.insert + echo "_REPLACE_" > ~/.zen/tmp/carousel/${pub}.insert done img_dir="$HOME/.zen/tmp/carousel" @@ -35,6 +35,7 @@ fi #Set Path to HTML page html_file="/tmp/index.html" +core_file="/tmp/core.html" #Create HTML page echo " @@ -42,7 +43,10 @@ echo " Astroport ZEN Gallery : $myIP - + +" > $html_file + +echo " - -

Astroport $myHOST ZEN Gallery $(date)

    -
  • " > $html_file +
  • " > $core_file #Loop over images num=1 for i in "$img_dir"/*; do if [[ $i =~ \.(JPG|jpg|PNG|png|JPEG|jpeg|GIF|gif)$ ]]; then if [ $num -ne 1 ]; then - echo "
  • " >> $html_file + echo "
  • " >> $core_file fi num=$((num+1)) fi @@ -78,7 +80,7 @@ done echo "
-
" >> $html_file +
" >> $core_file #Loop over images num=1 @@ -102,11 +104,11 @@ if [[ $i =~ \.(JPG|jpg|PNG|png|JPEG|jpeg|GIF|gif)$ ]]; then if [ $num -eq 1 ]; then echo "
$ZLINK -
" >> $html_file +
" >> $core_file else echo "
$ZLINK -
" >> $html_file +
" >> $core_file fi num=$((num+1)) fi @@ -126,13 +128,15 @@ echo "
- +" >> $core_file - +cat $core_file >> $html_file +echo " " >> $html_file +coreipfs=$(ipfs add -q $core_file) htmlipfs=$(ipfs add -q $html_file) [[ $XDG_SESSION_TYPE == 'x11' ]] && xdg-open http://ipfs.localhost:8080/ipfs/$htmlipfs -echo /ipfs/$htmlipfs +echo /ipfs/$core_file exit 0 diff --git a/www/AESBox/aes-ctr.js b/www/AESBox/aes-ctr.js new file mode 100644 index 0000000..cf845d8 --- /dev/null +++ b/www/AESBox/aes-ctr.js @@ -0,0 +1,295 @@ +/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */ +/* AES counter-mode (CTR) implementation in JavaScript (c) Chris Veness 2005-2019 */ +/* MIT Licence */ +/* www.movable-type.co.uk/scripts/aes.html */ +/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */ + +/* global WorkerGlobalScope */ + + +import Aes from './aes.js'; + + +/** + * AesCtr: Counter-mode (CTR) wrapper for AES. + * + * This encrypts a Unicode string to produces a base64 ciphertext using 128/192/256-bit AES, + * and the converse to decrypt an encrypted ciphertext. + * + * See csrc.nist.gov/publications/detail/sp/800-38a/final + */ +class AesCtr extends Aes { + + /** + * Encrypt a text using AES encryption in Counter mode of operation. + * + * Unicode multi-byte character safe. + * + * @param {string} plaintext - Source text to be encrypted. + * @param {string} password - The password to use to generate a key for encryption. + * @param {number} nBits - Number of bits to be used in the key; 128 / 192 / 256. + * @returns {string} Encrypted text, base-64 encoded. + * + * @example + * const encr = AesCtr.encrypt('big secret', 'pāşšŵōřđ', 256); // 'lwGl66VVwVObKIr6of8HVqJr' + */ + static encrypt(plaintext, password, nBits) { + if (![ 128, 192, 256 ].includes(nBits)) throw new Error('Key size is not 128 / 192 / 256'); + plaintext = AesCtr.utf8Encode(String(plaintext)); + password = AesCtr.utf8Encode(String(password)); + + // use AES itself to encrypt password to get cipher key (using plain password as source for key + // expansion) to give us well encrypted key (in real use hashed password could be used for key) + const nBytes = nBits/8; // no bytes in key (16/24/32) + const pwBytes = new Array(nBytes); + for (let i=0; i>>8 & 0xff, + nonceRnd & 0xff, nonceRnd>>>8 & 0xff, + nonceSec & 0xff, nonceSec>>>8 & 0xff, nonceSec>>>16 & 0xff, nonceSec>>>24 & 0xff, + 0, 0, 0, 0, 0, 0, 0, 0, + ]; + + // and convert nonce to a string to go on the front of the ciphertext + const nonceStr = counterBlock.slice(0, 8).map(i => String.fromCharCode(i)).join(''); + + // convert (utf-8) plaintext to byte array + const plaintextBytes = plaintext.split('').map(ch => ch.charCodeAt(0)); + + // ------------ perform encryption ------------ + const ciphertextBytes = AesCtr.nistEncryption(plaintextBytes, key, counterBlock); + + // convert byte array to (utf-8) ciphertext string + const ciphertextUtf8 = ciphertextBytes.map(i => String.fromCharCode(i)).join(''); + + // base-64 encode ciphertext + const ciphertextB64 = AesCtr.base64Encode(nonceStr+ciphertextUtf8); + + return ciphertextB64; + } + + /** + * NIST SP 800-38A sets out recommendations for block cipher modes of operation in terms of byte + * operations. This implements the §6.5 Counter Mode (CTR). + * + * Oⱼ = CIPHₖ(Tⱼ) for j = 1, 2 … n + * Cⱼ = Pⱼ ⊕ Oⱼ for j = 1, 2 … n-1 + * C*ₙ = P* ⊕ MSBᵤ(Oₙ) final (partial?) block + * where CIPHₖ is the forward cipher function, O output blocks, P plaintext blocks, C + * ciphertext blocks + * + * @param {number[]} plaintext - Plaintext to be encrypted, as byte array. + * @param {number[]} key - Key to be used to encrypt plaintext. + * @param {number[]} counterBlock - Initial 16-byte CTR counter block (with nonce & 0 counter). + * @returns {number[]} Ciphertext as byte array. + * + * @private + */ + static nistEncryption(plaintext, key, counterBlock) { + const blockSize = 16; // block size fixed at 16 bytes / 128 bits (Nb=4) for AES + + // generate key schedule - an expansion of the key into distinct Key Rounds for each round + const keySchedule = Aes.keyExpansion(key); + + const blockCount = Math.ceil(plaintext.length/blockSize); + const ciphertext = new Array(plaintext.length); + + for (let b=0; b=8; i--) { + counterBlock[i-1] += counterBlock[i] >> 8; + counterBlock[i] &= 0xff; + } + + // if within web worker, announce progress every 1000 blocks (roughly every 50ms) + if (typeof WorkerGlobalScope != 'undefined' && self instanceof WorkerGlobalScope) { + if (b%1000 == 0) self.postMessage({ progress: b/blockCount }); + } + } + + return ciphertext; + } + + + /** + * Decrypt a text encrypted by AES in counter mode of operation. + * + * @param {string} ciphertext - Cipher text to be decrypted. + * @param {string} password - Password to use to generate a key for decryption. + * @param {number} nBits - Number of bits to be used in the key; 128 / 192 / 256. + * @returns {string} Decrypted text + * + * @example + * const decr = AesCtr.decrypt('lwGl66VVwVObKIr6of8HVqJr', 'pāşšŵōřđ', 256); // 'big secret' + */ + static decrypt(ciphertext, password, nBits) { + if (![ 128, 192, 256 ].includes(nBits)) throw new Error('Key size is not 128 / 192 / 256'); + ciphertext = AesCtr.base64Decode(String(ciphertext)); + password = AesCtr.utf8Encode(String(password)); + + // use AES to encrypt password (mirroring encrypt routine) + const nBytes = nBits/8; // no bytes in key + const pwBytes = new Array(nBytes); + for (let i=0; i String.fromCharCode(i)).join(''); + + // decode from UTF8 back to Unicode multi-byte chars + const plaintext = AesCtr.utf8Decode(plaintextUtf8); + + return plaintext; + } + + /** + * NIST SP 800-38A sets out recommendations for block cipher modes of operation in terms of byte + * operations. This implements the §6.5 Counter Mode (CTR). + * + * Oⱼ = CIPHₖ(Tⱼ) for j = 1, 2 … n + * Pⱼ = Cⱼ ⊕ Oⱼ for j = 1, 2 … n-1 + * P*ₙ = C* ⊕ MSBᵤ(Oₙ) final (partial?) block + * where CIPHₖ is the forward cipher function, O output blocks, C ciphertext blocks, P + * plaintext blocks + * + * @param {number[]} ciphertext - Ciphertext to be decrypted, as byte array. + * @param {number[]} key - Key to be used to decrypt ciphertext. + * @param {number[]} counterBlock - Initial 16-byte CTR counter block (with nonce & 0 counter). + * @returns {number[]} Plaintext as byte array. + * + * @private + */ + static nistDecryption(ciphertext, key, counterBlock) { + const blockSize = 16; // block size fixed at 16 bytes / 128 bits (Nb=4) for AES + + // generate key schedule - an expansion of the key into distinct Key Rounds for each round + const keySchedule = Aes.keyExpansion(key); + + const blockCount = Math.ceil(ciphertext.length/blockSize); + const plaintext = new Array(ciphertext.length); + + for (let b=0; b=8; i--) { + counterBlock[i-1] += counterBlock[i] >> 8; + counterBlock[i] &= 0xff; + } + + // if within web worker, announce progress every 1000 blocks (roughly every 50ms) + if (typeof WorkerGlobalScope != 'undefined' && self instanceof WorkerGlobalScope) { + if (b%1000 == 0) self.postMessage({ progress: b/blockCount }); + } + } + + return plaintext; + } + + + /* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */ + + + /** + * Encodes multi-byte string to utf8. + * + * Note utf8Encode is an identity function with 7-bit ascii strings, but not with 8-bit strings; + * utf8Encode('x') = 'x', but utf8Encode('ça') = 'ça', and utf8Encode('ça') = 'ça'. + */ + static utf8Encode(str) { + try { + return new TextEncoder().encode(str, 'utf-8').reduce((prev, curr) => prev + String.fromCharCode(curr), ''); + } catch (e) { // no TextEncoder available? + return unescape(encodeURIComponent(str)); // monsur.hossa.in/2012/07/20/utf-8-in-javascript.html + } + } + + /** + * Decodes utf8 string to multi-byte. + */ + static utf8Decode(str) { + try { + return new TextEncoder().decode(str, 'utf-8').reduce((prev, curr) => prev + String.fromCharCode(curr), ''); + } catch (e) { // no TextEncoder available? + return decodeURIComponent(escape(str)); // monsur.hossa.in/2012/07/20/utf-8-in-javascript.html + } + } + + /* + * Encodes string as base-64. + * + * - developer.mozilla.org/en-US/docs/Web/API/window.btoa, nodejs.org/api/buffer.html + * - note: btoa & Buffer/binary work on single-byte Unicode (C0/C1), so ok for utf8 strings, not for general Unicode... + * - note: if btoa()/atob() are not available (eg IE9-), try github.com/davidchambers/Base64.js + */ + static base64Encode(str) { + if (typeof btoa != 'undefined') return btoa(str); // browser + if (typeof Buffer != 'undefined') return new Buffer(str, 'binary').toString('base64'); // Node.js + throw new Error('No Base64 Encode'); + } + + /* + * Decodes base-64 encoded string. + */ + static base64Decode(str) { + if (typeof atob != 'undefined') return atob(str); // browser + if (typeof Buffer != 'undefined') return new Buffer(str, 'base64').toString('binary'); // Node.js + throw new Error('No Base64 Decode'); + } + +} + + +/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */ + +export default AesCtr; diff --git a/www/AESBox/aes.js b/www/AESBox/aes.js new file mode 100644 index 0000000..827503c --- /dev/null +++ b/www/AESBox/aes.js @@ -0,0 +1,35 @@ +/* +CryptoJS v3.1.2 +code.google.com/p/crypto-js +(c) 2009-2013 by Jeff Mott. All rights reserved. +code.google.com/p/crypto-js/wiki/License +*/ +var CryptoJS=CryptoJS||function(u,p){var d={},l=d.lib={},s=function(){},t=l.Base={extend:function(a){s.prototype=this;var c=new s;a&&c.mixIn(a);c.hasOwnProperty("init")||(c.init=function(){c.$super.init.apply(this,arguments)});c.init.prototype=c;c.$super=this;return c},create:function(){var a=this.extend();a.init.apply(a,arguments);return a},init:function(){},mixIn:function(a){for(var c in a)a.hasOwnProperty(c)&&(this[c]=a[c]);a.hasOwnProperty("toString")&&(this.toString=a.toString)},clone:function(){return this.init.prototype.extend(this)}}, +r=l.WordArray=t.extend({init:function(a,c){a=this.words=a||[];this.sigBytes=c!=p?c:4*a.length},toString:function(a){return(a||v).stringify(this)},concat:function(a){var c=this.words,e=a.words,j=this.sigBytes;a=a.sigBytes;this.clamp();if(j%4)for(var k=0;k>>2]|=(e[k>>>2]>>>24-8*(k%4)&255)<<24-8*((j+k)%4);else if(65535>>2]=e[k>>>2];else c.push.apply(c,e);this.sigBytes+=a;return this},clamp:function(){var a=this.words,c=this.sigBytes;a[c>>>2]&=4294967295<< +32-8*(c%4);a.length=u.ceil(c/4)},clone:function(){var a=t.clone.call(this);a.words=this.words.slice(0);return a},random:function(a){for(var c=[],e=0;e>>2]>>>24-8*(j%4)&255;e.push((k>>>4).toString(16));e.push((k&15).toString(16))}return e.join("")},parse:function(a){for(var c=a.length,e=[],j=0;j>>3]|=parseInt(a.substr(j, +2),16)<<24-4*(j%8);return new r.init(e,c/2)}},b=w.Latin1={stringify:function(a){var c=a.words;a=a.sigBytes;for(var e=[],j=0;j>>2]>>>24-8*(j%4)&255));return e.join("")},parse:function(a){for(var c=a.length,e=[],j=0;j>>2]|=(a.charCodeAt(j)&255)<<24-8*(j%4);return new r.init(e,c)}},x=w.Utf8={stringify:function(a){try{return decodeURIComponent(escape(b.stringify(a)))}catch(c){throw Error("Malformed UTF-8 data");}},parse:function(a){return b.parse(unescape(encodeURIComponent(a)))}}, +q=l.BufferedBlockAlgorithm=t.extend({reset:function(){this._data=new r.init;this._nDataBytes=0},_append:function(a){"string"==typeof a&&(a=x.parse(a));this._data.concat(a);this._nDataBytes+=a.sigBytes},_process:function(a){var c=this._data,e=c.words,j=c.sigBytes,k=this.blockSize,b=j/(4*k),b=a?u.ceil(b):u.max((b|0)-this._minBufferSize,0);a=b*k;j=u.min(4*a,j);if(a){for(var q=0;q>>2]>>>24-8*(r%4)&255)<<16|(l[r+1>>>2]>>>24-8*((r+1)%4)&255)<<8|l[r+2>>>2]>>>24-8*((r+2)%4)&255,v=0;4>v&&r+0.75*v>>6*(3-v)&63));if(l=t.charAt(64))for(;d.length%4;)d.push(l);return d.join("")},parse:function(d){var l=d.length,s=this._map,t=s.charAt(64);t&&(t=d.indexOf(t),-1!=t&&(l=t));for(var t=[],r=0,w=0;w< +l;w++)if(w%4){var v=s.indexOf(d.charAt(w-1))<<2*(w%4),b=s.indexOf(d.charAt(w))>>>6-2*(w%4);t[r>>>2]|=(v|b)<<24-8*(r%4);r++}return p.create(t,r)},_map:"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/="}})(); 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+(function(){var u=CryptoJS,p=u.lib,d=p.Base,l=p.WordArray,p=u.algo,s=p.EvpKDF=d.extend({cfg:d.extend({keySize:4,hasher:p.MD5,iterations:1}),init:function(d){this.cfg=this.cfg.extend(d)},compute:function(d,r){for(var p=this.cfg,s=p.hasher.create(),b=l.create(),u=b.words,q=p.keySize,p=p.iterations;u.length>>2]&255}};d.BlockCipher=v.extend({cfg:v.cfg.extend({mode:b,padding:q}),reset:function(){v.reset.call(this);var a=this.cfg,b=a.iv,a=a.mode;if(this._xformMode==this._ENC_XFORM_MODE)var c=a.createEncryptor;else c=a.createDecryptor,this._minBufferSize=1;this._mode=c.call(a, +this,b&&b.words)},_doProcessBlock:function(a,b){this._mode.processBlock(a,b)},_doFinalize:function(){var a=this.cfg.padding;if(this._xformMode==this._ENC_XFORM_MODE){a.pad(this._data,this.blockSize);var b=this._process(!0)}else b=this._process(!0),a.unpad(b);return b},blockSize:4});var n=d.CipherParams=l.extend({init:function(a){this.mixIn(a)},toString:function(a){return(a||this.formatter).stringify(this)}}),b=(p.format={}).OpenSSL={stringify:function(a){var b=a.ciphertext;a=a.salt;return(a?s.create([1398893684, +1701076831]).concat(a).concat(b):b).toString(r)},parse:function(a){a=r.parse(a);var b=a.words;if(1398893684==b[0]&&1701076831==b[1]){var c=s.create(b.slice(2,4));b.splice(0,4);a.sigBytes-=16}return n.create({ciphertext:a,salt:c})}},a=d.SerializableCipher=l.extend({cfg:l.extend({format:b}),encrypt:function(a,b,c,d){d=this.cfg.extend(d);var l=a.createEncryptor(c,d);b=l.finalize(b);l=l.cfg;return n.create({ciphertext:b,key:c,iv:l.iv,algorithm:a,mode:l.mode,padding:l.padding,blockSize:a.blockSize,formatter:d.format})}, +decrypt:function(a,b,c,d){d=this.cfg.extend(d);b=this._parse(b,d.format);return a.createDecryptor(c,d).finalize(b.ciphertext)},_parse:function(a,b){return"string"==typeof a?b.parse(a,this):a}}),p=(p.kdf={}).OpenSSL={execute:function(a,b,c,d){d||(d=s.random(8));a=w.create({keySize:b+c}).compute(a,d);c=s.create(a.words.slice(b),4*c);a.sigBytes=4*b;return n.create({key:a,iv:c,salt:d})}},c=d.PasswordBasedCipher=a.extend({cfg:a.cfg.extend({kdf:p}),encrypt:function(b,c,d,l){l=this.cfg.extend(l);d=l.kdf.execute(d, +b.keySize,b.ivSize);l.iv=d.iv;b=a.encrypt.call(this,b,c,d.key,l);b.mixIn(d);return b},decrypt:function(b,c,d,l){l=this.cfg.extend(l);c=this._parse(c,l.format);d=l.kdf.execute(d,b.keySize,b.ivSize,c.salt);l.iv=d.iv;return a.decrypt.call(this,b,c,d.key,l)}})}(); +(function(){for(var u=CryptoJS,p=u.lib.BlockCipher,d=u.algo,l=[],s=[],t=[],r=[],w=[],v=[],b=[],x=[],q=[],n=[],a=[],c=0;256>c;c++)a[c]=128>c?c<<1:c<<1^283;for(var e=0,j=0,c=0;256>c;c++){var k=j^j<<1^j<<2^j<<3^j<<4,k=k>>>8^k&255^99;l[e]=k;s[k]=e;var z=a[e],F=a[z],G=a[F],y=257*a[k]^16843008*k;t[e]=y<<24|y>>>8;r[e]=y<<16|y>>>16;w[e]=y<<8|y>>>24;v[e]=y;y=16843009*G^65537*F^257*z^16843008*e;b[k]=y<<24|y>>>8;x[k]=y<<16|y>>>16;q[k]=y<<8|y>>>24;n[k]=y;e?(e=z^a[a[a[G^z]]],j^=a[a[j]]):e=j=1}var H=[0,1,2,4,8, +16,32,64,128,27,54],d=d.AES=p.extend({_doReset:function(){for(var a=this._key,c=a.words,d=a.sigBytes/4,a=4*((this._nRounds=d+6)+1),e=this._keySchedule=[],j=0;j>>24]<<24|l[k>>>16&255]<<16|l[k>>>8&255]<<8|l[k&255]):(k=k<<8|k>>>24,k=l[k>>>24]<<24|l[k>>>16&255]<<16|l[k>>>8&255]<<8|l[k&255],k^=H[j/d|0]<<24);e[j]=e[j-d]^k}c=this._invKeySchedule=[];for(d=0;dd||4>=j?k:b[l[k>>>24]]^x[l[k>>>16&255]]^q[l[k>>> +8&255]]^n[l[k&255]]},encryptBlock:function(a,b){this._doCryptBlock(a,b,this._keySchedule,t,r,w,v,l)},decryptBlock:function(a,c){var d=a[c+1];a[c+1]=a[c+3];a[c+3]=d;this._doCryptBlock(a,c,this._invKeySchedule,b,x,q,n,s);d=a[c+1];a[c+1]=a[c+3];a[c+3]=d},_doCryptBlock:function(a,b,c,d,e,j,l,f){for(var m=this._nRounds,g=a[b]^c[0],h=a[b+1]^c[1],k=a[b+2]^c[2],n=a[b+3]^c[3],p=4,r=1;r>>24]^e[h>>>16&255]^j[k>>>8&255]^l[n&255]^c[p++],s=d[h>>>24]^e[k>>>16&255]^j[n>>>8&255]^l[g&255]^c[p++],t= +d[k>>>24]^e[n>>>16&255]^j[g>>>8&255]^l[h&255]^c[p++],n=d[n>>>24]^e[g>>>16&255]^j[h>>>8&255]^l[k&255]^c[p++],g=q,h=s,k=t;q=(f[g>>>24]<<24|f[h>>>16&255]<<16|f[k>>>8&255]<<8|f[n&255])^c[p++];s=(f[h>>>24]<<24|f[k>>>16&255]<<16|f[n>>>8&255]<<8|f[g&255])^c[p++];t=(f[k>>>24]<<24|f[n>>>16&255]<<16|f[g>>>8&255]<<8|f[h&255])^c[p++];n=(f[n>>>24]<<24|f[g>>>16&255]<<16|f[h>>>8&255]<<8|f[k&255])^c[p++];a[b]=q;a[b+1]=s;a[b+2]=t;a[b+3]=n},keySize:8});u.AES=p._createHelper(d)})(); diff --git a/www/AESBox/crypto-js-4.1.1/CONTRIBUTING.md b/www/AESBox/crypto-js-4.1.1/CONTRIBUTING.md deleted file mode 100644 index 09bf774..0000000 --- a/www/AESBox/crypto-js-4.1.1/CONTRIBUTING.md +++ /dev/null @@ -1,28 +0,0 @@ -# Contribution - -# Git Flow - -The crypto-js project uses [git flow](https://github.com/nvie/gitflow) to manage branches. -Do your changes on the `develop` or even better on a `feature/*` branch. Don't do any changes on the `master` branch. - -# Pull request - -Target your pull request on `develop` branch. Other pull request won't be accepted. - -# How to build - -1. Clone - -2. Run - - ```sh - npm install - ``` - -3. Run - - ```sh - npm run build - ``` - -4. Check `build` folder \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/LICENSE b/www/AESBox/crypto-js-4.1.1/LICENSE deleted file mode 100644 index b0828e5..0000000 --- a/www/AESBox/crypto-js-4.1.1/LICENSE +++ /dev/null @@ -1,24 +0,0 @@ -# License - -[The MIT License (MIT)](http://opensource.org/licenses/MIT) - -Copyright (c) 2009-2013 Jeff Mott -Copyright (c) 2013-2016 Evan Vosberg - -Permission is hereby granted, free of charge, to any person obtaining a copy -of this software and associated documentation files (the "Software"), to deal -in the Software without restriction, including without limitation the rights -to use, copy, modify, merge, publish, distribute, sublicense, and/or sell -copies of the Software, and to permit persons to whom the Software is -furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in -all copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER -LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, -OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN -THE SOFTWARE. diff --git a/www/AESBox/crypto-js-4.1.1/README.md b/www/AESBox/crypto-js-4.1.1/README.md deleted file mode 100644 index 23795aa..0000000 --- a/www/AESBox/crypto-js-4.1.1/README.md +++ /dev/null @@ -1,261 +0,0 @@ -# crypto-js [![Build Status](https://travis-ci.org/brix/crypto-js.svg?branch=develop)](https://travis-ci.org/brix/crypto-js) - -JavaScript library of crypto standards. - -## Node.js (Install) - -Requirements: - -- Node.js -- npm (Node.js package manager) - -```bash -npm install crypto-js -``` - -### Usage - -ES6 import for typical API call signing use case: - -```javascript -import sha256 from 'crypto-js/sha256'; -import hmacSHA512 from 'crypto-js/hmac-sha512'; -import Base64 from 'crypto-js/enc-base64'; - -const message, nonce, path, privateKey; // ... -const hashDigest = sha256(nonce + message); -const hmacDigest = Base64.stringify(hmacSHA512(path + hashDigest, privateKey)); -``` - -Modular include: - -```javascript -var AES = require("crypto-js/aes"); -var SHA256 = require("crypto-js/sha256"); -... -console.log(SHA256("Message")); -``` - -Including all libraries, for access to extra methods: - -```javascript -var CryptoJS = require("crypto-js"); -console.log(CryptoJS.HmacSHA1("Message", "Key")); -``` - -## Client (browser) - -Requirements: - -- Node.js -- Bower (package manager for frontend) - -```bash -bower install crypto-js -``` - -### Usage - -Modular include: - -```javascript -require.config({ - packages: [ - { - name: 'crypto-js', - location: 'path-to/bower_components/crypto-js', - main: 'index' - } - ] -}); - -require(["crypto-js/aes", "crypto-js/sha256"], function (AES, SHA256) { - console.log(SHA256("Message")); -}); -``` - -Including all libraries, for access to extra methods: - -```javascript -// Above-mentioned will work or use this simple form -require.config({ - paths: { - 'crypto-js': 'path-to/bower_components/crypto-js/crypto-js' - } -}); - -require(["crypto-js"], function (CryptoJS) { - console.log(CryptoJS.HmacSHA1("Message", "Key")); -}); -``` - -### Usage without RequireJS - -```html - - -``` - -## API - -See: https://cryptojs.gitbook.io/docs/ - -### AES Encryption - -#### Plain text encryption - -```javascript -var CryptoJS = require("crypto-js"); - -// Encrypt -var ciphertext = CryptoJS.AES.encrypt('my message', 'secret key 123').toString(); - -// Decrypt -var bytes = CryptoJS.AES.decrypt(ciphertext, 'secret key 123'); -var originalText = bytes.toString(CryptoJS.enc.Utf8); - -console.log(originalText); // 'my message' -``` - -#### Object encryption - -```javascript -var CryptoJS = require("crypto-js"); - -var data = [{id: 1}, {id: 2}] - -// Encrypt -var ciphertext = CryptoJS.AES.encrypt(JSON.stringify(data), 'secret key 123').toString(); - -// Decrypt -var bytes = CryptoJS.AES.decrypt(ciphertext, 'secret key 123'); -var decryptedData = JSON.parse(bytes.toString(CryptoJS.enc.Utf8)); - -console.log(decryptedData); // [{id: 1}, {id: 2}] -``` - -### List of modules - - -- ```crypto-js/core``` -- ```crypto-js/x64-core``` -- ```crypto-js/lib-typedarrays``` - ---- - -- ```crypto-js/md5``` -- ```crypto-js/sha1``` -- ```crypto-js/sha256``` -- ```crypto-js/sha224``` -- ```crypto-js/sha512``` -- ```crypto-js/sha384``` -- ```crypto-js/sha3``` -- ```crypto-js/ripemd160``` - ---- - -- ```crypto-js/hmac-md5``` -- ```crypto-js/hmac-sha1``` -- ```crypto-js/hmac-sha256``` -- ```crypto-js/hmac-sha224``` -- ```crypto-js/hmac-sha512``` -- ```crypto-js/hmac-sha384``` -- ```crypto-js/hmac-sha3``` -- ```crypto-js/hmac-ripemd160``` - ---- - -- ```crypto-js/pbkdf2``` - ---- - -- ```crypto-js/aes``` -- ```crypto-js/tripledes``` -- ```crypto-js/rc4``` -- ```crypto-js/rabbit``` -- ```crypto-js/rabbit-legacy``` -- ```crypto-js/evpkdf``` - ---- - -- ```crypto-js/format-openssl``` -- ```crypto-js/format-hex``` - ---- - -- ```crypto-js/enc-latin1``` -- ```crypto-js/enc-utf8``` -- ```crypto-js/enc-hex``` -- ```crypto-js/enc-utf16``` -- ```crypto-js/enc-base64``` - ---- - -- ```crypto-js/mode-cfb``` -- ```crypto-js/mode-ctr``` -- ```crypto-js/mode-ctr-gladman``` -- ```crypto-js/mode-ofb``` -- ```crypto-js/mode-ecb``` - ---- - -- ```crypto-js/pad-pkcs7``` -- ```crypto-js/pad-ansix923``` -- ```crypto-js/pad-iso10126``` -- ```crypto-js/pad-iso97971``` -- ```crypto-js/pad-zeropadding``` -- ```crypto-js/pad-nopadding``` - - -## Release notes - -### 4.1.1 - -Fix module order in bundled release. - -Include the browser field in the released package.json. - -### 4.1.0 - -Added url safe variant of base64 encoding. [357](https://github.com/brix/crypto-js/pull/357) - -Avoid webpack to add crypto-browser package. [364](https://github.com/brix/crypto-js/pull/364) - -### 4.0.0 - -This is an update including breaking changes for some environments. - -In this version `Math.random()` has been replaced by the random methods of the native crypto module. - -For this reason CryptoJS might not run in some JavaScript environments without native crypto module. Such as IE 10 or before or React Native. - -### 3.3.0 - -Rollback, `3.3.0` is the same as `3.1.9-1`. - -The move of using native secure crypto module will be shifted to a new `4.x.x` version. As it is a breaking change the impact is too big for a minor release. - -### 3.2.1 - -The usage of the native crypto module has been fixed. The import and access of the native crypto module has been improved. - -### 3.2.0 - -In this version `Math.random()` has been replaced by the random methods of the native crypto module. - -For this reason CryptoJS might does not run in some JavaScript environments without native crypto module. Such as IE 10 or before. - -If it's absolute required to run CryptoJS in such an environment, stay with `3.1.x` version. Encrypting and decrypting stays compatible. But keep in mind `3.1.x` versions still use `Math.random()` which is cryptographically not secure, as it's not random enough. - -This version came along with `CRITICAL` `BUG`. - -DO NOT USE THIS VERSION! Please, go for a newer version! - -### 3.1.x - -The `3.1.x` are based on the original CryptoJS, wrapped in CommonJS modules. - - diff --git a/www/AESBox/crypto-js-4.1.1/aes.js b/www/AESBox/crypto-js-4.1.1/aes.js deleted file mode 100644 index 166e3ea..0000000 --- a/www/AESBox/crypto-js-4.1.1/aes.js +++ /dev/null @@ -1,234 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./enc-base64"), require("./md5"), require("./evpkdf"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./enc-base64", "./md5", "./evpkdf", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var BlockCipher = C_lib.BlockCipher; - var C_algo = C.algo; - - // Lookup tables - var SBOX = []; - var INV_SBOX = []; - var SUB_MIX_0 = []; - var SUB_MIX_1 = []; - var SUB_MIX_2 = []; - var SUB_MIX_3 = []; - var INV_SUB_MIX_0 = []; - var INV_SUB_MIX_1 = []; - var INV_SUB_MIX_2 = []; - var INV_SUB_MIX_3 = []; - - // Compute lookup tables - (function () { - // Compute double table - var d = []; - for (var i = 0; i < 256; i++) { - if (i < 128) { - d[i] = i << 1; - } else { - d[i] = (i << 1) ^ 0x11b; - } - } - - // Walk GF(2^8) - var x = 0; - var xi = 0; - for (var i = 0; i < 256; i++) { - // Compute sbox - var sx = xi ^ (xi << 1) ^ (xi << 2) ^ (xi << 3) ^ (xi << 4); - sx = (sx >>> 8) ^ (sx & 0xff) ^ 0x63; - SBOX[x] = sx; - INV_SBOX[sx] = x; - - // Compute multiplication - var x2 = d[x]; - var x4 = d[x2]; - var x8 = d[x4]; - - // Compute sub bytes, mix columns tables - var t = (d[sx] * 0x101) ^ (sx * 0x1010100); - SUB_MIX_0[x] = (t << 24) | (t >>> 8); - SUB_MIX_1[x] = (t << 16) | (t >>> 16); - SUB_MIX_2[x] = (t << 8) | (t >>> 24); - SUB_MIX_3[x] = t; - - // Compute inv sub bytes, inv mix columns tables - var t = (x8 * 0x1010101) ^ (x4 * 0x10001) ^ (x2 * 0x101) ^ (x * 0x1010100); - INV_SUB_MIX_0[sx] = (t << 24) | (t >>> 8); - INV_SUB_MIX_1[sx] = (t << 16) | (t >>> 16); - INV_SUB_MIX_2[sx] = (t << 8) | (t >>> 24); - INV_SUB_MIX_3[sx] = t; - - // Compute next counter - if (!x) { - x = xi = 1; - } else { - x = x2 ^ d[d[d[x8 ^ x2]]]; - xi ^= d[d[xi]]; - } - } - }()); - - // Precomputed Rcon lookup - var RCON = [0x00, 0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80, 0x1b, 0x36]; - - /** - * AES block cipher algorithm. - */ - var AES = C_algo.AES = BlockCipher.extend({ - _doReset: function () { - var t; - - // Skip reset of nRounds has been set before and key did not change - if (this._nRounds && this._keyPriorReset === this._key) { - return; - } - - // Shortcuts - var key = this._keyPriorReset = this._key; - var keyWords = key.words; - var keySize = key.sigBytes / 4; - - // Compute number of rounds - var nRounds = this._nRounds = keySize + 6; - - // Compute number of key schedule rows - var ksRows = (nRounds + 1) * 4; - - // Compute key schedule - var keySchedule = this._keySchedule = []; - for (var ksRow = 0; ksRow < ksRows; ksRow++) { - if (ksRow < keySize) { - keySchedule[ksRow] = keyWords[ksRow]; - } else { - t = keySchedule[ksRow - 1]; - - if (!(ksRow % keySize)) { - // Rot word - t = (t << 8) | (t >>> 24); - - // Sub word - t = (SBOX[t >>> 24] << 24) | (SBOX[(t >>> 16) & 0xff] << 16) | (SBOX[(t >>> 8) & 0xff] << 8) | SBOX[t & 0xff]; - - // Mix Rcon - t ^= RCON[(ksRow / keySize) | 0] << 24; - } else if (keySize > 6 && ksRow % keySize == 4) { - // Sub word - t = (SBOX[t >>> 24] << 24) | (SBOX[(t >>> 16) & 0xff] << 16) | (SBOX[(t >>> 8) & 0xff] << 8) | SBOX[t & 0xff]; - } - - keySchedule[ksRow] = keySchedule[ksRow - keySize] ^ t; - } - } - - // Compute inv key schedule - var invKeySchedule = this._invKeySchedule = []; - for (var invKsRow = 0; invKsRow < ksRows; invKsRow++) { - var ksRow = ksRows - invKsRow; - - if (invKsRow % 4) { - var t = keySchedule[ksRow]; - } else { - var t = keySchedule[ksRow - 4]; - } - - if (invKsRow < 4 || ksRow <= 4) { - invKeySchedule[invKsRow] = t; - } else { - invKeySchedule[invKsRow] = INV_SUB_MIX_0[SBOX[t >>> 24]] ^ INV_SUB_MIX_1[SBOX[(t >>> 16) & 0xff]] ^ - INV_SUB_MIX_2[SBOX[(t >>> 8) & 0xff]] ^ INV_SUB_MIX_3[SBOX[t & 0xff]]; - } - } - }, - - encryptBlock: function (M, offset) { - this._doCryptBlock(M, offset, this._keySchedule, SUB_MIX_0, SUB_MIX_1, SUB_MIX_2, SUB_MIX_3, SBOX); - }, - - decryptBlock: function (M, offset) { - // Swap 2nd and 4th rows - var t = M[offset + 1]; - M[offset + 1] = M[offset + 3]; - M[offset + 3] = t; - - this._doCryptBlock(M, offset, this._invKeySchedule, INV_SUB_MIX_0, INV_SUB_MIX_1, INV_SUB_MIX_2, INV_SUB_MIX_3, INV_SBOX); - - // Inv swap 2nd and 4th rows - var t = M[offset + 1]; - M[offset + 1] = M[offset + 3]; - M[offset + 3] = t; - }, - - _doCryptBlock: function (M, offset, keySchedule, SUB_MIX_0, SUB_MIX_1, SUB_MIX_2, SUB_MIX_3, SBOX) { - // Shortcut - var nRounds = this._nRounds; - - // Get input, add round key - var s0 = M[offset] ^ keySchedule[0]; - var s1 = M[offset + 1] ^ keySchedule[1]; - var s2 = M[offset + 2] ^ keySchedule[2]; - var s3 = M[offset + 3] ^ keySchedule[3]; - - // Key schedule row counter - var ksRow = 4; - - // Rounds - for (var round = 1; round < nRounds; round++) { - // Shift rows, sub bytes, mix columns, add round key - var t0 = SUB_MIX_0[s0 >>> 24] ^ SUB_MIX_1[(s1 >>> 16) & 0xff] ^ SUB_MIX_2[(s2 >>> 8) & 0xff] ^ SUB_MIX_3[s3 & 0xff] ^ keySchedule[ksRow++]; - var t1 = SUB_MIX_0[s1 >>> 24] ^ SUB_MIX_1[(s2 >>> 16) & 0xff] ^ SUB_MIX_2[(s3 >>> 8) & 0xff] ^ SUB_MIX_3[s0 & 0xff] ^ keySchedule[ksRow++]; - var t2 = SUB_MIX_0[s2 >>> 24] ^ SUB_MIX_1[(s3 >>> 16) & 0xff] ^ SUB_MIX_2[(s0 >>> 8) & 0xff] ^ SUB_MIX_3[s1 & 0xff] ^ keySchedule[ksRow++]; - var t3 = SUB_MIX_0[s3 >>> 24] ^ SUB_MIX_1[(s0 >>> 16) & 0xff] ^ SUB_MIX_2[(s1 >>> 8) & 0xff] ^ SUB_MIX_3[s2 & 0xff] ^ keySchedule[ksRow++]; - - // Update state - s0 = t0; - s1 = t1; - s2 = t2; - s3 = t3; - } - - // Shift rows, sub bytes, add round key - var t0 = ((SBOX[s0 >>> 24] << 24) | (SBOX[(s1 >>> 16) & 0xff] << 16) | (SBOX[(s2 >>> 8) & 0xff] << 8) | SBOX[s3 & 0xff]) ^ keySchedule[ksRow++]; - var t1 = ((SBOX[s1 >>> 24] << 24) | (SBOX[(s2 >>> 16) & 0xff] << 16) | (SBOX[(s3 >>> 8) & 0xff] << 8) | SBOX[s0 & 0xff]) ^ keySchedule[ksRow++]; - var t2 = ((SBOX[s2 >>> 24] << 24) | (SBOX[(s3 >>> 16) & 0xff] << 16) | (SBOX[(s0 >>> 8) & 0xff] << 8) | SBOX[s1 & 0xff]) ^ keySchedule[ksRow++]; - var t3 = ((SBOX[s3 >>> 24] << 24) | (SBOX[(s0 >>> 16) & 0xff] << 16) | (SBOX[(s1 >>> 8) & 0xff] << 8) | SBOX[s2 & 0xff]) ^ keySchedule[ksRow++]; - - // Set output - M[offset] = t0; - M[offset + 1] = t1; - M[offset + 2] = t2; - M[offset + 3] = t3; - }, - - keySize: 256/32 - }); - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.AES.encrypt(message, key, cfg); - * var plaintext = CryptoJS.AES.decrypt(ciphertext, key, cfg); - */ - C.AES = BlockCipher._createHelper(AES); - }()); - - - return CryptoJS.AES; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/bower.json b/www/AESBox/crypto-js-4.1.1/bower.json deleted file mode 100644 index 1e12fdc..0000000 --- a/www/AESBox/crypto-js-4.1.1/bower.json +++ /dev/null @@ -1,39 +0,0 @@ -{ - "name": "crypto-js", - "version": "4.1.1", - "description": "JavaScript library of crypto standards.", - "license": "MIT", - "homepage": "http://github.com/brix/crypto-js", - "repository": { - "type": "git", - "url": "http://github.com/brix/crypto-js.git" - }, - "keywords": [ - "security", - "crypto", - "Hash", - "MD5", - "SHA1", - "SHA-1", - "SHA256", - "SHA-256", - "RC4", - "Rabbit", - "AES", - "DES", - "PBKDF2", - "HMAC", - "OFB", - "CFB", - "CTR", - "CBC", - "Base64", - "Base64url" - ], - "main": "index.js", - "dependencies": {}, - "browser": { - "crypto": false - }, - "ignore": [] -} diff --git a/www/AESBox/crypto-js-4.1.1/cipher-core.js b/www/AESBox/crypto-js-4.1.1/cipher-core.js deleted file mode 100644 index c560c9e..0000000 --- a/www/AESBox/crypto-js-4.1.1/cipher-core.js +++ /dev/null @@ -1,890 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./evpkdf")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./evpkdf"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * Cipher core components. - */ - CryptoJS.lib.Cipher || (function (undefined) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var WordArray = C_lib.WordArray; - var BufferedBlockAlgorithm = C_lib.BufferedBlockAlgorithm; - var C_enc = C.enc; - var Utf8 = C_enc.Utf8; - var Base64 = C_enc.Base64; - var C_algo = C.algo; - var EvpKDF = C_algo.EvpKDF; - - /** - * Abstract base cipher template. - * - * @property {number} keySize This cipher's key size. Default: 4 (128 bits) - * @property {number} ivSize This cipher's IV size. Default: 4 (128 bits) - * @property {number} _ENC_XFORM_MODE A constant representing encryption mode. - * @property {number} _DEC_XFORM_MODE A constant representing decryption mode. - */ - var Cipher = C_lib.Cipher = BufferedBlockAlgorithm.extend({ - /** - * Configuration options. - * - * @property {WordArray} iv The IV to use for this operation. - */ - cfg: Base.extend(), - - /** - * Creates this cipher in encryption mode. - * - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {Cipher} A cipher instance. - * - * @static - * - * @example - * - * var cipher = CryptoJS.algo.AES.createEncryptor(keyWordArray, { iv: ivWordArray }); - */ - createEncryptor: function (key, cfg) { - return this.create(this._ENC_XFORM_MODE, key, cfg); - }, - - /** - * Creates this cipher in decryption mode. - * - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {Cipher} A cipher instance. - * - * @static - * - * @example - * - * var cipher = CryptoJS.algo.AES.createDecryptor(keyWordArray, { iv: ivWordArray }); - */ - createDecryptor: function (key, cfg) { - return this.create(this._DEC_XFORM_MODE, key, cfg); - }, - - /** - * Initializes a newly created cipher. - * - * @param {number} xformMode Either the encryption or decryption transormation mode constant. - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @example - * - * var cipher = CryptoJS.algo.AES.create(CryptoJS.algo.AES._ENC_XFORM_MODE, keyWordArray, { iv: ivWordArray }); - */ - init: function (xformMode, key, cfg) { - // Apply config defaults - this.cfg = this.cfg.extend(cfg); - - // Store transform mode and key - this._xformMode = xformMode; - this._key = key; - - // Set initial values - this.reset(); - }, - - /** - * Resets this cipher to its initial state. - * - * @example - * - * cipher.reset(); - */ - reset: function () { - // Reset data buffer - BufferedBlockAlgorithm.reset.call(this); - - // Perform concrete-cipher logic - this._doReset(); - }, - - /** - * Adds data to be encrypted or decrypted. - * - * @param {WordArray|string} dataUpdate The data to encrypt or decrypt. - * - * @return {WordArray} The data after processing. - * - * @example - * - * var encrypted = cipher.process('data'); - * var encrypted = cipher.process(wordArray); - */ - process: function (dataUpdate) { - // Append - this._append(dataUpdate); - - // Process available blocks - return this._process(); - }, - - /** - * Finalizes the encryption or decryption process. - * Note that the finalize operation is effectively a destructive, read-once operation. - * - * @param {WordArray|string} dataUpdate The final data to encrypt or decrypt. - * - * @return {WordArray} The data after final processing. - * - * @example - * - * var encrypted = cipher.finalize(); - * var encrypted = cipher.finalize('data'); - * var encrypted = cipher.finalize(wordArray); - */ - finalize: function (dataUpdate) { - // Final data update - if (dataUpdate) { - this._append(dataUpdate); - } - - // Perform concrete-cipher logic - var finalProcessedData = this._doFinalize(); - - return finalProcessedData; - }, - - keySize: 128/32, - - ivSize: 128/32, - - _ENC_XFORM_MODE: 1, - - _DEC_XFORM_MODE: 2, - - /** - * Creates shortcut functions to a cipher's object interface. - * - * @param {Cipher} cipher The cipher to create a helper for. - * - * @return {Object} An object with encrypt and decrypt shortcut functions. - * - * @static - * - * @example - * - * var AES = CryptoJS.lib.Cipher._createHelper(CryptoJS.algo.AES); - */ - _createHelper: (function () { - function selectCipherStrategy(key) { - if (typeof key == 'string') { - return PasswordBasedCipher; - } else { - return SerializableCipher; - } - } - - return function (cipher) { - return { - encrypt: function (message, key, cfg) { - return selectCipherStrategy(key).encrypt(cipher, message, key, cfg); - }, - - decrypt: function (ciphertext, key, cfg) { - return selectCipherStrategy(key).decrypt(cipher, ciphertext, key, cfg); - } - }; - }; - }()) - }); - - /** - * Abstract base stream cipher template. - * - * @property {number} blockSize The number of 32-bit words this cipher operates on. Default: 1 (32 bits) - */ - var StreamCipher = C_lib.StreamCipher = Cipher.extend({ - _doFinalize: function () { - // Process partial blocks - var finalProcessedBlocks = this._process(!!'flush'); - - return finalProcessedBlocks; - }, - - blockSize: 1 - }); - - /** - * Mode namespace. - */ - var C_mode = C.mode = {}; - - /** - * Abstract base block cipher mode template. - */ - var BlockCipherMode = C_lib.BlockCipherMode = Base.extend({ - /** - * Creates this mode for encryption. - * - * @param {Cipher} cipher A block cipher instance. - * @param {Array} iv The IV words. - * - * @static - * - * @example - * - * var mode = CryptoJS.mode.CBC.createEncryptor(cipher, iv.words); - */ - createEncryptor: function (cipher, iv) { - return this.Encryptor.create(cipher, iv); - }, - - /** - * Creates this mode for decryption. - * - * @param {Cipher} cipher A block cipher instance. - * @param {Array} iv The IV words. - * - * @static - * - * @example - * - * var mode = CryptoJS.mode.CBC.createDecryptor(cipher, iv.words); - */ - createDecryptor: function (cipher, iv) { - return this.Decryptor.create(cipher, iv); - }, - - /** - * Initializes a newly created mode. - * - * @param {Cipher} cipher A block cipher instance. - * @param {Array} iv The IV words. - * - * @example - * - * var mode = CryptoJS.mode.CBC.Encryptor.create(cipher, iv.words); - */ - init: function (cipher, iv) { - this._cipher = cipher; - this._iv = iv; - } - }); - - /** - * Cipher Block Chaining mode. - */ - var CBC = C_mode.CBC = (function () { - /** - * Abstract base CBC mode. - */ - var CBC = BlockCipherMode.extend(); - - /** - * CBC encryptor. - */ - CBC.Encryptor = CBC.extend({ - /** - * Processes the data block at offset. - * - * @param {Array} words The data words to operate on. - * @param {number} offset The offset where the block starts. - * - * @example - * - * mode.processBlock(data.words, offset); - */ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher; - var blockSize = cipher.blockSize; - - // XOR and encrypt - xorBlock.call(this, words, offset, blockSize); - cipher.encryptBlock(words, offset); - - // Remember this block to use with next block - this._prevBlock = words.slice(offset, offset + blockSize); - } - }); - - /** - * CBC decryptor. - */ - CBC.Decryptor = CBC.extend({ - /** - * Processes the data block at offset. - * - * @param {Array} words The data words to operate on. - * @param {number} offset The offset where the block starts. - * - * @example - * - * mode.processBlock(data.words, offset); - */ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher; - var blockSize = cipher.blockSize; - - // Remember this block to use with next block - var thisBlock = words.slice(offset, offset + blockSize); - - // Decrypt and XOR - cipher.decryptBlock(words, offset); - xorBlock.call(this, words, offset, blockSize); - - // This block becomes the previous block - this._prevBlock = thisBlock; - } - }); - - function xorBlock(words, offset, blockSize) { - var block; - - // Shortcut - var iv = this._iv; - - // Choose mixing block - if (iv) { - block = iv; - - // Remove IV for subsequent blocks - this._iv = undefined; - } else { - block = this._prevBlock; - } - - // XOR blocks - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= block[i]; - } - } - - return CBC; - }()); - - /** - * Padding namespace. - */ - var C_pad = C.pad = {}; - - /** - * PKCS #5/7 padding strategy. - */ - var Pkcs7 = C_pad.Pkcs7 = { - /** - * Pads data using the algorithm defined in PKCS #5/7. - * - * @param {WordArray} data The data to pad. - * @param {number} blockSize The multiple that the data should be padded to. - * - * @static - * - * @example - * - * CryptoJS.pad.Pkcs7.pad(wordArray, 4); - */ - pad: function (data, blockSize) { - // Shortcut - var blockSizeBytes = blockSize * 4; - - // Count padding bytes - var nPaddingBytes = blockSizeBytes - data.sigBytes % blockSizeBytes; - - // Create padding word - var paddingWord = (nPaddingBytes << 24) | (nPaddingBytes << 16) | (nPaddingBytes << 8) | nPaddingBytes; - - // Create padding - var paddingWords = []; - for (var i = 0; i < nPaddingBytes; i += 4) { - paddingWords.push(paddingWord); - } - var padding = WordArray.create(paddingWords, nPaddingBytes); - - // Add padding - data.concat(padding); - }, - - /** - * Unpads data that had been padded using the algorithm defined in PKCS #5/7. - * - * @param {WordArray} data The data to unpad. - * - * @static - * - * @example - * - * CryptoJS.pad.Pkcs7.unpad(wordArray); - */ - unpad: function (data) { - // Get number of padding bytes from last byte - var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; - - // Remove padding - data.sigBytes -= nPaddingBytes; - } - }; - - /** - * Abstract base block cipher template. - * - * @property {number} blockSize The number of 32-bit words this cipher operates on. Default: 4 (128 bits) - */ - var BlockCipher = C_lib.BlockCipher = Cipher.extend({ - /** - * Configuration options. - * - * @property {Mode} mode The block mode to use. Default: CBC - * @property {Padding} padding The padding strategy to use. Default: Pkcs7 - */ - cfg: Cipher.cfg.extend({ - mode: CBC, - padding: Pkcs7 - }), - - reset: function () { - var modeCreator; - - // Reset cipher - Cipher.reset.call(this); - - // Shortcuts - var cfg = this.cfg; - var iv = cfg.iv; - var mode = cfg.mode; - - // Reset block mode - if (this._xformMode == this._ENC_XFORM_MODE) { - modeCreator = mode.createEncryptor; - } else /* if (this._xformMode == this._DEC_XFORM_MODE) */ { - modeCreator = mode.createDecryptor; - // Keep at least one block in the buffer for unpadding - this._minBufferSize = 1; - } - - if (this._mode && this._mode.__creator == modeCreator) { - this._mode.init(this, iv && iv.words); - } else { - this._mode = modeCreator.call(mode, this, iv && iv.words); - this._mode.__creator = modeCreator; - } - }, - - _doProcessBlock: function (words, offset) { - this._mode.processBlock(words, offset); - }, - - _doFinalize: function () { - var finalProcessedBlocks; - - // Shortcut - var padding = this.cfg.padding; - - // Finalize - if (this._xformMode == this._ENC_XFORM_MODE) { - // Pad data - padding.pad(this._data, this.blockSize); - - // Process final blocks - finalProcessedBlocks = this._process(!!'flush'); - } else /* if (this._xformMode == this._DEC_XFORM_MODE) */ { - // Process final blocks - finalProcessedBlocks = this._process(!!'flush'); - - // Unpad data - padding.unpad(finalProcessedBlocks); - } - - return finalProcessedBlocks; - }, - - blockSize: 128/32 - }); - - /** - * A collection of cipher parameters. - * - * @property {WordArray} ciphertext The raw ciphertext. - * @property {WordArray} key The key to this ciphertext. - * @property {WordArray} iv The IV used in the ciphering operation. - * @property {WordArray} salt The salt used with a key derivation function. - * @property {Cipher} algorithm The cipher algorithm. - * @property {Mode} mode The block mode used in the ciphering operation. - * @property {Padding} padding The padding scheme used in the ciphering operation. - * @property {number} blockSize The block size of the cipher. - * @property {Format} formatter The default formatting strategy to convert this cipher params object to a string. - */ - var CipherParams = C_lib.CipherParams = Base.extend({ - /** - * Initializes a newly created cipher params object. - * - * @param {Object} cipherParams An object with any of the possible cipher parameters. - * - * @example - * - * var cipherParams = CryptoJS.lib.CipherParams.create({ - * ciphertext: ciphertextWordArray, - * key: keyWordArray, - * iv: ivWordArray, - * salt: saltWordArray, - * algorithm: CryptoJS.algo.AES, - * mode: CryptoJS.mode.CBC, - * padding: CryptoJS.pad.PKCS7, - * blockSize: 4, - * formatter: CryptoJS.format.OpenSSL - * }); - */ - init: function (cipherParams) { - this.mixIn(cipherParams); - }, - - /** - * Converts this cipher params object to a string. - * - * @param {Format} formatter (Optional) The formatting strategy to use. - * - * @return {string} The stringified cipher params. - * - * @throws Error If neither the formatter nor the default formatter is set. - * - * @example - * - * var string = cipherParams + ''; - * var string = cipherParams.toString(); - * var string = cipherParams.toString(CryptoJS.format.OpenSSL); - */ - toString: function (formatter) { - return (formatter || this.formatter).stringify(this); - } - }); - - /** - * Format namespace. - */ - var C_format = C.format = {}; - - /** - * OpenSSL formatting strategy. - */ - var OpenSSLFormatter = C_format.OpenSSL = { - /** - * Converts a cipher params object to an OpenSSL-compatible string. - * - * @param {CipherParams} cipherParams The cipher params object. - * - * @return {string} The OpenSSL-compatible string. - * - * @static - * - * @example - * - * var openSSLString = CryptoJS.format.OpenSSL.stringify(cipherParams); - */ - stringify: function (cipherParams) { - var wordArray; - - // Shortcuts - var ciphertext = cipherParams.ciphertext; - var salt = cipherParams.salt; - - // Format - if (salt) { - wordArray = WordArray.create([0x53616c74, 0x65645f5f]).concat(salt).concat(ciphertext); - } else { - wordArray = ciphertext; - } - - return wordArray.toString(Base64); - }, - - /** - * Converts an OpenSSL-compatible string to a cipher params object. - * - * @param {string} openSSLStr The OpenSSL-compatible string. - * - * @return {CipherParams} The cipher params object. - * - * @static - * - * @example - * - * var cipherParams = CryptoJS.format.OpenSSL.parse(openSSLString); - */ - parse: function (openSSLStr) { - var salt; - - // Parse base64 - var ciphertext = Base64.parse(openSSLStr); - - // Shortcut - var ciphertextWords = ciphertext.words; - - // Test for salt - if (ciphertextWords[0] == 0x53616c74 && ciphertextWords[1] == 0x65645f5f) { - // Extract salt - salt = WordArray.create(ciphertextWords.slice(2, 4)); - - // Remove salt from ciphertext - ciphertextWords.splice(0, 4); - ciphertext.sigBytes -= 16; - } - - return CipherParams.create({ ciphertext: ciphertext, salt: salt }); - } - }; - - /** - * A cipher wrapper that returns ciphertext as a serializable cipher params object. - */ - var SerializableCipher = C_lib.SerializableCipher = Base.extend({ - /** - * Configuration options. - * - * @property {Formatter} format The formatting strategy to convert cipher param objects to and from a string. Default: OpenSSL - */ - cfg: Base.extend({ - format: OpenSSLFormatter - }), - - /** - * Encrypts a message. - * - * @param {Cipher} cipher The cipher algorithm to use. - * @param {WordArray|string} message The message to encrypt. - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {CipherParams} A cipher params object. - * - * @static - * - * @example - * - * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key); - * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key, { iv: iv }); - * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key, { iv: iv, format: CryptoJS.format.OpenSSL }); - */ - encrypt: function (cipher, message, key, cfg) { - // Apply config defaults - cfg = this.cfg.extend(cfg); - - // Encrypt - var encryptor = cipher.createEncryptor(key, cfg); - var ciphertext = encryptor.finalize(message); - - // Shortcut - var cipherCfg = encryptor.cfg; - - // Create and return serializable cipher params - return CipherParams.create({ - ciphertext: ciphertext, - key: key, - iv: cipherCfg.iv, - algorithm: cipher, - mode: cipherCfg.mode, - padding: cipherCfg.padding, - blockSize: cipher.blockSize, - formatter: cfg.format - }); - }, - - /** - * Decrypts serialized ciphertext. - * - * @param {Cipher} cipher The cipher algorithm to use. - * @param {CipherParams|string} ciphertext The ciphertext to decrypt. - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {WordArray} The plaintext. - * - * @static - * - * @example - * - * var plaintext = CryptoJS.lib.SerializableCipher.decrypt(CryptoJS.algo.AES, formattedCiphertext, key, { iv: iv, format: CryptoJS.format.OpenSSL }); - * var plaintext = CryptoJS.lib.SerializableCipher.decrypt(CryptoJS.algo.AES, ciphertextParams, key, { iv: iv, format: CryptoJS.format.OpenSSL }); - */ - decrypt: function (cipher, ciphertext, key, cfg) { - // Apply config defaults - cfg = this.cfg.extend(cfg); - - // Convert string to CipherParams - ciphertext = this._parse(ciphertext, cfg.format); - - // Decrypt - var plaintext = cipher.createDecryptor(key, cfg).finalize(ciphertext.ciphertext); - - return plaintext; - }, - - /** - * Converts serialized ciphertext to CipherParams, - * else assumed CipherParams already and returns ciphertext unchanged. - * - * @param {CipherParams|string} ciphertext The ciphertext. - * @param {Formatter} format The formatting strategy to use to parse serialized ciphertext. - * - * @return {CipherParams} The unserialized ciphertext. - * - * @static - * - * @example - * - * var ciphertextParams = CryptoJS.lib.SerializableCipher._parse(ciphertextStringOrParams, format); - */ - _parse: function (ciphertext, format) { - if (typeof ciphertext == 'string') { - return format.parse(ciphertext, this); - } else { - return ciphertext; - } - } - }); - - /** - * Key derivation function namespace. - */ - var C_kdf = C.kdf = {}; - - /** - * OpenSSL key derivation function. - */ - var OpenSSLKdf = C_kdf.OpenSSL = { - /** - * Derives a key and IV from a password. - * - * @param {string} password The password to derive from. - * @param {number} keySize The size in words of the key to generate. - * @param {number} ivSize The size in words of the IV to generate. - * @param {WordArray|string} salt (Optional) A 64-bit salt to use. If omitted, a salt will be generated randomly. - * - * @return {CipherParams} A cipher params object with the key, IV, and salt. - * - * @static - * - * @example - * - * var derivedParams = CryptoJS.kdf.OpenSSL.execute('Password', 256/32, 128/32); - * var derivedParams = CryptoJS.kdf.OpenSSL.execute('Password', 256/32, 128/32, 'saltsalt'); - */ - execute: function (password, keySize, ivSize, salt) { - // Generate random salt - if (!salt) { - salt = WordArray.random(64/8); - } - - // Derive key and IV - var key = EvpKDF.create({ keySize: keySize + ivSize }).compute(password, salt); - - // Separate key and IV - var iv = WordArray.create(key.words.slice(keySize), ivSize * 4); - key.sigBytes = keySize * 4; - - // Return params - return CipherParams.create({ key: key, iv: iv, salt: salt }); - } - }; - - /** - * A serializable cipher wrapper that derives the key from a password, - * and returns ciphertext as a serializable cipher params object. - */ - var PasswordBasedCipher = C_lib.PasswordBasedCipher = SerializableCipher.extend({ - /** - * Configuration options. - * - * @property {KDF} kdf The key derivation function to use to generate a key and IV from a password. Default: OpenSSL - */ - cfg: SerializableCipher.cfg.extend({ - kdf: OpenSSLKdf - }), - - /** - * Encrypts a message using a password. - * - * @param {Cipher} cipher The cipher algorithm to use. - * @param {WordArray|string} message The message to encrypt. - * @param {string} password The password. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {CipherParams} A cipher params object. - * - * @static - * - * @example - * - * var ciphertextParams = CryptoJS.lib.PasswordBasedCipher.encrypt(CryptoJS.algo.AES, message, 'password'); - * var ciphertextParams = CryptoJS.lib.PasswordBasedCipher.encrypt(CryptoJS.algo.AES, message, 'password', { format: CryptoJS.format.OpenSSL }); - */ - encrypt: function (cipher, message, password, cfg) { - // Apply config defaults - cfg = this.cfg.extend(cfg); - - // Derive key and other params - var derivedParams = cfg.kdf.execute(password, cipher.keySize, cipher.ivSize); - - // Add IV to config - cfg.iv = derivedParams.iv; - - // Encrypt - var ciphertext = SerializableCipher.encrypt.call(this, cipher, message, derivedParams.key, cfg); - - // Mix in derived params - ciphertext.mixIn(derivedParams); - - return ciphertext; - }, - - /** - * Decrypts serialized ciphertext using a password. - * - * @param {Cipher} cipher The cipher algorithm to use. - * @param {CipherParams|string} ciphertext The ciphertext to decrypt. - * @param {string} password The password. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {WordArray} The plaintext. - * - * @static - * - * @example - * - * var plaintext = CryptoJS.lib.PasswordBasedCipher.decrypt(CryptoJS.algo.AES, formattedCiphertext, 'password', { format: CryptoJS.format.OpenSSL }); - * var plaintext = CryptoJS.lib.PasswordBasedCipher.decrypt(CryptoJS.algo.AES, ciphertextParams, 'password', { format: CryptoJS.format.OpenSSL }); - */ - decrypt: function (cipher, ciphertext, password, cfg) { - // Apply config defaults - cfg = this.cfg.extend(cfg); - - // Convert string to CipherParams - ciphertext = this._parse(ciphertext, cfg.format); - - // Derive key and other params - var derivedParams = cfg.kdf.execute(password, cipher.keySize, cipher.ivSize, ciphertext.salt); - - // Add IV to config - cfg.iv = derivedParams.iv; - - // Decrypt - var plaintext = SerializableCipher.decrypt.call(this, cipher, ciphertext, derivedParams.key, cfg); - - return plaintext; - } - }); - }()); - - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/core.js b/www/AESBox/crypto-js-4.1.1/core.js deleted file mode 100644 index e3a498b..0000000 --- a/www/AESBox/crypto-js-4.1.1/core.js +++ /dev/null @@ -1,807 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(); - } - else if (typeof define === "function" && define.amd) { - // AMD - define([], factory); - } - else { - // Global (browser) - root.CryptoJS = factory(); - } -}(this, function () { - - /*globals window, global, require*/ - - /** - * CryptoJS core components. - */ - var CryptoJS = CryptoJS || (function (Math, undefined) { - - var crypto; - - // Native crypto from window (Browser) - if (typeof window !== 'undefined' && window.crypto) { - crypto = window.crypto; - } - - // Native crypto in web worker (Browser) - if (typeof self !== 'undefined' && self.crypto) { - crypto = self.crypto; - } - - // Native crypto from worker - if (typeof globalThis !== 'undefined' && globalThis.crypto) { - crypto = globalThis.crypto; - } - - // Native (experimental IE 11) crypto from window (Browser) - if (!crypto && typeof window !== 'undefined' && window.msCrypto) { - crypto = window.msCrypto; - } - - // Native crypto from global (NodeJS) - if (!crypto && typeof global !== 'undefined' && global.crypto) { - crypto = global.crypto; - } - - // Native crypto import via require (NodeJS) - if (!crypto && typeof require === 'function') { - try { - crypto = require('crypto'); - } catch (err) {} - } - - /* - * Cryptographically secure pseudorandom number generator - * - * As Math.random() is cryptographically not safe to use - */ - var cryptoSecureRandomInt = function () { - if (crypto) { - // Use getRandomValues method (Browser) - if (typeof crypto.getRandomValues === 'function') { - try { - return crypto.getRandomValues(new Uint32Array(1))[0]; - } catch (err) {} - } - - // Use randomBytes method (NodeJS) - if (typeof crypto.randomBytes === 'function') { - try { - return crypto.randomBytes(4).readInt32LE(); - } catch (err) {} - } - } - - throw new Error('Native crypto module could not be used to get secure random number.'); - }; - - /* - * Local polyfill of Object.create - - */ - var create = Object.create || (function () { - function F() {} - - return function (obj) { - var subtype; - - F.prototype = obj; - - subtype = new F(); - - F.prototype = null; - - return subtype; - }; - }()); - - /** - * CryptoJS namespace. - */ - var C = {}; - - /** - * Library namespace. - */ - var C_lib = C.lib = {}; - - /** - * Base object for prototypal inheritance. - */ - var Base = C_lib.Base = (function () { - - - return { - /** - * Creates a new object that inherits from this object. - * - * @param {Object} overrides Properties to copy into the new object. - * - * @return {Object} The new object. - * - * @static - * - * @example - * - * var MyType = CryptoJS.lib.Base.extend({ - * field: 'value', - * - * method: function () { - * } - * }); - */ - extend: function (overrides) { - // Spawn - var subtype = create(this); - - // Augment - if (overrides) { - subtype.mixIn(overrides); - } - - // Create default initializer - if (!subtype.hasOwnProperty('init') || this.init === subtype.init) { - subtype.init = function () { - subtype.$super.init.apply(this, arguments); - }; - } - - // Initializer's prototype is the subtype object - subtype.init.prototype = subtype; - - // Reference supertype - subtype.$super = this; - - return subtype; - }, - - /** - * Extends this object and runs the init method. - * Arguments to create() will be passed to init(). - * - * @return {Object} The new object. - * - * @static - * - * @example - * - * var instance = MyType.create(); - */ - create: function () { - var instance = this.extend(); - instance.init.apply(instance, arguments); - - return instance; - }, - - /** - * Initializes a newly created object. - * Override this method to add some logic when your objects are created. - * - * @example - * - * var MyType = CryptoJS.lib.Base.extend({ - * init: function () { - * // ... - * } - * }); - */ - init: function () { - }, - - /** - * Copies properties into this object. - * - * @param {Object} properties The properties to mix in. - * - * @example - * - * MyType.mixIn({ - * field: 'value' - * }); - */ - mixIn: function (properties) { - for (var propertyName in properties) { - if (properties.hasOwnProperty(propertyName)) { - this[propertyName] = properties[propertyName]; - } - } - - // IE won't copy toString using the loop above - if (properties.hasOwnProperty('toString')) { - this.toString = properties.toString; - } - }, - - /** - * Creates a copy of this object. - * - * @return {Object} The clone. - * - * @example - * - * var clone = instance.clone(); - */ - clone: function () { - return this.init.prototype.extend(this); - } - }; - }()); - - /** - * An array of 32-bit words. - * - * @property {Array} words The array of 32-bit words. - * @property {number} sigBytes The number of significant bytes in this word array. - */ - var WordArray = C_lib.WordArray = Base.extend({ - /** - * Initializes a newly created word array. - * - * @param {Array} words (Optional) An array of 32-bit words. - * @param {number} sigBytes (Optional) The number of significant bytes in the words. - * - * @example - * - * var wordArray = CryptoJS.lib.WordArray.create(); - * var wordArray = CryptoJS.lib.WordArray.create([0x00010203, 0x04050607]); - * var wordArray = CryptoJS.lib.WordArray.create([0x00010203, 0x04050607], 6); - */ - init: function (words, sigBytes) { - words = this.words = words || []; - - if (sigBytes != undefined) { - this.sigBytes = sigBytes; - } else { - this.sigBytes = words.length * 4; - } - }, - - /** - * Converts this word array to a string. - * - * @param {Encoder} encoder (Optional) The encoding strategy to use. Default: CryptoJS.enc.Hex - * - * @return {string} The stringified word array. - * - * @example - * - * var string = wordArray + ''; - * var string = wordArray.toString(); - * var string = wordArray.toString(CryptoJS.enc.Utf8); - */ - toString: function (encoder) { - return (encoder || Hex).stringify(this); - }, - - /** - * Concatenates a word array to this word array. - * - * @param {WordArray} wordArray The word array to append. - * - * @return {WordArray} This word array. - * - * @example - * - * wordArray1.concat(wordArray2); - */ - concat: function (wordArray) { - // Shortcuts - var thisWords = this.words; - var thatWords = wordArray.words; - var thisSigBytes = this.sigBytes; - var thatSigBytes = wordArray.sigBytes; - - // Clamp excess bits - this.clamp(); - - // Concat - if (thisSigBytes % 4) { - // Copy one byte at a time - for (var i = 0; i < thatSigBytes; i++) { - var thatByte = (thatWords[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - thisWords[(thisSigBytes + i) >>> 2] |= thatByte << (24 - ((thisSigBytes + i) % 4) * 8); - } - } else { - // Copy one word at a time - for (var j = 0; j < thatSigBytes; j += 4) { - thisWords[(thisSigBytes + j) >>> 2] = thatWords[j >>> 2]; - } - } - this.sigBytes += thatSigBytes; - - // Chainable - return this; - }, - - /** - * Removes insignificant bits. - * - * @example - * - * wordArray.clamp(); - */ - clamp: function () { - // Shortcuts - var words = this.words; - var sigBytes = this.sigBytes; - - // Clamp - words[sigBytes >>> 2] &= 0xffffffff << (32 - (sigBytes % 4) * 8); - words.length = Math.ceil(sigBytes / 4); - }, - - /** - * Creates a copy of this word array. - * - * @return {WordArray} The clone. - * - * @example - * - * var clone = wordArray.clone(); - */ - clone: function () { - var clone = Base.clone.call(this); - clone.words = this.words.slice(0); - - return clone; - }, - - /** - * Creates a word array filled with random bytes. - * - * @param {number} nBytes The number of random bytes to generate. - * - * @return {WordArray} The random word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.lib.WordArray.random(16); - */ - random: function (nBytes) { - var words = []; - - for (var i = 0; i < nBytes; i += 4) { - words.push(cryptoSecureRandomInt()); - } - - return new WordArray.init(words, nBytes); - } - }); - - /** - * Encoder namespace. - */ - var C_enc = C.enc = {}; - - /** - * Hex encoding strategy. - */ - var Hex = C_enc.Hex = { - /** - * Converts a word array to a hex string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The hex string. - * - * @static - * - * @example - * - * var hexString = CryptoJS.enc.Hex.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - - // Convert - var hexChars = []; - for (var i = 0; i < sigBytes; i++) { - var bite = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - hexChars.push((bite >>> 4).toString(16)); - hexChars.push((bite & 0x0f).toString(16)); - } - - return hexChars.join(''); - }, - - /** - * Converts a hex string to a word array. - * - * @param {string} hexStr The hex string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Hex.parse(hexString); - */ - parse: function (hexStr) { - // Shortcut - var hexStrLength = hexStr.length; - - // Convert - var words = []; - for (var i = 0; i < hexStrLength; i += 2) { - words[i >>> 3] |= parseInt(hexStr.substr(i, 2), 16) << (24 - (i % 8) * 4); - } - - return new WordArray.init(words, hexStrLength / 2); - } - }; - - /** - * Latin1 encoding strategy. - */ - var Latin1 = C_enc.Latin1 = { - /** - * Converts a word array to a Latin1 string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The Latin1 string. - * - * @static - * - * @example - * - * var latin1String = CryptoJS.enc.Latin1.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - - // Convert - var latin1Chars = []; - for (var i = 0; i < sigBytes; i++) { - var bite = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - latin1Chars.push(String.fromCharCode(bite)); - } - - return latin1Chars.join(''); - }, - - /** - * Converts a Latin1 string to a word array. - * - * @param {string} latin1Str The Latin1 string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Latin1.parse(latin1String); - */ - parse: function (latin1Str) { - // Shortcut - var latin1StrLength = latin1Str.length; - - // Convert - var words = []; - for (var i = 0; i < latin1StrLength; i++) { - words[i >>> 2] |= (latin1Str.charCodeAt(i) & 0xff) << (24 - (i % 4) * 8); - } - - return new WordArray.init(words, latin1StrLength); - } - }; - - /** - * UTF-8 encoding strategy. - */ - var Utf8 = C_enc.Utf8 = { - /** - * Converts a word array to a UTF-8 string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The UTF-8 string. - * - * @static - * - * @example - * - * var utf8String = CryptoJS.enc.Utf8.stringify(wordArray); - */ - stringify: function (wordArray) { - try { - return decodeURIComponent(escape(Latin1.stringify(wordArray))); - } catch (e) { - throw new Error('Malformed UTF-8 data'); - } - }, - - /** - * Converts a UTF-8 string to a word array. - * - * @param {string} utf8Str The UTF-8 string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Utf8.parse(utf8String); - */ - parse: function (utf8Str) { - return Latin1.parse(unescape(encodeURIComponent(utf8Str))); - } - }; - - /** - * Abstract buffered block algorithm template. - * - * The property blockSize must be implemented in a concrete subtype. - * - * @property {number} _minBufferSize The number of blocks that should be kept unprocessed in the buffer. Default: 0 - */ - var BufferedBlockAlgorithm = C_lib.BufferedBlockAlgorithm = Base.extend({ - /** - * Resets this block algorithm's data buffer to its initial state. - * - * @example - * - * bufferedBlockAlgorithm.reset(); - */ - reset: function () { - // Initial values - this._data = new WordArray.init(); - this._nDataBytes = 0; - }, - - /** - * Adds new data to this block algorithm's buffer. - * - * @param {WordArray|string} data The data to append. Strings are converted to a WordArray using UTF-8. - * - * @example - * - * bufferedBlockAlgorithm._append('data'); - * bufferedBlockAlgorithm._append(wordArray); - */ - _append: function (data) { - // Convert string to WordArray, else assume WordArray already - if (typeof data == 'string') { - data = Utf8.parse(data); - } - - // Append - this._data.concat(data); - this._nDataBytes += data.sigBytes; - }, - - /** - * Processes available data blocks. - * - * This method invokes _doProcessBlock(offset), which must be implemented by a concrete subtype. - * - * @param {boolean} doFlush Whether all blocks and partial blocks should be processed. - * - * @return {WordArray} The processed data. - * - * @example - * - * var processedData = bufferedBlockAlgorithm._process(); - * var processedData = bufferedBlockAlgorithm._process(!!'flush'); - */ - _process: function (doFlush) { - var processedWords; - - // Shortcuts - var data = this._data; - var dataWords = data.words; - var dataSigBytes = data.sigBytes; - var blockSize = this.blockSize; - var blockSizeBytes = blockSize * 4; - - // Count blocks ready - var nBlocksReady = dataSigBytes / blockSizeBytes; - if (doFlush) { - // Round up to include partial blocks - nBlocksReady = Math.ceil(nBlocksReady); - } else { - // Round down to include only full blocks, - // less the number of blocks that must remain in the buffer - nBlocksReady = Math.max((nBlocksReady | 0) - this._minBufferSize, 0); - } - - // Count words ready - var nWordsReady = nBlocksReady * blockSize; - - // Count bytes ready - var nBytesReady = Math.min(nWordsReady * 4, dataSigBytes); - - // Process blocks - if (nWordsReady) { - for (var offset = 0; offset < nWordsReady; offset += blockSize) { - // Perform concrete-algorithm logic - this._doProcessBlock(dataWords, offset); - } - - // Remove processed words - processedWords = dataWords.splice(0, nWordsReady); - data.sigBytes -= nBytesReady; - } - - // Return processed words - return new WordArray.init(processedWords, nBytesReady); - }, - - /** - * Creates a copy of this object. - * - * @return {Object} The clone. - * - * @example - * - * var clone = bufferedBlockAlgorithm.clone(); - */ - clone: function () { - var clone = Base.clone.call(this); - clone._data = this._data.clone(); - - return clone; - }, - - _minBufferSize: 0 - }); - - /** - * Abstract hasher template. - * - * @property {number} blockSize The number of 32-bit words this hasher operates on. Default: 16 (512 bits) - */ - var Hasher = C_lib.Hasher = BufferedBlockAlgorithm.extend({ - /** - * Configuration options. - */ - cfg: Base.extend(), - - /** - * Initializes a newly created hasher. - * - * @param {Object} cfg (Optional) The configuration options to use for this hash computation. - * - * @example - * - * var hasher = CryptoJS.algo.SHA256.create(); - */ - init: function (cfg) { - // Apply config defaults - this.cfg = this.cfg.extend(cfg); - - // Set initial values - this.reset(); - }, - - /** - * Resets this hasher to its initial state. - * - * @example - * - * hasher.reset(); - */ - reset: function () { - // Reset data buffer - BufferedBlockAlgorithm.reset.call(this); - - // Perform concrete-hasher logic - this._doReset(); - }, - - /** - * Updates this hasher with a message. - * - * @param {WordArray|string} messageUpdate The message to append. - * - * @return {Hasher} This hasher. - * - * @example - * - * hasher.update('message'); - * hasher.update(wordArray); - */ - update: function (messageUpdate) { - // Append - this._append(messageUpdate); - - // Update the hash - this._process(); - - // Chainable - return this; - }, - - /** - * Finalizes the hash computation. - * Note that the finalize operation is effectively a destructive, read-once operation. - * - * @param {WordArray|string} messageUpdate (Optional) A final message update. - * - * @return {WordArray} The hash. - * - * @example - * - * var hash = hasher.finalize(); - * var hash = hasher.finalize('message'); - * var hash = hasher.finalize(wordArray); - */ - finalize: function (messageUpdate) { - // Final message update - if (messageUpdate) { - this._append(messageUpdate); - } - - // Perform concrete-hasher logic - var hash = this._doFinalize(); - - return hash; - }, - - blockSize: 512/32, - - /** - * Creates a shortcut function to a hasher's object interface. - * - * @param {Hasher} hasher The hasher to create a helper for. - * - * @return {Function} The shortcut function. - * - * @static - * - * @example - * - * var SHA256 = CryptoJS.lib.Hasher._createHelper(CryptoJS.algo.SHA256); - */ - _createHelper: function (hasher) { - return function (message, cfg) { - return new hasher.init(cfg).finalize(message); - }; - }, - - /** - * Creates a shortcut function to the HMAC's object interface. - * - * @param {Hasher} hasher The hasher to use in this HMAC helper. - * - * @return {Function} The shortcut function. - * - * @static - * - * @example - * - * var HmacSHA256 = CryptoJS.lib.Hasher._createHmacHelper(CryptoJS.algo.SHA256); - */ - _createHmacHelper: function (hasher) { - return function (message, key) { - return new C_algo.HMAC.init(hasher, key).finalize(message); - }; - } - }); - - /** - * Algorithm namespace. - */ - var C_algo = C.algo = {}; - - return C; - }(Math)); - - - return CryptoJS; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/crypto-js.js b/www/AESBox/crypto-js-4.1.1/crypto-js.js deleted file mode 100644 index 27f0a62..0000000 --- a/www/AESBox/crypto-js-4.1.1/crypto-js.js +++ /dev/null @@ -1,6191 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(); - } - else if (typeof define === "function" && define.amd) { - // AMD - define([], factory); - } - else { - // Global (browser) - root.CryptoJS = factory(); - } -}(this, function () { - - /*globals window, global, require*/ - - /** - * CryptoJS core components. - */ - var CryptoJS = CryptoJS || (function (Math, undefined) { - - var crypto; - - // Native crypto from window (Browser) - if (typeof window !== 'undefined' && window.crypto) { - crypto = window.crypto; - } - - // Native crypto in web worker (Browser) - if (typeof self !== 'undefined' && self.crypto) { - crypto = self.crypto; - } - - // Native crypto from worker - if (typeof globalThis !== 'undefined' && globalThis.crypto) { - crypto = globalThis.crypto; - } - - // Native (experimental IE 11) crypto from window (Browser) - if (!crypto && typeof window !== 'undefined' && window.msCrypto) { - crypto = window.msCrypto; - } - - // Native crypto from global (NodeJS) - if (!crypto && typeof global !== 'undefined' && global.crypto) { - crypto = global.crypto; - } - - // Native crypto import via require (NodeJS) - if (!crypto && typeof require === 'function') { - try { - crypto = require('crypto'); - } catch (err) {} - } - - /* - * Cryptographically secure pseudorandom number generator - * - * As Math.random() is cryptographically not safe to use - */ - var cryptoSecureRandomInt = function () { - if (crypto) { - // Use getRandomValues method (Browser) - if (typeof crypto.getRandomValues === 'function') { - try { - return crypto.getRandomValues(new Uint32Array(1))[0]; - } catch (err) {} - } - - // Use randomBytes method (NodeJS) - if (typeof crypto.randomBytes === 'function') { - try { - return crypto.randomBytes(4).readInt32LE(); - } catch (err) {} - } - } - - throw new Error('Native crypto module could not be used to get secure random number.'); - }; - - /* - * Local polyfill of Object.create - - */ - var create = Object.create || (function () { - function F() {} - - return function (obj) { - var subtype; - - F.prototype = obj; - - subtype = new F(); - - F.prototype = null; - - return subtype; - }; - }()); - - /** - * CryptoJS namespace. - */ - var C = {}; - - /** - * Library namespace. - */ - var C_lib = C.lib = {}; - - /** - * Base object for prototypal inheritance. - */ - var Base = C_lib.Base = (function () { - - - return { - /** - * Creates a new object that inherits from this object. - * - * @param {Object} overrides Properties to copy into the new object. - * - * @return {Object} The new object. - * - * @static - * - * @example - * - * var MyType = CryptoJS.lib.Base.extend({ - * field: 'value', - * - * method: function () { - * } - * }); - */ - extend: function (overrides) { - // Spawn - var subtype = create(this); - - // Augment - if (overrides) { - subtype.mixIn(overrides); - } - - // Create default initializer - if (!subtype.hasOwnProperty('init') || this.init === subtype.init) { - subtype.init = function () { - subtype.$super.init.apply(this, arguments); - }; - } - - // Initializer's prototype is the subtype object - subtype.init.prototype = subtype; - - // Reference supertype - subtype.$super = this; - - return subtype; - }, - - /** - * Extends this object and runs the init method. - * Arguments to create() will be passed to init(). - * - * @return {Object} The new object. - * - * @static - * - * @example - * - * var instance = MyType.create(); - */ - create: function () { - var instance = this.extend(); - instance.init.apply(instance, arguments); - - return instance; - }, - - /** - * Initializes a newly created object. - * Override this method to add some logic when your objects are created. - * - * @example - * - * var MyType = CryptoJS.lib.Base.extend({ - * init: function () { - * // ... - * } - * }); - */ - init: function () { - }, - - /** - * Copies properties into this object. - * - * @param {Object} properties The properties to mix in. - * - * @example - * - * MyType.mixIn({ - * field: 'value' - * }); - */ - mixIn: function (properties) { - for (var propertyName in properties) { - if (properties.hasOwnProperty(propertyName)) { - this[propertyName] = properties[propertyName]; - } - } - - // IE won't copy toString using the loop above - if (properties.hasOwnProperty('toString')) { - this.toString = properties.toString; - } - }, - - /** - * Creates a copy of this object. - * - * @return {Object} The clone. - * - * @example - * - * var clone = instance.clone(); - */ - clone: function () { - return this.init.prototype.extend(this); - } - }; - }()); - - /** - * An array of 32-bit words. - * - * @property {Array} words The array of 32-bit words. - * @property {number} sigBytes The number of significant bytes in this word array. - */ - var WordArray = C_lib.WordArray = Base.extend({ - /** - * Initializes a newly created word array. - * - * @param {Array} words (Optional) An array of 32-bit words. - * @param {number} sigBytes (Optional) The number of significant bytes in the words. - * - * @example - * - * var wordArray = CryptoJS.lib.WordArray.create(); - * var wordArray = CryptoJS.lib.WordArray.create([0x00010203, 0x04050607]); - * var wordArray = CryptoJS.lib.WordArray.create([0x00010203, 0x04050607], 6); - */ - init: function (words, sigBytes) { - words = this.words = words || []; - - if (sigBytes != undefined) { - this.sigBytes = sigBytes; - } else { - this.sigBytes = words.length * 4; - } - }, - - /** - * Converts this word array to a string. - * - * @param {Encoder} encoder (Optional) The encoding strategy to use. Default: CryptoJS.enc.Hex - * - * @return {string} The stringified word array. - * - * @example - * - * var string = wordArray + ''; - * var string = wordArray.toString(); - * var string = wordArray.toString(CryptoJS.enc.Utf8); - */ - toString: function (encoder) { - return (encoder || Hex).stringify(this); - }, - - /** - * Concatenates a word array to this word array. - * - * @param {WordArray} wordArray The word array to append. - * - * @return {WordArray} This word array. - * - * @example - * - * wordArray1.concat(wordArray2); - */ - concat: function (wordArray) { - // Shortcuts - var thisWords = this.words; - var thatWords = wordArray.words; - var thisSigBytes = this.sigBytes; - var thatSigBytes = wordArray.sigBytes; - - // Clamp excess bits - this.clamp(); - - // Concat - if (thisSigBytes % 4) { - // Copy one byte at a time - for (var i = 0; i < thatSigBytes; i++) { - var thatByte = (thatWords[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - thisWords[(thisSigBytes + i) >>> 2] |= thatByte << (24 - ((thisSigBytes + i) % 4) * 8); - } - } else { - // Copy one word at a time - for (var j = 0; j < thatSigBytes; j += 4) { - thisWords[(thisSigBytes + j) >>> 2] = thatWords[j >>> 2]; - } - } - this.sigBytes += thatSigBytes; - - // Chainable - return this; - }, - - /** - * Removes insignificant bits. - * - * @example - * - * wordArray.clamp(); - */ - clamp: function () { - // Shortcuts - var words = this.words; - var sigBytes = this.sigBytes; - - // Clamp - words[sigBytes >>> 2] &= 0xffffffff << (32 - (sigBytes % 4) * 8); - words.length = Math.ceil(sigBytes / 4); - }, - - /** - * Creates a copy of this word array. - * - * @return {WordArray} The clone. - * - * @example - * - * var clone = wordArray.clone(); - */ - clone: function () { - var clone = Base.clone.call(this); - clone.words = this.words.slice(0); - - return clone; - }, - - /** - * Creates a word array filled with random bytes. - * - * @param {number} nBytes The number of random bytes to generate. - * - * @return {WordArray} The random word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.lib.WordArray.random(16); - */ - random: function (nBytes) { - var words = []; - - for (var i = 0; i < nBytes; i += 4) { - words.push(cryptoSecureRandomInt()); - } - - return new WordArray.init(words, nBytes); - } - }); - - /** - * Encoder namespace. - */ - var C_enc = C.enc = {}; - - /** - * Hex encoding strategy. - */ - var Hex = C_enc.Hex = { - /** - * Converts a word array to a hex string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The hex string. - * - * @static - * - * @example - * - * var hexString = CryptoJS.enc.Hex.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - - // Convert - var hexChars = []; - for (var i = 0; i < sigBytes; i++) { - var bite = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - hexChars.push((bite >>> 4).toString(16)); - hexChars.push((bite & 0x0f).toString(16)); - } - - return hexChars.join(''); - }, - - /** - * Converts a hex string to a word array. - * - * @param {string} hexStr The hex string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Hex.parse(hexString); - */ - parse: function (hexStr) { - // Shortcut - var hexStrLength = hexStr.length; - - // Convert - var words = []; - for (var i = 0; i < hexStrLength; i += 2) { - words[i >>> 3] |= parseInt(hexStr.substr(i, 2), 16) << (24 - (i % 8) * 4); - } - - return new WordArray.init(words, hexStrLength / 2); - } - }; - - /** - * Latin1 encoding strategy. - */ - var Latin1 = C_enc.Latin1 = { - /** - * Converts a word array to a Latin1 string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The Latin1 string. - * - * @static - * - * @example - * - * var latin1String = CryptoJS.enc.Latin1.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - - // Convert - var latin1Chars = []; - for (var i = 0; i < sigBytes; i++) { - var bite = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - latin1Chars.push(String.fromCharCode(bite)); - } - - return latin1Chars.join(''); - }, - - /** - * Converts a Latin1 string to a word array. - * - * @param {string} latin1Str The Latin1 string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Latin1.parse(latin1String); - */ - parse: function (latin1Str) { - // Shortcut - var latin1StrLength = latin1Str.length; - - // Convert - var words = []; - for (var i = 0; i < latin1StrLength; i++) { - words[i >>> 2] |= (latin1Str.charCodeAt(i) & 0xff) << (24 - (i % 4) * 8); - } - - return new WordArray.init(words, latin1StrLength); - } - }; - - /** - * UTF-8 encoding strategy. - */ - var Utf8 = C_enc.Utf8 = { - /** - * Converts a word array to a UTF-8 string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The UTF-8 string. - * - * @static - * - * @example - * - * var utf8String = CryptoJS.enc.Utf8.stringify(wordArray); - */ - stringify: function (wordArray) { - try { - return decodeURIComponent(escape(Latin1.stringify(wordArray))); - } catch (e) { - throw new Error('Malformed UTF-8 data'); - } - }, - - /** - * Converts a UTF-8 string to a word array. - * - * @param {string} utf8Str The UTF-8 string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Utf8.parse(utf8String); - */ - parse: function (utf8Str) { - return Latin1.parse(unescape(encodeURIComponent(utf8Str))); - } - }; - - /** - * Abstract buffered block algorithm template. - * - * The property blockSize must be implemented in a concrete subtype. - * - * @property {number} _minBufferSize The number of blocks that should be kept unprocessed in the buffer. Default: 0 - */ - var BufferedBlockAlgorithm = C_lib.BufferedBlockAlgorithm = Base.extend({ - /** - * Resets this block algorithm's data buffer to its initial state. - * - * @example - * - * bufferedBlockAlgorithm.reset(); - */ - reset: function () { - // Initial values - this._data = new WordArray.init(); - this._nDataBytes = 0; - }, - - /** - * Adds new data to this block algorithm's buffer. - * - * @param {WordArray|string} data The data to append. Strings are converted to a WordArray using UTF-8. - * - * @example - * - * bufferedBlockAlgorithm._append('data'); - * bufferedBlockAlgorithm._append(wordArray); - */ - _append: function (data) { - // Convert string to WordArray, else assume WordArray already - if (typeof data == 'string') { - data = Utf8.parse(data); - } - - // Append - this._data.concat(data); - this._nDataBytes += data.sigBytes; - }, - - /** - * Processes available data blocks. - * - * This method invokes _doProcessBlock(offset), which must be implemented by a concrete subtype. - * - * @param {boolean} doFlush Whether all blocks and partial blocks should be processed. - * - * @return {WordArray} The processed data. - * - * @example - * - * var processedData = bufferedBlockAlgorithm._process(); - * var processedData = bufferedBlockAlgorithm._process(!!'flush'); - */ - _process: function (doFlush) { - var processedWords; - - // Shortcuts - var data = this._data; - var dataWords = data.words; - var dataSigBytes = data.sigBytes; - var blockSize = this.blockSize; - var blockSizeBytes = blockSize * 4; - - // Count blocks ready - var nBlocksReady = dataSigBytes / blockSizeBytes; - if (doFlush) { - // Round up to include partial blocks - nBlocksReady = Math.ceil(nBlocksReady); - } else { - // Round down to include only full blocks, - // less the number of blocks that must remain in the buffer - nBlocksReady = Math.max((nBlocksReady | 0) - this._minBufferSize, 0); - } - - // Count words ready - var nWordsReady = nBlocksReady * blockSize; - - // Count bytes ready - var nBytesReady = Math.min(nWordsReady * 4, dataSigBytes); - - // Process blocks - if (nWordsReady) { - for (var offset = 0; offset < nWordsReady; offset += blockSize) { - // Perform concrete-algorithm logic - this._doProcessBlock(dataWords, offset); - } - - // Remove processed words - processedWords = dataWords.splice(0, nWordsReady); - data.sigBytes -= nBytesReady; - } - - // Return processed words - return new WordArray.init(processedWords, nBytesReady); - }, - - /** - * Creates a copy of this object. - * - * @return {Object} The clone. - * - * @example - * - * var clone = bufferedBlockAlgorithm.clone(); - */ - clone: function () { - var clone = Base.clone.call(this); - clone._data = this._data.clone(); - - return clone; - }, - - _minBufferSize: 0 - }); - - /** - * Abstract hasher template. - * - * @property {number} blockSize The number of 32-bit words this hasher operates on. Default: 16 (512 bits) - */ - var Hasher = C_lib.Hasher = BufferedBlockAlgorithm.extend({ - /** - * Configuration options. - */ - cfg: Base.extend(), - - /** - * Initializes a newly created hasher. - * - * @param {Object} cfg (Optional) The configuration options to use for this hash computation. - * - * @example - * - * var hasher = CryptoJS.algo.SHA256.create(); - */ - init: function (cfg) { - // Apply config defaults - this.cfg = this.cfg.extend(cfg); - - // Set initial values - this.reset(); - }, - - /** - * Resets this hasher to its initial state. - * - * @example - * - * hasher.reset(); - */ - reset: function () { - // Reset data buffer - BufferedBlockAlgorithm.reset.call(this); - - // Perform concrete-hasher logic - this._doReset(); - }, - - /** - * Updates this hasher with a message. - * - * @param {WordArray|string} messageUpdate The message to append. - * - * @return {Hasher} This hasher. - * - * @example - * - * hasher.update('message'); - * hasher.update(wordArray); - */ - update: function (messageUpdate) { - // Append - this._append(messageUpdate); - - // Update the hash - this._process(); - - // Chainable - return this; - }, - - /** - * Finalizes the hash computation. - * Note that the finalize operation is effectively a destructive, read-once operation. - * - * @param {WordArray|string} messageUpdate (Optional) A final message update. - * - * @return {WordArray} The hash. - * - * @example - * - * var hash = hasher.finalize(); - * var hash = hasher.finalize('message'); - * var hash = hasher.finalize(wordArray); - */ - finalize: function (messageUpdate) { - // Final message update - if (messageUpdate) { - this._append(messageUpdate); - } - - // Perform concrete-hasher logic - var hash = this._doFinalize(); - - return hash; - }, - - blockSize: 512/32, - - /** - * Creates a shortcut function to a hasher's object interface. - * - * @param {Hasher} hasher The hasher to create a helper for. - * - * @return {Function} The shortcut function. - * - * @static - * - * @example - * - * var SHA256 = CryptoJS.lib.Hasher._createHelper(CryptoJS.algo.SHA256); - */ - _createHelper: function (hasher) { - return function (message, cfg) { - return new hasher.init(cfg).finalize(message); - }; - }, - - /** - * Creates a shortcut function to the HMAC's object interface. - * - * @param {Hasher} hasher The hasher to use in this HMAC helper. - * - * @return {Function} The shortcut function. - * - * @static - * - * @example - * - * var HmacSHA256 = CryptoJS.lib.Hasher._createHmacHelper(CryptoJS.algo.SHA256); - */ - _createHmacHelper: function (hasher) { - return function (message, key) { - return new C_algo.HMAC.init(hasher, key).finalize(message); - }; - } - }); - - /** - * Algorithm namespace. - */ - var C_algo = C.algo = {}; - - return C; - }(Math)); - - - (function (undefined) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var X32WordArray = C_lib.WordArray; - - /** - * x64 namespace. - */ - var C_x64 = C.x64 = {}; - - /** - * A 64-bit word. - */ - var X64Word = C_x64.Word = Base.extend({ - /** - * Initializes a newly created 64-bit word. - * - * @param {number} high The high 32 bits. - * @param {number} low The low 32 bits. - * - * @example - * - * var x64Word = CryptoJS.x64.Word.create(0x00010203, 0x04050607); - */ - init: function (high, low) { - this.high = high; - this.low = low; - } - - /** - * Bitwise NOTs this word. - * - * @return {X64Word} A new x64-Word object after negating. - * - * @example - * - * var negated = x64Word.not(); - */ - // not: function () { - // var high = ~this.high; - // var low = ~this.low; - - // return X64Word.create(high, low); - // }, - - /** - * Bitwise ANDs this word with the passed word. - * - * @param {X64Word} word The x64-Word to AND with this word. - * - * @return {X64Word} A new x64-Word object after ANDing. - * - * @example - * - * var anded = x64Word.and(anotherX64Word); - */ - // and: function (word) { - // var high = this.high & word.high; - // var low = this.low & word.low; - - // return X64Word.create(high, low); - // }, - - /** - * Bitwise ORs this word with the passed word. - * - * @param {X64Word} word The x64-Word to OR with this word. - * - * @return {X64Word} A new x64-Word object after ORing. - * - * @example - * - * var ored = x64Word.or(anotherX64Word); - */ - // or: function (word) { - // var high = this.high | word.high; - // var low = this.low | word.low; - - // return X64Word.create(high, low); - // }, - - /** - * Bitwise XORs this word with the passed word. - * - * @param {X64Word} word The x64-Word to XOR with this word. - * - * @return {X64Word} A new x64-Word object after XORing. - * - * @example - * - * var xored = x64Word.xor(anotherX64Word); - */ - // xor: function (word) { - // var high = this.high ^ word.high; - // var low = this.low ^ word.low; - - // return X64Word.create(high, low); - // }, - - /** - * Shifts this word n bits to the left. - * - * @param {number} n The number of bits to shift. - * - * @return {X64Word} A new x64-Word object after shifting. - * - * @example - * - * var shifted = x64Word.shiftL(25); - */ - // shiftL: function (n) { - // if (n < 32) { - // var high = (this.high << n) | (this.low >>> (32 - n)); - // var low = this.low << n; - // } else { - // var high = this.low << (n - 32); - // var low = 0; - // } - - // return X64Word.create(high, low); - // }, - - /** - * Shifts this word n bits to the right. - * - * @param {number} n The number of bits to shift. - * - * @return {X64Word} A new x64-Word object after shifting. - * - * @example - * - * var shifted = x64Word.shiftR(7); - */ - // shiftR: function (n) { - // if (n < 32) { - // var low = (this.low >>> n) | (this.high << (32 - n)); - // var high = this.high >>> n; - // } else { - // var low = this.high >>> (n - 32); - // var high = 0; - // } - - // return X64Word.create(high, low); - // }, - - /** - * Rotates this word n bits to the left. - * - * @param {number} n The number of bits to rotate. - * - * @return {X64Word} A new x64-Word object after rotating. - * - * @example - * - * var rotated = x64Word.rotL(25); - */ - // rotL: function (n) { - // return this.shiftL(n).or(this.shiftR(64 - n)); - // }, - - /** - * Rotates this word n bits to the right. - * - * @param {number} n The number of bits to rotate. - * - * @return {X64Word} A new x64-Word object after rotating. - * - * @example - * - * var rotated = x64Word.rotR(7); - */ - // rotR: function (n) { - // return this.shiftR(n).or(this.shiftL(64 - n)); - // }, - - /** - * Adds this word with the passed word. - * - * @param {X64Word} word The x64-Word to add with this word. - * - * @return {X64Word} A new x64-Word object after adding. - * - * @example - * - * var added = x64Word.add(anotherX64Word); - */ - // add: function (word) { - // var low = (this.low + word.low) | 0; - // var carry = (low >>> 0) < (this.low >>> 0) ? 1 : 0; - // var high = (this.high + word.high + carry) | 0; - - // return X64Word.create(high, low); - // } - }); - - /** - * An array of 64-bit words. - * - * @property {Array} words The array of CryptoJS.x64.Word objects. - * @property {number} sigBytes The number of significant bytes in this word array. - */ - var X64WordArray = C_x64.WordArray = Base.extend({ - /** - * Initializes a newly created word array. - * - * @param {Array} words (Optional) An array of CryptoJS.x64.Word objects. - * @param {number} sigBytes (Optional) The number of significant bytes in the words. - * - * @example - * - * var wordArray = CryptoJS.x64.WordArray.create(); - * - * var wordArray = CryptoJS.x64.WordArray.create([ - * CryptoJS.x64.Word.create(0x00010203, 0x04050607), - * CryptoJS.x64.Word.create(0x18191a1b, 0x1c1d1e1f) - * ]); - * - * var wordArray = CryptoJS.x64.WordArray.create([ - * CryptoJS.x64.Word.create(0x00010203, 0x04050607), - * CryptoJS.x64.Word.create(0x18191a1b, 0x1c1d1e1f) - * ], 10); - */ - init: function (words, sigBytes) { - words = this.words = words || []; - - if (sigBytes != undefined) { - this.sigBytes = sigBytes; - } else { - this.sigBytes = words.length * 8; - } - }, - - /** - * Converts this 64-bit word array to a 32-bit word array. - * - * @return {CryptoJS.lib.WordArray} This word array's data as a 32-bit word array. - * - * @example - * - * var x32WordArray = x64WordArray.toX32(); - */ - toX32: function () { - // Shortcuts - var x64Words = this.words; - var x64WordsLength = x64Words.length; - - // Convert - var x32Words = []; - for (var i = 0; i < x64WordsLength; i++) { - var x64Word = x64Words[i]; - x32Words.push(x64Word.high); - x32Words.push(x64Word.low); - } - - return X32WordArray.create(x32Words, this.sigBytes); - }, - - /** - * Creates a copy of this word array. - * - * @return {X64WordArray} The clone. - * - * @example - * - * var clone = x64WordArray.clone(); - */ - clone: function () { - var clone = Base.clone.call(this); - - // Clone "words" array - var words = clone.words = this.words.slice(0); - - // Clone each X64Word object - var wordsLength = words.length; - for (var i = 0; i < wordsLength; i++) { - words[i] = words[i].clone(); - } - - return clone; - } - }); - }()); - - - (function () { - // Check if typed arrays are supported - if (typeof ArrayBuffer != 'function') { - return; - } - - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - - // Reference original init - var superInit = WordArray.init; - - // Augment WordArray.init to handle typed arrays - var subInit = WordArray.init = function (typedArray) { - // Convert buffers to uint8 - if (typedArray instanceof ArrayBuffer) { - typedArray = new Uint8Array(typedArray); - } - - // Convert other array views to uint8 - if ( - typedArray instanceof Int8Array || - (typeof Uint8ClampedArray !== "undefined" && typedArray instanceof Uint8ClampedArray) || - typedArray instanceof Int16Array || - typedArray instanceof Uint16Array || - typedArray instanceof Int32Array || - typedArray instanceof Uint32Array || - typedArray instanceof Float32Array || - typedArray instanceof Float64Array - ) { - typedArray = new Uint8Array(typedArray.buffer, typedArray.byteOffset, typedArray.byteLength); - } - - // Handle Uint8Array - if (typedArray instanceof Uint8Array) { - // Shortcut - var typedArrayByteLength = typedArray.byteLength; - - // Extract bytes - var words = []; - for (var i = 0; i < typedArrayByteLength; i++) { - words[i >>> 2] |= typedArray[i] << (24 - (i % 4) * 8); - } - - // Initialize this word array - superInit.call(this, words, typedArrayByteLength); - } else { - // Else call normal init - superInit.apply(this, arguments); - } - }; - - subInit.prototype = WordArray; - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var C_enc = C.enc; - - /** - * UTF-16 BE encoding strategy. - */ - var Utf16BE = C_enc.Utf16 = C_enc.Utf16BE = { - /** - * Converts a word array to a UTF-16 BE string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The UTF-16 BE string. - * - * @static - * - * @example - * - * var utf16String = CryptoJS.enc.Utf16.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - - // Convert - var utf16Chars = []; - for (var i = 0; i < sigBytes; i += 2) { - var codePoint = (words[i >>> 2] >>> (16 - (i % 4) * 8)) & 0xffff; - utf16Chars.push(String.fromCharCode(codePoint)); - } - - return utf16Chars.join(''); - }, - - /** - * Converts a UTF-16 BE string to a word array. - * - * @param {string} utf16Str The UTF-16 BE string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Utf16.parse(utf16String); - */ - parse: function (utf16Str) { - // Shortcut - var utf16StrLength = utf16Str.length; - - // Convert - var words = []; - for (var i = 0; i < utf16StrLength; i++) { - words[i >>> 1] |= utf16Str.charCodeAt(i) << (16 - (i % 2) * 16); - } - - return WordArray.create(words, utf16StrLength * 2); - } - }; - - /** - * UTF-16 LE encoding strategy. - */ - C_enc.Utf16LE = { - /** - * Converts a word array to a UTF-16 LE string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The UTF-16 LE string. - * - * @static - * - * @example - * - * var utf16Str = CryptoJS.enc.Utf16LE.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - - // Convert - var utf16Chars = []; - for (var i = 0; i < sigBytes; i += 2) { - var codePoint = swapEndian((words[i >>> 2] >>> (16 - (i % 4) * 8)) & 0xffff); - utf16Chars.push(String.fromCharCode(codePoint)); - } - - return utf16Chars.join(''); - }, - - /** - * Converts a UTF-16 LE string to a word array. - * - * @param {string} utf16Str The UTF-16 LE string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Utf16LE.parse(utf16Str); - */ - parse: function (utf16Str) { - // Shortcut - var utf16StrLength = utf16Str.length; - - // Convert - var words = []; - for (var i = 0; i < utf16StrLength; i++) { - words[i >>> 1] |= swapEndian(utf16Str.charCodeAt(i) << (16 - (i % 2) * 16)); - } - - return WordArray.create(words, utf16StrLength * 2); - } - }; - - function swapEndian(word) { - return ((word << 8) & 0xff00ff00) | ((word >>> 8) & 0x00ff00ff); - } - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var C_enc = C.enc; - - /** - * Base64 encoding strategy. - */ - var Base64 = C_enc.Base64 = { - /** - * Converts a word array to a Base64 string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The Base64 string. - * - * @static - * - * @example - * - * var base64String = CryptoJS.enc.Base64.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - var map = this._map; - - // Clamp excess bits - wordArray.clamp(); - - // Convert - var base64Chars = []; - for (var i = 0; i < sigBytes; i += 3) { - var byte1 = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - var byte2 = (words[(i + 1) >>> 2] >>> (24 - ((i + 1) % 4) * 8)) & 0xff; - var byte3 = (words[(i + 2) >>> 2] >>> (24 - ((i + 2) % 4) * 8)) & 0xff; - - var triplet = (byte1 << 16) | (byte2 << 8) | byte3; - - for (var j = 0; (j < 4) && (i + j * 0.75 < sigBytes); j++) { - base64Chars.push(map.charAt((triplet >>> (6 * (3 - j))) & 0x3f)); - } - } - - // Add padding - var paddingChar = map.charAt(64); - if (paddingChar) { - while (base64Chars.length % 4) { - base64Chars.push(paddingChar); - } - } - - return base64Chars.join(''); - }, - - /** - * Converts a Base64 string to a word array. - * - * @param {string} base64Str The Base64 string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Base64.parse(base64String); - */ - parse: function (base64Str) { - // Shortcuts - var base64StrLength = base64Str.length; - var map = this._map; - var reverseMap = this._reverseMap; - - if (!reverseMap) { - reverseMap = this._reverseMap = []; - for (var j = 0; j < map.length; j++) { - reverseMap[map.charCodeAt(j)] = j; - } - } - - // Ignore padding - var paddingChar = map.charAt(64); - if (paddingChar) { - var paddingIndex = base64Str.indexOf(paddingChar); - if (paddingIndex !== -1) { - base64StrLength = paddingIndex; - } - } - - // Convert - return parseLoop(base64Str, base64StrLength, reverseMap); - - }, - - _map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=' - }; - - function parseLoop(base64Str, base64StrLength, reverseMap) { - var words = []; - var nBytes = 0; - for (var i = 0; i < base64StrLength; i++) { - if (i % 4) { - var bits1 = reverseMap[base64Str.charCodeAt(i - 1)] << ((i % 4) * 2); - var bits2 = reverseMap[base64Str.charCodeAt(i)] >>> (6 - (i % 4) * 2); - var bitsCombined = bits1 | bits2; - words[nBytes >>> 2] |= bitsCombined << (24 - (nBytes % 4) * 8); - nBytes++; - } - } - return WordArray.create(words, nBytes); - } - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var C_enc = C.enc; - - /** - * Base64url encoding strategy. - */ - var Base64url = C_enc.Base64url = { - /** - * Converts a word array to a Base64url string. - * - * @param {WordArray} wordArray The word array. - * - * @param {boolean} urlSafe Whether to use url safe - * - * @return {string} The Base64url string. - * - * @static - * - * @example - * - * var base64String = CryptoJS.enc.Base64url.stringify(wordArray); - */ - stringify: function (wordArray, urlSafe=true) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - var map = urlSafe ? this._safe_map : this._map; - - // Clamp excess bits - wordArray.clamp(); - - // Convert - var base64Chars = []; - for (var i = 0; i < sigBytes; i += 3) { - var byte1 = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - var byte2 = (words[(i + 1) >>> 2] >>> (24 - ((i + 1) % 4) * 8)) & 0xff; - var byte3 = (words[(i + 2) >>> 2] >>> (24 - ((i + 2) % 4) * 8)) & 0xff; - - var triplet = (byte1 << 16) | (byte2 << 8) | byte3; - - for (var j = 0; (j < 4) && (i + j * 0.75 < sigBytes); j++) { - base64Chars.push(map.charAt((triplet >>> (6 * (3 - j))) & 0x3f)); - } - } - - // Add padding - var paddingChar = map.charAt(64); - if (paddingChar) { - while (base64Chars.length % 4) { - base64Chars.push(paddingChar); - } - } - - return base64Chars.join(''); - }, - - /** - * Converts a Base64url string to a word array. - * - * @param {string} base64Str The Base64url string. - * - * @param {boolean} urlSafe Whether to use url safe - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Base64url.parse(base64String); - */ - parse: function (base64Str, urlSafe=true) { - // Shortcuts - var base64StrLength = base64Str.length; - var map = urlSafe ? this._safe_map : this._map; - var reverseMap = this._reverseMap; - - if (!reverseMap) { - reverseMap = this._reverseMap = []; - for (var j = 0; j < map.length; j++) { - reverseMap[map.charCodeAt(j)] = j; - } - } - - // Ignore padding - var paddingChar = map.charAt(64); - if (paddingChar) { - var paddingIndex = base64Str.indexOf(paddingChar); - if (paddingIndex !== -1) { - base64StrLength = paddingIndex; - } - } - - // Convert - return parseLoop(base64Str, base64StrLength, reverseMap); - - }, - - _map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=', - _safe_map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_', - }; - - function parseLoop(base64Str, base64StrLength, reverseMap) { - var words = []; - var nBytes = 0; - for (var i = 0; i < base64StrLength; i++) { - if (i % 4) { - var bits1 = reverseMap[base64Str.charCodeAt(i - 1)] << ((i % 4) * 2); - var bits2 = reverseMap[base64Str.charCodeAt(i)] >>> (6 - (i % 4) * 2); - var bitsCombined = bits1 | bits2; - words[nBytes >>> 2] |= bitsCombined << (24 - (nBytes % 4) * 8); - nBytes++; - } - } - return WordArray.create(words, nBytes); - } - }()); - - (function (Math) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_algo = C.algo; - - // Constants table - var T = []; - - // Compute constants - (function () { - for (var i = 0; i < 64; i++) { - T[i] = (Math.abs(Math.sin(i + 1)) * 0x100000000) | 0; - } - }()); - - /** - * MD5 hash algorithm. - */ - var MD5 = C_algo.MD5 = Hasher.extend({ - _doReset: function () { - this._hash = new WordArray.init([ - 0x67452301, 0xefcdab89, - 0x98badcfe, 0x10325476 - ]); - }, - - _doProcessBlock: function (M, offset) { - // Swap endian - for (var i = 0; i < 16; i++) { - // Shortcuts - var offset_i = offset + i; - var M_offset_i = M[offset_i]; - - M[offset_i] = ( - (((M_offset_i << 8) | (M_offset_i >>> 24)) & 0x00ff00ff) | - (((M_offset_i << 24) | (M_offset_i >>> 8)) & 0xff00ff00) - ); - } - - // Shortcuts - var H = this._hash.words; - - var M_offset_0 = M[offset + 0]; - var M_offset_1 = M[offset + 1]; - var M_offset_2 = M[offset + 2]; - var M_offset_3 = M[offset + 3]; - var M_offset_4 = M[offset + 4]; - var M_offset_5 = M[offset + 5]; - var M_offset_6 = M[offset + 6]; - var M_offset_7 = M[offset + 7]; - var M_offset_8 = M[offset + 8]; - var M_offset_9 = M[offset + 9]; - var M_offset_10 = M[offset + 10]; - var M_offset_11 = M[offset + 11]; - var M_offset_12 = M[offset + 12]; - var M_offset_13 = M[offset + 13]; - var M_offset_14 = M[offset + 14]; - var M_offset_15 = M[offset + 15]; - - // Working varialbes - var a = H[0]; - var b = H[1]; - var c = H[2]; - var d = H[3]; - - // Computation - a = FF(a, b, c, d, M_offset_0, 7, T[0]); - d = FF(d, a, b, c, M_offset_1, 12, T[1]); - c = FF(c, d, a, b, M_offset_2, 17, T[2]); - b = FF(b, c, d, a, M_offset_3, 22, T[3]); - a = FF(a, b, c, d, M_offset_4, 7, T[4]); - d = FF(d, a, b, c, M_offset_5, 12, T[5]); - c = FF(c, d, a, b, M_offset_6, 17, T[6]); - b = FF(b, c, d, a, M_offset_7, 22, T[7]); - a = FF(a, b, c, d, M_offset_8, 7, T[8]); - d = FF(d, a, b, c, M_offset_9, 12, T[9]); - c = FF(c, d, a, b, M_offset_10, 17, T[10]); - b = FF(b, c, d, a, M_offset_11, 22, T[11]); - a = FF(a, b, c, d, M_offset_12, 7, T[12]); - d = FF(d, a, b, c, M_offset_13, 12, T[13]); - c = FF(c, d, a, b, M_offset_14, 17, T[14]); - b = FF(b, c, d, a, M_offset_15, 22, T[15]); - - a = GG(a, b, c, d, M_offset_1, 5, T[16]); - d = GG(d, a, b, c, M_offset_6, 9, T[17]); - c = GG(c, d, a, b, M_offset_11, 14, T[18]); - b = GG(b, c, d, a, M_offset_0, 20, T[19]); - a = GG(a, b, c, d, M_offset_5, 5, T[20]); - d = GG(d, a, b, c, M_offset_10, 9, T[21]); - c = GG(c, d, a, b, M_offset_15, 14, T[22]); - b = GG(b, c, d, a, M_offset_4, 20, T[23]); - a = GG(a, b, c, d, M_offset_9, 5, T[24]); - d = GG(d, a, b, c, M_offset_14, 9, T[25]); - c = GG(c, d, a, b, M_offset_3, 14, T[26]); - b = GG(b, c, d, a, M_offset_8, 20, T[27]); - a = GG(a, b, c, d, M_offset_13, 5, T[28]); - d = GG(d, a, b, c, M_offset_2, 9, T[29]); - c = GG(c, d, a, b, M_offset_7, 14, T[30]); - b = GG(b, c, d, a, M_offset_12, 20, T[31]); - - a = HH(a, b, c, d, M_offset_5, 4, T[32]); - d = HH(d, a, b, c, M_offset_8, 11, T[33]); - c = HH(c, d, a, b, M_offset_11, 16, T[34]); - b = HH(b, c, d, a, M_offset_14, 23, T[35]); - a = HH(a, b, c, d, M_offset_1, 4, T[36]); - d = HH(d, a, b, c, M_offset_4, 11, T[37]); - c = HH(c, d, a, b, M_offset_7, 16, T[38]); - b = HH(b, c, d, a, M_offset_10, 23, T[39]); - a = HH(a, b, c, d, M_offset_13, 4, T[40]); - d = HH(d, a, b, c, M_offset_0, 11, T[41]); - c = HH(c, d, a, b, M_offset_3, 16, T[42]); - b = HH(b, c, d, a, M_offset_6, 23, T[43]); - a = HH(a, b, c, d, M_offset_9, 4, T[44]); - d = HH(d, a, b, c, M_offset_12, 11, T[45]); - c = HH(c, d, a, b, M_offset_15, 16, T[46]); - b = HH(b, c, d, a, M_offset_2, 23, T[47]); - - a = II(a, b, c, d, M_offset_0, 6, T[48]); - d = II(d, a, b, c, M_offset_7, 10, T[49]); - c = II(c, d, a, b, M_offset_14, 15, T[50]); - b = II(b, c, d, a, M_offset_5, 21, T[51]); - a = II(a, b, c, d, M_offset_12, 6, T[52]); - d = II(d, a, b, c, M_offset_3, 10, T[53]); - c = II(c, d, a, b, M_offset_10, 15, T[54]); - b = II(b, c, d, a, M_offset_1, 21, T[55]); - a = II(a, b, c, d, M_offset_8, 6, T[56]); - d = II(d, a, b, c, M_offset_15, 10, T[57]); - c = II(c, d, a, b, M_offset_6, 15, T[58]); - b = II(b, c, d, a, M_offset_13, 21, T[59]); - a = II(a, b, c, d, M_offset_4, 6, T[60]); - d = II(d, a, b, c, M_offset_11, 10, T[61]); - c = II(c, d, a, b, M_offset_2, 15, T[62]); - b = II(b, c, d, a, M_offset_9, 21, T[63]); - - // Intermediate hash value - H[0] = (H[0] + a) | 0; - H[1] = (H[1] + b) | 0; - H[2] = (H[2] + c) | 0; - H[3] = (H[3] + d) | 0; - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - - var nBitsTotalH = Math.floor(nBitsTotal / 0x100000000); - var nBitsTotalL = nBitsTotal; - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = ( - (((nBitsTotalH << 8) | (nBitsTotalH >>> 24)) & 0x00ff00ff) | - (((nBitsTotalH << 24) | (nBitsTotalH >>> 8)) & 0xff00ff00) - ); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = ( - (((nBitsTotalL << 8) | (nBitsTotalL >>> 24)) & 0x00ff00ff) | - (((nBitsTotalL << 24) | (nBitsTotalL >>> 8)) & 0xff00ff00) - ); - - data.sigBytes = (dataWords.length + 1) * 4; - - // Hash final blocks - this._process(); - - // Shortcuts - var hash = this._hash; - var H = hash.words; - - // Swap endian - for (var i = 0; i < 4; i++) { - // Shortcut - var H_i = H[i]; - - H[i] = (((H_i << 8) | (H_i >>> 24)) & 0x00ff00ff) | - (((H_i << 24) | (H_i >>> 8)) & 0xff00ff00); - } - - // Return final computed hash - return hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - } - }); - - function FF(a, b, c, d, x, s, t) { - var n = a + ((b & c) | (~b & d)) + x + t; - return ((n << s) | (n >>> (32 - s))) + b; - } - - function GG(a, b, c, d, x, s, t) { - var n = a + ((b & d) | (c & ~d)) + x + t; - return ((n << s) | (n >>> (32 - s))) + b; - } - - function HH(a, b, c, d, x, s, t) { - var n = a + (b ^ c ^ d) + x + t; - return ((n << s) | (n >>> (32 - s))) + b; - } - - function II(a, b, c, d, x, s, t) { - var n = a + (c ^ (b | ~d)) + x + t; - return ((n << s) | (n >>> (32 - s))) + b; - } - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.MD5('message'); - * var hash = CryptoJS.MD5(wordArray); - */ - C.MD5 = Hasher._createHelper(MD5); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacMD5(message, key); - */ - C.HmacMD5 = Hasher._createHmacHelper(MD5); - }(Math)); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_algo = C.algo; - - // Reusable object - var W = []; - - /** - * SHA-1 hash algorithm. - */ - var SHA1 = C_algo.SHA1 = Hasher.extend({ - _doReset: function () { - this._hash = new WordArray.init([ - 0x67452301, 0xefcdab89, - 0x98badcfe, 0x10325476, - 0xc3d2e1f0 - ]); - }, - - _doProcessBlock: function (M, offset) { - // Shortcut - var H = this._hash.words; - - // Working variables - var a = H[0]; - var b = H[1]; - var c = H[2]; - var d = H[3]; - var e = H[4]; - - // Computation - for (var i = 0; i < 80; i++) { - if (i < 16) { - W[i] = M[offset + i] | 0; - } else { - var n = W[i - 3] ^ W[i - 8] ^ W[i - 14] ^ W[i - 16]; - W[i] = (n << 1) | (n >>> 31); - } - - var t = ((a << 5) | (a >>> 27)) + e + W[i]; - if (i < 20) { - t += ((b & c) | (~b & d)) + 0x5a827999; - } else if (i < 40) { - t += (b ^ c ^ d) + 0x6ed9eba1; - } else if (i < 60) { - t += ((b & c) | (b & d) | (c & d)) - 0x70e44324; - } else /* if (i < 80) */ { - t += (b ^ c ^ d) - 0x359d3e2a; - } - - e = d; - d = c; - c = (b << 30) | (b >>> 2); - b = a; - a = t; - } - - // Intermediate hash value - H[0] = (H[0] + a) | 0; - H[1] = (H[1] + b) | 0; - H[2] = (H[2] + c) | 0; - H[3] = (H[3] + d) | 0; - H[4] = (H[4] + e) | 0; - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = Math.floor(nBitsTotal / 0x100000000); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = nBitsTotal; - data.sigBytes = dataWords.length * 4; - - // Hash final blocks - this._process(); - - // Return final computed hash - return this._hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA1('message'); - * var hash = CryptoJS.SHA1(wordArray); - */ - C.SHA1 = Hasher._createHelper(SHA1); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA1(message, key); - */ - C.HmacSHA1 = Hasher._createHmacHelper(SHA1); - }()); - - - (function (Math) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_algo = C.algo; - - // Initialization and round constants tables - var H = []; - var K = []; - - // Compute constants - (function () { - function isPrime(n) { - var sqrtN = Math.sqrt(n); - for (var factor = 2; factor <= sqrtN; factor++) { - if (!(n % factor)) { - return false; - } - } - - return true; - } - - function getFractionalBits(n) { - return ((n - (n | 0)) * 0x100000000) | 0; - } - - var n = 2; - var nPrime = 0; - while (nPrime < 64) { - if (isPrime(n)) { - if (nPrime < 8) { - H[nPrime] = getFractionalBits(Math.pow(n, 1 / 2)); - } - K[nPrime] = getFractionalBits(Math.pow(n, 1 / 3)); - - nPrime++; - } - - n++; - } - }()); - - // Reusable object - var W = []; - - /** - * SHA-256 hash algorithm. - */ - var SHA256 = C_algo.SHA256 = Hasher.extend({ - _doReset: function () { - this._hash = new WordArray.init(H.slice(0)); - }, - - _doProcessBlock: function (M, offset) { - // Shortcut - var H = this._hash.words; - - // Working variables - var a = H[0]; - var b = H[1]; - var c = H[2]; - var d = H[3]; - var e = H[4]; - var f = H[5]; - var g = H[6]; - var h = H[7]; - - // Computation - for (var i = 0; i < 64; i++) { - if (i < 16) { - W[i] = M[offset + i] | 0; - } else { - var gamma0x = W[i - 15]; - var gamma0 = ((gamma0x << 25) | (gamma0x >>> 7)) ^ - ((gamma0x << 14) | (gamma0x >>> 18)) ^ - (gamma0x >>> 3); - - var gamma1x = W[i - 2]; - var gamma1 = ((gamma1x << 15) | (gamma1x >>> 17)) ^ - ((gamma1x << 13) | (gamma1x >>> 19)) ^ - (gamma1x >>> 10); - - W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16]; - } - - var ch = (e & f) ^ (~e & g); - var maj = (a & b) ^ (a & c) ^ (b & c); - - var sigma0 = ((a << 30) | (a >>> 2)) ^ ((a << 19) | (a >>> 13)) ^ ((a << 10) | (a >>> 22)); - var sigma1 = ((e << 26) | (e >>> 6)) ^ ((e << 21) | (e >>> 11)) ^ ((e << 7) | (e >>> 25)); - - var t1 = h + sigma1 + ch + K[i] + W[i]; - var t2 = sigma0 + maj; - - h = g; - g = f; - f = e; - e = (d + t1) | 0; - d = c; - c = b; - b = a; - a = (t1 + t2) | 0; - } - - // Intermediate hash value - H[0] = (H[0] + a) | 0; - H[1] = (H[1] + b) | 0; - H[2] = (H[2] + c) | 0; - H[3] = (H[3] + d) | 0; - H[4] = (H[4] + e) | 0; - H[5] = (H[5] + f) | 0; - H[6] = (H[6] + g) | 0; - H[7] = (H[7] + h) | 0; - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = Math.floor(nBitsTotal / 0x100000000); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = nBitsTotal; - data.sigBytes = dataWords.length * 4; - - // Hash final blocks - this._process(); - - // Return final computed hash - return this._hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA256('message'); - * var hash = CryptoJS.SHA256(wordArray); - */ - C.SHA256 = Hasher._createHelper(SHA256); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA256(message, key); - */ - C.HmacSHA256 = Hasher._createHmacHelper(SHA256); - }(Math)); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var C_algo = C.algo; - var SHA256 = C_algo.SHA256; - - /** - * SHA-224 hash algorithm. - */ - var SHA224 = C_algo.SHA224 = SHA256.extend({ - _doReset: function () { - this._hash = new WordArray.init([ - 0xc1059ed8, 0x367cd507, 0x3070dd17, 0xf70e5939, - 0xffc00b31, 0x68581511, 0x64f98fa7, 0xbefa4fa4 - ]); - }, - - _doFinalize: function () { - var hash = SHA256._doFinalize.call(this); - - hash.sigBytes -= 4; - - return hash; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA224('message'); - * var hash = CryptoJS.SHA224(wordArray); - */ - C.SHA224 = SHA256._createHelper(SHA224); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA224(message, key); - */ - C.HmacSHA224 = SHA256._createHmacHelper(SHA224); - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Hasher = C_lib.Hasher; - var C_x64 = C.x64; - var X64Word = C_x64.Word; - var X64WordArray = C_x64.WordArray; - var C_algo = C.algo; - - function X64Word_create() { - return X64Word.create.apply(X64Word, arguments); - } - - // Constants - var K = [ - X64Word_create(0x428a2f98, 0xd728ae22), X64Word_create(0x71374491, 0x23ef65cd), - X64Word_create(0xb5c0fbcf, 0xec4d3b2f), X64Word_create(0xe9b5dba5, 0x8189dbbc), - X64Word_create(0x3956c25b, 0xf348b538), X64Word_create(0x59f111f1, 0xb605d019), - X64Word_create(0x923f82a4, 0xaf194f9b), X64Word_create(0xab1c5ed5, 0xda6d8118), - X64Word_create(0xd807aa98, 0xa3030242), X64Word_create(0x12835b01, 0x45706fbe), - X64Word_create(0x243185be, 0x4ee4b28c), X64Word_create(0x550c7dc3, 0xd5ffb4e2), - X64Word_create(0x72be5d74, 0xf27b896f), X64Word_create(0x80deb1fe, 0x3b1696b1), - X64Word_create(0x9bdc06a7, 0x25c71235), X64Word_create(0xc19bf174, 0xcf692694), - X64Word_create(0xe49b69c1, 0x9ef14ad2), X64Word_create(0xefbe4786, 0x384f25e3), - X64Word_create(0x0fc19dc6, 0x8b8cd5b5), X64Word_create(0x240ca1cc, 0x77ac9c65), - X64Word_create(0x2de92c6f, 0x592b0275), X64Word_create(0x4a7484aa, 0x6ea6e483), - X64Word_create(0x5cb0a9dc, 0xbd41fbd4), X64Word_create(0x76f988da, 0x831153b5), - X64Word_create(0x983e5152, 0xee66dfab), X64Word_create(0xa831c66d, 0x2db43210), - X64Word_create(0xb00327c8, 0x98fb213f), X64Word_create(0xbf597fc7, 0xbeef0ee4), - X64Word_create(0xc6e00bf3, 0x3da88fc2), X64Word_create(0xd5a79147, 0x930aa725), - X64Word_create(0x06ca6351, 0xe003826f), X64Word_create(0x14292967, 0x0a0e6e70), - X64Word_create(0x27b70a85, 0x46d22ffc), X64Word_create(0x2e1b2138, 0x5c26c926), - X64Word_create(0x4d2c6dfc, 0x5ac42aed), X64Word_create(0x53380d13, 0x9d95b3df), - X64Word_create(0x650a7354, 0x8baf63de), X64Word_create(0x766a0abb, 0x3c77b2a8), - X64Word_create(0x81c2c92e, 0x47edaee6), X64Word_create(0x92722c85, 0x1482353b), - X64Word_create(0xa2bfe8a1, 0x4cf10364), X64Word_create(0xa81a664b, 0xbc423001), - X64Word_create(0xc24b8b70, 0xd0f89791), X64Word_create(0xc76c51a3, 0x0654be30), - X64Word_create(0xd192e819, 0xd6ef5218), X64Word_create(0xd6990624, 0x5565a910), - X64Word_create(0xf40e3585, 0x5771202a), X64Word_create(0x106aa070, 0x32bbd1b8), - X64Word_create(0x19a4c116, 0xb8d2d0c8), X64Word_create(0x1e376c08, 0x5141ab53), - X64Word_create(0x2748774c, 0xdf8eeb99), X64Word_create(0x34b0bcb5, 0xe19b48a8), - X64Word_create(0x391c0cb3, 0xc5c95a63), X64Word_create(0x4ed8aa4a, 0xe3418acb), - X64Word_create(0x5b9cca4f, 0x7763e373), X64Word_create(0x682e6ff3, 0xd6b2b8a3), - X64Word_create(0x748f82ee, 0x5defb2fc), X64Word_create(0x78a5636f, 0x43172f60), - X64Word_create(0x84c87814, 0xa1f0ab72), X64Word_create(0x8cc70208, 0x1a6439ec), - X64Word_create(0x90befffa, 0x23631e28), X64Word_create(0xa4506ceb, 0xde82bde9), - X64Word_create(0xbef9a3f7, 0xb2c67915), X64Word_create(0xc67178f2, 0xe372532b), - X64Word_create(0xca273ece, 0xea26619c), X64Word_create(0xd186b8c7, 0x21c0c207), - X64Word_create(0xeada7dd6, 0xcde0eb1e), X64Word_create(0xf57d4f7f, 0xee6ed178), - X64Word_create(0x06f067aa, 0x72176fba), X64Word_create(0x0a637dc5, 0xa2c898a6), - X64Word_create(0x113f9804, 0xbef90dae), X64Word_create(0x1b710b35, 0x131c471b), - X64Word_create(0x28db77f5, 0x23047d84), X64Word_create(0x32caab7b, 0x40c72493), - X64Word_create(0x3c9ebe0a, 0x15c9bebc), X64Word_create(0x431d67c4, 0x9c100d4c), - X64Word_create(0x4cc5d4be, 0xcb3e42b6), X64Word_create(0x597f299c, 0xfc657e2a), - X64Word_create(0x5fcb6fab, 0x3ad6faec), X64Word_create(0x6c44198c, 0x4a475817) - ]; - - // Reusable objects - var W = []; - (function () { - for (var i = 0; i < 80; i++) { - W[i] = X64Word_create(); - } - }()); - - /** - * SHA-512 hash algorithm. - */ - var SHA512 = C_algo.SHA512 = Hasher.extend({ - _doReset: function () { - this._hash = new X64WordArray.init([ - new X64Word.init(0x6a09e667, 0xf3bcc908), new X64Word.init(0xbb67ae85, 0x84caa73b), - new X64Word.init(0x3c6ef372, 0xfe94f82b), new X64Word.init(0xa54ff53a, 0x5f1d36f1), - new X64Word.init(0x510e527f, 0xade682d1), new X64Word.init(0x9b05688c, 0x2b3e6c1f), - new X64Word.init(0x1f83d9ab, 0xfb41bd6b), new X64Word.init(0x5be0cd19, 0x137e2179) - ]); - }, - - _doProcessBlock: function (M, offset) { - // Shortcuts - var H = this._hash.words; - - var H0 = H[0]; - var H1 = H[1]; - var H2 = H[2]; - var H3 = H[3]; - var H4 = H[4]; - var H5 = H[5]; - var H6 = H[6]; - var H7 = H[7]; - - var H0h = H0.high; - var H0l = H0.low; - var H1h = H1.high; - var H1l = H1.low; - var H2h = H2.high; - var H2l = H2.low; - var H3h = H3.high; - var H3l = H3.low; - var H4h = H4.high; - var H4l = H4.low; - var H5h = H5.high; - var H5l = H5.low; - var H6h = H6.high; - var H6l = H6.low; - var H7h = H7.high; - var H7l = H7.low; - - // Working variables - var ah = H0h; - var al = H0l; - var bh = H1h; - var bl = H1l; - var ch = H2h; - var cl = H2l; - var dh = H3h; - var dl = H3l; - var eh = H4h; - var el = H4l; - var fh = H5h; - var fl = H5l; - var gh = H6h; - var gl = H6l; - var hh = H7h; - var hl = H7l; - - // Rounds - for (var i = 0; i < 80; i++) { - var Wil; - var Wih; - - // Shortcut - var Wi = W[i]; - - // Extend message - if (i < 16) { - Wih = Wi.high = M[offset + i * 2] | 0; - Wil = Wi.low = M[offset + i * 2 + 1] | 0; - } else { - // Gamma0 - var gamma0x = W[i - 15]; - var gamma0xh = gamma0x.high; - var gamma0xl = gamma0x.low; - var gamma0h = ((gamma0xh >>> 1) | (gamma0xl << 31)) ^ ((gamma0xh >>> 8) | (gamma0xl << 24)) ^ (gamma0xh >>> 7); - var gamma0l = ((gamma0xl >>> 1) | (gamma0xh << 31)) ^ ((gamma0xl >>> 8) | (gamma0xh << 24)) ^ ((gamma0xl >>> 7) | (gamma0xh << 25)); - - // Gamma1 - var gamma1x = W[i - 2]; - var gamma1xh = gamma1x.high; - var gamma1xl = gamma1x.low; - var gamma1h = ((gamma1xh >>> 19) | (gamma1xl << 13)) ^ ((gamma1xh << 3) | (gamma1xl >>> 29)) ^ (gamma1xh >>> 6); - var gamma1l = ((gamma1xl >>> 19) | (gamma1xh << 13)) ^ ((gamma1xl << 3) | (gamma1xh >>> 29)) ^ ((gamma1xl >>> 6) | (gamma1xh << 26)); - - // W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16] - var Wi7 = W[i - 7]; - var Wi7h = Wi7.high; - var Wi7l = Wi7.low; - - var Wi16 = W[i - 16]; - var Wi16h = Wi16.high; - var Wi16l = Wi16.low; - - Wil = gamma0l + Wi7l; - Wih = gamma0h + Wi7h + ((Wil >>> 0) < (gamma0l >>> 0) ? 1 : 0); - Wil = Wil + gamma1l; - Wih = Wih + gamma1h + ((Wil >>> 0) < (gamma1l >>> 0) ? 1 : 0); - Wil = Wil + Wi16l; - Wih = Wih + Wi16h + ((Wil >>> 0) < (Wi16l >>> 0) ? 1 : 0); - - Wi.high = Wih; - Wi.low = Wil; - } - - var chh = (eh & fh) ^ (~eh & gh); - var chl = (el & fl) ^ (~el & gl); - var majh = (ah & bh) ^ (ah & ch) ^ (bh & ch); - var majl = (al & bl) ^ (al & cl) ^ (bl & cl); - - var sigma0h = ((ah >>> 28) | (al << 4)) ^ ((ah << 30) | (al >>> 2)) ^ ((ah << 25) | (al >>> 7)); - var sigma0l = ((al >>> 28) | (ah << 4)) ^ ((al << 30) | (ah >>> 2)) ^ ((al << 25) | (ah >>> 7)); - var sigma1h = ((eh >>> 14) | (el << 18)) ^ ((eh >>> 18) | (el << 14)) ^ ((eh << 23) | (el >>> 9)); - var sigma1l = ((el >>> 14) | (eh << 18)) ^ ((el >>> 18) | (eh << 14)) ^ ((el << 23) | (eh >>> 9)); - - // t1 = h + sigma1 + ch + K[i] + W[i] - var Ki = K[i]; - var Kih = Ki.high; - var Kil = Ki.low; - - var t1l = hl + sigma1l; - var t1h = hh + sigma1h + ((t1l >>> 0) < (hl >>> 0) ? 1 : 0); - var t1l = t1l + chl; - var t1h = t1h + chh + ((t1l >>> 0) < (chl >>> 0) ? 1 : 0); - var t1l = t1l + Kil; - var t1h = t1h + Kih + ((t1l >>> 0) < (Kil >>> 0) ? 1 : 0); - var t1l = t1l + Wil; - var t1h = t1h + Wih + ((t1l >>> 0) < (Wil >>> 0) ? 1 : 0); - - // t2 = sigma0 + maj - var t2l = sigma0l + majl; - var t2h = sigma0h + majh + ((t2l >>> 0) < (sigma0l >>> 0) ? 1 : 0); - - // Update working variables - hh = gh; - hl = gl; - gh = fh; - gl = fl; - fh = eh; - fl = el; - el = (dl + t1l) | 0; - eh = (dh + t1h + ((el >>> 0) < (dl >>> 0) ? 1 : 0)) | 0; - dh = ch; - dl = cl; - ch = bh; - cl = bl; - bh = ah; - bl = al; - al = (t1l + t2l) | 0; - ah = (t1h + t2h + ((al >>> 0) < (t1l >>> 0) ? 1 : 0)) | 0; - } - - // Intermediate hash value - H0l = H0.low = (H0l + al); - H0.high = (H0h + ah + ((H0l >>> 0) < (al >>> 0) ? 1 : 0)); - H1l = H1.low = (H1l + bl); - H1.high = (H1h + bh + ((H1l >>> 0) < (bl >>> 0) ? 1 : 0)); - H2l = H2.low = (H2l + cl); - H2.high = (H2h + ch + ((H2l >>> 0) < (cl >>> 0) ? 1 : 0)); - H3l = H3.low = (H3l + dl); - H3.high = (H3h + dh + ((H3l >>> 0) < (dl >>> 0) ? 1 : 0)); - H4l = H4.low = (H4l + el); - H4.high = (H4h + eh + ((H4l >>> 0) < (el >>> 0) ? 1 : 0)); - H5l = H5.low = (H5l + fl); - H5.high = (H5h + fh + ((H5l >>> 0) < (fl >>> 0) ? 1 : 0)); - H6l = H6.low = (H6l + gl); - H6.high = (H6h + gh + ((H6l >>> 0) < (gl >>> 0) ? 1 : 0)); - H7l = H7.low = (H7l + hl); - H7.high = (H7h + hh + ((H7l >>> 0) < (hl >>> 0) ? 1 : 0)); - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - dataWords[(((nBitsLeft + 128) >>> 10) << 5) + 30] = Math.floor(nBitsTotal / 0x100000000); - dataWords[(((nBitsLeft + 128) >>> 10) << 5) + 31] = nBitsTotal; - data.sigBytes = dataWords.length * 4; - - // Hash final blocks - this._process(); - - // Convert hash to 32-bit word array before returning - var hash = this._hash.toX32(); - - // Return final computed hash - return hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - }, - - blockSize: 1024/32 - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA512('message'); - * var hash = CryptoJS.SHA512(wordArray); - */ - C.SHA512 = Hasher._createHelper(SHA512); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA512(message, key); - */ - C.HmacSHA512 = Hasher._createHmacHelper(SHA512); - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_x64 = C.x64; - var X64Word = C_x64.Word; - var X64WordArray = C_x64.WordArray; - var C_algo = C.algo; - var SHA512 = C_algo.SHA512; - - /** - * SHA-384 hash algorithm. - */ - var SHA384 = C_algo.SHA384 = SHA512.extend({ - _doReset: function () { - this._hash = new X64WordArray.init([ - new X64Word.init(0xcbbb9d5d, 0xc1059ed8), new X64Word.init(0x629a292a, 0x367cd507), - new X64Word.init(0x9159015a, 0x3070dd17), new X64Word.init(0x152fecd8, 0xf70e5939), - new X64Word.init(0x67332667, 0xffc00b31), new X64Word.init(0x8eb44a87, 0x68581511), - new X64Word.init(0xdb0c2e0d, 0x64f98fa7), new X64Word.init(0x47b5481d, 0xbefa4fa4) - ]); - }, - - _doFinalize: function () { - var hash = SHA512._doFinalize.call(this); - - hash.sigBytes -= 16; - - return hash; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA384('message'); - * var hash = CryptoJS.SHA384(wordArray); - */ - C.SHA384 = SHA512._createHelper(SHA384); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA384(message, key); - */ - C.HmacSHA384 = SHA512._createHmacHelper(SHA384); - }()); - - - (function (Math) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_x64 = C.x64; - var X64Word = C_x64.Word; - var C_algo = C.algo; - - // Constants tables - var RHO_OFFSETS = []; - var PI_INDEXES = []; - var ROUND_CONSTANTS = []; - - // Compute Constants - (function () { - // Compute rho offset constants - var x = 1, y = 0; - for (var t = 0; t < 24; t++) { - RHO_OFFSETS[x + 5 * y] = ((t + 1) * (t + 2) / 2) % 64; - - var newX = y % 5; - var newY = (2 * x + 3 * y) % 5; - x = newX; - y = newY; - } - - // Compute pi index constants - for (var x = 0; x < 5; x++) { - for (var y = 0; y < 5; y++) { - PI_INDEXES[x + 5 * y] = y + ((2 * x + 3 * y) % 5) * 5; - } - } - - // Compute round constants - var LFSR = 0x01; - for (var i = 0; i < 24; i++) { - var roundConstantMsw = 0; - var roundConstantLsw = 0; - - for (var j = 0; j < 7; j++) { - if (LFSR & 0x01) { - var bitPosition = (1 << j) - 1; - if (bitPosition < 32) { - roundConstantLsw ^= 1 << bitPosition; - } else /* if (bitPosition >= 32) */ { - roundConstantMsw ^= 1 << (bitPosition - 32); - } - } - - // Compute next LFSR - if (LFSR & 0x80) { - // Primitive polynomial over GF(2): x^8 + x^6 + x^5 + x^4 + 1 - LFSR = (LFSR << 1) ^ 0x71; - } else { - LFSR <<= 1; - } - } - - ROUND_CONSTANTS[i] = X64Word.create(roundConstantMsw, roundConstantLsw); - } - }()); - - // Reusable objects for temporary values - var T = []; - (function () { - for (var i = 0; i < 25; i++) { - T[i] = X64Word.create(); - } - }()); - - /** - * SHA-3 hash algorithm. - */ - var SHA3 = C_algo.SHA3 = Hasher.extend({ - /** - * Configuration options. - * - * @property {number} outputLength - * The desired number of bits in the output hash. - * Only values permitted are: 224, 256, 384, 512. - * Default: 512 - */ - cfg: Hasher.cfg.extend({ - outputLength: 512 - }), - - _doReset: function () { - var state = this._state = [] - for (var i = 0; i < 25; i++) { - state[i] = new X64Word.init(); - } - - this.blockSize = (1600 - 2 * this.cfg.outputLength) / 32; - }, - - _doProcessBlock: function (M, offset) { - // Shortcuts - var state = this._state; - var nBlockSizeLanes = this.blockSize / 2; - - // Absorb - for (var i = 0; i < nBlockSizeLanes; i++) { - // Shortcuts - var M2i = M[offset + 2 * i]; - var M2i1 = M[offset + 2 * i + 1]; - - // Swap endian - M2i = ( - (((M2i << 8) | (M2i >>> 24)) & 0x00ff00ff) | - (((M2i << 24) | (M2i >>> 8)) & 0xff00ff00) - ); - M2i1 = ( - (((M2i1 << 8) | (M2i1 >>> 24)) & 0x00ff00ff) | - (((M2i1 << 24) | (M2i1 >>> 8)) & 0xff00ff00) - ); - - // Absorb message into state - var lane = state[i]; - lane.high ^= M2i1; - lane.low ^= M2i; - } - - // Rounds - for (var round = 0; round < 24; round++) { - // Theta - for (var x = 0; x < 5; x++) { - // Mix column lanes - var tMsw = 0, tLsw = 0; - for (var y = 0; y < 5; y++) { - var lane = state[x + 5 * y]; - tMsw ^= lane.high; - tLsw ^= lane.low; - } - - // Temporary values - var Tx = T[x]; - Tx.high = tMsw; - Tx.low = tLsw; - } - for (var x = 0; x < 5; x++) { - // Shortcuts - var Tx4 = T[(x + 4) % 5]; - var Tx1 = T[(x + 1) % 5]; - var Tx1Msw = Tx1.high; - var Tx1Lsw = Tx1.low; - - // Mix surrounding columns - var tMsw = Tx4.high ^ ((Tx1Msw << 1) | (Tx1Lsw >>> 31)); - var tLsw = Tx4.low ^ ((Tx1Lsw << 1) | (Tx1Msw >>> 31)); - for (var y = 0; y < 5; y++) { - var lane = state[x + 5 * y]; - lane.high ^= tMsw; - lane.low ^= tLsw; - } - } - - // Rho Pi - for (var laneIndex = 1; laneIndex < 25; laneIndex++) { - var tMsw; - var tLsw; - - // Shortcuts - var lane = state[laneIndex]; - var laneMsw = lane.high; - var laneLsw = lane.low; - var rhoOffset = RHO_OFFSETS[laneIndex]; - - // Rotate lanes - if (rhoOffset < 32) { - tMsw = (laneMsw << rhoOffset) | (laneLsw >>> (32 - rhoOffset)); - tLsw = (laneLsw << rhoOffset) | (laneMsw >>> (32 - rhoOffset)); - } else /* if (rhoOffset >= 32) */ { - tMsw = (laneLsw << (rhoOffset - 32)) | (laneMsw >>> (64 - rhoOffset)); - tLsw = (laneMsw << (rhoOffset - 32)) | (laneLsw >>> (64 - rhoOffset)); - } - - // Transpose lanes - var TPiLane = T[PI_INDEXES[laneIndex]]; - TPiLane.high = tMsw; - TPiLane.low = tLsw; - } - - // Rho pi at x = y = 0 - var T0 = T[0]; - var state0 = state[0]; - T0.high = state0.high; - T0.low = state0.low; - - // Chi - for (var x = 0; x < 5; x++) { - for (var y = 0; y < 5; y++) { - // Shortcuts - var laneIndex = x + 5 * y; - var lane = state[laneIndex]; - var TLane = T[laneIndex]; - var Tx1Lane = T[((x + 1) % 5) + 5 * y]; - var Tx2Lane = T[((x + 2) % 5) + 5 * y]; - - // Mix rows - lane.high = TLane.high ^ (~Tx1Lane.high & Tx2Lane.high); - lane.low = TLane.low ^ (~Tx1Lane.low & Tx2Lane.low); - } - } - - // Iota - var lane = state[0]; - var roundConstant = ROUND_CONSTANTS[round]; - lane.high ^= roundConstant.high; - lane.low ^= roundConstant.low; - } - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - var blockSizeBits = this.blockSize * 32; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x1 << (24 - nBitsLeft % 32); - dataWords[((Math.ceil((nBitsLeft + 1) / blockSizeBits) * blockSizeBits) >>> 5) - 1] |= 0x80; - data.sigBytes = dataWords.length * 4; - - // Hash final blocks - this._process(); - - // Shortcuts - var state = this._state; - var outputLengthBytes = this.cfg.outputLength / 8; - var outputLengthLanes = outputLengthBytes / 8; - - // Squeeze - var hashWords = []; - for (var i = 0; i < outputLengthLanes; i++) { - // Shortcuts - var lane = state[i]; - var laneMsw = lane.high; - var laneLsw = lane.low; - - // Swap endian - laneMsw = ( - (((laneMsw << 8) | (laneMsw >>> 24)) & 0x00ff00ff) | - (((laneMsw << 24) | (laneMsw >>> 8)) & 0xff00ff00) - ); - laneLsw = ( - (((laneLsw << 8) | (laneLsw >>> 24)) & 0x00ff00ff) | - (((laneLsw << 24) | (laneLsw >>> 8)) & 0xff00ff00) - ); - - // Squeeze state to retrieve hash - hashWords.push(laneLsw); - hashWords.push(laneMsw); - } - - // Return final computed hash - return new WordArray.init(hashWords, outputLengthBytes); - }, - - clone: function () { - var clone = Hasher.clone.call(this); - - var state = clone._state = this._state.slice(0); - for (var i = 0; i < 25; i++) { - state[i] = state[i].clone(); - } - - return clone; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA3('message'); - * var hash = CryptoJS.SHA3(wordArray); - */ - C.SHA3 = Hasher._createHelper(SHA3); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA3(message, key); - */ - C.HmacSHA3 = Hasher._createHmacHelper(SHA3); - }(Math)); - - - /** @preserve - (c) 2012 by Cédric Mesnil. All rights reserved. - - Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: - - - Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. - - Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - */ - - (function (Math) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_algo = C.algo; - - // Constants table - var _zl = WordArray.create([ - 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, - 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8, - 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12, - 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2, - 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13]); - var _zr = WordArray.create([ - 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12, - 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2, - 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13, - 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14, - 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11]); - var _sl = WordArray.create([ - 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8, - 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12, - 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5, - 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12, - 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6 ]); - var _sr = WordArray.create([ - 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6, - 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11, - 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5, - 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8, - 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11 ]); - - var _hl = WordArray.create([ 0x00000000, 0x5A827999, 0x6ED9EBA1, 0x8F1BBCDC, 0xA953FD4E]); - var _hr = WordArray.create([ 0x50A28BE6, 0x5C4DD124, 0x6D703EF3, 0x7A6D76E9, 0x00000000]); - - /** - * RIPEMD160 hash algorithm. - */ - var RIPEMD160 = C_algo.RIPEMD160 = Hasher.extend({ - _doReset: function () { - this._hash = WordArray.create([0x67452301, 0xEFCDAB89, 0x98BADCFE, 0x10325476, 0xC3D2E1F0]); - }, - - _doProcessBlock: function (M, offset) { - - // Swap endian - for (var i = 0; i < 16; i++) { - // Shortcuts - var offset_i = offset + i; - var M_offset_i = M[offset_i]; - - // Swap - M[offset_i] = ( - (((M_offset_i << 8) | (M_offset_i >>> 24)) & 0x00ff00ff) | - (((M_offset_i << 24) | (M_offset_i >>> 8)) & 0xff00ff00) - ); - } - // Shortcut - var H = this._hash.words; - var hl = _hl.words; - var hr = _hr.words; - var zl = _zl.words; - var zr = _zr.words; - var sl = _sl.words; - var sr = _sr.words; - - // Working variables - var al, bl, cl, dl, el; - var ar, br, cr, dr, er; - - ar = al = H[0]; - br = bl = H[1]; - cr = cl = H[2]; - dr = dl = H[3]; - er = el = H[4]; - // Computation - var t; - for (var i = 0; i < 80; i += 1) { - t = (al + M[offset+zl[i]])|0; - if (i<16){ - t += f1(bl,cl,dl) + hl[0]; - } else if (i<32) { - t += f2(bl,cl,dl) + hl[1]; - } else if (i<48) { - t += f3(bl,cl,dl) + hl[2]; - } else if (i<64) { - t += f4(bl,cl,dl) + hl[3]; - } else {// if (i<80) { - t += f5(bl,cl,dl) + hl[4]; - } - t = t|0; - t = rotl(t,sl[i]); - t = (t+el)|0; - al = el; - el = dl; - dl = rotl(cl, 10); - cl = bl; - bl = t; - - t = (ar + M[offset+zr[i]])|0; - if (i<16){ - t += f5(br,cr,dr) + hr[0]; - } else if (i<32) { - t += f4(br,cr,dr) + hr[1]; - } else if (i<48) { - t += f3(br,cr,dr) + hr[2]; - } else if (i<64) { - t += f2(br,cr,dr) + hr[3]; - } else {// if (i<80) { - t += f1(br,cr,dr) + hr[4]; - } - t = t|0; - t = rotl(t,sr[i]) ; - t = (t+er)|0; - ar = er; - er = dr; - dr = rotl(cr, 10); - cr = br; - br = t; - } - // Intermediate hash value - t = (H[1] + cl + dr)|0; - H[1] = (H[2] + dl + er)|0; - H[2] = (H[3] + el + ar)|0; - H[3] = (H[4] + al + br)|0; - H[4] = (H[0] + bl + cr)|0; - H[0] = t; - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = ( - (((nBitsTotal << 8) | (nBitsTotal >>> 24)) & 0x00ff00ff) | - (((nBitsTotal << 24) | (nBitsTotal >>> 8)) & 0xff00ff00) - ); - data.sigBytes = (dataWords.length + 1) * 4; - - // Hash final blocks - this._process(); - - // Shortcuts - var hash = this._hash; - var H = hash.words; - - // Swap endian - for (var i = 0; i < 5; i++) { - // Shortcut - var H_i = H[i]; - - // Swap - H[i] = (((H_i << 8) | (H_i >>> 24)) & 0x00ff00ff) | - (((H_i << 24) | (H_i >>> 8)) & 0xff00ff00); - } - - // Return final computed hash - return hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - } - }); - - - function f1(x, y, z) { - return ((x) ^ (y) ^ (z)); - - } - - function f2(x, y, z) { - return (((x)&(y)) | ((~x)&(z))); - } - - function f3(x, y, z) { - return (((x) | (~(y))) ^ (z)); - } - - function f4(x, y, z) { - return (((x) & (z)) | ((y)&(~(z)))); - } - - function f5(x, y, z) { - return ((x) ^ ((y) |(~(z)))); - - } - - function rotl(x,n) { - return (x<>>(32-n)); - } - - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.RIPEMD160('message'); - * var hash = CryptoJS.RIPEMD160(wordArray); - */ - C.RIPEMD160 = Hasher._createHelper(RIPEMD160); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacRIPEMD160(message, key); - */ - C.HmacRIPEMD160 = Hasher._createHmacHelper(RIPEMD160); - }(Math)); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var C_enc = C.enc; - var Utf8 = C_enc.Utf8; - var C_algo = C.algo; - - /** - * HMAC algorithm. - */ - var HMAC = C_algo.HMAC = Base.extend({ - /** - * Initializes a newly created HMAC. - * - * @param {Hasher} hasher The hash algorithm to use. - * @param {WordArray|string} key The secret key. - * - * @example - * - * var hmacHasher = CryptoJS.algo.HMAC.create(CryptoJS.algo.SHA256, key); - */ - init: function (hasher, key) { - // Init hasher - hasher = this._hasher = new hasher.init(); - - // Convert string to WordArray, else assume WordArray already - if (typeof key == 'string') { - key = Utf8.parse(key); - } - - // Shortcuts - var hasherBlockSize = hasher.blockSize; - var hasherBlockSizeBytes = hasherBlockSize * 4; - - // Allow arbitrary length keys - if (key.sigBytes > hasherBlockSizeBytes) { - key = hasher.finalize(key); - } - - // Clamp excess bits - key.clamp(); - - // Clone key for inner and outer pads - var oKey = this._oKey = key.clone(); - var iKey = this._iKey = key.clone(); - - // Shortcuts - var oKeyWords = oKey.words; - var iKeyWords = iKey.words; - - // XOR keys with pad constants - for (var i = 0; i < hasherBlockSize; i++) { - oKeyWords[i] ^= 0x5c5c5c5c; - iKeyWords[i] ^= 0x36363636; - } - oKey.sigBytes = iKey.sigBytes = hasherBlockSizeBytes; - - // Set initial values - this.reset(); - }, - - /** - * Resets this HMAC to its initial state. - * - * @example - * - * hmacHasher.reset(); - */ - reset: function () { - // Shortcut - var hasher = this._hasher; - - // Reset - hasher.reset(); - hasher.update(this._iKey); - }, - - /** - * Updates this HMAC with a message. - * - * @param {WordArray|string} messageUpdate The message to append. - * - * @return {HMAC} This HMAC instance. - * - * @example - * - * hmacHasher.update('message'); - * hmacHasher.update(wordArray); - */ - update: function (messageUpdate) { - this._hasher.update(messageUpdate); - - // Chainable - return this; - }, - - /** - * Finalizes the HMAC computation. - * Note that the finalize operation is effectively a destructive, read-once operation. - * - * @param {WordArray|string} messageUpdate (Optional) A final message update. - * - * @return {WordArray} The HMAC. - * - * @example - * - * var hmac = hmacHasher.finalize(); - * var hmac = hmacHasher.finalize('message'); - * var hmac = hmacHasher.finalize(wordArray); - */ - finalize: function (messageUpdate) { - // Shortcut - var hasher = this._hasher; - - // Compute HMAC - var innerHash = hasher.finalize(messageUpdate); - hasher.reset(); - var hmac = hasher.finalize(this._oKey.clone().concat(innerHash)); - - return hmac; - } - }); - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var WordArray = C_lib.WordArray; - var C_algo = C.algo; - var SHA1 = C_algo.SHA1; - var HMAC = C_algo.HMAC; - - /** - * Password-Based Key Derivation Function 2 algorithm. - */ - var PBKDF2 = C_algo.PBKDF2 = Base.extend({ - /** - * Configuration options. - * - * @property {number} keySize The key size in words to generate. Default: 4 (128 bits) - * @property {Hasher} hasher The hasher to use. Default: SHA1 - * @property {number} iterations The number of iterations to perform. Default: 1 - */ - cfg: Base.extend({ - keySize: 128/32, - hasher: SHA1, - iterations: 1 - }), - - /** - * Initializes a newly created key derivation function. - * - * @param {Object} cfg (Optional) The configuration options to use for the derivation. - * - * @example - * - * var kdf = CryptoJS.algo.PBKDF2.create(); - * var kdf = CryptoJS.algo.PBKDF2.create({ keySize: 8 }); - * var kdf = CryptoJS.algo.PBKDF2.create({ keySize: 8, iterations: 1000 }); - */ - init: function (cfg) { - this.cfg = this.cfg.extend(cfg); - }, - - /** - * Computes the Password-Based Key Derivation Function 2. - * - * @param {WordArray|string} password The password. - * @param {WordArray|string} salt A salt. - * - * @return {WordArray} The derived key. - * - * @example - * - * var key = kdf.compute(password, salt); - */ - compute: function (password, salt) { - // Shortcut - var cfg = this.cfg; - - // Init HMAC - var hmac = HMAC.create(cfg.hasher, password); - - // Initial values - var derivedKey = WordArray.create(); - var blockIndex = WordArray.create([0x00000001]); - - // Shortcuts - var derivedKeyWords = derivedKey.words; - var blockIndexWords = blockIndex.words; - var keySize = cfg.keySize; - var iterations = cfg.iterations; - - // Generate key - while (derivedKeyWords.length < keySize) { - var block = hmac.update(salt).finalize(blockIndex); - hmac.reset(); - - // Shortcuts - var blockWords = block.words; - var blockWordsLength = blockWords.length; - - // Iterations - var intermediate = block; - for (var i = 1; i < iterations; i++) { - intermediate = hmac.finalize(intermediate); - hmac.reset(); - - // Shortcut - var intermediateWords = intermediate.words; - - // XOR intermediate with block - for (var j = 0; j < blockWordsLength; j++) { - blockWords[j] ^= intermediateWords[j]; - } - } - - derivedKey.concat(block); - blockIndexWords[0]++; - } - derivedKey.sigBytes = keySize * 4; - - return derivedKey; - } - }); - - /** - * Computes the Password-Based Key Derivation Function 2. - * - * @param {WordArray|string} password The password. - * @param {WordArray|string} salt A salt. - * @param {Object} cfg (Optional) The configuration options to use for this computation. - * - * @return {WordArray} The derived key. - * - * @static - * - * @example - * - * var key = CryptoJS.PBKDF2(password, salt); - * var key = CryptoJS.PBKDF2(password, salt, { keySize: 8 }); - * var key = CryptoJS.PBKDF2(password, salt, { keySize: 8, iterations: 1000 }); - */ - C.PBKDF2 = function (password, salt, cfg) { - return PBKDF2.create(cfg).compute(password, salt); - }; - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var WordArray = C_lib.WordArray; - var C_algo = C.algo; - var MD5 = C_algo.MD5; - - /** - * This key derivation function is meant to conform with EVP_BytesToKey. - * www.openssl.org/docs/crypto/EVP_BytesToKey.html - */ - var EvpKDF = C_algo.EvpKDF = Base.extend({ - /** - * Configuration options. - * - * @property {number} keySize The key size in words to generate. Default: 4 (128 bits) - * @property {Hasher} hasher The hash algorithm to use. Default: MD5 - * @property {number} iterations The number of iterations to perform. Default: 1 - */ - cfg: Base.extend({ - keySize: 128/32, - hasher: MD5, - iterations: 1 - }), - - /** - * Initializes a newly created key derivation function. - * - * @param {Object} cfg (Optional) The configuration options to use for the derivation. - * - * @example - * - * var kdf = CryptoJS.algo.EvpKDF.create(); - * var kdf = CryptoJS.algo.EvpKDF.create({ keySize: 8 }); - * var kdf = CryptoJS.algo.EvpKDF.create({ keySize: 8, iterations: 1000 }); - */ - init: function (cfg) { - this.cfg = this.cfg.extend(cfg); - }, - - /** - * Derives a key from a password. - * - * @param {WordArray|string} password The password. - * @param {WordArray|string} salt A salt. - * - * @return {WordArray} The derived key. - * - * @example - * - * var key = kdf.compute(password, salt); - */ - compute: function (password, salt) { - var block; - - // Shortcut - var cfg = this.cfg; - - // Init hasher - var hasher = cfg.hasher.create(); - - // Initial values - var derivedKey = WordArray.create(); - - // Shortcuts - var derivedKeyWords = derivedKey.words; - var keySize = cfg.keySize; - var iterations = cfg.iterations; - - // Generate key - while (derivedKeyWords.length < keySize) { - if (block) { - hasher.update(block); - } - block = hasher.update(password).finalize(salt); - hasher.reset(); - - // Iterations - for (var i = 1; i < iterations; i++) { - block = hasher.finalize(block); - hasher.reset(); - } - - derivedKey.concat(block); - } - derivedKey.sigBytes = keySize * 4; - - return derivedKey; - } - }); - - /** - * Derives a key from a password. - * - * @param {WordArray|string} password The password. - * @param {WordArray|string} salt A salt. - * @param {Object} cfg (Optional) The configuration options to use for this computation. - * - * @return {WordArray} The derived key. - * - * @static - * - * @example - * - * var key = CryptoJS.EvpKDF(password, salt); - * var key = CryptoJS.EvpKDF(password, salt, { keySize: 8 }); - * var key = CryptoJS.EvpKDF(password, salt, { keySize: 8, iterations: 1000 }); - */ - C.EvpKDF = function (password, salt, cfg) { - return EvpKDF.create(cfg).compute(password, salt); - }; - }()); - - - /** - * Cipher core components. - */ - CryptoJS.lib.Cipher || (function (undefined) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var WordArray = C_lib.WordArray; - var BufferedBlockAlgorithm = C_lib.BufferedBlockAlgorithm; - var C_enc = C.enc; - var Utf8 = C_enc.Utf8; - var Base64 = C_enc.Base64; - var C_algo = C.algo; - var EvpKDF = C_algo.EvpKDF; - - /** - * Abstract base cipher template. - * - * @property {number} keySize This cipher's key size. Default: 4 (128 bits) - * @property {number} ivSize This cipher's IV size. Default: 4 (128 bits) - * @property {number} _ENC_XFORM_MODE A constant representing encryption mode. - * @property {number} _DEC_XFORM_MODE A constant representing decryption mode. - */ - var Cipher = C_lib.Cipher = BufferedBlockAlgorithm.extend({ - /** - * Configuration options. - * - * @property {WordArray} iv The IV to use for this operation. - */ - cfg: Base.extend(), - - /** - * Creates this cipher in encryption mode. - * - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {Cipher} A cipher instance. - * - * @static - * - * @example - * - * var cipher = CryptoJS.algo.AES.createEncryptor(keyWordArray, { iv: ivWordArray }); - */ - createEncryptor: function (key, cfg) { - return this.create(this._ENC_XFORM_MODE, key, cfg); - }, - - /** - * Creates this cipher in decryption mode. - * - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {Cipher} A cipher instance. - * - * @static - * - * @example - * - * var cipher = CryptoJS.algo.AES.createDecryptor(keyWordArray, { iv: ivWordArray }); - */ - createDecryptor: function (key, cfg) { - return this.create(this._DEC_XFORM_MODE, key, cfg); - }, - - /** - * Initializes a newly created cipher. - * - * @param {number} xformMode Either the encryption or decryption transormation mode constant. - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @example - * - * var cipher = CryptoJS.algo.AES.create(CryptoJS.algo.AES._ENC_XFORM_MODE, keyWordArray, { iv: ivWordArray }); - */ - init: function (xformMode, key, cfg) { - // Apply config defaults - this.cfg = this.cfg.extend(cfg); - - // Store transform mode and key - this._xformMode = xformMode; - this._key = key; - - // Set initial values - this.reset(); - }, - - /** - * Resets this cipher to its initial state. - * - * @example - * - * cipher.reset(); - */ - reset: function () { - // Reset data buffer - BufferedBlockAlgorithm.reset.call(this); - - // Perform concrete-cipher logic - this._doReset(); - }, - - /** - * Adds data to be encrypted or decrypted. - * - * @param {WordArray|string} dataUpdate The data to encrypt or decrypt. - * - * @return {WordArray} The data after processing. - * - * @example - * - * var encrypted = cipher.process('data'); - * var encrypted = cipher.process(wordArray); - */ - process: function (dataUpdate) { - // Append - this._append(dataUpdate); - - // Process available blocks - return this._process(); - }, - - /** - * Finalizes the encryption or decryption process. - * Note that the finalize operation is effectively a destructive, read-once operation. - * - * @param {WordArray|string} dataUpdate The final data to encrypt or decrypt. - * - * @return {WordArray} The data after final processing. - * - * @example - * - * var encrypted = cipher.finalize(); - * var encrypted = cipher.finalize('data'); - * var encrypted = cipher.finalize(wordArray); - */ - finalize: function (dataUpdate) { - // Final data update - if (dataUpdate) { - this._append(dataUpdate); - } - - // Perform concrete-cipher logic - var finalProcessedData = this._doFinalize(); - - return finalProcessedData; - }, - - keySize: 128/32, - - ivSize: 128/32, - - _ENC_XFORM_MODE: 1, - - _DEC_XFORM_MODE: 2, - - /** - * Creates shortcut functions to a cipher's object interface. - * - * @param {Cipher} cipher The cipher to create a helper for. - * - * @return {Object} An object with encrypt and decrypt shortcut functions. - * - * @static - * - * @example - * - * var AES = CryptoJS.lib.Cipher._createHelper(CryptoJS.algo.AES); - */ - _createHelper: (function () { - function selectCipherStrategy(key) { - if (typeof key == 'string') { - return PasswordBasedCipher; - } else { - return SerializableCipher; - } - } - - return function (cipher) { - return { - encrypt: function (message, key, cfg) { - return selectCipherStrategy(key).encrypt(cipher, message, key, cfg); - }, - - decrypt: function (ciphertext, key, cfg) { - return selectCipherStrategy(key).decrypt(cipher, ciphertext, key, cfg); - } - }; - }; - }()) - }); - - /** - * Abstract base stream cipher template. - * - * @property {number} blockSize The number of 32-bit words this cipher operates on. Default: 1 (32 bits) - */ - var StreamCipher = C_lib.StreamCipher = Cipher.extend({ - _doFinalize: function () { - // Process partial blocks - var finalProcessedBlocks = this._process(!!'flush'); - - return finalProcessedBlocks; - }, - - blockSize: 1 - }); - - /** - * Mode namespace. - */ - var C_mode = C.mode = {}; - - /** - * Abstract base block cipher mode template. - */ - var BlockCipherMode = C_lib.BlockCipherMode = Base.extend({ - /** - * Creates this mode for encryption. - * - * @param {Cipher} cipher A block cipher instance. - * @param {Array} iv The IV words. - * - * @static - * - * @example - * - * var mode = CryptoJS.mode.CBC.createEncryptor(cipher, iv.words); - */ - createEncryptor: function (cipher, iv) { - return this.Encryptor.create(cipher, iv); - }, - - /** - * Creates this mode for decryption. - * - * @param {Cipher} cipher A block cipher instance. - * @param {Array} iv The IV words. - * - * @static - * - * @example - * - * var mode = CryptoJS.mode.CBC.createDecryptor(cipher, iv.words); - */ - createDecryptor: function (cipher, iv) { - return this.Decryptor.create(cipher, iv); - }, - - /** - * Initializes a newly created mode. - * - * @param {Cipher} cipher A block cipher instance. - * @param {Array} iv The IV words. - * - * @example - * - * var mode = CryptoJS.mode.CBC.Encryptor.create(cipher, iv.words); - */ - init: function (cipher, iv) { - this._cipher = cipher; - this._iv = iv; - } - }); - - /** - * Cipher Block Chaining mode. - */ - var CBC = C_mode.CBC = (function () { - /** - * Abstract base CBC mode. - */ - var CBC = BlockCipherMode.extend(); - - /** - * CBC encryptor. - */ - CBC.Encryptor = CBC.extend({ - /** - * Processes the data block at offset. - * - * @param {Array} words The data words to operate on. - * @param {number} offset The offset where the block starts. - * - * @example - * - * mode.processBlock(data.words, offset); - */ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher; - var blockSize = cipher.blockSize; - - // XOR and encrypt - xorBlock.call(this, words, offset, blockSize); - cipher.encryptBlock(words, offset); - - // Remember this block to use with next block - this._prevBlock = words.slice(offset, offset + blockSize); - } - }); - - /** - * CBC decryptor. - */ - CBC.Decryptor = CBC.extend({ - /** - * Processes the data block at offset. - * - * @param {Array} words The data words to operate on. - * @param {number} offset The offset where the block starts. - * - * @example - * - * mode.processBlock(data.words, offset); - */ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher; - var blockSize = cipher.blockSize; - - // Remember this block to use with next block - var thisBlock = words.slice(offset, offset + blockSize); - - // Decrypt and XOR - cipher.decryptBlock(words, offset); - xorBlock.call(this, words, offset, blockSize); - - // This block becomes the previous block - this._prevBlock = thisBlock; - } - }); - - function xorBlock(words, offset, blockSize) { - var block; - - // Shortcut - var iv = this._iv; - - // Choose mixing block - if (iv) { - block = iv; - - // Remove IV for subsequent blocks - this._iv = undefined; - } else { - block = this._prevBlock; - } - - // XOR blocks - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= block[i]; - } - } - - return CBC; - }()); - - /** - * Padding namespace. - */ - var C_pad = C.pad = {}; - - /** - * PKCS #5/7 padding strategy. - */ - var Pkcs7 = C_pad.Pkcs7 = { - /** - * Pads data using the algorithm defined in PKCS #5/7. - * - * @param {WordArray} data The data to pad. - * @param {number} blockSize The multiple that the data should be padded to. - * - * @static - * - * @example - * - * CryptoJS.pad.Pkcs7.pad(wordArray, 4); - */ - pad: function (data, blockSize) { - // Shortcut - var blockSizeBytes = blockSize * 4; - - // Count padding bytes - var nPaddingBytes = blockSizeBytes - data.sigBytes % blockSizeBytes; - - // Create padding word - var paddingWord = (nPaddingBytes << 24) | (nPaddingBytes << 16) | (nPaddingBytes << 8) | nPaddingBytes; - - // Create padding - var paddingWords = []; - for (var i = 0; i < nPaddingBytes; i += 4) { - paddingWords.push(paddingWord); - } - var padding = WordArray.create(paddingWords, nPaddingBytes); - - // Add padding - data.concat(padding); - }, - - /** - * Unpads data that had been padded using the algorithm defined in PKCS #5/7. - * - * @param {WordArray} data The data to unpad. - * - * @static - * - * @example - * - * CryptoJS.pad.Pkcs7.unpad(wordArray); - */ - unpad: function (data) { - // Get number of padding bytes from last byte - var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; - - // Remove padding - data.sigBytes -= nPaddingBytes; - } - }; - - /** - * Abstract base block cipher template. - * - * @property {number} blockSize The number of 32-bit words this cipher operates on. Default: 4 (128 bits) - */ - var BlockCipher = C_lib.BlockCipher = Cipher.extend({ - /** - * Configuration options. - * - * @property {Mode} mode The block mode to use. Default: CBC - * @property {Padding} padding The padding strategy to use. Default: Pkcs7 - */ - cfg: Cipher.cfg.extend({ - mode: CBC, - padding: Pkcs7 - }), - - reset: function () { - var modeCreator; - - // Reset cipher - Cipher.reset.call(this); - - // Shortcuts - var cfg = this.cfg; - var iv = cfg.iv; - var mode = cfg.mode; - - // Reset block mode - if (this._xformMode == this._ENC_XFORM_MODE) { - modeCreator = mode.createEncryptor; - } else /* if (this._xformMode == this._DEC_XFORM_MODE) */ { - modeCreator = mode.createDecryptor; - // Keep at least one block in the buffer for unpadding - this._minBufferSize = 1; - } - - if (this._mode && this._mode.__creator == modeCreator) { - this._mode.init(this, iv && iv.words); - } else { - this._mode = modeCreator.call(mode, this, iv && iv.words); - this._mode.__creator = modeCreator; - } - }, - - _doProcessBlock: function (words, offset) { - this._mode.processBlock(words, offset); - }, - - _doFinalize: function () { - var finalProcessedBlocks; - - // Shortcut - var padding = this.cfg.padding; - - // Finalize - if (this._xformMode == this._ENC_XFORM_MODE) { - // Pad data - padding.pad(this._data, this.blockSize); - - // Process final blocks - finalProcessedBlocks = this._process(!!'flush'); - } else /* if (this._xformMode == this._DEC_XFORM_MODE) */ { - // Process final blocks - finalProcessedBlocks = this._process(!!'flush'); - - // Unpad data - padding.unpad(finalProcessedBlocks); - } - - return finalProcessedBlocks; - }, - - blockSize: 128/32 - }); - - /** - * A collection of cipher parameters. - * - * @property {WordArray} ciphertext The raw ciphertext. - * @property {WordArray} key The key to this ciphertext. - * @property {WordArray} iv The IV used in the ciphering operation. - * @property {WordArray} salt The salt used with a key derivation function. - * @property {Cipher} algorithm The cipher algorithm. - * @property {Mode} mode The block mode used in the ciphering operation. - * @property {Padding} padding The padding scheme used in the ciphering operation. - * @property {number} blockSize The block size of the cipher. - * @property {Format} formatter The default formatting strategy to convert this cipher params object to a string. - */ - var CipherParams = C_lib.CipherParams = Base.extend({ - /** - * Initializes a newly created cipher params object. - * - * @param {Object} cipherParams An object with any of the possible cipher parameters. - * - * @example - * - * var cipherParams = CryptoJS.lib.CipherParams.create({ - * ciphertext: ciphertextWordArray, - * key: keyWordArray, - * iv: ivWordArray, - * salt: saltWordArray, - * algorithm: CryptoJS.algo.AES, - * mode: CryptoJS.mode.CBC, - * padding: CryptoJS.pad.PKCS7, - * blockSize: 4, - * formatter: CryptoJS.format.OpenSSL - * }); - */ - init: function (cipherParams) { - this.mixIn(cipherParams); - }, - - /** - * Converts this cipher params object to a string. - * - * @param {Format} formatter (Optional) The formatting strategy to use. - * - * @return {string} The stringified cipher params. - * - * @throws Error If neither the formatter nor the default formatter is set. - * - * @example - * - * var string = cipherParams + ''; - * var string = cipherParams.toString(); - * var string = cipherParams.toString(CryptoJS.format.OpenSSL); - */ - toString: function (formatter) { - return (formatter || this.formatter).stringify(this); - } - }); - - /** - * Format namespace. - */ - var C_format = C.format = {}; - - /** - * OpenSSL formatting strategy. - */ - var OpenSSLFormatter = C_format.OpenSSL = { - /** - * Converts a cipher params object to an OpenSSL-compatible string. - * - * @param {CipherParams} cipherParams The cipher params object. - * - * @return {string} The OpenSSL-compatible string. - * - * @static - * - * @example - * - * var openSSLString = CryptoJS.format.OpenSSL.stringify(cipherParams); - */ - stringify: function (cipherParams) { - var wordArray; - - // Shortcuts - var ciphertext = cipherParams.ciphertext; - var salt = cipherParams.salt; - - // Format - if (salt) { - wordArray = WordArray.create([0x53616c74, 0x65645f5f]).concat(salt).concat(ciphertext); - } else { - wordArray = ciphertext; - } - - return wordArray.toString(Base64); - }, - - /** - * Converts an OpenSSL-compatible string to a cipher params object. - * - * @param {string} openSSLStr The OpenSSL-compatible string. - * - * @return {CipherParams} The cipher params object. - * - * @static - * - * @example - * - * var cipherParams = CryptoJS.format.OpenSSL.parse(openSSLString); - */ - parse: function (openSSLStr) { - var salt; - - // Parse base64 - var ciphertext = Base64.parse(openSSLStr); - - // Shortcut - var ciphertextWords = ciphertext.words; - - // Test for salt - if (ciphertextWords[0] == 0x53616c74 && ciphertextWords[1] == 0x65645f5f) { - // Extract salt - salt = WordArray.create(ciphertextWords.slice(2, 4)); - - // Remove salt from ciphertext - ciphertextWords.splice(0, 4); - ciphertext.sigBytes -= 16; - } - - return CipherParams.create({ ciphertext: ciphertext, salt: salt }); - } - }; - - /** - * A cipher wrapper that returns ciphertext as a serializable cipher params object. - */ - var SerializableCipher = C_lib.SerializableCipher = Base.extend({ - /** - * Configuration options. - * - * @property {Formatter} format The formatting strategy to convert cipher param objects to and from a string. Default: OpenSSL - */ - cfg: Base.extend({ - format: OpenSSLFormatter - }), - - /** - * Encrypts a message. - * - * @param {Cipher} cipher The cipher algorithm to use. - * @param {WordArray|string} message The message to encrypt. - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {CipherParams} A cipher params object. - * - * @static - * - * @example - * - * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key); - * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key, { iv: iv }); - * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key, { iv: iv, format: CryptoJS.format.OpenSSL }); - */ - encrypt: function (cipher, message, key, cfg) { - // Apply config defaults - cfg = this.cfg.extend(cfg); - - // Encrypt - var encryptor = cipher.createEncryptor(key, cfg); - var ciphertext = encryptor.finalize(message); - - // Shortcut - var cipherCfg = encryptor.cfg; - - // Create and return serializable cipher params - return CipherParams.create({ - ciphertext: ciphertext, - key: key, - iv: cipherCfg.iv, - algorithm: cipher, - mode: cipherCfg.mode, - padding: cipherCfg.padding, - blockSize: cipher.blockSize, - formatter: cfg.format - }); - }, - - /** - * Decrypts serialized ciphertext. - * - * @param {Cipher} cipher The cipher algorithm to use. - * @param {CipherParams|string} ciphertext The ciphertext to decrypt. - * @param {WordArray} key The key. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {WordArray} The plaintext. - * - * @static - * - * @example - * - * var plaintext = CryptoJS.lib.SerializableCipher.decrypt(CryptoJS.algo.AES, formattedCiphertext, key, { iv: iv, format: CryptoJS.format.OpenSSL }); - * var plaintext = CryptoJS.lib.SerializableCipher.decrypt(CryptoJS.algo.AES, ciphertextParams, key, { iv: iv, format: CryptoJS.format.OpenSSL }); - */ - decrypt: function (cipher, ciphertext, key, cfg) { - // Apply config defaults - cfg = this.cfg.extend(cfg); - - // Convert string to CipherParams - ciphertext = this._parse(ciphertext, cfg.format); - - // Decrypt - var plaintext = cipher.createDecryptor(key, cfg).finalize(ciphertext.ciphertext); - - return plaintext; - }, - - /** - * Converts serialized ciphertext to CipherParams, - * else assumed CipherParams already and returns ciphertext unchanged. - * - * @param {CipherParams|string} ciphertext The ciphertext. - * @param {Formatter} format The formatting strategy to use to parse serialized ciphertext. - * - * @return {CipherParams} The unserialized ciphertext. - * - * @static - * - * @example - * - * var ciphertextParams = CryptoJS.lib.SerializableCipher._parse(ciphertextStringOrParams, format); - */ - _parse: function (ciphertext, format) { - if (typeof ciphertext == 'string') { - return format.parse(ciphertext, this); - } else { - return ciphertext; - } - } - }); - - /** - * Key derivation function namespace. - */ - var C_kdf = C.kdf = {}; - - /** - * OpenSSL key derivation function. - */ - var OpenSSLKdf = C_kdf.OpenSSL = { - /** - * Derives a key and IV from a password. - * - * @param {string} password The password to derive from. - * @param {number} keySize The size in words of the key to generate. - * @param {number} ivSize The size in words of the IV to generate. - * @param {WordArray|string} salt (Optional) A 64-bit salt to use. If omitted, a salt will be generated randomly. - * - * @return {CipherParams} A cipher params object with the key, IV, and salt. - * - * @static - * - * @example - * - * var derivedParams = CryptoJS.kdf.OpenSSL.execute('Password', 256/32, 128/32); - * var derivedParams = CryptoJS.kdf.OpenSSL.execute('Password', 256/32, 128/32, 'saltsalt'); - */ - execute: function (password, keySize, ivSize, salt) { - // Generate random salt - if (!salt) { - salt = WordArray.random(64/8); - } - - // Derive key and IV - var key = EvpKDF.create({ keySize: keySize + ivSize }).compute(password, salt); - - // Separate key and IV - var iv = WordArray.create(key.words.slice(keySize), ivSize * 4); - key.sigBytes = keySize * 4; - - // Return params - return CipherParams.create({ key: key, iv: iv, salt: salt }); - } - }; - - /** - * A serializable cipher wrapper that derives the key from a password, - * and returns ciphertext as a serializable cipher params object. - */ - var PasswordBasedCipher = C_lib.PasswordBasedCipher = SerializableCipher.extend({ - /** - * Configuration options. - * - * @property {KDF} kdf The key derivation function to use to generate a key and IV from a password. Default: OpenSSL - */ - cfg: SerializableCipher.cfg.extend({ - kdf: OpenSSLKdf - }), - - /** - * Encrypts a message using a password. - * - * @param {Cipher} cipher The cipher algorithm to use. - * @param {WordArray|string} message The message to encrypt. - * @param {string} password The password. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {CipherParams} A cipher params object. - * - * @static - * - * @example - * - * var ciphertextParams = CryptoJS.lib.PasswordBasedCipher.encrypt(CryptoJS.algo.AES, message, 'password'); - * var ciphertextParams = CryptoJS.lib.PasswordBasedCipher.encrypt(CryptoJS.algo.AES, message, 'password', { format: CryptoJS.format.OpenSSL }); - */ - encrypt: function (cipher, message, password, cfg) { - // Apply config defaults - cfg = this.cfg.extend(cfg); - - // Derive key and other params - var derivedParams = cfg.kdf.execute(password, cipher.keySize, cipher.ivSize); - - // Add IV to config - cfg.iv = derivedParams.iv; - - // Encrypt - var ciphertext = SerializableCipher.encrypt.call(this, cipher, message, derivedParams.key, cfg); - - // Mix in derived params - ciphertext.mixIn(derivedParams); - - return ciphertext; - }, - - /** - * Decrypts serialized ciphertext using a password. - * - * @param {Cipher} cipher The cipher algorithm to use. - * @param {CipherParams|string} ciphertext The ciphertext to decrypt. - * @param {string} password The password. - * @param {Object} cfg (Optional) The configuration options to use for this operation. - * - * @return {WordArray} The plaintext. - * - * @static - * - * @example - * - * var plaintext = CryptoJS.lib.PasswordBasedCipher.decrypt(CryptoJS.algo.AES, formattedCiphertext, 'password', { format: CryptoJS.format.OpenSSL }); - * var plaintext = CryptoJS.lib.PasswordBasedCipher.decrypt(CryptoJS.algo.AES, ciphertextParams, 'password', { format: CryptoJS.format.OpenSSL }); - */ - decrypt: function (cipher, ciphertext, password, cfg) { - // Apply config defaults - cfg = this.cfg.extend(cfg); - - // Convert string to CipherParams - ciphertext = this._parse(ciphertext, cfg.format); - - // Derive key and other params - var derivedParams = cfg.kdf.execute(password, cipher.keySize, cipher.ivSize, ciphertext.salt); - - // Add IV to config - cfg.iv = derivedParams.iv; - - // Decrypt - var plaintext = SerializableCipher.decrypt.call(this, cipher, ciphertext, derivedParams.key, cfg); - - return plaintext; - } - }); - }()); - - - /** - * Cipher Feedback block mode. - */ - CryptoJS.mode.CFB = (function () { - var CFB = CryptoJS.lib.BlockCipherMode.extend(); - - CFB.Encryptor = CFB.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher; - var blockSize = cipher.blockSize; - - generateKeystreamAndEncrypt.call(this, words, offset, blockSize, cipher); - - // Remember this block to use with next block - this._prevBlock = words.slice(offset, offset + blockSize); - } - }); - - CFB.Decryptor = CFB.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher; - var blockSize = cipher.blockSize; - - // Remember this block to use with next block - var thisBlock = words.slice(offset, offset + blockSize); - - generateKeystreamAndEncrypt.call(this, words, offset, blockSize, cipher); - - // This block becomes the previous block - this._prevBlock = thisBlock; - } - }); - - function generateKeystreamAndEncrypt(words, offset, blockSize, cipher) { - var keystream; - - // Shortcut - var iv = this._iv; - - // Generate keystream - if (iv) { - keystream = iv.slice(0); - - // Remove IV for subsequent blocks - this._iv = undefined; - } else { - keystream = this._prevBlock; - } - cipher.encryptBlock(keystream, 0); - - // Encrypt - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= keystream[i]; - } - } - - return CFB; - }()); - - - /** - * Counter block mode. - */ - CryptoJS.mode.CTR = (function () { - var CTR = CryptoJS.lib.BlockCipherMode.extend(); - - var Encryptor = CTR.Encryptor = CTR.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher - var blockSize = cipher.blockSize; - var iv = this._iv; - var counter = this._counter; - - // Generate keystream - if (iv) { - counter = this._counter = iv.slice(0); - - // Remove IV for subsequent blocks - this._iv = undefined; - } - var keystream = counter.slice(0); - cipher.encryptBlock(keystream, 0); - - // Increment counter - counter[blockSize - 1] = (counter[blockSize - 1] + 1) | 0 - - // Encrypt - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= keystream[i]; - } - } - }); - - CTR.Decryptor = Encryptor; - - return CTR; - }()); - - - /** @preserve - * Counter block mode compatible with Dr Brian Gladman fileenc.c - * derived from CryptoJS.mode.CTR - * Jan Hruby jhruby.web@gmail.com - */ - CryptoJS.mode.CTRGladman = (function () { - var CTRGladman = CryptoJS.lib.BlockCipherMode.extend(); - - function incWord(word) - { - if (((word >> 24) & 0xff) === 0xff) { //overflow - var b1 = (word >> 16)&0xff; - var b2 = (word >> 8)&0xff; - var b3 = word & 0xff; - - if (b1 === 0xff) // overflow b1 - { - b1 = 0; - if (b2 === 0xff) - { - b2 = 0; - if (b3 === 0xff) - { - b3 = 0; - } - else - { - ++b3; - } - } - else - { - ++b2; - } - } - else - { - ++b1; - } - - word = 0; - word += (b1 << 16); - word += (b2 << 8); - word += b3; - } - else - { - word += (0x01 << 24); - } - return word; - } - - function incCounter(counter) - { - if ((counter[0] = incWord(counter[0])) === 0) - { - // encr_data in fileenc.c from Dr Brian Gladman's counts only with DWORD j < 8 - counter[1] = incWord(counter[1]); - } - return counter; - } - - var Encryptor = CTRGladman.Encryptor = CTRGladman.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher - var blockSize = cipher.blockSize; - var iv = this._iv; - var counter = this._counter; - - // Generate keystream - if (iv) { - counter = this._counter = iv.slice(0); - - // Remove IV for subsequent blocks - this._iv = undefined; - } - - incCounter(counter); - - var keystream = counter.slice(0); - cipher.encryptBlock(keystream, 0); - - // Encrypt - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= keystream[i]; - } - } - }); - - CTRGladman.Decryptor = Encryptor; - - return CTRGladman; - }()); - - - - - /** - * Output Feedback block mode. - */ - CryptoJS.mode.OFB = (function () { - var OFB = CryptoJS.lib.BlockCipherMode.extend(); - - var Encryptor = OFB.Encryptor = OFB.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher - var blockSize = cipher.blockSize; - var iv = this._iv; - var keystream = this._keystream; - - // Generate keystream - if (iv) { - keystream = this._keystream = iv.slice(0); - - // Remove IV for subsequent blocks - this._iv = undefined; - } - cipher.encryptBlock(keystream, 0); - - // Encrypt - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= keystream[i]; - } - } - }); - - OFB.Decryptor = Encryptor; - - return OFB; - }()); - - - /** - * Electronic Codebook block mode. - */ - CryptoJS.mode.ECB = (function () { - var ECB = CryptoJS.lib.BlockCipherMode.extend(); - - ECB.Encryptor = ECB.extend({ - processBlock: function (words, offset) { - this._cipher.encryptBlock(words, offset); - } - }); - - ECB.Decryptor = ECB.extend({ - processBlock: function (words, offset) { - this._cipher.decryptBlock(words, offset); - } - }); - - return ECB; - }()); - - - /** - * ANSI X.923 padding strategy. - */ - CryptoJS.pad.AnsiX923 = { - pad: function (data, blockSize) { - // Shortcuts - var dataSigBytes = data.sigBytes; - var blockSizeBytes = blockSize * 4; - - // Count padding bytes - var nPaddingBytes = blockSizeBytes - dataSigBytes % blockSizeBytes; - - // Compute last byte position - var lastBytePos = dataSigBytes + nPaddingBytes - 1; - - // Pad - data.clamp(); - data.words[lastBytePos >>> 2] |= nPaddingBytes << (24 - (lastBytePos % 4) * 8); - data.sigBytes += nPaddingBytes; - }, - - unpad: function (data) { - // Get number of padding bytes from last byte - var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; - - // Remove padding - data.sigBytes -= nPaddingBytes; - } - }; - - - /** - * ISO 10126 padding strategy. - */ - CryptoJS.pad.Iso10126 = { - pad: function (data, blockSize) { - // Shortcut - var blockSizeBytes = blockSize * 4; - - // Count padding bytes - var nPaddingBytes = blockSizeBytes - data.sigBytes % blockSizeBytes; - - // Pad - data.concat(CryptoJS.lib.WordArray.random(nPaddingBytes - 1)). - concat(CryptoJS.lib.WordArray.create([nPaddingBytes << 24], 1)); - }, - - unpad: function (data) { - // Get number of padding bytes from last byte - var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; - - // Remove padding - data.sigBytes -= nPaddingBytes; - } - }; - - - /** - * ISO/IEC 9797-1 Padding Method 2. - */ - CryptoJS.pad.Iso97971 = { - pad: function (data, blockSize) { - // Add 0x80 byte - data.concat(CryptoJS.lib.WordArray.create([0x80000000], 1)); - - // Zero pad the rest - CryptoJS.pad.ZeroPadding.pad(data, blockSize); - }, - - unpad: function (data) { - // Remove zero padding - CryptoJS.pad.ZeroPadding.unpad(data); - - // Remove one more byte -- the 0x80 byte - data.sigBytes--; - } - }; - - - /** - * Zero padding strategy. - */ - CryptoJS.pad.ZeroPadding = { - pad: function (data, blockSize) { - // Shortcut - var blockSizeBytes = blockSize * 4; - - // Pad - data.clamp(); - data.sigBytes += blockSizeBytes - ((data.sigBytes % blockSizeBytes) || blockSizeBytes); - }, - - unpad: function (data) { - // Shortcut - var dataWords = data.words; - - // Unpad - var i = data.sigBytes - 1; - for (var i = data.sigBytes - 1; i >= 0; i--) { - if (((dataWords[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff)) { - data.sigBytes = i + 1; - break; - } - } - } - }; - - - /** - * A noop padding strategy. - */ - CryptoJS.pad.NoPadding = { - pad: function () { - }, - - unpad: function () { - } - }; - - - (function (undefined) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var CipherParams = C_lib.CipherParams; - var C_enc = C.enc; - var Hex = C_enc.Hex; - var C_format = C.format; - - var HexFormatter = C_format.Hex = { - /** - * Converts the ciphertext of a cipher params object to a hexadecimally encoded string. - * - * @param {CipherParams} cipherParams The cipher params object. - * - * @return {string} The hexadecimally encoded string. - * - * @static - * - * @example - * - * var hexString = CryptoJS.format.Hex.stringify(cipherParams); - */ - stringify: function (cipherParams) { - return cipherParams.ciphertext.toString(Hex); - }, - - /** - * Converts a hexadecimally encoded ciphertext string to a cipher params object. - * - * @param {string} input The hexadecimally encoded string. - * - * @return {CipherParams} The cipher params object. - * - * @static - * - * @example - * - * var cipherParams = CryptoJS.format.Hex.parse(hexString); - */ - parse: function (input) { - var ciphertext = Hex.parse(input); - return CipherParams.create({ ciphertext: ciphertext }); - } - }; - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var BlockCipher = C_lib.BlockCipher; - var C_algo = C.algo; - - // Lookup tables - var SBOX = []; - var INV_SBOX = []; - var SUB_MIX_0 = []; - var SUB_MIX_1 = []; - var SUB_MIX_2 = []; - var SUB_MIX_3 = []; - var INV_SUB_MIX_0 = []; - var INV_SUB_MIX_1 = []; - var INV_SUB_MIX_2 = []; - var INV_SUB_MIX_3 = []; - - // Compute lookup tables - (function () { - // Compute double table - var d = []; - for (var i = 0; i < 256; i++) { - if (i < 128) { - d[i] = i << 1; - } else { - d[i] = (i << 1) ^ 0x11b; - } - } - - // Walk GF(2^8) - var x = 0; - var xi = 0; - for (var i = 0; i < 256; i++) { - // Compute sbox - var sx = xi ^ (xi << 1) ^ (xi << 2) ^ (xi << 3) ^ (xi << 4); - sx = (sx >>> 8) ^ (sx & 0xff) ^ 0x63; - SBOX[x] = sx; - INV_SBOX[sx] = x; - - // Compute multiplication - var x2 = d[x]; - var x4 = d[x2]; - var x8 = d[x4]; - - // Compute sub bytes, mix columns tables - var t = (d[sx] * 0x101) ^ (sx * 0x1010100); - SUB_MIX_0[x] = (t << 24) | (t >>> 8); - SUB_MIX_1[x] = (t << 16) | (t >>> 16); - SUB_MIX_2[x] = (t << 8) | (t >>> 24); - SUB_MIX_3[x] = t; - - // Compute inv sub bytes, inv mix columns tables - var t = (x8 * 0x1010101) ^ (x4 * 0x10001) ^ (x2 * 0x101) ^ (x * 0x1010100); - INV_SUB_MIX_0[sx] = (t << 24) | (t >>> 8); - INV_SUB_MIX_1[sx] = (t << 16) | (t >>> 16); - INV_SUB_MIX_2[sx] = (t << 8) | (t >>> 24); - INV_SUB_MIX_3[sx] = t; - - // Compute next counter - if (!x) { - x = xi = 1; - } else { - x = x2 ^ d[d[d[x8 ^ x2]]]; - xi ^= d[d[xi]]; - } - } - }()); - - // Precomputed Rcon lookup - var RCON = [0x00, 0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80, 0x1b, 0x36]; - - /** - * AES block cipher algorithm. - */ - var AES = C_algo.AES = BlockCipher.extend({ - _doReset: function () { - var t; - - // Skip reset of nRounds has been set before and key did not change - if (this._nRounds && this._keyPriorReset === this._key) { - return; - } - - // Shortcuts - var key = this._keyPriorReset = this._key; - var keyWords = key.words; - var keySize = key.sigBytes / 4; - - // Compute number of rounds - var nRounds = this._nRounds = keySize + 6; - - // Compute number of key schedule rows - var ksRows = (nRounds + 1) * 4; - - // Compute key schedule - var keySchedule = this._keySchedule = []; - for (var ksRow = 0; ksRow < ksRows; ksRow++) { - if (ksRow < keySize) { - keySchedule[ksRow] = keyWords[ksRow]; - } else { - t = keySchedule[ksRow - 1]; - - if (!(ksRow % keySize)) { - // Rot word - t = (t << 8) | (t >>> 24); - - // Sub word - t = (SBOX[t >>> 24] << 24) | (SBOX[(t >>> 16) & 0xff] << 16) | (SBOX[(t >>> 8) & 0xff] << 8) | SBOX[t & 0xff]; - - // Mix Rcon - t ^= RCON[(ksRow / keySize) | 0] << 24; - } else if (keySize > 6 && ksRow % keySize == 4) { - // Sub word - t = (SBOX[t >>> 24] << 24) | (SBOX[(t >>> 16) & 0xff] << 16) | (SBOX[(t >>> 8) & 0xff] << 8) | SBOX[t & 0xff]; - } - - keySchedule[ksRow] = keySchedule[ksRow - keySize] ^ t; - } - } - - // Compute inv key schedule - var invKeySchedule = this._invKeySchedule = []; - for (var invKsRow = 0; invKsRow < ksRows; invKsRow++) { - var ksRow = ksRows - invKsRow; - - if (invKsRow % 4) { - var t = keySchedule[ksRow]; - } else { - var t = keySchedule[ksRow - 4]; - } - - if (invKsRow < 4 || ksRow <= 4) { - invKeySchedule[invKsRow] = t; - } else { - invKeySchedule[invKsRow] = INV_SUB_MIX_0[SBOX[t >>> 24]] ^ INV_SUB_MIX_1[SBOX[(t >>> 16) & 0xff]] ^ - INV_SUB_MIX_2[SBOX[(t >>> 8) & 0xff]] ^ INV_SUB_MIX_3[SBOX[t & 0xff]]; - } - } - }, - - encryptBlock: function (M, offset) { - this._doCryptBlock(M, offset, this._keySchedule, SUB_MIX_0, SUB_MIX_1, SUB_MIX_2, SUB_MIX_3, SBOX); - }, - - decryptBlock: function (M, offset) { - // Swap 2nd and 4th rows - var t = M[offset + 1]; - M[offset + 1] = M[offset + 3]; - M[offset + 3] = t; - - this._doCryptBlock(M, offset, this._invKeySchedule, INV_SUB_MIX_0, INV_SUB_MIX_1, INV_SUB_MIX_2, INV_SUB_MIX_3, INV_SBOX); - - // Inv swap 2nd and 4th rows - var t = M[offset + 1]; - M[offset + 1] = M[offset + 3]; - M[offset + 3] = t; - }, - - _doCryptBlock: function (M, offset, keySchedule, SUB_MIX_0, SUB_MIX_1, SUB_MIX_2, SUB_MIX_3, SBOX) { - // Shortcut - var nRounds = this._nRounds; - - // Get input, add round key - var s0 = M[offset] ^ keySchedule[0]; - var s1 = M[offset + 1] ^ keySchedule[1]; - var s2 = M[offset + 2] ^ keySchedule[2]; - var s3 = M[offset + 3] ^ keySchedule[3]; - - // Key schedule row counter - var ksRow = 4; - - // Rounds - for (var round = 1; round < nRounds; round++) { - // Shift rows, sub bytes, mix columns, add round key - var t0 = SUB_MIX_0[s0 >>> 24] ^ SUB_MIX_1[(s1 >>> 16) & 0xff] ^ SUB_MIX_2[(s2 >>> 8) & 0xff] ^ SUB_MIX_3[s3 & 0xff] ^ keySchedule[ksRow++]; - var t1 = SUB_MIX_0[s1 >>> 24] ^ SUB_MIX_1[(s2 >>> 16) & 0xff] ^ SUB_MIX_2[(s3 >>> 8) & 0xff] ^ SUB_MIX_3[s0 & 0xff] ^ keySchedule[ksRow++]; - var t2 = SUB_MIX_0[s2 >>> 24] ^ SUB_MIX_1[(s3 >>> 16) & 0xff] ^ SUB_MIX_2[(s0 >>> 8) & 0xff] ^ SUB_MIX_3[s1 & 0xff] ^ keySchedule[ksRow++]; - var t3 = SUB_MIX_0[s3 >>> 24] ^ SUB_MIX_1[(s0 >>> 16) & 0xff] ^ SUB_MIX_2[(s1 >>> 8) & 0xff] ^ SUB_MIX_3[s2 & 0xff] ^ keySchedule[ksRow++]; - - // Update state - s0 = t0; - s1 = t1; - s2 = t2; - s3 = t3; - } - - // Shift rows, sub bytes, add round key - var t0 = ((SBOX[s0 >>> 24] << 24) | (SBOX[(s1 >>> 16) & 0xff] << 16) | (SBOX[(s2 >>> 8) & 0xff] << 8) | SBOX[s3 & 0xff]) ^ keySchedule[ksRow++]; - var t1 = ((SBOX[s1 >>> 24] << 24) | (SBOX[(s2 >>> 16) & 0xff] << 16) | (SBOX[(s3 >>> 8) & 0xff] << 8) | SBOX[s0 & 0xff]) ^ keySchedule[ksRow++]; - var t2 = ((SBOX[s2 >>> 24] << 24) | (SBOX[(s3 >>> 16) & 0xff] << 16) | (SBOX[(s0 >>> 8) & 0xff] << 8) | SBOX[s1 & 0xff]) ^ keySchedule[ksRow++]; - var t3 = ((SBOX[s3 >>> 24] << 24) | (SBOX[(s0 >>> 16) & 0xff] << 16) | (SBOX[(s1 >>> 8) & 0xff] << 8) | SBOX[s2 & 0xff]) ^ keySchedule[ksRow++]; - - // Set output - M[offset] = t0; - M[offset + 1] = t1; - M[offset + 2] = t2; - M[offset + 3] = t3; - }, - - keySize: 256/32 - }); - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.AES.encrypt(message, key, cfg); - * var plaintext = CryptoJS.AES.decrypt(ciphertext, key, cfg); - */ - C.AES = BlockCipher._createHelper(AES); - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var BlockCipher = C_lib.BlockCipher; - var C_algo = C.algo; - - // Permuted Choice 1 constants - var PC1 = [ - 57, 49, 41, 33, 25, 17, 9, 1, - 58, 50, 42, 34, 26, 18, 10, 2, - 59, 51, 43, 35, 27, 19, 11, 3, - 60, 52, 44, 36, 63, 55, 47, 39, - 31, 23, 15, 7, 62, 54, 46, 38, - 30, 22, 14, 6, 61, 53, 45, 37, - 29, 21, 13, 5, 28, 20, 12, 4 - ]; - - // Permuted Choice 2 constants - var PC2 = [ - 14, 17, 11, 24, 1, 5, - 3, 28, 15, 6, 21, 10, - 23, 19, 12, 4, 26, 8, - 16, 7, 27, 20, 13, 2, - 41, 52, 31, 37, 47, 55, - 30, 40, 51, 45, 33, 48, - 44, 49, 39, 56, 34, 53, - 46, 42, 50, 36, 29, 32 - ]; - - // Cumulative bit shift constants - var BIT_SHIFTS = [1, 2, 4, 6, 8, 10, 12, 14, 15, 17, 19, 21, 23, 25, 27, 28]; - - // SBOXes and round permutation constants - var SBOX_P = [ - { - 0x0: 0x808200, - 0x10000000: 0x8000, - 0x20000000: 0x808002, - 0x30000000: 0x2, - 0x40000000: 0x200, - 0x50000000: 0x808202, - 0x60000000: 0x800202, - 0x70000000: 0x800000, - 0x80000000: 0x202, - 0x90000000: 0x800200, - 0xa0000000: 0x8200, - 0xb0000000: 0x808000, - 0xc0000000: 0x8002, - 0xd0000000: 0x800002, - 0xe0000000: 0x0, - 0xf0000000: 0x8202, - 0x8000000: 0x0, - 0x18000000: 0x808202, - 0x28000000: 0x8202, - 0x38000000: 0x8000, - 0x48000000: 0x808200, - 0x58000000: 0x200, - 0x68000000: 0x808002, - 0x78000000: 0x2, - 0x88000000: 0x800200, - 0x98000000: 0x8200, - 0xa8000000: 0x808000, - 0xb8000000: 0x800202, - 0xc8000000: 0x800002, - 0xd8000000: 0x8002, - 0xe8000000: 0x202, - 0xf8000000: 0x800000, - 0x1: 0x8000, - 0x10000001: 0x2, - 0x20000001: 0x808200, - 0x30000001: 0x800000, - 0x40000001: 0x808002, - 0x50000001: 0x8200, - 0x60000001: 0x200, - 0x70000001: 0x800202, - 0x80000001: 0x808202, - 0x90000001: 0x808000, - 0xa0000001: 0x800002, - 0xb0000001: 0x8202, - 0xc0000001: 0x202, - 0xd0000001: 0x800200, - 0xe0000001: 0x8002, - 0xf0000001: 0x0, - 0x8000001: 0x808202, - 0x18000001: 0x808000, - 0x28000001: 0x800000, - 0x38000001: 0x200, - 0x48000001: 0x8000, - 0x58000001: 0x800002, - 0x68000001: 0x2, - 0x78000001: 0x8202, - 0x88000001: 0x8002, - 0x98000001: 0x800202, - 0xa8000001: 0x202, - 0xb8000001: 0x808200, - 0xc8000001: 0x800200, - 0xd8000001: 0x0, - 0xe8000001: 0x8200, - 0xf8000001: 0x808002 - }, - { - 0x0: 0x40084010, - 0x1000000: 0x4000, - 0x2000000: 0x80000, - 0x3000000: 0x40080010, - 0x4000000: 0x40000010, - 0x5000000: 0x40084000, - 0x6000000: 0x40004000, - 0x7000000: 0x10, - 0x8000000: 0x84000, - 0x9000000: 0x40004010, - 0xa000000: 0x40000000, - 0xb000000: 0x84010, - 0xc000000: 0x80010, - 0xd000000: 0x0, - 0xe000000: 0x4010, - 0xf000000: 0x40080000, - 0x800000: 0x40004000, - 0x1800000: 0x84010, - 0x2800000: 0x10, - 0x3800000: 0x40004010, - 0x4800000: 0x40084010, - 0x5800000: 0x40000000, - 0x6800000: 0x80000, - 0x7800000: 0x40080010, - 0x8800000: 0x80010, - 0x9800000: 0x0, - 0xa800000: 0x4000, - 0xb800000: 0x40080000, - 0xc800000: 0x40000010, - 0xd800000: 0x84000, - 0xe800000: 0x40084000, - 0xf800000: 0x4010, - 0x10000000: 0x0, - 0x11000000: 0x40080010, - 0x12000000: 0x40004010, - 0x13000000: 0x40084000, - 0x14000000: 0x40080000, - 0x15000000: 0x10, - 0x16000000: 0x84010, - 0x17000000: 0x4000, - 0x18000000: 0x4010, - 0x19000000: 0x80000, - 0x1a000000: 0x80010, - 0x1b000000: 0x40000010, - 0x1c000000: 0x84000, - 0x1d000000: 0x40004000, - 0x1e000000: 0x40000000, - 0x1f000000: 0x40084010, - 0x10800000: 0x84010, - 0x11800000: 0x80000, - 0x12800000: 0x40080000, - 0x13800000: 0x4000, - 0x14800000: 0x40004000, - 0x15800000: 0x40084010, - 0x16800000: 0x10, - 0x17800000: 0x40000000, - 0x18800000: 0x40084000, - 0x19800000: 0x40000010, - 0x1a800000: 0x40004010, - 0x1b800000: 0x80010, - 0x1c800000: 0x0, - 0x1d800000: 0x4010, - 0x1e800000: 0x40080010, - 0x1f800000: 0x84000 - }, - { - 0x0: 0x104, - 0x100000: 0x0, - 0x200000: 0x4000100, - 0x300000: 0x10104, - 0x400000: 0x10004, - 0x500000: 0x4000004, - 0x600000: 0x4010104, - 0x700000: 0x4010000, - 0x800000: 0x4000000, - 0x900000: 0x4010100, - 0xa00000: 0x10100, - 0xb00000: 0x4010004, - 0xc00000: 0x4000104, - 0xd00000: 0x10000, - 0xe00000: 0x4, - 0xf00000: 0x100, - 0x80000: 0x4010100, - 0x180000: 0x4010004, - 0x280000: 0x0, - 0x380000: 0x4000100, - 0x480000: 0x4000004, - 0x580000: 0x10000, - 0x680000: 0x10004, - 0x780000: 0x104, - 0x880000: 0x4, - 0x980000: 0x100, - 0xa80000: 0x4010000, - 0xb80000: 0x10104, - 0xc80000: 0x10100, - 0xd80000: 0x4000104, - 0xe80000: 0x4010104, - 0xf80000: 0x4000000, - 0x1000000: 0x4010100, - 0x1100000: 0x10004, - 0x1200000: 0x10000, - 0x1300000: 0x4000100, - 0x1400000: 0x100, - 0x1500000: 0x4010104, - 0x1600000: 0x4000004, - 0x1700000: 0x0, - 0x1800000: 0x4000104, - 0x1900000: 0x4000000, - 0x1a00000: 0x4, - 0x1b00000: 0x10100, - 0x1c00000: 0x4010000, - 0x1d00000: 0x104, - 0x1e00000: 0x10104, - 0x1f00000: 0x4010004, - 0x1080000: 0x4000000, - 0x1180000: 0x104, - 0x1280000: 0x4010100, - 0x1380000: 0x0, - 0x1480000: 0x10004, - 0x1580000: 0x4000100, - 0x1680000: 0x100, - 0x1780000: 0x4010004, - 0x1880000: 0x10000, - 0x1980000: 0x4010104, - 0x1a80000: 0x10104, - 0x1b80000: 0x4000004, - 0x1c80000: 0x4000104, - 0x1d80000: 0x4010000, - 0x1e80000: 0x4, - 0x1f80000: 0x10100 - }, - { - 0x0: 0x80401000, - 0x10000: 0x80001040, - 0x20000: 0x401040, - 0x30000: 0x80400000, - 0x40000: 0x0, - 0x50000: 0x401000, - 0x60000: 0x80000040, - 0x70000: 0x400040, - 0x80000: 0x80000000, - 0x90000: 0x400000, - 0xa0000: 0x40, - 0xb0000: 0x80001000, - 0xc0000: 0x80400040, - 0xd0000: 0x1040, - 0xe0000: 0x1000, - 0xf0000: 0x80401040, - 0x8000: 0x80001040, - 0x18000: 0x40, - 0x28000: 0x80400040, - 0x38000: 0x80001000, - 0x48000: 0x401000, - 0x58000: 0x80401040, - 0x68000: 0x0, - 0x78000: 0x80400000, - 0x88000: 0x1000, - 0x98000: 0x80401000, - 0xa8000: 0x400000, - 0xb8000: 0x1040, - 0xc8000: 0x80000000, - 0xd8000: 0x400040, - 0xe8000: 0x401040, - 0xf8000: 0x80000040, - 0x100000: 0x400040, - 0x110000: 0x401000, - 0x120000: 0x80000040, - 0x130000: 0x0, - 0x140000: 0x1040, - 0x150000: 0x80400040, - 0x160000: 0x80401000, - 0x170000: 0x80001040, - 0x180000: 0x80401040, - 0x190000: 0x80000000, - 0x1a0000: 0x80400000, - 0x1b0000: 0x401040, - 0x1c0000: 0x80001000, - 0x1d0000: 0x400000, - 0x1e0000: 0x40, - 0x1f0000: 0x1000, - 0x108000: 0x80400000, - 0x118000: 0x80401040, - 0x128000: 0x0, - 0x138000: 0x401000, - 0x148000: 0x400040, - 0x158000: 0x80000000, - 0x168000: 0x80001040, - 0x178000: 0x40, - 0x188000: 0x80000040, - 0x198000: 0x1000, - 0x1a8000: 0x80001000, - 0x1b8000: 0x80400040, - 0x1c8000: 0x1040, - 0x1d8000: 0x80401000, - 0x1e8000: 0x400000, - 0x1f8000: 0x401040 - }, - { - 0x0: 0x80, - 0x1000: 0x1040000, - 0x2000: 0x40000, - 0x3000: 0x20000000, - 0x4000: 0x20040080, - 0x5000: 0x1000080, - 0x6000: 0x21000080, - 0x7000: 0x40080, - 0x8000: 0x1000000, - 0x9000: 0x20040000, - 0xa000: 0x20000080, - 0xb000: 0x21040080, - 0xc000: 0x21040000, - 0xd000: 0x0, - 0xe000: 0x1040080, - 0xf000: 0x21000000, - 0x800: 0x1040080, - 0x1800: 0x21000080, - 0x2800: 0x80, - 0x3800: 0x1040000, - 0x4800: 0x40000, - 0x5800: 0x20040080, - 0x6800: 0x21040000, - 0x7800: 0x20000000, - 0x8800: 0x20040000, - 0x9800: 0x0, - 0xa800: 0x21040080, - 0xb800: 0x1000080, - 0xc800: 0x20000080, - 0xd800: 0x21000000, - 0xe800: 0x1000000, - 0xf800: 0x40080, - 0x10000: 0x40000, - 0x11000: 0x80, - 0x12000: 0x20000000, - 0x13000: 0x21000080, - 0x14000: 0x1000080, - 0x15000: 0x21040000, - 0x16000: 0x20040080, - 0x17000: 0x1000000, - 0x18000: 0x21040080, - 0x19000: 0x21000000, - 0x1a000: 0x1040000, - 0x1b000: 0x20040000, - 0x1c000: 0x40080, - 0x1d000: 0x20000080, - 0x1e000: 0x0, - 0x1f000: 0x1040080, - 0x10800: 0x21000080, - 0x11800: 0x1000000, - 0x12800: 0x1040000, - 0x13800: 0x20040080, - 0x14800: 0x20000000, - 0x15800: 0x1040080, - 0x16800: 0x80, - 0x17800: 0x21040000, - 0x18800: 0x40080, - 0x19800: 0x21040080, - 0x1a800: 0x0, - 0x1b800: 0x21000000, - 0x1c800: 0x1000080, - 0x1d800: 0x40000, - 0x1e800: 0x20040000, - 0x1f800: 0x20000080 - }, - { - 0x0: 0x10000008, - 0x100: 0x2000, - 0x200: 0x10200000, - 0x300: 0x10202008, - 0x400: 0x10002000, - 0x500: 0x200000, - 0x600: 0x200008, - 0x700: 0x10000000, - 0x800: 0x0, - 0x900: 0x10002008, - 0xa00: 0x202000, - 0xb00: 0x8, - 0xc00: 0x10200008, - 0xd00: 0x202008, - 0xe00: 0x2008, - 0xf00: 0x10202000, - 0x80: 0x10200000, - 0x180: 0x10202008, - 0x280: 0x8, - 0x380: 0x200000, - 0x480: 0x202008, - 0x580: 0x10000008, - 0x680: 0x10002000, - 0x780: 0x2008, - 0x880: 0x200008, - 0x980: 0x2000, - 0xa80: 0x10002008, - 0xb80: 0x10200008, - 0xc80: 0x0, - 0xd80: 0x10202000, - 0xe80: 0x202000, - 0xf80: 0x10000000, - 0x1000: 0x10002000, - 0x1100: 0x10200008, - 0x1200: 0x10202008, - 0x1300: 0x2008, - 0x1400: 0x200000, - 0x1500: 0x10000000, - 0x1600: 0x10000008, - 0x1700: 0x202000, - 0x1800: 0x202008, - 0x1900: 0x0, - 0x1a00: 0x8, - 0x1b00: 0x10200000, - 0x1c00: 0x2000, - 0x1d00: 0x10002008, - 0x1e00: 0x10202000, - 0x1f00: 0x200008, - 0x1080: 0x8, - 0x1180: 0x202000, - 0x1280: 0x200000, - 0x1380: 0x10000008, - 0x1480: 0x10002000, - 0x1580: 0x2008, - 0x1680: 0x10202008, - 0x1780: 0x10200000, - 0x1880: 0x10202000, - 0x1980: 0x10200008, - 0x1a80: 0x2000, - 0x1b80: 0x202008, - 0x1c80: 0x200008, - 0x1d80: 0x0, - 0x1e80: 0x10000000, - 0x1f80: 0x10002008 - }, - { - 0x0: 0x100000, - 0x10: 0x2000401, - 0x20: 0x400, - 0x30: 0x100401, - 0x40: 0x2100401, - 0x50: 0x0, - 0x60: 0x1, - 0x70: 0x2100001, - 0x80: 0x2000400, - 0x90: 0x100001, - 0xa0: 0x2000001, - 0xb0: 0x2100400, - 0xc0: 0x2100000, - 0xd0: 0x401, - 0xe0: 0x100400, - 0xf0: 0x2000000, - 0x8: 0x2100001, - 0x18: 0x0, - 0x28: 0x2000401, - 0x38: 0x2100400, - 0x48: 0x100000, - 0x58: 0x2000001, - 0x68: 0x2000000, - 0x78: 0x401, - 0x88: 0x100401, - 0x98: 0x2000400, - 0xa8: 0x2100000, - 0xb8: 0x100001, - 0xc8: 0x400, - 0xd8: 0x2100401, - 0xe8: 0x1, - 0xf8: 0x100400, - 0x100: 0x2000000, - 0x110: 0x100000, - 0x120: 0x2000401, - 0x130: 0x2100001, - 0x140: 0x100001, - 0x150: 0x2000400, - 0x160: 0x2100400, - 0x170: 0x100401, - 0x180: 0x401, - 0x190: 0x2100401, - 0x1a0: 0x100400, - 0x1b0: 0x1, - 0x1c0: 0x0, - 0x1d0: 0x2100000, - 0x1e0: 0x2000001, - 0x1f0: 0x400, - 0x108: 0x100400, - 0x118: 0x2000401, - 0x128: 0x2100001, - 0x138: 0x1, - 0x148: 0x2000000, - 0x158: 0x100000, - 0x168: 0x401, - 0x178: 0x2100400, - 0x188: 0x2000001, - 0x198: 0x2100000, - 0x1a8: 0x0, - 0x1b8: 0x2100401, - 0x1c8: 0x100401, - 0x1d8: 0x400, - 0x1e8: 0x2000400, - 0x1f8: 0x100001 - }, - { - 0x0: 0x8000820, - 0x1: 0x20000, - 0x2: 0x8000000, - 0x3: 0x20, - 0x4: 0x20020, - 0x5: 0x8020820, - 0x6: 0x8020800, - 0x7: 0x800, - 0x8: 0x8020000, - 0x9: 0x8000800, - 0xa: 0x20800, - 0xb: 0x8020020, - 0xc: 0x820, - 0xd: 0x0, - 0xe: 0x8000020, - 0xf: 0x20820, - 0x80000000: 0x800, - 0x80000001: 0x8020820, - 0x80000002: 0x8000820, - 0x80000003: 0x8000000, - 0x80000004: 0x8020000, - 0x80000005: 0x20800, - 0x80000006: 0x20820, - 0x80000007: 0x20, - 0x80000008: 0x8000020, - 0x80000009: 0x820, - 0x8000000a: 0x20020, - 0x8000000b: 0x8020800, - 0x8000000c: 0x0, - 0x8000000d: 0x8020020, - 0x8000000e: 0x8000800, - 0x8000000f: 0x20000, - 0x10: 0x20820, - 0x11: 0x8020800, - 0x12: 0x20, - 0x13: 0x800, - 0x14: 0x8000800, - 0x15: 0x8000020, - 0x16: 0x8020020, - 0x17: 0x20000, - 0x18: 0x0, - 0x19: 0x20020, - 0x1a: 0x8020000, - 0x1b: 0x8000820, - 0x1c: 0x8020820, - 0x1d: 0x20800, - 0x1e: 0x820, - 0x1f: 0x8000000, - 0x80000010: 0x20000, - 0x80000011: 0x800, - 0x80000012: 0x8020020, - 0x80000013: 0x20820, - 0x80000014: 0x20, - 0x80000015: 0x8020000, - 0x80000016: 0x8000000, - 0x80000017: 0x8000820, - 0x80000018: 0x8020820, - 0x80000019: 0x8000020, - 0x8000001a: 0x8000800, - 0x8000001b: 0x0, - 0x8000001c: 0x20800, - 0x8000001d: 0x820, - 0x8000001e: 0x20020, - 0x8000001f: 0x8020800 - } - ]; - - // Masks that select the SBOX input - var SBOX_MASK = [ - 0xf8000001, 0x1f800000, 0x01f80000, 0x001f8000, - 0x0001f800, 0x00001f80, 0x000001f8, 0x8000001f - ]; - - /** - * DES block cipher algorithm. - */ - var DES = C_algo.DES = BlockCipher.extend({ - _doReset: function () { - // Shortcuts - var key = this._key; - var keyWords = key.words; - - // Select 56 bits according to PC1 - var keyBits = []; - for (var i = 0; i < 56; i++) { - var keyBitPos = PC1[i] - 1; - keyBits[i] = (keyWords[keyBitPos >>> 5] >>> (31 - keyBitPos % 32)) & 1; - } - - // Assemble 16 subkeys - var subKeys = this._subKeys = []; - for (var nSubKey = 0; nSubKey < 16; nSubKey++) { - // Create subkey - var subKey = subKeys[nSubKey] = []; - - // Shortcut - var bitShift = BIT_SHIFTS[nSubKey]; - - // Select 48 bits according to PC2 - for (var i = 0; i < 24; i++) { - // Select from the left 28 key bits - subKey[(i / 6) | 0] |= keyBits[((PC2[i] - 1) + bitShift) % 28] << (31 - i % 6); - - // Select from the right 28 key bits - subKey[4 + ((i / 6) | 0)] |= keyBits[28 + (((PC2[i + 24] - 1) + bitShift) % 28)] << (31 - i % 6); - } - - // Since each subkey is applied to an expanded 32-bit input, - // the subkey can be broken into 8 values scaled to 32-bits, - // which allows the key to be used without expansion - subKey[0] = (subKey[0] << 1) | (subKey[0] >>> 31); - for (var i = 1; i < 7; i++) { - subKey[i] = subKey[i] >>> ((i - 1) * 4 + 3); - } - subKey[7] = (subKey[7] << 5) | (subKey[7] >>> 27); - } - - // Compute inverse subkeys - var invSubKeys = this._invSubKeys = []; - for (var i = 0; i < 16; i++) { - invSubKeys[i] = subKeys[15 - i]; - } - }, - - encryptBlock: function (M, offset) { - this._doCryptBlock(M, offset, this._subKeys); - }, - - decryptBlock: function (M, offset) { - this._doCryptBlock(M, offset, this._invSubKeys); - }, - - _doCryptBlock: function (M, offset, subKeys) { - // Get input - this._lBlock = M[offset]; - this._rBlock = M[offset + 1]; - - // Initial permutation - exchangeLR.call(this, 4, 0x0f0f0f0f); - exchangeLR.call(this, 16, 0x0000ffff); - exchangeRL.call(this, 2, 0x33333333); - exchangeRL.call(this, 8, 0x00ff00ff); - exchangeLR.call(this, 1, 0x55555555); - - // Rounds - for (var round = 0; round < 16; round++) { - // Shortcuts - var subKey = subKeys[round]; - var lBlock = this._lBlock; - var rBlock = this._rBlock; - - // Feistel function - var f = 0; - for (var i = 0; i < 8; i++) { - f |= SBOX_P[i][((rBlock ^ subKey[i]) & SBOX_MASK[i]) >>> 0]; - } - this._lBlock = rBlock; - this._rBlock = lBlock ^ f; - } - - // Undo swap from last round - var t = this._lBlock; - this._lBlock = this._rBlock; - this._rBlock = t; - - // Final permutation - exchangeLR.call(this, 1, 0x55555555); - exchangeRL.call(this, 8, 0x00ff00ff); - exchangeRL.call(this, 2, 0x33333333); - exchangeLR.call(this, 16, 0x0000ffff); - exchangeLR.call(this, 4, 0x0f0f0f0f); - - // Set output - M[offset] = this._lBlock; - M[offset + 1] = this._rBlock; - }, - - keySize: 64/32, - - ivSize: 64/32, - - blockSize: 64/32 - }); - - // Swap bits across the left and right words - function exchangeLR(offset, mask) { - var t = ((this._lBlock >>> offset) ^ this._rBlock) & mask; - this._rBlock ^= t; - this._lBlock ^= t << offset; - } - - function exchangeRL(offset, mask) { - var t = ((this._rBlock >>> offset) ^ this._lBlock) & mask; - this._lBlock ^= t; - this._rBlock ^= t << offset; - } - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.DES.encrypt(message, key, cfg); - * var plaintext = CryptoJS.DES.decrypt(ciphertext, key, cfg); - */ - C.DES = BlockCipher._createHelper(DES); - - /** - * Triple-DES block cipher algorithm. - */ - var TripleDES = C_algo.TripleDES = BlockCipher.extend({ - _doReset: function () { - // Shortcuts - var key = this._key; - var keyWords = key.words; - // Make sure the key length is valid (64, 128 or >= 192 bit) - if (keyWords.length !== 2 && keyWords.length !== 4 && keyWords.length < 6) { - throw new Error('Invalid key length - 3DES requires the key length to be 64, 128, 192 or >192.'); - } - - // Extend the key according to the keying options defined in 3DES standard - var key1 = keyWords.slice(0, 2); - var key2 = keyWords.length < 4 ? keyWords.slice(0, 2) : keyWords.slice(2, 4); - var key3 = keyWords.length < 6 ? keyWords.slice(0, 2) : keyWords.slice(4, 6); - - // Create DES instances - this._des1 = DES.createEncryptor(WordArray.create(key1)); - this._des2 = DES.createEncryptor(WordArray.create(key2)); - this._des3 = DES.createEncryptor(WordArray.create(key3)); - }, - - encryptBlock: function (M, offset) { - this._des1.encryptBlock(M, offset); - this._des2.decryptBlock(M, offset); - this._des3.encryptBlock(M, offset); - }, - - decryptBlock: function (M, offset) { - this._des3.decryptBlock(M, offset); - this._des2.encryptBlock(M, offset); - this._des1.decryptBlock(M, offset); - }, - - keySize: 192/32, - - ivSize: 64/32, - - blockSize: 64/32 - }); - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.TripleDES.encrypt(message, key, cfg); - * var plaintext = CryptoJS.TripleDES.decrypt(ciphertext, key, cfg); - */ - C.TripleDES = BlockCipher._createHelper(TripleDES); - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var StreamCipher = C_lib.StreamCipher; - var C_algo = C.algo; - - /** - * RC4 stream cipher algorithm. - */ - var RC4 = C_algo.RC4 = StreamCipher.extend({ - _doReset: function () { - // Shortcuts - var key = this._key; - var keyWords = key.words; - var keySigBytes = key.sigBytes; - - // Init sbox - var S = this._S = []; - for (var i = 0; i < 256; i++) { - S[i] = i; - } - - // Key setup - for (var i = 0, j = 0; i < 256; i++) { - var keyByteIndex = i % keySigBytes; - var keyByte = (keyWords[keyByteIndex >>> 2] >>> (24 - (keyByteIndex % 4) * 8)) & 0xff; - - j = (j + S[i] + keyByte) % 256; - - // Swap - var t = S[i]; - S[i] = S[j]; - S[j] = t; - } - - // Counters - this._i = this._j = 0; - }, - - _doProcessBlock: function (M, offset) { - M[offset] ^= generateKeystreamWord.call(this); - }, - - keySize: 256/32, - - ivSize: 0 - }); - - function generateKeystreamWord() { - // Shortcuts - var S = this._S; - var i = this._i; - var j = this._j; - - // Generate keystream word - var keystreamWord = 0; - for (var n = 0; n < 4; n++) { - i = (i + 1) % 256; - j = (j + S[i]) % 256; - - // Swap - var t = S[i]; - S[i] = S[j]; - S[j] = t; - - keystreamWord |= S[(S[i] + S[j]) % 256] << (24 - n * 8); - } - - // Update counters - this._i = i; - this._j = j; - - return keystreamWord; - } - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.RC4.encrypt(message, key, cfg); - * var plaintext = CryptoJS.RC4.decrypt(ciphertext, key, cfg); - */ - C.RC4 = StreamCipher._createHelper(RC4); - - /** - * Modified RC4 stream cipher algorithm. - */ - var RC4Drop = C_algo.RC4Drop = RC4.extend({ - /** - * Configuration options. - * - * @property {number} drop The number of keystream words to drop. Default 192 - */ - cfg: RC4.cfg.extend({ - drop: 192 - }), - - _doReset: function () { - RC4._doReset.call(this); - - // Drop - for (var i = this.cfg.drop; i > 0; i--) { - generateKeystreamWord.call(this); - } - } - }); - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.RC4Drop.encrypt(message, key, cfg); - * var plaintext = CryptoJS.RC4Drop.decrypt(ciphertext, key, cfg); - */ - C.RC4Drop = StreamCipher._createHelper(RC4Drop); - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var StreamCipher = C_lib.StreamCipher; - var C_algo = C.algo; - - // Reusable objects - var S = []; - var C_ = []; - var G = []; - - /** - * Rabbit stream cipher algorithm - */ - var Rabbit = C_algo.Rabbit = StreamCipher.extend({ - _doReset: function () { - // Shortcuts - var K = this._key.words; - var iv = this.cfg.iv; - - // Swap endian - for (var i = 0; i < 4; i++) { - K[i] = (((K[i] << 8) | (K[i] >>> 24)) & 0x00ff00ff) | - (((K[i] << 24) | (K[i] >>> 8)) & 0xff00ff00); - } - - // Generate initial state values - var X = this._X = [ - K[0], (K[3] << 16) | (K[2] >>> 16), - K[1], (K[0] << 16) | (K[3] >>> 16), - K[2], (K[1] << 16) | (K[0] >>> 16), - K[3], (K[2] << 16) | (K[1] >>> 16) - ]; - - // Generate initial counter values - var C = this._C = [ - (K[2] << 16) | (K[2] >>> 16), (K[0] & 0xffff0000) | (K[1] & 0x0000ffff), - (K[3] << 16) | (K[3] >>> 16), (K[1] & 0xffff0000) | (K[2] & 0x0000ffff), - (K[0] << 16) | (K[0] >>> 16), (K[2] & 0xffff0000) | (K[3] & 0x0000ffff), - (K[1] << 16) | (K[1] >>> 16), (K[3] & 0xffff0000) | (K[0] & 0x0000ffff) - ]; - - // Carry bit - this._b = 0; - - // Iterate the system four times - for (var i = 0; i < 4; i++) { - nextState.call(this); - } - - // Modify the counters - for (var i = 0; i < 8; i++) { - C[i] ^= X[(i + 4) & 7]; - } - - // IV setup - if (iv) { - // Shortcuts - var IV = iv.words; - var IV_0 = IV[0]; - var IV_1 = IV[1]; - - // Generate four subvectors - var i0 = (((IV_0 << 8) | (IV_0 >>> 24)) & 0x00ff00ff) | (((IV_0 << 24) | (IV_0 >>> 8)) & 0xff00ff00); - var i2 = (((IV_1 << 8) | (IV_1 >>> 24)) & 0x00ff00ff) | (((IV_1 << 24) | (IV_1 >>> 8)) & 0xff00ff00); - var i1 = (i0 >>> 16) | (i2 & 0xffff0000); - var i3 = (i2 << 16) | (i0 & 0x0000ffff); - - // Modify counter values - C[0] ^= i0; - C[1] ^= i1; - C[2] ^= i2; - C[3] ^= i3; - C[4] ^= i0; - C[5] ^= i1; - C[6] ^= i2; - C[7] ^= i3; - - // Iterate the system four times - for (var i = 0; i < 4; i++) { - nextState.call(this); - } - } - }, - - _doProcessBlock: function (M, offset) { - // Shortcut - var X = this._X; - - // Iterate the system - nextState.call(this); - - // Generate four keystream words - S[0] = X[0] ^ (X[5] >>> 16) ^ (X[3] << 16); - S[1] = X[2] ^ (X[7] >>> 16) ^ (X[5] << 16); - S[2] = X[4] ^ (X[1] >>> 16) ^ (X[7] << 16); - S[3] = X[6] ^ (X[3] >>> 16) ^ (X[1] << 16); - - for (var i = 0; i < 4; i++) { - // Swap endian - S[i] = (((S[i] << 8) | (S[i] >>> 24)) & 0x00ff00ff) | - (((S[i] << 24) | (S[i] >>> 8)) & 0xff00ff00); - - // Encrypt - M[offset + i] ^= S[i]; - } - }, - - blockSize: 128/32, - - ivSize: 64/32 - }); - - function nextState() { - // Shortcuts - var X = this._X; - var C = this._C; - - // Save old counter values - for (var i = 0; i < 8; i++) { - C_[i] = C[i]; - } - - // Calculate new counter values - C[0] = (C[0] + 0x4d34d34d + this._b) | 0; - C[1] = (C[1] + 0xd34d34d3 + ((C[0] >>> 0) < (C_[0] >>> 0) ? 1 : 0)) | 0; - C[2] = (C[2] + 0x34d34d34 + ((C[1] >>> 0) < (C_[1] >>> 0) ? 1 : 0)) | 0; - C[3] = (C[3] + 0x4d34d34d + ((C[2] >>> 0) < (C_[2] >>> 0) ? 1 : 0)) | 0; - C[4] = (C[4] + 0xd34d34d3 + ((C[3] >>> 0) < (C_[3] >>> 0) ? 1 : 0)) | 0; - C[5] = (C[5] + 0x34d34d34 + ((C[4] >>> 0) < (C_[4] >>> 0) ? 1 : 0)) | 0; - C[6] = (C[6] + 0x4d34d34d + ((C[5] >>> 0) < (C_[5] >>> 0) ? 1 : 0)) | 0; - C[7] = (C[7] + 0xd34d34d3 + ((C[6] >>> 0) < (C_[6] >>> 0) ? 1 : 0)) | 0; - this._b = (C[7] >>> 0) < (C_[7] >>> 0) ? 1 : 0; - - // Calculate the g-values - for (var i = 0; i < 8; i++) { - var gx = X[i] + C[i]; - - // Construct high and low argument for squaring - var ga = gx & 0xffff; - var gb = gx >>> 16; - - // Calculate high and low result of squaring - var gh = ((((ga * ga) >>> 17) + ga * gb) >>> 15) + gb * gb; - var gl = (((gx & 0xffff0000) * gx) | 0) + (((gx & 0x0000ffff) * gx) | 0); - - // High XOR low - G[i] = gh ^ gl; - } - - // Calculate new state values - X[0] = (G[0] + ((G[7] << 16) | (G[7] >>> 16)) + ((G[6] << 16) | (G[6] >>> 16))) | 0; - X[1] = (G[1] + ((G[0] << 8) | (G[0] >>> 24)) + G[7]) | 0; - X[2] = (G[2] + ((G[1] << 16) | (G[1] >>> 16)) + ((G[0] << 16) | (G[0] >>> 16))) | 0; - X[3] = (G[3] + ((G[2] << 8) | (G[2] >>> 24)) + G[1]) | 0; - X[4] = (G[4] + ((G[3] << 16) | (G[3] >>> 16)) + ((G[2] << 16) | (G[2] >>> 16))) | 0; - X[5] = (G[5] + ((G[4] << 8) | (G[4] >>> 24)) + G[3]) | 0; - X[6] = (G[6] + ((G[5] << 16) | (G[5] >>> 16)) + ((G[4] << 16) | (G[4] >>> 16))) | 0; - X[7] = (G[7] + ((G[6] << 8) | (G[6] >>> 24)) + G[5]) | 0; - } - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.Rabbit.encrypt(message, key, cfg); - * var plaintext = CryptoJS.Rabbit.decrypt(ciphertext, key, cfg); - */ - C.Rabbit = StreamCipher._createHelper(Rabbit); - }()); - - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var StreamCipher = C_lib.StreamCipher; - var C_algo = C.algo; - - // Reusable objects - var S = []; - var C_ = []; - var G = []; - - /** - * Rabbit stream cipher algorithm. - * - * This is a legacy version that neglected to convert the key to little-endian. - * This error doesn't affect the cipher's security, - * but it does affect its compatibility with other implementations. - */ - var RabbitLegacy = C_algo.RabbitLegacy = StreamCipher.extend({ - _doReset: function () { - // Shortcuts - var K = this._key.words; - var iv = this.cfg.iv; - - // Generate initial state values - var X = this._X = [ - K[0], (K[3] << 16) | (K[2] >>> 16), - K[1], (K[0] << 16) | (K[3] >>> 16), - K[2], (K[1] << 16) | (K[0] >>> 16), - K[3], (K[2] << 16) | (K[1] >>> 16) - ]; - - // Generate initial counter values - var C = this._C = [ - (K[2] << 16) | (K[2] >>> 16), (K[0] & 0xffff0000) | (K[1] & 0x0000ffff), - (K[3] << 16) | (K[3] >>> 16), (K[1] & 0xffff0000) | (K[2] & 0x0000ffff), - (K[0] << 16) | (K[0] >>> 16), (K[2] & 0xffff0000) | (K[3] & 0x0000ffff), - (K[1] << 16) | (K[1] >>> 16), (K[3] & 0xffff0000) | (K[0] & 0x0000ffff) - ]; - - // Carry bit - this._b = 0; - - // Iterate the system four times - for (var i = 0; i < 4; i++) { - nextState.call(this); - } - - // Modify the counters - for (var i = 0; i < 8; i++) { - C[i] ^= X[(i + 4) & 7]; - } - - // IV setup - if (iv) { - // Shortcuts - var IV = iv.words; - var IV_0 = IV[0]; - var IV_1 = IV[1]; - - // Generate four subvectors - var i0 = (((IV_0 << 8) | (IV_0 >>> 24)) & 0x00ff00ff) | (((IV_0 << 24) | (IV_0 >>> 8)) & 0xff00ff00); - var i2 = (((IV_1 << 8) | (IV_1 >>> 24)) & 0x00ff00ff) | (((IV_1 << 24) | (IV_1 >>> 8)) & 0xff00ff00); - var i1 = (i0 >>> 16) | (i2 & 0xffff0000); - var i3 = (i2 << 16) | (i0 & 0x0000ffff); - - // Modify counter values - C[0] ^= i0; - C[1] ^= i1; - C[2] ^= i2; - C[3] ^= i3; - C[4] ^= i0; - C[5] ^= i1; - C[6] ^= i2; - C[7] ^= i3; - - // Iterate the system four times - for (var i = 0; i < 4; i++) { - nextState.call(this); - } - } - }, - - _doProcessBlock: function (M, offset) { - // Shortcut - var X = this._X; - - // Iterate the system - nextState.call(this); - - // Generate four keystream words - S[0] = X[0] ^ (X[5] >>> 16) ^ (X[3] << 16); - S[1] = X[2] ^ (X[7] >>> 16) ^ (X[5] << 16); - S[2] = X[4] ^ (X[1] >>> 16) ^ (X[7] << 16); - S[3] = X[6] ^ (X[3] >>> 16) ^ (X[1] << 16); - - for (var i = 0; i < 4; i++) { - // Swap endian - S[i] = (((S[i] << 8) | (S[i] >>> 24)) & 0x00ff00ff) | - (((S[i] << 24) | (S[i] >>> 8)) & 0xff00ff00); - - // Encrypt - M[offset + i] ^= S[i]; - } - }, - - blockSize: 128/32, - - ivSize: 64/32 - }); - - function nextState() { - // Shortcuts - var X = this._X; - var C = this._C; - - // Save old counter values - for (var i = 0; i < 8; i++) { - C_[i] = C[i]; - } - - // Calculate new counter values - C[0] = (C[0] + 0x4d34d34d + this._b) | 0; - C[1] = (C[1] + 0xd34d34d3 + ((C[0] >>> 0) < (C_[0] >>> 0) ? 1 : 0)) | 0; - C[2] = (C[2] + 0x34d34d34 + ((C[1] >>> 0) < (C_[1] >>> 0) ? 1 : 0)) | 0; - C[3] = (C[3] + 0x4d34d34d + ((C[2] >>> 0) < (C_[2] >>> 0) ? 1 : 0)) | 0; - C[4] = (C[4] + 0xd34d34d3 + ((C[3] >>> 0) < (C_[3] >>> 0) ? 1 : 0)) | 0; - C[5] = (C[5] + 0x34d34d34 + ((C[4] >>> 0) < (C_[4] >>> 0) ? 1 : 0)) | 0; - C[6] = (C[6] + 0x4d34d34d + ((C[5] >>> 0) < (C_[5] >>> 0) ? 1 : 0)) | 0; - C[7] = (C[7] + 0xd34d34d3 + ((C[6] >>> 0) < (C_[6] >>> 0) ? 1 : 0)) | 0; - this._b = (C[7] >>> 0) < (C_[7] >>> 0) ? 1 : 0; - - // Calculate the g-values - for (var i = 0; i < 8; i++) { - var gx = X[i] + C[i]; - - // Construct high and low argument for squaring - var ga = gx & 0xffff; - var gb = gx >>> 16; - - // Calculate high and low result of squaring - var gh = ((((ga * ga) >>> 17) + ga * gb) >>> 15) + gb * gb; - var gl = (((gx & 0xffff0000) * gx) | 0) + (((gx & 0x0000ffff) * gx) | 0); - - // High XOR low - G[i] = gh ^ gl; - } - - // Calculate new state values - X[0] = (G[0] + ((G[7] << 16) | (G[7] >>> 16)) + ((G[6] << 16) | (G[6] >>> 16))) | 0; - X[1] = (G[1] + ((G[0] << 8) | (G[0] >>> 24)) + G[7]) | 0; - X[2] = (G[2] + ((G[1] << 16) | (G[1] >>> 16)) + ((G[0] << 16) | (G[0] >>> 16))) | 0; - X[3] = (G[3] + ((G[2] << 8) | (G[2] >>> 24)) + G[1]) | 0; - X[4] = (G[4] + ((G[3] << 16) | (G[3] >>> 16)) + ((G[2] << 16) | (G[2] >>> 16))) | 0; - X[5] = (G[5] + ((G[4] << 8) | (G[4] >>> 24)) + G[3]) | 0; - X[6] = (G[6] + ((G[5] << 16) | (G[5] >>> 16)) + ((G[4] << 16) | (G[4] >>> 16))) | 0; - X[7] = (G[7] + ((G[6] << 8) | (G[6] >>> 24)) + G[5]) | 0; - } - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.RabbitLegacy.encrypt(message, key, cfg); - * var plaintext = CryptoJS.RabbitLegacy.decrypt(ciphertext, key, cfg); - */ - C.RabbitLegacy = StreamCipher._createHelper(RabbitLegacy); - }()); - - - return CryptoJS; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/docs/QuickStartGuide.wiki b/www/AESBox/crypto-js-4.1.1/docs/QuickStartGuide.wiki deleted file mode 100644 index 765f35b..0000000 --- a/www/AESBox/crypto-js-4.1.1/docs/QuickStartGuide.wiki +++ /dev/null @@ -1,470 +0,0 @@ - - ----- - -= Quick-start Guide = - -== Hashers == - -=== The Hasher Algorithms === - -==== MD5 ==== - -MD5 is a widely used hash function. It's been used in a variety of security applications and is also commonly used to check the integrity of files. Though, MD5 is not collision resistant, and it isn't suitable for applications like SSL certificates or digital signatures that rely on this property. - -{{{ - - -}}} - -==== SHA-1 ==== - -The SHA hash functions were designed by the National Security Agency (NSA). SHA-1 is the most established of the existing SHA hash functions, and it's used in a variety of security applications and protocols. Though, SHA-1's collision resistance has been weakening as new attacks are discovered or improved. - -{{{ - - -}}} - -==== SHA-2 ==== - -SHA-256 is one of the four variants in the SHA-2 set. It isn't as widely used as SHA-1, though it appears to provide much better security. - -{{{ - - -}}} - -SHA-512 is largely identical to SHA-256 but operates on 64-bit words rather than 32. - -{{{ - - -}}} - -CryptoJS also supports SHA-224 and SHA-384, which are largely identical but truncated versions of SHA-256 and SHA-512 respectively. - -==== SHA-3 ==== - -SHA-3 is the winner of a five-year competition to select a new cryptographic hash algorithm where 64 competing designs were evaluated. - -{{{ - - -}}} - -SHA-3 can be configured to output hash lengths of one of 224, 256, 384, or 512 bits. The default is 512 bits. - -{{{ - - -}}} - -==== RIPEMD-160 ==== - -{{{ - - -}}} - -=== The Hasher Input === - -The hash algorithms accept either strings or instances of CryptoJS.lib.WordArray. A WordArray object represents an array of 32-bit words. When you pass a string, it's automatically converted to a WordArray encoded as UTF-8. - -=== The Hasher Output === - -The hash you get back isn't a string yet. It's a WordArray object. When you use a WordArray object in a string context, it's automatically converted to a hex string. - -{{{ - - -}}} - -You can convert a WordArray object to other formats by explicitly calling the toString method and passing an encoder. - -{{{ - - - -}}} - -=== Progressive Hashing === - -{{{ - - -}}} - -== HMAC == - -Keyed-hash message authentication codes (HMAC) is a mechanism for message authentication using cryptographic hash functions. - -HMAC can be used in combination with any iterated cryptographic hash function. - -{{{ - - - - - -}}} - -=== Progressive HMAC Hashing === - -{{{ - - -}}} - -== PBKDF2 == - -PBKDF2 is a password-based key derivation function. In many applications of cryptography, user security is ultimately dependent on a password, and because a password usually can't be used directly as a cryptographic key, some processing is required. - -A salt provides a large set of keys for any given password, and an iteration count increases the cost of producing keys from a password, thereby also increasing the difficulty of attack. - -{{{ - - -}}} - -== Ciphers == - -=== The Cipher Algorithms === - -==== AES ==== - -The Advanced Encryption Standard (AES) is a U.S. Federal Information Processing Standard (FIPS). It was selected after a 5-year process where 15 competing designs were evaluated. - -{{{ - - -}}} - -CryptoJS supports AES-128, AES-192, and AES-256. It will pick the variant by the size of the key you pass in. If you use a passphrase, then it will generate a 256-bit key. - -==== DES, Triple DES ==== - -DES is a previously dominant algorithm for encryption, and was published as an official Federal Information Processing Standard (FIPS). DES is now considered to be insecure due to the small key size. - -{{{ - - -}}} - -Triple DES applies DES three times to each block to increase the key size. The algorithm is believed to be secure in this form. - -{{{ - - -}}} - -==== Rabbit ==== - -Rabbit is a high-performance stream cipher and a finalist in the eSTREAM Portfolio. It is one of the four designs selected after a 3 1/2-year process where 22 designs were evaluated. - -{{{ - - -}}} - -==== RC4, RC4Drop ==== - -RC4 is a widely-used stream cipher. It's used in popular protocols such as SSL and WEP. Although remarkable for its simplicity and speed, the algorithm's history doesn't inspire confidence in its security. - -{{{ - - -}}} - -It was discovered that the first few bytes of keystream are strongly non-random and leak information about the key. We can defend against this attack by discarding the initial portion of the keystream. This modified algorithm is traditionally called RC4-drop. - -By default, 192 words (768 bytes) are dropped, but you can configure the algorithm to drop any number of words. - -{{{ - - -}}} - -=== Custom Key and IV === - -{{{ - - -}}} - -=== Block Modes and Padding === - -{{{ - - - - -}}} - -CryptoJS supports the following modes: - - * CBC (the default) - * CFB - * CTR - * OFB - * ECB - -And CryptoJS supports the following padding schemes: - - * Pkcs7 (the default) - * Iso97971 - * AnsiX923 - * Iso10126 - * ZeroPadding - * NoPadding - -=== The Cipher Input === - -For the plaintext message, the cipher algorithms accept either strings or instances of CryptoJS.lib.WordArray. - -For the key, when you pass a string, it's treated as a passphrase and used to derive an actual key and IV. Or you can pass a WordArray that represents the actual key. If you pass the actual key, you must also pass the actual IV. - -For the ciphertext, the cipher algorithms accept either strings or instances of CryptoJS.lib.CipherParams. A CipherParams object represents a collection of parameters such as the IV, a salt, and the raw ciphertext itself. When you pass a string, it's automatically converted to a CipherParams object according to a configurable format strategy. - -=== The Cipher Output === - -The plaintext you get back after decryption is a WordArray object. See Hashers' Output for more detail. - -The ciphertext you get back after encryption isn't a string yet. It's a CipherParams object. A CipherParams object gives you access to all the parameters used during encryption. When you use a CipherParams object in a string context, it's automatically converted to a string according to a format strategy. The default is an OpenSSL-compatible format. - -{{{ - - -}}} - -You can define your own formats in order to be compatible with other crypto implementations. A format is an object with two methods—stringify and parse—that converts between CipherParams objects and ciphertext strings. - -Here's how you might write a JSON formatter: - -{{{ - - -}}} - -=== Progressive Ciphering === - -{{{ - - -}}} - -=== Interoperability === - -==== With OpenSSL ==== - -Encrypt with OpenSSL: - -{{{ -openssl enc -aes-256-cbc -in infile -out outfile -pass pass:"Secret Passphrase" -e -base64 -}}} - -Decrypt with CryptoJS: - -{{{ - - -}}} - -== Encoders == - -CryptoJS can convert from encoding formats such as Base64, Latin1 or Hex to WordArray objects and vica versa. - -{{{ - - - - -}}} diff --git a/www/AESBox/crypto-js-4.1.1/enc-base64.js b/www/AESBox/crypto-js-4.1.1/enc-base64.js deleted file mode 100644 index 0ffcd53..0000000 --- a/www/AESBox/crypto-js-4.1.1/enc-base64.js +++ /dev/null @@ -1,136 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var C_enc = C.enc; - - /** - * Base64 encoding strategy. - */ - var Base64 = C_enc.Base64 = { - /** - * Converts a word array to a Base64 string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The Base64 string. - * - * @static - * - * @example - * - * var base64String = CryptoJS.enc.Base64.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - var map = this._map; - - // Clamp excess bits - wordArray.clamp(); - - // Convert - var base64Chars = []; - for (var i = 0; i < sigBytes; i += 3) { - var byte1 = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - var byte2 = (words[(i + 1) >>> 2] >>> (24 - ((i + 1) % 4) * 8)) & 0xff; - var byte3 = (words[(i + 2) >>> 2] >>> (24 - ((i + 2) % 4) * 8)) & 0xff; - - var triplet = (byte1 << 16) | (byte2 << 8) | byte3; - - for (var j = 0; (j < 4) && (i + j * 0.75 < sigBytes); j++) { - base64Chars.push(map.charAt((triplet >>> (6 * (3 - j))) & 0x3f)); - } - } - - // Add padding - var paddingChar = map.charAt(64); - if (paddingChar) { - while (base64Chars.length % 4) { - base64Chars.push(paddingChar); - } - } - - return base64Chars.join(''); - }, - - /** - * Converts a Base64 string to a word array. - * - * @param {string} base64Str The Base64 string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Base64.parse(base64String); - */ - parse: function (base64Str) { - // Shortcuts - var base64StrLength = base64Str.length; - var map = this._map; - var reverseMap = this._reverseMap; - - if (!reverseMap) { - reverseMap = this._reverseMap = []; - for (var j = 0; j < map.length; j++) { - reverseMap[map.charCodeAt(j)] = j; - } - } - - // Ignore padding - var paddingChar = map.charAt(64); - if (paddingChar) { - var paddingIndex = base64Str.indexOf(paddingChar); - if (paddingIndex !== -1) { - base64StrLength = paddingIndex; - } - } - - // Convert - return parseLoop(base64Str, base64StrLength, reverseMap); - - }, - - _map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=' - }; - - function parseLoop(base64Str, base64StrLength, reverseMap) { - var words = []; - var nBytes = 0; - for (var i = 0; i < base64StrLength; i++) { - if (i % 4) { - var bits1 = reverseMap[base64Str.charCodeAt(i - 1)] << ((i % 4) * 2); - var bits2 = reverseMap[base64Str.charCodeAt(i)] >>> (6 - (i % 4) * 2); - var bitsCombined = bits1 | bits2; - words[nBytes >>> 2] |= bitsCombined << (24 - (nBytes % 4) * 8); - nBytes++; - } - } - return WordArray.create(words, nBytes); - } - }()); - - - return CryptoJS.enc.Base64; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/enc-base64url.js b/www/AESBox/crypto-js-4.1.1/enc-base64url.js deleted file mode 100644 index 2468912..0000000 --- a/www/AESBox/crypto-js-4.1.1/enc-base64url.js +++ /dev/null @@ -1,140 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var C_enc = C.enc; - - /** - * Base64url encoding strategy. - */ - var Base64url = C_enc.Base64url = { - /** - * Converts a word array to a Base64url string. - * - * @param {WordArray} wordArray The word array. - * - * @param {boolean} urlSafe Whether to use url safe - * - * @return {string} The Base64url string. - * - * @static - * - * @example - * - * var base64String = CryptoJS.enc.Base64url.stringify(wordArray); - */ - stringify: function (wordArray, urlSafe=true) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - var map = urlSafe ? this._safe_map : this._map; - - // Clamp excess bits - wordArray.clamp(); - - // Convert - var base64Chars = []; - for (var i = 0; i < sigBytes; i += 3) { - var byte1 = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; - var byte2 = (words[(i + 1) >>> 2] >>> (24 - ((i + 1) % 4) * 8)) & 0xff; - var byte3 = (words[(i + 2) >>> 2] >>> (24 - ((i + 2) % 4) * 8)) & 0xff; - - var triplet = (byte1 << 16) | (byte2 << 8) | byte3; - - for (var j = 0; (j < 4) && (i + j * 0.75 < sigBytes); j++) { - base64Chars.push(map.charAt((triplet >>> (6 * (3 - j))) & 0x3f)); - } - } - - // Add padding - var paddingChar = map.charAt(64); - if (paddingChar) { - while (base64Chars.length % 4) { - base64Chars.push(paddingChar); - } - } - - return base64Chars.join(''); - }, - - /** - * Converts a Base64url string to a word array. - * - * @param {string} base64Str The Base64url string. - * - * @param {boolean} urlSafe Whether to use url safe - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Base64url.parse(base64String); - */ - parse: function (base64Str, urlSafe=true) { - // Shortcuts - var base64StrLength = base64Str.length; - var map = urlSafe ? this._safe_map : this._map; - var reverseMap = this._reverseMap; - - if (!reverseMap) { - reverseMap = this._reverseMap = []; - for (var j = 0; j < map.length; j++) { - reverseMap[map.charCodeAt(j)] = j; - } - } - - // Ignore padding - var paddingChar = map.charAt(64); - if (paddingChar) { - var paddingIndex = base64Str.indexOf(paddingChar); - if (paddingIndex !== -1) { - base64StrLength = paddingIndex; - } - } - - // Convert - return parseLoop(base64Str, base64StrLength, reverseMap); - - }, - - _map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=', - _safe_map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_', - }; - - function parseLoop(base64Str, base64StrLength, reverseMap) { - var words = []; - var nBytes = 0; - for (var i = 0; i < base64StrLength; i++) { - if (i % 4) { - var bits1 = reverseMap[base64Str.charCodeAt(i - 1)] << ((i % 4) * 2); - var bits2 = reverseMap[base64Str.charCodeAt(i)] >>> (6 - (i % 4) * 2); - var bitsCombined = bits1 | bits2; - words[nBytes >>> 2] |= bitsCombined << (24 - (nBytes % 4) * 8); - nBytes++; - } - } - return WordArray.create(words, nBytes); - } - }()); - - return CryptoJS.enc.Base64url; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/enc-hex.js b/www/AESBox/crypto-js-4.1.1/enc-hex.js deleted file mode 100644 index 88161ff..0000000 --- a/www/AESBox/crypto-js-4.1.1/enc-hex.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.enc.Hex; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/enc-latin1.js b/www/AESBox/crypto-js-4.1.1/enc-latin1.js deleted file mode 100644 index ade56dc..0000000 --- a/www/AESBox/crypto-js-4.1.1/enc-latin1.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.enc.Latin1; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/enc-utf16.js b/www/AESBox/crypto-js-4.1.1/enc-utf16.js deleted file mode 100644 index 7de6245..0000000 --- a/www/AESBox/crypto-js-4.1.1/enc-utf16.js +++ /dev/null @@ -1,149 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var C_enc = C.enc; - - /** - * UTF-16 BE encoding strategy. - */ - var Utf16BE = C_enc.Utf16 = C_enc.Utf16BE = { - /** - * Converts a word array to a UTF-16 BE string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The UTF-16 BE string. - * - * @static - * - * @example - * - * var utf16String = CryptoJS.enc.Utf16.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - - // Convert - var utf16Chars = []; - for (var i = 0; i < sigBytes; i += 2) { - var codePoint = (words[i >>> 2] >>> (16 - (i % 4) * 8)) & 0xffff; - utf16Chars.push(String.fromCharCode(codePoint)); - } - - return utf16Chars.join(''); - }, - - /** - * Converts a UTF-16 BE string to a word array. - * - * @param {string} utf16Str The UTF-16 BE string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Utf16.parse(utf16String); - */ - parse: function (utf16Str) { - // Shortcut - var utf16StrLength = utf16Str.length; - - // Convert - var words = []; - for (var i = 0; i < utf16StrLength; i++) { - words[i >>> 1] |= utf16Str.charCodeAt(i) << (16 - (i % 2) * 16); - } - - return WordArray.create(words, utf16StrLength * 2); - } - }; - - /** - * UTF-16 LE encoding strategy. - */ - C_enc.Utf16LE = { - /** - * Converts a word array to a UTF-16 LE string. - * - * @param {WordArray} wordArray The word array. - * - * @return {string} The UTF-16 LE string. - * - * @static - * - * @example - * - * var utf16Str = CryptoJS.enc.Utf16LE.stringify(wordArray); - */ - stringify: function (wordArray) { - // Shortcuts - var words = wordArray.words; - var sigBytes = wordArray.sigBytes; - - // Convert - var utf16Chars = []; - for (var i = 0; i < sigBytes; i += 2) { - var codePoint = swapEndian((words[i >>> 2] >>> (16 - (i % 4) * 8)) & 0xffff); - utf16Chars.push(String.fromCharCode(codePoint)); - } - - return utf16Chars.join(''); - }, - - /** - * Converts a UTF-16 LE string to a word array. - * - * @param {string} utf16Str The UTF-16 LE string. - * - * @return {WordArray} The word array. - * - * @static - * - * @example - * - * var wordArray = CryptoJS.enc.Utf16LE.parse(utf16Str); - */ - parse: function (utf16Str) { - // Shortcut - var utf16StrLength = utf16Str.length; - - // Convert - var words = []; - for (var i = 0; i < utf16StrLength; i++) { - words[i >>> 1] |= swapEndian(utf16Str.charCodeAt(i) << (16 - (i % 2) * 16)); - } - - return WordArray.create(words, utf16StrLength * 2); - } - }; - - function swapEndian(word) { - return ((word << 8) & 0xff00ff00) | ((word >>> 8) & 0x00ff00ff); - } - }()); - - - return CryptoJS.enc.Utf16; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/enc-utf8.js b/www/AESBox/crypto-js-4.1.1/enc-utf8.js deleted file mode 100644 index e7a251d..0000000 --- a/www/AESBox/crypto-js-4.1.1/enc-utf8.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.enc.Utf8; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/evpkdf.js b/www/AESBox/crypto-js-4.1.1/evpkdf.js deleted file mode 100644 index 578974a..0000000 --- a/www/AESBox/crypto-js-4.1.1/evpkdf.js +++ /dev/null @@ -1,134 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./sha1"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./sha1", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var WordArray = C_lib.WordArray; - var C_algo = C.algo; - var MD5 = C_algo.MD5; - - /** - * This key derivation function is meant to conform with EVP_BytesToKey. - * www.openssl.org/docs/crypto/EVP_BytesToKey.html - */ - var EvpKDF = C_algo.EvpKDF = Base.extend({ - /** - * Configuration options. - * - * @property {number} keySize The key size in words to generate. Default: 4 (128 bits) - * @property {Hasher} hasher The hash algorithm to use. Default: MD5 - * @property {number} iterations The number of iterations to perform. Default: 1 - */ - cfg: Base.extend({ - keySize: 128/32, - hasher: MD5, - iterations: 1 - }), - - /** - * Initializes a newly created key derivation function. - * - * @param {Object} cfg (Optional) The configuration options to use for the derivation. - * - * @example - * - * var kdf = CryptoJS.algo.EvpKDF.create(); - * var kdf = CryptoJS.algo.EvpKDF.create({ keySize: 8 }); - * var kdf = CryptoJS.algo.EvpKDF.create({ keySize: 8, iterations: 1000 }); - */ - init: function (cfg) { - this.cfg = this.cfg.extend(cfg); - }, - - /** - * Derives a key from a password. - * - * @param {WordArray|string} password The password. - * @param {WordArray|string} salt A salt. - * - * @return {WordArray} The derived key. - * - * @example - * - * var key = kdf.compute(password, salt); - */ - compute: function (password, salt) { - var block; - - // Shortcut - var cfg = this.cfg; - - // Init hasher - var hasher = cfg.hasher.create(); - - // Initial values - var derivedKey = WordArray.create(); - - // Shortcuts - var derivedKeyWords = derivedKey.words; - var keySize = cfg.keySize; - var iterations = cfg.iterations; - - // Generate key - while (derivedKeyWords.length < keySize) { - if (block) { - hasher.update(block); - } - block = hasher.update(password).finalize(salt); - hasher.reset(); - - // Iterations - for (var i = 1; i < iterations; i++) { - block = hasher.finalize(block); - hasher.reset(); - } - - derivedKey.concat(block); - } - derivedKey.sigBytes = keySize * 4; - - return derivedKey; - } - }); - - /** - * Derives a key from a password. - * - * @param {WordArray|string} password The password. - * @param {WordArray|string} salt A salt. - * @param {Object} cfg (Optional) The configuration options to use for this computation. - * - * @return {WordArray} The derived key. - * - * @static - * - * @example - * - * var key = CryptoJS.EvpKDF(password, salt); - * var key = CryptoJS.EvpKDF(password, salt, { keySize: 8 }); - * var key = CryptoJS.EvpKDF(password, salt, { keySize: 8, iterations: 1000 }); - */ - C.EvpKDF = function (password, salt, cfg) { - return EvpKDF.create(cfg).compute(password, salt); - }; - }()); - - - return CryptoJS.EvpKDF; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/format-hex.js b/www/AESBox/crypto-js-4.1.1/format-hex.js deleted file mode 100644 index 2e9a861..0000000 --- a/www/AESBox/crypto-js-4.1.1/format-hex.js +++ /dev/null @@ -1,66 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function (undefined) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var CipherParams = C_lib.CipherParams; - var C_enc = C.enc; - var Hex = C_enc.Hex; - var C_format = C.format; - - var HexFormatter = C_format.Hex = { - /** - * Converts the ciphertext of a cipher params object to a hexadecimally encoded string. - * - * @param {CipherParams} cipherParams The cipher params object. - * - * @return {string} The hexadecimally encoded string. - * - * @static - * - * @example - * - * var hexString = CryptoJS.format.Hex.stringify(cipherParams); - */ - stringify: function (cipherParams) { - return cipherParams.ciphertext.toString(Hex); - }, - - /** - * Converts a hexadecimally encoded ciphertext string to a cipher params object. - * - * @param {string} input The hexadecimally encoded string. - * - * @return {CipherParams} The cipher params object. - * - * @static - * - * @example - * - * var cipherParams = CryptoJS.format.Hex.parse(hexString); - */ - parse: function (input) { - var ciphertext = Hex.parse(input); - return CipherParams.create({ ciphertext: ciphertext }); - } - }; - }()); - - - return CryptoJS.format.Hex; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/format-openssl.js b/www/AESBox/crypto-js-4.1.1/format-openssl.js deleted file mode 100644 index 3373edc..0000000 --- a/www/AESBox/crypto-js-4.1.1/format-openssl.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.format.OpenSSL; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac-md5.js b/www/AESBox/crypto-js-4.1.1/hmac-md5.js deleted file mode 100644 index ad7a90a..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac-md5.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./md5"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./md5", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.HmacMD5; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac-ripemd160.js b/www/AESBox/crypto-js-4.1.1/hmac-ripemd160.js deleted file mode 100644 index 73d55a7..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac-ripemd160.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./ripemd160"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./ripemd160", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.HmacRIPEMD160; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac-sha1.js b/www/AESBox/crypto-js-4.1.1/hmac-sha1.js deleted file mode 100644 index 0b570cb..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac-sha1.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./sha1"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./sha1", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.HmacSHA1; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac-sha224.js b/www/AESBox/crypto-js-4.1.1/hmac-sha224.js deleted file mode 100644 index 3778863..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac-sha224.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./sha256"), require("./sha224"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./sha256", "./sha224", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.HmacSHA224; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac-sha256.js b/www/AESBox/crypto-js-4.1.1/hmac-sha256.js deleted file mode 100644 index 33b0c9f..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac-sha256.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./sha256"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./sha256", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.HmacSHA256; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac-sha3.js b/www/AESBox/crypto-js-4.1.1/hmac-sha3.js deleted file mode 100644 index 1248804..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac-sha3.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./x64-core"), require("./sha3"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./x64-core", "./sha3", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.HmacSHA3; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac-sha384.js b/www/AESBox/crypto-js-4.1.1/hmac-sha384.js deleted file mode 100644 index 0036e2b..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac-sha384.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./x64-core"), require("./sha512"), require("./sha384"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./x64-core", "./sha512", "./sha384", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.HmacSHA384; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac-sha512.js b/www/AESBox/crypto-js-4.1.1/hmac-sha512.js deleted file mode 100644 index c1005b6..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac-sha512.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./x64-core"), require("./sha512"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./x64-core", "./sha512", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.HmacSHA512; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/hmac.js b/www/AESBox/crypto-js-4.1.1/hmac.js deleted file mode 100644 index 8c09851..0000000 --- a/www/AESBox/crypto-js-4.1.1/hmac.js +++ /dev/null @@ -1,143 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var C_enc = C.enc; - var Utf8 = C_enc.Utf8; - var C_algo = C.algo; - - /** - * HMAC algorithm. - */ - var HMAC = C_algo.HMAC = Base.extend({ - /** - * Initializes a newly created HMAC. - * - * @param {Hasher} hasher The hash algorithm to use. - * @param {WordArray|string} key The secret key. - * - * @example - * - * var hmacHasher = CryptoJS.algo.HMAC.create(CryptoJS.algo.SHA256, key); - */ - init: function (hasher, key) { - // Init hasher - hasher = this._hasher = new hasher.init(); - - // Convert string to WordArray, else assume WordArray already - if (typeof key == 'string') { - key = Utf8.parse(key); - } - - // Shortcuts - var hasherBlockSize = hasher.blockSize; - var hasherBlockSizeBytes = hasherBlockSize * 4; - - // Allow arbitrary length keys - if (key.sigBytes > hasherBlockSizeBytes) { - key = hasher.finalize(key); - } - - // Clamp excess bits - key.clamp(); - - // Clone key for inner and outer pads - var oKey = this._oKey = key.clone(); - var iKey = this._iKey = key.clone(); - - // Shortcuts - var oKeyWords = oKey.words; - var iKeyWords = iKey.words; - - // XOR keys with pad constants - for (var i = 0; i < hasherBlockSize; i++) { - oKeyWords[i] ^= 0x5c5c5c5c; - iKeyWords[i] ^= 0x36363636; - } - oKey.sigBytes = iKey.sigBytes = hasherBlockSizeBytes; - - // Set initial values - this.reset(); - }, - - /** - * Resets this HMAC to its initial state. - * - * @example - * - * hmacHasher.reset(); - */ - reset: function () { - // Shortcut - var hasher = this._hasher; - - // Reset - hasher.reset(); - hasher.update(this._iKey); - }, - - /** - * Updates this HMAC with a message. - * - * @param {WordArray|string} messageUpdate The message to append. - * - * @return {HMAC} This HMAC instance. - * - * @example - * - * hmacHasher.update('message'); - * hmacHasher.update(wordArray); - */ - update: function (messageUpdate) { - this._hasher.update(messageUpdate); - - // Chainable - return this; - }, - - /** - * Finalizes the HMAC computation. - * Note that the finalize operation is effectively a destructive, read-once operation. - * - * @param {WordArray|string} messageUpdate (Optional) A final message update. - * - * @return {WordArray} The HMAC. - * - * @example - * - * var hmac = hmacHasher.finalize(); - * var hmac = hmacHasher.finalize('message'); - * var hmac = hmacHasher.finalize(wordArray); - */ - finalize: function (messageUpdate) { - // Shortcut - var hasher = this._hasher; - - // Compute HMAC - var innerHash = hasher.finalize(messageUpdate); - hasher.reset(); - var hmac = hasher.finalize(this._oKey.clone().concat(innerHash)); - - return hmac; - } - }); - }()); - - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/index.js b/www/AESBox/crypto-js-4.1.1/index.js deleted file mode 100644 index 7235391..0000000 --- a/www/AESBox/crypto-js-4.1.1/index.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./x64-core"), require("./lib-typedarrays"), require("./enc-utf16"), require("./enc-base64"), require("./enc-base64url"), require("./md5"), require("./sha1"), require("./sha256"), require("./sha224"), require("./sha512"), require("./sha384"), require("./sha3"), require("./ripemd160"), require("./hmac"), require("./pbkdf2"), require("./evpkdf"), require("./cipher-core"), require("./mode-cfb"), require("./mode-ctr"), require("./mode-ctr-gladman"), require("./mode-ofb"), require("./mode-ecb"), require("./pad-ansix923"), require("./pad-iso10126"), require("./pad-iso97971"), require("./pad-zeropadding"), require("./pad-nopadding"), require("./format-hex"), require("./aes"), require("./tripledes"), require("./rc4"), require("./rabbit"), require("./rabbit-legacy")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./x64-core", "./lib-typedarrays", "./enc-utf16", "./enc-base64", "./enc-base64url", "./md5", "./sha1", "./sha256", "./sha224", "./sha512", "./sha384", "./sha3", "./ripemd160", "./hmac", "./pbkdf2", "./evpkdf", "./cipher-core", "./mode-cfb", "./mode-ctr", "./mode-ctr-gladman", "./mode-ofb", "./mode-ecb", "./pad-ansix923", "./pad-iso10126", "./pad-iso97971", "./pad-zeropadding", "./pad-nopadding", "./format-hex", "./aes", "./tripledes", "./rc4", "./rabbit", "./rabbit-legacy"], factory); - } - else { - // Global (browser) - root.CryptoJS = factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/lib-typedarrays.js b/www/AESBox/crypto-js-4.1.1/lib-typedarrays.js deleted file mode 100644 index 264b210..0000000 --- a/www/AESBox/crypto-js-4.1.1/lib-typedarrays.js +++ /dev/null @@ -1,76 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Check if typed arrays are supported - if (typeof ArrayBuffer != 'function') { - return; - } - - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - - // Reference original init - var superInit = WordArray.init; - - // Augment WordArray.init to handle typed arrays - var subInit = WordArray.init = function (typedArray) { - // Convert buffers to uint8 - if (typedArray instanceof ArrayBuffer) { - typedArray = new Uint8Array(typedArray); - } - - // Convert other array views to uint8 - if ( - typedArray instanceof Int8Array || - (typeof Uint8ClampedArray !== "undefined" && typedArray instanceof Uint8ClampedArray) || - typedArray instanceof Int16Array || - typedArray instanceof Uint16Array || - typedArray instanceof Int32Array || - typedArray instanceof Uint32Array || - typedArray instanceof Float32Array || - typedArray instanceof Float64Array - ) { - typedArray = new Uint8Array(typedArray.buffer, typedArray.byteOffset, typedArray.byteLength); - } - - // Handle Uint8Array - if (typedArray instanceof Uint8Array) { - // Shortcut - var typedArrayByteLength = typedArray.byteLength; - - // Extract bytes - var words = []; - for (var i = 0; i < typedArrayByteLength; i++) { - words[i >>> 2] |= typedArray[i] << (24 - (i % 4) * 8); - } - - // Initialize this word array - superInit.call(this, words, typedArrayByteLength); - } else { - // Else call normal init - superInit.apply(this, arguments); - } - }; - - subInit.prototype = WordArray; - }()); - - - return CryptoJS.lib.WordArray; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/md5.js b/www/AESBox/crypto-js-4.1.1/md5.js deleted file mode 100644 index 12b0fdd..0000000 --- a/www/AESBox/crypto-js-4.1.1/md5.js +++ /dev/null @@ -1,268 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function (Math) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_algo = C.algo; - - // Constants table - var T = []; - - // Compute constants - (function () { - for (var i = 0; i < 64; i++) { - T[i] = (Math.abs(Math.sin(i + 1)) * 0x100000000) | 0; - } - }()); - - /** - * MD5 hash algorithm. - */ - var MD5 = C_algo.MD5 = Hasher.extend({ - _doReset: function () { - this._hash = new WordArray.init([ - 0x67452301, 0xefcdab89, - 0x98badcfe, 0x10325476 - ]); - }, - - _doProcessBlock: function (M, offset) { - // Swap endian - for (var i = 0; i < 16; i++) { - // Shortcuts - var offset_i = offset + i; - var M_offset_i = M[offset_i]; - - M[offset_i] = ( - (((M_offset_i << 8) | (M_offset_i >>> 24)) & 0x00ff00ff) | - (((M_offset_i << 24) | (M_offset_i >>> 8)) & 0xff00ff00) - ); - } - - // Shortcuts - var H = this._hash.words; - - var M_offset_0 = M[offset + 0]; - var M_offset_1 = M[offset + 1]; - var M_offset_2 = M[offset + 2]; - var M_offset_3 = M[offset + 3]; - var M_offset_4 = M[offset + 4]; - var M_offset_5 = M[offset + 5]; - var M_offset_6 = M[offset + 6]; - var M_offset_7 = M[offset + 7]; - var M_offset_8 = M[offset + 8]; - var M_offset_9 = M[offset + 9]; - var M_offset_10 = M[offset + 10]; - var M_offset_11 = M[offset + 11]; - var M_offset_12 = M[offset + 12]; - var M_offset_13 = M[offset + 13]; - var M_offset_14 = M[offset + 14]; - var M_offset_15 = M[offset + 15]; - - // Working varialbes - var a = H[0]; - var b = H[1]; - var c = H[2]; - var d = H[3]; - - // Computation - a = FF(a, b, c, d, M_offset_0, 7, T[0]); - d = FF(d, a, b, c, M_offset_1, 12, T[1]); - c = FF(c, d, a, b, M_offset_2, 17, T[2]); - b = FF(b, c, d, a, M_offset_3, 22, T[3]); - a = FF(a, b, c, d, M_offset_4, 7, T[4]); - d = FF(d, a, b, c, M_offset_5, 12, T[5]); - c = FF(c, d, a, b, M_offset_6, 17, T[6]); - b = FF(b, c, d, a, M_offset_7, 22, T[7]); - a = FF(a, b, c, d, M_offset_8, 7, T[8]); - d = FF(d, a, b, c, M_offset_9, 12, T[9]); - c = FF(c, d, a, b, M_offset_10, 17, T[10]); - b = FF(b, c, d, a, M_offset_11, 22, T[11]); - a = FF(a, b, c, d, M_offset_12, 7, T[12]); - d = FF(d, a, b, c, M_offset_13, 12, T[13]); - c = FF(c, d, a, b, M_offset_14, 17, T[14]); - b = FF(b, c, d, a, M_offset_15, 22, T[15]); - - a = GG(a, b, c, d, M_offset_1, 5, T[16]); - d = GG(d, a, b, c, M_offset_6, 9, T[17]); - c = GG(c, d, a, b, M_offset_11, 14, T[18]); - b = GG(b, c, d, a, M_offset_0, 20, T[19]); - a = GG(a, b, c, d, M_offset_5, 5, T[20]); - d = GG(d, a, b, c, M_offset_10, 9, T[21]); - c = GG(c, d, a, b, M_offset_15, 14, T[22]); - b = GG(b, c, d, a, M_offset_4, 20, T[23]); - a = GG(a, b, c, d, M_offset_9, 5, T[24]); - d = GG(d, a, b, c, M_offset_14, 9, T[25]); - c = GG(c, d, a, b, M_offset_3, 14, T[26]); - b = GG(b, c, d, a, M_offset_8, 20, T[27]); - a = GG(a, b, c, d, M_offset_13, 5, T[28]); - d = GG(d, a, b, c, M_offset_2, 9, T[29]); - c = GG(c, d, a, b, M_offset_7, 14, T[30]); - b = GG(b, c, d, a, M_offset_12, 20, T[31]); - - a = HH(a, b, c, d, M_offset_5, 4, T[32]); - d = HH(d, a, b, c, M_offset_8, 11, T[33]); - c = HH(c, d, a, b, M_offset_11, 16, T[34]); - b = HH(b, c, d, a, M_offset_14, 23, T[35]); - a = HH(a, b, c, d, M_offset_1, 4, T[36]); - d = HH(d, a, b, c, M_offset_4, 11, T[37]); - c = HH(c, d, a, b, M_offset_7, 16, T[38]); - b = HH(b, c, d, a, M_offset_10, 23, T[39]); - a = HH(a, b, c, d, M_offset_13, 4, T[40]); - d = HH(d, a, b, c, M_offset_0, 11, T[41]); - c = HH(c, d, a, b, M_offset_3, 16, T[42]); - b = HH(b, c, d, a, M_offset_6, 23, T[43]); - a = HH(a, b, c, d, M_offset_9, 4, T[44]); - d = HH(d, a, b, c, M_offset_12, 11, T[45]); - c = HH(c, d, a, b, M_offset_15, 16, T[46]); - b = HH(b, c, d, a, M_offset_2, 23, T[47]); - - a = II(a, b, c, d, M_offset_0, 6, T[48]); - d = II(d, a, b, c, M_offset_7, 10, T[49]); - c = II(c, d, a, b, M_offset_14, 15, T[50]); - b = II(b, c, d, a, M_offset_5, 21, T[51]); - a = II(a, b, c, d, M_offset_12, 6, T[52]); - d = II(d, a, b, c, M_offset_3, 10, T[53]); - c = II(c, d, a, b, M_offset_10, 15, T[54]); - b = II(b, c, d, a, M_offset_1, 21, T[55]); - a = II(a, b, c, d, M_offset_8, 6, T[56]); - d = II(d, a, b, c, M_offset_15, 10, T[57]); - c = II(c, d, a, b, M_offset_6, 15, T[58]); - b = II(b, c, d, a, M_offset_13, 21, T[59]); - a = II(a, b, c, d, M_offset_4, 6, T[60]); - d = II(d, a, b, c, M_offset_11, 10, T[61]); - c = II(c, d, a, b, M_offset_2, 15, T[62]); - b = II(b, c, d, a, M_offset_9, 21, T[63]); - - // Intermediate hash value - H[0] = (H[0] + a) | 0; - H[1] = (H[1] + b) | 0; - H[2] = (H[2] + c) | 0; - H[3] = (H[3] + d) | 0; - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - - var nBitsTotalH = Math.floor(nBitsTotal / 0x100000000); - var nBitsTotalL = nBitsTotal; - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = ( - (((nBitsTotalH << 8) | (nBitsTotalH >>> 24)) & 0x00ff00ff) | - (((nBitsTotalH << 24) | (nBitsTotalH >>> 8)) & 0xff00ff00) - ); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = ( - (((nBitsTotalL << 8) | (nBitsTotalL >>> 24)) & 0x00ff00ff) | - (((nBitsTotalL << 24) | (nBitsTotalL >>> 8)) & 0xff00ff00) - ); - - data.sigBytes = (dataWords.length + 1) * 4; - - // Hash final blocks - this._process(); - - // Shortcuts - var hash = this._hash; - var H = hash.words; - - // Swap endian - for (var i = 0; i < 4; i++) { - // Shortcut - var H_i = H[i]; - - H[i] = (((H_i << 8) | (H_i >>> 24)) & 0x00ff00ff) | - (((H_i << 24) | (H_i >>> 8)) & 0xff00ff00); - } - - // Return final computed hash - return hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - } - }); - - function FF(a, b, c, d, x, s, t) { - var n = a + ((b & c) | (~b & d)) + x + t; - return ((n << s) | (n >>> (32 - s))) + b; - } - - function GG(a, b, c, d, x, s, t) { - var n = a + ((b & d) | (c & ~d)) + x + t; - return ((n << s) | (n >>> (32 - s))) + b; - } - - function HH(a, b, c, d, x, s, t) { - var n = a + (b ^ c ^ d) + x + t; - return ((n << s) | (n >>> (32 - s))) + b; - } - - function II(a, b, c, d, x, s, t) { - var n = a + (c ^ (b | ~d)) + x + t; - return ((n << s) | (n >>> (32 - s))) + b; - } - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.MD5('message'); - * var hash = CryptoJS.MD5(wordArray); - */ - C.MD5 = Hasher._createHelper(MD5); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacMD5(message, key); - */ - C.HmacMD5 = Hasher._createHmacHelper(MD5); - }(Math)); - - - return CryptoJS.MD5; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/mode-cfb.js b/www/AESBox/crypto-js-4.1.1/mode-cfb.js deleted file mode 100644 index 444c9cb..0000000 --- a/www/AESBox/crypto-js-4.1.1/mode-cfb.js +++ /dev/null @@ -1,80 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * Cipher Feedback block mode. - */ - CryptoJS.mode.CFB = (function () { - var CFB = CryptoJS.lib.BlockCipherMode.extend(); - - CFB.Encryptor = CFB.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher; - var blockSize = cipher.blockSize; - - generateKeystreamAndEncrypt.call(this, words, offset, blockSize, cipher); - - // Remember this block to use with next block - this._prevBlock = words.slice(offset, offset + blockSize); - } - }); - - CFB.Decryptor = CFB.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher; - var blockSize = cipher.blockSize; - - // Remember this block to use with next block - var thisBlock = words.slice(offset, offset + blockSize); - - generateKeystreamAndEncrypt.call(this, words, offset, blockSize, cipher); - - // This block becomes the previous block - this._prevBlock = thisBlock; - } - }); - - function generateKeystreamAndEncrypt(words, offset, blockSize, cipher) { - var keystream; - - // Shortcut - var iv = this._iv; - - // Generate keystream - if (iv) { - keystream = iv.slice(0); - - // Remove IV for subsequent blocks - this._iv = undefined; - } else { - keystream = this._prevBlock; - } - cipher.encryptBlock(keystream, 0); - - // Encrypt - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= keystream[i]; - } - } - - return CFB; - }()); - - - return CryptoJS.mode.CFB; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/mode-ctr-gladman.js b/www/AESBox/crypto-js-4.1.1/mode-ctr-gladman.js deleted file mode 100644 index bbc5687..0000000 --- a/www/AESBox/crypto-js-4.1.1/mode-ctr-gladman.js +++ /dev/null @@ -1,116 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** @preserve - * Counter block mode compatible with Dr Brian Gladman fileenc.c - * derived from CryptoJS.mode.CTR - * Jan Hruby jhruby.web@gmail.com - */ - CryptoJS.mode.CTRGladman = (function () { - var CTRGladman = CryptoJS.lib.BlockCipherMode.extend(); - - function incWord(word) - { - if (((word >> 24) & 0xff) === 0xff) { //overflow - var b1 = (word >> 16)&0xff; - var b2 = (word >> 8)&0xff; - var b3 = word & 0xff; - - if (b1 === 0xff) // overflow b1 - { - b1 = 0; - if (b2 === 0xff) - { - b2 = 0; - if (b3 === 0xff) - { - b3 = 0; - } - else - { - ++b3; - } - } - else - { - ++b2; - } - } - else - { - ++b1; - } - - word = 0; - word += (b1 << 16); - word += (b2 << 8); - word += b3; - } - else - { - word += (0x01 << 24); - } - return word; - } - - function incCounter(counter) - { - if ((counter[0] = incWord(counter[0])) === 0) - { - // encr_data in fileenc.c from Dr Brian Gladman's counts only with DWORD j < 8 - counter[1] = incWord(counter[1]); - } - return counter; - } - - var Encryptor = CTRGladman.Encryptor = CTRGladman.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher - var blockSize = cipher.blockSize; - var iv = this._iv; - var counter = this._counter; - - // Generate keystream - if (iv) { - counter = this._counter = iv.slice(0); - - // Remove IV for subsequent blocks - this._iv = undefined; - } - - incCounter(counter); - - var keystream = counter.slice(0); - cipher.encryptBlock(keystream, 0); - - // Encrypt - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= keystream[i]; - } - } - }); - - CTRGladman.Decryptor = Encryptor; - - return CTRGladman; - }()); - - - - - return CryptoJS.mode.CTRGladman; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/mode-ctr.js b/www/AESBox/crypto-js-4.1.1/mode-ctr.js deleted file mode 100644 index c3d470a..0000000 --- a/www/AESBox/crypto-js-4.1.1/mode-ctr.js +++ /dev/null @@ -1,58 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * Counter block mode. - */ - CryptoJS.mode.CTR = (function () { - var CTR = CryptoJS.lib.BlockCipherMode.extend(); - - var Encryptor = CTR.Encryptor = CTR.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher - var blockSize = cipher.blockSize; - var iv = this._iv; - var counter = this._counter; - - // Generate keystream - if (iv) { - counter = this._counter = iv.slice(0); - - // Remove IV for subsequent blocks - this._iv = undefined; - } - var keystream = counter.slice(0); - cipher.encryptBlock(keystream, 0); - - // Increment counter - counter[blockSize - 1] = (counter[blockSize - 1] + 1) | 0 - - // Encrypt - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= keystream[i]; - } - } - }); - - CTR.Decryptor = Encryptor; - - return CTR; - }()); - - - return CryptoJS.mode.CTR; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/mode-ecb.js b/www/AESBox/crypto-js-4.1.1/mode-ecb.js deleted file mode 100644 index ff06921..0000000 --- a/www/AESBox/crypto-js-4.1.1/mode-ecb.js +++ /dev/null @@ -1,40 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * Electronic Codebook block mode. - */ - CryptoJS.mode.ECB = (function () { - var ECB = CryptoJS.lib.BlockCipherMode.extend(); - - ECB.Encryptor = ECB.extend({ - processBlock: function (words, offset) { - this._cipher.encryptBlock(words, offset); - } - }); - - ECB.Decryptor = ECB.extend({ - processBlock: function (words, offset) { - this._cipher.decryptBlock(words, offset); - } - }); - - return ECB; - }()); - - - return CryptoJS.mode.ECB; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/mode-ofb.js b/www/AESBox/crypto-js-4.1.1/mode-ofb.js deleted file mode 100644 index c01314c..0000000 --- a/www/AESBox/crypto-js-4.1.1/mode-ofb.js +++ /dev/null @@ -1,54 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * Output Feedback block mode. - */ - CryptoJS.mode.OFB = (function () { - var OFB = CryptoJS.lib.BlockCipherMode.extend(); - - var Encryptor = OFB.Encryptor = OFB.extend({ - processBlock: function (words, offset) { - // Shortcuts - var cipher = this._cipher - var blockSize = cipher.blockSize; - var iv = this._iv; - var keystream = this._keystream; - - // Generate keystream - if (iv) { - keystream = this._keystream = iv.slice(0); - - // Remove IV for subsequent blocks - this._iv = undefined; - } - cipher.encryptBlock(keystream, 0); - - // Encrypt - for (var i = 0; i < blockSize; i++) { - words[offset + i] ^= keystream[i]; - } - } - }); - - OFB.Decryptor = Encryptor; - - return OFB; - }()); - - - return CryptoJS.mode.OFB; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/package.json b/www/AESBox/crypto-js-4.1.1/package.json deleted file mode 100644 index 76bb388..0000000 --- a/www/AESBox/crypto-js-4.1.1/package.json +++ /dev/null @@ -1,42 +0,0 @@ -{ - "name": "crypto-js", - "version": "4.1.1", - "description": "JavaScript library of crypto standards.", - "license": "MIT", - "author": { - "name": "Evan Vosberg", - "url": "http://github.com/evanvosberg" - }, - "homepage": "http://github.com/brix/crypto-js", - "repository": { - "type": "git", - "url": "http://github.com/brix/crypto-js.git" - }, - "keywords": [ - "security", - "crypto", - "Hash", - "MD5", - "SHA1", - "SHA-1", - "SHA256", - "SHA-256", - "RC4", - "Rabbit", - "AES", - "DES", - "PBKDF2", - "HMAC", - "OFB", - "CFB", - "CTR", - "CBC", - "Base64", - "Base64url" - ], - "main": "index.js", - "dependencies": {}, - "browser": { - "crypto": false - } -} diff --git a/www/AESBox/crypto-js-4.1.1/pad-ansix923.js b/www/AESBox/crypto-js-4.1.1/pad-ansix923.js deleted file mode 100644 index f01f21e..0000000 --- a/www/AESBox/crypto-js-4.1.1/pad-ansix923.js +++ /dev/null @@ -1,49 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * ANSI X.923 padding strategy. - */ - CryptoJS.pad.AnsiX923 = { - pad: function (data, blockSize) { - // Shortcuts - var dataSigBytes = data.sigBytes; - var blockSizeBytes = blockSize * 4; - - // Count padding bytes - var nPaddingBytes = blockSizeBytes - dataSigBytes % blockSizeBytes; - - // Compute last byte position - var lastBytePos = dataSigBytes + nPaddingBytes - 1; - - // Pad - data.clamp(); - data.words[lastBytePos >>> 2] |= nPaddingBytes << (24 - (lastBytePos % 4) * 8); - data.sigBytes += nPaddingBytes; - }, - - unpad: function (data) { - // Get number of padding bytes from last byte - var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; - - // Remove padding - data.sigBytes -= nPaddingBytes; - } - }; - - - return CryptoJS.pad.Ansix923; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/pad-iso10126.js b/www/AESBox/crypto-js-4.1.1/pad-iso10126.js deleted file mode 100644 index 6e2aefd..0000000 --- a/www/AESBox/crypto-js-4.1.1/pad-iso10126.js +++ /dev/null @@ -1,44 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * ISO 10126 padding strategy. - */ - CryptoJS.pad.Iso10126 = { - pad: function (data, blockSize) { - // Shortcut - var blockSizeBytes = blockSize * 4; - - // Count padding bytes - var nPaddingBytes = blockSizeBytes - data.sigBytes % blockSizeBytes; - - // Pad - data.concat(CryptoJS.lib.WordArray.random(nPaddingBytes - 1)). - concat(CryptoJS.lib.WordArray.create([nPaddingBytes << 24], 1)); - }, - - unpad: function (data) { - // Get number of padding bytes from last byte - var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; - - // Remove padding - data.sigBytes -= nPaddingBytes; - } - }; - - - return CryptoJS.pad.Iso10126; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/pad-iso97971.js b/www/AESBox/crypto-js-4.1.1/pad-iso97971.js deleted file mode 100644 index 41049b4..0000000 --- a/www/AESBox/crypto-js-4.1.1/pad-iso97971.js +++ /dev/null @@ -1,40 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * ISO/IEC 9797-1 Padding Method 2. - */ - CryptoJS.pad.Iso97971 = { - pad: function (data, blockSize) { - // Add 0x80 byte - data.concat(CryptoJS.lib.WordArray.create([0x80000000], 1)); - - // Zero pad the rest - CryptoJS.pad.ZeroPadding.pad(data, blockSize); - }, - - unpad: function (data) { - // Remove zero padding - CryptoJS.pad.ZeroPadding.unpad(data); - - // Remove one more byte -- the 0x80 byte - data.sigBytes--; - } - }; - - - return CryptoJS.pad.Iso97971; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/pad-nopadding.js b/www/AESBox/crypto-js-4.1.1/pad-nopadding.js deleted file mode 100644 index c7787c9..0000000 --- a/www/AESBox/crypto-js-4.1.1/pad-nopadding.js +++ /dev/null @@ -1,30 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * A noop padding strategy. - */ - CryptoJS.pad.NoPadding = { - pad: function () { - }, - - unpad: function () { - } - }; - - - return CryptoJS.pad.NoPadding; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/pad-pkcs7.js b/www/AESBox/crypto-js-4.1.1/pad-pkcs7.js deleted file mode 100644 index 3555168..0000000 --- a/www/AESBox/crypto-js-4.1.1/pad-pkcs7.js +++ /dev/null @@ -1,18 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - return CryptoJS.pad.Pkcs7; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/pad-zeropadding.js b/www/AESBox/crypto-js-4.1.1/pad-zeropadding.js deleted file mode 100644 index a1a459e..0000000 --- a/www/AESBox/crypto-js-4.1.1/pad-zeropadding.js +++ /dev/null @@ -1,47 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** - * Zero padding strategy. - */ - CryptoJS.pad.ZeroPadding = { - pad: function (data, blockSize) { - // Shortcut - var blockSizeBytes = blockSize * 4; - - // Pad - data.clamp(); - data.sigBytes += blockSizeBytes - ((data.sigBytes % blockSizeBytes) || blockSizeBytes); - }, - - unpad: function (data) { - // Shortcut - var dataWords = data.words; - - // Unpad - var i = data.sigBytes - 1; - for (var i = data.sigBytes - 1; i >= 0; i--) { - if (((dataWords[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff)) { - data.sigBytes = i + 1; - break; - } - } - } - }; - - - return CryptoJS.pad.ZeroPadding; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/pbkdf2.js b/www/AESBox/crypto-js-4.1.1/pbkdf2.js deleted file mode 100644 index 1258251..0000000 --- a/www/AESBox/crypto-js-4.1.1/pbkdf2.js +++ /dev/null @@ -1,145 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./sha1"), require("./hmac")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./sha1", "./hmac"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var WordArray = C_lib.WordArray; - var C_algo = C.algo; - var SHA1 = C_algo.SHA1; - var HMAC = C_algo.HMAC; - - /** - * Password-Based Key Derivation Function 2 algorithm. - */ - var PBKDF2 = C_algo.PBKDF2 = Base.extend({ - /** - * Configuration options. - * - * @property {number} keySize The key size in words to generate. Default: 4 (128 bits) - * @property {Hasher} hasher The hasher to use. Default: SHA1 - * @property {number} iterations The number of iterations to perform. Default: 1 - */ - cfg: Base.extend({ - keySize: 128/32, - hasher: SHA1, - iterations: 1 - }), - - /** - * Initializes a newly created key derivation function. - * - * @param {Object} cfg (Optional) The configuration options to use for the derivation. - * - * @example - * - * var kdf = CryptoJS.algo.PBKDF2.create(); - * var kdf = CryptoJS.algo.PBKDF2.create({ keySize: 8 }); - * var kdf = CryptoJS.algo.PBKDF2.create({ keySize: 8, iterations: 1000 }); - */ - init: function (cfg) { - this.cfg = this.cfg.extend(cfg); - }, - - /** - * Computes the Password-Based Key Derivation Function 2. - * - * @param {WordArray|string} password The password. - * @param {WordArray|string} salt A salt. - * - * @return {WordArray} The derived key. - * - * @example - * - * var key = kdf.compute(password, salt); - */ - compute: function (password, salt) { - // Shortcut - var cfg = this.cfg; - - // Init HMAC - var hmac = HMAC.create(cfg.hasher, password); - - // Initial values - var derivedKey = WordArray.create(); - var blockIndex = WordArray.create([0x00000001]); - - // Shortcuts - var derivedKeyWords = derivedKey.words; - var blockIndexWords = blockIndex.words; - var keySize = cfg.keySize; - var iterations = cfg.iterations; - - // Generate key - while (derivedKeyWords.length < keySize) { - var block = hmac.update(salt).finalize(blockIndex); - hmac.reset(); - - // Shortcuts - var blockWords = block.words; - var blockWordsLength = blockWords.length; - - // Iterations - var intermediate = block; - for (var i = 1; i < iterations; i++) { - intermediate = hmac.finalize(intermediate); - hmac.reset(); - - // Shortcut - var intermediateWords = intermediate.words; - - // XOR intermediate with block - for (var j = 0; j < blockWordsLength; j++) { - blockWords[j] ^= intermediateWords[j]; - } - } - - derivedKey.concat(block); - blockIndexWords[0]++; - } - derivedKey.sigBytes = keySize * 4; - - return derivedKey; - } - }); - - /** - * Computes the Password-Based Key Derivation Function 2. - * - * @param {WordArray|string} password The password. - * @param {WordArray|string} salt A salt. - * @param {Object} cfg (Optional) The configuration options to use for this computation. - * - * @return {WordArray} The derived key. - * - * @static - * - * @example - * - * var key = CryptoJS.PBKDF2(password, salt); - * var key = CryptoJS.PBKDF2(password, salt, { keySize: 8 }); - * var key = CryptoJS.PBKDF2(password, salt, { keySize: 8, iterations: 1000 }); - */ - C.PBKDF2 = function (password, salt, cfg) { - return PBKDF2.create(cfg).compute(password, salt); - }; - }()); - - - return CryptoJS.PBKDF2; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/rabbit-legacy.js b/www/AESBox/crypto-js-4.1.1/rabbit-legacy.js deleted file mode 100644 index e118b6b..0000000 --- a/www/AESBox/crypto-js-4.1.1/rabbit-legacy.js +++ /dev/null @@ -1,190 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./enc-base64"), require("./md5"), require("./evpkdf"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./enc-base64", "./md5", "./evpkdf", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var StreamCipher = C_lib.StreamCipher; - var C_algo = C.algo; - - // Reusable objects - var S = []; - var C_ = []; - var G = []; - - /** - * Rabbit stream cipher algorithm. - * - * This is a legacy version that neglected to convert the key to little-endian. - * This error doesn't affect the cipher's security, - * but it does affect its compatibility with other implementations. - */ - var RabbitLegacy = C_algo.RabbitLegacy = StreamCipher.extend({ - _doReset: function () { - // Shortcuts - var K = this._key.words; - var iv = this.cfg.iv; - - // Generate initial state values - var X = this._X = [ - K[0], (K[3] << 16) | (K[2] >>> 16), - K[1], (K[0] << 16) | (K[3] >>> 16), - K[2], (K[1] << 16) | (K[0] >>> 16), - K[3], (K[2] << 16) | (K[1] >>> 16) - ]; - - // Generate initial counter values - var C = this._C = [ - (K[2] << 16) | (K[2] >>> 16), (K[0] & 0xffff0000) | (K[1] & 0x0000ffff), - (K[3] << 16) | (K[3] >>> 16), (K[1] & 0xffff0000) | (K[2] & 0x0000ffff), - (K[0] << 16) | (K[0] >>> 16), (K[2] & 0xffff0000) | (K[3] & 0x0000ffff), - (K[1] << 16) | (K[1] >>> 16), (K[3] & 0xffff0000) | (K[0] & 0x0000ffff) - ]; - - // Carry bit - this._b = 0; - - // Iterate the system four times - for (var i = 0; i < 4; i++) { - nextState.call(this); - } - - // Modify the counters - for (var i = 0; i < 8; i++) { - C[i] ^= X[(i + 4) & 7]; - } - - // IV setup - if (iv) { - // Shortcuts - var IV = iv.words; - var IV_0 = IV[0]; - var IV_1 = IV[1]; - - // Generate four subvectors - var i0 = (((IV_0 << 8) | (IV_0 >>> 24)) & 0x00ff00ff) | (((IV_0 << 24) | (IV_0 >>> 8)) & 0xff00ff00); - var i2 = (((IV_1 << 8) | (IV_1 >>> 24)) & 0x00ff00ff) | (((IV_1 << 24) | (IV_1 >>> 8)) & 0xff00ff00); - var i1 = (i0 >>> 16) | (i2 & 0xffff0000); - var i3 = (i2 << 16) | (i0 & 0x0000ffff); - - // Modify counter values - C[0] ^= i0; - C[1] ^= i1; - C[2] ^= i2; - C[3] ^= i3; - C[4] ^= i0; - C[5] ^= i1; - C[6] ^= i2; - C[7] ^= i3; - - // Iterate the system four times - for (var i = 0; i < 4; i++) { - nextState.call(this); - } - } - }, - - _doProcessBlock: function (M, offset) { - // Shortcut - var X = this._X; - - // Iterate the system - nextState.call(this); - - // Generate four keystream words - S[0] = X[0] ^ (X[5] >>> 16) ^ (X[3] << 16); - S[1] = X[2] ^ (X[7] >>> 16) ^ (X[5] << 16); - S[2] = X[4] ^ (X[1] >>> 16) ^ (X[7] << 16); - S[3] = X[6] ^ (X[3] >>> 16) ^ (X[1] << 16); - - for (var i = 0; i < 4; i++) { - // Swap endian - S[i] = (((S[i] << 8) | (S[i] >>> 24)) & 0x00ff00ff) | - (((S[i] << 24) | (S[i] >>> 8)) & 0xff00ff00); - - // Encrypt - M[offset + i] ^= S[i]; - } - }, - - blockSize: 128/32, - - ivSize: 64/32 - }); - - function nextState() { - // Shortcuts - var X = this._X; - var C = this._C; - - // Save old counter values - for (var i = 0; i < 8; i++) { - C_[i] = C[i]; - } - - // Calculate new counter values - C[0] = (C[0] + 0x4d34d34d + this._b) | 0; - C[1] = (C[1] + 0xd34d34d3 + ((C[0] >>> 0) < (C_[0] >>> 0) ? 1 : 0)) | 0; - C[2] = (C[2] + 0x34d34d34 + ((C[1] >>> 0) < (C_[1] >>> 0) ? 1 : 0)) | 0; - C[3] = (C[3] + 0x4d34d34d + ((C[2] >>> 0) < (C_[2] >>> 0) ? 1 : 0)) | 0; - C[4] = (C[4] + 0xd34d34d3 + ((C[3] >>> 0) < (C_[3] >>> 0) ? 1 : 0)) | 0; - C[5] = (C[5] + 0x34d34d34 + ((C[4] >>> 0) < (C_[4] >>> 0) ? 1 : 0)) | 0; - C[6] = (C[6] + 0x4d34d34d + ((C[5] >>> 0) < (C_[5] >>> 0) ? 1 : 0)) | 0; - C[7] = (C[7] + 0xd34d34d3 + ((C[6] >>> 0) < (C_[6] >>> 0) ? 1 : 0)) | 0; - this._b = (C[7] >>> 0) < (C_[7] >>> 0) ? 1 : 0; - - // Calculate the g-values - for (var i = 0; i < 8; i++) { - var gx = X[i] + C[i]; - - // Construct high and low argument for squaring - var ga = gx & 0xffff; - var gb = gx >>> 16; - - // Calculate high and low result of squaring - var gh = ((((ga * ga) >>> 17) + ga * gb) >>> 15) + gb * gb; - var gl = (((gx & 0xffff0000) * gx) | 0) + (((gx & 0x0000ffff) * gx) | 0); - - // High XOR low - G[i] = gh ^ gl; - } - - // Calculate new state values - X[0] = (G[0] + ((G[7] << 16) | (G[7] >>> 16)) + ((G[6] << 16) | (G[6] >>> 16))) | 0; - X[1] = (G[1] + ((G[0] << 8) | (G[0] >>> 24)) + G[7]) | 0; - X[2] = (G[2] + ((G[1] << 16) | (G[1] >>> 16)) + ((G[0] << 16) | (G[0] >>> 16))) | 0; - X[3] = (G[3] + ((G[2] << 8) | (G[2] >>> 24)) + G[1]) | 0; - X[4] = (G[4] + ((G[3] << 16) | (G[3] >>> 16)) + ((G[2] << 16) | (G[2] >>> 16))) | 0; - X[5] = (G[5] + ((G[4] << 8) | (G[4] >>> 24)) + G[3]) | 0; - X[6] = (G[6] + ((G[5] << 16) | (G[5] >>> 16)) + ((G[4] << 16) | (G[4] >>> 16))) | 0; - X[7] = (G[7] + ((G[6] << 8) | (G[6] >>> 24)) + G[5]) | 0; - } - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.RabbitLegacy.encrypt(message, key, cfg); - * var plaintext = CryptoJS.RabbitLegacy.decrypt(ciphertext, key, cfg); - */ - C.RabbitLegacy = StreamCipher._createHelper(RabbitLegacy); - }()); - - - return CryptoJS.RabbitLegacy; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/rabbit.js b/www/AESBox/crypto-js-4.1.1/rabbit.js deleted file mode 100644 index 1b06833..0000000 --- a/www/AESBox/crypto-js-4.1.1/rabbit.js +++ /dev/null @@ -1,192 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./enc-base64"), require("./md5"), require("./evpkdf"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./enc-base64", "./md5", "./evpkdf", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var StreamCipher = C_lib.StreamCipher; - var C_algo = C.algo; - - // Reusable objects - var S = []; - var C_ = []; - var G = []; - - /** - * Rabbit stream cipher algorithm - */ - var Rabbit = C_algo.Rabbit = StreamCipher.extend({ - _doReset: function () { - // Shortcuts - var K = this._key.words; - var iv = this.cfg.iv; - - // Swap endian - for (var i = 0; i < 4; i++) { - K[i] = (((K[i] << 8) | (K[i] >>> 24)) & 0x00ff00ff) | - (((K[i] << 24) | (K[i] >>> 8)) & 0xff00ff00); - } - - // Generate initial state values - var X = this._X = [ - K[0], (K[3] << 16) | (K[2] >>> 16), - K[1], (K[0] << 16) | (K[3] >>> 16), - K[2], (K[1] << 16) | (K[0] >>> 16), - K[3], (K[2] << 16) | (K[1] >>> 16) - ]; - - // Generate initial counter values - var C = this._C = [ - (K[2] << 16) | (K[2] >>> 16), (K[0] & 0xffff0000) | (K[1] & 0x0000ffff), - (K[3] << 16) | (K[3] >>> 16), (K[1] & 0xffff0000) | (K[2] & 0x0000ffff), - (K[0] << 16) | (K[0] >>> 16), (K[2] & 0xffff0000) | (K[3] & 0x0000ffff), - (K[1] << 16) | (K[1] >>> 16), (K[3] & 0xffff0000) | (K[0] & 0x0000ffff) - ]; - - // Carry bit - this._b = 0; - - // Iterate the system four times - for (var i = 0; i < 4; i++) { - nextState.call(this); - } - - // Modify the counters - for (var i = 0; i < 8; i++) { - C[i] ^= X[(i + 4) & 7]; - } - - // IV setup - if (iv) { - // Shortcuts - var IV = iv.words; - var IV_0 = IV[0]; - var IV_1 = IV[1]; - - // Generate four subvectors - var i0 = (((IV_0 << 8) | (IV_0 >>> 24)) & 0x00ff00ff) | (((IV_0 << 24) | (IV_0 >>> 8)) & 0xff00ff00); - var i2 = (((IV_1 << 8) | (IV_1 >>> 24)) & 0x00ff00ff) | (((IV_1 << 24) | (IV_1 >>> 8)) & 0xff00ff00); - var i1 = (i0 >>> 16) | (i2 & 0xffff0000); - var i3 = (i2 << 16) | (i0 & 0x0000ffff); - - // Modify counter values - C[0] ^= i0; - C[1] ^= i1; - C[2] ^= i2; - C[3] ^= i3; - C[4] ^= i0; - C[5] ^= i1; - C[6] ^= i2; - C[7] ^= i3; - - // Iterate the system four times - for (var i = 0; i < 4; i++) { - nextState.call(this); - } - } - }, - - _doProcessBlock: function (M, offset) { - // Shortcut - var X = this._X; - - // Iterate the system - nextState.call(this); - - // Generate four keystream words - S[0] = X[0] ^ (X[5] >>> 16) ^ (X[3] << 16); - S[1] = X[2] ^ (X[7] >>> 16) ^ (X[5] << 16); - S[2] = X[4] ^ (X[1] >>> 16) ^ (X[7] << 16); - S[3] = X[6] ^ (X[3] >>> 16) ^ (X[1] << 16); - - for (var i = 0; i < 4; i++) { - // Swap endian - S[i] = (((S[i] << 8) | (S[i] >>> 24)) & 0x00ff00ff) | - (((S[i] << 24) | (S[i] >>> 8)) & 0xff00ff00); - - // Encrypt - M[offset + i] ^= S[i]; - } - }, - - blockSize: 128/32, - - ivSize: 64/32 - }); - - function nextState() { - // Shortcuts - var X = this._X; - var C = this._C; - - // Save old counter values - for (var i = 0; i < 8; i++) { - C_[i] = C[i]; - } - - // Calculate new counter values - C[0] = (C[0] + 0x4d34d34d + this._b) | 0; - C[1] = (C[1] + 0xd34d34d3 + ((C[0] >>> 0) < (C_[0] >>> 0) ? 1 : 0)) | 0; - C[2] = (C[2] + 0x34d34d34 + ((C[1] >>> 0) < (C_[1] >>> 0) ? 1 : 0)) | 0; - C[3] = (C[3] + 0x4d34d34d + ((C[2] >>> 0) < (C_[2] >>> 0) ? 1 : 0)) | 0; - C[4] = (C[4] + 0xd34d34d3 + ((C[3] >>> 0) < (C_[3] >>> 0) ? 1 : 0)) | 0; - C[5] = (C[5] + 0x34d34d34 + ((C[4] >>> 0) < (C_[4] >>> 0) ? 1 : 0)) | 0; - C[6] = (C[6] + 0x4d34d34d + ((C[5] >>> 0) < (C_[5] >>> 0) ? 1 : 0)) | 0; - C[7] = (C[7] + 0xd34d34d3 + ((C[6] >>> 0) < (C_[6] >>> 0) ? 1 : 0)) | 0; - this._b = (C[7] >>> 0) < (C_[7] >>> 0) ? 1 : 0; - - // Calculate the g-values - for (var i = 0; i < 8; i++) { - var gx = X[i] + C[i]; - - // Construct high and low argument for squaring - var ga = gx & 0xffff; - var gb = gx >>> 16; - - // Calculate high and low result of squaring - var gh = ((((ga * ga) >>> 17) + ga * gb) >>> 15) + gb * gb; - var gl = (((gx & 0xffff0000) * gx) | 0) + (((gx & 0x0000ffff) * gx) | 0); - - // High XOR low - G[i] = gh ^ gl; - } - - // Calculate new state values - X[0] = (G[0] + ((G[7] << 16) | (G[7] >>> 16)) + ((G[6] << 16) | (G[6] >>> 16))) | 0; - X[1] = (G[1] + ((G[0] << 8) | (G[0] >>> 24)) + G[7]) | 0; - X[2] = (G[2] + ((G[1] << 16) | (G[1] >>> 16)) + ((G[0] << 16) | (G[0] >>> 16))) | 0; - X[3] = (G[3] + ((G[2] << 8) | (G[2] >>> 24)) + G[1]) | 0; - X[4] = (G[4] + ((G[3] << 16) | (G[3] >>> 16)) + ((G[2] << 16) | (G[2] >>> 16))) | 0; - X[5] = (G[5] + ((G[4] << 8) | (G[4] >>> 24)) + G[3]) | 0; - X[6] = (G[6] + ((G[5] << 16) | (G[5] >>> 16)) + ((G[4] << 16) | (G[4] >>> 16))) | 0; - X[7] = (G[7] + ((G[6] << 8) | (G[6] >>> 24)) + G[5]) | 0; - } - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.Rabbit.encrypt(message, key, cfg); - * var plaintext = CryptoJS.Rabbit.decrypt(ciphertext, key, cfg); - */ - C.Rabbit = StreamCipher._createHelper(Rabbit); - }()); - - - return CryptoJS.Rabbit; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/rc4.js b/www/AESBox/crypto-js-4.1.1/rc4.js deleted file mode 100644 index 0e4bdff..0000000 --- a/www/AESBox/crypto-js-4.1.1/rc4.js +++ /dev/null @@ -1,139 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./enc-base64"), require("./md5"), require("./evpkdf"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./enc-base64", "./md5", "./evpkdf", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var StreamCipher = C_lib.StreamCipher; - var C_algo = C.algo; - - /** - * RC4 stream cipher algorithm. - */ - var RC4 = C_algo.RC4 = StreamCipher.extend({ - _doReset: function () { - // Shortcuts - var key = this._key; - var keyWords = key.words; - var keySigBytes = key.sigBytes; - - // Init sbox - var S = this._S = []; - for (var i = 0; i < 256; i++) { - S[i] = i; - } - - // Key setup - for (var i = 0, j = 0; i < 256; i++) { - var keyByteIndex = i % keySigBytes; - var keyByte = (keyWords[keyByteIndex >>> 2] >>> (24 - (keyByteIndex % 4) * 8)) & 0xff; - - j = (j + S[i] + keyByte) % 256; - - // Swap - var t = S[i]; - S[i] = S[j]; - S[j] = t; - } - - // Counters - this._i = this._j = 0; - }, - - _doProcessBlock: function (M, offset) { - M[offset] ^= generateKeystreamWord.call(this); - }, - - keySize: 256/32, - - ivSize: 0 - }); - - function generateKeystreamWord() { - // Shortcuts - var S = this._S; - var i = this._i; - var j = this._j; - - // Generate keystream word - var keystreamWord = 0; - for (var n = 0; n < 4; n++) { - i = (i + 1) % 256; - j = (j + S[i]) % 256; - - // Swap - var t = S[i]; - S[i] = S[j]; - S[j] = t; - - keystreamWord |= S[(S[i] + S[j]) % 256] << (24 - n * 8); - } - - // Update counters - this._i = i; - this._j = j; - - return keystreamWord; - } - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.RC4.encrypt(message, key, cfg); - * var plaintext = CryptoJS.RC4.decrypt(ciphertext, key, cfg); - */ - C.RC4 = StreamCipher._createHelper(RC4); - - /** - * Modified RC4 stream cipher algorithm. - */ - var RC4Drop = C_algo.RC4Drop = RC4.extend({ - /** - * Configuration options. - * - * @property {number} drop The number of keystream words to drop. Default 192 - */ - cfg: RC4.cfg.extend({ - drop: 192 - }), - - _doReset: function () { - RC4._doReset.call(this); - - // Drop - for (var i = this.cfg.drop; i > 0; i--) { - generateKeystreamWord.call(this); - } - } - }); - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.RC4Drop.encrypt(message, key, cfg); - * var plaintext = CryptoJS.RC4Drop.decrypt(ciphertext, key, cfg); - */ - C.RC4Drop = StreamCipher._createHelper(RC4Drop); - }()); - - - return CryptoJS.RC4; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/ripemd160.js b/www/AESBox/crypto-js-4.1.1/ripemd160.js deleted file mode 100644 index 24feb47..0000000 --- a/www/AESBox/crypto-js-4.1.1/ripemd160.js +++ /dev/null @@ -1,267 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - /** @preserve - (c) 2012 by Cédric Mesnil. All rights reserved. - - Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: - - - Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. - - Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. - - THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - */ - - (function (Math) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_algo = C.algo; - - // Constants table - var _zl = WordArray.create([ - 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, - 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8, - 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12, - 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2, - 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13]); - var _zr = WordArray.create([ - 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12, - 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2, - 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13, - 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14, - 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11]); - var _sl = WordArray.create([ - 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8, - 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12, - 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5, - 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12, - 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6 ]); - var _sr = WordArray.create([ - 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6, - 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11, - 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5, - 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8, - 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11 ]); - - var _hl = WordArray.create([ 0x00000000, 0x5A827999, 0x6ED9EBA1, 0x8F1BBCDC, 0xA953FD4E]); - var _hr = WordArray.create([ 0x50A28BE6, 0x5C4DD124, 0x6D703EF3, 0x7A6D76E9, 0x00000000]); - - /** - * RIPEMD160 hash algorithm. - */ - var RIPEMD160 = C_algo.RIPEMD160 = Hasher.extend({ - _doReset: function () { - this._hash = WordArray.create([0x67452301, 0xEFCDAB89, 0x98BADCFE, 0x10325476, 0xC3D2E1F0]); - }, - - _doProcessBlock: function (M, offset) { - - // Swap endian - for (var i = 0; i < 16; i++) { - // Shortcuts - var offset_i = offset + i; - var M_offset_i = M[offset_i]; - - // Swap - M[offset_i] = ( - (((M_offset_i << 8) | (M_offset_i >>> 24)) & 0x00ff00ff) | - (((M_offset_i << 24) | (M_offset_i >>> 8)) & 0xff00ff00) - ); - } - // Shortcut - var H = this._hash.words; - var hl = _hl.words; - var hr = _hr.words; - var zl = _zl.words; - var zr = _zr.words; - var sl = _sl.words; - var sr = _sr.words; - - // Working variables - var al, bl, cl, dl, el; - var ar, br, cr, dr, er; - - ar = al = H[0]; - br = bl = H[1]; - cr = cl = H[2]; - dr = dl = H[3]; - er = el = H[4]; - // Computation - var t; - for (var i = 0; i < 80; i += 1) { - t = (al + M[offset+zl[i]])|0; - if (i<16){ - t += f1(bl,cl,dl) + hl[0]; - } else if (i<32) { - t += f2(bl,cl,dl) + hl[1]; - } else if (i<48) { - t += f3(bl,cl,dl) + hl[2]; - } else if (i<64) { - t += f4(bl,cl,dl) + hl[3]; - } else {// if (i<80) { - t += f5(bl,cl,dl) + hl[4]; - } - t = t|0; - t = rotl(t,sl[i]); - t = (t+el)|0; - al = el; - el = dl; - dl = rotl(cl, 10); - cl = bl; - bl = t; - - t = (ar + M[offset+zr[i]])|0; - if (i<16){ - t += f5(br,cr,dr) + hr[0]; - } else if (i<32) { - t += f4(br,cr,dr) + hr[1]; - } else if (i<48) { - t += f3(br,cr,dr) + hr[2]; - } else if (i<64) { - t += f2(br,cr,dr) + hr[3]; - } else {// if (i<80) { - t += f1(br,cr,dr) + hr[4]; - } - t = t|0; - t = rotl(t,sr[i]) ; - t = (t+er)|0; - ar = er; - er = dr; - dr = rotl(cr, 10); - cr = br; - br = t; - } - // Intermediate hash value - t = (H[1] + cl + dr)|0; - H[1] = (H[2] + dl + er)|0; - H[2] = (H[3] + el + ar)|0; - H[3] = (H[4] + al + br)|0; - H[4] = (H[0] + bl + cr)|0; - H[0] = t; - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = ( - (((nBitsTotal << 8) | (nBitsTotal >>> 24)) & 0x00ff00ff) | - (((nBitsTotal << 24) | (nBitsTotal >>> 8)) & 0xff00ff00) - ); - data.sigBytes = (dataWords.length + 1) * 4; - - // Hash final blocks - this._process(); - - // Shortcuts - var hash = this._hash; - var H = hash.words; - - // Swap endian - for (var i = 0; i < 5; i++) { - // Shortcut - var H_i = H[i]; - - // Swap - H[i] = (((H_i << 8) | (H_i >>> 24)) & 0x00ff00ff) | - (((H_i << 24) | (H_i >>> 8)) & 0xff00ff00); - } - - // Return final computed hash - return hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - } - }); - - - function f1(x, y, z) { - return ((x) ^ (y) ^ (z)); - - } - - function f2(x, y, z) { - return (((x)&(y)) | ((~x)&(z))); - } - - function f3(x, y, z) { - return (((x) | (~(y))) ^ (z)); - } - - function f4(x, y, z) { - return (((x) & (z)) | ((y)&(~(z)))); - } - - function f5(x, y, z) { - return ((x) ^ ((y) |(~(z)))); - - } - - function rotl(x,n) { - return (x<>>(32-n)); - } - - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.RIPEMD160('message'); - * var hash = CryptoJS.RIPEMD160(wordArray); - */ - C.RIPEMD160 = Hasher._createHelper(RIPEMD160); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacRIPEMD160(message, key); - */ - C.HmacRIPEMD160 = Hasher._createHmacHelper(RIPEMD160); - }(Math)); - - - return CryptoJS.RIPEMD160; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/sha1.js b/www/AESBox/crypto-js-4.1.1/sha1.js deleted file mode 100644 index 6691149..0000000 --- a/www/AESBox/crypto-js-4.1.1/sha1.js +++ /dev/null @@ -1,150 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_algo = C.algo; - - // Reusable object - var W = []; - - /** - * SHA-1 hash algorithm. - */ - var SHA1 = C_algo.SHA1 = Hasher.extend({ - _doReset: function () { - this._hash = new WordArray.init([ - 0x67452301, 0xefcdab89, - 0x98badcfe, 0x10325476, - 0xc3d2e1f0 - ]); - }, - - _doProcessBlock: function (M, offset) { - // Shortcut - var H = this._hash.words; - - // Working variables - var a = H[0]; - var b = H[1]; - var c = H[2]; - var d = H[3]; - var e = H[4]; - - // Computation - for (var i = 0; i < 80; i++) { - if (i < 16) { - W[i] = M[offset + i] | 0; - } else { - var n = W[i - 3] ^ W[i - 8] ^ W[i - 14] ^ W[i - 16]; - W[i] = (n << 1) | (n >>> 31); - } - - var t = ((a << 5) | (a >>> 27)) + e + W[i]; - if (i < 20) { - t += ((b & c) | (~b & d)) + 0x5a827999; - } else if (i < 40) { - t += (b ^ c ^ d) + 0x6ed9eba1; - } else if (i < 60) { - t += ((b & c) | (b & d) | (c & d)) - 0x70e44324; - } else /* if (i < 80) */ { - t += (b ^ c ^ d) - 0x359d3e2a; - } - - e = d; - d = c; - c = (b << 30) | (b >>> 2); - b = a; - a = t; - } - - // Intermediate hash value - H[0] = (H[0] + a) | 0; - H[1] = (H[1] + b) | 0; - H[2] = (H[2] + c) | 0; - H[3] = (H[3] + d) | 0; - H[4] = (H[4] + e) | 0; - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = Math.floor(nBitsTotal / 0x100000000); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = nBitsTotal; - data.sigBytes = dataWords.length * 4; - - // Hash final blocks - this._process(); - - // Return final computed hash - return this._hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA1('message'); - * var hash = CryptoJS.SHA1(wordArray); - */ - C.SHA1 = Hasher._createHelper(SHA1); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA1(message, key); - */ - C.HmacSHA1 = Hasher._createHmacHelper(SHA1); - }()); - - - return CryptoJS.SHA1; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/sha224.js b/www/AESBox/crypto-js-4.1.1/sha224.js deleted file mode 100644 index d8ce988..0000000 --- a/www/AESBox/crypto-js-4.1.1/sha224.js +++ /dev/null @@ -1,80 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./sha256")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./sha256"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var C_algo = C.algo; - var SHA256 = C_algo.SHA256; - - /** - * SHA-224 hash algorithm. - */ - var SHA224 = C_algo.SHA224 = SHA256.extend({ - _doReset: function () { - this._hash = new WordArray.init([ - 0xc1059ed8, 0x367cd507, 0x3070dd17, 0xf70e5939, - 0xffc00b31, 0x68581511, 0x64f98fa7, 0xbefa4fa4 - ]); - }, - - _doFinalize: function () { - var hash = SHA256._doFinalize.call(this); - - hash.sigBytes -= 4; - - return hash; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA224('message'); - * var hash = CryptoJS.SHA224(wordArray); - */ - C.SHA224 = SHA256._createHelper(SHA224); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA224(message, key); - */ - C.HmacSHA224 = SHA256._createHmacHelper(SHA224); - }()); - - - return CryptoJS.SHA224; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/sha256.js b/www/AESBox/crypto-js-4.1.1/sha256.js deleted file mode 100644 index de2d7fc..0000000 --- a/www/AESBox/crypto-js-4.1.1/sha256.js +++ /dev/null @@ -1,199 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function (Math) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_algo = C.algo; - - // Initialization and round constants tables - var H = []; - var K = []; - - // Compute constants - (function () { - function isPrime(n) { - var sqrtN = Math.sqrt(n); - for (var factor = 2; factor <= sqrtN; factor++) { - if (!(n % factor)) { - return false; - } - } - - return true; - } - - function getFractionalBits(n) { - return ((n - (n | 0)) * 0x100000000) | 0; - } - - var n = 2; - var nPrime = 0; - while (nPrime < 64) { - if (isPrime(n)) { - if (nPrime < 8) { - H[nPrime] = getFractionalBits(Math.pow(n, 1 / 2)); - } - K[nPrime] = getFractionalBits(Math.pow(n, 1 / 3)); - - nPrime++; - } - - n++; - } - }()); - - // Reusable object - var W = []; - - /** - * SHA-256 hash algorithm. - */ - var SHA256 = C_algo.SHA256 = Hasher.extend({ - _doReset: function () { - this._hash = new WordArray.init(H.slice(0)); - }, - - _doProcessBlock: function (M, offset) { - // Shortcut - var H = this._hash.words; - - // Working variables - var a = H[0]; - var b = H[1]; - var c = H[2]; - var d = H[3]; - var e = H[4]; - var f = H[5]; - var g = H[6]; - var h = H[7]; - - // Computation - for (var i = 0; i < 64; i++) { - if (i < 16) { - W[i] = M[offset + i] | 0; - } else { - var gamma0x = W[i - 15]; - var gamma0 = ((gamma0x << 25) | (gamma0x >>> 7)) ^ - ((gamma0x << 14) | (gamma0x >>> 18)) ^ - (gamma0x >>> 3); - - var gamma1x = W[i - 2]; - var gamma1 = ((gamma1x << 15) | (gamma1x >>> 17)) ^ - ((gamma1x << 13) | (gamma1x >>> 19)) ^ - (gamma1x >>> 10); - - W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16]; - } - - var ch = (e & f) ^ (~e & g); - var maj = (a & b) ^ (a & c) ^ (b & c); - - var sigma0 = ((a << 30) | (a >>> 2)) ^ ((a << 19) | (a >>> 13)) ^ ((a << 10) | (a >>> 22)); - var sigma1 = ((e << 26) | (e >>> 6)) ^ ((e << 21) | (e >>> 11)) ^ ((e << 7) | (e >>> 25)); - - var t1 = h + sigma1 + ch + K[i] + W[i]; - var t2 = sigma0 + maj; - - h = g; - g = f; - f = e; - e = (d + t1) | 0; - d = c; - c = b; - b = a; - a = (t1 + t2) | 0; - } - - // Intermediate hash value - H[0] = (H[0] + a) | 0; - H[1] = (H[1] + b) | 0; - H[2] = (H[2] + c) | 0; - H[3] = (H[3] + d) | 0; - H[4] = (H[4] + e) | 0; - H[5] = (H[5] + f) | 0; - H[6] = (H[6] + g) | 0; - H[7] = (H[7] + h) | 0; - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = Math.floor(nBitsTotal / 0x100000000); - dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = nBitsTotal; - data.sigBytes = dataWords.length * 4; - - // Hash final blocks - this._process(); - - // Return final computed hash - return this._hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA256('message'); - * var hash = CryptoJS.SHA256(wordArray); - */ - C.SHA256 = Hasher._createHelper(SHA256); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA256(message, key); - */ - C.HmacSHA256 = Hasher._createHmacHelper(SHA256); - }(Math)); - - - return CryptoJS.SHA256; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/sha3.js b/www/AESBox/crypto-js-4.1.1/sha3.js deleted file mode 100644 index 34ad86c..0000000 --- a/www/AESBox/crypto-js-4.1.1/sha3.js +++ /dev/null @@ -1,326 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./x64-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./x64-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function (Math) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var Hasher = C_lib.Hasher; - var C_x64 = C.x64; - var X64Word = C_x64.Word; - var C_algo = C.algo; - - // Constants tables - var RHO_OFFSETS = []; - var PI_INDEXES = []; - var ROUND_CONSTANTS = []; - - // Compute Constants - (function () { - // Compute rho offset constants - var x = 1, y = 0; - for (var t = 0; t < 24; t++) { - RHO_OFFSETS[x + 5 * y] = ((t + 1) * (t + 2) / 2) % 64; - - var newX = y % 5; - var newY = (2 * x + 3 * y) % 5; - x = newX; - y = newY; - } - - // Compute pi index constants - for (var x = 0; x < 5; x++) { - for (var y = 0; y < 5; y++) { - PI_INDEXES[x + 5 * y] = y + ((2 * x + 3 * y) % 5) * 5; - } - } - - // Compute round constants - var LFSR = 0x01; - for (var i = 0; i < 24; i++) { - var roundConstantMsw = 0; - var roundConstantLsw = 0; - - for (var j = 0; j < 7; j++) { - if (LFSR & 0x01) { - var bitPosition = (1 << j) - 1; - if (bitPosition < 32) { - roundConstantLsw ^= 1 << bitPosition; - } else /* if (bitPosition >= 32) */ { - roundConstantMsw ^= 1 << (bitPosition - 32); - } - } - - // Compute next LFSR - if (LFSR & 0x80) { - // Primitive polynomial over GF(2): x^8 + x^6 + x^5 + x^4 + 1 - LFSR = (LFSR << 1) ^ 0x71; - } else { - LFSR <<= 1; - } - } - - ROUND_CONSTANTS[i] = X64Word.create(roundConstantMsw, roundConstantLsw); - } - }()); - - // Reusable objects for temporary values - var T = []; - (function () { - for (var i = 0; i < 25; i++) { - T[i] = X64Word.create(); - } - }()); - - /** - * SHA-3 hash algorithm. - */ - var SHA3 = C_algo.SHA3 = Hasher.extend({ - /** - * Configuration options. - * - * @property {number} outputLength - * The desired number of bits in the output hash. - * Only values permitted are: 224, 256, 384, 512. - * Default: 512 - */ - cfg: Hasher.cfg.extend({ - outputLength: 512 - }), - - _doReset: function () { - var state = this._state = [] - for (var i = 0; i < 25; i++) { - state[i] = new X64Word.init(); - } - - this.blockSize = (1600 - 2 * this.cfg.outputLength) / 32; - }, - - _doProcessBlock: function (M, offset) { - // Shortcuts - var state = this._state; - var nBlockSizeLanes = this.blockSize / 2; - - // Absorb - for (var i = 0; i < nBlockSizeLanes; i++) { - // Shortcuts - var M2i = M[offset + 2 * i]; - var M2i1 = M[offset + 2 * i + 1]; - - // Swap endian - M2i = ( - (((M2i << 8) | (M2i >>> 24)) & 0x00ff00ff) | - (((M2i << 24) | (M2i >>> 8)) & 0xff00ff00) - ); - M2i1 = ( - (((M2i1 << 8) | (M2i1 >>> 24)) & 0x00ff00ff) | - (((M2i1 << 24) | (M2i1 >>> 8)) & 0xff00ff00) - ); - - // Absorb message into state - var lane = state[i]; - lane.high ^= M2i1; - lane.low ^= M2i; - } - - // Rounds - for (var round = 0; round < 24; round++) { - // Theta - for (var x = 0; x < 5; x++) { - // Mix column lanes - var tMsw = 0, tLsw = 0; - for (var y = 0; y < 5; y++) { - var lane = state[x + 5 * y]; - tMsw ^= lane.high; - tLsw ^= lane.low; - } - - // Temporary values - var Tx = T[x]; - Tx.high = tMsw; - Tx.low = tLsw; - } - for (var x = 0; x < 5; x++) { - // Shortcuts - var Tx4 = T[(x + 4) % 5]; - var Tx1 = T[(x + 1) % 5]; - var Tx1Msw = Tx1.high; - var Tx1Lsw = Tx1.low; - - // Mix surrounding columns - var tMsw = Tx4.high ^ ((Tx1Msw << 1) | (Tx1Lsw >>> 31)); - var tLsw = Tx4.low ^ ((Tx1Lsw << 1) | (Tx1Msw >>> 31)); - for (var y = 0; y < 5; y++) { - var lane = state[x + 5 * y]; - lane.high ^= tMsw; - lane.low ^= tLsw; - } - } - - // Rho Pi - for (var laneIndex = 1; laneIndex < 25; laneIndex++) { - var tMsw; - var tLsw; - - // Shortcuts - var lane = state[laneIndex]; - var laneMsw = lane.high; - var laneLsw = lane.low; - var rhoOffset = RHO_OFFSETS[laneIndex]; - - // Rotate lanes - if (rhoOffset < 32) { - tMsw = (laneMsw << rhoOffset) | (laneLsw >>> (32 - rhoOffset)); - tLsw = (laneLsw << rhoOffset) | (laneMsw >>> (32 - rhoOffset)); - } else /* if (rhoOffset >= 32) */ { - tMsw = (laneLsw << (rhoOffset - 32)) | (laneMsw >>> (64 - rhoOffset)); - tLsw = (laneMsw << (rhoOffset - 32)) | (laneLsw >>> (64 - rhoOffset)); - } - - // Transpose lanes - var TPiLane = T[PI_INDEXES[laneIndex]]; - TPiLane.high = tMsw; - TPiLane.low = tLsw; - } - - // Rho pi at x = y = 0 - var T0 = T[0]; - var state0 = state[0]; - T0.high = state0.high; - T0.low = state0.low; - - // Chi - for (var x = 0; x < 5; x++) { - for (var y = 0; y < 5; y++) { - // Shortcuts - var laneIndex = x + 5 * y; - var lane = state[laneIndex]; - var TLane = T[laneIndex]; - var Tx1Lane = T[((x + 1) % 5) + 5 * y]; - var Tx2Lane = T[((x + 2) % 5) + 5 * y]; - - // Mix rows - lane.high = TLane.high ^ (~Tx1Lane.high & Tx2Lane.high); - lane.low = TLane.low ^ (~Tx1Lane.low & Tx2Lane.low); - } - } - - // Iota - var lane = state[0]; - var roundConstant = ROUND_CONSTANTS[round]; - lane.high ^= roundConstant.high; - lane.low ^= roundConstant.low; - } - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - var blockSizeBits = this.blockSize * 32; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x1 << (24 - nBitsLeft % 32); - dataWords[((Math.ceil((nBitsLeft + 1) / blockSizeBits) * blockSizeBits) >>> 5) - 1] |= 0x80; - data.sigBytes = dataWords.length * 4; - - // Hash final blocks - this._process(); - - // Shortcuts - var state = this._state; - var outputLengthBytes = this.cfg.outputLength / 8; - var outputLengthLanes = outputLengthBytes / 8; - - // Squeeze - var hashWords = []; - for (var i = 0; i < outputLengthLanes; i++) { - // Shortcuts - var lane = state[i]; - var laneMsw = lane.high; - var laneLsw = lane.low; - - // Swap endian - laneMsw = ( - (((laneMsw << 8) | (laneMsw >>> 24)) & 0x00ff00ff) | - (((laneMsw << 24) | (laneMsw >>> 8)) & 0xff00ff00) - ); - laneLsw = ( - (((laneLsw << 8) | (laneLsw >>> 24)) & 0x00ff00ff) | - (((laneLsw << 24) | (laneLsw >>> 8)) & 0xff00ff00) - ); - - // Squeeze state to retrieve hash - hashWords.push(laneLsw); - hashWords.push(laneMsw); - } - - // Return final computed hash - return new WordArray.init(hashWords, outputLengthBytes); - }, - - clone: function () { - var clone = Hasher.clone.call(this); - - var state = clone._state = this._state.slice(0); - for (var i = 0; i < 25; i++) { - state[i] = state[i].clone(); - } - - return clone; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA3('message'); - * var hash = CryptoJS.SHA3(wordArray); - */ - C.SHA3 = Hasher._createHelper(SHA3); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA3(message, key); - */ - C.HmacSHA3 = Hasher._createHmacHelper(SHA3); - }(Math)); - - - return CryptoJS.SHA3; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/sha384.js b/www/AESBox/crypto-js-4.1.1/sha384.js deleted file mode 100644 index a0b95bf..0000000 --- a/www/AESBox/crypto-js-4.1.1/sha384.js +++ /dev/null @@ -1,83 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./x64-core"), require("./sha512")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./x64-core", "./sha512"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_x64 = C.x64; - var X64Word = C_x64.Word; - var X64WordArray = C_x64.WordArray; - var C_algo = C.algo; - var SHA512 = C_algo.SHA512; - - /** - * SHA-384 hash algorithm. - */ - var SHA384 = C_algo.SHA384 = SHA512.extend({ - _doReset: function () { - this._hash = new X64WordArray.init([ - new X64Word.init(0xcbbb9d5d, 0xc1059ed8), new X64Word.init(0x629a292a, 0x367cd507), - new X64Word.init(0x9159015a, 0x3070dd17), new X64Word.init(0x152fecd8, 0xf70e5939), - new X64Word.init(0x67332667, 0xffc00b31), new X64Word.init(0x8eb44a87, 0x68581511), - new X64Word.init(0xdb0c2e0d, 0x64f98fa7), new X64Word.init(0x47b5481d, 0xbefa4fa4) - ]); - }, - - _doFinalize: function () { - var hash = SHA512._doFinalize.call(this); - - hash.sigBytes -= 16; - - return hash; - } - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA384('message'); - * var hash = CryptoJS.SHA384(wordArray); - */ - C.SHA384 = SHA512._createHelper(SHA384); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA384(message, key); - */ - C.HmacSHA384 = SHA512._createHmacHelper(SHA384); - }()); - - - return CryptoJS.SHA384; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/sha512.js b/www/AESBox/crypto-js-4.1.1/sha512.js deleted file mode 100644 index d274ab0..0000000 --- a/www/AESBox/crypto-js-4.1.1/sha512.js +++ /dev/null @@ -1,326 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./x64-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./x64-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Hasher = C_lib.Hasher; - var C_x64 = C.x64; - var X64Word = C_x64.Word; - var X64WordArray = C_x64.WordArray; - var C_algo = C.algo; - - function X64Word_create() { - return X64Word.create.apply(X64Word, arguments); - } - - // Constants - var K = [ - X64Word_create(0x428a2f98, 0xd728ae22), X64Word_create(0x71374491, 0x23ef65cd), - X64Word_create(0xb5c0fbcf, 0xec4d3b2f), X64Word_create(0xe9b5dba5, 0x8189dbbc), - X64Word_create(0x3956c25b, 0xf348b538), X64Word_create(0x59f111f1, 0xb605d019), - X64Word_create(0x923f82a4, 0xaf194f9b), X64Word_create(0xab1c5ed5, 0xda6d8118), - X64Word_create(0xd807aa98, 0xa3030242), X64Word_create(0x12835b01, 0x45706fbe), - X64Word_create(0x243185be, 0x4ee4b28c), X64Word_create(0x550c7dc3, 0xd5ffb4e2), - X64Word_create(0x72be5d74, 0xf27b896f), X64Word_create(0x80deb1fe, 0x3b1696b1), - X64Word_create(0x9bdc06a7, 0x25c71235), X64Word_create(0xc19bf174, 0xcf692694), - X64Word_create(0xe49b69c1, 0x9ef14ad2), X64Word_create(0xefbe4786, 0x384f25e3), - X64Word_create(0x0fc19dc6, 0x8b8cd5b5), X64Word_create(0x240ca1cc, 0x77ac9c65), - X64Word_create(0x2de92c6f, 0x592b0275), X64Word_create(0x4a7484aa, 0x6ea6e483), - X64Word_create(0x5cb0a9dc, 0xbd41fbd4), X64Word_create(0x76f988da, 0x831153b5), - X64Word_create(0x983e5152, 0xee66dfab), X64Word_create(0xa831c66d, 0x2db43210), - X64Word_create(0xb00327c8, 0x98fb213f), X64Word_create(0xbf597fc7, 0xbeef0ee4), - X64Word_create(0xc6e00bf3, 0x3da88fc2), X64Word_create(0xd5a79147, 0x930aa725), - X64Word_create(0x06ca6351, 0xe003826f), X64Word_create(0x14292967, 0x0a0e6e70), - X64Word_create(0x27b70a85, 0x46d22ffc), X64Word_create(0x2e1b2138, 0x5c26c926), - X64Word_create(0x4d2c6dfc, 0x5ac42aed), X64Word_create(0x53380d13, 0x9d95b3df), - X64Word_create(0x650a7354, 0x8baf63de), X64Word_create(0x766a0abb, 0x3c77b2a8), - X64Word_create(0x81c2c92e, 0x47edaee6), X64Word_create(0x92722c85, 0x1482353b), - X64Word_create(0xa2bfe8a1, 0x4cf10364), X64Word_create(0xa81a664b, 0xbc423001), - X64Word_create(0xc24b8b70, 0xd0f89791), X64Word_create(0xc76c51a3, 0x0654be30), - X64Word_create(0xd192e819, 0xd6ef5218), X64Word_create(0xd6990624, 0x5565a910), - X64Word_create(0xf40e3585, 0x5771202a), X64Word_create(0x106aa070, 0x32bbd1b8), - X64Word_create(0x19a4c116, 0xb8d2d0c8), X64Word_create(0x1e376c08, 0x5141ab53), - X64Word_create(0x2748774c, 0xdf8eeb99), X64Word_create(0x34b0bcb5, 0xe19b48a8), - X64Word_create(0x391c0cb3, 0xc5c95a63), X64Word_create(0x4ed8aa4a, 0xe3418acb), - X64Word_create(0x5b9cca4f, 0x7763e373), X64Word_create(0x682e6ff3, 0xd6b2b8a3), - X64Word_create(0x748f82ee, 0x5defb2fc), X64Word_create(0x78a5636f, 0x43172f60), - X64Word_create(0x84c87814, 0xa1f0ab72), X64Word_create(0x8cc70208, 0x1a6439ec), - X64Word_create(0x90befffa, 0x23631e28), X64Word_create(0xa4506ceb, 0xde82bde9), - X64Word_create(0xbef9a3f7, 0xb2c67915), X64Word_create(0xc67178f2, 0xe372532b), - X64Word_create(0xca273ece, 0xea26619c), X64Word_create(0xd186b8c7, 0x21c0c207), - X64Word_create(0xeada7dd6, 0xcde0eb1e), X64Word_create(0xf57d4f7f, 0xee6ed178), - X64Word_create(0x06f067aa, 0x72176fba), X64Word_create(0x0a637dc5, 0xa2c898a6), - X64Word_create(0x113f9804, 0xbef90dae), X64Word_create(0x1b710b35, 0x131c471b), - X64Word_create(0x28db77f5, 0x23047d84), X64Word_create(0x32caab7b, 0x40c72493), - X64Word_create(0x3c9ebe0a, 0x15c9bebc), X64Word_create(0x431d67c4, 0x9c100d4c), - X64Word_create(0x4cc5d4be, 0xcb3e42b6), X64Word_create(0x597f299c, 0xfc657e2a), - X64Word_create(0x5fcb6fab, 0x3ad6faec), X64Word_create(0x6c44198c, 0x4a475817) - ]; - - // Reusable objects - var W = []; - (function () { - for (var i = 0; i < 80; i++) { - W[i] = X64Word_create(); - } - }()); - - /** - * SHA-512 hash algorithm. - */ - var SHA512 = C_algo.SHA512 = Hasher.extend({ - _doReset: function () { - this._hash = new X64WordArray.init([ - new X64Word.init(0x6a09e667, 0xf3bcc908), new X64Word.init(0xbb67ae85, 0x84caa73b), - new X64Word.init(0x3c6ef372, 0xfe94f82b), new X64Word.init(0xa54ff53a, 0x5f1d36f1), - new X64Word.init(0x510e527f, 0xade682d1), new X64Word.init(0x9b05688c, 0x2b3e6c1f), - new X64Word.init(0x1f83d9ab, 0xfb41bd6b), new X64Word.init(0x5be0cd19, 0x137e2179) - ]); - }, - - _doProcessBlock: function (M, offset) { - // Shortcuts - var H = this._hash.words; - - var H0 = H[0]; - var H1 = H[1]; - var H2 = H[2]; - var H3 = H[3]; - var H4 = H[4]; - var H5 = H[5]; - var H6 = H[6]; - var H7 = H[7]; - - var H0h = H0.high; - var H0l = H0.low; - var H1h = H1.high; - var H1l = H1.low; - var H2h = H2.high; - var H2l = H2.low; - var H3h = H3.high; - var H3l = H3.low; - var H4h = H4.high; - var H4l = H4.low; - var H5h = H5.high; - var H5l = H5.low; - var H6h = H6.high; - var H6l = H6.low; - var H7h = H7.high; - var H7l = H7.low; - - // Working variables - var ah = H0h; - var al = H0l; - var bh = H1h; - var bl = H1l; - var ch = H2h; - var cl = H2l; - var dh = H3h; - var dl = H3l; - var eh = H4h; - var el = H4l; - var fh = H5h; - var fl = H5l; - var gh = H6h; - var gl = H6l; - var hh = H7h; - var hl = H7l; - - // Rounds - for (var i = 0; i < 80; i++) { - var Wil; - var Wih; - - // Shortcut - var Wi = W[i]; - - // Extend message - if (i < 16) { - Wih = Wi.high = M[offset + i * 2] | 0; - Wil = Wi.low = M[offset + i * 2 + 1] | 0; - } else { - // Gamma0 - var gamma0x = W[i - 15]; - var gamma0xh = gamma0x.high; - var gamma0xl = gamma0x.low; - var gamma0h = ((gamma0xh >>> 1) | (gamma0xl << 31)) ^ ((gamma0xh >>> 8) | (gamma0xl << 24)) ^ (gamma0xh >>> 7); - var gamma0l = ((gamma0xl >>> 1) | (gamma0xh << 31)) ^ ((gamma0xl >>> 8) | (gamma0xh << 24)) ^ ((gamma0xl >>> 7) | (gamma0xh << 25)); - - // Gamma1 - var gamma1x = W[i - 2]; - var gamma1xh = gamma1x.high; - var gamma1xl = gamma1x.low; - var gamma1h = ((gamma1xh >>> 19) | (gamma1xl << 13)) ^ ((gamma1xh << 3) | (gamma1xl >>> 29)) ^ (gamma1xh >>> 6); - var gamma1l = ((gamma1xl >>> 19) | (gamma1xh << 13)) ^ ((gamma1xl << 3) | (gamma1xh >>> 29)) ^ ((gamma1xl >>> 6) | (gamma1xh << 26)); - - // W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16] - var Wi7 = W[i - 7]; - var Wi7h = Wi7.high; - var Wi7l = Wi7.low; - - var Wi16 = W[i - 16]; - var Wi16h = Wi16.high; - var Wi16l = Wi16.low; - - Wil = gamma0l + Wi7l; - Wih = gamma0h + Wi7h + ((Wil >>> 0) < (gamma0l >>> 0) ? 1 : 0); - Wil = Wil + gamma1l; - Wih = Wih + gamma1h + ((Wil >>> 0) < (gamma1l >>> 0) ? 1 : 0); - Wil = Wil + Wi16l; - Wih = Wih + Wi16h + ((Wil >>> 0) < (Wi16l >>> 0) ? 1 : 0); - - Wi.high = Wih; - Wi.low = Wil; - } - - var chh = (eh & fh) ^ (~eh & gh); - var chl = (el & fl) ^ (~el & gl); - var majh = (ah & bh) ^ (ah & ch) ^ (bh & ch); - var majl = (al & bl) ^ (al & cl) ^ (bl & cl); - - var sigma0h = ((ah >>> 28) | (al << 4)) ^ ((ah << 30) | (al >>> 2)) ^ ((ah << 25) | (al >>> 7)); - var sigma0l = ((al >>> 28) | (ah << 4)) ^ ((al << 30) | (ah >>> 2)) ^ ((al << 25) | (ah >>> 7)); - var sigma1h = ((eh >>> 14) | (el << 18)) ^ ((eh >>> 18) | (el << 14)) ^ ((eh << 23) | (el >>> 9)); - var sigma1l = ((el >>> 14) | (eh << 18)) ^ ((el >>> 18) | (eh << 14)) ^ ((el << 23) | (eh >>> 9)); - - // t1 = h + sigma1 + ch + K[i] + W[i] - var Ki = K[i]; - var Kih = Ki.high; - var Kil = Ki.low; - - var t1l = hl + sigma1l; - var t1h = hh + sigma1h + ((t1l >>> 0) < (hl >>> 0) ? 1 : 0); - var t1l = t1l + chl; - var t1h = t1h + chh + ((t1l >>> 0) < (chl >>> 0) ? 1 : 0); - var t1l = t1l + Kil; - var t1h = t1h + Kih + ((t1l >>> 0) < (Kil >>> 0) ? 1 : 0); - var t1l = t1l + Wil; - var t1h = t1h + Wih + ((t1l >>> 0) < (Wil >>> 0) ? 1 : 0); - - // t2 = sigma0 + maj - var t2l = sigma0l + majl; - var t2h = sigma0h + majh + ((t2l >>> 0) < (sigma0l >>> 0) ? 1 : 0); - - // Update working variables - hh = gh; - hl = gl; - gh = fh; - gl = fl; - fh = eh; - fl = el; - el = (dl + t1l) | 0; - eh = (dh + t1h + ((el >>> 0) < (dl >>> 0) ? 1 : 0)) | 0; - dh = ch; - dl = cl; - ch = bh; - cl = bl; - bh = ah; - bl = al; - al = (t1l + t2l) | 0; - ah = (t1h + t2h + ((al >>> 0) < (t1l >>> 0) ? 1 : 0)) | 0; - } - - // Intermediate hash value - H0l = H0.low = (H0l + al); - H0.high = (H0h + ah + ((H0l >>> 0) < (al >>> 0) ? 1 : 0)); - H1l = H1.low = (H1l + bl); - H1.high = (H1h + bh + ((H1l >>> 0) < (bl >>> 0) ? 1 : 0)); - H2l = H2.low = (H2l + cl); - H2.high = (H2h + ch + ((H2l >>> 0) < (cl >>> 0) ? 1 : 0)); - H3l = H3.low = (H3l + dl); - H3.high = (H3h + dh + ((H3l >>> 0) < (dl >>> 0) ? 1 : 0)); - H4l = H4.low = (H4l + el); - H4.high = (H4h + eh + ((H4l >>> 0) < (el >>> 0) ? 1 : 0)); - H5l = H5.low = (H5l + fl); - H5.high = (H5h + fh + ((H5l >>> 0) < (fl >>> 0) ? 1 : 0)); - H6l = H6.low = (H6l + gl); - H6.high = (H6h + gh + ((H6l >>> 0) < (gl >>> 0) ? 1 : 0)); - H7l = H7.low = (H7l + hl); - H7.high = (H7h + hh + ((H7l >>> 0) < (hl >>> 0) ? 1 : 0)); - }, - - _doFinalize: function () { - // Shortcuts - var data = this._data; - var dataWords = data.words; - - var nBitsTotal = this._nDataBytes * 8; - var nBitsLeft = data.sigBytes * 8; - - // Add padding - dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); - dataWords[(((nBitsLeft + 128) >>> 10) << 5) + 30] = Math.floor(nBitsTotal / 0x100000000); - dataWords[(((nBitsLeft + 128) >>> 10) << 5) + 31] = nBitsTotal; - data.sigBytes = dataWords.length * 4; - - // Hash final blocks - this._process(); - - // Convert hash to 32-bit word array before returning - var hash = this._hash.toX32(); - - // Return final computed hash - return hash; - }, - - clone: function () { - var clone = Hasher.clone.call(this); - clone._hash = this._hash.clone(); - - return clone; - }, - - blockSize: 1024/32 - }); - - /** - * Shortcut function to the hasher's object interface. - * - * @param {WordArray|string} message The message to hash. - * - * @return {WordArray} The hash. - * - * @static - * - * @example - * - * var hash = CryptoJS.SHA512('message'); - * var hash = CryptoJS.SHA512(wordArray); - */ - C.SHA512 = Hasher._createHelper(SHA512); - - /** - * Shortcut function to the HMAC's object interface. - * - * @param {WordArray|string} message The message to hash. - * @param {WordArray|string} key The secret key. - * - * @return {WordArray} The HMAC. - * - * @static - * - * @example - * - * var hmac = CryptoJS.HmacSHA512(message, key); - */ - C.HmacSHA512 = Hasher._createHmacHelper(SHA512); - }()); - - - return CryptoJS.SHA512; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/tripledes.js b/www/AESBox/crypto-js-4.1.1/tripledes.js deleted file mode 100644 index 1a92477..0000000 --- a/www/AESBox/crypto-js-4.1.1/tripledes.js +++ /dev/null @@ -1,779 +0,0 @@ -;(function (root, factory, undef) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core"), require("./enc-base64"), require("./md5"), require("./evpkdf"), require("./cipher-core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core", "./enc-base64", "./md5", "./evpkdf", "./cipher-core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function () { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var WordArray = C_lib.WordArray; - var BlockCipher = C_lib.BlockCipher; - var C_algo = C.algo; - - // Permuted Choice 1 constants - var PC1 = [ - 57, 49, 41, 33, 25, 17, 9, 1, - 58, 50, 42, 34, 26, 18, 10, 2, - 59, 51, 43, 35, 27, 19, 11, 3, - 60, 52, 44, 36, 63, 55, 47, 39, - 31, 23, 15, 7, 62, 54, 46, 38, - 30, 22, 14, 6, 61, 53, 45, 37, - 29, 21, 13, 5, 28, 20, 12, 4 - ]; - - // Permuted Choice 2 constants - var PC2 = [ - 14, 17, 11, 24, 1, 5, - 3, 28, 15, 6, 21, 10, - 23, 19, 12, 4, 26, 8, - 16, 7, 27, 20, 13, 2, - 41, 52, 31, 37, 47, 55, - 30, 40, 51, 45, 33, 48, - 44, 49, 39, 56, 34, 53, - 46, 42, 50, 36, 29, 32 - ]; - - // Cumulative bit shift constants - var BIT_SHIFTS = [1, 2, 4, 6, 8, 10, 12, 14, 15, 17, 19, 21, 23, 25, 27, 28]; - - // SBOXes and round permutation constants - var SBOX_P = [ - { - 0x0: 0x808200, - 0x10000000: 0x8000, - 0x20000000: 0x808002, - 0x30000000: 0x2, - 0x40000000: 0x200, - 0x50000000: 0x808202, - 0x60000000: 0x800202, - 0x70000000: 0x800000, - 0x80000000: 0x202, - 0x90000000: 0x800200, - 0xa0000000: 0x8200, - 0xb0000000: 0x808000, - 0xc0000000: 0x8002, - 0xd0000000: 0x800002, - 0xe0000000: 0x0, - 0xf0000000: 0x8202, - 0x8000000: 0x0, - 0x18000000: 0x808202, - 0x28000000: 0x8202, - 0x38000000: 0x8000, - 0x48000000: 0x808200, - 0x58000000: 0x200, - 0x68000000: 0x808002, - 0x78000000: 0x2, - 0x88000000: 0x800200, - 0x98000000: 0x8200, - 0xa8000000: 0x808000, - 0xb8000000: 0x800202, - 0xc8000000: 0x800002, - 0xd8000000: 0x8002, - 0xe8000000: 0x202, - 0xf8000000: 0x800000, - 0x1: 0x8000, - 0x10000001: 0x2, - 0x20000001: 0x808200, - 0x30000001: 0x800000, - 0x40000001: 0x808002, - 0x50000001: 0x8200, - 0x60000001: 0x200, - 0x70000001: 0x800202, - 0x80000001: 0x808202, - 0x90000001: 0x808000, - 0xa0000001: 0x800002, - 0xb0000001: 0x8202, - 0xc0000001: 0x202, - 0xd0000001: 0x800200, - 0xe0000001: 0x8002, - 0xf0000001: 0x0, - 0x8000001: 0x808202, - 0x18000001: 0x808000, - 0x28000001: 0x800000, - 0x38000001: 0x200, - 0x48000001: 0x8000, - 0x58000001: 0x800002, - 0x68000001: 0x2, - 0x78000001: 0x8202, - 0x88000001: 0x8002, - 0x98000001: 0x800202, - 0xa8000001: 0x202, - 0xb8000001: 0x808200, - 0xc8000001: 0x800200, - 0xd8000001: 0x0, - 0xe8000001: 0x8200, - 0xf8000001: 0x808002 - }, - { - 0x0: 0x40084010, - 0x1000000: 0x4000, - 0x2000000: 0x80000, - 0x3000000: 0x40080010, - 0x4000000: 0x40000010, - 0x5000000: 0x40084000, - 0x6000000: 0x40004000, - 0x7000000: 0x10, - 0x8000000: 0x84000, - 0x9000000: 0x40004010, - 0xa000000: 0x40000000, - 0xb000000: 0x84010, - 0xc000000: 0x80010, - 0xd000000: 0x0, - 0xe000000: 0x4010, - 0xf000000: 0x40080000, - 0x800000: 0x40004000, - 0x1800000: 0x84010, - 0x2800000: 0x10, - 0x3800000: 0x40004010, - 0x4800000: 0x40084010, - 0x5800000: 0x40000000, - 0x6800000: 0x80000, - 0x7800000: 0x40080010, - 0x8800000: 0x80010, - 0x9800000: 0x0, - 0xa800000: 0x4000, - 0xb800000: 0x40080000, - 0xc800000: 0x40000010, - 0xd800000: 0x84000, - 0xe800000: 0x40084000, - 0xf800000: 0x4010, - 0x10000000: 0x0, - 0x11000000: 0x40080010, - 0x12000000: 0x40004010, - 0x13000000: 0x40084000, - 0x14000000: 0x40080000, - 0x15000000: 0x10, - 0x16000000: 0x84010, - 0x17000000: 0x4000, - 0x18000000: 0x4010, - 0x19000000: 0x80000, - 0x1a000000: 0x80010, - 0x1b000000: 0x40000010, - 0x1c000000: 0x84000, - 0x1d000000: 0x40004000, - 0x1e000000: 0x40000000, - 0x1f000000: 0x40084010, - 0x10800000: 0x84010, - 0x11800000: 0x80000, - 0x12800000: 0x40080000, - 0x13800000: 0x4000, - 0x14800000: 0x40004000, - 0x15800000: 0x40084010, - 0x16800000: 0x10, - 0x17800000: 0x40000000, - 0x18800000: 0x40084000, - 0x19800000: 0x40000010, - 0x1a800000: 0x40004010, - 0x1b800000: 0x80010, - 0x1c800000: 0x0, - 0x1d800000: 0x4010, - 0x1e800000: 0x40080010, - 0x1f800000: 0x84000 - }, - { - 0x0: 0x104, - 0x100000: 0x0, - 0x200000: 0x4000100, - 0x300000: 0x10104, - 0x400000: 0x10004, - 0x500000: 0x4000004, - 0x600000: 0x4010104, - 0x700000: 0x4010000, - 0x800000: 0x4000000, - 0x900000: 0x4010100, - 0xa00000: 0x10100, - 0xb00000: 0x4010004, - 0xc00000: 0x4000104, - 0xd00000: 0x10000, - 0xe00000: 0x4, - 0xf00000: 0x100, - 0x80000: 0x4010100, - 0x180000: 0x4010004, - 0x280000: 0x0, - 0x380000: 0x4000100, - 0x480000: 0x4000004, - 0x580000: 0x10000, - 0x680000: 0x10004, - 0x780000: 0x104, - 0x880000: 0x4, - 0x980000: 0x100, - 0xa80000: 0x4010000, - 0xb80000: 0x10104, - 0xc80000: 0x10100, - 0xd80000: 0x4000104, - 0xe80000: 0x4010104, - 0xf80000: 0x4000000, - 0x1000000: 0x4010100, - 0x1100000: 0x10004, - 0x1200000: 0x10000, - 0x1300000: 0x4000100, - 0x1400000: 0x100, - 0x1500000: 0x4010104, - 0x1600000: 0x4000004, - 0x1700000: 0x0, - 0x1800000: 0x4000104, - 0x1900000: 0x4000000, - 0x1a00000: 0x4, - 0x1b00000: 0x10100, - 0x1c00000: 0x4010000, - 0x1d00000: 0x104, - 0x1e00000: 0x10104, - 0x1f00000: 0x4010004, - 0x1080000: 0x4000000, - 0x1180000: 0x104, - 0x1280000: 0x4010100, - 0x1380000: 0x0, - 0x1480000: 0x10004, - 0x1580000: 0x4000100, - 0x1680000: 0x100, - 0x1780000: 0x4010004, - 0x1880000: 0x10000, - 0x1980000: 0x4010104, - 0x1a80000: 0x10104, - 0x1b80000: 0x4000004, - 0x1c80000: 0x4000104, - 0x1d80000: 0x4010000, - 0x1e80000: 0x4, - 0x1f80000: 0x10100 - }, - { - 0x0: 0x80401000, - 0x10000: 0x80001040, - 0x20000: 0x401040, - 0x30000: 0x80400000, - 0x40000: 0x0, - 0x50000: 0x401000, - 0x60000: 0x80000040, - 0x70000: 0x400040, - 0x80000: 0x80000000, - 0x90000: 0x400000, - 0xa0000: 0x40, - 0xb0000: 0x80001000, - 0xc0000: 0x80400040, - 0xd0000: 0x1040, - 0xe0000: 0x1000, - 0xf0000: 0x80401040, - 0x8000: 0x80001040, - 0x18000: 0x40, - 0x28000: 0x80400040, - 0x38000: 0x80001000, - 0x48000: 0x401000, - 0x58000: 0x80401040, - 0x68000: 0x0, - 0x78000: 0x80400000, - 0x88000: 0x1000, - 0x98000: 0x80401000, - 0xa8000: 0x400000, - 0xb8000: 0x1040, - 0xc8000: 0x80000000, - 0xd8000: 0x400040, - 0xe8000: 0x401040, - 0xf8000: 0x80000040, - 0x100000: 0x400040, - 0x110000: 0x401000, - 0x120000: 0x80000040, - 0x130000: 0x0, - 0x140000: 0x1040, - 0x150000: 0x80400040, - 0x160000: 0x80401000, - 0x170000: 0x80001040, - 0x180000: 0x80401040, - 0x190000: 0x80000000, - 0x1a0000: 0x80400000, - 0x1b0000: 0x401040, - 0x1c0000: 0x80001000, - 0x1d0000: 0x400000, - 0x1e0000: 0x40, - 0x1f0000: 0x1000, - 0x108000: 0x80400000, - 0x118000: 0x80401040, - 0x128000: 0x0, - 0x138000: 0x401000, - 0x148000: 0x400040, - 0x158000: 0x80000000, - 0x168000: 0x80001040, - 0x178000: 0x40, - 0x188000: 0x80000040, - 0x198000: 0x1000, - 0x1a8000: 0x80001000, - 0x1b8000: 0x80400040, - 0x1c8000: 0x1040, - 0x1d8000: 0x80401000, - 0x1e8000: 0x400000, - 0x1f8000: 0x401040 - }, - { - 0x0: 0x80, - 0x1000: 0x1040000, - 0x2000: 0x40000, - 0x3000: 0x20000000, - 0x4000: 0x20040080, - 0x5000: 0x1000080, - 0x6000: 0x21000080, - 0x7000: 0x40080, - 0x8000: 0x1000000, - 0x9000: 0x20040000, - 0xa000: 0x20000080, - 0xb000: 0x21040080, - 0xc000: 0x21040000, - 0xd000: 0x0, - 0xe000: 0x1040080, - 0xf000: 0x21000000, - 0x800: 0x1040080, - 0x1800: 0x21000080, - 0x2800: 0x80, - 0x3800: 0x1040000, - 0x4800: 0x40000, - 0x5800: 0x20040080, - 0x6800: 0x21040000, - 0x7800: 0x20000000, - 0x8800: 0x20040000, - 0x9800: 0x0, - 0xa800: 0x21040080, - 0xb800: 0x1000080, - 0xc800: 0x20000080, - 0xd800: 0x21000000, - 0xe800: 0x1000000, - 0xf800: 0x40080, - 0x10000: 0x40000, - 0x11000: 0x80, - 0x12000: 0x20000000, - 0x13000: 0x21000080, - 0x14000: 0x1000080, - 0x15000: 0x21040000, - 0x16000: 0x20040080, - 0x17000: 0x1000000, - 0x18000: 0x21040080, - 0x19000: 0x21000000, - 0x1a000: 0x1040000, - 0x1b000: 0x20040000, - 0x1c000: 0x40080, - 0x1d000: 0x20000080, - 0x1e000: 0x0, - 0x1f000: 0x1040080, - 0x10800: 0x21000080, - 0x11800: 0x1000000, - 0x12800: 0x1040000, - 0x13800: 0x20040080, - 0x14800: 0x20000000, - 0x15800: 0x1040080, - 0x16800: 0x80, - 0x17800: 0x21040000, - 0x18800: 0x40080, - 0x19800: 0x21040080, - 0x1a800: 0x0, - 0x1b800: 0x21000000, - 0x1c800: 0x1000080, - 0x1d800: 0x40000, - 0x1e800: 0x20040000, - 0x1f800: 0x20000080 - }, - { - 0x0: 0x10000008, - 0x100: 0x2000, - 0x200: 0x10200000, - 0x300: 0x10202008, - 0x400: 0x10002000, - 0x500: 0x200000, - 0x600: 0x200008, - 0x700: 0x10000000, - 0x800: 0x0, - 0x900: 0x10002008, - 0xa00: 0x202000, - 0xb00: 0x8, - 0xc00: 0x10200008, - 0xd00: 0x202008, - 0xe00: 0x2008, - 0xf00: 0x10202000, - 0x80: 0x10200000, - 0x180: 0x10202008, - 0x280: 0x8, - 0x380: 0x200000, - 0x480: 0x202008, - 0x580: 0x10000008, - 0x680: 0x10002000, - 0x780: 0x2008, - 0x880: 0x200008, - 0x980: 0x2000, - 0xa80: 0x10002008, - 0xb80: 0x10200008, - 0xc80: 0x0, - 0xd80: 0x10202000, - 0xe80: 0x202000, - 0xf80: 0x10000000, - 0x1000: 0x10002000, - 0x1100: 0x10200008, - 0x1200: 0x10202008, - 0x1300: 0x2008, - 0x1400: 0x200000, - 0x1500: 0x10000000, - 0x1600: 0x10000008, - 0x1700: 0x202000, - 0x1800: 0x202008, - 0x1900: 0x0, - 0x1a00: 0x8, - 0x1b00: 0x10200000, - 0x1c00: 0x2000, - 0x1d00: 0x10002008, - 0x1e00: 0x10202000, - 0x1f00: 0x200008, - 0x1080: 0x8, - 0x1180: 0x202000, - 0x1280: 0x200000, - 0x1380: 0x10000008, - 0x1480: 0x10002000, - 0x1580: 0x2008, - 0x1680: 0x10202008, - 0x1780: 0x10200000, - 0x1880: 0x10202000, - 0x1980: 0x10200008, - 0x1a80: 0x2000, - 0x1b80: 0x202008, - 0x1c80: 0x200008, - 0x1d80: 0x0, - 0x1e80: 0x10000000, - 0x1f80: 0x10002008 - }, - { - 0x0: 0x100000, - 0x10: 0x2000401, - 0x20: 0x400, - 0x30: 0x100401, - 0x40: 0x2100401, - 0x50: 0x0, - 0x60: 0x1, - 0x70: 0x2100001, - 0x80: 0x2000400, - 0x90: 0x100001, - 0xa0: 0x2000001, - 0xb0: 0x2100400, - 0xc0: 0x2100000, - 0xd0: 0x401, - 0xe0: 0x100400, - 0xf0: 0x2000000, - 0x8: 0x2100001, - 0x18: 0x0, - 0x28: 0x2000401, - 0x38: 0x2100400, - 0x48: 0x100000, - 0x58: 0x2000001, - 0x68: 0x2000000, - 0x78: 0x401, - 0x88: 0x100401, - 0x98: 0x2000400, - 0xa8: 0x2100000, - 0xb8: 0x100001, - 0xc8: 0x400, - 0xd8: 0x2100401, - 0xe8: 0x1, - 0xf8: 0x100400, - 0x100: 0x2000000, - 0x110: 0x100000, - 0x120: 0x2000401, - 0x130: 0x2100001, - 0x140: 0x100001, - 0x150: 0x2000400, - 0x160: 0x2100400, - 0x170: 0x100401, - 0x180: 0x401, - 0x190: 0x2100401, - 0x1a0: 0x100400, - 0x1b0: 0x1, - 0x1c0: 0x0, - 0x1d0: 0x2100000, - 0x1e0: 0x2000001, - 0x1f0: 0x400, - 0x108: 0x100400, - 0x118: 0x2000401, - 0x128: 0x2100001, - 0x138: 0x1, - 0x148: 0x2000000, - 0x158: 0x100000, - 0x168: 0x401, - 0x178: 0x2100400, - 0x188: 0x2000001, - 0x198: 0x2100000, - 0x1a8: 0x0, - 0x1b8: 0x2100401, - 0x1c8: 0x100401, - 0x1d8: 0x400, - 0x1e8: 0x2000400, - 0x1f8: 0x100001 - }, - { - 0x0: 0x8000820, - 0x1: 0x20000, - 0x2: 0x8000000, - 0x3: 0x20, - 0x4: 0x20020, - 0x5: 0x8020820, - 0x6: 0x8020800, - 0x7: 0x800, - 0x8: 0x8020000, - 0x9: 0x8000800, - 0xa: 0x20800, - 0xb: 0x8020020, - 0xc: 0x820, - 0xd: 0x0, - 0xe: 0x8000020, - 0xf: 0x20820, - 0x80000000: 0x800, - 0x80000001: 0x8020820, - 0x80000002: 0x8000820, - 0x80000003: 0x8000000, - 0x80000004: 0x8020000, - 0x80000005: 0x20800, - 0x80000006: 0x20820, - 0x80000007: 0x20, - 0x80000008: 0x8000020, - 0x80000009: 0x820, - 0x8000000a: 0x20020, - 0x8000000b: 0x8020800, - 0x8000000c: 0x0, - 0x8000000d: 0x8020020, - 0x8000000e: 0x8000800, - 0x8000000f: 0x20000, - 0x10: 0x20820, - 0x11: 0x8020800, - 0x12: 0x20, - 0x13: 0x800, - 0x14: 0x8000800, - 0x15: 0x8000020, - 0x16: 0x8020020, - 0x17: 0x20000, - 0x18: 0x0, - 0x19: 0x20020, - 0x1a: 0x8020000, - 0x1b: 0x8000820, - 0x1c: 0x8020820, - 0x1d: 0x20800, - 0x1e: 0x820, - 0x1f: 0x8000000, - 0x80000010: 0x20000, - 0x80000011: 0x800, - 0x80000012: 0x8020020, - 0x80000013: 0x20820, - 0x80000014: 0x20, - 0x80000015: 0x8020000, - 0x80000016: 0x8000000, - 0x80000017: 0x8000820, - 0x80000018: 0x8020820, - 0x80000019: 0x8000020, - 0x8000001a: 0x8000800, - 0x8000001b: 0x0, - 0x8000001c: 0x20800, - 0x8000001d: 0x820, - 0x8000001e: 0x20020, - 0x8000001f: 0x8020800 - } - ]; - - // Masks that select the SBOX input - var SBOX_MASK = [ - 0xf8000001, 0x1f800000, 0x01f80000, 0x001f8000, - 0x0001f800, 0x00001f80, 0x000001f8, 0x8000001f - ]; - - /** - * DES block cipher algorithm. - */ - var DES = C_algo.DES = BlockCipher.extend({ - _doReset: function () { - // Shortcuts - var key = this._key; - var keyWords = key.words; - - // Select 56 bits according to PC1 - var keyBits = []; - for (var i = 0; i < 56; i++) { - var keyBitPos = PC1[i] - 1; - keyBits[i] = (keyWords[keyBitPos >>> 5] >>> (31 - keyBitPos % 32)) & 1; - } - - // Assemble 16 subkeys - var subKeys = this._subKeys = []; - for (var nSubKey = 0; nSubKey < 16; nSubKey++) { - // Create subkey - var subKey = subKeys[nSubKey] = []; - - // Shortcut - var bitShift = BIT_SHIFTS[nSubKey]; - - // Select 48 bits according to PC2 - for (var i = 0; i < 24; i++) { - // Select from the left 28 key bits - subKey[(i / 6) | 0] |= keyBits[((PC2[i] - 1) + bitShift) % 28] << (31 - i % 6); - - // Select from the right 28 key bits - subKey[4 + ((i / 6) | 0)] |= keyBits[28 + (((PC2[i + 24] - 1) + bitShift) % 28)] << (31 - i % 6); - } - - // Since each subkey is applied to an expanded 32-bit input, - // the subkey can be broken into 8 values scaled to 32-bits, - // which allows the key to be used without expansion - subKey[0] = (subKey[0] << 1) | (subKey[0] >>> 31); - for (var i = 1; i < 7; i++) { - subKey[i] = subKey[i] >>> ((i - 1) * 4 + 3); - } - subKey[7] = (subKey[7] << 5) | (subKey[7] >>> 27); - } - - // Compute inverse subkeys - var invSubKeys = this._invSubKeys = []; - for (var i = 0; i < 16; i++) { - invSubKeys[i] = subKeys[15 - i]; - } - }, - - encryptBlock: function (M, offset) { - this._doCryptBlock(M, offset, this._subKeys); - }, - - decryptBlock: function (M, offset) { - this._doCryptBlock(M, offset, this._invSubKeys); - }, - - _doCryptBlock: function (M, offset, subKeys) { - // Get input - this._lBlock = M[offset]; - this._rBlock = M[offset + 1]; - - // Initial permutation - exchangeLR.call(this, 4, 0x0f0f0f0f); - exchangeLR.call(this, 16, 0x0000ffff); - exchangeRL.call(this, 2, 0x33333333); - exchangeRL.call(this, 8, 0x00ff00ff); - exchangeLR.call(this, 1, 0x55555555); - - // Rounds - for (var round = 0; round < 16; round++) { - // Shortcuts - var subKey = subKeys[round]; - var lBlock = this._lBlock; - var rBlock = this._rBlock; - - // Feistel function - var f = 0; - for (var i = 0; i < 8; i++) { - f |= SBOX_P[i][((rBlock ^ subKey[i]) & SBOX_MASK[i]) >>> 0]; - } - this._lBlock = rBlock; - this._rBlock = lBlock ^ f; - } - - // Undo swap from last round - var t = this._lBlock; - this._lBlock = this._rBlock; - this._rBlock = t; - - // Final permutation - exchangeLR.call(this, 1, 0x55555555); - exchangeRL.call(this, 8, 0x00ff00ff); - exchangeRL.call(this, 2, 0x33333333); - exchangeLR.call(this, 16, 0x0000ffff); - exchangeLR.call(this, 4, 0x0f0f0f0f); - - // Set output - M[offset] = this._lBlock; - M[offset + 1] = this._rBlock; - }, - - keySize: 64/32, - - ivSize: 64/32, - - blockSize: 64/32 - }); - - // Swap bits across the left and right words - function exchangeLR(offset, mask) { - var t = ((this._lBlock >>> offset) ^ this._rBlock) & mask; - this._rBlock ^= t; - this._lBlock ^= t << offset; - } - - function exchangeRL(offset, mask) { - var t = ((this._rBlock >>> offset) ^ this._lBlock) & mask; - this._lBlock ^= t; - this._rBlock ^= t << offset; - } - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.DES.encrypt(message, key, cfg); - * var plaintext = CryptoJS.DES.decrypt(ciphertext, key, cfg); - */ - C.DES = BlockCipher._createHelper(DES); - - /** - * Triple-DES block cipher algorithm. - */ - var TripleDES = C_algo.TripleDES = BlockCipher.extend({ - _doReset: function () { - // Shortcuts - var key = this._key; - var keyWords = key.words; - // Make sure the key length is valid (64, 128 or >= 192 bit) - if (keyWords.length !== 2 && keyWords.length !== 4 && keyWords.length < 6) { - throw new Error('Invalid key length - 3DES requires the key length to be 64, 128, 192 or >192.'); - } - - // Extend the key according to the keying options defined in 3DES standard - var key1 = keyWords.slice(0, 2); - var key2 = keyWords.length < 4 ? keyWords.slice(0, 2) : keyWords.slice(2, 4); - var key3 = keyWords.length < 6 ? keyWords.slice(0, 2) : keyWords.slice(4, 6); - - // Create DES instances - this._des1 = DES.createEncryptor(WordArray.create(key1)); - this._des2 = DES.createEncryptor(WordArray.create(key2)); - this._des3 = DES.createEncryptor(WordArray.create(key3)); - }, - - encryptBlock: function (M, offset) { - this._des1.encryptBlock(M, offset); - this._des2.decryptBlock(M, offset); - this._des3.encryptBlock(M, offset); - }, - - decryptBlock: function (M, offset) { - this._des3.decryptBlock(M, offset); - this._des2.encryptBlock(M, offset); - this._des1.decryptBlock(M, offset); - }, - - keySize: 192/32, - - ivSize: 64/32, - - blockSize: 64/32 - }); - - /** - * Shortcut functions to the cipher's object interface. - * - * @example - * - * var ciphertext = CryptoJS.TripleDES.encrypt(message, key, cfg); - * var plaintext = CryptoJS.TripleDES.decrypt(ciphertext, key, cfg); - */ - C.TripleDES = BlockCipher._createHelper(TripleDES); - }()); - - - return CryptoJS.TripleDES; - -})); \ No newline at end of file diff --git a/www/AESBox/crypto-js-4.1.1/x64-core.js b/www/AESBox/crypto-js-4.1.1/x64-core.js deleted file mode 100644 index 57dcc14..0000000 --- a/www/AESBox/crypto-js-4.1.1/x64-core.js +++ /dev/null @@ -1,304 +0,0 @@ -;(function (root, factory) { - if (typeof exports === "object") { - // CommonJS - module.exports = exports = factory(require("./core")); - } - else if (typeof define === "function" && define.amd) { - // AMD - define(["./core"], factory); - } - else { - // Global (browser) - factory(root.CryptoJS); - } -}(this, function (CryptoJS) { - - (function (undefined) { - // Shortcuts - var C = CryptoJS; - var C_lib = C.lib; - var Base = C_lib.Base; - var X32WordArray = C_lib.WordArray; - - /** - * x64 namespace. - */ - var C_x64 = C.x64 = {}; - - /** - * A 64-bit word. - */ - var X64Word = C_x64.Word = Base.extend({ - /** - * Initializes a newly created 64-bit word. - * - * @param {number} high The high 32 bits. - * @param {number} low The low 32 bits. - * - * @example - * - * var x64Word = CryptoJS.x64.Word.create(0x00010203, 0x04050607); - */ - init: function (high, low) { - this.high = high; - this.low = low; - } - - /** - * Bitwise NOTs this word. - * - * @return {X64Word} A new x64-Word object after negating. - * - * @example - * - * var negated = x64Word.not(); - */ - // not: function () { - // var high = ~this.high; - // var low = ~this.low; - - // return X64Word.create(high, low); - // }, - - /** - * Bitwise ANDs this word with the passed word. - * - * @param {X64Word} word The x64-Word to AND with this word. - * - * @return {X64Word} A new x64-Word object after ANDing. - * - * @example - * - * var anded = x64Word.and(anotherX64Word); - */ - // and: function (word) { - // var high = this.high & word.high; - // var low = this.low & word.low; - - // return X64Word.create(high, low); - // }, - - /** - * Bitwise ORs this word with the passed word. - * - * @param {X64Word} word The x64-Word to OR with this word. - * - * @return {X64Word} A new x64-Word object after ORing. - * - * @example - * - * var ored = x64Word.or(anotherX64Word); - */ - // or: function (word) { - // var high = this.high | word.high; - // var low = this.low | word.low; - - // return X64Word.create(high, low); - // }, - - /** - * Bitwise XORs this word with the passed word. - * - * @param {X64Word} word The x64-Word to XOR with this word. - * - * @return {X64Word} A new x64-Word object after XORing. - * - * @example - * - * var xored = x64Word.xor(anotherX64Word); - */ - // xor: function (word) { - // var high = this.high ^ word.high; - // var low = this.low ^ word.low; - - // return X64Word.create(high, low); - // }, - - /** - * Shifts this word n bits to the left. - * - * @param {number} n The number of bits to shift. - * - * @return {X64Word} A new x64-Word object after shifting. - * - * @example - * - * var shifted = x64Word.shiftL(25); - */ - // shiftL: function (n) { - // if (n < 32) { - // var high = (this.high << n) | (this.low >>> (32 - n)); - // var low = this.low << n; - // } else { - // var high = this.low << (n - 32); - // var low = 0; - // } - - // return X64Word.create(high, low); - // }, - - /** - * Shifts this word n bits to the right. - * - * @param {number} n The number of bits to shift. - * - * @return {X64Word} A new x64-Word object after shifting. - * - * @example - * - * var shifted = x64Word.shiftR(7); - */ - // shiftR: function (n) { - // if (n < 32) { - // var low = (this.low >>> n) | (this.high << (32 - n)); - // var high = this.high >>> n; - // } else { - // var low = this.high >>> (n - 32); - // var high = 0; - // } - - // return X64Word.create(high, low); - // }, - - /** - * Rotates this word n bits to the left. - * - * @param {number} n The number of bits to rotate. - * - * @return {X64Word} A new x64-Word object after rotating. - * - * @example - * - * var rotated = x64Word.rotL(25); - */ - // rotL: function (n) { - // return this.shiftL(n).or(this.shiftR(64 - n)); - // }, - - /** - * Rotates this word n bits to the right. - * - * @param {number} n The number of bits to rotate. - * - * @return {X64Word} A new x64-Word object after rotating. - * - * @example - * - * var rotated = x64Word.rotR(7); - */ - // rotR: function (n) { - // return this.shiftR(n).or(this.shiftL(64 - n)); - // }, - - /** - * Adds this word with the passed word. - * - * @param {X64Word} word The x64-Word to add with this word. - * - * @return {X64Word} A new x64-Word object after adding. - * - * @example - * - * var added = x64Word.add(anotherX64Word); - */ - // add: function (word) { - // var low = (this.low + word.low) | 0; - // var carry = (low >>> 0) < (this.low >>> 0) ? 1 : 0; - // var high = (this.high + word.high + carry) | 0; - - // return X64Word.create(high, low); - // } - }); - - /** - * An array of 64-bit words. - * - * @property {Array} words The array of CryptoJS.x64.Word objects. - * @property {number} sigBytes The number of significant bytes in this word array. - */ - var X64WordArray = C_x64.WordArray = Base.extend({ - /** - * Initializes a newly created word array. - * - * @param {Array} words (Optional) An array of CryptoJS.x64.Word objects. - * @param {number} sigBytes (Optional) The number of significant bytes in the words. - * - * @example - * - * var wordArray = CryptoJS.x64.WordArray.create(); - * - * var wordArray = CryptoJS.x64.WordArray.create([ - * CryptoJS.x64.Word.create(0x00010203, 0x04050607), - * CryptoJS.x64.Word.create(0x18191a1b, 0x1c1d1e1f) - * ]); - * - * var wordArray = CryptoJS.x64.WordArray.create([ - * CryptoJS.x64.Word.create(0x00010203, 0x04050607), - * CryptoJS.x64.Word.create(0x18191a1b, 0x1c1d1e1f) - * ], 10); - */ - init: function (words, sigBytes) { - words = this.words = words || []; - - if (sigBytes != undefined) { - this.sigBytes = sigBytes; - } else { - this.sigBytes = words.length * 8; - } - }, - - /** - * Converts this 64-bit word array to a 32-bit word array. - * - * @return {CryptoJS.lib.WordArray} This word array's data as a 32-bit word array. - * - * @example - * - * var x32WordArray = x64WordArray.toX32(); - */ - toX32: function () { - // Shortcuts - var x64Words = this.words; - var x64WordsLength = x64Words.length; - - // Convert - var x32Words = []; - for (var i = 0; i < x64WordsLength; i++) { - var x64Word = x64Words[i]; - x32Words.push(x64Word.high); - x32Words.push(x64Word.low); - } - - return X32WordArray.create(x32Words, this.sigBytes); - }, - - /** - * Creates a copy of this word array. - * - * @return {X64WordArray} The clone. - * - * @example - * - * var clone = x64WordArray.clone(); - */ - clone: function () { - var clone = Base.clone.call(this); - - // Clone "words" array - var words = clone.words = this.words.slice(0); - - // Clone each X64Word object - var wordsLength = words.length; - for (var i = 0; i < wordsLength; i++) { - words[i] = words[i].clone(); - } - - return clone; - } - }); - }()); - - - return CryptoJS; - -})); \ No newline at end of file diff --git a/www/AESBox/index.html b/www/AESBox/index.html index 64d291c..8cdf3e7 100644 --- a/www/AESBox/index.html +++ b/www/AESBox/index.html @@ -1,49 +1,60 @@ + CryptoJS Decryption - + + + +

CryptoJS Decryption

Please enter the password to decrypt the hidden value:

+ + - + + +
Please wait...
+Insert new note: + + diff --git a/www/AESBox/openpgp.min.mjs b/www/AESBox/openpgp.min.mjs new file mode 100644 index 0000000..26b471d --- /dev/null +++ b/www/AESBox/openpgp.min.mjs @@ -0,0 +1,17 @@ +/*! 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i=0;if(t&15)return-1;while((r|0)>=16){$[e&1](E[t|0]<<24|E[t|1]<<16|E[t|2]<<8|E[t|3],E[t|4]<<24|E[t|5]<<16|E[t|6]<<8|E[t|7],E[t|8]<<24|E[t|9]<<16|E[t|10]<<8|E[t|11],E[t|12]<<24|E[t|13]<<16|E[t|14]<<8|E[t|15]);i=i+16|0,t=t+16|0,r=r-16|0}return i|0}var V=[x,M,C,K,D,R,U,I];var $=[C,B];return{set_rounds:T,set_state:z,set_iv:q,set_nonce:F,set_mask:O,set_counter:N,get_state:j,get_iv:L,gcm_init:W,cipher:H,mac:G}}({Uint8Array,Uint32Array},e,t);return h.set_key=function(e,t,i,a,s,c,u,d,f){var l=r.subarray(0,60),p=r.subarray(256,316);l.set([t,i,a,s,c,u,d,f]);for(var y=e,b=1;y<4*e+28;y++){var m=l[y-1];(y%e==0||8===e&&y%e==4)&&(m=n[m>>>24]<<24^n[m>>>16&255]<<16^n[m>>>8&255]<<8^n[255&m]),y%e==0&&(m=m<<8^m>>>24^b<<24,b=b<<1^(128&b?27:0)),l[y]=l[y-e]^m}for(var g=0;g=y-4?m:o[0][n[m>>>24]]^o[1][n[m>>>16&255]]^o[2][n[m>>>8&255]]^o[3][n[255&m]]}h.set_rounds(e+5)},h};return h.ENC={ECB:0,CBC:2,CFB:4,OFB:6,CTR:7},h.DEC={ECB:1,CBC:3,CFB:5,OFB:6,CTR:7},h.MAC={CBC:0,GCM:1},h.HEAP_DATA=16384,h}();function be(e){return e instanceof Uint8Array}function me(e,t){const r=e?e.byteLength:t||65536;if(4095&r||r<=0)throw Error("heap size must be a positive integer and a multiple of 4096");return e=e||new Uint8Array(new ArrayBuffer(r))}function ge(e,t,r,i,n){const a=e.length-t,s=ae+t.length),0),r=new Uint8Array(t);let i=0;for(let t=0;t>2,n.getUint32(0),n.getUint32(4),n.getUint32(8),n.getUint32(12),i>16?n.getUint32(16):0,i>16?n.getUint32(20):0,i>24?n.getUint32(24):0,i>24?n.getUint32(28):0),void 0!==t){if(16!==t.length)throw new _e("illegal iv size");let e=new DataView(t.buffer,t.byteOffset,t.byteLength);r.set_iv(e.getUint32(0),e.getUint32(4),e.getUint32(8),e.getUint32(12))}else r.set_iv(0,0,0,0)}AES_Encrypt_process(e){if(!be(e))throw new TypeError("data isn't of expected type");let{heap:t,asm:r}=this.acquire_asm(),i=ye.ENC[this.mode],n=ye.HEAP_DATA,a=this.pos,s=this.len,o=0,c=e.length||0,u=0,h=0,d=new Uint8Array(s+c&-16);for(;c>0;)h=ge(t,a+s,e,o,c),s+=h,o+=h,c-=h,h=r.cipher(i,n+a,s),h&&d.set(t.subarray(a,a+h),u),u+=h,h0;)f=ge(t,a+s,e,o,c),s+=f,o+=f,c-=f,f=r.cipher(i,n+a,s-(c?0:d)),f&&l.set(t.subarray(a,a+f),u),u+=f,f0){if(a%16){if(this.hasOwnProperty("padding"))throw new _e("data length must be a multiple of the block size");a+=16-a%16}if(t.cipher(r,i+n,a),this.hasOwnProperty("padding")&&this.padding){let t=e[n+s-1];if(t<1||t>16||t>s)throw new ke("bad padding");let r=0;for(let i=t;i>1;i--)r|=t^e[n+s-i];if(r)throw new ke("bad padding");s-=t}}const o=new Uint8Array(s);return s>0&&o.set(e.subarray(n,n+s)),this.pos=0,this.len=0,this.release_asm(),o}}class Pe{static encrypt(e,t,r=!1){return new Pe(t,r).encrypt(e)}static decrypt(e,t,r=!1){return new Pe(t,r).decrypt(e)}constructor(e,t=!1,r){this.aes=r||new Ee(e,void 0,t,"ECB")}encrypt(e){return we(this.aes.AES_Encrypt_process(e),this.aes.AES_Encrypt_finish())}decrypt(e){return we(this.aes.AES_Decrypt_process(e),this.aes.AES_Decrypt_finish())}}function xe(e){const t=function(e){const t=new Pe(e);this.encrypt=function(e){return t.encrypt(e)},this.decrypt=function(e){return t.decrypt(e)}};return t.blockSize=t.prototype.blockSize=16,t.keySize=t.prototype.keySize=e/8,t}function Me(e,t,r,i,n,a){const s=[16843776,0,65536,16843780,16842756,66564,4,65536,1024,16843776,16843780,1024,16778244,16842756,16777216,4,1028,16778240,16778240,66560,66560,16842752,16842752,16778244,65540,16777220,16777220,65540,0,1028,66564,16777216,65536,16843780,4,16842752,16843776,16777216,16777216,1024,16842756,65536,66560,16777220,1024,4,16778244,66564,16843780,65540,16842752,16778244,16777220,1028,66564,16843776,1028,16778240,16778240,0,65540,66560,0,16842756],o=[-2146402272,-2147450880,32768,1081376,1048576,32,-2146435040,-2147450848,-2147483616,-2146402272,-2146402304,-2147483648,-2147450880,1048576,32,-2146435040,1081344,1048608,-2147450848,0,-2147483648,32768,1081376,-2146435072,1048608,-2147483616,0,1081344,32800,-2146402304,-2146435072,32800,0,1081376,-2146435040,1048576,-2147450848,-2146435072,-2146402304,32768,-2146435072,-2147450880,32,-2146402272,1081376,32,32768,-2147483648,32800,-2146402304,1048576,-2147483616,1048608,-2147450848,-2147483616,1048608,1081344,0,-2147450880,32800,-2147483648,-2146435040,-2146402272,1081344],c=[520,134349312,0,134348808,134218240,0,131592,134218240,131080,134217736,134217736,131072,134349320,131080,134348800,520,134217728,8,134349312,512,131584,134348800,134348808,131592,134218248,131584,131072,134218248,8,134349320,512,134217728,134349312,134217728,131080,520,131072,134349312,134218240,0,512,131080,134349320,134218240,134217736,512,0,134348808,134218248,131072,134217728,134349320,8,131592,131584,134217736,134348800,134218248,520,134348800,131592,8,134348808,131584],u=[8396801,8321,8321,128,8396928,8388737,8388609,8193,0,8396800,8396800,8396929,129,0,8388736,8388609,1,8192,8388608,8396801,128,8388608,8193,8320,8388737,1,8320,8388736,8192,8396928,8396929,129,8388736,8388609,8396800,8396929,129,0,0,8396800,8320,8388736,8388737,1,8396801,8321,8321,128,8396929,129,1,8192,8388609,8193,8396928,8388737,8193,8320,8388608,8396801,128,8388608,8192,8396928],h=[256,34078976,34078720,1107296512,524288,256,1073741824,34078720,1074266368,524288,33554688,1074266368,1107296512,1107820544,524544,1073741824,33554432,1074266112,1074266112,0,1073742080,1107820800,1107820800,33554688,1107820544,1073742080,0,1107296256,34078976,33554432,1107296256,524544,524288,1107296512,256,33554432,1073741824,34078720,1107296512,1074266368,33554688,1073741824,1107820544,34078976,1074266368,256,33554432,1107820544,1107820800,524544,1107296256,1107820800,34078720,0,1074266112,1107296256,524544,33554688,1073742080,524288,0,1074266112,34078976,1073742080],d=[536870928,541065216,16384,541081616,541065216,16,541081616,4194304,536887296,4210704,4194304,536870928,4194320,536887296,536870912,16400,0,4194320,536887312,16384,4210688,536887312,16,541065232,541065232,0,4210704,541081600,16400,4210688,541081600,536870912,536887296,16,541065232,4210688,541081616,4194304,16400,536870928,4194304,536887296,536870912,16400,536870928,541081616,4210688,541065216,4210704,541081600,0,541065232,16,16384,541065216,4210704,16384,4194320,536887312,0,541081600,536870912,4194320,536887312],f=[2097152,69206018,67110914,0,2048,67110914,2099202,69208064,69208066,2097152,0,67108866,2,67108864,69206018,2050,67110912,2099202,2097154,67110912,67108866,69206016,69208064,2097154,69206016,2048,2050,69208066,2099200,2,67108864,2099200,67108864,2099200,2097152,67110914,67110914,69206018,69206018,2,2097154,67108864,67110912,2097152,69208064,2050,2099202,69208064,2050,67108866,69208066,69206016,2099200,0,2,69208066,0,2099202,69206016,2048,67108866,67110912,2048,2097154],l=[268439616,4096,262144,268701760,268435456,268439616,64,268435456,262208,268697600,268701760,266240,268701696,266304,4096,64,268697600,268435520,268439552,4160,266240,262208,268697664,268701696,4160,0,0,268697664,268435520,268439552,266304,262144,266304,262144,268701696,4096,64,268697664,4096,266304,268439552,64,268435520,268697600,268697664,268435456,262144,268439616,0,268701760,262208,268435520,268697600,268439552,268439616,0,268701760,266240,266240,4160,4160,262208,268435456,268701696];let p,y,b,m,g,w,v,_,k,A,S,E,P,x,M=0,C=t.length;const K=32===e.length?3:9;_=3===K?r?[0,32,2]:[30,-2,-2]:r?[0,32,2,62,30,-2,64,96,2]:[94,62,-2,32,64,2,30,-2,-2],r&&(t=function(e,t){const r=8-e.length%8;let i;if(2===t&&r<8)i=32;else if(1===t)i=r;else{if(t||!(r<8)){if(8===r)return e;throw Error("des: invalid padding")}i=0}const n=new Uint8Array(e.length+r);for(let t=0;t>>4^v),v^=b,w^=b<<4,b=65535&(w>>>16^v),v^=b,w^=b<<16,b=858993459&(v>>>2^w),w^=b,v^=b<<2,b=16711935&(v>>>8^w),w^=b,v^=b<<8,b=1431655765&(w>>>1^v),v^=b,w^=b<<1,w=w<<1|w>>>31,v=v<<1|v>>>31,y=0;y>>4|v<<28)^e[p+1],b=w,w=v,v=b^(o[m>>>24&63]|u[m>>>16&63]|d[m>>>8&63]|l[63&m]|s[g>>>24&63]|c[g>>>16&63]|h[g>>>8&63]|f[63&g]);b=w,w=v,v=b}w=w>>>1|w<<31,v=v>>>1|v<<31,b=1431655765&(w>>>1^v),v^=b,w^=b<<1,b=16711935&(v>>>8^w),w^=b,v^=b<<8,b=858993459&(v>>>2^w),w^=b,v^=b<<2,b=65535&(w>>>16^v),v^=b,w^=b<<16,b=252645135&(w>>>4^v),v^=b,w^=b<<4,1===i&&(r?(k=w,S=v):(w^=A,v^=E)),D[R++]=w>>>24,D[R++]=w>>>16&255,D[R++]=w>>>8&255,D[R++]=255&w,D[R++]=v>>>24,D[R++]=v>>>16&255,D[R++]=v>>>8&255,D[R++]=255&v}return r||(D=function(e,t){let r,i=null;if(2===t)r=32;else if(1===t)i=e[e.length-1];else{if(t)throw Error("des: invalid padding");r=0}if(!i){for(i=1;e[e.length-i]===r;)i++;i--}return e.subarray(0,e.length-i)}(D,a)),D}function Ce(e){const t=[0,4,536870912,536870916,65536,65540,536936448,536936452,512,516,536871424,536871428,66048,66052,536936960,536936964],r=[0,1,1048576,1048577,67108864,67108865,68157440,68157441,256,257,1048832,1048833,67109120,67109121,68157696,68157697],i=[0,8,2048,2056,16777216,16777224,16779264,16779272,0,8,2048,2056,16777216,16777224,16779264,16779272],n=[0,2097152,134217728,136314880,8192,2105344,134225920,136323072,131072,2228224,134348800,136445952,139264,2236416,134356992,136454144],a=[0,262144,16,262160,0,262144,16,262160,4096,266240,4112,266256,4096,266240,4112,266256],s=[0,1024,32,1056,0,1024,32,1056,33554432,33555456,33554464,33555488,33554432,33555456,33554464,33555488],o=[0,268435456,524288,268959744,2,268435458,524290,268959746,0,268435456,524288,268959744,2,268435458,524290,268959746],c=[0,65536,2048,67584,536870912,536936448,536872960,536938496,131072,196608,133120,198656,537001984,537067520,537004032,537069568],u=[0,262144,0,262144,2,262146,2,262146,33554432,33816576,33554432,33816576,33554434,33816578,33554434,33816578],h=[0,268435456,8,268435464,0,268435456,8,268435464,1024,268436480,1032,268436488,1024,268436480,1032,268436488],d=[0,32,0,32,1048576,1048608,1048576,1048608,8192,8224,8192,8224,1056768,1056800,1056768,1056800],f=[0,16777216,512,16777728,2097152,18874368,2097664,18874880,67108864,83886080,67109376,83886592,69206016,85983232,69206528,85983744],l=[0,4096,134217728,134221824,524288,528384,134742016,134746112,16,4112,134217744,134221840,524304,528400,134742032,134746128],p=[0,4,256,260,0,4,256,260,1,5,257,261,1,5,257,261],y=e.length>8?3:1,b=Array(32*y),m=[0,0,1,1,1,1,1,1,0,1,1,1,1,1,1,0];let g,w,v,_=0,k=0;for(let A=0;A>>4^A),A^=v,y^=v<<4,v=65535&(A>>>-16^y),y^=v,A^=v<<-16,v=858993459&(y>>>2^A),A^=v,y^=v<<2,v=65535&(A>>>-16^y),y^=v,A^=v<<-16,v=1431655765&(y>>>1^A),A^=v,y^=v<<1,v=16711935&(A>>>8^y),y^=v,A^=v<<8,v=1431655765&(y>>>1^A),A^=v,y^=v<<1,v=y<<8|A>>>20&240,y=A<<24|A<<8&16711680|A>>>8&65280|A>>>24&240,A=v;for(let e=0;e<16;e++)m[e]?(y=y<<2|y>>>26,A=A<<2|A>>>26):(y=y<<1|y>>>27,A=A<<1|A>>>27),y&=-15,A&=-15,g=t[y>>>28]|r[y>>>24&15]|i[y>>>20&15]|n[y>>>16&15]|a[y>>>12&15]|s[y>>>8&15]|o[y>>>4&15],w=c[A>>>28]|u[A>>>24&15]|h[A>>>20&15]|d[A>>>16&15]|f[A>>>12&15]|l[A>>>8&15]|p[A>>>4&15],v=65535&(w>>>16^g),b[k++]=g^v,b[k++]=w^v<<16}return b}function Ke(e){this.key=[];for(let t=0;t<3;t++)this.key.push(new Uint8Array(e.subarray(8*t,8*t+8)));this.encrypt=function(e){return Me(Ce(this.key[2]),Me(Ce(this.key[1]),Me(Ce(this.key[0]),e,!0,0,null,null),!1,0,null,null),!0,0,null,null)}}function De(){this.BlockSize=8,this.KeySize=16,this.setKey=function(e){if(this.masking=Array(16),this.rotate=Array(16),this.reset(),e.length!==this.KeySize)throw Error("CAST-128: keys must be 16 bytes");return this.keySchedule(e),!0},this.reset=function(){for(let e=0;e<16;e++)this.masking[e]=0,this.rotate[e]=0},this.getBlockSize=function(){return this.BlockSize},this.encrypt=function(e){const t=Array(e.length);for(let a=0;a>>24&255,t[a+1]=c>>>16&255,t[a+2]=c>>>8&255,t[a+3]=255&c,t[a+4]=o>>>24&255,t[a+5]=o>>>16&255,t[a+6]=o>>>8&255,t[a+7]=255&o}return t},this.decrypt=function(e){const t=Array(e.length);for(let a=0;a>>24&255,t[a+1]=c>>>16&255,t[a+2]=c>>>8&255,t[a+3]=255&c,t[a+4]=o>>>24&255,t[a+5]=o>>16&255,t[a+6]=o>>8&255,t[a+7]=255&o}return t};const e=[,,,,];e[0]=[,,,,],e[0][0]=[4,0,13,15,12,14,8],e[0][1]=[5,2,16,18,17,19,10],e[0][2]=[6,3,23,22,21,20,9],e[0][3]=[7,1,26,25,27,24,11],e[1]=[,,,,],e[1][0]=[0,6,21,23,20,22,16],e[1][1]=[1,4,0,2,1,3,18],e[1][2]=[2,5,7,6,5,4,17],e[1][3]=[3,7,10,9,11,8,19],e[2]=[,,,,],e[2][0]=[4,0,13,15,12,14,8],e[2][1]=[5,2,16,18,17,19,10],e[2][2]=[6,3,23,22,21,20,9],e[2][3]=[7,1,26,25,27,24,11],e[3]=[,,,,],e[3][0]=[0,6,21,23,20,22,16],e[3][1]=[1,4,0,2,1,3,18],e[3][2]=[2,5,7,6,5,4,17],e[3][3]=[3,7,10,9,11,8,19];const t=[,,,,];function r(e,t,r){const i=t+e,n=i<>>32-r;return(a[0][n>>>24]^a[1][n>>>16&255])-a[2][n>>>8&255]+a[3][255&n]}function i(e,t,r){const i=t^e,n=i<>>32-r;return a[0][n>>>24]-a[1][n>>>16&255]+a[2][n>>>8&255]^a[3][255&n]}function n(e,t,r){const i=t-e,n=i<>>32-r;return(a[0][n>>>24]+a[1][n>>>16&255]^a[2][n>>>8&255])-a[3][255&n]}t[0]=[,,,,],t[0][0]=[24,25,23,22,18],t[0][1]=[26,27,21,20,22],t[0][2]=[28,29,19,18,25],t[0][3]=[30,31,17,16,28],t[1]=[,,,,],t[1][0]=[3,2,12,13,8],t[1][1]=[1,0,14,15,13],t[1][2]=[7,6,8,9,3],t[1][3]=[5,4,10,11,7],t[2]=[,,,,],t[2][0]=[19,18,28,29,25],t[2][1]=[17,16,30,31,28],t[2][2]=[23,22,24,25,18],t[2][3]=[21,20,26,27,22],t[3]=[,,,,],t[3][0]=[8,9,7,6,3],t[3][1]=[10,11,5,4,7],t[3][2]=[12,13,3,2,8],t[3][3]=[14,15,1,0,13],this.keySchedule=function(r){const i=[,,,,,,,,],n=Array(32);let s;for(let e=0;e<4;e++)s=4*e,i[e]=r[s]<<24|r[s+1]<<16|r[s+2]<<8|r[s+3];const o=[6,7,4,5];let c,u=0;for(let r=0;r<2;r++)for(let r=0;r<4;r++){for(s=0;s<4;s++){const t=e[r][s];c=i[t[1]],c^=a[4][i[t[2]>>>2]>>>24-8*(3&t[2])&255],c^=a[5][i[t[3]>>>2]>>>24-8*(3&t[3])&255],c^=a[6][i[t[4]>>>2]>>>24-8*(3&t[4])&255],c^=a[7][i[t[5]>>>2]>>>24-8*(3&t[5])&255],c^=a[o[s]][i[t[6]>>>2]>>>24-8*(3&t[6])&255],i[t[0]]=c}for(s=0;s<4;s++){const e=t[r][s];c=a[4][i[e[0]>>>2]>>>24-8*(3&e[0])&255],c^=a[5][i[e[1]>>>2]>>>24-8*(3&e[1])&255],c^=a[6][i[e[2]>>>2]>>>24-8*(3&e[2])&255],c^=a[7][i[e[3]>>>2]>>>24-8*(3&e[3])&255],c^=a[4+s][i[e[4]>>>2]>>>24-8*(3&e[4])&255],n[u]=c,u++}}for(let e=0;e<16;e++)this.masking[e]=n[e],this.rotate[e]=31&n[16+e]};const a=[,,,,,,,,];a[0]=[821772500,2678128395,1810681135,1059425402,505495343,2617265619,1610868032,3483355465,3218386727,2294005173,3791863952,2563806837,1852023008,365126098,3269944861,584384398,677919599,3229601881,4280515016,2002735330,1136869587,3744433750,2289869850,2731719981,2714362070,879511577,1639411079,575934255,717107937,2857637483,576097850,2731753936,1725645e3,2810460463,5111599,767152862,2543075244,1251459544,1383482551,3052681127,3089939183,3612463449,1878520045,1510570527,2189125840,2431448366,582008916,3163445557,1265446783,1354458274,3529918736,3202711853,3073581712,3912963487,3029263377,1275016285,4249207360,2905708351,3304509486,1442611557,3585198765,2712415662,2731849581,3248163920,2283946226,208555832,2766454743,1331405426,1447828783,3315356441,3108627284,2957404670,2981538698,3339933917,1669711173,286233437,1465092821,1782121619,3862771680,710211251,980974943,1651941557,430374111,2051154026,704238805,4128970897,3144820574,2857402727,948965521,3333752299,2227686284,718756367,2269778983,2731643755,718440111,2857816721,3616097120,1113355533,2478022182,410092745,1811985197,1944238868,2696854588,1415722873,1682284203,1060277122,1998114690,1503841958,82706478,2315155686,1068173648,845149890,2167947013,1768146376,1993038550,3566826697,3390574031,940016341,3355073782,2328040721,904371731,1205506512,4094660742,2816623006,825647681,85914773,2857843460,1249926541,1417871568,3287612,3211054559,3126306446,1975924523,1353700161,2814456437,2438597621,1800716203,722146342,2873936343,1151126914,4160483941,2877670899,458611604,2866078500,3483680063,770352098,2652916994,3367839148,3940505011,3585973912,3809620402,718646636,2504206814,2914927912,3631288169,2857486607,2860018678,575749918,2857478043,718488780,2069512688,3548183469,453416197,1106044049,3032691430,52586708,3378514636,3459808877,3211506028,1785789304,218356169,3571399134,3759170522,1194783844,1523787992,3007827094,1975193539,2555452411,1341901877,3045838698,3776907964,3217423946,2802510864,2889438986,1057244207,1636348243,3761863214,1462225785,2632663439,481089165,718503062,24497053,3332243209,3344655856,3655024856,3960371065,1195698900,2971415156,3710176158,2115785917,4027663609,3525578417,2524296189,2745972565,3564906415,1372086093,1452307862,2780501478,1476592880,3389271281,18495466,2378148571,901398090,891748256,3279637769,3157290713,2560960102,1447622437,4284372637,216884176,2086908623,1879786977,3588903153,2242455666,2938092967,3559082096,2810645491,758861177,1121993112,215018983,642190776,4169236812,1196255959,2081185372,3508738393,941322904,4124243163,2877523539,1848581667,2205260958,3180453958,2589345134,3694731276,550028657,2519456284,3789985535,2973870856,2093648313,443148163,46942275,2734146937,1117713533,1115362972,1523183689,3717140224,1551984063],a[1]=[522195092,4010518363,1776537470,960447360,4267822970,4005896314,1435016340,1929119313,2913464185,1310552629,3579470798,3724818106,2579771631,1594623892,417127293,2715217907,2696228731,1508390405,3994398868,3925858569,3695444102,4019471449,3129199795,3770928635,3520741761,990456497,4187484609,2783367035,21106139,3840405339,631373633,3783325702,532942976,396095098,3548038825,4267192484,2564721535,2011709262,2039648873,620404603,3776170075,2898526339,3612357925,4159332703,1645490516,223693667,1567101217,3362177881,1029951347,3470931136,3570957959,1550265121,119497089,972513919,907948164,3840628539,1613718692,3594177948,465323573,2659255085,654439692,2575596212,2699288441,3127702412,277098644,624404830,4100943870,2717858591,546110314,2403699828,3655377447,1321679412,4236791657,1045293279,4010672264,895050893,2319792268,494945126,1914543101,2777056443,3894764339,2219737618,311263384,4275257268,3458730721,669096869,3584475730,3835122877,3319158237,3949359204,2005142349,2713102337,2228954793,3769984788,569394103,3855636576,1425027204,108000370,2736431443,3671869269,3043122623,1750473702,2211081108,762237499,3972989403,2798899386,3061857628,2943854345,867476300,964413654,1591880597,1594774276,2179821409,552026980,3026064248,3726140315,2283577634,3110545105,2152310760,582474363,1582640421,1383256631,2043843868,3322775884,1217180674,463797851,2763038571,480777679,2718707717,2289164131,3118346187,214354409,200212307,3810608407,3025414197,2674075964,3997296425,1847405948,1342460550,510035443,4080271814,815934613,833030224,1620250387,1945732119,2703661145,3966000196,1388869545,3456054182,2687178561,2092620194,562037615,1356438536,3409922145,3261847397,1688467115,2150901366,631725691,3840332284,549916902,3455104640,394546491,837744717,2114462948,751520235,2221554606,2415360136,3999097078,2063029875,803036379,2702586305,821456707,3019566164,360699898,4018502092,3511869016,3677355358,2402471449,812317050,49299192,2570164949,3259169295,2816732080,3331213574,3101303564,2156015656,3705598920,3546263921,143268808,3200304480,1638124008,3165189453,3341807610,578956953,2193977524,3638120073,2333881532,807278310,658237817,2969561766,1641658566,11683945,3086995007,148645947,1138423386,4158756760,1981396783,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Re(e){this.cast5=new De,this.cast5.setKey(e),this.encrypt=function(e){return this.cast5.encrypt(e)}}Ke.keySize=Ke.prototype.keySize=24,Ke.blockSize=Ke.prototype.blockSize=8,Re.blockSize=Re.prototype.blockSize=8,Re.keySize=Re.prototype.keySize=16;const Ue=4294967295;function Ie(e,t){return(e<>>32-t)&Ue}function Be(e,t){return e[t]|e[t+1]<<8|e[t+2]<<16|e[t+3]<<24}function Te(e,t,r){e.splice(t,4,255&r,r>>>8&255,r>>>16&255,r>>>24&255)}function ze(e,t){return e>>>8*t&255}function qe(e){this.tf=function(){let e=null,t=null,r=-1,i=[],n=[[],[],[],[]];function a(e){return n[0][ze(e,0)]^n[1][ze(e,1)]^n[2][ze(e,2)]^n[3][ze(e,3)]}function s(e){return n[0][ze(e,3)]^n[1][ze(e,0)]^n[2][ze(e,1)]^n[3][ze(e,2)]}function o(e,t){let r=a(t[0]),n=s(t[1]);t[2]=Ie(t[2]^r+n+i[4*e+8]&Ue,31),t[3]=Ie(t[3],1)^r+2*n+i[4*e+9]&Ue,r=a(t[2]),n=s(t[3]),t[0]=Ie(t[0]^r+n+i[4*e+10]&Ue,31),t[1]=Ie(t[1],1)^r+2*n+i[4*e+11]&Ue}function c(e,t){let r=a(t[0]),n=s(t[1]);t[2]=Ie(t[2],1)^r+n+i[4*e+10]&Ue,t[3]=Ie(t[3]^r+2*n+i[4*e+11]&Ue,31),r=a(t[2]),n=s(t[3]),t[0]=Ie(t[0],1)^r+n+i[4*e+8]&Ue,t[1]=Ie(t[1]^r+2*n+i[4*e+9]&Ue,31)}return{name:"twofish",blocksize:16,open:function(t){let r,a,s,o,c;e=t;const u=[],h=[],d=[];let f;const l=[];let p,y,b;const m=[[8,1,7,13,6,15,3,2,0,11,5,9,14,12,10,4],[2,8,11,13,15,7,6,14,3,1,9,4,0,10,12,5]],g=[[14,12,11,8,1,2,3,5,15,4,10,6,7,0,9,13],[1,14,2,11,4,12,3,7,6,13,10,5,15,9,0,8]],w=[[11,10,5,14,6,13,9,0,12,8,15,3,2,4,7,1],[4,12,7,5,1,6,9,10,0,14,13,8,2,11,3,15]],v=[[13,7,15,4,1,2,6,14,9,11,3,0,8,5,12,10],[11,9,5,1,12,3,13,14,6,4,7,15,2,0,8,10]],_=[0,8,1,9,2,10,3,11,4,12,5,13,6,14,7,15],k=[0,9,2,11,4,13,6,15,8,1,10,3,12,5,14,7],A=[[],[]],S=[[],[],[],[]];function E(e){return e^e>>2^[0,90,180,238][3&e]}function P(e){return e^e>>1^e>>2^[0,238,180,90][3&e]}function x(e,t){let r,i,n;for(r=0;r<8;r++)i=t>>>24,t=t<<8&Ue|e>>>24,e=e<<8&Ue,n=i<<1,128&i&&(n^=333),t^=i^n<<16,n^=i>>>1,1&i&&(n^=166),t^=n<<24|n<<8;return t}function M(e,t){const r=t>>4,i=15&t,n=m[e][r^i],a=g[e][_[i]^k[r]];return v[e][_[a]^k[n]]<<4|w[e][n^a]}function C(e,t){let r=ze(e,0),i=ze(e,1),n=ze(e,2),a=ze(e,3);switch(f){case 4:r=A[1][r]^ze(t[3],0),i=A[0][i]^ze(t[3],1),n=A[0][n]^ze(t[3],2),a=A[1][a]^ze(t[3],3);case 3:r=A[1][r]^ze(t[2],0),i=A[1][i]^ze(t[2],1),n=A[0][n]^ze(t[2],2),a=A[0][a]^ze(t[2],3);case 2:r=A[0][A[0][r]^ze(t[1],0)]^ze(t[0],0),i=A[0][A[1][i]^ze(t[1],1)]^ze(t[0],1),n=A[1][A[0][n]^ze(t[1],2)]^ze(t[0],2),a=A[1][A[1][a]^ze(t[1],3)]^ze(t[0],3)}return S[0][r]^S[1][i]^S[2][n]^S[3][a]}for(e=e.slice(0,32),r=e.length;16!==r&&24!==r&&32!==r;)e[r++]=0;for(r=0;r>2]=Be(e,r);for(r=0;r<256;r++)A[0][r]=M(0,r),A[1][r]=M(1,r);for(r=0;r<256;r++)p=A[1][r],y=E(p),b=P(p),S[0][r]=p+(y<<8)+(b<<16)+(b<<24),S[2][r]=y+(b<<8)+(p<<16)+(b<<24),p=A[0][r],y=E(p),b=P(p),S[1][r]=b+(b<<8)+(y<<16)+(p<<24),S[3][r]=y+(p<<8)+(b<<16)+(y<<24);for(f=d.length/2,r=0;r=0;e--)c(e,a);Te(t,r,a[2]^i[0]),Te(t,r+4,a[3]^i[1]),Te(t,r+8,a[0]^i[2]),Te(t,r+12,a[1]^i[3]),r+=16},finalize:function(){return t}}}(),this.tf.open(Array.from(e),0),this.encrypt=function(e){return this.tf.encrypt(Array.from(e),0)}}function Fe(){}function Oe(e){this.bf=new Fe,this.bf.init(e),this.encrypt=function(e){return 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e},Fe.prototype._F=function(e){let t;const r=255&e,i=255&(e>>>=8),n=255&(e>>>=8),a=255&(e>>>=8);return t=this.sboxes[0][a]+this.sboxes[1][n],t^=this.sboxes[2][i],t+=this.sboxes[3][r],t},Fe.prototype._encryptBlock=function(e){let t,r=e[0],i=e[1];for(t=0;t>>24-8*t&255,n[t+i]=r[1]>>>24-8*t&255;return n},Fe.prototype._decryptBlock=function(e){let t,r=e[0],i=e[1];for(t=this.NN+1;t>1;--t){r^=this.parray[t],i=this._F(r)^i;const e=r;r=i,i=e}r^=this.parray[1],i^=this.parray[0],e[0]=this._clean(i),e[1]=this._clean(r)},Fe.prototype.init=function(e){let t,r=0;for(this.parray=[],t=0;t=e.length&&(r=0);this.parray[t]=this.PARRAY[t]^i}for(this.sboxes=[],t=0;t<4;++t)for(this.sboxes[t]=[],r=0;r<256;++r)this.sboxes[t][r]=this.SBOXES[t][r];const i=[0,0];for(t=0;t>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=t+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=r+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=c+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=u+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=h+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=d+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=f+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=l+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=p+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=y+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=b+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=m+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=g+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=w+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;x=v+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=g^l^r^e;M=P<<1|P>>>31;x=M+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=w^p^c^t;C=P<<1|P>>>31;x=C+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=v^y^u^r;K=P<<1|P>>>31;x=K+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=M^b^h^c;D=P<<1|P>>>31;x=D+(_<<5|_>>>27)+E+(k&A|~k&S)+0x5a827999|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=C^m^d^u;R=P<<1|P>>>31;x=R+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=K^g^f^h;U=P<<1|P>>>31;x=U+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=D^w^l^d;I=P<<1|P>>>31;x=I+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=R^v^p^f;B=P<<1|P>>>31;x=B+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=U^M^y^l;T=P<<1|P>>>31;x=T+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=I^C^b^p;z=P<<1|P>>>31;x=z+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=B^K^m^y;q=P<<1|P>>>31;x=q+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=T^D^g^b;F=P<<1|P>>>31;x=F+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=z^R^w^m;O=P<<1|P>>>31;x=O+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=q^U^v^g;N=P<<1|P>>>31;x=N+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=F^I^M^w;j=P<<1|P>>>31;x=j+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=O^B^C^v;L=P<<1|P>>>31;x=L+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=N^T^K^M;W=P<<1|P>>>31;x=W+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=j^z^D^C;H=P<<1|P>>>31;x=H+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=L^q^R^K;G=P<<1|P>>>31;x=G+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=W^F^U^D;V=P<<1|P>>>31;x=V+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=H^O^I^R;$=P<<1|P>>>31;x=$+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=G^N^B^U;Z=P<<1|P>>>31;x=Z+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=V^j^T^I;Y=P<<1|P>>>31;x=Y+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=$^L^z^B;X=P<<1|P>>>31;x=X+(_<<5|_>>>27)+E+(k^A^S)+0x6ed9eba1|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Z^W^q^T;Q=P<<1|P>>>31;x=Q+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Y^H^F^z;J=P<<1|P>>>31;x=J+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=X^G^O^q;ee=P<<1|P>>>31;x=ee+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Q^V^N^F;te=P<<1|P>>>31;x=te+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=J^$^j^O;re=P<<1|P>>>31;x=re+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ee^Z^L^N;ie=P<<1|P>>>31;x=ie+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=te^Y^W^j;ne=P<<1|P>>>31;x=ne+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=re^X^H^L;ae=P<<1|P>>>31;x=ae+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ie^Q^G^W;se=P<<1|P>>>31;x=se+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ne^J^V^H;oe=P<<1|P>>>31;x=oe+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ae^ee^$^G;ce=P<<1|P>>>31;x=ce+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=se^te^Z^V;ue=P<<1|P>>>31;x=ue+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=oe^re^Y^$;he=P<<1|P>>>31;x=he+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ce^ie^X^Z;de=P<<1|P>>>31;x=de+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ue^ne^Q^Y;fe=P<<1|P>>>31;x=fe+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=he^ae^J^X;le=P<<1|P>>>31;x=le+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=de^se^ee^Q;pe=P<<1|P>>>31;x=pe+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=fe^oe^te^J;ye=P<<1|P>>>31;x=ye+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=le^ce^re^ee;be=P<<1|P>>>31;x=be+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=pe^ue^ie^te;me=P<<1|P>>>31;x=me+(_<<5|_>>>27)+E+(k&A|k&S|A&S)-0x70e44324|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ye^he^ne^re;ge=P<<1|P>>>31;x=ge+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=be^de^ae^ie;we=P<<1|P>>>31;x=we+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=me^fe^se^ne;ve=P<<1|P>>>31;x=ve+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ge^le^oe^ae;_e=P<<1|P>>>31;x=_e+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=we^pe^ce^se;ke=P<<1|P>>>31;x=ke+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ve^ye^ue^oe;Ae=P<<1|P>>>31;x=Ae+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=_e^be^he^ce;Se=P<<1|P>>>31;x=Se+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=ke^me^de^ue;Ee=P<<1|P>>>31;x=Ee+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Ae^ge^fe^he;Pe=P<<1|P>>>31;x=Pe+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Se^we^le^de;xe=P<<1|P>>>31;x=xe+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Ee^ve^pe^fe;Me=P<<1|P>>>31;x=Me+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Pe^_e^ye^le;Ce=P<<1|P>>>31;x=Ce+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=xe^ke^be^pe;Ke=P<<1|P>>>31;x=Ke+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Me^Ae^me^ye;De=P<<1|P>>>31;x=De+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Ce^Se^ge^be;Re=P<<1|P>>>31;x=Re+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Ke^Ee^we^me;Ue=P<<1|P>>>31;x=Ue+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=De^Pe^ve^ge;Ie=P<<1|P>>>31;x=Ie+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Re^xe^_e^we;Be=P<<1|P>>>31;x=Be+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Ue^Me^ke^ve;Te=P<<1|P>>>31;x=Te+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;P=Ie^Ce^Ae^_e;ze=P<<1|P>>>31;x=ze+(_<<5|_>>>27)+E+(k^A^S)-0x359d3e2a|0;E=S;S=A;A=k<<30|k>>>2;k=_;_=x;i=i+_|0;n=n+k|0;a=a+A|0;s=s+S|0;o=o+E|0}function k(e){e=e|0;_(v[e|0]<<24|v[e|1]<<16|v[e|2]<<8|v[e|3],v[e|4]<<24|v[e|5]<<16|v[e|6]<<8|v[e|7],v[e|8]<<24|v[e|9]<<16|v[e|10]<<8|v[e|11],v[e|12]<<24|v[e|13]<<16|v[e|14]<<8|v[e|15],v[e|16]<<24|v[e|17]<<16|v[e|18]<<8|v[e|19],v[e|20]<<24|v[e|21]<<16|v[e|22]<<8|v[e|23],v[e|24]<<24|v[e|25]<<16|v[e|26]<<8|v[e|27],v[e|28]<<24|v[e|29]<<16|v[e|30]<<8|v[e|31],v[e|32]<<24|v[e|33]<<16|v[e|34]<<8|v[e|35],v[e|36]<<24|v[e|37]<<16|v[e|38]<<8|v[e|39],v[e|40]<<24|v[e|41]<<16|v[e|42]<<8|v[e|43],v[e|44]<<24|v[e|45]<<16|v[e|46]<<8|v[e|47],v[e|48]<<24|v[e|49]<<16|v[e|50]<<8|v[e|51],v[e|52]<<24|v[e|53]<<16|v[e|54]<<8|v[e|55],v[e|56]<<24|v[e|57]<<16|v[e|58]<<8|v[e|59],v[e|60]<<24|v[e|61]<<16|v[e|62]<<8|v[e|63])}function A(e){e=e|0;v[e|0]=i>>>24;v[e|1]=i>>>16&255;v[e|2]=i>>>8&255;v[e|3]=i&255;v[e|4]=n>>>24;v[e|5]=n>>>16&255;v[e|6]=n>>>8&255;v[e|7]=n&255;v[e|8]=a>>>24;v[e|9]=a>>>16&255;v[e|10]=a>>>8&255;v[e|11]=a&255;v[e|12]=s>>>24;v[e|13]=s>>>16&255;v[e|14]=s>>>8&255;v[e|15]=s&255;v[e|16]=o>>>24;v[e|17]=o>>>16&255;v[e|18]=o>>>8&255;v[e|19]=o&255}function S(){i=0x67452301;n=0xefcdab89;a=0x98badcfe;s=0x10325476;o=0xc3d2e1f0;c=u=0}function E(e,t,r,h,d,f,l){e=e|0;t=t|0;r=r|0;h=h|0;d=d|0;f=f|0;l=l|0;i=e;n=t;a=r;s=h;o=d;c=f;u=l}function P(e,t){e=e|0;t=t|0;var r=0;if(e&63)return-1;while((t|0)>=64){k(e);e=e+64|0;t=t-64|0;r=r+64|0}c=c+r|0;if(c>>>0>>0)u=u+1|0;return r|0}function x(e,t,r){e=e|0;t=t|0;r=r|0;var i=0,n=0;if(e&63)return-1;if(~r)if(r&31)return-1;if((t|0)>=64){i=P(e,t)|0;if((i|0)==-1)return-1;e=e+i|0;t=t-i|0}i=i+t|0;c=c+t|0;if(c>>>0>>0)u=u+1|0;v[e|t]=0x80;if((t|0)>=56){for(n=t+1|0;(n|0)<64;n=n+1|0)v[e|n]=0x00;k(e);t=0;v[e|0]=0}for(n=t+1|0;(n|0)<59;n=n+1|0)v[e|n]=0;v[e|56]=u>>>21&255;v[e|57]=u>>>13&255;v[e|58]=u>>>5&255;v[e|59]=u<<3&255|c>>>29;v[e|60]=c>>>21&255;v[e|61]=c>>>13&255;v[e|62]=c>>>5&255;v[e|63]=c<<3&255;k(e);if(~r)A(r);return i|0}function M(){i=h;n=d;a=f;s=l;o=p;c=64;u=0}function C(){i=y;n=b;a=m;s=g;o=w;c=64;u=0}function K(e,t,r,v,k,A,E,P,x,M,C,K,D,R,U,I){e=e|0;t=t|0;r=r|0;v=v|0;k=k|0;A=A|0;E=E|0;P=P|0;x=x|0;M=M|0;C=C|0;K=K|0;D=D|0;R=R|0;U=U|0;I=I|0;S();_(e^0x5c5c5c5c,t^0x5c5c5c5c,r^0x5c5c5c5c,v^0x5c5c5c5c,k^0x5c5c5c5c,A^0x5c5c5c5c,E^0x5c5c5c5c,P^0x5c5c5c5c,x^0x5c5c5c5c,M^0x5c5c5c5c,C^0x5c5c5c5c,K^0x5c5c5c5c,D^0x5c5c5c5c,R^0x5c5c5c5c,U^0x5c5c5c5c,I^0x5c5c5c5c);y=i;b=n;m=a;g=s;w=o;S();_(e^0x36363636,t^0x36363636,r^0x36363636,v^0x36363636,k^0x36363636,A^0x36363636,E^0x36363636,P^0x36363636,x^0x36363636,M^0x36363636,C^0x36363636,K^0x36363636,D^0x36363636,R^0x36363636,U^0x36363636,I^0x36363636);h=i;d=n;f=a;l=s;p=o;c=64;u=0}function D(e,t,r){e=e|0;t=t|0;r=r|0;var c=0,u=0,h=0,d=0,f=0,l=0;if(e&63)return-1;if(~r)if(r&31)return-1;l=x(e,t,-1)|0;c=i,u=n,h=a,d=s,f=o;C();_(c,u,h,d,f,0x80000000,0,0,0,0,0,0,0,0,0,672);if(~r)A(r);return l|0}function R(e,t,r,c,u){e=e|0;t=t|0;r=r|0;c=c|0;u=u|0;var h=0,d=0,f=0,l=0,p=0,y=0,b=0,m=0,g=0,w=0;if(e&63)return-1;if(~u)if(u&31)return-1;v[e+t|0]=r>>>24;v[e+t+1|0]=r>>>16&255;v[e+t+2|0]=r>>>8&255;v[e+t+3|0]=r&255;D(e,t+4|0,-1)|0;h=y=i,d=b=n,f=m=a,l=g=s,p=w=o;c=c-1|0;while((c|0)>0){M();_(y,b,m,g,w,0x80000000,0,0,0,0,0,0,0,0,0,672);y=i,b=n,m=a,g=s,w=o;C();_(y,b,m,g,w,0x80000000,0,0,0,0,0,0,0,0,0,672);y=i,b=n,m=a,g=s,w=o;h=h^i;d=d^n;f=f^a;l=l^s;p=p^o;c=c-1|0}i=h;n=d;a=f;s=l;o=p;if(~u)A(u);return 0}return{reset:S,init:E,process:P,finish:x,hmac_reset:M,hmac_init:K,hmac_finish:D,pbkdf2_generate_block:R}};class Ve{constructor(){this.pos=0,this.len=0}reset(){const{asm:e}=this.acquire_asm();return this.result=null,this.pos=0,this.len=0,e.reset(),this}process(e){if(null!==this.result)throw new ve("state must be reset before processing new data");const{asm:t,heap:r}=this.acquire_asm();let i=this.pos,n=this.len,a=0,s=e.length,o=0;for(;s>0;)o=ge(r,i+n,e,a,s),n+=o,a+=o,s-=o,o=t.process(i,n),i+=o,n-=o,n||(i=0);return this.pos=i,this.len=n,this}finish(){if(null!==this.result)throw new ve("state must be reset before processing new data");const{asm:e,heap:t}=this.acquire_asm();return e.finish(this.pos,this.len,0),this.result=new Uint8Array(this.HASH_SIZE),this.result.set(t.subarray(0,this.HASH_SIZE)),this.pos=0,this.len=0,this.release_asm(),this}}const $e=[],Ze=[];class Ye extends Ve{constructor(){super(),this.NAME="sha1",this.BLOCK_SIZE=64,this.HASH_SIZE=20,this.acquire_asm()}acquire_asm(){return void 0!==this.heap&&void 0!==this.asm||(this.heap=$e.pop()||me(),this.asm=Ze.pop()||Ge({Uint8Array},null,this.heap.buffer),this.reset()),{heap:this.heap,asm:this.asm}}release_asm(){void 0!==this.heap&&void 0!==this.asm&&($e.push(this.heap),Ze.push(this.asm)),this.heap=void 0,this.asm=void 0}static bytes(e){return(new Ye).process(e).finish().result}}Ye.NAME="sha1",Ye.heap_pool=[],Ye.asm_pool=[],Ye.asm_function=Ge;const Xe=[],Qe=[];class Je extends Ve{constructor(){super(),this.NAME="sha256",this.BLOCK_SIZE=64,this.HASH_SIZE=32,this.acquire_asm()}acquire_asm(){return void 0!==this.heap&&void 0!==this.asm||(this.heap=Xe.pop()||me(),this.asm=Qe.pop()||function(e,t,r){"use asm";var i=0,n=0,a=0,s=0,o=0,c=0,u=0,h=0,d=0,f=0,l=0,p=0,y=0,b=0,m=0,g=0,w=0,v=0,_=0,k=0,A=0,S=0,E=0,P=0,x=0,M=0,C=new e.Uint8Array(r);function K(e,t,r,d,f,l,p,y,b,m,g,w,v,_,k,A){e=e|0;t=t|0;r=r|0;d=d|0;f=f|0;l=l|0;p=p|0;y=y|0;b=b|0;m=m|0;g=g|0;w=w|0;v=v|0;_=_|0;k=k|0;A=A|0;var 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<25^l<<14)+(r>>>17^r>>>19^r>>>10^r<<15^r<<13)+f+_|0;x=f+x+(S>>>6^S>>>11^S>>>25^S<<26^S<<21^S<<7)+(P^S&(E^P))+0x391c0cb3|0;D=D+x|0;x=x+(M&C^K&(M^C))+(M>>>2^M>>>13^M>>>22^M<<30^M<<19^M<<10)|0;l=(p>>>7^p>>>18^p>>>3^p<<25^p<<14)+(d>>>17^d>>>19^d>>>10^d<<15^d<<13)+l+k|0;P=l+P+(D>>>6^D>>>11^D>>>25^D<<26^D<<21^D<<7)+(E^D&(S^E))+0x4ed8aa4a|0;K=K+P|0;P=P+(x&M^C&(x^M))+(x>>>2^x>>>13^x>>>22^x<<30^x<<19^x<<10)|0;p=(y>>>7^y>>>18^y>>>3^y<<25^y<<14)+(f>>>17^f>>>19^f>>>10^f<<15^f<<13)+p+A|0;E=p+E+(K>>>6^K>>>11^K>>>25^K<<26^K<<21^K<<7)+(S^K&(D^S))+0x5b9cca4f|0;C=C+E|0;E=E+(P&x^M&(P^x))+(P>>>2^P>>>13^P>>>22^P<<30^P<<19^P<<10)|0;y=(b>>>7^b>>>18^b>>>3^b<<25^b<<14)+(l>>>17^l>>>19^l>>>10^l<<15^l<<13)+y+e|0;S=y+S+(C>>>6^C>>>11^C>>>25^C<<26^C<<21^C<<7)+(D^C&(K^D))+0x682e6ff3|0;M=M+S|0;S=S+(E&P^x&(E^P))+(E>>>2^E>>>13^E>>>22^E<<30^E<<19^E<<10)|0;b=(m>>>7^m>>>18^m>>>3^m<<25^m<<14)+(p>>>17^p>>>19^p>>>10^p<<15^p<<13)+b+t|0;D=b+D+(M>>>6^M>>>11^M>>>25^M<<26^M<<21^M<<7)+(K^M&(C^K))+0x748f82ee|0;x=x+D|0;D=D+(S&E^P&(S^E))+(S>>>2^S>>>13^S>>>22^S<<30^S<<19^S<<10)|0;m=(g>>>7^g>>>18^g>>>3^g<<25^g<<14)+(y>>>17^y>>>19^y>>>10^y<<15^y<<13)+m+r|0;K=m+K+(x>>>6^x>>>11^x>>>25^x<<26^x<<21^x<<7)+(C^x&(M^C))+0x78a5636f|0;P=P+K|0;K=K+(D&S^E&(D^S))+(D>>>2^D>>>13^D>>>22^D<<30^D<<19^D<<10)|0;g=(w>>>7^w>>>18^w>>>3^w<<25^w<<14)+(b>>>17^b>>>19^b>>>10^b<<15^b<<13)+g+d|0;C=g+C+(P>>>6^P>>>11^P>>>25^P<<26^P<<21^P<<7)+(M^P&(x^M))+0x84c87814|0;E=E+C|0;C=C+(K&D^S&(K^D))+(K>>>2^K>>>13^K>>>22^K<<30^K<<19^K<<10)|0;w=(v>>>7^v>>>18^v>>>3^v<<25^v<<14)+(m>>>17^m>>>19^m>>>10^m<<15^m<<13)+w+f|0;M=w+M+(E>>>6^E>>>11^E>>>25^E<<26^E<<21^E<<7)+(x^E&(P^x))+0x8cc70208|0;S=S+M|0;M=M+(C&K^D&(C^K))+(C>>>2^C>>>13^C>>>22^C<<30^C<<19^C<<10)|0;v=(_>>>7^_>>>18^_>>>3^_<<25^_<<14)+(g>>>17^g>>>19^g>>>10^g<<15^g<<13)+v+l|0;x=v+x+(S>>>6^S>>>11^S>>>25^S<<26^S<<21^S<<7)+(P^S&(E^P))+0x90befffa|0;D=D+x|0;x=x+(M&C^K&(M^C))+(M>>>2^M>>>13^M>>>22^M<<30^M<<19^M<<10)|0;_=(k>>>7^k>>>18^k>>>3^k<<25^k<<14)+(w>>>17^w>>>19^w>>>10^w<<15^w<<13)+_+p|0;P=_+P+(D>>>6^D>>>11^D>>>25^D<<26^D<<21^D<<7)+(E^D&(S^E))+0xa4506ceb|0;K=K+P|0;P=P+(x&M^C&(x^M))+(x>>>2^x>>>13^x>>>22^x<<30^x<<19^x<<10)|0;k=(A>>>7^A>>>18^A>>>3^A<<25^A<<14)+(v>>>17^v>>>19^v>>>10^v<<15^v<<13)+k+y|0;E=k+E+(K>>>6^K>>>11^K>>>25^K<<26^K<<21^K<<7)+(S^K&(D^S))+0xbef9a3f7|0;C=C+E|0;E=E+(P&x^M&(P^x))+(P>>>2^P>>>13^P>>>22^P<<30^P<<19^P<<10)|0;A=(e>>>7^e>>>18^e>>>3^e<<25^e<<14)+(_>>>17^_>>>19^_>>>10^_<<15^_<<13)+A+b|0;S=A+S+(C>>>6^C>>>11^C>>>25^C<<26^C<<21^C<<7)+(D^C&(K^D))+0xc67178f2|0;M=M+S|0;S=S+(E&P^x&(E^P))+(E>>>2^E>>>13^E>>>22^E<<30^E<<19^E<<10)|0;i=i+S|0;n=n+E|0;a=a+P|0;s=s+x|0;o=o+M|0;c=c+C|0;u=u+K|0;h=h+D|0}function D(e){e=e|0;K(C[e|0]<<24|C[e|1]<<16|C[e|2]<<8|C[e|3],C[e|4]<<24|C[e|5]<<16|C[e|6]<<8|C[e|7],C[e|8]<<24|C[e|9]<<16|C[e|10]<<8|C[e|11],C[e|12]<<24|C[e|13]<<16|C[e|14]<<8|C[e|15],C[e|16]<<24|C[e|17]<<16|C[e|18]<<8|C[e|19],C[e|20]<<24|C[e|21]<<16|C[e|22]<<8|C[e|23],C[e|24]<<24|C[e|25]<<16|C[e|26]<<8|C[e|27],C[e|28]<<24|C[e|29]<<16|C[e|30]<<8|C[e|31],C[e|32]<<24|C[e|33]<<16|C[e|34]<<8|C[e|35],C[e|36]<<24|C[e|37]<<16|C[e|38]<<8|C[e|39],C[e|40]<<24|C[e|41]<<16|C[e|42]<<8|C[e|43],C[e|44]<<24|C[e|45]<<16|C[e|46]<<8|C[e|47],C[e|48]<<24|C[e|49]<<16|C[e|50]<<8|C[e|51],C[e|52]<<24|C[e|53]<<16|C[e|54]<<8|C[e|55],C[e|56]<<24|C[e|57]<<16|C[e|58]<<8|C[e|59],C[e|60]<<24|C[e|61]<<16|C[e|62]<<8|C[e|63])}function R(e){e=e|0;C[e|0]=i>>>24;C[e|1]=i>>>16&255;C[e|2]=i>>>8&255;C[e|3]=i&255;C[e|4]=n>>>24;C[e|5]=n>>>16&255;C[e|6]=n>>>8&255;C[e|7]=n&255;C[e|8]=a>>>24;C[e|9]=a>>>16&255;C[e|10]=a>>>8&255;C[e|11]=a&255;C[e|12]=s>>>24;C[e|13]=s>>>16&255;C[e|14]=s>>>8&255;C[e|15]=s&255;C[e|16]=o>>>24;C[e|17]=o>>>16&255;C[e|18]=o>>>8&255;C[e|19]=o&255;C[e|20]=c>>>24;C[e|21]=c>>>16&255;C[e|22]=c>>>8&255;C[e|23]=c&255;C[e|24]=u>>>24;C[e|25]=u>>>16&255;C[e|26]=u>>>8&255;C[e|27]=u&255;C[e|28]=h>>>24;C[e|29]=h>>>16&255;C[e|30]=h>>>8&255;C[e|31]=h&255}function U(){i=0x6a09e667;n=0xbb67ae85;a=0x3c6ef372;s=0xa54ff53a;o=0x510e527f;c=0x9b05688c;u=0x1f83d9ab;h=0x5be0cd19;d=f=0}function I(e,t,r,l,p,y,b,m,g,w){e=e|0;t=t|0;r=r|0;l=l|0;p=p|0;y=y|0;b=b|0;m=m|0;g=g|0;w=w|0;i=e;n=t;a=r;s=l;o=p;c=y;u=b;h=m;d=g;f=w}function B(e,t){e=e|0;t=t|0;var r=0;if(e&63)return-1;while((t|0)>=64){D(e);e=e+64|0;t=t-64|0;r=r+64|0}d=d+r|0;if(d>>>0>>0)f=f+1|0;return r|0}function T(e,t,r){e=e|0;t=t|0;r=r|0;var i=0,n=0;if(e&63)return-1;if(~r)if(r&31)return-1;if((t|0)>=64){i=B(e,t)|0;if((i|0)==-1)return-1;e=e+i|0;t=t-i|0}i=i+t|0;d=d+t|0;if(d>>>0>>0)f=f+1|0;C[e|t]=0x80;if((t|0)>=56){for(n=t+1|0;(n|0)<64;n=n+1|0)C[e|n]=0x00;D(e);t=0;C[e|0]=0}for(n=t+1|0;(n|0)<59;n=n+1|0)C[e|n]=0;C[e|56]=f>>>21&255;C[e|57]=f>>>13&255;C[e|58]=f>>>5&255;C[e|59]=f<<3&255|d>>>29;C[e|60]=d>>>21&255;C[e|61]=d>>>13&255;C[e|62]=d>>>5&255;C[e|63]=d<<3&255;D(e);if(~r)R(r);return i|0}function z(){i=l;n=p;a=y;s=b;o=m;c=g;u=w;h=v;d=64;f=0}function q(){i=_;n=k;a=A;s=S;o=E;c=P;u=x;h=M;d=64;f=0}function F(e,t,r,C,D,R,I,B,T,z,q,F,O,N,j,L){e=e|0;t=t|0;r=r|0;C=C|0;D=D|0;R=R|0;I=I|0;B=B|0;T=T|0;z=z|0;q=q|0;F=F|0;O=O|0;N=N|0;j=j|0;L=L|0;U();K(e^0x5c5c5c5c,t^0x5c5c5c5c,r^0x5c5c5c5c,C^0x5c5c5c5c,D^0x5c5c5c5c,R^0x5c5c5c5c,I^0x5c5c5c5c,B^0x5c5c5c5c,T^0x5c5c5c5c,z^0x5c5c5c5c,q^0x5c5c5c5c,F^0x5c5c5c5c,O^0x5c5c5c5c,N^0x5c5c5c5c,j^0x5c5c5c5c,L^0x5c5c5c5c);_=i;k=n;A=a;S=s;E=o;P=c;x=u;M=h;U();K(e^0x36363636,t^0x36363636,r^0x36363636,C^0x36363636,D^0x36363636,R^0x36363636,I^0x36363636,B^0x36363636,T^0x36363636,z^0x36363636,q^0x36363636,F^0x36363636,O^0x36363636,N^0x36363636,j^0x36363636,L^0x36363636);l=i;p=n;y=a;b=s;m=o;g=c;w=u;v=h;d=64;f=0}function O(e,t,r){e=e|0;t=t|0;r=r|0;var d=0,f=0,l=0,p=0,y=0,b=0,m=0,g=0,w=0;if(e&63)return-1;if(~r)if(r&31)return-1;w=T(e,t,-1)|0;d=i,f=n,l=a,p=s,y=o,b=c,m=u,g=h;q();K(d,f,l,p,y,b,m,g,0x80000000,0,0,0,0,0,0,768);if(~r)R(r);return w|0}function N(e,t,r,d,f){e=e|0;t=t|0;r=r|0;d=d|0;f=f|0;var 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encrypt(e,t,r=!0,i){return new ti(t,i,r).encrypt(e)}static decrypt(e,t,r=!0,i){return new ti(t,i,r).decrypt(e)}constructor(e,t,r=!0,i){this.aes=i||new Ee(e,t,r,"CBC")}encrypt(e){return we(this.aes.AES_Encrypt_process(e),this.aes.AES_Encrypt_finish())}decrypt(e){return we(this.aes.AES_Decrypt_process(e),this.aes.AES_Decrypt_finish())}}const ri=$.getWebCrypto(),ii=$.getNodeCrypto(),ni=16;function ai(e,t){const r=e.length-ni;for(let i=0;i>3),17+(u>>3)),8-(7&u)).subarray(1),l=new Uint8Array(vi),p=new Uint8Array(t.length+ki);let y,b=0;for(y=0;y16)throw new _e("illegal tagSize value");const o=t.length||0,c=new Uint8Array(16);12!==o?(this._gcm_mac_process(t),s[0]=0,s[1]=0,s[2]=0,s[3]=0,s[4]=0,s[5]=0,s[6]=0,s[7]=0,s[8]=0,s[9]=0,s[10]=0,s[11]=o>>>29,s[12]=o>>>21&255,s[13]=o>>>13&255,s[14]=o>>>5&255,s[15]=o<<3&255,a.mac(ye.MAC.GCM,ye.HEAP_DATA,16),a.get_iv(ye.HEAP_DATA),a.set_iv(0,0,0,0),c.set(s.subarray(0,16))):(c.set(t),c[15]=1);const u=new DataView(c.buffer);if(this.gamma0=u.getUint32(12),a.set_nonce(u.getUint32(0),u.getUint32(4),u.getUint32(8),0),a.set_mask(0,0,0,4294967295),void 0!==r){if(r.length>Ci)throw new _e("illegal adata length");r.length?(this.adata=r,this._gcm_mac_process(r)):this.adata=void 0}else this.adata=void 0;if(this.counter<1||this.counter>4294967295)throw new RangeError("counter must be a positive 32-bit integer");a.set_counter(0,0,0,this.gamma0+this.counter|0)}static encrypt(e,t,r,i,n){return new Ki(t,r,i,n).encrypt(e)}static decrypt(e,t,r,i,n){return new Ki(t,r,i,n).decrypt(e)}encrypt(e){return this.AES_GCM_encrypt(e)}decrypt(e){return this.AES_GCM_decrypt(e)}AES_GCM_Encrypt_process(e){let t=0,r=e.length||0,{asm:i,heap:n}=this.aes.acquire_asm(),a=this.counter,s=this.aes.pos,o=this.aes.len,c=0,u=o+r&-16,h=0;if((a-1<<4)+o+r>Ci)throw new RangeError("counter overflow");const d=new 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r>0&&(c+=ge(n,0,e,t,r)),this.counter=a,this.aes.pos=o,this.aes.len=c,l}AES_GCM_Decrypt_finish(){let{asm:e,heap:t}=this.aes.acquire_asm(),r=this.tagSize,i=this.adata,n=this.counter,a=this.aes.pos,s=this.aes.len,o=s-r;if(s>>29,t[4]=d>>>21,t[5]=d>>>13&255,t[6]=d>>>5&255,t[7]=d<<3&255,t[8]=t[9]=t[10]=0,t[11]=f>>>29,t[12]=f>>>21&255,t[13]=f>>>13&255,t[14]=f>>>5&255,t[15]=f<<3&255,e.mac(ye.MAC.GCM,ye.HEAP_DATA,16),e.get_iv(ye.HEAP_DATA),e.set_counter(0,0,0,this.gamma0),e.cipher(ye.ENC.CTR,ye.HEAP_DATA,16);let l=0;for(let e=0;e0;){for(a=ge(r,0,e,i,n),i+=a,n-=a;15&a;)r[a++]=0;t.mac(ye.MAC.GCM,ye.HEAP_DATA,a)}}}const Di=$.getWebCrypto(),Ri=$.getNodeCrypto(),Ui=$.getNodeBuffer(),Ii=16,Bi="AES-GCM";async function Ti(e,t){if(e!==ie.symmetric.aes128&&e!==ie.symmetric.aes192&&e!==ie.symmetric.aes256)throw Error("GCM mode supports only AES cipher");if($.getWebCrypto()&&24!==t.length){const e=await Di.importKey("raw",t,{name:Bi},!1,["encrypt","decrypt"]);return{encrypt:async function(r,i,n=new 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Ni(o,o.leftShift(c)),h=u.mul(r).mul(t);return!(!h.mod(i.dec()).equal(u)||!h.mod(n.dec()).equal(u))}});var nn=/*#__PURE__*/Object.freeze({__proto__:null,encrypt:async function(e,t,r,i){const n=await $.getBigInteger();t=new n(t),r=new n(r),i=new n(i);const a=new n(Vi(e,t.byteLength())),s=await Ni(new n(1),t.dec());return{c1:r.modExp(s,t).toUint8Array(),c2:i.modExp(s,t).imul(a).imod(t).toUint8Array()}},decrypt:async function(e,t,r,i,n){const a=await $.getBigInteger();return e=new a(e),t=new a(t),r=new a(r),i=new a(i),$i(e.modExp(i,r).modInv(r).imul(t).imod(r).toUint8Array("be",r.byteLength()),n)},validateParams:async function(e,t,r,i){const n=await $.getBigInteger();e=new n(e),t=new n(t),r=new n(r);const a=new n(1);if(t.lte(a)||t.gte(e))return!1;const s=new n(e.bitLength()),o=new n(1023);if(s.lt(o))return!1;if(!t.modExp(e.dec(),e).isOne())return!1;let c=t;const u=new n(1),h=new n(2).leftShift(new n(17));for(;u.lt(h);){if(c=c.mul(t).imod(e),c.isOne())return!1;u.iinc()}i=new n(i);const d=new n(2),f=await Ni(d.leftShift(s.dec()),d.leftShift(s)),l=e.dec().imul(f).iadd(i);return!!r.equal(t.modExp(l,e))}});class an{constructor(e){if(e instanceof an)this.oid=e.oid;else if($.isArray(e)||$.isUint8Array(e)){if(6===(e=new Uint8Array(e))[0]){if(e[1]!==e.length-2)throw Error("Length mismatch in DER encoded oid");e=e.subarray(2)}this.oid=e}else this.oid=""}read(e){if(e.length>=1){const t=e[0];if(e.length>=1+t)return this.oid=e.subarray(1,1+t),1+this.oid.length}throw Error("Invalid oid")}write(){return $.concatUint8Array([new Uint8Array([this.oid.length]),this.oid])}toHex(){return $.uint8ArrayToHex(this.oid)}getName(){const e=this.toHex();if(ie.curve[e])return ie.write(ie.curve,e);throw Error("Unknown curve object identifier.")}}function sn(e,t){return e.keyPair({priv:t})}function on(e,t){const r=e.keyPair({pub:t});if(!0!==r.validate().result)throw Error("Invalid elliptic public key");return r}async function cn(e){if(!ne.useIndutnyElliptic)throw Error("This curve is only supported in the full build of OpenPGP.js");const{default:t}=await Promise.resolve().then((function(){return yb}));return new t.ec(e)}function un(e){let t,r=0;const i=e[0];return i<192?([r]=e,t=1):i<255?(r=(e[0]-192<<8)+e[1]+192,t=2):255===i&&(r=$.readNumber(e.subarray(1,5)),t=5),{len:r,offset:t}}function hn(e){return e<192?new Uint8Array([e]):e>191&&e<8384?new Uint8Array([192+(e-192>>8),e-192&255]):$.concatUint8Array([new Uint8Array([255]),$.writeNumber(e,4)])}function dn(e){if(e<0||e>30)throw Error("Partial Length power must be between 1 and 30");return new Uint8Array([224+e])}function fn(e){return new Uint8Array([192|e])}function ln(e,t){return $.concatUint8Array([fn(e),hn(t)])}function pn(e){return[ie.packet.literalData,ie.packet.compressedData,ie.packet.symmetricallyEncryptedData,ie.packet.symEncryptedIntegrityProtectedData,ie.packet.aeadEncryptedData].includes(e)}async function yn(e,t){const r=K(e);let i,n;try{const s=await r.peekBytes(2);if(!s||s.length<2||0==(128&s[0]))throw Error("Error during parsing. This message / key probably does not conform to a valid OpenPGP format.");const o=await r.readByte();let c,u,h=-1,d=-1;d=0,0!=(64&o)&&(d=1),d?h=63&o:(h=(63&o)>>2,u=3&o);const f=pn(h);let l,p=null;if(f){if("array"===$.isStream(e)){const e=new a;i=D(e),p=e}else{const e=new S;i=D(e.writable),p=e.readable}n=t({tag:h,packet:p})}else p=[];do{if(d){const e=await r.readByte();if(l=!1,e<192)c=e;else if(e>=192&&e<224)c=(e-192<<8)+await r.readByte()+192;else if(e>223&&e<255){if(c=1<<(31&e),l=!0,!f)throw new TypeError("This packet type does not support partial lengths.")}else c=await r.readByte()<<24|await r.readByte()<<16|await r.readByte()<<8|await r.readByte()}else switch(u){case 0:c=await r.readByte();break;case 1:c=await r.readByte()<<8|await r.readByte();break;case 2:c=await r.readByte()<<24|await r.readByte()<<16|await r.readByte()<<8|await r.readByte();break;default:c=1/0}if(c>0){let e=0;for(;;){i&&await i.ready;const{done:t,value:n}=await r.read();if(t){if(c===1/0)break;throw Error("Unexpected end of packet")}const a=c===1/0?n:n.subarray(0,c-e);if(i?await i.write(a):p.push(a),e+=n.length,e>=c){r.unshift(n.subarray(c-e+n.length));break}}}}while(l);const y=await r.peekBytes(f?1/0:2);return i?(await i.ready,await i.close()):(p=$.concatUint8Array(p),await t({tag:h,packet:p})),!y||!y.length}catch(e){if(i)return await i.abort(e),!0;throw e}finally{i&&await n,r.releaseLock()}}class bn extends Error{constructor(...e){super(...e),Error.captureStackTrace&&Error.captureStackTrace(this,bn),this.name="UnsupportedError"}}class mn{constructor(e,t){this.tag=e,this.rawContent=t}write(){return this.rawContent}}const gn=$.getWebCrypto(),wn=$.getNodeCrypto(),vn={p256:"P-256",p384:"P-384",p521:"P-521"},_n=wn?wn.getCurves():[],kn=wn?{secp256k1:_n.includes("secp256k1")?"secp256k1":void 0,p256:_n.includes("prime256v1")?"prime256v1":void 0,p384:_n.includes("secp384r1")?"secp384r1":void 0,p521:_n.includes("secp521r1")?"secp521r1":void 0,ed25519:_n.includes("ED25519")?"ED25519":void 0,curve25519:_n.includes("X25519")?"X25519":void 0,brainpoolP256r1:_n.includes("brainpoolP256r1")?"brainpoolP256r1":void 0,brainpoolP384r1:_n.includes("brainpoolP384r1")?"brainpoolP384r1":void 0,brainpoolP512r1:_n.includes("brainpoolP512r1")?"brainpoolP512r1":void 0}:{},An={p256:{oid:[6,8,42,134,72,206,61,3,1,7],keyType:ie.publicKey.ecdsa,hash:ie.hash.sha256,cipher:ie.symmetric.aes128,node:kn.p256,web:vn.p256,payloadSize:32,sharedSize:256},p384:{oid:[6,5,43,129,4,0,34],keyType:ie.publicKey.ecdsa,hash:ie.hash.sha384,cipher:ie.symmetric.aes192,node:kn.p384,web:vn.p384,payloadSize:48,sharedSize:384},p521:{oid:[6,5,43,129,4,0,35],keyType:ie.publicKey.ecdsa,hash:ie.hash.sha512,cipher:ie.symmetric.aes256,node:kn.p521,web:vn.p521,payloadSize:66,sharedSize:528},secp256k1:{oid:[6,5,43,129,4,0,10],keyType:ie.publicKey.ecdsa,hash:ie.hash.sha256,cipher:ie.symmetric.aes128,node:kn.secp256k1,payloadSize:32},ed25519:{oid:[6,9,43,6,1,4,1,218,71,15,1],keyType:ie.publicKey.eddsa,hash:ie.hash.sha512,node:!1,payloadSize:32},curve25519:{oid:[6,10,43,6,1,4,1,151,85,1,5,1],keyType:ie.publicKey.ecdh,hash:ie.hash.sha256,cipher:ie.symmetric.aes128,node:!1,payloadSize:32},brainpoolP256r1:{oid:[6,9,43,36,3,3,2,8,1,1,7],keyType:ie.publicKey.ecdsa,hash:ie.hash.sha256,cipher:ie.symmetric.aes128,node:kn.brainpoolP256r1,payloadSize:32},brainpoolP384r1:{oid:[6,9,43,36,3,3,2,8,1,1,11],keyType:ie.publicKey.ecdsa,hash:ie.hash.sha384,cipher:ie.symmetric.aes192,node:kn.brainpoolP384r1,payloadSize:48},brainpoolP512r1:{oid:[6,9,43,36,3,3,2,8,1,1,13],keyType:ie.publicKey.ecdsa,hash:ie.hash.sha512,cipher:ie.symmetric.aes256,node:kn.brainpoolP512r1,payloadSize:64}};class Sn{constructor(e,t){try{($.isArray(e)||$.isUint8Array(e))&&(e=new an(e)),e instanceof an&&(e=e.getName()),this.name=ie.write(ie.curve,e)}catch(e){throw new bn("Unknown curve")}t=t||An[this.name],this.keyType=t.keyType,this.oid=t.oid,this.hash=t.hash,this.cipher=t.cipher,this.node=t.node&&An[this.name],this.web=t.web&&An[this.name],this.payloadSize=t.payloadSize,this.web&&$.getWebCrypto()?this.type="web":this.node&&$.getNodeCrypto()?this.type="node":"curve25519"===this.name?this.type="curve25519":"ed25519"===this.name&&(this.type="ed25519")}async genKeyPair(){let e;switch(this.type){case"web":try{return await async function(e){const t=await gn.generateKey({name:"ECDSA",namedCurve:vn[e]},!0,["sign","verify"]),r=await gn.exportKey("jwk",t.privateKey),i=await gn.exportKey("jwk",t.publicKey);return{publicKey:Pn(i),privateKey:ee(r.d)}}(this.name)}catch(e){$.printDebugError("Browser did not support generating ec key "+e.message);break}case"node":return async function(e){const t=wn.createECDH(kn[e]);return await t.generateKeys(),{publicKey:new Uint8Array(t.getPublicKey()),privateKey:new Uint8Array(t.getPrivateKey())}}(this.name);case"curve25519":{const t=Oi(32);t[0]=127&t[0]|64,t[31]&=248;const r=t.slice().reverse();e=qi.box.keyPair.fromSecretKey(r);return{publicKey:$.concatUint8Array([new Uint8Array([64]),e.publicKey]),privateKey:t}}case"ed25519":{const e=Oi(32),t=qi.sign.keyPair.fromSeed(e);return{publicKey:$.concatUint8Array([new Uint8Array([64]),t.publicKey]),privateKey:e}}}const t=await cn(this.name);return e=await t.genKeyPair({entropy:$.uint8ArrayToString(Oi(32))}),{publicKey:new Uint8Array(e.getPublic("array",!1)),privateKey:e.getPrivate().toArrayLike(Uint8Array)}}}async function En(e,t,r,i){const n={p256:!0,p384:!0,p521:!0,secp256k1:!0,curve25519:e===ie.publicKey.ecdh,brainpoolP256r1:!0,brainpoolP384r1:!0,brainpoolP512r1:!0},a=t.getName();if(!n[a])return!1;if("curve25519"===a){i=i.slice().reverse();const{publicKey:e}=qi.box.keyPair.fromSecretKey(i);r=new Uint8Array(r);const t=new Uint8Array([64,...e]);return!!$.equalsUint8Array(t,r)}const s=await cn(a);try{r=on(s,r).getPublic()}catch(e){return!1}return!!sn(s,i).getPublic().eq(r)}function Pn(e){const t=ee(e.x),r=ee(e.y),i=new Uint8Array(t.length+r.length+1);return i[0]=4,i.set(t,1),i.set(r,t.length+1),i}function xn(e,t,r){const i=e,n=r.slice(1,i+1),a=r.slice(i+1,2*i+1);return{kty:"EC",crv:t,x:te(n,!0),y:te(a,!0),ext:!0}}function Mn(e,t,r,i){const n=xn(e,t,r);return n.d=te(i,!0),n}const Cn=$.getWebCrypto(),Kn=$.getNodeCrypto();async function Dn(e,t,r,i,n,a){const s=new Sn(e);if(r&&!$.isStream(r)){const e={publicKey:i,privateKey:n};switch(s.type){case"web":try{return await async function(e,t,r,i){const n=e.payloadSize,a=Mn(e.payloadSize,vn[e.name],i.publicKey,i.privateKey),s=await Cn.importKey("jwk",a,{name:"ECDSA",namedCurve:vn[e.name],hash:{name:ie.read(ie.webHash,e.hash)}},!1,["sign"]),o=new Uint8Array(await Cn.sign({name:"ECDSA",namedCurve:vn[e.name],hash:{name:ie.read(ie.webHash,t)}},s,r));return{r:o.slice(0,n),s:o.slice(n,n<<1)}}(s,t,r,e)}catch(e){if("p521"!==s.name&&("DataError"===e.name||"OperationError"===e.name))throw e;$.printDebugError("Browser did not support signing: "+e.message)}break;case"node":{const i=await async function(e,t,r,i){const n=Kn.createSign(ie.read(ie.hash,t));n.write(r),n.end();const a=Bn.encode({version:1,parameters:e.oid,privateKey:Array.from(i.privateKey),publicKey:{unused:0,data:Array.from(i.publicKey)}},"pem",{label:"EC PRIVATE KEY"});return In.decode(n.sign(a),"der")}(s,t,r,e);return{r:i.r.toArrayLike(Uint8Array),s:i.s.toArrayLike(Uint8Array)}}}}return async function(e,t,r){const i=await cn(e.name),n=sn(i,r),a=n.sign(t);return{r:a.r.toArrayLike(Uint8Array),s:a.s.toArrayLike(Uint8Array)}}(s,a,n)}async function Rn(e,t,r,i,n,a){const s=new Sn(e);if(i&&!$.isStream(i))switch(s.type){case"web":try{return await async function(e,t,{r,s:i},n,a){const s=xn(e.payloadSize,vn[e.name],a),o=await Cn.importKey("jwk",s,{name:"ECDSA",namedCurve:vn[e.name],hash:{name:ie.read(ie.webHash,e.hash)}},!1,["verify"]),c=$.concatUint8Array([r,i]).buffer;return Cn.verify({name:"ECDSA",namedCurve:vn[e.name],hash:{name:ie.read(ie.webHash,t)}},o,c,n)}(s,t,r,i,n)}catch(e){if("p521"!==s.name&&("DataError"===e.name||"OperationError"===e.name))throw e;$.printDebugError("Browser did not support verifying: "+e.message)}break;case"node":return async function(e,t,{r,s:i},n,a){const{default:s}=await Promise.resolve().then((function(){return Yp})),o=Kn.createVerify(ie.read(ie.hash,t));o.write(n),o.end();const c=zn.encode({algorithm:{algorithm:[1,2,840,10045,2,1],parameters:e.oid},subjectPublicKey:{unused:0,data:Array.from(a)}},"pem",{label:"PUBLIC KEY"}),u=In.encode({r:new s(r),s:new s(i)},"der");try{return o.verify(c,u)}catch(e){return!1}}(s,t,r,i,n)}return async function(e,t,r,i){const n=await cn(e.name),a=on(n,i);return a.verify(r,t)}(s,r,void 0===t?i:a,n)}const Un=void 0,In=Kn?Un.define("ECDSASignature",(function(){this.seq().obj(this.key("r").int(),this.key("s").int())})):void 0,Bn=Kn?Un.define("ECPrivateKey",(function(){this.seq().obj(this.key("version").int(),this.key("privateKey").octstr(),this.key("parameters").explicit(0).optional().any(),this.key("publicKey").explicit(1).optional().bitstr())})):void 0,Tn=Kn?Un.define("AlgorithmIdentifier",(function(){this.seq().obj(this.key("algorithm").objid(),this.key("parameters").optional().any())})):void 0,zn=Kn?Un.define("SubjectPublicKeyInfo",(function(){this.seq().obj(this.key("algorithm").use(Tn),this.key("subjectPublicKey").bitstr())})):void 0;var qn=/*#__PURE__*/Object.freeze({__proto__:null,sign:Dn,verify:Rn,validateParams:async function(e,t,r){const i=new Sn(e);if(i.keyType!==ie.publicKey.ecdsa)return!1;switch(i.type){case"web":case"node":{const i=Oi(8),n=ie.hash.sha256,a=await Gr.digest(n,i);try{const s=await Dn(e,n,i,t,r,a);return await Rn(e,n,s,i,t,a)}catch(e){return!1}}default:return En(ie.publicKey.ecdsa,e,t,r)}}});qi.hash=e=>new Uint8Array(Jt().update(e).digest());var Fn=/*#__PURE__*/Object.freeze({__proto__:null,sign:async function(e,t,r,i,n,a){if(Gr.getHashByteLength(t)=0;--e)for(let t=o-1;t>=0;--t)c[1]=o*e+(t+1),u[0]=a[0]^c[0],u[1]=a[1]^c[1],u[2]=s[2*t],u[3]=s[2*t+1],u=jn(r.decrypt(Ln(u))),a=u.subarray(0,2),s[2*t]=u[2],s[2*t+1]=u[3];if(a[0]===i[0]&&a[1]===i[1])return Ln(s);throw Error("Key Data Integrity failed")}function jn(e){const{length:t}=e,r=function(e){if($.isString(e)){const{length:t}=e,r=new ArrayBuffer(t),i=new Uint8Array(r);for(let r=0;r0){const r=e[t-1];if(r>=1){const i=e.subarray(t-r),n=new Uint8Array(r).fill(r);if($.equalsUint8Array(i,n))return e.subarray(0,t-r)}}throw Error("Invalid padding")}var Vn=/*#__PURE__*/Object.freeze({__proto__:null,encode:Hn,decode:Gn});const $n=$.getWebCrypto(),Zn=$.getNodeCrypto();function Yn(e,t,r,i){return $.concatUint8Array([t.write(),new Uint8Array([e]),r.write(),$.stringToUint8Array("Anonymous Sender "),i.subarray(0,20)])}async function Xn(e,t,r,i,n=!1,a=!1){let s;if(n){for(s=0;s=0&&0===t[s];s--);t=t.subarray(0,s+1)}return(await Gr.digest(e,$.concatUint8Array([new Uint8Array([0,0,0,1]),t,i]))).subarray(0,r)}async function Qn(e,t){switch(e.type){case"curve25519":{const r=Oi(32),{secretKey:i,sharedKey:n}=await Jn(e,t,null,r);let{publicKey:a}=qi.box.keyPair.fromSecretKey(i);return a=$.concatUint8Array([new Uint8Array([64]),a]),{publicKey:a,sharedKey:n}}case"web":if(e.web&&$.getWebCrypto())try{return await async function(e,t){const r=xn(e.payloadSize,e.web.web,t);let i=$n.generateKey({name:"ECDH",namedCurve:e.web.web},!0,["deriveKey","deriveBits"]),n=$n.importKey("jwk",r,{name:"ECDH",namedCurve:e.web.web},!1,[]);[i,n]=await Promise.all([i,n]);let a=$n.deriveBits({name:"ECDH",namedCurve:e.web.web,public:n},i.privateKey,e.web.sharedSize),s=$n.exportKey("jwk",i.publicKey);[a,s]=await Promise.all([a,s]);const o=new Uint8Array(a),c=new Uint8Array(Pn(s));return{publicKey:c,sharedKey:o}}(e,t)}catch(e){$.printDebugError(e)}break;case"node":return async function(e,t){const r=Zn.createECDH(e.node.node);r.generateKeys();const i=new Uint8Array(r.computeSecret(t)),n=new Uint8Array(r.getPublicKey());return{publicKey:n,sharedKey:i}}(e,t)}return async function(e,t){const r=await cn(e.name),i=await e.genKeyPair();t=on(r,t);const n=sn(r,i.privateKey),a=i.publicKey,s=n.derive(t.getPublic()),o=r.curve.p.byteLength(),c=s.toArrayLike(Uint8Array,"be",o);return{publicKey:a,sharedKey:c}}(e,t)}async function Jn(e,t,r,i){if(i.length!==e.payloadSize){const t=new Uint8Array(e.payloadSize);t.set(i,e.payloadSize-i.length),i=t}switch(e.type){case"curve25519":{const e=i.slice().reverse();return{secretKey:e,sharedKey:qi.scalarMult(e,t.subarray(1))}}case"web":if(e.web&&$.getWebCrypto())try{return await async function(e,t,r,i){const n=Mn(e.payloadSize,e.web.web,r,i);let a=$n.importKey("jwk",n,{name:"ECDH",namedCurve:e.web.web},!0,["deriveKey","deriveBits"]);const s=xn(e.payloadSize,e.web.web,t);let o=$n.importKey("jwk",s,{name:"ECDH",namedCurve:e.web.web},!0,[]);[a,o]=await Promise.all([a,o]);let c=$n.deriveBits({name:"ECDH",namedCurve:e.web.web,public:o},a,e.web.sharedSize),u=$n.exportKey("jwk",a);[c,u]=await Promise.all([c,u]);const h=new Uint8Array(c);return{secretKey:ee(u.d),sharedKey:h}}(e,t,r,i)}catch(e){$.printDebugError(e)}break;case"node":return async function(e,t,r){const i=Zn.createECDH(e.node.node);i.setPrivateKey(r);const n=new Uint8Array(i.computeSecret(t));return{secretKey:new Uint8Array(i.getPrivateKey()),sharedKey:n}}(e,t,i)}return async function(e,t,r){const i=await cn(e.name);t=on(i,t),r=sn(i,r);const n=new Uint8Array(r.getPrivate()),a=r.derive(t.getPublic()),s=i.curve.p.byteLength(),o=a.toArrayLike(Uint8Array,"be",s);return{secretKey:n,sharedKey:o}}(e,t,i)}var ea=/*#__PURE__*/Object.freeze({__proto__:null,validateParams:async function(e,t,r){return En(ie.publicKey.ecdh,e,t,r)},encrypt:async function(e,t,r,i,n){const a=Hn(r),s=new Sn(e),{publicKey:o,sharedKey:c}=await Qn(s,i),u=Yn(ie.publicKey.ecdh,e,t,n),{keySize:h}=$r(t.cipher);return{publicKey:o,wrappedKey:On(await Xn(t.hash,c,h,u),a)}},decrypt:async function(e,t,r,i,n,a,s){const o=new Sn(e),{sharedKey:c}=await Jn(o,r,n,a),u=Yn(ie.publicKey.ecdh,e,t,s),{keySize:h}=$r(t.cipher);let d;for(let e=0;e<3;e++)try{return Gn(Nn(await Xn(t.hash,c,h,u,1===e,2===e),i))}catch(e){d=e}throw d}}),ta=/*#__PURE__*/Object.freeze({__proto__:null,Curve:Sn,ecdh:ea,ecdsa:qn,eddsa:Fn,generate:async function(e){const t=await $.getBigInteger();e=new Sn(e);const r=await e.genKeyPair(),i=new t(r.publicKey).toUint8Array(),n=new t(r.privateKey).toUint8Array("be",e.payloadSize);return{oid:e.oid,Q:i,secret:n,hash:e.hash,cipher:e.cipher}},getPreferredHashAlgo:function(e){return An[ie.write(ie.curve,e.toHex())].hash}});var ra=/*#__PURE__*/Object.freeze({__proto__:null,sign:async function(e,t,r,i,n,a){const s=await $.getBigInteger(),o=new s(1);let c,u,h,d;i=new s(i),n=new s(n),r=new s(r),a=new s(a),r=r.mod(i),a=a.mod(n);const f=new s(t.subarray(0,n.byteLength())).mod(n);for(;;){if(c=await Ni(o,n),u=r.modExp(c,i).imod(n),u.isZero())continue;const e=a.mul(u).imod(n);if(d=f.add(e).imod(n),h=c.modInv(n).imul(d).imod(n),!h.isZero())break}return{r:u.toUint8Array("be",n.byteLength()),s:h.toUint8Array("be",n.byteLength())}},verify:async function(e,t,r,i,n,a,s,o){const c=await $.getBigInteger(),u=new c(0);if(t=new c(t),r=new c(r),a=new c(a),s=new c(s),n=new c(n),o=new c(o),t.lte(u)||t.gte(s)||r.lte(u)||r.gte(s))return $.printDebug("invalid DSA Signature"),!1;const h=new c(i.subarray(0,s.byteLength())).imod(s),d=r.modInv(s);if(d.isZero())return $.printDebug("invalid DSA Signature"),!1;n=n.mod(a),o=o.mod(a);const f=h.mul(d).imod(s),l=t.mul(d).imod(s),p=n.modExp(f,a),y=o.modExp(l,a);return p.mul(y).imod(a).imod(s).equal(t)},validateParams:async function(e,t,r,i,n){const a=await $.getBigInteger();e=new a(e),t=new a(t),r=new a(r),i=new a(i);const s=new a(1);if(r.lte(s)||r.gte(e))return!1;if(!e.dec().mod(t).isZero())return!1;if(!r.modExp(t,e).isOne())return!1;const o=new a(t.bitLength()),c=new a(150);if(o.lt(c)||!await Wi(t,null,32))return!1;n=new a(n);const u=new a(2),h=await Ni(u.leftShift(o.dec()),u.leftShift(o)),d=t.mul(h).add(n);return!!i.equal(r.modExp(d,e))}}),ia={rsa:rn,elgamal:nn,elliptic:ta,dsa:ra,nacl:qi};var na=/*#__PURE__*/Object.freeze({__proto__:null,parseSignatureParams:function(e,t){let r=0;switch(e){case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaSign:return{s:$.readMPI(t.subarray(r))};case ie.publicKey.dsa:case ie.publicKey.ecdsa:{const e=$.readMPI(t.subarray(r));r+=e.length+2;return{r:e,s:$.readMPI(t.subarray(r))}}case ie.publicKey.eddsa:{let e=$.readMPI(t.subarray(r));r+=e.length+2,e=$.leftPad(e,32);let i=$.readMPI(t.subarray(r));return i=$.leftPad(i,32),{r:e,s:i}}default:throw new bn("Unknown signature algorithm.")}},verify:async function(e,t,r,i,n,a){switch(e){case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaSign:{const{n:e,e:s}=i,o=$.leftPad(r.s,e.length);return ia.rsa.verify(t,n,o,e,s,a)}case ie.publicKey.dsa:{const{g:e,p:n,q:s,y:o}=i,{r:c,s:u}=r;return ia.dsa.verify(t,c,u,a,e,n,s,o)}case ie.publicKey.ecdsa:{const{oid:e,Q:s}=i,o=new ia.elliptic.Curve(e).payloadSize,c=$.leftPad(r.r,o),u=$.leftPad(r.s,o);return ia.elliptic.ecdsa.verify(e,t,{r:c,s:u},n,s,a)}case ie.publicKey.eddsa:{const{oid:e,Q:s}=i;return ia.elliptic.eddsa.verify(e,t,r,n,s,a)}default:throw Error("Unknown signature algorithm.")}},sign:async function(e,t,r,i,n,a){if(!r||!i)throw Error("Missing key parameters");switch(e){case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaSign:{const{n:e,e:s}=r,{d:o,p:c,q:u,u:h}=i;return{s:await ia.rsa.sign(t,n,e,s,o,c,u,h,a)}}case ie.publicKey.dsa:{const{g:e,p:n,q:s}=r,{x:o}=i;return ia.dsa.sign(t,a,e,n,s,o)}case ie.publicKey.elgamal:throw Error("Signing with Elgamal is not defined in the OpenPGP standard.");case ie.publicKey.ecdsa:{const{oid:e,Q:s}=r,{d:o}=i;return ia.elliptic.ecdsa.sign(e,t,n,s,o,a)}case ie.publicKey.eddsa:{const{oid:e,Q:s}=r,{seed:o}=i;return ia.elliptic.eddsa.sign(e,t,n,s,o,a)}default:throw Error("Unknown signature algorithm.")}}});class aa{constructor(e){e=void 0===e?new Uint8Array([]):$.isString(e)?$.stringToUint8Array(e):new Uint8Array(e),this.data=e}read(e){if(e.length>=1){const t=e[0];if(e.length>=1+t)return this.data=e.subarray(1,1+t),1+this.data.length}throw Error("Invalid symmetric key")}write(){return $.concatUint8Array([new Uint8Array([this.data.length]),this.data])}}class sa{constructor(e){if(e){const{hash:t,cipher:r}=e;this.hash=t,this.cipher=r}else this.hash=null,this.cipher=null}read(e){if(e.length<4||3!==e[0]||1!==e[1])throw Error("Cannot read KDFParams");return this.hash=e[2],this.cipher=e[3],4}write(){return new Uint8Array([3,1,this.hash,this.cipher])}}function oa(e){try{e.getName()}catch(e){throw new bn("Unknown curve OID")}}var ca=/*#__PURE__*/Object.freeze({__proto__:null,publicKeyEncrypt:async function(e,t,r,i){switch(e){case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaEncryptSign:{const{n:e,e:i}=t;return{c:await ia.rsa.encrypt(r,e,i)}}case ie.publicKey.elgamal:{const{p:e,g:i,y:n}=t;return ia.elgamal.encrypt(r,e,i,n)}case ie.publicKey.ecdh:{const{oid:e,Q:n,kdfParams:a}=t,{publicKey:s,wrappedKey:o}=await ia.elliptic.ecdh.encrypt(e,a,r,n,i);return{V:s,C:new aa(o)}}default:return[]}},publicKeyDecrypt:async function(e,t,r,i,n,a){switch(e){case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaEncrypt:{const{c:e}=i,{n,e:s}=t,{d:o,p:c,q:u,u:h}=r;return ia.rsa.decrypt(e,n,s,o,c,u,h,a)}case ie.publicKey.elgamal:{const{c1:e,c2:n}=i,s=t.p,o=r.x;return ia.elgamal.decrypt(e,n,s,o,a)}case ie.publicKey.ecdh:{const{oid:e,Q:a,kdfParams:s}=t,{d:o}=r,{V:c,C:u}=i;return ia.elliptic.ecdh.decrypt(e,s,c,u.data,a,o,n)}default:throw Error("Unknown public key encryption algorithm.")}},parsePublicKeyParams:function(e,t){let r=0;switch(e){case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaSign:{const e=$.readMPI(t.subarray(r));r+=e.length+2;const i=$.readMPI(t.subarray(r));return r+=i.length+2,{read:r,publicParams:{n:e,e:i}}}case ie.publicKey.dsa:{const e=$.readMPI(t.subarray(r));r+=e.length+2;const i=$.readMPI(t.subarray(r));r+=i.length+2;const n=$.readMPI(t.subarray(r));r+=n.length+2;const a=$.readMPI(t.subarray(r));return r+=a.length+2,{read:r,publicParams:{p:e,q:i,g:n,y:a}}}case ie.publicKey.elgamal:{const e=$.readMPI(t.subarray(r));r+=e.length+2;const i=$.readMPI(t.subarray(r));r+=i.length+2;const n=$.readMPI(t.subarray(r));return r+=n.length+2,{read:r,publicParams:{p:e,g:i,y:n}}}case ie.publicKey.ecdsa:{const e=new an;r+=e.read(t),oa(e);const i=$.readMPI(t.subarray(r));return r+=i.length+2,{read:r,publicParams:{oid:e,Q:i}}}case ie.publicKey.eddsa:{const e=new an;r+=e.read(t),oa(e);let i=$.readMPI(t.subarray(r));return r+=i.length+2,i=$.leftPad(i,33),{read:r,publicParams:{oid:e,Q:i}}}case ie.publicKey.ecdh:{const e=new an;r+=e.read(t),oa(e);const i=$.readMPI(t.subarray(r));r+=i.length+2;const n=new sa;return r+=n.read(t.subarray(r)),{read:r,publicParams:{oid:e,Q:i,kdfParams:n}}}default:throw new bn("Unknown public key encryption algorithm.")}},parsePrivateKeyParams:function(e,t,r){let i=0;switch(e){case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaSign:{const e=$.readMPI(t.subarray(i));i+=e.length+2;const r=$.readMPI(t.subarray(i));i+=r.length+2;const n=$.readMPI(t.subarray(i));i+=n.length+2;const a=$.readMPI(t.subarray(i));return i+=a.length+2,{read:i,privateParams:{d:e,p:r,q:n,u:a}}}case ie.publicKey.dsa:case ie.publicKey.elgamal:{const e=$.readMPI(t.subarray(i));return i+=e.length+2,{read:i,privateParams:{x:e}}}case ie.publicKey.ecdsa:case ie.publicKey.ecdh:{const e=new Sn(r.oid);let n=$.readMPI(t.subarray(i));return i+=n.length+2,n=$.leftPad(n,e.payloadSize),{read:i,privateParams:{d:n}}}case ie.publicKey.eddsa:{const e=new Sn(r.oid);let n=$.readMPI(t.subarray(i));return i+=n.length+2,n=$.leftPad(n,e.payloadSize),{read:i,privateParams:{seed:n}}}default:throw new bn("Unknown public key encryption algorithm.")}},parseEncSessionKeyParams:function(e,t){let r=0;switch(e){case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaEncryptSign:return{c:$.readMPI(t.subarray(r))};case ie.publicKey.elgamal:{const e=$.readMPI(t.subarray(r));r+=e.length+2;return{c1:e,c2:$.readMPI(t.subarray(r))}}case ie.publicKey.ecdh:{const e=$.readMPI(t.subarray(r));r+=e.length+2;const i=new aa;return i.read(t.subarray(r)),{V:e,C:i}}default:throw new bn("Unknown public key encryption algorithm.")}},serializeParams:function(e,t){const r=Object.keys(t).map((e=>{const r=t[e];return $.isUint8Array(r)?$.uint8ArrayToMPI(r):r.write()}));return $.concatUint8Array(r)},generateParams:function(e,t,r){switch(e){case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaSign:return ia.rsa.generate(t,65537).then((({n:e,e:t,d:r,p:i,q:n,u:a})=>({privateParams:{d:r,p:i,q:n,u:a},publicParams:{n:e,e:t}})));case ie.publicKey.ecdsa:return ia.elliptic.generate(r).then((({oid:e,Q:t,secret:r})=>({privateParams:{d:r},publicParams:{oid:new an(e),Q:t}})));case ie.publicKey.eddsa:return ia.elliptic.generate(r).then((({oid:e,Q:t,secret:r})=>({privateParams:{seed:r},publicParams:{oid:new an(e),Q:t}})));case ie.publicKey.ecdh:return ia.elliptic.generate(r).then((({oid:e,Q:t,secret:r,hash:i,cipher:n})=>({privateParams:{d:r},publicParams:{oid:new an(e),Q:t,kdfParams:new sa({hash:i,cipher:n})}})));case ie.publicKey.dsa:case ie.publicKey.elgamal:throw Error("Unsupported algorithm for key generation.");default:throw Error("Unknown public key algorithm.")}},validateParams:async function(e,t,r){if(!t||!r)throw Error("Missing key parameters");switch(e){case ie.publicKey.rsaEncrypt:case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaSign:{const{n:e,e:i}=t,{d:n,p:a,q:s,u:o}=r;return ia.rsa.validateParams(e,i,n,a,s,o)}case ie.publicKey.dsa:{const{p:e,q:i,g:n,y:a}=t,{x:s}=r;return ia.dsa.validateParams(e,i,n,a,s)}case ie.publicKey.elgamal:{const{p:e,g:i,y:n}=t,{x:a}=r;return ia.elgamal.validateParams(e,i,n,a)}case ie.publicKey.ecdsa:case ie.publicKey.ecdh:{const i=ia.elliptic[ie.read(ie.publicKey,e)],{oid:n,Q:a}=t,{d:s}=r;return i.validateParams(n,a,s)}case ie.publicKey.eddsa:{const{oid:e,Q:i}=t,{seed:n}=r;return ia.elliptic.eddsa.validateParams(e,i,n)}default:throw Error("Unknown public key algorithm.")}},getPrefixRandom:async function(e){const{blockSize:t}=$r(e),r=await Oi(t),i=new Uint8Array([r[r.length-2],r[r.length-1]]);return $.concat([r,i])},generateSessionKey:function(e){const{keySize:t}=$r(e);return Oi(t)},getAEADMode:function(e){const t=ie.read(ie.aead,e);return zi[t]},getCipher:$r});const ua={cipher:He,hash:Gr,mode:zi,publicKey:ia,signature:na,random:ji,pkcs1:Yi,pkcs5:Vn,aesKW:Wn};Object.assign(ua,ca);var ha="undefined"!=typeof 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t}();function Ns(e,t,r,i){const n=Os,a=i+r;e^=-1;for(let r=i;r>>8^n[255&(e^t[r])];return-1^e}var js={2:"need dictionary",1:"stream end",0:"","-1":"file error","-2":"stream error","-3":"data error","-4":"insufficient memory","-5":"buffer error","-6":"incompatible version"};const Ls=9,Ws=3,Hs=258,Gs=Hs+Ws+1,Vs=32,$s=42,Zs=69,Ys=73,Xs=91,Qs=103,Js=113,eo=666,to=1,ro=2,io=3,no=4,ao=3;function so(e,t){return e.msg=js[t],t}function oo(e){return(e<<1)-(e>4?9:0)}function co(e){let t=e.length;for(;--t>=0;)e[t]=0}function uo(e){const t=e.state;let r=t.pending;r>e.avail_out&&(r=e.avail_out),0!==r&&(ga(e.output,t.pending_buf,t.pending_out,r,e.next_out),e.next_out+=r,t.pending_out+=r,e.total_out+=r,e.avail_out-=r,t.pending-=r,0===t.pending&&(t.pending_out=0))}function ho(e,t){zs(e,e.block_start>=0?e.block_start:-1,e.strstart-e.block_start,t),e.block_start=e.strstart,uo(e.strm)}function fo(e,t){e.pending_buf[e.pending++]=t}function lo(e,t){e.pending_buf[e.pending++]=t>>>8&255,e.pending_buf[e.pending++]=255&t}function po(e,t,r,i){let n=e.avail_in;return n>i&&(n=i),0===n?0:(e.avail_in-=n,ga(t,e.input,e.next_in,n,r),1===e.state.wrap?e.adler=Fs(e.adler,t,n,r):2===e.state.wrap&&(e.adler=Ns(e.adler,t,n,r)),e.next_in+=n,e.total_in+=n,n)}function yo(e,t){let r,i,n=e.max_chain_length,a=e.strstart,s=e.prev_length,o=e.nice_match;const c=e.strstart>e.w_size-Gs?e.strstart-(e.w_size-Gs):0,u=e.window,h=e.w_mask,d=e.prev,f=e.strstart+Hs;let l=u[a+s-1],p=u[a+s];e.prev_length>=e.good_match&&(n>>=2),o>e.lookahead&&(o=e.lookahead);do{if(r=t,u[r+s]===p&&u[r+s-1]===l&&u[r]===u[a]&&u[++r]===u[a+1]){a+=2,r++;do{}while(u[++a]===u[++r]&&u[++a]===u[++r]&&u[++a]===u[++r]&&u[++a]===u[++r]&&u[++a]===u[++r]&&u[++a]===u[++r]&&u[++a]===u[++r]&&u[++a]===u[++r]&&as){if(e.match_start=t,s=i,i>=o)break;l=u[a+s-1],p=u[a+s]}}}while((t=d[t&h])>c&&0!=--n);return s<=e.lookahead?s:e.lookahead}function bo(e){const t=e.w_size;let r,i,n,a,s;do{if(a=e.window_size-e.lookahead-e.strstart,e.strstart>=t+(t-Gs)){ga(e.window,e.window,t,t,0),e.match_start-=t,e.strstart-=t,e.block_start-=t,i=e.hash_size,r=i;do{n=e.head[--r],e.head[r]=n>=t?n-t:0}while(--i);i=t,r=i;do{n=e.prev[--r],e.prev[r]=n>=t?n-t:0}while(--i);a+=t}if(0===e.strm.avail_in)break;if(i=po(e.strm,e.window,e.strstart+e.lookahead,a),e.lookahead+=i,e.lookahead+e.insert>=Ws)for(s=e.strstart-e.insert,e.ins_h=e.window[s],e.ins_h=(e.ins_h<=Ws&&(e.ins_h=(e.ins_h<=Ws)if(i=qs(e,e.strstart-e.match_start,e.match_length-Ws),e.lookahead-=e.match_length,e.match_length<=e.max_lazy_match&&e.lookahead>=Ws){e.match_length--;do{e.strstart++,e.ins_h=(e.ins_h<=Ws&&(e.ins_h=(e.ins_h<4096)&&(e.match_length=Ws-1)),e.prev_length>=Ws&&e.match_length<=e.prev_length){n=e.strstart+e.lookahead-Ws,i=qs(e,e.strstart-1-e.prev_match,e.prev_length-Ws),e.lookahead-=e.prev_length-1,e.prev_length-=2;do{++e.strstart<=n&&(e.ins_h=(e.ins_h<e.pending_buf_size-5&&(r=e.pending_buf_size-5);;){if(e.lookahead<=1){if(bo(e),0===e.lookahead&&t===wa)return to;if(0===e.lookahead)break}e.strstart+=e.lookahead,e.lookahead=0;const i=e.block_start+r;if((0===e.strstart||e.strstart>=i)&&(e.lookahead=e.strstart-i,e.strstart=i,ho(e,!1),0===e.strm.avail_out))return to;if(e.strstart-e.block_start>=e.w_size-Gs&&(ho(e,!1),0===e.strm.avail_out))return to}return e.insert=0,t===Aa?(ho(e,!0),0===e.strm.avail_out?io:no):(e.strstart>e.block_start&&(ho(e,!1),e.strm.avail_out),to)})),new wo(4,4,8,4,mo),new wo(4,5,16,8,mo),new wo(4,6,32,32,mo),new wo(4,4,16,16,go),new wo(8,16,32,32,go),new wo(8,16,128,128,go),new wo(8,32,128,256,go),new wo(32,128,258,1024,go),new wo(32,258,258,4096,go)];class _o{constructor(){this.strm=null,this.status=0,this.pending_buf=null,this.pending_buf_size=0,this.pending_out=0,this.pending=0,this.wrap=0,this.gzhead=null,this.gzindex=0,this.method=Oa,this.last_flush=-1,this.w_size=0,this.w_bits=0,this.w_mask=0,this.window=null,this.window_size=0,this.prev=null,this.head=null,this.ins_h=0,this.hash_size=0,this.hash_bits=0,this.hash_mask=0,this.hash_shift=0,this.block_start=0,this.match_length=0,this.prev_match=0,this.match_available=0,this.strstart=0,this.match_start=0,this.lookahead=0,this.prev_length=0,this.max_chain_length=0,this.max_lazy_match=0,this.level=0,this.strategy=0,this.good_match=0,this.nice_match=0,this.dyn_ltree=new ya(1146),this.dyn_dtree=new ya(122),this.bl_tree=new ya(78),co(this.dyn_ltree),co(this.dyn_dtree),co(this.bl_tree),this.l_desc=null,this.d_desc=null,this.bl_desc=null,this.bl_count=new ya(16),this.heap=new ya(573),co(this.heap),this.heap_len=0,this.heap_max=0,this.depth=new ya(573),co(this.depth),this.l_buf=0,this.lit_bufsize=0,this.last_lit=0,this.d_buf=0,this.opt_len=0,this.static_len=0,this.matches=0,this.insert=0,this.bi_buf=0,this.bi_valid=0}}function ko(e){const t=function(e){let t;return e&&e.state?(e.total_in=e.total_out=0,e.data_type=Fa,t=e.state,t.pending=0,t.pending_out=0,t.wrap<0&&(t.wrap=-t.wrap),t.status=t.wrap?$s:Js,e.adler=2===t.wrap?0:1,t.last_flush=wa,Is(t),Pa):so(e,Ca)}(e);return t===Pa&&function(e){e.window_size=2*e.w_size,co(e.head),e.max_lazy_match=vo[e.level].max_lazy,e.good_match=vo[e.level].good_length,e.nice_match=vo[e.level].nice_length,e.max_chain_length=vo[e.level].max_chain,e.strstart=0,e.block_start=0,e.lookahead=0,e.insert=0,e.match_length=e.prev_length=Ws-1,e.match_available=0,e.ins_h=0}(e.state),t}function Ao(e,t){let r,i,n,a;if(!e||!e.state||t>Sa||t<0)return e?so(e,Ca):Ca;if(i=e.state,!e.output||!e.input&&0!==e.avail_in||i.status===eo&&t!==Aa)return so(e,0===e.avail_out?Da:Ca);if(i.strm=e,r=i.last_flush,i.last_flush=t,i.status===$s)if(2===i.wrap)e.adler=0,fo(i,31),fo(i,139),fo(i,8),i.gzhead?(fo(i,(i.gzhead.text?1:0)+(i.gzhead.hcrc?2:0)+(i.gzhead.extra?4:0)+(i.gzhead.name?8:0)+(i.gzhead.comment?16:0)),fo(i,255&i.gzhead.time),fo(i,i.gzhead.time>>8&255),fo(i,i.gzhead.time>>16&255),fo(i,i.gzhead.time>>24&255),fo(i,9===i.level?2:i.strategy>=Ia||i.level<2?4:0),fo(i,255&i.gzhead.os),i.gzhead.extra&&i.gzhead.extra.length&&(fo(i,255&i.gzhead.extra.length),fo(i,i.gzhead.extra.length>>8&255)),i.gzhead.hcrc&&(e.adler=Ns(e.adler,i.pending_buf,i.pending,0)),i.gzindex=0,i.status=Zs):(fo(i,0),fo(i,0),fo(i,0),fo(i,0),fo(i,0),fo(i,9===i.level?2:i.strategy>=Ia||i.level<2?4:0),fo(i,ao),i.status=Js);else{let t=Oa+(i.w_bits-8<<4)<<8,r=-1;r=i.strategy>=Ia||i.level<2?0:i.level<6?1:6===i.level?2:3,t|=r<<6,0!==i.strstart&&(t|=Vs),t+=31-t%31,i.status=Js,lo(i,t),0!==i.strstart&&(lo(i,e.adler>>>16),lo(i,65535&e.adler)),e.adler=1}if(i.status===Zs)if(i.gzhead.extra){for(n=i.pending;i.gzindex<(65535&i.gzhead.extra.length)&&(i.pending!==i.pending_buf_size||(i.gzhead.hcrc&&i.pending>n&&(e.adler=Ns(e.adler,i.pending_buf,i.pending-n,n)),uo(e),n=i.pending,i.pending!==i.pending_buf_size));)fo(i,255&i.gzhead.extra[i.gzindex]),i.gzindex++;i.gzhead.hcrc&&i.pending>n&&(e.adler=Ns(e.adler,i.pending_buf,i.pending-n,n)),i.gzindex===i.gzhead.extra.length&&(i.gzindex=0,i.status=Ys)}else i.status=Ys;if(i.status===Ys)if(i.gzhead.name){n=i.pending;do{if(i.pending===i.pending_buf_size&&(i.gzhead.hcrc&&i.pending>n&&(e.adler=Ns(e.adler,i.pending_buf,i.pending-n,n)),uo(e),n=i.pending,i.pending===i.pending_buf_size)){a=1;break}a=i.gzindexn&&(e.adler=Ns(e.adler,i.pending_buf,i.pending-n,n)),0===a&&(i.gzindex=0,i.status=Xs)}else i.status=Xs;if(i.status===Xs)if(i.gzhead.comment){n=i.pending;do{if(i.pending===i.pending_buf_size&&(i.gzhead.hcrc&&i.pending>n&&(e.adler=Ns(e.adler,i.pending_buf,i.pending-n,n)),uo(e),n=i.pending,i.pending===i.pending_buf_size)){a=1;break}a=i.gzindexn&&(e.adler=Ns(e.adler,i.pending_buf,i.pending-n,n)),0===a&&(i.status=Qs)}else i.status=Qs;if(i.status===Qs&&(i.gzhead.hcrc?(i.pending+2>i.pending_buf_size&&uo(e),i.pending+2<=i.pending_buf_size&&(fo(i,255&e.adler),fo(i,e.adler>>8&255),e.adler=0,i.status=Js)):i.status=Js),0!==i.pending){if(uo(e),0===e.avail_out)return i.last_flush=-1,Pa}else if(0===e.avail_in&&oo(t)<=oo(r)&&t!==Aa)return so(e,Da);if(i.status===eo&&0!==e.avail_in)return so(e,Da);if(0!==e.avail_in||0!==i.lookahead||t!==wa&&i.status!==eo){var s=i.strategy===Ia?function(e,t){let r;for(;;){if(0===e.lookahead&&(bo(e),0===e.lookahead)){if(t===wa)return to;break}if(e.match_length=0,r=qs(e,0,e.window[e.strstart]),e.lookahead--,e.strstart++,r&&(ho(e,!1),0===e.strm.avail_out))return to}return e.insert=0,t===Aa?(ho(e,!0),0===e.strm.avail_out?io:no):e.last_lit&&(ho(e,!1),0===e.strm.avail_out)?to:ro}(i,t):i.strategy===Ba?function(e,t){let r,i,n,a;const s=e.window;for(;;){if(e.lookahead<=Hs){if(bo(e),e.lookahead<=Hs&&t===wa)return to;if(0===e.lookahead)break}if(e.match_length=0,e.lookahead>=Ws&&e.strstart>0&&(n=e.strstart-1,i=s[n],i===s[++n]&&i===s[++n]&&i===s[++n])){a=e.strstart+Hs;do{}while(i===s[++n]&&i===s[++n]&&i===s[++n]&&i===s[++n]&&i===s[++n]&&i===s[++n]&&i===s[++n]&&i===s[++n]&&ne.lookahead&&(e.match_length=e.lookahead)}if(e.match_length>=Ws?(r=qs(e,1,e.match_length-Ws),e.lookahead-=e.match_length,e.strstart+=e.match_length,e.match_length=0):(r=qs(e,0,e.window[e.strstart]),e.lookahead--,e.strstart++),r&&(ho(e,!1),0===e.strm.avail_out))return to}return e.insert=0,t===Aa?(ho(e,!0),0===e.strm.avail_out?io:no):e.last_lit&&(ho(e,!1),0===e.strm.avail_out)?to:ro}(i,t):vo[i.level].func(i,t);if(s!==io&&s!==no||(i.status=eo),s===to||s===io)return 0===e.avail_out&&(i.last_flush=-1),Pa;if(s===ro&&(t===va?Ts(i):t!==Sa&&(Bs(i,0,0,!1),t===ka&&(co(i.head),0===i.lookahead&&(i.strstart=0,i.block_start=0,i.insert=0))),uo(e),0===e.avail_out))return i.last_flush=-1,Pa}return t!==Aa?Pa:i.wrap<=0?xa:(2===i.wrap?(fo(i,255&e.adler),fo(i,e.adler>>8&255),fo(i,e.adler>>16&255),fo(i,e.adler>>24&255),fo(i,255&e.total_in),fo(i,e.total_in>>8&255),fo(i,e.total_in>>16&255),fo(i,e.total_in>>24&255)):(lo(i,e.adler>>>16),lo(i,65535&e.adler)),uo(e),i.wrap>0&&(i.wrap=-i.wrap),0!==i.pending?Pa:xa)}try{String.fromCharCode.call(null,0)}catch(e){}try{String.fromCharCode.apply(null,new Uint8Array(1))}catch(e){}const So=new pa(256);for(let e=0;e<256;e++)So[e]=e>=252?6:e>=248?5:e>=240?4:e>=224?3:e>=192?2:1;function Eo(e){let t,r,i,n,a=0;const s=e.length;for(i=0;i>>6,o[n++]=128|63&t):t<65536?(o[n++]=224|t>>>12,o[n++]=128|t>>>6&63,o[n++]=128|63&t):(o[n++]=240|t>>>18,o[n++]=128|t>>>12&63,o[n++]=128|t>>>6&63,o[n++]=128|63&t);return o}So[254]=So[254]=1;class Po{constructor(){this.input=null,this.next_in=0,this.avail_in=0,this.total_in=0,this.output=null,this.next_out=0,this.avail_out=0,this.total_out=0,this.msg="",this.state=null,this.data_type=2,this.adler=0}}class xo{constructor(e){this.options={level:Ra,method:Oa,chunkSize:16384,windowBits:15,memLevel:8,strategy:0,...e||{}};const t=this.options;t.raw&&t.windowBits>0?t.windowBits=-t.windowBits:t.gzip&&t.windowBits>0&&t.windowBits<16&&(t.windowBits+=16),this.err=0,this.msg="",this.ended=!1,this.chunks=[],this.strm=new Po,this.strm.avail_out=0;var r,i,n=function(e,t,r,i,n,a){if(!e)return Ca;let s=1;if(t===Ra&&(t=6),i<0?(s=0,i=-i):i>15&&(s=2,i-=16),n<1||n>Ls||r!==Oa||i<8||i>15||t<0||t>9||a<0||a>Ta)return so(e,Ca);8===i&&(i=9);const o=new _o;return e.state=o,o.strm=e,o.wrap=s,o.gzhead=null,o.w_bits=i,o.w_size=1<=r.w_size&&(0===a&&(co(r.head),r.strstart=0,r.block_start=0,r.insert=0),u=new pa(r.w_size),ga(u,t,h-r.w_size,r.w_size,0),t=u,h=r.w_size),s=e.avail_in,o=e.next_in,c=e.input,e.avail_in=h,e.next_in=0,e.input=t,bo(r);r.lookahead>=Ws;){i=r.strstart,n=r.lookahead-(Ws-1);do{r.ins_h=(r.ins_h<0||0===r.avail_out)&&n!==xa);return a===Aa?(n=function(e){let t;return e&&e.state?(t=e.state.status,t!==$s&&t!==Zs&&t!==Ys&&t!==Xs&&t!==Qs&&t!==Js&&t!==eo?so(e,Ca):(e.state=null,t===Js?so(e,Ka):Pa)):Ca}(this.strm),this.onEnd(n),this.ended=!0,n===Pa):a!==_a||(this.onEnd(Pa),r.avail_out=0,!0)}onData(e){this.chunks.push(e)}onEnd(e){e===Pa&&(this.result=ma(this.chunks)),this.chunks=[],this.err=e,this.msg=this.strm.msg}}const Mo=30,Co=12;function Ko(e,t){let r,i,n,a,s,o,c,u,h,d;const f=e.state;r=e.next_in;const l=e.input,p=r+(e.avail_in-5);i=e.next_out;const y=e.output,b=i-(t-e.avail_out),m=i+(e.avail_out-257),g=f.dmax,w=f.wsize,v=f.whave,_=f.wnext,k=f.window;n=f.hold,a=f.bits;const A=f.lencode,S=f.distcode,E=(1<>>24,n>>>=o,a-=o,o=s>>>16&255,0===o)y[i++]=65535&s;else{if(!(16&o)){if(0==(64&o)){s=A[(65535&s)+(n&(1<>>=o,a-=o),a<15&&(n+=l[r++]<>>24,n>>>=o,a-=o,o=s>>>16&255,!(16&o)){if(0==(64&o)){s=S[(65535&s)+(n&(1<g){e.msg="invalid distance too far back",f.mode=Mo;break e}if(n>>>=o,a-=o,o=i-b,u>o){if(o=u-o,o>v&&f.sane){e.msg="invalid distance too far 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jo=0,Lo=1,Wo=2,Ho=1,Go=2,Vo=3,$o=4,Zo=5,Yo=6,Xo=7,Qo=8,Jo=9,ec=10,tc=11,rc=12,ic=13,nc=14,ac=15,sc=16,oc=17,cc=18,uc=19,hc=20,dc=21,fc=22,lc=23,pc=24,yc=25,bc=26,mc=27,gc=28,wc=29,vc=30,_c=852,kc=592;function Ac(e){return(e>>>24&255)+(e>>>8&65280)+((65280&e)<<8)+((255&e)<<24)}class Sc{constructor(){this.mode=0,this.last=!1,this.wrap=0,this.havedict=!1,this.flags=0,this.dmax=0,this.check=0,this.total=0,this.head=null,this.wbits=0,this.wsize=0,this.whave=0,this.wnext=0,this.window=null,this.hold=0,this.bits=0,this.length=0,this.offset=0,this.extra=0,this.lencode=null,this.distcode=null,this.lenbits=0,this.distbits=0,this.ncode=0,this.nlen=0,this.ndist=0,this.have=0,this.next=null,this.lens=new ya(320),this.work=new ya(288),this.lendyn=null,this.distdyn=null,this.sane=0,this.back=0,this.was=0}}function Ec(e){let t;return e&&e.state?(t=e.state,t.wsize=0,t.whave=0,t.wnext=0,function(e){let t;return e&&e.state?(t=e.state,e.total_in=e.total_out=t.total=0,e.msg="",t.wrap&&(e.adler=1&t.wrap),t.mode=Ho,t.last=0,t.havedict=0,t.dmax=32768,t.head=null,t.hold=0,t.bits=0,t.lencode=t.lendyn=new ba(_c),t.distcode=t.distdyn=new ba(kc),t.sane=1,t.back=-1,Pa):Ca}(e)):Ca}function Pc(e,t){let r,i;return e?(i=new Sc,e.state=i,i.window=null,r=function(e,t){let r,i;return e&&e.state?(i=e.state,t<0?(r=0,t=-t):(r=1+(t>>4),t<48&&(t&=15)),t&&(t<8||t>15)?Ca:(null!==i.window&&i.wbits!==t&&(i.window=null),i.wrap=r,i.wbits=t,Ec(e))):Ca}(e,t),r!==Pa&&(e.state=null),r):Ca}let xc,Mc,Cc=!0;function Kc(e){if(Cc){let t;for(xc=new ba(512),Mc=new ba(32),t=0;t<144;)e.lens[t++]=8;for(;t<256;)e.lens[t++]=9;for(;t<280;)e.lens[t++]=7;for(;t<288;)e.lens[t++]=8;for(No(Lo,e.lens,0,288,xc,0,e.work,{bits:9}),t=0;t<32;)e.lens[t++]=5;No(Wo,e.lens,0,32,Mc,0,e.work,{bits:5}),Cc=!1}e.lencode=xc,e.lenbits=9,e.distcode=Mc,e.distbits=5}function Dc(e,t,r,i){let n;const a=e.state;return null===a.window&&(a.wsize=1<=a.wsize?(ga(a.window,t,r-a.wsize,a.wsize,0),a.wnext=0,a.whave=a.wsize):(n=a.wsize-a.wnext,n>i&&(n=i),ga(a.window,t,r-i,n,a.wnext),(i-=n)?(ga(a.window,t,r-i,i,0),a.wnext=i,a.whave=a.wsize):(a.wnext+=n,a.wnext===a.wsize&&(a.wnext=0),a.whave>>8&255,r.check=Ns(r.check,x,2,0),u=0,h=0,r.mode=Go;break}if(r.flags=0,r.head&&(r.head.done=!1),!(1&r.wrap)||(((255&u)<<8)+(u>>8))%31){e.msg="incorrect header check",r.mode=vc;break}if((15&u)!==Oa){e.msg="unknown compression method",r.mode=vc;break}if(u>>>=4,h-=4,k=8+(15&u),0===r.wbits)r.wbits=k;else if(k>r.wbits){e.msg="invalid window size",r.mode=vc;break}r.dmax=1<>8&1),512&r.flags&&(x[0]=255&u,x[1]=u>>>8&255,r.check=Ns(r.check,x,2,0)),u=0,h=0,r.mode=Vo;case Vo:for(;h<32;){if(0===o)break e;o--,u+=i[a++]<>>8&255,x[2]=u>>>16&255,x[3]=u>>>24&255,r.check=Ns(r.check,x,4,0)),u=0,h=0,r.mode=$o;case $o:for(;h<16;){if(0===o)break e;o--,u+=i[a++]<>8),512&r.flags&&(x[0]=255&u,x[1]=u>>>8&255,r.check=Ns(r.check,x,2,0)),u=0,h=0,r.mode=Zo;case Zo:if(1024&r.flags){for(;h<16;){if(0===o)break e;o--,u+=i[a++]<>>8&255,r.check=Ns(r.check,x,2,0)),u=0,h=0}else r.head&&(r.head.extra=null);r.mode=Yo;case Yo:if(1024&r.flags&&(l=r.length,l>o&&(l=o),l&&(r.head&&(k=r.head.extra_len-r.length,r.head.extra||(r.head.extra=Array(r.head.extra_len)),ga(r.head.extra,i,a,l,k)),512&r.flags&&(r.check=Ns(r.check,i,l,a)),o-=l,a+=l,r.length-=l),r.length))break e;r.length=0,r.mode=Xo;case Xo:if(2048&r.flags){if(0===o)break e;l=0;do{k=i[a+l++],r.head&&k&&r.length<65536&&(r.head.name+=String.fromCharCode(k))}while(k&&l>9&1,r.head.done=!0),e.adler=r.check=0,r.mode=rc;break;case ec:for(;h<32;){if(0===o)break e;o--,u+=i[a++]<>>=7&h,h-=7&h,r.mode=mc;break}for(;h<3;){if(0===o)break e;o--,u+=i[a++]<>>=1,h-=1,3&u){case 0:r.mode=nc;break;case 1:if(Kc(r),r.mode=hc,t===Ea){u>>>=2,h-=2;break e}break;case 2:r.mode=oc;break;case 3:e.msg="invalid block type",r.mode=vc}u>>>=2,h-=2;break;case nc:for(u>>>=7&h,h-=7&h;h<32;){if(0===o)break e;o--,u+=i[a++]<>>16^65535)){e.msg="invalid stored block lengths",r.mode=vc;break}if(r.length=65535&u,u=0,h=0,r.mode=ac,t===Ea)break e;case ac:r.mode=sc;case sc:if(l=r.length,l){if(l>o&&(l=o),l>c&&(l=c),0===l)break e;ga(n,i,a,l,s),o-=l,a+=l,c-=l,s+=l,r.length-=l;break}r.mode=rc;break;case oc:for(;h<14;){if(0===o)break e;o--,u+=i[a++]<>>=5,h-=5,r.ndist=1+(31&u),u>>>=5,h-=5,r.ncode=4+(15&u),u>>>=4,h-=4,r.nlen>286||r.ndist>30){e.msg="too many length or distance symbols",r.mode=vc;break}r.have=0,r.mode=cc;case cc:for(;r.have>>=3,h-=3}for(;r.have<19;)r.lens[M[r.have++]]=0;if(r.lencode=r.lendyn,r.lenbits=7,S={bits:r.lenbits},A=No(jo,r.lens,0,19,r.lencode,0,r.work,S),r.lenbits=S.bits,A){e.msg="invalid code lengths set",r.mode=vc;break}r.have=0,r.mode=uc;case uc:for(;r.have>>24,m=P>>>16&255,g=65535&P,!(b<=h);){if(0===o)break e;o--,u+=i[a++]<>>=b,h-=b,r.lens[r.have++]=g;else{if(16===g){for(E=b+2;h>>=b,h-=b,0===r.have){e.msg="invalid bit length repeat",r.mode=vc;break}k=r.lens[r.have-1],l=3+(3&u),u>>>=2,h-=2}else if(17===g){for(E=b+3;h>>=b,h-=b,k=0,l=3+(7&u),u>>>=3,h-=3}else{for(E=b+7;h>>=b,h-=b,k=0,l=11+(127&u),u>>>=7,h-=7}if(r.have+l>r.nlen+r.ndist){e.msg="invalid bit length repeat",r.mode=vc;break}for(;l--;)r.lens[r.have++]=k}}if(r.mode===vc)break;if(0===r.lens[256]){e.msg="invalid code -- missing end-of-block",r.mode=vc;break}if(r.lenbits=9,S={bits:r.lenbits},A=No(Lo,r.lens,0,r.nlen,r.lencode,0,r.work,S),r.lenbits=S.bits,A){e.msg="invalid literal/lengths set",r.mode=vc;break}if(r.distbits=6,r.distcode=r.distdyn,S={bits:r.distbits},A=No(Wo,r.lens,r.nlen,r.ndist,r.distcode,0,r.work,S),r.distbits=S.bits,A){e.msg="invalid distances set",r.mode=vc;break}if(r.mode=hc,t===Ea)break e;case hc:r.mode=dc;case dc:if(o>=6&&c>=258){e.next_out=s,e.avail_out=c,e.next_in=a,e.avail_in=o,r.hold=u,r.bits=h,Ko(e,f),s=e.next_out,n=e.output,c=e.avail_out,a=e.next_in,i=e.input,o=e.avail_in,u=r.hold,h=r.bits,r.mode===rc&&(r.back=-1);break}for(r.back=0;P=r.lencode[u&(1<>>24,m=P>>>16&255,g=65535&P,!(b<=h);){if(0===o)break e;o--,u+=i[a++]<>w)],b=P>>>24,m=P>>>16&255,g=65535&P,!(w+b<=h);){if(0===o)break e;o--,u+=i[a++]<>>=w,h-=w,r.back+=w}if(u>>>=b,h-=b,r.back+=b,r.length=g,0===m){r.mode=bc;break}if(32&m){r.back=-1,r.mode=rc;break}if(64&m){e.msg="invalid literal/length code",r.mode=vc;break}r.extra=15&m,r.mode=fc;case fc:if(r.extra){for(E=r.extra;h>>=r.extra,h-=r.extra,r.back+=r.extra}r.was=r.length,r.mode=lc;case lc:for(;P=r.distcode[u&(1<>>24,m=P>>>16&255,g=65535&P,!(b<=h);){if(0===o)break e;o--,u+=i[a++]<>w)],b=P>>>24,m=P>>>16&255,g=65535&P,!(w+b<=h);){if(0===o)break e;o--,u+=i[a++]<>>=w,h-=w,r.back+=w}if(u>>>=b,h-=b,r.back+=b,64&m){e.msg="invalid distance code",r.mode=vc;break}r.offset=g,r.extra=15&m,r.mode=pc;case pc:if(r.extra){for(E=r.extra;h>>=r.extra,h-=r.extra,r.back+=r.extra}if(r.offset>r.dmax){e.msg="invalid distance too far back",r.mode=vc;break}r.mode=yc;case yc:if(0===c)break e;if(l=f-c,r.offset>l){if(l=r.offset-l,l>r.whave&&r.sane){e.msg="invalid distance too far back",r.mode=vc;break}l>r.wnext?(l-=r.wnext,p=r.wsize-l):p=r.wnext-l,l>r.length&&(l=r.length),y=r.window}else y=n,p=s-r.offset,l=r.length;l>c&&(l=c),c-=l,r.length-=l;do{n[s++]=y[p++]}while(--l);0===r.length&&(r.mode=dc);break;case bc:if(0===c)break e;n[s++]=r.length,c--,r.mode=dc;break;case mc:if(r.wrap){for(;h<32;){if(0===o)break e;o--,u|=i[a++]<=0&&t.windowBits<16&&(t.windowBits=-t.windowBits,0===t.windowBits&&(t.windowBits=-15)),!(t.windowBits>=0&&t.windowBits<16)||e&&e.windowBits||(t.windowBits+=32),t.windowBits>15&&t.windowBits<48&&0==(15&t.windowBits)&&(t.windowBits|=15),this.err=0,this.msg="",this.ended=!1,this.chunks=[],this.strm=new Po,this.strm.avail_out=0;let r=Pc(this.strm,t.windowBits);if(r!==Pa)throw Error(js[r]);if(this.header=new Ic,function(e,t){let r;e&&e.state&&(r=e.state,0==(2&r.wrap)||(r.head=t,t.done=!1))}(this.strm,this.header),t.dictionary&&("string"==typeof t.dictionary?t.dictionary=Eo(t.dictionary):t.dictionary instanceof ArrayBuffer&&(t.dictionary=new Uint8Array(t.dictionary)),t.raw&&(r=Uc(this.strm,t.dictionary),r!==Pa)))throw Error(js[r])}push(e,t){const{strm:r,options:{chunkSize:i,dictionary:n}}=this;let a,s,o=!1;if(this.ended)return!1;s=t===~~t?t:!0===t?Aa:wa,"string"==typeof e?r.input=function(e){const t=new pa(e.length);for(let r=0,i=t.length;r0||0===r.avail_out)&&a!==xa);return a===xa&&(s=Aa),s===Aa?(a=function(e){if(!e||!e.state)return Ca;const t=e.state;return t.window&&(t.window=null),e.state=null,Pa}(this.strm),this.onEnd(a),this.ended=!0,a===Pa):s!==_a||(this.onEnd(Pa),r.avail_out=0,!0)}onData(e){this.chunks.push(e)}onEnd(e){e===Pa&&(this.result=ma(this.chunks)),this.chunks=[],this.err=e,this.msg=this.strm.msg}}var Tc=[0,1,3,7,15,31,63,127,255],zc=function(e){this.stream=e,this.bitOffset=0,this.curByte=0,this.hasByte=!1};zc.prototype._ensureByte=function(){this.hasByte||(this.curByte=this.stream.readByte(),this.hasByte=!0)},zc.prototype.read=function(e){for(var t=0;e>0;){this._ensureByte();var r=8-this.bitOffset;if(e>=r)t<<=r,t|=Tc[r]&this.curByte,this.hasByte=!1,this.bitOffset=0,e-=r;else{t<<=e;var i=r-e;t|=(this.curByte&Tc[e]<>i,this.bitOffset+=e,e=0}}return t},zc.prototype.seek=function(e){var t=e%8,r=(e-t)/8;this.bitOffset=t,this.stream.seek(r),this.hasByte=!1},zc.prototype.pi=function(){var e,t=new Uint8Array(6);for(e=0;e("00"+e.toString(16)).slice(-2))).join("")}(t)};var qc=zc,Fc=function(){};Fc.prototype.readByte=function(){throw Error("abstract method readByte() not implemented")},Fc.prototype.read=function(e,t,r){for(var i=0;i>>0},this.updateCRC=function(t){e=e<<8^Oc[255&(e>>>24^t)]},this.updateCRCRun=function(t,r){for(;r-- >0;)e=e<<8^Oc[255&(e>>>24^t)]}}),Lc=function(e,t){var r,i=e[t];for(r=t;r>0;r--)e[r]=e[r-1];return e[0]=i,i},Wc={OK:0,LAST_BLOCK:-1,NOT_BZIP_DATA:-2,UNEXPECTED_INPUT_EOF:-3,UNEXPECTED_OUTPUT_EOF:-4,DATA_ERROR:-5,OUT_OF_MEMORY:-6,OBSOLETE_INPUT:-7,END_OF_BLOCK:-8},Hc={};Hc[Wc.LAST_BLOCK]="Bad file checksum",Hc[Wc.NOT_BZIP_DATA]="Not bzip data",Hc[Wc.UNEXPECTED_INPUT_EOF]="Unexpected input EOF",Hc[Wc.UNEXPECTED_OUTPUT_EOF]="Unexpected output EOF",Hc[Wc.DATA_ERROR]="Data error",Hc[Wc.OUT_OF_MEMORY]="Out of memory",Hc[Wc.OBSOLETE_INPUT]="Obsolete (pre 0.9.5) bzip format not supported.";var Gc=function(e,t){var r=Hc[e]||"unknown error";t&&(r+=": "+t);var i=new TypeError(r);throw i.errorCode=e,i},Vc=function(e,t){this.writePos=this.writeCurrent=this.writeCount=0,this._start_bunzip(e,t)};Vc.prototype._init_block=function(){return this._get_next_block()?(this.blockCRC=new jc,!0):(this.writeCount=-1,!1)},Vc.prototype._start_bunzip=function(e,t){var r=new Uint8Array(4);4===e.read(r,0,4)&&"BZh"===String.fromCharCode(r[0],r[1],r[2])||Gc(Wc.NOT_BZIP_DATA,"bad magic");var i=r[3]-48;(i<1||i>9)&&Gc(Wc.NOT_BZIP_DATA,"level out of range"),this.reader=new qc(e),this.dbufSize=1e5*i,this.nextoutput=0,this.outputStream=t,this.streamCRC=0},Vc.prototype._get_next_block=function(){var e,t,r,i=this.reader,n=i.pi();if("177245385090"===n)return!1;"314159265359"!==n&&Gc(Wc.NOT_BZIP_DATA),this.targetBlockCRC=i.read(32)>>>0,this.streamCRC=(this.targetBlockCRC^(this.streamCRC<<1|this.streamCRC>>>31))>>>0,i.read(1)&&Gc(Wc.OBSOLETE_INPUT);var a=i.read(24);a>this.dbufSize&&Gc(Wc.DATA_ERROR,"initial position out of bounds");var s=i.read(16),o=new Uint8Array(256),c=0;for(e=0;e<16;e++)if(s&1<<15-e){var u=16*e;for(r=i.read(16),t=0;t<16;t++)r&1<<15-t&&(o[c++]=u+t)}var h=i.read(3);(h<2||h>6)&&Gc(Wc.DATA_ERROR);var d=i.read(15);0===d&&Gc(Wc.DATA_ERROR);var f=new Uint8Array(256);for(e=0;e=h&&Gc(Wc.DATA_ERROR);l[e]=Lc(f,t)}var p,y=c+2,b=[];for(t=0;t20)&&Gc(Wc.DATA_ERROR),i.read(1);)i.read(1)?s--:s++;w[e]=s}for(m=g=w[0],e=1;eg?g=w[e]:w[e]=d&&Gc(Wc.DATA_ERROR),p=b[l[P++]]),e=p.minLen,t=i.read(e);e>p.maxLen&&Gc(Wc.DATA_ERROR),!(t<=p.limit[e]);e++)t=t<<1|i.read(1);((t-=p.base[e])<0||t>=258)&&Gc(Wc.DATA_ERROR);var M=p.permute[t];if(0!==M&&1!==M){if(S)for(S=0,E+s>this.dbufSize&&Gc(Wc.DATA_ERROR),k[A=o[f[0]]]+=s;s--;)x[E++]=A;if(M>c)break;E>=this.dbufSize&&Gc(Wc.DATA_ERROR),k[A=o[A=Lc(f,e=M-1)]]++,x[E++]=A}else S||(S=1,s=0),s+=0===M?S:2*S,S<<=1}for((a<0||a>=E)&&Gc(Wc.DATA_ERROR),t=0,e=0;e<256;e++)r=t+k[e],k[e]=t,t=r;for(e=0;e>=8,D=-1),this.writePos=C,this.writeCurrent=K,this.writeCount=E,this.writeRun=D,!0},Vc.prototype._read_bunzip=function(e,t){var r,i,n;if(this.writeCount<0)return 0;var a=this.dbuf,s=this.writePos,o=this.writeCurrent,c=this.writeCount;this.outputsize;for(var u=this.writeRun;c;){for(c--,i=o,o=255&(s=a[s]),s>>=8,3==u++?(r=o,n=i,o=-1):(r=1,n=o),this.blockCRC.updateCRCRun(n,r);r--;)this.outputStream.writeByte(n),this.nextoutput++;o!=i&&(u=0)}return this.writeCount=c,this.blockCRC.getCRC()!==this.targetBlockCRC&&Gc(Wc.DATA_ERROR,"Bad block CRC (got "+this.blockCRC.getCRC().toString(16)+" expected "+this.targetBlockCRC.toString(16)+")"),this.nextoutput};var $c=function(e){if("readByte"in e)return e;var t=new Nc;return t.pos=0,t.readByte=function(){return e[this.pos++]},t.seek=function(e){this.pos=e},t.eof=function(){return this.pos>=e.length},t},Zc=function(e){var t=new Nc,r=!0;if(e)if("number"==typeof e)t.buffer=new Uint8Array(e),r=!1;else{if("writeByte"in e)return e;t.buffer=e,r=!1}else t.buffer=new Uint8Array(16384);return t.pos=0,t.writeByte=function(e){if(r&&this.pos>=this.buffer.length){var t=new Uint8Array(2*this.buffer.length);t.set(this.buffer),this.buffer=t}this.buffer[this.pos++]=e},t.getBuffer=function(){if(this.pos!==this.buffer.length){if(!r)throw new TypeError("outputsize does not match decoded input");var e=new Uint8Array(this.pos);e.set(this.buffer.subarray(0,this.pos)),this.buffer=e}return this.buffer},t._coerced=!0,t};var Yc=function(e,t,r){for(var i=$c(e),n=Zc(t),a=new Vc(i,n);!("eof"in i)||!i.eof();)if(a._init_block())a._read_bunzip();else{var s=a.reader.read(32)>>>0;if(s!==a.streamCRC&&Gc(Wc.DATA_ERROR,"Bad stream CRC (got "+a.streamCRC.toString(16)+" expected "+s.toString(16)+")"),!r||!("eof"in i)||i.eof())break;a._start_bunzip(i,n)}if("getBuffer"in n)return n.getBuffer()};class Xc{static get tag(){return ie.packet.literalData}constructor(e=new Date){this.format=ie.literal.utf8,this.date=$.normalizeDate(e),this.text=null,this.data=null,this.filename=""}setText(e,t=ie.literal.utf8){this.format=t,this.text=e,this.data=null}getText(e=!1){return(null===this.text||$.isStream(this.text))&&(this.text=$.decodeUTF8($.nativeEOL(this.getBytes(e)))),this.text}setBytes(e,t){this.format=t,this.data=e,this.text=null}getBytes(e=!1){return null===this.data&&(this.data=$.canonicalizeEOL($.encodeUTF8(this.text))),e?F(this.data):this.data}setFilename(e){this.filename=e}getFilename(){return this.filename}async read(e){await z(e,(async e=>{const t=await e.readByte(),r=await e.readByte();this.filename=$.decodeUTF8(await e.readBytes(r)),this.date=$.readDate(await e.readBytes(4));let i=e.remainder();s(i)&&(i=await j(i)),this.setBytes(i,t)}))}writeHeader(){const e=$.encodeUTF8(this.filename),t=new Uint8Array([e.length]),r=new Uint8Array([this.format]),i=$.writeDate(this.date);return $.concatUint8Array([r,t,e,i])}write(){const e=this.writeHeader(),t=this.getBytes();return $.concat([e,t])}}const Qc=Symbol("verified"),Jc=new Set([ie.signatureSubpacket.issuer,ie.signatureSubpacket.issuerFingerprint,ie.signatureSubpacket.embeddedSignature]);class eu{static get tag(){return ie.packet.signature}constructor(){this.version=null,this.signatureType=null,this.hashAlgorithm=null,this.publicKeyAlgorithm=null,this.signatureData=null,this.unhashedSubpackets=[],this.signedHashValue=null,this.created=null,this.signatureExpirationTime=null,this.signatureNeverExpires=!0,this.exportable=null,this.trustLevel=null,this.trustAmount=null,this.regularExpression=null,this.revocable=null,this.keyExpirationTime=null,this.keyNeverExpires=null,this.preferredSymmetricAlgorithms=null,this.revocationKeyClass=null,this.revocationKeyAlgorithm=null,this.revocationKeyFingerprint=null,this.issuerKeyID=new pe,this.rawNotations=[],this.notations={},this.preferredHashAlgorithms=null,this.preferredCompressionAlgorithms=null,this.keyServerPreferences=null,this.preferredKeyServer=null,this.isPrimaryUserID=null,this.policyURI=null,this.keyFlags=null,this.signersUserID=null,this.reasonForRevocationFlag=null,this.reasonForRevocationString=null,this.features=null,this.signatureTargetPublicKeyAlgorithm=null,this.signatureTargetHashAlgorithm=null,this.signatureTargetHash=null,this.embeddedSignature=null,this.issuerKeyVersion=null,this.issuerFingerprint=null,this.preferredAEADAlgorithms=null,this.revoked=null,this[Qc]=null}read(e){let t=0;if(this.version=e[t++],4!==this.version&&5!==this.version)throw new bn(`Version ${this.version} of the signature packet is unsupported.`);if(this.signatureType=e[t++],this.publicKeyAlgorithm=e[t++],this.hashAlgorithm=e[t++],t+=this.readSubPackets(e.subarray(t,e.length),!0),!this.created)throw Error("Missing signature creation time subpacket.");this.signatureData=e.subarray(0,t),t+=this.readSubPackets(e.subarray(t,e.length),!1),this.signedHashValue=e.subarray(t,t+2),t+=2,this.params=ua.signature.parseSignatureParams(this.publicKeyAlgorithm,e.subarray(t,e.length))}writeParams(){return this.params instanceof Promise?W((async()=>ua.serializeParams(this.publicKeyAlgorithm,await this.params))):ua.serializeParams(this.publicKeyAlgorithm,this.params)}write(){const e=[];return e.push(this.signatureData),e.push(this.writeUnhashedSubPackets()),e.push(this.signedHashValue),e.push(this.writeParams()),$.concat(e)}async sign(e,t,r=new Date,i=!1){5===e.version?this.version=5:this.version=4;const n=[new Uint8Array([this.version,this.signatureType,this.publicKeyAlgorithm,this.hashAlgorithm])];this.created=$.normalizeDate(r),this.issuerKeyVersion=e.version,this.issuerFingerprint=e.getFingerprintBytes(),this.issuerKeyID=e.getKeyID(),n.push(this.writeHashedSubPackets()),this.unhashedSubpackets=[],this.signatureData=$.concat(n);const a=this.toHash(this.signatureType,t,i),s=await this.hash(this.signatureType,t,a,i);this.signedHashValue=N(q(s),0,2);const o=async()=>ua.signature.sign(this.publicKeyAlgorithm,this.hashAlgorithm,e.publicParams,e.privateParams,a,await j(s));$.isStream(s)?this.params=o():(this.params=await o(),this[Qc]=!0)}writeHashedSubPackets(){const e=ie.signatureSubpacket,t=[];let r;if(null===this.created)throw Error("Missing signature creation time");t.push(tu(e.signatureCreationTime,!0,$.writeDate(this.created))),null!==this.signatureExpirationTime&&t.push(tu(e.signatureExpirationTime,!0,$.writeNumber(this.signatureExpirationTime,4))),null!==this.exportable&&t.push(tu(e.exportableCertification,!0,new Uint8Array([this.exportable?1:0]))),null!==this.trustLevel&&(r=new Uint8Array([this.trustLevel,this.trustAmount]),t.push(tu(e.trustSignature,!0,r))),null!==this.regularExpression&&t.push(tu(e.regularExpression,!0,this.regularExpression)),null!==this.revocable&&t.push(tu(e.revocable,!0,new Uint8Array([this.revocable?1:0]))),null!==this.keyExpirationTime&&t.push(tu(e.keyExpirationTime,!0,$.writeNumber(this.keyExpirationTime,4))),null!==this.preferredSymmetricAlgorithms&&(r=$.stringToUint8Array($.uint8ArrayToString(this.preferredSymmetricAlgorithms)),t.push(tu(e.preferredSymmetricAlgorithms,!1,r))),null!==this.revocationKeyClass&&(r=new Uint8Array([this.revocationKeyClass,this.revocationKeyAlgorithm]),r=$.concat([r,this.revocationKeyFingerprint]),t.push(tu(e.revocationKey,!1,r))),this.issuerKeyID.isNull()||5===this.issuerKeyVersion||t.push(tu(e.issuer,!0,this.issuerKeyID.write())),this.rawNotations.forEach((({name:i,value:n,humanReadable:a,critical:s})=>{r=[new Uint8Array([a?128:0,0,0,0])];const o=$.encodeUTF8(i);r.push($.writeNumber(o.length,2)),r.push($.writeNumber(n.length,2)),r.push(o),r.push(n),r=$.concat(r),t.push(tu(e.notationData,s,r))})),null!==this.preferredHashAlgorithms&&(r=$.stringToUint8Array($.uint8ArrayToString(this.preferredHashAlgorithms)),t.push(tu(e.preferredHashAlgorithms,!1,r))),null!==this.preferredCompressionAlgorithms&&(r=$.stringToUint8Array($.uint8ArrayToString(this.preferredCompressionAlgorithms)),t.push(tu(e.preferredCompressionAlgorithms,!1,r))),null!==this.keyServerPreferences&&(r=$.stringToUint8Array($.uint8ArrayToString(this.keyServerPreferences)),t.push(tu(e.keyServerPreferences,!1,r))),null!==this.preferredKeyServer&&t.push(tu(e.preferredKeyServer,!1,$.encodeUTF8(this.preferredKeyServer))),null!==this.isPrimaryUserID&&t.push(tu(e.primaryUserID,!1,new Uint8Array([this.isPrimaryUserID?1:0]))),null!==this.policyURI&&t.push(tu(e.policyURI,!1,$.encodeUTF8(this.policyURI))),null!==this.keyFlags&&(r=$.stringToUint8Array($.uint8ArrayToString(this.keyFlags)),t.push(tu(e.keyFlags,!0,r))),null!==this.signersUserID&&t.push(tu(e.signersUserID,!1,$.encodeUTF8(this.signersUserID))),null!==this.reasonForRevocationFlag&&(r=$.stringToUint8Array(String.fromCharCode(this.reasonForRevocationFlag)+this.reasonForRevocationString),t.push(tu(e.reasonForRevocation,!0,r))),null!==this.features&&(r=$.stringToUint8Array($.uint8ArrayToString(this.features)),t.push(tu(e.features,!1,r))),null!==this.signatureTargetPublicKeyAlgorithm&&(r=[new Uint8Array([this.signatureTargetPublicKeyAlgorithm,this.signatureTargetHashAlgorithm])],r.push($.stringToUint8Array(this.signatureTargetHash)),r=$.concat(r),t.push(tu(e.signatureTarget,!0,r))),null!==this.embeddedSignature&&t.push(tu(e.embeddedSignature,!0,this.embeddedSignature.write())),null!==this.issuerFingerprint&&(r=[new Uint8Array([this.issuerKeyVersion]),this.issuerFingerprint],r=$.concat(r),t.push(tu(e.issuerFingerprint,5===this.version,r))),null!==this.preferredAEADAlgorithms&&(r=$.stringToUint8Array($.uint8ArrayToString(this.preferredAEADAlgorithms)),t.push(tu(e.preferredAEADAlgorithms,!1,r)));const i=$.concat(t),n=$.writeNumber(i.length,2);return $.concat([n,i])}writeUnhashedSubPackets(){const e=[];this.unhashedSubpackets.forEach((t=>{e.push(hn(t.length)),e.push(t)}));const t=$.concat(e),r=$.writeNumber(t.length,2);return $.concat([r,t])}readSubPacket(e,t=!0){let r=0;const i=!!(128&e[r]),n=127&e[r];if(t||(this.unhashedSubpackets.push(e.subarray(r,e.length)),Jc.has(n)))switch(r++,n){case ie.signatureSubpacket.signatureCreationTime:this.created=$.readDate(e.subarray(r,e.length));break;case ie.signatureSubpacket.signatureExpirationTime:{const t=$.readNumber(e.subarray(r,e.length));this.signatureNeverExpires=0===t,this.signatureExpirationTime=t;break}case ie.signatureSubpacket.exportableCertification:this.exportable=1===e[r++];break;case ie.signatureSubpacket.trustSignature:this.trustLevel=e[r++],this.trustAmount=e[r++];break;case ie.signatureSubpacket.regularExpression:this.regularExpression=e[r];break;case ie.signatureSubpacket.revocable:this.revocable=1===e[r++];break;case ie.signatureSubpacket.keyExpirationTime:{const t=$.readNumber(e.subarray(r,e.length));this.keyExpirationTime=t,this.keyNeverExpires=0===t;break}case ie.signatureSubpacket.preferredSymmetricAlgorithms:this.preferredSymmetricAlgorithms=[...e.subarray(r,e.length)];break;case ie.signatureSubpacket.revocationKey:this.revocationKeyClass=e[r++],this.revocationKeyAlgorithm=e[r++],this.revocationKeyFingerprint=e.subarray(r,r+20);break;case ie.signatureSubpacket.issuer:this.issuerKeyID.read(e.subarray(r,e.length));break;case ie.signatureSubpacket.notationData:{const t=!!(128&e[r]);r+=4;const n=$.readNumber(e.subarray(r,r+2));r+=2;const a=$.readNumber(e.subarray(r,r+2));r+=2;const s=$.decodeUTF8(e.subarray(r,r+n)),o=e.subarray(r+n,r+n+a);this.rawNotations.push({name:s,humanReadable:t,value:o,critical:i}),t&&(this.notations[s]=$.decodeUTF8(o));break}case ie.signatureSubpacket.preferredHashAlgorithms:this.preferredHashAlgorithms=[...e.subarray(r,e.length)];break;case ie.signatureSubpacket.preferredCompressionAlgorithms:this.preferredCompressionAlgorithms=[...e.subarray(r,e.length)];break;case ie.signatureSubpacket.keyServerPreferences:this.keyServerPreferences=[...e.subarray(r,e.length)];break;case ie.signatureSubpacket.preferredKeyServer:this.preferredKeyServer=$.decodeUTF8(e.subarray(r,e.length));break;case ie.signatureSubpacket.primaryUserID:this.isPrimaryUserID=0!==e[r++];break;case ie.signatureSubpacket.policyURI:this.policyURI=$.decodeUTF8(e.subarray(r,e.length));break;case ie.signatureSubpacket.keyFlags:this.keyFlags=[...e.subarray(r,e.length)];break;case ie.signatureSubpacket.signersUserID:this.signersUserID=$.decodeUTF8(e.subarray(r,e.length));break;case ie.signatureSubpacket.reasonForRevocation:this.reasonForRevocationFlag=e[r++],this.reasonForRevocationString=$.decodeUTF8(e.subarray(r,e.length));break;case ie.signatureSubpacket.features:this.features=[...e.subarray(r,e.length)];break;case ie.signatureSubpacket.signatureTarget:{this.signatureTargetPublicKeyAlgorithm=e[r++],this.signatureTargetHashAlgorithm=e[r++];const t=ua.getHashByteLength(this.signatureTargetHashAlgorithm);this.signatureTargetHash=$.uint8ArrayToString(e.subarray(r,r+t));break}case ie.signatureSubpacket.embeddedSignature:this.embeddedSignature=new eu,this.embeddedSignature.read(e.subarray(r,e.length));break;case ie.signatureSubpacket.issuerFingerprint:this.issuerKeyVersion=e[r++],this.issuerFingerprint=e.subarray(r,e.length),5===this.issuerKeyVersion?this.issuerKeyID.read(this.issuerFingerprint):this.issuerKeyID.read(this.issuerFingerprint.subarray(-8));break;case ie.signatureSubpacket.preferredAEADAlgorithms:this.preferredAEADAlgorithms=[...e.subarray(r,e.length)];break;default:{const e=Error("Unknown signature subpacket type "+n);if(i)throw e;$.printDebug(e)}}}readSubPackets(e,t=!0,r){const i=$.readNumber(e.subarray(0,2));let n=2;for(;n<2+i;){const i=un(e.subarray(n,e.length));n+=i.offset,this.readSubPacket(e.subarray(n,n+i.len),t,r),n+=i.len}return n}toSign(e,t){const r=ie.signature;switch(e){case r.binary:return null!==t.text?$.encodeUTF8(t.getText(!0)):t.getBytes(!0);case r.text:{const e=t.getBytes(!0);return $.canonicalizeEOL(e)}case r.standalone:return new Uint8Array(0);case r.certGeneric:case r.certPersona:case r.certCasual:case r.certPositive:case r.certRevocation:{let e,i;if(t.userID)i=180,e=t.userID;else{if(!t.userAttribute)throw Error("Either a userID or userAttribute packet needs to be supplied for certification.");i=209,e=t.userAttribute}const n=e.write();return $.concat([this.toSign(r.key,t),new Uint8Array([i]),$.writeNumber(n.length,4),n])}case r.subkeyBinding:case r.subkeyRevocation:case r.keyBinding:return $.concat([this.toSign(r.key,t),this.toSign(r.key,{key:t.bind})]);case r.key:if(void 0===t.key)throw Error("Key packet is required for this signature.");return t.key.writeForHash(this.version);case r.keyRevocation:return this.toSign(r.key,t);case r.timestamp:return new Uint8Array(0);case r.thirdParty:throw Error("Not implemented");default:throw Error("Unknown signature type.")}}calculateTrailer(e,t){let r=0;return B(q(this.signatureData),(e=>{r+=e.length}),(()=>{const i=[];return 5!==this.version||this.signatureType!==ie.signature.binary&&this.signatureType!==ie.signature.text||(t?i.push(new Uint8Array(6)):i.push(e.writeHeader())),i.push(new Uint8Array([this.version,255])),5===this.version&&i.push(new Uint8Array(4)),i.push($.writeNumber(r,4)),$.concat(i)}))}toHash(e,t,r=!1){const i=this.toSign(e,t);return $.concat([i,this.signatureData,this.calculateTrailer(t,r)])}async hash(e,t,r,i=!1){return r||(r=this.toHash(e,t,i)),ua.hash.digest(this.hashAlgorithm,r)}async verify(e,t,r,i=new Date,n=!1,a=ne){if(!this.issuerKeyID.equals(e.getKeyID()))throw Error("Signature was not issued by the given public key");if(this.publicKeyAlgorithm!==e.algorithm)throw Error("Public key algorithm used to sign signature does not match issuer key algorithm.");const s=t===ie.signature.binary||t===ie.signature.text;if(!(this[Qc]&&!s)){let i,a;if(this.hashed?a=await this.hashed:(i=this.toHash(t,r,n),a=await this.hash(t,r,i)),a=await j(a),this.signedHashValue[0]!==a[0]||this.signedHashValue[1]!==a[1])throw Error("Signed digest did not match");if(this.params=await this.params,this[Qc]=await ua.signature.verify(this.publicKeyAlgorithm,this.hashAlgorithm,this.params,e.publicParams,i,a),!this[Qc])throw Error("Signature verification failed")}const o=$.normalizeDate(i);if(o&&this.created>o)throw Error("Signature creation time is in the future");if(o&&o>=this.getExpirationTime())throw Error("Signature is expired");if(a.rejectHashAlgorithms.has(this.hashAlgorithm))throw Error("Insecure hash algorithm: "+ie.read(ie.hash,this.hashAlgorithm).toUpperCase());if(a.rejectMessageHashAlgorithms.has(this.hashAlgorithm)&&[ie.signature.binary,ie.signature.text].includes(this.signatureType))throw Error("Insecure message hash algorithm: "+ie.read(ie.hash,this.hashAlgorithm).toUpperCase());if(this.rawNotations.forEach((({name:e,critical:t})=>{if(t&&a.knownNotations.indexOf(e)<0)throw Error("Unknown critical notation: "+e)})),null!==this.revocationKeyClass)throw Error("This key is intended to be revoked with an authorized key, which OpenPGP.js does not support.")}isExpired(e=new Date){const t=$.normalizeDate(e);return null!==t&&!(this.created<=t&&teu.prototype.calculateTrailer.apply(await this.correspondingSig,e)))}async verify(){const e=await this.correspondingSig;if(!e||e.constructor.tag!==ie.packet.signature)throw Error("Corresponding signature packet missing");if(e.signatureType!==this.signatureType||e.hashAlgorithm!==this.hashAlgorithm||e.publicKeyAlgorithm!==this.publicKeyAlgorithm||!e.issuerKeyID.equals(this.issuerKeyID))throw Error("Corresponding signature packet does not match one-pass signature packet");return e.hashed=this.hashed,e.verify.apply(e,arguments)}}function iu(e,t){if(!t[e]){let t;try{t=ie.read(ie.packet,e)}catch(t){throw new bn("Unknown packet type with tag: "+e)}throw Error("Packet not allowed in this context: "+t)}return new t[e]}ru.prototype.hash=eu.prototype.hash,ru.prototype.toHash=eu.prototype.toHash,ru.prototype.toSign=eu.prototype.toSign;class nu extends Array{static async fromBinary(e,t,r=ne){const i=new nu;return await i.read(e,t,r),i}async read(e,t,r=ne){this.stream=T(e,(async(e,i)=>{const n=D(i);try{for(;;){await n.ready;if(await yn(e,(async e=>{try{if(e.tag===ie.packet.marker||e.tag===ie.packet.trust)return;const i=iu(e.tag,t);i.packets=new nu,i.fromStream=$.isStream(e.packet),await i.read(e.packet,r),await n.write(i)}catch(t){const i=!r.ignoreUnsupportedPackets&&t instanceof bn,a=!(r.ignoreMalformedPackets||t instanceof bn);if(i||a||pn(e.tag))await n.abort(t);else{const t=new mn(e.tag,e.packet);await n.write(t)}$.printDebugError(t)}})))return await n.ready,void await n.close()}}catch(e){await n.abort(e)}}));const i=K(this.stream);for(;;){const{done:e,value:t}=await i.read();if(e?this.stream=null:this.push(t),e||pn(t.constructor.tag))break}i.releaseLock()}write(){const e=[];for(let t=0;t{if(t.push(e),n+=e.length,n>=a){const e=Math.min(Math.log(n)/Math.LN2|0,30),r=2**e,i=$.concat([dn(e)].concat(t));return t=[i.subarray(1+r)],n=t[0].length,i.subarray(0,1+r)}}),(()=>$.concat([hn(n)].concat(t)))))}else{if($.isStream(i)){let t=0;e.push(B(q(i),(e=>{t+=e.length}),(()=>ln(r,t))))}else e.push(ln(r,i.length));e.push(i)}}return $.concat(e)}filterByTag(...e){const t=new nu,r=e=>t=>e===t;for(let i=0;it.constructor.tag===e))}indexOfTag(...e){const t=[],r=this,i=e=>t=>e===t;for(let n=0;n{this.algorithm=await e.readByte(),this.compressed=e.remainder(),await this.decompress(t)}))}write(){return null===this.compressed&&this.compress(),$.concat([new Uint8Array([this.algorithm]),this.compressed])}async decompress(e=ne){const t=ie.read(ie.compression,this.algorithm),r=lu[t];if(!r)throw Error(t+" decompression not supported");this.packets=await nu.fromBinary(r(this.compressed),au,e)}compress(){const e=ie.read(ie.compression,this.algorithm),t=fu[e];if(!t)throw Error(e+" compression not 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fu=ou?{zip:/*#__PURE__*/(e,t)=>uu(ou.deflateRaw,ou.createDeflateRaw,{level:t})(e),zlib:/*#__PURE__*/(e,t)=>uu(ou.deflate,ou.createDeflate,{level:t})(e)}:{zip:/*#__PURE__*/(e,t)=>hu(xo,{raw:!0,level:t})(e),zlib:/*#__PURE__*/(e,t)=>hu(xo,{level:t})(e)},lu=ou?{uncompressed:cu,zip:/*#__PURE__*/uu(ou.inflateRaw,ou.createInflateRaw),zlib:/*#__PURE__*/uu(ou.inflate,ou.createInflate),bzip2:/*#__PURE__*/du(Yc)}:{uncompressed:cu,zip:/*#__PURE__*/hu(Bc,{raw:!0}),zlib:/*#__PURE__*/hu(Bc),bzip2:/*#__PURE__*/du(Yc)},pu=/*#__PURE__*/$.constructAllowedPackets([Xc,su,ru,eu]);class yu{static get tag(){return ie.packet.symEncryptedIntegrityProtectedData}constructor(){this.version=1,this.encrypted=null,this.packets=null}async read(e){await z(e,(async e=>{const t=await e.readByte();if(1!==t)throw new bn(`Version ${t} of the SEIP packet is unsupported.`);this.encrypted=e.remainder()}))}write(){return $.concat([new Uint8Array([1]),this.encrypted])}async 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ie.packet.aeadEncryptedData}constructor(){this.version=1,this.cipherAlgorithm=null,this.aeadAlgorithm=ie.aead.eax,this.chunkSizeByte=null,this.iv=null,this.encrypted=null,this.packets=null}async read(e){await z(e,(async e=>{const t=await e.readByte();if(1!==t)throw new bn(`Version ${t} of the AEAD-encrypted data packet is not supported.`);this.cipherAlgorithm=await e.readByte(),this.aeadAlgorithm=await e.readByte(),this.chunkSizeByte=await e.readByte();const r=ua.getAEADMode(this.aeadAlgorithm);this.iv=await e.readBytes(r.ivLength),this.encrypted=e.remainder()}))}write(){return $.concat([new Uint8Array([this.version,this.cipherAlgorithm,this.aeadAlgorithm,this.chunkSizeByte]),this.iv,this.encrypted])}async decrypt(e,t,r=ne){this.packets=await nu.fromBinary(await this.crypt("decrypt",t,q(this.encrypted)),bu,r)}async encrypt(e,t,r=ne){this.cipherAlgorithm=e;const{ivLength:i}=ua.getAEADMode(this.aeadAlgorithm);this.iv=ua.random.getRandomBytes(i),this.chunkSizeByte=r.aeadChunkSizeByte;const n=this.packets.write();this.encrypted=await this.crypt("encrypt",t,n)}async crypt(e,t,r){const i=ua.getAEADMode(this.aeadAlgorithm),n=await i(this.cipherAlgorithm,t),a="decrypt"===e?i.tagLength:0,s="encrypt"===e?i.tagLength:0,o=2**(this.chunkSizeByte+6)+a,c=new ArrayBuffer(21),u=new Uint8Array(c,0,13),h=new Uint8Array(c),d=new DataView(c),f=new Uint8Array(c,5,8);u.set([192|mu.tag,this.version,this.cipherAlgorithm,this.aeadAlgorithm,this.chunkSizeByte],0);let l=0,p=Promise.resolve(),y=0,b=0;const m=this.iv;return T(r,(async(t,r)=>{if("array"!==$.isStream(t)){const e=new S({},{highWaterMark:$.getHardwareConcurrency()*2**(this.chunkSizeByte+6),size:e=>e.length});R(e.readable,r),r=e.writable}const c=K(t),g=D(r);try{for(;;){let t=await c.readBytes(o+a)||new Uint8Array;const r=t.subarray(t.length-a);let w,v;if(t=t.subarray(0,t.length-a),!l||t.length?(c.unshift(r),w=n[e](t,i.getNonce(m,f),u),b+=t.length-a+s):(d.setInt32(17,y),w=n[e](r,i.getNonce(m,f),h),b+=s,v=!0),y+=t.length-a,p=p.then((()=>w)).then((async e=>{await g.ready,await g.write(e),b-=e.length})).catch((e=>g.abort(e))),(v||b>g.desiredSize)&&await p,v){await g.close();break}d.setInt32(9,++l)}}catch(e){await g.abort(e)}}))}}class gu{static get tag(){return ie.packet.publicKeyEncryptedSessionKey}constructor(){this.version=3,this.publicKeyID=new pe,this.publicKeyAlgorithm=null,this.sessionKey=null,this.sessionKeyAlgorithm=null,this.encrypted={}}read(e){if(this.version=e[0],3!==this.version)throw new bn(`Version ${this.version} of the PKESK packet is unsupported.`);this.publicKeyID.read(e.subarray(1,e.length)),this.publicKeyAlgorithm=e[9],this.encrypted=ua.parseEncSessionKeyParams(this.publicKeyAlgorithm,e.subarray(10))}write(){const e=[new Uint8Array([this.version]),this.publicKeyID.write(),new Uint8Array([this.publicKeyAlgorithm]),ua.serializeParams(this.publicKeyAlgorithm,this.encrypted)];return $.concatUint8Array(e)}async encrypt(e){const t=$.concatUint8Array([new Uint8Array([ie.write(ie.symmetric,this.sessionKeyAlgorithm)]),this.sessionKey,$.writeChecksum(this.sessionKey)]),r=ie.write(ie.publicKey,this.publicKeyAlgorithm);this.encrypted=await ua.publicKeyEncrypt(r,e.publicParams,t,e.getFingerprintBytes())}async decrypt(e,t){if(this.publicKeyAlgorithm!==e.algorithm)throw Error("Decryption error");const r=t?$.concatUint8Array([new Uint8Array([t.sessionKeyAlgorithm]),t.sessionKey,$.writeChecksum(t.sessionKey)]):null,i=await ua.publicKeyDecrypt(this.publicKeyAlgorithm,e.publicParams,e.privateParams,this.encrypted,e.getFingerprintBytes(),r),n=i[0],a=i.subarray(1,i.length-2),s=i.subarray(i.length-2),o=$.writeChecksum(a),c=o[0]===s[0]&o[1]===s[1];if(t){const e=c&n===t.sessionKeyAlgorithm&a.length===t.sessionKey.length;this.sessionKeyAlgorithm=$.selectUint8(e,n,t.sessionKeyAlgorithm),this.sessionKey=$.selectUint8Array(e,a,t.sessionKey)}else{if(!(c&&ie.read(ie.symmetric,n)))throw Error("Decryption error");this.sessionKey=a,this.sessionKeyAlgorithm=n}}}class wu{constructor(e=ne){this.algorithm=ie.hash.sha256,this.type="iterated",this.c=e.s2kIterationCountByte,this.salt=null}getCount(){return 16+(15&this.c)<<6+(this.c>>4)}read(e){let t=0;switch(this.type=ie.read(ie.s2k,e[t++]),this.algorithm=e[t++],this.type){case"simple":break;case"salted":this.salt=e.subarray(t,t+8),t+=8;break;case"iterated":this.salt=e.subarray(t,t+8),t+=8,this.c=e[t++];break;case"gnu":if("GNU"!==$.uint8ArrayToString(e.subarray(t,t+3)))throw Error("Unknown s2k type.");t+=3;if(1001!==1e3+e[t++])throw Error("Unknown s2k gnu protection mode.");this.type="gnu-dummy";break;default:throw Error("Unknown s2k type.")}return t}write(){if("gnu-dummy"===this.type)return new Uint8Array([101,0,...$.stringToUint8Array("GNU"),1]);const e=[new Uint8Array([ie.write(ie.s2k,this.type),this.algorithm])];switch(this.type){case"simple":break;case"salted":e.push(this.salt);break;case"iterated":e.push(this.salt),e.push(new Uint8Array([this.c]));break;case"gnu":throw Error("GNU s2k type not supported.");default:throw Error("Unknown s2k type.")}return $.concatUint8Array(e)}async produceKey(e,t){e=$.encodeUTF8(e);const r=[];let i=0,n=0;for(;i{this.privateParams[e].fill(0),delete this.privateParams[e]})),this.privateParams=null,this.isEncrypted=!0)}}async function Mu(e,t,r){const{keySize:i}=ua.getCipher(r);return e.produceKey(t,i)}var Cu=it((function(e){!function(t){function r(e){function t(){return Ae0&&(t.semantic=" "),t}}function b(e,t){return function(){var i,a,o,u,h;for(u=r(),i=s("star"),o=0,h=void 0===t?0:t;null!==(a=e());)o+=1,c(i,a);return o>=h?i:(n(u),null)}}function m(e){return e.charCodeAt(0)>=128}function g(){return o("cr",h("\r")())}function w(){return 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e.strict?null:o("obs-NO-WS-CTL",u((function(e){var t=e.charCodeAt(0);return 1<=t&&t<=8||11===t||12===t||14<=t&&t<=31||127===t})))}function te(){return e.strict?null:o("obs-ctext",ee())}function re(){return e.strict?null:o("obs-qtext",ee())}function ie(){return e.strict?null:o("obs-qp",d(h("\\"),f(h("\0"),ee,k,g))())}function ne(){return e.strict?null:e.atInDisplayName?o("obs-phrase",d(F,b(f(F,h("."),h("@"),y(D))))()):o("obs-phrase",d(F,b(f(F,h("."),y(D))))())}function ae(){return e.strict?null:o("obs-FWS",b(d(p(l(w)),E),1)())}function se(){return e.strict?null:o("obs-angle-addr",d(p(l(D)),h("<"),oe,J,h(">"),p(l(D)))())}function oe(){return e.strict?null:o("obs-route",d(ce,h(":"))())}function ce(){return e.strict?null:o("obs-domain-list",d(b(f(p(D),h(","))),h("@"),Q,b(d(h(","),p(l(D)),l(d(h("@"),Q)))))())}function ue(){return e.strict?null:o("obs-mbox-list",d(b(d(p(l(D)),h(","))),N,b(d(h(","),l(d(N,p(D))))))())}function he(){return e.strict?null:o("obs-addr-list",d(b(d(p(l(D)),h(","))),O,b(d(h(","),l(d(O,p(D))))))())}function de(){return e.strict?null:o("obs-group-list",d(b(d(p(l(D)),h(",")),1),p(l(D)))())}function fe(){return e.strict?null:o("obs-local-part",d(F,b(d(h("."),F)))())}function le(){return e.strict?null:o("obs-domain",d(U,b(d(h("."),U)))())}function pe(){return e.strict?null:o("obs-dtext",f(ee,P)())}function ye(e,t){var r,i,n;if(null==t)return null;for(i=[t];i.length>0;){if((n=i.pop()).name===e)return n;for(r=n.children.length-1;r>=0;r-=1)i.push(n.children[r])}return null}function be(e,t){var r,i,n,a,s;if(null==t)return null;for(i=[t],a=[],s={},r=0;r0;)if((n=i.pop()).name in s)a.push(n);else for(r=n.children.length-1;r>=0;r-=1)i.push(n.children[r]);return a}function me(t){var r,i,n,a,s;if(null===t)return null;for(r=[],i=be(["group","mailbox"],t),n=0;n1)return null;return t.addresses&&t.addresses[0]}(s):e.simple?s&&s.addresses:s}function ge(e){var t,r=ye("display-name",e),i=[],n=be(["mailbox"],e);for(t=0;t0;)for((n=i.pop()).name===e&&a.push(n),r=n.children.length-1;r>=0;r-=1)i.push(n.children[r]);return a}("cfws",e),n=be(["comment"],e),a=ye("local-part",r),s=ye("domain",r);return{node:e,parts:{name:t,address:r,local:a,domain:s,comments:i},type:e.name,name:ve(t),address:ve(r),local:ve(a),domain:ve(s),comments:_e(n),groupName:ve(e.groupName)}}function ve(e){return null!=e?e.semantic:null}function _e(e){var t="";if(e)for(var r=0;r`),t.userID=r.join(" "),t}read(e,t=ne){const r=$.decodeUTF8(e);if(r.length>t.maxUserIDLength)throw Error("User ID string is too long");try{const{name:e,address:t,comments:i}=Cu.parseOneAddress({input:r,atInDisplayName:!0});this.comment=i.replace(/^\(|\)$/g,""),this.name=e,this.email=t}catch(e){}this.userID=r}write(){return $.encodeUTF8(this.userID)}equals(e){return e&&e.userID===this.userID}}class Du extends xu{static get tag(){return ie.packet.secretSubkey}constructor(e=new Date,t=ne){super(e,t)}}class Ru{static get tag(){return ie.packet.trust}read(){throw new bn("Trust packets are not supported")}write(){throw new bn("Trust packets are not supported")}}const Uu=/*#__PURE__*/$.constructAllowedPackets([eu]);class Iu{constructor(e){this.packets=e||new nu}write(){return this.packets.write()}armor(e=ne){return le(ie.armor.signature,this.write(),void 0,void 0,void 0,e)}getSigningKeyIDs(){return this.packets.map((e=>e.issuerKeyID))}}async function Bu({armoredSignature:e,binarySignature:t,config:r,...i}){r={...ne,...r};let n=e||t;if(!n)throw Error("readSignature: must pass options object containing `armoredSignature` or `binarySignature`");if(e&&!$.isString(e))throw Error("readSignature: options.armoredSignature must be a string");if(t&&!$.isUint8Array(t))throw Error("readSignature: options.binarySignature must be a Uint8Array");const a=Object.keys(i);if(a.length>0)throw Error("Unknown option: "+a.join(", "));if(e){const{type:e,data:t}=await fe(n,r);if(e!==ie.armor.signature)throw Error("Armored text not of type signature");n=t}const s=await nu.fromBinary(n,Uu,r);return new Iu(s)}async function Tu(e,t){const r=new Du(e.date,t);return r.packets=null,r.algorithm=ie.write(ie.publicKey,e.algorithm),await r.generate(e.rsaBits,e.curve),await r.computeFingerprintAndKeyID(),r}async function zu(e,t){const r=new xu(e.date,t);return r.packets=null,r.algorithm=ie.write(ie.publicKey,e.algorithm),await r.generate(e.rsaBits,e.curve,e.config),await r.computeFingerprintAndKeyID(),r}async function qu(e,t,r,i,n=new Date,a){let s,o;for(let c=e.length-1;c>=0;c--)try{(!s||e[c].created>=s.created)&&(await e[c].verify(t,r,i,n,void 0,a),s=e[c])}catch(e){o=e}if(!s)throw $.wrapError(`Could not find valid ${ie.read(ie.signature,r)} signature in key ${t.getKeyID().toHex()}`.replace("certGeneric ","self-").replace(/([a-z])([A-Z])/g,((e,t,r)=>t+" "+r.toLowerCase())),o);return s}function Fu(e,t,r=new Date){const i=$.normalizeDate(r);if(null!==i){const r=Gu(e,t);return!(e.created<=i&&i0&&(a.keyExpirationTime=r.keyExpirationTime,a.keyNeverExpires=!1),await a.sign(t,n,r.date),a}async function Nu(e,t,r=new Date,i={},n){let a=n.preferredHashAlgorithm,s=a;if(e){const t=await e.getPrimaryUser(r,i,n);t.selfCertification.preferredHashAlgorithms&&([s]=t.selfCertification.preferredHashAlgorithms,a=ua.hash.getHashByteLength(a)<=ua.hash.getHashByteLength(s)?s:a)}switch(Object.getPrototypeOf(t)){case xu.prototype:case _u.prototype:case Du.prototype:case Eu.prototype:switch(t.algorithm){case ie.publicKey.ecdh:case ie.publicKey.ecdsa:case ie.publicKey.eddsa:s=ua.publicKey.elliptic.getPreferredHashAlgo(t.publicParams.oid)}}return ua.hash.getHashByteLength(a)<=ua.hash.getHashByteLength(s)?s:a}async function ju(e,t=[],r=new Date,i=[],n=ne){const a={symmetric:ie.symmetric.aes128,aead:ie.aead.eax,compression:ie.compression.uncompressed}[e],s={symmetric:n.preferredSymmetricAlgorithm,aead:n.preferredAEADAlgorithm,compression:n.preferredCompressionAlgorithm}[e],o={symmetric:"preferredSymmetricAlgorithms",aead:"preferredAEADAlgorithms",compression:"preferredCompressionAlgorithms"}[e],c=await Promise.all(t.map((async function(e,t){const a=(await e.getPrimaryUser(r,i[t],n)).selfCertification[o];return!!a&&a.indexOf(s)>=0})));return c.every(Boolean)?s:a}async function Lu(e,t,r,i,n,a,s=[],o=!1,c){if(r.isDummy())throw Error("Cannot sign with a gnu-dummy key.");if(!r.isDecrypted())throw Error("Signing key is not decrypted.");const u=new eu;return Object.assign(u,i),u.publicKeyAlgorithm=r.algorithm,u.hashAlgorithm=await Nu(t,r,n,a,c),u.rawNotations=s,await u.sign(r,e,n,o),u}async function Wu(e,t,r,i=new Date,n){(e=e[r])&&(t[r].length?await Promise.all(e.map((async function(e){e.isExpired(i)||n&&!await n(e)||t[r].some((function(t){return $.equalsUint8Array(t.writeParams(),e.writeParams())}))||t[r].push(e)}))):t[r]=e)}async function Hu(e,t,r,i,n,a,s=new Date,o){a=a||e;const c=[];return await Promise.all(i.map((async function(e){try{n&&!e.issuerKeyID.equals(n.issuerKeyID)||(await e.verify(a,t,r,o.revocationsExpire?s:null,!1,o),c.push(e.issuerKeyID))}catch(e){}}))),n?(n.revoked=!!c.some((e=>e.equals(n.issuerKeyID)))||(n.revoked||!1),n.revoked):c.length>0}function Gu(e,t){let r;return!1===t.keyNeverExpires&&(r=e.created.getTime()+1e3*t.keyExpirationTime),r?new Date(r):1/0}function Vu(e,t={}){switch(e.type=e.type||t.type,e.curve=e.curve||t.curve,e.rsaBits=e.rsaBits||t.rsaBits,e.keyExpirationTime=void 0!==e.keyExpirationTime?e.keyExpirationTime:t.keyExpirationTime,e.passphrase=$.isString(e.passphrase)?e.passphrase:t.passphrase,e.date=e.date||t.date,e.sign=e.sign||!1,e.type){case"ecc":try{e.curve=ie.write(ie.curve,e.curve)}catch(e){throw Error("Unknown curve")}e.curve!==ie.curve.ed25519&&e.curve!==ie.curve.curve25519||(e.curve=e.sign?ie.curve.ed25519:ie.curve.curve25519),e.sign?e.algorithm=e.curve===ie.curve.ed25519?ie.publicKey.eddsa:ie.publicKey.ecdsa:e.algorithm=ie.publicKey.ecdh;break;case"rsa":e.algorithm=ie.publicKey.rsaEncryptSign;break;default:throw Error("Unsupported key type "+e.type)}return e}function $u(e,t){const r=e.algorithm;return r!==ie.publicKey.rsaEncrypt&&r!==ie.publicKey.elgamal&&r!==ie.publicKey.ecdh&&(!t.keyFlags||0!=(t.keyFlags[0]&ie.keyFlags.signData))}function Zu(e,t){const r=e.algorithm;return r!==ie.publicKey.dsa&&r!==ie.publicKey.rsaSign&&r!==ie.publicKey.ecdsa&&r!==ie.publicKey.eddsa&&(!t.keyFlags||0!=(t.keyFlags[0]&ie.keyFlags.encryptCommunication)||0!=(t.keyFlags[0]&ie.keyFlags.encryptStorage))}function Yu(e,t){return!!t.allowInsecureDecryptionWithSigningKeys||(!e.keyFlags||0!=(e.keyFlags[0]&ie.keyFlags.encryptCommunication)||0!=(e.keyFlags[0]&ie.keyFlags.encryptStorage))}function Xu(e,t){const r=ie.write(ie.publicKey,e.algorithm),i=e.getAlgorithmInfo();if(t.rejectPublicKeyAlgorithms.has(r))throw Error(i.algorithm+" keys are considered too weak.");switch(r){case ie.publicKey.rsaEncryptSign:case ie.publicKey.rsaSign:case ie.publicKey.rsaEncrypt:if(i.bitse.getKeys(o).length>0));return 0===c.length?null:(await Promise.all(c.map((async t=>{const a=await t.getSigningKey(o,e.created,void 0,i);if(e.revoked||await n.isRevoked(e,a.keyPacket,r,i))throw Error("User certificate is revoked");try{await e.verify(a.keyPacket,ie.signature.certGeneric,s,r,void 0,i)}catch(e){throw $.wrapError("User certificate is invalid",e)}}))),!0)}async verifyAllCertifications(e,t=new Date,r){const i=this,n=this.selfCertifications.concat(this.otherCertifications);return Promise.all(n.map((async n=>({keyID:n.issuerKeyID,valid:await i.verifyCertificate(n,e,t,r).catch((()=>!1))}))))}async verify(e=new Date,t){if(!this.selfCertifications.length)throw Error("No self-certifications found");const r=this,i=this.mainKey.keyPacket,n={userID:this.userID,userAttribute:this.userAttribute,key:i};let a;for(let s=this.selfCertifications.length-1;s>=0;s--)try{const a=this.selfCertifications[s];if(a.revoked||await r.isRevoked(a,void 0,e,t))throw Error("Self-certification is revoked");try{await a.verify(i,ie.signature.certGeneric,n,e,void 0,t)}catch(e){throw $.wrapError("Self-certification is invalid",e)}return!0}catch(e){a=e}throw a}async update(e,t,r){const i=this.mainKey.keyPacket,n={userID:this.userID,userAttribute:this.userAttribute,key:i};await Wu(e,this,"selfCertifications",t,(async function(e){try{return await e.verify(i,ie.signature.certGeneric,n,t,!1,r),!0}catch(e){return!1}})),await Wu(e,this,"otherCertifications",t),await Wu(e,this,"revocationSignatures",t,(function(e){return Hu(i,ie.signature.certRevocation,n,[e],void 0,void 0,t,r)}))}async revoke(e,{flag:t=ie.reasonForRevocation.noReason,string:r=""}={},i=new Date,n=ne){const a={userID:this.userID,userAttribute:this.userAttribute,key:e},s=new Qu(a.userID||a.userAttribute,this.mainKey);return s.revocationSignatures.push(await Lu(a,null,e,{signatureType:ie.signature.certRevocation,reasonForRevocationFlag:ie.write(ie.reasonForRevocation,t),reasonForRevocationString:r},i,void 0,void 0,!1,n)),await s.update(this),s}}class Ju{constructor(e,t){this.keyPacket=e,this.bindingSignatures=[],this.revocationSignatures=[],this.mainKey=t}toPacketList(){const e=new nu;return e.push(this.keyPacket),e.push(...this.revocationSignatures),e.push(...this.bindingSignatures),e}clone(){const e=new Ju(this.keyPacket,this.mainKey);return e.bindingSignatures=[...this.bindingSignatures],e.revocationSignatures=[...this.revocationSignatures],e}async isRevoked(e,t,r=new Date,i=ne){const n=this.mainKey.keyPacket;return Hu(n,ie.signature.subkeyRevocation,{key:n,bind:this.keyPacket},this.revocationSignatures,e,t,r,i)}async verify(e=new Date,t=ne){const r=this.mainKey.keyPacket,i={key:r,bind:this.keyPacket},n=await qu(this.bindingSignatures,r,ie.signature.subkeyBinding,i,e,t);if(n.revoked||await this.isRevoked(n,null,e,t))throw Error("Subkey is revoked");if(Fu(this.keyPacket,n,e))throw Error("Subkey is expired");return n}async getExpirationTime(e=new Date,t=ne){const r=this.mainKey.keyPacket,i={key:r,bind:this.keyPacket};let n;try{n=await qu(this.bindingSignatures,r,ie.signature.subkeyBinding,i,e,t)}catch(e){return null}const a=Gu(this.keyPacket,n),s=n.getExpirationTime();return an.bindingSignatures[t].created&&(n.bindingSignatures[t]=e),!1;try{return await e.verify(i,ie.signature.subkeyBinding,a,t,void 0,r),!0}catch(e){return!1}})),await Wu(e,this,"revocationSignatures",t,(function(e){return Hu(i,ie.signature.subkeyRevocation,a,[e],void 0,void 0,t,r)}))}async revoke(e,{flag:t=ie.reasonForRevocation.noReason,string:r=""}={},i=new Date,n=ne){const a={key:e,bind:this.keyPacket},s=new Ju(this.keyPacket,this.mainKey);return s.revocationSignatures.push(await Lu(a,null,e,{signatureType:ie.signature.subkeyRevocation,reasonForRevocationFlag:ie.write(ie.reasonForRevocation,t),reasonForRevocationString:r},i,void 0,void 0,!1,n)),await s.update(this),s}hasSameFingerprintAs(e){return this.keyPacket.hasSameFingerprintAs(e.keyPacket||e)}}["getKeyID","getFingerprint","getAlgorithmInfo","getCreationTime","isDecrypted"].forEach((e=>{Ju.prototype[e]=function(){return this.keyPacket[e]()}}));const eh=/*#__PURE__*/$.constructAllowedPackets([eu]),th=new Set([ie.packet.publicKey,ie.packet.privateKey]),rh=new Set([ie.packet.publicKey,ie.packet.privateKey,ie.packet.publicSubkey,ie.packet.privateSubkey]);class ih{packetListToStructure(e,t=new Set){let r,i,n,a;for(const s of e){if(s instanceof mn){rh.has(s.tag)&&!a&&(a=th.has(s.tag)?th:rh);continue}const e=s.constructor.tag;if(a){if(!a.has(e))continue;a=null}if(t.has(e))throw Error("Unexpected packet type: "+e);switch(e){case ie.packet.publicKey:case ie.packet.secretKey:if(this.keyPacket)throw Error("Key block contains multiple keys");if(this.keyPacket=s,i=this.getKeyID(),!i)throw Error("Missing Key ID");break;case ie.packet.userID:case ie.packet.userAttribute:r=new Qu(s,this),this.users.push(r);break;case ie.packet.publicSubkey:case ie.packet.secretSubkey:r=null,n=new Ju(s,this),this.subkeys.push(n);break;case ie.packet.signature:switch(s.signatureType){case ie.signature.certGeneric:case ie.signature.certPersona:case ie.signature.certCasual:case ie.signature.certPositive:if(!r){$.printDebug("Dropping certification signatures without preceding user packet");continue}s.issuerKeyID.equals(i)?r.selfCertifications.push(s):r.otherCertifications.push(s);break;case ie.signature.certRevocation:r?r.revocationSignatures.push(s):this.directSignatures.push(s);break;case ie.signature.key:this.directSignatures.push(s);break;case ie.signature.subkeyBinding:if(!n){$.printDebug("Dropping subkey binding signature without preceding subkey packet");continue}n.bindingSignatures.push(s);break;case ie.signature.keyRevocation:this.revocationSignatures.push(s);break;case ie.signature.subkeyRevocation:if(!n){$.printDebug("Dropping subkey revocation signature without preceding subkey packet");continue}n.revocationSignatures.push(s)}}}}toPacketList(){const e=new nu;return e.push(this.keyPacket),e.push(...this.revocationSignatures),e.push(...this.directSignatures),this.users.map((t=>e.push(...t.toPacketList()))),this.subkeys.map((t=>e.push(...t.toPacketList()))),e}clone(e=!1){const t=new this.constructor(this.toPacketList());return e&&t.getKeys().forEach((e=>{if(e.keyPacket=Object.create(Object.getPrototypeOf(e.keyPacket),Object.getOwnPropertyDescriptors(e.keyPacket)),!e.keyPacket.isDecrypted())return;const t={};Object.keys(e.keyPacket.privateParams).forEach((r=>{t[r]=new Uint8Array(e.keyPacket.privateParams[r])})),e.keyPacket.privateParams=t})),t}getSubkeys(e=null){return this.subkeys.filter((t=>!e||t.getKeyID().equals(e,!0)))}getKeys(e=null){const t=[];return e&&!this.getKeyID().equals(e,!0)||t.push(this),t.concat(this.getSubkeys(e))}getKeyIDs(){return this.getKeys().map((e=>e.getKeyID()))}getUserIDs(){return this.users.map((e=>e.userID?e.userID.userID:null)).filter((e=>null!==e))}write(){return this.toPacketList().write()}async getSigningKey(e=null,t=new Date,r={},i=ne){await this.verifyPrimaryKey(t,r,i);const n=this.keyPacket,a=this.subkeys.slice().sort(((e,t)=>t.keyPacket.created-e.keyPacket.created));let s;for(const r of a)if(!e||r.getKeyID().equals(e))try{await r.verify(t,i);const e={key:n,bind:r.keyPacket},a=await qu(r.bindingSignatures,n,ie.signature.subkeyBinding,e,t,i);if(!$u(r.keyPacket,a))continue;if(!a.embeddedSignature)throw Error("Missing embedded signature");return await qu([a.embeddedSignature],r.keyPacket,ie.signature.keyBinding,e,t,i),Xu(r.keyPacket,i),r}catch(e){s=e}try{const a=await this.getPrimaryUser(t,r,i);if((!e||n.getKeyID().equals(e))&&$u(n,a.selfCertification))return Xu(n,i),this}catch(e){s=e}throw $.wrapError("Could not find valid signing key packet in key "+this.getKeyID().toHex(),s)}async getEncryptionKey(e,t=new Date,r={},i=ne){await this.verifyPrimaryKey(t,r,i);const n=this.keyPacket,a=this.subkeys.slice().sort(((e,t)=>t.keyPacket.created-e.keyPacket.created));let s;for(const r of a)if(!e||r.getKeyID().equals(e))try{await r.verify(t,i);const e={key:n,bind:r.keyPacket},a=await qu(r.bindingSignatures,n,ie.signature.subkeyBinding,e,t,i);if(Zu(r.keyPacket,a))return Xu(r.keyPacket,i),r}catch(e){s=e}try{const a=await this.getPrimaryUser(t,r,i);if((!e||n.getKeyID().equals(e))&&Zu(n,a.selfCertification))return Xu(n,i),this}catch(e){s=e}throw $.wrapError("Could not find valid encryption key packet in key "+this.getKeyID().toHex(),s)}async isRevoked(e,t,r=new Date,i=ne){return Hu(this.keyPacket,ie.signature.keyRevocation,{key:this.keyPacket},this.revocationSignatures,e,t,r,i)}async verifyPrimaryKey(e=new Date,t={},r=ne){const i=this.keyPacket;if(await this.isRevoked(null,null,e,r))throw Error("Primary key is revoked");const{selfCertification:n}=await this.getPrimaryUser(e,t,r);if(Fu(i,n,e))throw Error("Primary key is expired");const a=await qu(this.directSignatures,i,ie.signature.key,{key:i},e,r).catch((()=>{}));if(a&&Fu(i,a,e))throw Error("Primary key is expired")}async getExpirationTime(e,t=ne){let r;try{const{selfCertification:i}=await this.getPrimaryUser(null,e,t),n=Gu(this.keyPacket,i),a=i.getExpirationTime(),s=await qu(this.directSignatures,this.keyPacket,ie.signature.key,{key:this.keyPacket},null,t).catch((()=>{}));if(s){const e=Gu(this.keyPacket,s);r=Math.min(n,a,e)}else r=ne.subkeys.some((e=>t.hasSameFingerprintAs(e)))))))throw Error("Cannot update public key with private key if subkeys mismatch");return e.update(this,r)}const i=this.clone();return await Wu(e,i,"revocationSignatures",t,(n=>Hu(i.keyPacket,ie.signature.keyRevocation,i,[n],null,e.keyPacket,t,r))),await Wu(e,i,"directSignatures",t),await Promise.all(e.users.map((async e=>{const n=i.users.filter((t=>e.userID&&e.userID.equals(t.userID)||e.userAttribute&&e.userAttribute.equals(t.userAttribute)));if(n.length>0)await Promise.all(n.map((i=>i.update(e,t,r))));else{const t=e.clone();t.mainKey=i,i.users.push(t)}}))),await Promise.all(e.subkeys.map((async e=>{const n=i.subkeys.filter((t=>t.hasSameFingerprintAs(e)));if(n.length>0)await Promise.all(n.map((i=>i.update(e,t,r))));else{const t=e.clone();t.mainKey=i,i.subkeys.push(t)}}))),i}async getRevocationCertificate(e=new Date,t=ne){const r={key:this.keyPacket},i=await qu(this.revocationSignatures,this.keyPacket,ie.signature.keyRevocation,r,e,t),n=new nu;return n.push(i),le(ie.armor.publicKey,n.write(),null,null,"This is a revocation certificate")}async applyRevocationCertificate(e,t=new Date,r=ne){const i=await fe(e,r),n=(await nu.fromBinary(i.data,eh,r)).findPacket(ie.packet.signature);if(!n||n.signatureType!==ie.signature.keyRevocation)throw Error("Could not find revocation signature packet");if(!n.issuerKeyID.equals(this.getKeyID()))throw Error("Revocation signature does not match key");try{await n.verify(this.keyPacket,ie.signature.keyRevocation,{key:this.keyPacket},t,void 0,r)}catch(e){throw $.wrapError("Could not verify revocation signature",e)}const a=this.clone();return a.revocationSignatures.push(n),a}async signPrimaryUser(e,t,r,i=ne){const{index:n,user:a}=await this.getPrimaryUser(t,r,i),s=await a.certify(e,t,i),o=this.clone();return o.users[n]=s,o}async signAllUsers(e,t=new Date,r=ne){const i=this.clone();return i.users=await Promise.all(this.users.map((function(i){return i.certify(e,t,r)}))),i}async verifyPrimaryUser(e,t=new Date,r,i=ne){const n=this.keyPacket,{user:a}=await this.getPrimaryUser(t,r,i);return e?await a.verifyAllCertifications(e,t,i):[{keyID:n.getKeyID(),valid:await a.verify(t,i).catch((()=>!1))}]}async verifyAllUsers(e,t=new Date,r=ne){const i=this.keyPacket,n=[];return await Promise.all(this.users.map((async a=>{const s=e?await a.verifyAllCertifications(e,t,r):[{keyID:i.getKeyID(),valid:await a.verify(t,r).catch((()=>!1))}];n.push(...s.map((e=>({userID:a.userID.userID,keyID:e.keyID,valid:e.valid}))))}))),n}}["getKeyID","getFingerprint","getAlgorithmInfo","getCreationTime","hasSameFingerprintAs"].forEach((e=>{ih.prototype[e]=Ju.prototype[e]}));class nh extends ih{constructor(e){if(super(),this.keyPacket=null,this.revocationSignatures=[],this.directSignatures=[],this.users=[],this.subkeys=[],e&&(this.packetListToStructure(e,new Set([ie.packet.secretKey,ie.packet.secretSubkey])),!this.keyPacket))throw Error("Invalid key: missing public-key packet")}isPrivate(){return!1}toPublic(){return this}armor(e=ne){return le(ie.armor.publicKey,this.toPacketList().write(),void 0,void 0,void 0,e)}}class ah extends nh{constructor(e){if(super(),this.packetListToStructure(e,new Set([ie.packet.publicKey,ie.packet.publicSubkey])),!this.keyPacket)throw Error("Invalid key: missing private-key packet")}isPrivate(){return!0}toPublic(){const e=new nu,t=this.toPacketList();for(const r of t)switch(r.constructor.tag){case ie.packet.secretKey:{const t=_u.fromSecretKeyPacket(r);e.push(t);break}case ie.packet.secretSubkey:{const t=Eu.fromSecretSubkeyPacket(r);e.push(t);break}default:e.push(r)}return new nh(e)}armor(e=ne){return le(ie.armor.privateKey,this.toPacketList().write(),void 0,void 0,void 0,e)}async getDecryptionKeys(e,t=new Date,r={},i=ne){const n=this.keyPacket,a=[];for(let r=0;re.isDecrypted()))}async validate(e=ne){if(!this.isPrivate())throw Error("Cannot validate a public key");let t;if(this.keyPacket.isDummy()){const r=await this.getSigningKey(null,null,void 0,{...e,rejectPublicKeyAlgorithms:new Set,minRSABits:0});r&&!r.keyPacket.isDummy()&&(t=r.keyPacket)}else t=this.keyPacket;if(t)return t.validate();{const e=this.getKeys(),t=e.map((e=>e.keyPacket.isDummy())).every(Boolean);if(t)throw Error("Cannot validate an all-gnu-dummy key");return Promise.all(e.map((async e=>e.keyPacket.validate())))}}clearPrivateParams(){this.getKeys().forEach((({keyPacket:e})=>{e.isDecrypted()&&e.clearPrivateParams()}))}async revoke({flag:e=ie.reasonForRevocation.noReason,string:t=""}={},r=new Date,i=ne){if(!this.isPrivate())throw Error("Need private key for revoking");const n={key:this.keyPacket},a=this.clone();return a.revocationSignatures.push(await Lu(n,null,this.keyPacket,{signatureType:ie.signature.keyRevocation,reasonForRevocationFlag:ie.write(ie.reasonForRevocation,e),reasonForRevocationString:t},r,void 0,void 0,void 0,i)),a}async addSubkey(e={}){const t={...ne,...e.config};if(e.passphrase)throw Error("Subkey could not be encrypted here, please encrypt whole key");if(e.rsaBitse!==t))]}const s=Ku.fromObject(t),o={};o.userID=s,o.key=e;const c=new eu;return c.signatureType=ie.signature.certGeneric,c.publicKeyAlgorithm=e.algorithm,c.hashAlgorithm=await Nu(null,e,void 0,void 0,i),c.keyFlags=[ie.keyFlags.certifyKeys|ie.keyFlags.signData],c.preferredSymmetricAlgorithms=a([ie.symmetric.aes256,ie.symmetric.aes128,ie.symmetric.aes192],i.preferredSymmetricAlgorithm),i.aeadProtect&&(c.preferredAEADAlgorithms=a([ie.aead.eax,ie.aead.ocb],i.preferredAEADAlgorithm)),c.preferredHashAlgorithms=a([ie.hash.sha256,ie.hash.sha512],i.preferredHashAlgorithm),c.preferredCompressionAlgorithms=a([ie.compression.zlib,ie.compression.zip,ie.compression.uncompressed],i.preferredCompressionAlgorithm),0===n&&(c.isPrimaryUserID=!0),c.features=[0],c.features[0]|=ie.features.modificationDetection,i.aeadProtect&&(c.features[0]|=ie.features.aead),i.v5Keys&&(c.features[0]|=ie.features.v5Keys),r.keyExpirationTime>0&&(c.keyExpirationTime=r.keyExpirationTime,c.keyNeverExpires=!1),await c.sign(e,o,r.date),{userIDPacket:s,signaturePacket:c}}))).then((e=>{e.forEach((({userIDPacket:e,signaturePacket:t})=>{n.push(e),n.push(t)}))})),await Promise.all(t.map((async function(t,n){const a=r.subkeys[n];return{secretSubkeyPacket:t,subkeySignaturePacket:await Ou(t,e,a,i)}}))).then((e=>{e.forEach((({secretSubkeyPacket:e,subkeySignaturePacket:t})=>{n.push(e),n.push(t)}))}));const a={key:e};return n.push(await Lu(a,null,e,{signatureType:ie.signature.keyRevocation,reasonForRevocationFlag:ie.reasonForRevocation.noReason,reasonForRevocationString:""},r.date,void 0,void 0,void 0,i)),r.passphrase&&e.clearPrivateParams(),await Promise.all(t.map((async function(e,t){r.subkeys[t].passphrase&&e.clearPrivateParams()}))),new ah(n)}async function uh({armoredKey:e,binaryKey:t,config:r,...i}){if(r={...ne,...r},!e&&!t)throw Error("readKey: must pass options object containing `armoredKey` or `binaryKey`");if(e&&!$.isString(e))throw Error("readKey: options.armoredKey must be a string");if(t&&!$.isUint8Array(t))throw Error("readKey: options.binaryKey must be a Uint8Array");const n=Object.keys(i);if(n.length>0)throw Error("Unknown option: "+n.join(", "));let a;if(e){const{type:t,data:i}=await fe(e,r);if(t!==ie.armor.publicKey&&t!==ie.armor.privateKey)throw Error("Armored text not of type key");a=i}else a=t;return oh(await nu.fromBinary(a,sh,r))}async function hh({armoredKey:e,binaryKey:t,config:r,...i}){if(r={...ne,...r},!e&&!t)throw Error("readPrivateKey: must pass options object containing `armoredKey` or `binaryKey`");if(e&&!$.isString(e))throw Error("readPrivateKey: options.armoredKey must be a string");if(t&&!$.isUint8Array(t))throw Error("readPrivateKey: options.binaryKey must be a Uint8Array");const n=Object.keys(i);if(n.length>0)throw Error("Unknown option: "+n.join(", "));let a;if(e){const{type:t,data:i}=await fe(e,r);if(t!==ie.armor.privateKey)throw Error("Armored text not of type private key");a=i}else a=t;const s=await nu.fromBinary(a,sh,r);return new ah(s)}async function dh({armoredKeys:e,binaryKeys:t,config:r,...i}){r={...ne,...r};let n=e||t;if(!n)throw Error("readKeys: must pass options object containing `armoredKeys` or `binaryKeys`");if(e&&!$.isString(e))throw Error("readKeys: options.armoredKeys must be a string");if(t&&!$.isUint8Array(t))throw Error("readKeys: options.binaryKeys must be a Uint8Array");const a=Object.keys(i);if(a.length>0)throw Error("Unknown option: "+a.join(", "));if(e){const{type:t,data:i}=await fe(e,r);if(t!==ie.armor.publicKey&&t!==ie.armor.privateKey)throw Error("Armored text not of type key");n=i}const s=[],o=await nu.fromBinary(n,sh,r),c=o.indexOfTag(ie.packet.publicKey,ie.packet.secretKey);if(0===c.length)throw Error("No key packet found");for(let e=0;e0)return t.map((e=>e.issuerKeyID));return e.packets.filterByTag(ie.packet.signature).map((e=>e.issuerKeyID))}async decrypt(e,t,r,i=new Date,n=ne){const a=r||await this.decryptSessionKeys(e,t,i,n),s=this.packets.filterByTag(ie.packet.symmetricallyEncryptedData,ie.packet.symEncryptedIntegrityProtectedData,ie.packet.aeadEncryptedData);if(0===s.length)throw Error("No encrypted data found");const o=s[0];let c=null;const u=Promise.all(a.map((async({algorithm:e,data:t})=>{if(!$.isUint8Array(t)||!$.isString(e))throw Error("Invalid session key for decryption.");try{const r=ie.write(ie.symmetric,e);await o.decrypt(r,t,n)}catch(e){$.printDebugError(e),c=e}})));if(L(o.encrypted),o.encrypted=null,await u,!o.packets||!o.packets.length)throw c||Error("Decryption failed.");const h=new bh(o.packets);return o.packets=new nu,h}async decryptSessionKeys(e,t,r=new Date,i=ne){let n,a=[];if(t){const e=this.packets.filterByTag(ie.packet.symEncryptedSessionKey);if(0===e.length)throw Error("No symmetrically encrypted session key packet found.");await Promise.all(t.map((async function(t,r){let n;n=r?await nu.fromBinary(e.write(),ph,i):e,await Promise.all(n.map((async function(e){try{await e.decrypt(t),a.push(e)}catch(e){$.printDebugError(e)}})))})))}else{if(!e)throw Error("No key or password specified.");{const t=this.packets.filterByTag(ie.packet.publicKeyEncryptedSessionKey);if(0===t.length)throw Error("No public key encrypted session key packet found.");await Promise.all(t.map((async function(t){await Promise.all(e.map((async function(e){let s=[ie.symmetric.aes256,ie.symmetric.aes128,ie.symmetric.tripledes,ie.symmetric.cast5];try{const t=await e.getPrimaryUser(r,void 0,i);t.selfCertification.preferredSymmetricAlgorithms&&(s=s.concat(t.selfCertification.preferredSymmetricAlgorithms))}catch(e){}const o=(await e.getDecryptionKeys(t.publicKeyID,null,void 0,i)).map((e=>e.keyPacket));await Promise.all(o.map((async function(e){if(!e||e.isDummy())return;if(!e.isDecrypted())throw Error("Decryption key is not decrypted.");if(i.constantTimePKCS1Decryption&&(t.publicKeyAlgorithm===ie.publicKey.rsaEncrypt||t.publicKeyAlgorithm===ie.publicKey.rsaEncryptSign||t.publicKeyAlgorithm===ie.publicKey.rsaSign||t.publicKeyAlgorithm===ie.publicKey.elgamal)){const r=t.write();await Promise.all(Array.from(i.constantTimePKCS1DecryptionSupportedSymmetricAlgorithms).map((async t=>{const i=new gu;i.read(r);const s={sessionKeyAlgorithm:t,sessionKey:ua.generateSessionKey(t)};try{await i.decrypt(e,s),a.push(i)}catch(e){$.printDebugError(e),n=e}})))}else try{if(await t.decrypt(e),!s.includes(ie.write(ie.symmetric,t.sessionKeyAlgorithm)))throw Error("A non-preferred symmetric algorithm was used.");a.push(t)}catch(e){$.printDebugError(e),n=e}})))}))),L(t.encrypted),t.encrypted=null})))}}if(a.length>0){if(a.length>1){const e=new Set;a=a.filter((t=>{const r=t.sessionKeyAlgorithm+$.uint8ArrayToString(t.sessionKey);return!e.has(r)&&(e.add(r),!0)}))}return a.map((e=>({data:e.sessionKey,algorithm:ie.read(ie.symmetric,e.sessionKeyAlgorithm)})))}throw n||Error("Session key decryption failed.")}getLiteralData(){const e=this.unwrapCompressed().packets.findPacket(ie.packet.literalData);return e&&e.getBytes()||null}getFilename(){const e=this.unwrapCompressed().packets.findPacket(ie.packet.literalData);return e&&e.getFilename()||null}getText(){const e=this.unwrapCompressed().packets.findPacket(ie.packet.literalData);return e?e.getText():null}static async generateSessionKey(e=[],t=new Date,r=[],i=ne){const n=await ju("symmetric",e,t,r,i),a=ie.read(ie.symmetric,n),s=i.aeadProtect&&await async function(e,t=new Date,r=[],i=ne){let n=!0;return await Promise.all(e.map((async function(e,a){const s=await e.getPrimaryUser(t,r[a],i);s.selfCertification.features&&s.selfCertification.features[0]&ie.features.aead||(n=!1)}))),n}(e,t,r,i)?ie.read(ie.aead,await ju("aead",e,t,r,i)):void 0;return{data:ua.generateSessionKey(n),algorithm:a,aeadAlgorithm:s}}async encrypt(e,t,r,i=!1,n=[],a=new Date,s=[],o=ne){if(r){if(!$.isUint8Array(r.data)||!$.isString(r.algorithm))throw Error("Invalid session key for encryption.")}else if(e&&e.length)r=await bh.generateSessionKey(e,a,s,o);else{if(!t||!t.length)throw Error("No keys, passwords, or session key provided.");r=await bh.generateSessionKey(void 0,void 0,void 0,o)}const{data:c,algorithm:u,aeadAlgorithm:h}=r,d=await bh.encryptSessionKey(c,u,h,e,t,i,n,a,s,o);let f;h?(f=new mu,f.aeadAlgorithm=ie.write(ie.aead,h)):f=new yu,f.packets=this.packets;const l=ie.write(ie.symmetric,u);return await f.encrypt(l,c,o),d.packets.push(f),f.packets=new nu,d}static async encryptSessionKey(e,t,r,i,n,a=!1,s=[],o=new Date,c=[],u=ne){const h=new nu,d=ie.write(ie.symmetric,t),f=r&&ie.write(ie.aead,r);if(i){const t=await Promise.all(i.map((async function(t,r){const i=await t.getEncryptionKey(s[r],o,c,u),n=new gu;return n.publicKeyID=a?pe.wildcard():i.getKeyID(),n.publicKeyAlgorithm=i.keyPacket.algorithm,n.sessionKey=e,n.sessionKeyAlgorithm=d,await n.encrypt(i.keyPacket),delete n.sessionKey,n})));h.push(...t)}if(n){const t=async function(e,t){try{return await e.decrypt(t),1}catch(e){return 0}},r=(e,t)=>e+t,i=async function(e,a,s,o){const c=new vu(u);if(c.sessionKey=e,c.sessionKeyAlgorithm=a,s&&(c.aeadAlgorithm=s),await c.encrypt(o,u),u.passwordCollisionCheck){if(1!==(await Promise.all(n.map((e=>t(c,e))))).reduce(r))return i(e,a,o)}return delete c.sessionKey,c},a=await Promise.all(n.map((t=>i(e,d,f,t))));h.push(...a)}return new bh(h)}async sign(e=[],t=null,r=[],i=new Date,n=[],a=[],s=ne){const o=new nu,c=this.packets.findPacket(ie.packet.literalData);if(!c)throw Error("No literal data packet to sign.");let u,h;const d=null===c.text?ie.signature.binary:ie.signature.text;if(t)for(h=t.packets.filterByTag(ie.packet.signature),u=h.length-1;u>=0;u--){const t=h[u],r=new ru;r.signatureType=t.signatureType,r.hashAlgorithm=t.hashAlgorithm,r.publicKeyAlgorithm=t.publicKeyAlgorithm,r.issuerKeyID=t.issuerKeyID,e.length||0!==u||(r.flags=1),o.push(r)}return await Promise.all(Array.from(e).reverse().map((async function(t,a){if(!t.isPrivate())throw Error("Need private key for signing");const o=r[e.length-1-a],c=await t.getSigningKey(o,i,n,s),u=new ru;return u.signatureType=d,u.hashAlgorithm=await Nu(t,c.keyPacket,i,n,s),u.publicKeyAlgorithm=c.keyPacket.algorithm,u.issuerKeyID=c.getKeyID(),a===e.length-1&&(u.flags=1),u}))).then((e=>{e.forEach((e=>o.push(e)))})),o.push(c),o.push(...await mh(c,e,t,r,i,n,a,!1,s)),new bh(o)}compress(e,t=ne){if(e===ie.compression.uncompressed)return this;const r=new su(t);r.algorithm=e,r.packets=this.packets;const i=new nu;return i.push(r),new bh(i)}async signDetached(e=[],t=null,r=[],i=new Date,n=[],a=[],s=ne){const o=this.packets.findPacket(ie.packet.literalData);if(!o)throw Error("No literal data packet to sign.");return new Iu(await mh(o,e,t,r,i,n,a,!0,s))}async verify(e,t=new Date,r=ne){const i=this.unwrapCompressed(),n=i.packets.filterByTag(ie.packet.literalData);if(1!==n.length)throw Error("Can only verify message with one literal data packet.");s(i.packets.stream)&&i.packets.push(...await j(i.packets.stream,(e=>e||[])));const a=i.packets.filterByTag(ie.packet.onePassSignature).reverse(),o=i.packets.filterByTag(ie.packet.signature);return a.length&&!o.length&&$.isStream(i.packets.stream)&&!s(i.packets.stream)?(await Promise.all(a.map((async e=>{e.correspondingSig=new Promise(((t,r)=>{e.correspondingSigResolve=t,e.correspondingSigReject=r})),e.signatureData=W((async()=>(await e.correspondingSig).signatureData)),e.hashed=j(await e.hash(e.signatureType,n[0],void 0,!1)),e.hashed.catch((()=>{}))}))),i.packets.stream=T(i.packets.stream,(async(e,t)=>{const r=K(e),i=D(t);try{for(let e=0;e{t.correspondingSigReject(e)})),await i.abort(e)}})),gh(a,n,e,t,!1,r)):gh(o,n,e,t,!1,r)}verifyDetached(e,t,r=new Date,i=ne){const n=this.unwrapCompressed().packets.filterByTag(ie.packet.literalData);if(1!==n.length)throw Error("Can only verify message with one literal data packet.");return gh(e.packets,n,t,r,!0,i)}unwrapCompressed(){const e=this.packets.filterByTag(ie.packet.compressedData);return e.length?new bh(e[0].packets):this}async appendSignature(e,t=ne){await this.packets.read($.isUint8Array(e)?e:(await fe(e)).data,yh,t)}write(){return this.packets.write()}armor(e=ne){return le(ie.armor.message,this.write(),null,null,null,e)}}async function mh(e,t,r=null,i=[],n=new Date,a=[],s=[],o=!1,c=ne){const u=new nu,h=null===e.text?ie.signature.binary:ie.signature.text;if(await Promise.all(t.map((async(t,r)=>{const u=a[r];if(!t.isPrivate())throw Error("Need private key for signing");const d=await t.getSigningKey(i[r],n,u,c);return Lu(e,t,d.keyPacket,{signatureType:h},n,u,s,o,c)}))).then((e=>{u.push(...e)})),r){const e=r.packets.filterByTag(ie.packet.signature);u.push(...e)}return u}async function gh(e,t,r,i=new Date,n=!1,a=ne){return Promise.all(e.filter((function(e){return["text","binary"].includes(ie.read(ie.signature,e.signatureType))})).map((async function(e){return async function(e,t,r,i=new Date,n=!1,a=ne){let s,o;for(const t of r){const r=t.getKeys(e.issuerKeyID);if(r.length>0){s=t,o=r[0];break}}const c=e instanceof ru?e.correspondingSig:e,u={keyID:e.issuerKeyID,verified:(async()=>{if(!o)throw Error("Could not find signing key with key ID "+e.issuerKeyID.toHex());await e.verify(o.keyPacket,e.signatureType,t[0],i,n,a);const r=await c;if(o.getCreationTime()>r.created)throw Error("Key is newer than the signature");try{await s.getSigningKey(o.getKeyID(),r.created,void 0,a)}catch(e){if(!a.allowInsecureVerificationWithReformattedKeys||!e.message.match(/Signature creation time is in the future/))throw e;await s.getSigningKey(o.getKeyID(),i,void 0,a)}return!0})(),signature:(async()=>{const e=await c,t=new nu;return e&&t.push(e),new Iu(t)})()};return u.signature.catch((()=>{})),u.verified.catch((()=>{})),u}(e,t,r,i,n,a)})))}async function wh({armoredMessage:e,binaryMessage:t,config:r,...i}){r={...ne,...r};let n=e||t;if(!n)throw Error("readMessage: must pass options object containing `armoredMessage` or `binaryMessage`");if(e&&!$.isString(e)&&!$.isStream(e))throw Error("readMessage: options.armoredMessage must be a string or stream");if(t&&!$.isUint8Array(t)&&!$.isStream(t))throw Error("readMessage: options.binaryMessage must be a Uint8Array or stream");const a=Object.keys(i);if(a.length>0)throw Error("Unknown option: "+a.join(", "));const s=$.isStream(n);if(s&&(await E(),n=x(n)),e){const{type:e,data:t}=await fe(n,r);if(e!==ie.armor.message)throw Error("Armored text not of type message");n=t}const o=await nu.fromBinary(n,lh,r),c=new bh(o);return c.fromStream=s,c}async function vh({text:e,binary:t,filename:r,date:i=new Date,format:n=(void 0!==e?"utf8":"binary"),...a}){let s=void 0!==e?e:t;if(void 0===s)throw Error("createMessage: must pass options object containing `text` or `binary`");if(e&&!$.isString(e)&&!$.isStream(e))throw Error("createMessage: options.text must be a string or stream");if(t&&!$.isUint8Array(t)&&!$.isStream(t))throw Error("createMessage: options.binary must be a Uint8Array or stream");const o=Object.keys(a);if(o.length>0)throw Error("Unknown option: "+o.join(", "));const c=$.isStream(s);c&&(await E(),s=x(s));const u=new Xc(i);void 0!==e?u.setText(s,ie.write(ie.literal,n)):u.setBytes(s,ie.write(ie.literal,n)),void 0!==r&&u.setFilename(r);const h=new nu;h.push(u);const d=new bh(h);return d.fromStream=c,d}const _h=/*#__PURE__*/$.constructAllowedPackets([eu]);class kh{constructor(e,t){if(this.text=$.removeTrailingSpaces(e).replace(/\r?\n/g,"\r\n"),t&&!(t instanceof Iu))throw Error("Invalid signature input");this.signature=t||new Iu(new nu)}getSigningKeyIDs(){const e=[];return this.signature.packets.forEach((function(t){e.push(t.issuerKeyID)})),e}async sign(e,t=null,r=[],i=new Date,n=[],a=[],s=ne){const o=new Xc;o.setText(this.text);const c=new Iu(await mh(o,e,t,r,i,n,a,!0,s));return new kh(this.text,c)}verify(e,t=new Date,r=ne){const i=this.signature.packets,n=new Xc;return n.setText(this.text),gh(i,[n],e,t,!0,r)}getText(){return this.text.replace(/\r\n/g,"\n")}armor(e=ne){let t=this.signature.packets.map((function(e){return ie.read(ie.hash,e.hashAlgorithm).toUpperCase()}));t=t.filter((function(e,t,r){return r.indexOf(e)===t}));const r={hash:t.join(),text:this.text,data:this.signature.packets.write()};return le(ie.armor.signed,r,void 0,void 0,void 0,e)}}async function Ah({cleartextMessage:e,config:t,...r}){if(t={...ne,...t},!e)throw Error("readCleartextMessage: must pass options object containing `cleartextMessage`");if(!$.isString(e))throw Error("readCleartextMessage: options.cleartextMessage must be a string");const i=Object.keys(r);if(i.length>0)throw Error("Unknown option: "+i.join(", "));const n=await fe(e);if(n.type!==ie.armor.signed)throw Error("No cleartext signed message.");const a=await nu.fromBinary(n.data,_h,t);!function(e,t){const r=function(e){const r=e=>t=>e.hashAlgorithm===t;for(let i=0;i0)throw Error("Unknown option: "+r.join(", "));return new kh(e)}async function Eh({userIDs:e=[],passphrase:t,type:r="ecc",rsaBits:i=4096,curve:n="curve25519",keyExpirationTime:a=0,date:s=new Date,subkeys:o=[{}],format:c="armored",config:u,...h}){Nh(u={...ne,...u}),e=jh(e);const d=Object.keys(h);if(d.length>0)throw Error("Unknown option: "+d.join(", "));if(0===e.length)throw Error("UserIDs are required for key generation");if("rsa"===r&&iVu(e.subkeys[r],e)));let r=[zu(e,t)];r=r.concat(e.subkeys.map((e=>Tu(e,t))));const i=await Promise.all(r),n=await ch(i[0],i.slice(1),e,t),a=await n.getRevocationCertificate(e.date,t);return n.revocationSignatures=[],{key:n,revocationCertificate:a}}(f,u);return e.getKeys().forEach((({keyPacket:e})=>Xu(e,u))),{privateKey:Hh(e,c,u),publicKey:Hh(e.toPublic(),c,u),revocationCertificate:t}}catch(e){throw $.wrapError("Error generating keypair",e)}}async function Ph({privateKey:e,userIDs:t=[],passphrase:r,keyExpirationTime:i=0,date:n,format:a="armored",config:s,...o}){Nh(s={...ne,...s}),t=jh(t);const c=Object.keys(o);if(c.length>0)throw Error("Unknown option: "+c.join(", "));if(0===t.length)throw Error("UserIDs are required for key reformat");const u={privateKey:e,userIDs:t,passphrase:r,keyExpirationTime:i,date:n};try{const{key:e,revocationCertificate:t}=await async function(e,t){e=o(e);const{privateKey:r}=e;if(!r.isPrivate())throw Error("Cannot reformat a public key");if(r.keyPacket.isDummy())throw Error("Cannot reformat a gnu-dummy primary key");if(!r.getKeys().every((({keyPacket:e})=>e.isDecrypted())))throw Error("Key is not decrypted");const i=r.keyPacket;e.subkeys||(e.subkeys=await Promise.all(r.subkeys.map((async e=>{const r=e.keyPacket,n={key:i,bind:r},a=await qu(e.bindingSignatures,i,ie.signature.subkeyBinding,n,null,t).catch((()=>({})));return{sign:a.keyFlags&&a.keyFlags[0]&ie.keyFlags.signData}}))));const n=r.subkeys.map((e=>e.keyPacket));if(e.subkeys.length!==n.length)throw Error("Number of subkey options does not match number of subkeys");e.subkeys=e.subkeys.map((t=>o(t,e)));const a=await ch(i,n,e,t),s=await a.getRevocationCertificate(e.date,t);return a.revocationSignatures=[],{key:a,revocationCertificate:s};function o(e,t={}){return e.keyExpirationTime=e.keyExpirationTime||t.keyExpirationTime,e.passphrase=$.isString(e.passphrase)?e.passphrase:t.passphrase,e.date=e.date||t.date,e}}(u,s);return{privateKey:Hh(e,a,s),publicKey:Hh(e.toPublic(),a,s),revocationCertificate:t}}catch(e){throw $.wrapError("Error reformatting keypair",e)}}async function xh({key:e,revocationCertificate:t,reasonForRevocation:r,date:i=new Date,format:n="armored",config:a,...s}){Nh(a={...ne,...a});const o=Object.keys(s);if(o.length>0)throw Error("Unknown option: "+o.join(", "));try{const s=t?await e.applyRevocationCertificate(t,i,a):await e.revoke(r,i,a);return s.isPrivate()?{privateKey:Hh(s,n,a),publicKey:Hh(s.toPublic(),n,a)}:{privateKey:null,publicKey:Hh(s,n,a)}}catch(e){throw $.wrapError("Error revoking key",e)}}async function Mh({privateKey:e,passphrase:t,config:r,...i}){Nh(r={...ne,...r});const n=Object.keys(i);if(n.length>0)throw Error("Unknown option: "+n.join(", "));if(!e.isPrivate())throw Error("Cannot decrypt a public key");const a=e.clone(!0),s=$.isArray(t)?t:[t];try{return await Promise.all(a.getKeys().map((e=>$.anyPromise(s.map((t=>e.keyPacket.decrypt(t))))))),await a.validate(r),a}catch(e){throw a.clearPrivateParams(),$.wrapError("Error decrypting private key",e)}}async function Ch({privateKey:e,passphrase:t,config:r,...i}){Nh(r={...ne,...r});const n=Object.keys(i);if(n.length>0)throw Error("Unknown option: "+n.join(", "));if(!e.isPrivate())throw Error("Cannot encrypt a public key");const 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Date,config:u,...h}){if(Nh(u={...ne,...u}),zh(e),n=jh(n),t=jh(t),r=jh(r),i=jh(i),h.privateKeys)throw Error("The `privateKeys` option has been removed from openpgp.decrypt, pass `decryptionKeys` instead");if(h.publicKeys)throw Error("The `publicKeys` option has been removed from openpgp.decrypt, pass `verificationKeys` instead");const d=Object.keys(h);if(d.length>0)throw Error("Unknown option: "+d.join(", "));try{const h=await e.decrypt(t,r,i,c,u);n||(n=[]);const d={};if(d.signatures=o?await h.verifyDetached(o,n,c,u):await h.verify(n,c,u),d.data="binary"===s?h.getLiteralData():h.getText(),d.filename=h.getFilename(),Wh(d,e),a){if(0===n.length)throw Error("Verification keys are required to verify message signatures");if(0===d.signatures.length)throw Error("Message is not signed");d.data=C([d.data,W((async()=>{await $.anyPromise(d.signatures.map((e=>e.verified)))}))])}return d.data=await Lh(d.data,e.fromStream,s),d}catch(e){throw $.wrapError("Error decrypting message",e)}}async function Rh({message:e,signingKeys:t,format:r="armored",detached:i=!1,signingKeyIDs:n=[],date:a=new Date,signingUserIDs:s=[],signatureNotations:o=[],config:c,...u}){if(Nh(c={...ne,...c}),qh(e),Fh(r),t=jh(t),n=jh(n),s=jh(s),o=jh(o),u.privateKeys)throw Error("The `privateKeys` option has been removed from openpgp.sign, pass `signingKeys` instead");if(void 0!==u.armor)throw Error("The `armor` option has been removed from openpgp.sign, pass `format` instead.");const h=Object.keys(u);if(h.length>0)throw Error("Unknown option: "+h.join(", "));if(e instanceof kh&&"binary"===r)throw Error("Cannot return signed cleartext message in binary format");if(e instanceof kh&&i)throw Error("Cannot detach-sign a cleartext message");if(!t||0===t.length)throw Error("No signing keys provided");try{let u;if(u=i?await e.signDetached(t,void 0,n,a,s,o,c):await e.sign(t,void 0,n,a,s,o,c),"object"===r)return u;const h="armored"===r;return u=h?u.armor(c):u.write(),i&&(u=T(e.packets.write(),(async(e,t)=>{await 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byobRequest");r.buffer=t.buffer,mf(e,t.byteLength)}(this._associatedReadableByteStreamController,e)}}Object.defineProperties(nf.prototype,{respond:{enumerable:!0},respondWithNewView:{enumerable:!0},view:{enumerable:!0}}),"symbol"==typeof Gh.toStringTag&&Object.defineProperty(nf.prototype,Gh.toStringTag,{value:"ReadableStreamBYOBRequest",configurable:!0});class af{constructor(){throw new TypeError("Illegal constructor")}get byobRequest(){if(!sf(this))throw Sf("byobRequest");if(null===this._byobRequest&&this._pendingPullIntos.length>0){const e=this._pendingPullIntos.peek(),t=new Uint8Array(e.buffer,e.byteOffset+e.bytesFilled,e.byteLength-e.bytesFilled),r=Object.create(nf.prototype);!function(e,t,r){e._associatedReadableByteStreamController=t,e._view=r}(r,this,t),this._byobRequest=r}return this._byobRequest}get desiredSize(){if(!sf(this))throw Sf("desiredSize");return _f(this)}close(){if(!sf(this))throw Sf("close");if(this._closeRequested)throw new TypeError("The stream has already been closed; do not close it again!");const e=this._controlledReadableByteStream._state;if("readable"!==e)throw new TypeError(`The stream (in ${e} state) is not in the readable state and cannot be closed`);!function(e){const t=e._controlledReadableByteStream;if(e._closeRequested||"readable"!==t._state)return;if(e._queueTotalSize>0)return void(e._closeRequested=!0);if(e._pendingPullIntos.length>0){if(e._pendingPullIntos.peek().bytesFilled>0){const t=new TypeError("Insufficient bytes to fill elements in the given buffer");throw vf(e,t),t}}wf(e),ep(t)}(this)}enqueue(e){if(!sf(this))throw Sf("enqueue");if(Dd(e,1,"enqueue"),!ArrayBuffer.isView(e))throw new TypeError("chunk must be an array buffer view");if(0===e.byteLength)throw new TypeError("chunk must have non-zero byteLength");if(0===e.buffer.byteLength)throw new TypeError("chunk's buffer must have non-zero byteLength");if(this._closeRequested)throw new TypeError("stream is closed or draining");const t=this._controlledReadableByteStream._state;if("readable"!==t)throw new TypeError(`The stream (in ${t} state) is not in the readable state and cannot be enqueued to`);!function(e,t){const r=e._controlledReadableByteStream;if(e._closeRequested||"readable"!==r._state)return;const i=t.buffer,n=t.byteOffset,a=t.byteLength,s=i;if(Nd(r))if(0===Od(r))df(e,s,n,a);else{Fd(r,new Uint8Array(s,n,a),!1)}else xf(r)?(df(e,s,n,a),bf(e)):df(e,s,n,a);cf(e)}(this,e)}error(e=undefined){if(!sf(this))throw Sf("error");vf(this,e)}[Sd](e){if(this._pendingPullIntos.length>0){this._pendingPullIntos.peek().bytesFilled=0}tf(this);const t=this._cancelAlgorithm(e);return wf(this),t}[Ed](e){const t=this._controlledReadableByteStream;if(this._queueTotalSize>0){const t=this._queue.shift();this._queueTotalSize-=t.byteLength,pf(this);const r=new Uint8Array(t.buffer,t.byteOffset,t.byteLength);return void e._chunkSteps(r)}const r=this._autoAllocateChunkSize;if(void 0!==r){let t;try{t=new ArrayBuffer(r)}catch(t){return void e._errorSteps(t)}const i={buffer:t,byteOffset:0,byteLength:r,bytesFilled:0,elementSize:1,viewConstructor:Uint8Array,readerType:"default"};this._pendingPullIntos.push(i)}qd(t,e),cf(this)}}function sf(e){return!!Zh(e)&&!!Object.prototype.hasOwnProperty.call(e,"_controlledReadableByteStream")}function of(e){return!!Zh(e)&&!!Object.prototype.hasOwnProperty.call(e,"_associatedReadableByteStreamController")}function cf(e){const t=function(e){const t=e._controlledReadableByteStream;if("readable"!==t._state)return!1;if(e._closeRequested)return!1;if(!e._started)return!1;if(Nd(t)&&Od(t)>0)return!0;if(xf(t)&&Pf(t)>0)return!0;const r=_f(e);if(r>0)return!0;return!1}(e);if(!t)return;if(e._pulling)return void(e._pullAgain=!0);e._pulling=!0;ad(e._pullAlgorithm(),(()=>{e._pulling=!1,e._pullAgain&&(e._pullAgain=!1,cf(e))}),(t=>{vf(e,t)}))}function uf(e,t){let r=!1;"closed"===e._state&&(r=!0);const i=hf(t);"default"===t.readerType?Fd(e,i,r):function(e,t,r){const i=e._reader,n=i._readIntoRequests.shift();r?n._closeSteps(t):n._chunkSteps(t)}(e,i,r)}function hf(e){const t=e.bytesFilled,r=e.elementSize;return new e.viewConstructor(e.buffer,e.byteOffset,t/r)}function df(e,t,r,i){e._queue.push({buffer:t,byteOffset:r,byteLength:i}),e._queueTotalSize+=i}function ff(e,t){const r=t.elementSize,i=t.bytesFilled-t.bytesFilled%r,n=Math.min(e._queueTotalSize,t.byteLength-t.bytesFilled),a=t.bytesFilled+n,s=a-a%r;let o=n,c=!1;s>i&&(o=s-t.bytesFilled,c=!0);const u=e._queue;for(;o>0;){const r=u.peek(),i=Math.min(o,r.byteLength),n=t.byteOffset+t.bytesFilled;h=t.buffer,d=n,f=r.buffer,l=r.byteOffset,p=i,new Uint8Array(h).set(new Uint8Array(f,l,p),d),r.byteLength===i?u.shift():(r.byteOffset+=i,r.byteLength-=i),e._queueTotalSize-=i,lf(e,i,t),o-=i}var h,d,f,l,p;return c}function lf(e,t,r){yf(e),r.bytesFilled+=t}function pf(e){0===e._queueTotalSize&&e._closeRequested?(wf(e),ep(e._controlledReadableByteStream)):cf(e)}function yf(e){null!==e._byobRequest&&(e._byobRequest._associatedReadableByteStreamController=void 0,e._byobRequest._view=null,e._byobRequest=null)}function bf(e){for(;e._pendingPullIntos.length>0;){if(0===e._queueTotalSize)return;const t=e._pendingPullIntos.peek();ff(e,t)&&(gf(e),uf(e._controlledReadableByteStream,t))}}function mf(e,t){const r=e._pendingPullIntos.peek();if("closed"===e._controlledReadableByteStream._state){if(0!==t)throw new TypeError("bytesWritten must be 0 when calling respond() on a closed stream");!function(e,t){t.buffer=t.buffer;const r=e._controlledReadableByteStream;if(xf(r))for(;Pf(r)>0;)uf(r,gf(e))}(e,r)}else!function(e,t,r){if(r.bytesFilled+t>r.byteLength)throw new RangeError("bytesWritten out of range");if(lf(e,t,r),r.bytesFilled0){const t=r.byteOffset+r.bytesFilled,n=r.buffer.slice(t-i,t);df(e,n,0,n.byteLength)}r.buffer=r.buffer,r.bytesFilled-=i,uf(e._controlledReadableByteStream,r),bf(e)}(e,t,r);cf(e)}function gf(e){const t=e._pendingPullIntos.shift();return yf(e),t}function wf(e){e._pullAlgorithm=void 0,e._cancelAlgorithm=void 0}function vf(e,t){const r=e._controlledReadableByteStream;"readable"===r._state&&(!function(e){yf(e),e._pendingPullIntos=new ld}(e),tf(e),wf(e),tp(r,t))}function _f(e){const t=e._controlledReadableByteStream._state;return"errored"===t?null:"closed"===t?0:e._strategyHWM-e._queueTotalSize}function kf(e,t,r){const i=Object.create(af.prototype);let n=()=>{},a=()=>rd(void 0),s=()=>rd(void 0);void 0!==t.start&&(n=()=>t.start(i)),void 0!==t.pull&&(a=()=>t.pull(i)),void 0!==t.cancel&&(s=e=>t.cancel(e));const o=t.autoAllocateChunkSize;if(0===o)throw new TypeError("autoAllocateChunkSize must be greater than 0");!function(e,t,r,i,n,a,s){t._controlledReadableByteStream=e,t._pullAgain=!1,t._pulling=!1,t._byobRequest=null,t._queue=t._queueTotalSize=void 0,tf(t),t._closeRequested=!1,t._started=!1,t._strategyHWM=a,t._pullAlgorithm=i,t._cancelAlgorithm=n,t._autoAllocateChunkSize=s,t._pendingPullIntos=new ld,e._readableStreamController=t,ad(rd(r()),(()=>{t._started=!0,cf(t)}),(e=>{vf(t,e)}))}(e,i,n,a,s,r,o)}function Af(e){return new TypeError(`ReadableStreamBYOBRequest.prototype.${e} can only be used on a ReadableStreamBYOBRequest`)}function Sf(e){return new TypeError(`ReadableByteStreamController.prototype.${e} can only be used on a ReadableByteStreamController`)}function Ef(e,t){e._reader._readIntoRequests.push(t)}function Pf(e){return e._reader._readIntoRequests.length}function xf(e){const t=e._reader;return void 0!==t&&!!Cf(t)}Object.defineProperties(af.prototype,{close:{enumerable:!0},enqueue:{enumerable:!0},error:{enumerable:!0},byobRequest:{enumerable:!0},desiredSize:{enumerable:!0}}),"symbol"==typeof Gh.toStringTag&&Object.defineProperty(af.prototype,Gh.toStringTag,{value:"ReadableByteStreamController",configurable:!0});class Mf{constructor(e){if(Dd(e,1,"ReadableStreamBYOBReader"),Td(e,"First parameter"),Ql(e))throw new TypeError("This stream has already been locked for exclusive reading by another reader");if(!sf(e._readableStreamController))throw new TypeError("Cannot construct a ReadableStreamBYOBReader for a stream not constructed with a byte source");pd(this,e),this._readIntoRequests=new ld}get closed(){return Cf(this)?this._closedPromise:id(Kf("closed"))}cancel(e=undefined){return Cf(this)?void 0===this._ownerReadableStream?id(md("cancel")):yd(this,e):id(Kf("cancel"))}read(e){if(!Cf(this))return id(Kf("read"));if(!ArrayBuffer.isView(e))return id(new TypeError("view must be an array buffer view"));if(0===e.byteLength)return id(new TypeError("view must have non-zero byteLength"));if(0===e.buffer.byteLength)return id(new TypeError("view's buffer must have non-zero byteLength"));if(void 0===this._ownerReadableStream)return id(md("read from"));let t,r;const i=td(((e,i)=>{t=e,r=i}));return function(e,t,r){const i=e._ownerReadableStream;i._disturbed=!0,"errored"===i._state?r._errorSteps(i._storedError):function(e,t,r){const i=e._controlledReadableByteStream;let n=1;t.constructor!==DataView&&(n=t.constructor.BYTES_PER_ELEMENT);const a=t.constructor,s={buffer:t.buffer,byteOffset:t.byteOffset,byteLength:t.byteLength,bytesFilled:0,elementSize:n,viewConstructor:a,readerType:"byob"};if(e._pendingPullIntos.length>0)return e._pendingPullIntos.push(s),void Ef(i,r);if("closed"!==i._state){if(e._queueTotalSize>0){if(ff(e,s)){const t=hf(s);return pf(e),void r._chunkSteps(t)}if(e._closeRequested){const t=new TypeError("Insufficient bytes to fill elements in the given buffer");return vf(e,t),void r._errorSteps(t)}}e._pendingPullIntos.push(s),Ef(i,r),cf(e)}else{const e=new a(s.buffer,s.byteOffset,0);r._closeSteps(e)}}(i._readableStreamController,t,r)}(this,e,{_chunkSteps:e=>t({value:e,done:!1}),_closeSteps:e=>t({value:e,done:!0}),_errorSteps:e=>r(e)}),i}releaseLock(){if(!Cf(this))throw Kf("releaseLock");if(void 0!==this._ownerReadableStream){if(this._readIntoRequests.length>0)throw new TypeError("Tried to release a reader lock when that reader has pending read() calls un-settled");bd(this)}}}function Cf(e){return!!Zh(e)&&!!Object.prototype.hasOwnProperty.call(e,"_readIntoRequests")}function Kf(e){return new TypeError(`ReadableStreamBYOBReader.prototype.${e} can only be used on a ReadableStreamBYOBReader`)}function Df(e,t){const{highWaterMark:r}=e;if(void 0===r)return t;if(Xd(r)||r<0)throw new RangeError("Invalid highWaterMark");return r}function Rf(e){const{size:t}=e;return t||(()=>1)}function Uf(e,t){Md(e,t);const r=null==e?void 0:e.highWaterMark,i=null==e?void 0:e.size;return{highWaterMark:void 0===r?void 0:Ud(r),size:void 0===i?void 0:If(i,t+" has member 'size' that")}}function If(e,t){return Cd(e,t),t=>Ud(e(t))}function Bf(e,t,r){return Cd(e,r),r=>fd(e,t,[r])}function Tf(e,t,r){return Cd(e,r),()=>fd(e,t,[])}function zf(e,t,r){return Cd(e,r),r=>dd(e,t,[r])}function qf(e,t,r){return Cd(e,r),(r,i)=>fd(e,t,[r,i])}function Ff(e,t){if(!Lf(e))throw new TypeError(t+" is not a WritableStream.")}Object.defineProperties(Mf.prototype,{cancel:{enumerable:!0},read:{enumerable:!0},releaseLock:{enumerable:!0},closed:{enumerable:!0}}),"symbol"==typeof Gh.toStringTag&&Object.defineProperty(Mf.prototype,Gh.toStringTag,{value:"ReadableStreamBYOBReader",configurable:!0});class Of{constructor(e={},t={}){void 0===e?e=null:Kd(e,"First parameter");const r=Uf(t,"Second parameter"),i=function(e,t){Md(e,t);const r=null==e?void 0:e.abort,i=null==e?void 0:e.close,n=null==e?void 0:e.start,a=null==e?void 0:e.type,s=null==e?void 0:e.write;return{abort:void 0===r?void 0:Bf(r,e,t+" has member 'abort' that"),close:void 0===i?void 0:Tf(i,e,t+" has member 'close' that"),start:void 0===n?void 0:zf(n,e,t+" has member 'start' that"),write:void 0===s?void 0:qf(s,e,t+" has member 'write' that"),type:a}}(e,"First parameter");jf(this);if(void 0!==i.type)throw new RangeError("Invalid type is specified");const n=Rf(r);!function(e,t,r,i){const n=Object.create(ol.prototype);let a=()=>{},s=()=>rd(void 0),o=()=>rd(void 0),c=()=>rd(void 0);void 0!==t.start&&(a=()=>t.start(n));void 0!==t.write&&(s=e=>t.write(e,n));void 0!==t.close&&(o=()=>t.close());void 0!==t.abort&&(c=e=>t.abort(e));cl(e,n,a,s,o,c,r,i)}(this,i,Df(r,1),n)}get locked(){if(!Lf(this))throw yl("locked");return Wf(this)}abort(e=undefined){return Lf(this)?Wf(this)?id(new TypeError("Cannot abort a stream that already has a writer")):Hf(this,e):id(yl("abort"))}close(){return Lf(this)?Wf(this)?id(new TypeError("Cannot close a stream that already has a writer")):Yf(this)?id(new TypeError("Cannot close an already-closing stream")):Gf(this):id(yl("close"))}getWriter(){if(!Lf(this))throw yl("getWriter");return Nf(this)}}function Nf(e){return new Jf(e)}function jf(e){e._state="writable",e._storedError=void 0,e._writer=void 0,e._writableStreamController=void 0,e._writeRequests=new ld,e._inFlightWriteRequest=void 0,e._closeRequest=void 0,e._inFlightCloseRequest=void 0,e._pendingAbortRequest=void 0,e._backpressure=!1}function Lf(e){return!!Zh(e)&&!!Object.prototype.hasOwnProperty.call(e,"_writableStreamController")}function Wf(e){return void 0!==e._writer}function Hf(e,t){const r=e._state;if("closed"===r||"errored"===r)return rd(void 0);if(void 0!==e._pendingAbortRequest)return e._pendingAbortRequest._promise;let i=!1;"erroring"===r&&(i=!0,t=void 0);const n=td(((r,n)=>{e._pendingAbortRequest={_promise:void 0,_resolve:r,_reject:n,_reason:t,_wasAlreadyErroring:i}}));return e._pendingAbortRequest._promise=n,i||$f(e,t),n}function Gf(e){const t=e._state;if("closed"===t||"errored"===t)return id(new TypeError(`The stream (in ${t} state) is not in the writable state and cannot be closed`));const r=td(((t,r)=>{const i={_resolve:t,_reject:r};e._closeRequest=i})),i=e._writer;var n;return void 0!==i&&e._backpressure&&"writable"===t&&Pl(i),ef(n=e._writableStreamController,sl,0),dl(n),r}function Vf(e,t){"writable"!==e._state?Zf(e):$f(e,t)}function $f(e,t){const r=e._writableStreamController;e._state="erroring",e._storedError=t;const i=e._writer;void 0!==i&&il(i,t),!function(e){if(void 0===e._inFlightWriteRequest&&void 0===e._inFlightCloseRequest)return!1;return!0}(e)&&r._started&&Zf(e)}function Zf(e){e._state="errored",e._writableStreamController[Ad]();const t=e._storedError;if(e._writeRequests.forEach((e=>{e._reject(t)})),e._writeRequests=new ld,void 0===e._pendingAbortRequest)return void Xf(e);const r=e._pendingAbortRequest;if(e._pendingAbortRequest=void 0,r._wasAlreadyErroring)return r._reject(t),void Xf(e);ad(e._writableStreamController[kd](r._reason),(()=>{r._resolve(),Xf(e)}),(t=>{r._reject(t),Xf(e)}))}function Yf(e){return void 0!==e._closeRequest||void 0!==e._inFlightCloseRequest}function Xf(e){void 0!==e._closeRequest&&(e._closeRequest._reject(e._storedError),e._closeRequest=void 0);const t=e._writer;void 0!==t&&vl(t,e._storedError)}function Qf(e,t){const r=e._writer;void 0!==r&&t!==e._backpressure&&(t?function(e){kl(e)}(r):Pl(r)),e._backpressure=t}Object.defineProperties(Of.prototype,{abort:{enumerable:!0},close:{enumerable:!0},getWriter:{enumerable:!0},locked:{enumerable:!0}}),"symbol"==typeof Gh.toStringTag&&Object.defineProperty(Of.prototype,Gh.toStringTag,{value:"WritableStream",configurable:!0});class Jf{constructor(e){if(Dd(e,1,"WritableStreamDefaultWriter"),Ff(e,"First parameter"),Wf(e))throw new TypeError("This stream has already been locked for exclusive writing by another writer");this._ownerWritableStream=e,e._writer=this;const t=e._state;if("writable"===t)!Yf(e)&&e._backpressure?kl(this):Sl(this),gl(this);else if("erroring"===t)Al(this,e._storedError),gl(this);else if("closed"===t)Sl(this),gl(r=this),_l(r);else{const t=e._storedError;Al(this,t),wl(this,t)}var r}get closed(){return el(this)?this._closedPromise:id(bl("closed"))}get desiredSize(){if(!el(this))throw bl("desiredSize");if(void 0===this._ownerWritableStream)throw ml("desiredSize");return function(e){const t=e._ownerWritableStream,r=t._state;if("errored"===r||"erroring"===r)return null;if("closed"===r)return 0;return hl(t._writableStreamController)}(this)}get ready(){return el(this)?this._readyPromise:id(bl("ready"))}abort(e=undefined){return el(this)?void 0===this._ownerWritableStream?id(ml("abort")):function(e,t){const r=e._ownerWritableStream;return Hf(r,t)}(this,e):id(bl("abort"))}close(){if(!el(this))return id(bl("close"));const e=this._ownerWritableStream;return void 0===e?id(ml("close")):Yf(e)?id(new TypeError("Cannot close an already-closing stream")):tl(this)}releaseLock(){if(!el(this))throw bl("releaseLock");void 0!==this._ownerWritableStream&&nl(this)}write(e=undefined){return el(this)?void 0===this._ownerWritableStream?id(ml("write to")):al(this,e):id(bl("write"))}}function el(e){return!!Zh(e)&&!!Object.prototype.hasOwnProperty.call(e,"_ownerWritableStream")}function tl(e){return Gf(e._ownerWritableStream)}function rl(e,t){"pending"===e._closedPromiseState?vl(e,t):function(e,t){wl(e,t)}(e,t)}function il(e,t){"pending"===e._readyPromiseState?El(e,t):function(e,t){Al(e,t)}(e,t)}function nl(e){const t=e._ownerWritableStream,r=new TypeError("Writer was released and can no longer be used to monitor the stream's closedness");il(e,r),rl(e,r),t._writer=void 0,e._ownerWritableStream=void 0}function al(e,t){const r=e._ownerWritableStream,i=r._writableStreamController,n=function(e,t){try{return e._strategySizeAlgorithm(t)}catch(t){return fl(e,t),1}}(i,t);if(r!==e._ownerWritableStream)return id(ml("write to"));const a=r._state;if("errored"===a)return id(r._storedError);if(Yf(r)||"closed"===a)return id(new TypeError("The stream is closing or closed and cannot be written to"));if("erroring"===a)return id(r._storedError);const s=function(e){return td(((t,r)=>{const i={_resolve:t,_reject:r};e._writeRequests.push(i)}))}(r);return function(e,t,r){try{ef(e,t,r)}catch(t){return void fl(e,t)}const i=e._controlledWritableStream;if(!Yf(i)&&"writable"===i._state){Qf(i,ll(e))}dl(e)}(i,t,n),s}Object.defineProperties(Jf.prototype,{abort:{enumerable:!0},close:{enumerable:!0},releaseLock:{enumerable:!0},write:{enumerable:!0},closed:{enumerable:!0},desiredSize:{enumerable:!0},ready:{enumerable:!0}}),"symbol"==typeof Gh.toStringTag&&Object.defineProperty(Jf.prototype,Gh.toStringTag,{value:"WritableStreamDefaultWriter",configurable:!0});const sl={};class ol{constructor(){throw new TypeError("Illegal constructor")}error(e=undefined){if(!function(e){if(!Zh(e))return!1;if(!Object.prototype.hasOwnProperty.call(e,"_controlledWritableStream"))return!1;return!0}(this))throw new TypeError("WritableStreamDefaultController.prototype.error can only be used on a WritableStreamDefaultController");"writable"===this._controlledWritableStream._state&&pl(this,e)}[kd](e){const t=this._abortAlgorithm(e);return ul(this),t}[Ad](){tf(this)}}function cl(e,t,r,i,n,a,s,o){t._controlledWritableStream=e,e._writableStreamController=t,t._queue=void 0,t._queueTotalSize=void 0,tf(t),t._started=!1,t._strategySizeAlgorithm=o,t._strategyHWM=s,t._writeAlgorithm=i,t._closeAlgorithm=n,t._abortAlgorithm=a;const c=ll(t);Qf(e,c);ad(rd(r()),(()=>{t._started=!0,dl(t)}),(r=>{t._started=!0,Vf(e,r)}))}function ul(e){e._writeAlgorithm=void 0,e._closeAlgorithm=void 0,e._abortAlgorithm=void 0,e._strategySizeAlgorithm=void 0}function hl(e){return e._strategyHWM-e._queueTotalSize}function dl(e){const t=e._controlledWritableStream;if(!e._started)return;if(void 0!==t._inFlightWriteRequest)return;if("erroring"===t._state)return void Zf(t);if(0===e._queue.length)return;const r=e._queue.peek().value;r===sl?function(e){const t=e._controlledWritableStream;(function(e){e._inFlightCloseRequest=e._closeRequest,e._closeRequest=void 0})(t),Jd(e);const r=e._closeAlgorithm();ul(e),ad(r,(()=>{!function(e){e._inFlightCloseRequest._resolve(void 0),e._inFlightCloseRequest=void 0,"erroring"===e._state&&(e._storedError=void 0,void 0!==e._pendingAbortRequest&&(e._pendingAbortRequest._resolve(),e._pendingAbortRequest=void 0)),e._state="closed";const t=e._writer;void 0!==t&&_l(t)}(t)}),(e=>{!function(e,t){e._inFlightCloseRequest._reject(t),e._inFlightCloseRequest=void 0,void 0!==e._pendingAbortRequest&&(e._pendingAbortRequest._reject(t),e._pendingAbortRequest=void 0),Vf(e,t)}(t,e)}))}(e):function(e,t){const r=e._controlledWritableStream;!function(e){e._inFlightWriteRequest=e._writeRequests.shift()}(r);const i=e._writeAlgorithm(t);ad(i,(()=>{!function(e){e._inFlightWriteRequest._resolve(void 0),e._inFlightWriteRequest=void 0}(r);const t=r._state;if(Jd(e),!Yf(r)&&"writable"===t){const t=ll(e);Qf(r,t)}dl(e)}),(t=>{"writable"===r._state&&ul(e),function(e,t){e._inFlightWriteRequest._reject(t),e._inFlightWriteRequest=void 0,Vf(e,t)}(r,t)}))}(e,r)}function fl(e,t){"writable"===e._controlledWritableStream._state&&pl(e,t)}function ll(e){return hl(e)<=0}function pl(e,t){const r=e._controlledWritableStream;ul(e),$f(r,t)}function yl(e){return new TypeError(`WritableStream.prototype.${e} can only be used on a WritableStream`)}function bl(e){return new TypeError(`WritableStreamDefaultWriter.prototype.${e} can only be used on a WritableStreamDefaultWriter`)}function ml(e){return new TypeError("Cannot "+e+" a stream using a released writer")}function gl(e){e._closedPromise=td(((t,r)=>{e._closedPromise_resolve=t,e._closedPromise_reject=r,e._closedPromiseState="pending"}))}function wl(e,t){gl(e),vl(e,t)}function vl(e,t){void 0!==e._closedPromise_reject&&(ud(e._closedPromise),e._closedPromise_reject(t),e._closedPromise_resolve=void 0,e._closedPromise_reject=void 0,e._closedPromiseState="rejected")}function _l(e){void 0!==e._closedPromise_resolve&&(e._closedPromise_resolve(void 0),e._closedPromise_resolve=void 0,e._closedPromise_reject=void 0,e._closedPromiseState="resolved")}function 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e=function(e,t){this.message=e||"",this.name=t||"Error",Error.captureStackTrace&&Error.captureStackTrace(this,this.constructor)};return Object.defineProperty(e.prototype=Object.create(Error.prototype),"constructor",{value:e,writable:!0,configurable:!0}),e}();function Cl(e,t,r,i,n,a){const s=zd(e),o=Nf(t);e._disturbed=!0;let c=!1,u=rd(void 0);return td(((h,d)=>{let f;if(void 0!==a){if(f=()=>{const r=new Ml("Aborted","AbortError"),a=[];i||a.push((()=>"writable"===t._state?Hf(t,r):rd(void 0))),n||a.push((()=>"readable"===e._state?Jl(e,r):rd(void 0))),y((()=>Promise.all(a.map((e=>e())))),!0,r)},a.aborted)return void f();a.addEventListener("abort",f)}if(p(e,s._closedPromise,(e=>{i?b(!0,e):y((()=>Hf(t,e)),!0,e)})),p(t,o._closedPromise,(t=>{n?b(!0,t):y((()=>Jl(e,t)),!0,t)})),function(e,t,r){"closed"===e._state?r():sd(t,r)}(e,s._closedPromise,(()=>{r?b():y((()=>function(e){const t=e._ownerWritableStream,r=t._state;return Yf(t)||"closed"===r?rd(void 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ep(e){e._state="closed";const t=e._reader;void 0!==t&&(_d(t),Ld(t)&&(t._readRequests.forEach((e=>{e._closeSteps()})),t._readRequests=new ld))}function tp(e,t){e._state="errored",e._storedError=t;const r=e._reader;void 0!==r&&(vd(r,t),Ld(r)?(r._readRequests.forEach((e=>{e._errorSteps(t)})),r._readRequests=new ld):(r._readIntoRequests.forEach((e=>{e._errorSteps(t)})),r._readIntoRequests=new ld))}function rp(e){return new TypeError(`ReadableStream.prototype.${e} can only be used on a ReadableStream`)}function ip(e,t){Md(e,t);const r=null==e?void 0:e.highWaterMark;return Rd(r,"highWaterMark","QueuingStrategyInit"),{highWaterMark:Ud(r)}}Object.defineProperties($l.prototype,{cancel:{enumerable:!0},getReader:{enumerable:!0},pipeThrough:{enumerable:!0},pipeTo:{enumerable:!0},tee:{enumerable:!0},values:{enumerable:!0},locked:{enumerable:!0}}),"symbol"==typeof Gh.toStringTag&&Object.defineProperty($l.prototype,Gh.toStringTag,{value:"ReadableStream",configurable:!0}),"symbol"==typeof 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up{constructor(e){Dd(e,1,"CountQueuingStrategy"),e=ip(e,"First parameter"),this._countQueuingStrategyHighWaterMark=e.highWaterMark}get highWaterMark(){if(!dp(this))throw hp("highWaterMark");return this._countQueuingStrategyHighWaterMark}get size(){if(!dp(this))throw hp("size");return cp}}function hp(e){return new TypeError(`CountQueuingStrategy.prototype.${e} can only be used on a CountQueuingStrategy`)}function dp(e){return!!Zh(e)&&!!Object.prototype.hasOwnProperty.call(e,"_countQueuingStrategyHighWaterMark")}function fp(e,t,r){return Cd(e,r),r=>fd(e,t,[r])}function lp(e,t,r){return Cd(e,r),r=>dd(e,t,[r])}function pp(e,t,r){return Cd(e,r),(r,i)=>fd(e,t,[r,i])}Object.defineProperties(up.prototype,{highWaterMark:{enumerable:!0},size:{enumerable:!0}}),"symbol"==typeof Gh.toStringTag&&Object.defineProperty(up.prototype,Gh.toStringTag,{value:"CountQueuingStrategy",configurable:!0});class yp{constructor(e={},t={},r={}){void 0===e&&(e=null);const i=Uf(t,"Second parameter"),n=Uf(r,"Third 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0!==t.flush&&(n=()=>t.flush(r));!function(e,t,r,i){t._controlledTransformStream=e,e._transformStreamController=t,t._transformAlgorithm=r,t._flushAlgorithm=i}(e,r,i,n)}(this,a),void 0!==a.start?h(a.start(this._transformStreamController)):h(void 0)}get readable(){if(!bp(this))throw Pp("readable");return this._readable}get writable(){if(!bp(this))throw Pp("writable");return this._writable}}function bp(e){return!!Zh(e)&&!!Object.prototype.hasOwnProperty.call(e,"_transformStreamController")}function mp(e,t){zl(e._readable._readableStreamController,t),gp(e,t)}function gp(e,t){kp(e._transformStreamController),fl(e._writable._writableStreamController,t),e._backpressure&&wp(e,!1)}function wp(e,t){void 0!==e._backpressureChangePromise&&e._backpressureChangePromise_resolve(),e._backpressureChangePromise=td((t=>{e._backpressureChangePromise_resolve=t})),e._backpressure=t}Object.defineProperties(yp.prototype,{readable:{enumerable:!0},writable:{enumerable:!0}}),"symbol"==typeof 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WARRANTIES OF MERCHANTABILITY +AND FITNESS. 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me=(u+(i=i+Math.imul(d,W)|0)|0)+((8191&(n=(n=n+Math.imul(d,H)|0)+Math.imul(f,W)|0))<<13)|0;u=((a=a+Math.imul(f,H)|0)+(n>>>13)|0)+(me>>>26)|0,me&=67108863,i=Math.imul(m,N),n=(n=Math.imul(m,j))+Math.imul(g,N)|0,a=Math.imul(g,j),i=i+Math.imul(p,W)|0,n=(n=n+Math.imul(p,H)|0)+Math.imul(y,W)|0,a=a+Math.imul(y,H)|0;var ge=(u+(i=i+Math.imul(d,V)|0)|0)+((8191&(n=(n=n+Math.imul(d,$)|0)+Math.imul(f,V)|0))<<13)|0;u=((a=a+Math.imul(f,$)|0)+(n>>>13)|0)+(ge>>>26)|0,ge&=67108863,i=Math.imul(v,N),n=(n=Math.imul(v,j))+Math.imul(_,N)|0,a=Math.imul(_,j),i=i+Math.imul(m,W)|0,n=(n=n+Math.imul(m,H)|0)+Math.imul(g,W)|0,a=a+Math.imul(g,H)|0,i=i+Math.imul(p,V)|0,n=(n=n+Math.imul(p,$)|0)+Math.imul(y,V)|0,a=a+Math.imul(y,$)|0;var we=(u+(i=i+Math.imul(d,Y)|0)|0)+((8191&(n=(n=n+Math.imul(d,X)|0)+Math.imul(f,Y)|0))<<13)|0;u=((a=a+Math.imul(f,X)|0)+(n>>>13)|0)+(we>>>26)|0,we&=67108863,i=Math.imul(A,N),n=(n=Math.imul(A,j))+Math.imul(S,N)|0,a=Math.imul(S,j),i=i+Math.imul(v,W)|0,n=(n=n+Math.imul(v,H)|0)+Math.imul(_,W)|0,a=a+Math.imul(_,H)|0,i=i+Math.imul(m,V)|0,n=(n=n+Math.imul(m,$)|0)+Math.imul(g,V)|0,a=a+Math.imul(g,$)|0,i=i+Math.imul(p,Y)|0,n=(n=n+Math.imul(p,X)|0)+Math.imul(y,Y)|0,a=a+Math.imul(y,X)|0;var ve=(u+(i=i+Math.imul(d,J)|0)|0)+((8191&(n=(n=n+Math.imul(d,ee)|0)+Math.imul(f,J)|0))<<13)|0;u=((a=a+Math.imul(f,ee)|0)+(n>>>13)|0)+(ve>>>26)|0,ve&=67108863,i=Math.imul(P,N),n=(n=Math.imul(P,j))+Math.imul(x,N)|0,a=Math.imul(x,j),i=i+Math.imul(A,W)|0,n=(n=n+Math.imul(A,H)|0)+Math.imul(S,W)|0,a=a+Math.imul(S,H)|0,i=i+Math.imul(v,V)|0,n=(n=n+Math.imul(v,$)|0)+Math.imul(_,V)|0,a=a+Math.imul(_,$)|0,i=i+Math.imul(m,Y)|0,n=(n=n+Math.imul(m,X)|0)+Math.imul(g,Y)|0,a=a+Math.imul(g,X)|0,i=i+Math.imul(p,J)|0,n=(n=n+Math.imul(p,ee)|0)+Math.imul(y,J)|0,a=a+Math.imul(y,ee)|0;var _e=(u+(i=i+Math.imul(d,re)|0)|0)+((8191&(n=(n=n+Math.imul(d,ie)|0)+Math.imul(f,re)|0))<<13)|0;u=((a=a+Math.imul(f,ie)|0)+(n>>>13)|0)+(_e>>>26)|0,_e&=67108863,i=Math.imul(C,N),n=(n=Math.imul(C,j))+Math.imul(K,N)|0,a=Math.imul(K,j),i=i+Math.imul(P,W)|0,n=(n=n+Math.imul(P,H)|0)+Math.imul(x,W)|0,a=a+Math.imul(x,H)|0,i=i+Math.imul(A,V)|0,n=(n=n+Math.imul(A,$)|0)+Math.imul(S,V)|0,a=a+Math.imul(S,$)|0,i=i+Math.imul(v,Y)|0,n=(n=n+Math.imul(v,X)|0)+Math.imul(_,Y)|0,a=a+Math.imul(_,X)|0,i=i+Math.imul(m,J)|0,n=(n=n+Math.imul(m,ee)|0)+Math.imul(g,J)|0,a=a+Math.imul(g,ee)|0,i=i+Math.imul(p,re)|0,n=(n=n+Math.imul(p,ie)|0)+Math.imul(y,re)|0,a=a+Math.imul(y,ie)|0;var ke=(u+(i=i+Math.imul(d,ae)|0)|0)+((8191&(n=(n=n+Math.imul(d,se)|0)+Math.imul(f,ae)|0))<<13)|0;u=((a=a+Math.imul(f,se)|0)+(n>>>13)|0)+(ke>>>26)|0,ke&=67108863,i=Math.imul(R,N),n=(n=Math.imul(R,j))+Math.imul(U,N)|0,a=Math.imul(U,j),i=i+Math.imul(C,W)|0,n=(n=n+Math.imul(C,H)|0)+Math.imul(K,W)|0,a=a+Math.imul(K,H)|0,i=i+Math.imul(P,V)|0,n=(n=n+Math.imul(P,$)|0)+Math.imul(x,V)|0,a=a+Math.imul(x,$)|0,i=i+Math.imul(A,Y)|0,n=(n=n+Math.imul(A,X)|0)+Math.imul(S,Y)|0,a=a+Math.imul(S,X)|0,i=i+Math.imul(v,J)|0,n=(n=n+Math.imul(v,ee)|0)+Math.imul(_,J)|0,a=a+Math.imul(_,ee)|0,i=i+Math.imul(m,re)|0,n=(n=n+Math.imul(m,ie)|0)+Math.imul(g,re)|0,a=a+Math.imul(g,ie)|0,i=i+Math.imul(p,ae)|0,n=(n=n+Math.imul(p,se)|0)+Math.imul(y,ae)|0,a=a+Math.imul(y,se)|0;var Ae=(u+(i=i+Math.imul(d,ce)|0)|0)+((8191&(n=(n=n+Math.imul(d,ue)|0)+Math.imul(f,ce)|0))<<13)|0;u=((a=a+Math.imul(f,ue)|0)+(n>>>13)|0)+(Ae>>>26)|0,Ae&=67108863,i=Math.imul(B,N),n=(n=Math.imul(B,j))+Math.imul(T,N)|0,a=Math.imul(T,j),i=i+Math.imul(R,W)|0,n=(n=n+Math.imul(R,H)|0)+Math.imul(U,W)|0,a=a+Math.imul(U,H)|0,i=i+Math.imul(C,V)|0,n=(n=n+Math.imul(C,$)|0)+Math.imul(K,V)|0,a=a+Math.imul(K,$)|0,i=i+Math.imul(P,Y)|0,n=(n=n+Math.imul(P,X)|0)+Math.imul(x,Y)|0,a=a+Math.imul(x,X)|0,i=i+Math.imul(A,J)|0,n=(n=n+Math.imul(A,ee)|0)+Math.imul(S,J)|0,a=a+Math.imul(S,ee)|0,i=i+Math.imul(v,re)|0,n=(n=n+Math.imul(v,ie)|0)+Math.imul(_,re)|0,a=a+Math.imul(_,ie)|0,i=i+Math.imul(m,ae)|0,n=(n=n+Math.imul(m,se)|0)+Math.imul(g,ae)|0,a=a+Math.imul(g,se)|0,i=i+Math.imul(p,ce)|0,n=(n=n+Math.imul(p,ue)|0)+Math.imul(y,ce)|0,a=a+Math.imul(y,ue)|0;var Se=(u+(i=i+Math.imul(d,de)|0)|0)+((8191&(n=(n=n+Math.imul(d,fe)|0)+Math.imul(f,de)|0))<<13)|0;u=((a=a+Math.imul(f,fe)|0)+(n>>>13)|0)+(Se>>>26)|0,Se&=67108863,i=Math.imul(q,N),n=(n=Math.imul(q,j))+Math.imul(F,N)|0,a=Math.imul(F,j),i=i+Math.imul(B,W)|0,n=(n=n+Math.imul(B,H)|0)+Math.imul(T,W)|0,a=a+Math.imul(T,H)|0,i=i+Math.imul(R,V)|0,n=(n=n+Math.imul(R,$)|0)+Math.imul(U,V)|0,a=a+Math.imul(U,$)|0,i=i+Math.imul(C,Y)|0,n=(n=n+Math.imul(C,X)|0)+Math.imul(K,Y)|0,a=a+Math.imul(K,X)|0,i=i+Math.imul(P,J)|0,n=(n=n+Math.imul(P,ee)|0)+Math.imul(x,J)|0,a=a+Math.imul(x,ee)|0,i=i+Math.imul(A,re)|0,n=(n=n+Math.imul(A,ie)|0)+Math.imul(S,re)|0,a=a+Math.imul(S,ie)|0,i=i+Math.imul(v,ae)|0,n=(n=n+Math.imul(v,se)|0)+Math.imul(_,ae)|0,a=a+Math.imul(_,se)|0,i=i+Math.imul(m,ce)|0,n=(n=n+Math.imul(m,ue)|0)+Math.imul(g,ce)|0,a=a+Math.imul(g,ue)|0,i=i+Math.imul(p,de)|0,n=(n=n+Math.imul(p,fe)|0)+Math.imul(y,de)|0,a=a+Math.imul(y,fe)|0;var Ee=(u+(i=i+Math.imul(d,pe)|0)|0)+((8191&(n=(n=n+Math.imul(d,ye)|0)+Math.imul(f,pe)|0))<<13)|0;u=((a=a+Math.imul(f,ye)|0)+(n>>>13)|0)+(Ee>>>26)|0,Ee&=67108863,i=Math.imul(q,W),n=(n=Math.imul(q,H))+Math.imul(F,W)|0,a=Math.imul(F,H),i=i+Math.imul(B,V)|0,n=(n=n+Math.imul(B,$)|0)+Math.imul(T,V)|0,a=a+Math.imul(T,$)|0,i=i+Math.imul(R,Y)|0,n=(n=n+Math.imul(R,X)|0)+Math.imul(U,Y)|0,a=a+Math.imul(U,X)|0,i=i+Math.imul(C,J)|0,n=(n=n+Math.imul(C,ee)|0)+Math.imul(K,J)|0,a=a+Math.imul(K,ee)|0,i=i+Math.imul(P,re)|0,n=(n=n+Math.imul(P,ie)|0)+Math.imul(x,re)|0,a=a+Math.imul(x,ie)|0,i=i+Math.imul(A,ae)|0,n=(n=n+Math.imul(A,se)|0)+Math.imul(S,ae)|0,a=a+Math.imul(S,se)|0,i=i+Math.imul(v,ce)|0,n=(n=n+Math.imul(v,ue)|0)+Math.imul(_,ce)|0,a=a+Math.imul(_,ue)|0,i=i+Math.imul(m,de)|0,n=(n=n+Math.imul(m,fe)|0)+Math.imul(g,de)|0,a=a+Math.imul(g,fe)|0;var Pe=(u+(i=i+Math.imul(p,pe)|0)|0)+((8191&(n=(n=n+Math.imul(p,ye)|0)+Math.imul(y,pe)|0))<<13)|0;u=((a=a+Math.imul(y,ye)|0)+(n>>>13)|0)+(Pe>>>26)|0,Pe&=67108863,i=Math.imul(q,V),n=(n=Math.imul(q,$))+Math.imul(F,V)|0,a=Math.imul(F,$),i=i+Math.imul(B,Y)|0,n=(n=n+Math.imul(B,X)|0)+Math.imul(T,Y)|0,a=a+Math.imul(T,X)|0,i=i+Math.imul(R,J)|0,n=(n=n+Math.imul(R,ee)|0)+Math.imul(U,J)|0,a=a+Math.imul(U,ee)|0,i=i+Math.imul(C,re)|0,n=(n=n+Math.imul(C,ie)|0)+Math.imul(K,re)|0,a=a+Math.imul(K,ie)|0,i=i+Math.imul(P,ae)|0,n=(n=n+Math.imul(P,se)|0)+Math.imul(x,ae)|0,a=a+Math.imul(x,se)|0,i=i+Math.imul(A,ce)|0,n=(n=n+Math.imul(A,ue)|0)+Math.imul(S,ce)|0,a=a+Math.imul(S,ue)|0,i=i+Math.imul(v,de)|0,n=(n=n+Math.imul(v,fe)|0)+Math.imul(_,de)|0,a=a+Math.imul(_,fe)|0;var xe=(u+(i=i+Math.imul(m,pe)|0)|0)+((8191&(n=(n=n+Math.imul(m,ye)|0)+Math.imul(g,pe)|0))<<13)|0;u=((a=a+Math.imul(g,ye)|0)+(n>>>13)|0)+(xe>>>26)|0,xe&=67108863,i=Math.imul(q,Y),n=(n=Math.imul(q,X))+Math.imul(F,Y)|0,a=Math.imul(F,X),i=i+Math.imul(B,J)|0,n=(n=n+Math.imul(B,ee)|0)+Math.imul(T,J)|0,a=a+Math.imul(T,ee)|0,i=i+Math.imul(R,re)|0,n=(n=n+Math.imul(R,ie)|0)+Math.imul(U,re)|0,a=a+Math.imul(U,ie)|0,i=i+Math.imul(C,ae)|0,n=(n=n+Math.imul(C,se)|0)+Math.imul(K,ae)|0,a=a+Math.imul(K,se)|0,i=i+Math.imul(P,ce)|0,n=(n=n+Math.imul(P,ue)|0)+Math.imul(x,ce)|0,a=a+Math.imul(x,ue)|0,i=i+Math.imul(A,de)|0,n=(n=n+Math.imul(A,fe)|0)+Math.imul(S,de)|0,a=a+Math.imul(S,fe)|0;var Me=(u+(i=i+Math.imul(v,pe)|0)|0)+((8191&(n=(n=n+Math.imul(v,ye)|0)+Math.imul(_,pe)|0))<<13)|0;u=((a=a+Math.imul(_,ye)|0)+(n>>>13)|0)+(Me>>>26)|0,Me&=67108863,i=Math.imul(q,J),n=(n=Math.imul(q,ee))+Math.imul(F,J)|0,a=Math.imul(F,ee),i=i+Math.imul(B,re)|0,n=(n=n+Math.imul(B,ie)|0)+Math.imul(T,re)|0,a=a+Math.imul(T,ie)|0,i=i+Math.imul(R,ae)|0,n=(n=n+Math.imul(R,se)|0)+Math.imul(U,ae)|0,a=a+Math.imul(U,se)|0,i=i+Math.imul(C,ce)|0,n=(n=n+Math.imul(C,ue)|0)+Math.imul(K,ce)|0,a=a+Math.imul(K,ue)|0,i=i+Math.imul(P,de)|0,n=(n=n+Math.imul(P,fe)|0)+Math.imul(x,de)|0,a=a+Math.imul(x,fe)|0;var Ce=(u+(i=i+Math.imul(A,pe)|0)|0)+((8191&(n=(n=n+Math.imul(A,ye)|0)+Math.imul(S,pe)|0))<<13)|0;u=((a=a+Math.imul(S,ye)|0)+(n>>>13)|0)+(Ce>>>26)|0,Ce&=67108863,i=Math.imul(q,re),n=(n=Math.imul(q,ie))+Math.imul(F,re)|0,a=Math.imul(F,ie),i=i+Math.imul(B,ae)|0,n=(n=n+Math.imul(B,se)|0)+Math.imul(T,ae)|0,a=a+Math.imul(T,se)|0,i=i+Math.imul(R,ce)|0,n=(n=n+Math.imul(R,ue)|0)+Math.imul(U,ce)|0,a=a+Math.imul(U,ue)|0,i=i+Math.imul(C,de)|0,n=(n=n+Math.imul(C,fe)|0)+Math.imul(K,de)|0,a=a+Math.imul(K,fe)|0;var Ke=(u+(i=i+Math.imul(P,pe)|0)|0)+((8191&(n=(n=n+Math.imul(P,ye)|0)+Math.imul(x,pe)|0))<<13)|0;u=((a=a+Math.imul(x,ye)|0)+(n>>>13)|0)+(Ke>>>26)|0,Ke&=67108863,i=Math.imul(q,ae),n=(n=Math.imul(q,se))+Math.imul(F,ae)|0,a=Math.imul(F,se),i=i+Math.imul(B,ce)|0,n=(n=n+Math.imul(B,ue)|0)+Math.imul(T,ce)|0,a=a+Math.imul(T,ue)|0,i=i+Math.imul(R,de)|0,n=(n=n+Math.imul(R,fe)|0)+Math.imul(U,de)|0,a=a+Math.imul(U,fe)|0;var De=(u+(i=i+Math.imul(C,pe)|0)|0)+((8191&(n=(n=n+Math.imul(C,ye)|0)+Math.imul(K,pe)|0))<<13)|0;u=((a=a+Math.imul(K,ye)|0)+(n>>>13)|0)+(De>>>26)|0,De&=67108863,i=Math.imul(q,ce),n=(n=Math.imul(q,ue))+Math.imul(F,ce)|0,a=Math.imul(F,ue),i=i+Math.imul(B,de)|0,n=(n=n+Math.imul(B,fe)|0)+Math.imul(T,de)|0,a=a+Math.imul(T,fe)|0;var Re=(u+(i=i+Math.imul(R,pe)|0)|0)+((8191&(n=(n=n+Math.imul(R,ye)|0)+Math.imul(U,pe)|0))<<13)|0;u=((a=a+Math.imul(U,ye)|0)+(n>>>13)|0)+(Re>>>26)|0,Re&=67108863,i=Math.imul(q,de),n=(n=Math.imul(q,fe))+Math.imul(F,de)|0,a=Math.imul(F,fe);var Ue=(u+(i=i+Math.imul(B,pe)|0)|0)+((8191&(n=(n=n+Math.imul(B,ye)|0)+Math.imul(T,pe)|0))<<13)|0;u=((a=a+Math.imul(T,ye)|0)+(n>>>13)|0)+(Ue>>>26)|0,Ue&=67108863;var Ie=(u+(i=Math.imul(q,pe))|0)+((8191&(n=(n=Math.imul(q,ye))+Math.imul(F,pe)|0))<<13)|0;return u=((a=Math.imul(F,ye))+(n>>>13)|0)+(Ie>>>26)|0,Ie&=67108863,c[0]=be,c[1]=me,c[2]=ge,c[3]=we,c[4]=ve,c[5]=_e,c[6]=ke,c[7]=Ae,c[8]=Se,c[9]=Ee,c[10]=Pe,c[11]=xe,c[12]=Me,c[13]=Ce,c[14]=Ke,c[15]=De,c[16]=Re,c[17]=Ue,c[18]=Ie,0!==u&&(c[19]=u,r.length++),r};function l(e,t,r){return(new p).mulp(e,t,r)}function p(e,t){this.x=e,this.y=t}Math.imul||(f=d),n.prototype.mulTo=function(e,t){var r,i=this.length+e.length;return r=10===this.length&&10===e.length?f(this,e,t):i<63?d(this,e,t):i<1024?function(e,t,r){r.negative=t.negative^e.negative,r.length=e.length+t.length;for(var i=0,n=0,a=0;a>>26)|0)>>>26,s&=67108863}r.words[a]=o,i=s,s=n}return 0!==i?r.words[a]=i:r.length--,r.strip()}(this,e,t):l(this,e,t),r},p.prototype.makeRBT=function(e){for(var t=Array(e),r=n.prototype._countBits(e)-1,i=0;i>=1;return i},p.prototype.permute=function(e,t,r,i,n,a){for(var s=0;s>>=1)n++;return 1<>>=13,i[2*s+1]=8191&a,a>>>=13;for(s=2*t;s>=26,t+=n/67108864|0,t+=a>>>26,this.words[i]=67108863&a}return 0!==t&&(this.words[i]=t,this.length++),this},n.prototype.muln=function(e){return this.clone().imuln(e)},n.prototype.sqr=function(){return this.mul(this)},n.prototype.isqr=function(){return this.imul(this.clone())},n.prototype.pow=function(e){var t=function(e){for(var t=Array(e.bitLength()),r=0;r>>n}return t}(e);if(0===t.length)return new n(1);for(var r=this,i=0;i=0);var t,i=e%26,n=(e-i)/26,a=67108863>>>26-i<<26-i;if(0!==i){var s=0;for(t=0;t>>26-i}s&&(this.words[t]=s,this.length++)}if(0!==n){for(t=this.length-1;t>=0;t--)this.words[t+n]=this.words[t];for(t=0;t=0),n=t?(t-t%26)/26:0;var a=e%26,s=Math.min((e-a)/26,this.length),o=67108863^67108863>>>a<s)for(this.length-=s,u=0;u=0&&(0!==h||u>=n);u--){var d=0|this.words[u];this.words[u]=h<<26-a|d>>>a,h=d&o}return c&&0!==h&&(c.words[c.length++]=h),0===this.length&&(this.words[0]=0,this.length=1),this.strip()},n.prototype.ishrn=function(e,t,i){return r(0===this.negative),this.iushrn(e,t,i)},n.prototype.shln=function(e){return this.clone().ishln(e)},n.prototype.ushln=function(e){return this.clone().iushln(e)},n.prototype.shrn=function(e){return this.clone().ishrn(e)},n.prototype.ushrn=function(e){return this.clone().iushrn(e)},n.prototype.testn=function(e){r("number"==typeof e&&e>=0);var t=e%26,i=(e-t)/26,n=1<=0);var t=e%26,i=(e-t)/26;if(r(0===this.negative,"imaskn works only with positive numbers"),this.length<=i)return this;if(0!==t&&i++,this.length=Math.min(i,this.length),0!==t){var n=67108863^67108863>>>t<=67108864;t++)this.words[t]-=67108864,t===this.length-1?this.words[t+1]=1:this.words[t+1]++;return this.length=Math.max(this.length,t+1),this},n.prototype.isubn=function(e){if(r("number"==typeof e),r(e<67108864),e<0)return this.iaddn(-e);if(0!==this.negative)return this.negative=0,this.iaddn(e),this.negative=1,this;if(this.words[0]-=e,1===this.length&&this.words[0]<0)this.words[0]=-this.words[0],this.negative=1;else for(var t=0;t>26)-(c/67108864|0),this.words[n+i]=67108863&a}for(;n>26,this.words[n+i]=67108863&a;if(0===o)return this.strip();for(r(-1===o),o=0,n=0;n>26,this.words[n]=67108863&a;return this.negative=1,this.strip()},n.prototype._wordDiv=function(e,t){var r=(this.length,e.length),i=this.clone(),a=e,s=0|a.words[a.length-1];0!==(r=26-this._countBits(s))&&(a=a.ushln(r),i.iushln(r),s=0|a.words[a.length-1]);var o,c=i.length-a.length;if("mod"!==t){(o=new n(null)).length=c+1,o.words=Array(o.length);for(var u=0;u=0;d--){var f=67108864*(0|i.words[a.length+d])+(0|i.words[a.length+d-1]);for(f=Math.min(f/s|0,67108863),i._ishlnsubmul(a,f,d);0!==i.negative;)f--,i.negative=0,i._ishlnsubmul(a,1,d),i.isZero()||(i.negative^=1);o&&(o.words[d]=f)}return o&&o.strip(),i.strip(),"div"!==t&&0!==r&&i.iushrn(r),{div:o||null,mod:i}},n.prototype.divmod=function(e,t,i){return r(!e.isZero()),this.isZero()?{div:new n(0),mod:new 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k(e)},i(k,_),k.prototype.convertTo=function(e){return this.imod(e.ushln(this.shift))},k.prototype.convertFrom=function(e){var t=this.imod(e.mul(this.rinv));return t.red=null,t},k.prototype.imul=function(e,t){if(e.isZero()||t.isZero())return e.words[0]=0,e.length=1,e;var r=e.imul(t),i=r.maskn(this.shift).mul(this.minv).imaskn(this.shift).mul(this.m),n=r.isub(i).iushrn(this.shift),a=n;return n.cmp(this.m)>=0?a=n.isub(this.m):n.cmpn(0)<0&&(a=n.iadd(this.m)),a._forceRed(this)},k.prototype.mul=function(e,t){if(e.isZero()||t.isZero())return new n(0)._forceRed(this);var r=e.mul(t),i=r.maskn(this.shift).mul(this.minv).imaskn(this.shift).mul(this.m),a=r.isub(i).iushrn(this.shift),s=a;return a.cmp(this.m)>=0?s=a.isub(this.m):a.cmpn(0)<0&&(s=a.iadd(this.m)),s._forceRed(this)},k.prototype.invm=function(e){return this.imod(e._invmp(this.m).mul(this.r2))._forceRed(this)}}(e,rt)})),Yp=/*#__PURE__*/Object.freeze({__proto__:null,default:Zp,__moduleExports:Zp});class Xp{constructor(e){if(void 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t="",r=0;r>8,s=255&n;a?r.push(a,s):r.push(s)}return r},r.zero2=i,r.toHex=n,r.encode=function(e,t){return"hex"===t?n(e):e}})),ty=it((function(e,t){var r=t;r.assert=et,r.toArray=ey.toArray,r.zero2=ey.zero2,r.toHex=ey.toHex,r.encode=ey.encode,r.getNAF=function(e,t){for(var r=[],i=1<=0;){var a;if(n.isOdd()){var s=n.andln(i-1);a=s>(i>>1)-1?(i>>1)-s:s,n.isubn(a)}else a=0;r.push(a);for(var o=0!==n.cmpn(0)&&0===n.andln(i-1)?t+1:1,c=1;c0||t.cmpn(-n)>0;){var a,s,o,c=e.andln(3)+i&3,u=t.andln(3)+n&3;if(3===c&&(c=-1),3===u&&(u=-1),0==(1&c))a=0;else a=3!==(o=e.andln(7)+i&7)&&5!==o||2!==u?c:-c;if(r[0].push(a),0==(1&u))s=0;else s=3!==(o=t.andln(7)+n&7)&&5!==o||2!==c?u:-u;r[1].push(s),2*i===a+1&&(i=1-i),2*n===s+1&&(n=1-n),e.iushrn(1),t.iushrn(1)}return r},r.cachedProperty=function(e,t,r){var i="_"+t;e.prototype[t]=function(){return void 0!==this[i]?this[i]:this[i]=r.call(this)}},r.parseBytes=function(e){return"string"==typeof e?r.toArray(e,"hex"):e},r.intFromLE=function(e){return new Zp(e,"hex","le")}})),ry=function(e){return Qp||(Qp=new iy(null)),Qp.generate(e)};function iy(e){this.rand=e}var ny=iy;if(iy.prototype.generate=function(e){return this._rand(e)},iy.prototype._rand=function(e){if(this.rand.getBytes)return this.rand.getBytes(e);for(var t=new Uint8Array(e),r=0;r0?this.redN=null:(this._maxwellTrick=!0,this.redN=this.n.toRed(this.red))}var hy=uy;function dy(e,t){this.curve=e,this.type=t,this.precomputed=null}uy.prototype.point=function(){throw Error("Not implemented")},uy.prototype.validate=function(){throw Error("Not implemented")},uy.prototype._fixedNafMul=function(e,t){cy(e.precomputed);var r=e._getDoubles(),i=sy(t,1),n=(1<=s;t--)o=(o<<1)+i[t];a.push(o)}for(var c=this.jpoint(null,null,null),u=this.jpoint(null,null,null),h=n;h>0;h--){for(s=0;s=0;o--){for(t=0;o>=0&&0===a[o];o--)t++;if(o>=0&&t++,s=s.dblp(t),o<0)break;var c=a[o];cy(0!==c),s="affine"===e.type?c>0?s.mixedAdd(n[c-1>>1]):s.mixedAdd(n[-c-1>>1].neg()):c>0?s.add(n[c-1>>1]):s.add(n[-c-1>>1].neg())}return"affine"===e.type?s.toP():s},uy.prototype._wnafMulAdd=function(e,t,r,i,n){for(var a=this._wnafT1,s=this._wnafT2,o=this._wnafT3,c=0,u=0;u=1;u-=2){var d=u-1,f=u;if(1===a[d]&&1===a[f]){var l=[t[d],null,null,t[f]];0===t[d].y.cmp(t[f].y)?(l[1]=t[d].add(t[f]),l[2]=t[d].toJ().mixedAdd(t[f].neg())):0===t[d].y.cmp(t[f].y.redNeg())?(l[1]=t[d].toJ().mixedAdd(t[f]),l[2]=t[d].add(t[f].neg())):(l[1]=t[d].toJ().mixedAdd(t[f]),l[2]=t[d].toJ().mixedAdd(t[f].neg()));var p=[-3,-1,-5,-7,0,7,5,1,3],y=oy(r[d],r[f]);c=Math.max(y[0].length,c),o[d]=Array(c),o[f]=Array(c);for(var b=0;b=0;u--){for(var _=0;u>=0;){var k=!0;for(b=0;b=0&&_++,w=w.dblp(_),u<0)break;for(b=0;b0?A=s[b][S-1>>1]:S<0&&(A=s[b][-S-1>>1].neg()),w="affine"===A.type?w.mixedAdd(A):w.add(A))}}for(u=0;u=Math.ceil((e.bitLength()+1)/t.step)},dy.prototype._getDoubles=function(e,t){if(this.precomputed&&this.precomputed.doubles)return this.precomputed.doubles;for(var r=[this],i=this,n=0;n=0&&(a=t,s=r),i.negative&&(i=i.neg(),n=n.neg()),a.negative&&(a=a.neg(),s=s.neg()),[{a:i,b:n},{a,b:s}]},ly.prototype._endoSplit=function(e){var t=this.endo.basis,r=t[0],i=t[1],n=i.b.mul(e).divRound(this.n),a=r.b.neg().mul(e).divRound(this.n),s=n.mul(r.a),o=a.mul(i.a),c=n.mul(r.b),u=a.mul(i.b);return{k1:e.sub(s).sub(o),k2:c.add(u).neg()}},ly.prototype.pointFromX=function(e,t){(e=new Zp(e,16)).red||(e=e.toRed(this.red));var r=e.redSqr().redMul(e).redIAdd(e.redMul(this.a)).redIAdd(this.b),i=r.redSqrt();if(0!==i.redSqr().redSub(r).cmp(this.zero))throw Error("invalid point");var n=i.fromRed().isOdd();return(t&&!n||!t&&n)&&(i=i.redNeg()),this.point(e,i)},ly.prototype.validate=function(e){if(e.inf)return!0;var t=e.x,r=e.y,i=this.a.redMul(t),n=t.redSqr().redMul(t).redIAdd(i).redIAdd(this.b);return 0===r.redSqr().redISub(n).cmpn(0)},ly.prototype._endoWnafMulAdd=function(e,t,r){for(var i=this._endoWnafT1,n=this._endoWnafT2,a=0;a":""},yy.prototype.isInfinity=function(){return this.inf},yy.prototype.add=function(e){if(this.inf)return e;if(e.inf)return this;if(this.eq(e))return this.dbl();if(this.neg().eq(e))return this.curve.point(null,null);if(0===this.x.cmp(e.x))return this.curve.point(null,null);var t=this.y.redSub(e.y);0!==t.cmpn(0)&&(t=t.redMul(this.x.redSub(e.x).redInvm()));var r=t.redSqr().redISub(this.x).redISub(e.x),i=t.redMul(this.x.redSub(r)).redISub(this.y);return this.curve.point(r,i)},yy.prototype.dbl=function(){if(this.inf)return this;var e=this.y.redAdd(this.y);if(0===e.cmpn(0))return this.curve.point(null,null);var t=this.curve.a,r=this.x.redSqr(),i=e.redInvm(),n=r.redAdd(r).redIAdd(r).redIAdd(t).redMul(i),a=n.redSqr().redISub(this.x.redAdd(this.x)),s=n.redMul(this.x.redSub(a)).redISub(this.y);return this.curve.point(a,s)},yy.prototype.getX=function(){return this.x.fromRed()},yy.prototype.getY=function(){return this.y.fromRed()},yy.prototype.mul=function(e){return e=new Zp(e,16),this.isInfinity()?this:this._hasDoubles(e)?this.curve._fixedNafMul(this,e):this.curve.endo?this.curve._endoWnafMulAdd([this],[e]):this.curve._wnafMul(this,e)},yy.prototype.mulAdd=function(e,t,r){var i=[this,t],n=[e,r];return this.curve.endo?this.curve._endoWnafMulAdd(i,n):this.curve._wnafMulAdd(1,i,n,2)},yy.prototype.jmulAdd=function(e,t,r){var i=[this,t],n=[e,r];return this.curve.endo?this.curve._endoWnafMulAdd(i,n,!0):this.curve._wnafMulAdd(1,i,n,2,!0)},yy.prototype.eq=function(e){return this===e||this.inf===e.inf&&(this.inf||0===this.x.cmp(e.x)&&0===this.y.cmp(e.y))},yy.prototype.neg=function(e){if(this.inf)return this;var t=this.curve.point(this.x,this.y.redNeg());if(e&&this.precomputed){var r=this.precomputed,i=function(e){return e.neg()};t.precomputed={naf:r.naf&&{wnd:r.naf.wnd,points:r.naf.points.map(i)},doubles:r.doubles&&{step:r.doubles.step,points:r.doubles.points.map(i)}}}return t},yy.prototype.toJ=function(){return this.inf?this.curve.jpoint(null,null,null):this.curve.jpoint(this.x,this.y,this.curve.one)},at(by,hy.BasePoint),ly.prototype.jpoint=function(e,t,r){return new by(this,e,t,r)},by.prototype.toP=function(){if(this.isInfinity())return this.curve.point(null,null);var e=this.z.redInvm(),t=e.redSqr(),r=this.x.redMul(t),i=this.y.redMul(t).redMul(e);return this.curve.point(r,i)},by.prototype.neg=function(){return this.curve.jpoint(this.x,this.y.redNeg(),this.z)},by.prototype.add=function(e){if(this.isInfinity())return e;if(e.isInfinity())return this;var t=e.z.redSqr(),r=this.z.redSqr(),i=this.x.redMul(t),n=e.x.redMul(r),a=this.y.redMul(t.redMul(e.z)),s=e.y.redMul(r.redMul(this.z)),o=i.redSub(n),c=a.redSub(s);if(0===o.cmpn(0))return 0!==c.cmpn(0)?this.curve.jpoint(null,null,null):this.dbl();var u=o.redSqr(),h=u.redMul(o),d=i.redMul(u),f=c.redSqr().redIAdd(h).redISub(d).redISub(d),l=c.redMul(d.redISub(f)).redISub(a.redMul(h)),p=this.z.redMul(e.z).redMul(o);return this.curve.jpoint(f,l,p)},by.prototype.mixedAdd=function(e){if(this.isInfinity())return e.toJ();if(e.isInfinity())return this;var t=this.z.redSqr(),r=this.x,i=e.x.redMul(t),n=this.y,a=e.y.redMul(t).redMul(this.z),s=r.redSub(i),o=n.redSub(a);if(0===s.cmpn(0))return 0!==o.cmpn(0)?this.curve.jpoint(null,null,null):this.dbl();var c=s.redSqr(),u=c.redMul(s),h=r.redMul(c),d=o.redSqr().redIAdd(u).redISub(h).redISub(h),f=o.redMul(h.redISub(d)).redISub(n.redMul(u)),l=this.z.redMul(s);return this.curve.jpoint(d,f,l)},by.prototype.dblp=function(e){if(0===e)return this;if(this.isInfinity())return this;if(!e)return this.dbl();if(this.curve.zeroA||this.curve.threeA){for(var t=this,r=0;r=0)return!1;if(r.redIAdd(n),0===this.x.cmp(r))return!0}},by.prototype.inspect=function(){return this.isInfinity()?"":""},by.prototype.isInfinity=function(){return 0===this.z.cmpn(0)},at(my,hy);var gy=my;function wy(e,t,r){hy.BasePoint.call(this,e,"projective"),null===t&&null===r?(this.x=this.curve.one,this.z=this.curve.zero):(this.x=new Zp(t,16),this.z=new Zp(r,16),this.x.red||(this.x=this.x.toRed(this.curve.red)),this.z.red||(this.z=this.z.toRed(this.curve.red)))}my.prototype.validate=function(e){var t=e.normalize().x,r=t.redSqr(),i=r.redMul(t).redAdd(r.redMul(this.a)).redAdd(t);return 0===i.redSqrt().redSqr().cmp(i)},at(wy,hy.BasePoint),my.prototype.decodePoint=function(e,t){if(33===(e=ty.toArray(e,t)).length&&64===e[0]&&(e=e.slice(1,33).reverse()),32!==e.length)throw Error("Unknown point compression format");return this.point(e,1)},my.prototype.point=function(e,t){return new wy(this,e,t)},my.prototype.pointFromJSON=function(e){return wy.fromJSON(this,e)},wy.prototype.precompute=function(){},wy.prototype._encode=function(e){var t=this.curve.p.byteLength();return e?[64].concat(this.getX().toArray("le",t)):this.getX().toArray("be",t)},wy.fromJSON=function(e,t){return new wy(e,t[0],t[1]||e.one)},wy.prototype.inspect=function(){return this.isInfinity()?"":""},wy.prototype.isInfinity=function(){return 0===this.z.cmpn(0)},wy.prototype.dbl=function(){var e=this.x.redAdd(this.z).redSqr(),t=this.x.redSub(this.z).redSqr(),r=e.redSub(t),i=e.redMul(t),n=r.redMul(t.redAdd(this.curve.a24.redMul(r)));return this.curve.point(i,n)},wy.prototype.add=function(){throw Error("Not supported on Montgomery curve")},wy.prototype.diffAdd=function(e,t){var r=this.x.redAdd(this.z),i=this.x.redSub(this.z),n=e.x.redAdd(e.z),a=e.x.redSub(e.z).redMul(r),s=n.redMul(i),o=t.z.redMul(a.redAdd(s).redSqr()),c=t.x.redMul(a.redISub(s).redSqr());return this.curve.point(o,c)},wy.prototype.mul=function(e){for(var t=(e=new Zp(e,16)).clone(),r=this,i=this.curve.point(null,null),n=[];0!==t.cmpn(0);t.iushrn(1))n.push(t.andln(1));for(var a=n.length-1;a>=0;a--)0===n[a]?(r=r.diffAdd(i,this),i=i.dbl()):(i=r.diffAdd(i,this),r=r.dbl());return i},wy.prototype.mulAdd=function(){throw Error("Not supported on Montgomery curve")},wy.prototype.jumlAdd=function(){throw Error("Not supported on Montgomery curve")},wy.prototype.eq=function(e){return 0===this.getX().cmp(e.getX())},wy.prototype.normalize=function(){return this.x=this.x.redMul(this.z.redInvm()),this.z=this.curve.one,this},wy.prototype.getX=function(){return this.normalize(),this.x.fromRed()};var vy=ty.assert;function _y(e){this.twisted=1!=(0|e.a),this.mOneA=this.twisted&&-1==(0|e.a),this.extended=this.mOneA,hy.call(this,"edwards",e),this.a=new Zp(e.a,16).umod(this.red.m),this.a=this.a.toRed(this.red),this.c=new Zp(e.c,16).toRed(this.red),this.c2=this.c.redSqr(),this.d=new Zp(e.d,16).toRed(this.red),this.dd=this.d.redAdd(this.d),vy(!this.twisted||0===this.c.fromRed().cmpn(1)),this.oneC=1==(0|e.c)}at(_y,hy);var ky=_y;function Ay(e,t,r,i,n){hy.BasePoint.call(this,e,"projective"),null===t&&null===r&&null===i?(this.x=this.curve.zero,this.y=this.curve.one,this.z=this.curve.one,this.t=this.curve.zero,this.zOne=!0):(this.x=new Zp(t,16),this.y=new Zp(r,16),this.z=i?new Zp(i,16):this.curve.one,this.t=n&&new Zp(n,16),this.x.red||(this.x=this.x.toRed(this.curve.red)),this.y.red||(this.y=this.y.toRed(this.curve.red)),this.z.red||(this.z=this.z.toRed(this.curve.red)),this.t&&!this.t.red&&(this.t=this.t.toRed(this.curve.red)),this.zOne=this.z===this.curve.one,this.curve.extended&&!this.t&&(this.t=this.x.redMul(this.y),this.zOne||(this.t=this.t.redMul(this.z.redInvm()))))}_y.prototype._mulA=function(e){return this.mOneA?e.redNeg():this.a.redMul(e)},_y.prototype._mulC=function(e){return this.oneC?e:this.c.redMul(e)},_y.prototype.jpoint=function(e,t,r,i){return this.point(e,t,r,i)},_y.prototype.pointFromX=function(e,t){(e=new Zp(e,16)).red||(e=e.toRed(this.red));var r=e.redSqr(),i=this.c2.redSub(this.a.redMul(r)),n=this.one.redSub(this.c2.redMul(this.d).redMul(r)),a=i.redMul(n.redInvm()),s=a.redSqrt();if(0!==s.redSqr().redSub(a).cmp(this.zero))throw Error("invalid point");var o=s.fromRed().isOdd();return(t&&!o||!t&&o)&&(s=s.redNeg()),this.point(e,s)},_y.prototype.pointFromY=function(e,t){(e=new Zp(e,16)).red||(e=e.toRed(this.red));var r=e.redSqr(),i=r.redSub(this.c2),n=r.redMul(this.d).redMul(this.c2).redSub(this.a),a=i.redMul(n.redInvm());if(0===a.cmp(this.zero)){if(t)throw Error("invalid point");return this.point(this.zero,e)}var s=a.redSqrt();if(0!==s.redSqr().redSub(a).cmp(this.zero))throw Error("invalid point");return s.fromRed().isOdd()!==t&&(s=s.redNeg()),this.point(s,e)},_y.prototype.validate=function(e){if(e.isInfinity())return!0;e.normalize();var t=e.x.redSqr(),r=e.y.redSqr(),i=t.redMul(this.a).redAdd(r),n=this.c2.redMul(this.one.redAdd(this.d.redMul(t).redMul(r)));return 0===i.cmp(n)},at(Ay,hy.BasePoint),_y.prototype.pointFromJSON=function(e){return Ay.fromJSON(this,e)},_y.prototype.point=function(e,t,r,i){return new Ay(this,e,t,r,i)},Ay.fromJSON=function(e,t){return new Ay(e,t[0],t[1],t[2])},Ay.prototype.inspect=function(){return this.isInfinity()?"":""},Ay.prototype.isInfinity=function(){return 0===this.x.cmpn(0)&&(0===this.y.cmp(this.z)||this.zOne&&0===this.y.cmp(this.curve.c))},Ay.prototype._extDbl=function(){var e=this.x.redSqr(),t=this.y.redSqr(),r=this.z.redSqr();r=r.redIAdd(r);var i=this.curve._mulA(e),n=this.x.redAdd(this.y).redSqr().redISub(e).redISub(t),a=i.redAdd(t),s=a.redSub(r),o=i.redSub(t),c=n.redMul(s),u=a.redMul(o),h=n.redMul(o),d=s.redMul(a);return this.curve.point(c,u,d,h)},Ay.prototype._projDbl=function(){var e,t,r,i=this.x.redAdd(this.y).redSqr(),n=this.x.redSqr(),a=this.y.redSqr();if(this.curve.twisted){var s=(u=this.curve._mulA(n)).redAdd(a);if(this.zOne)e=i.redSub(n).redSub(a).redMul(s.redSub(this.curve.two)),t=s.redMul(u.redSub(a)),r=s.redSqr().redSub(s).redSub(s);else{var o=this.z.redSqr(),c=s.redSub(o).redISub(o);e=i.redSub(n).redISub(a).redMul(c),t=s.redMul(u.redSub(a)),r=s.redMul(c)}}else{var u=n.redAdd(a);o=this.curve._mulC(this.z).redSqr(),c=u.redSub(o).redSub(o);e=this.curve._mulC(i.redISub(u)).redMul(c),t=this.curve._mulC(u).redMul(n.redISub(a)),r=u.redMul(c)}return this.curve.point(e,t,r)},Ay.prototype.dbl=function(){return this.isInfinity()?this:this.curve.extended?this._extDbl():this._projDbl()},Ay.prototype._extAdd=function(e){var t=this.y.redSub(this.x).redMul(e.y.redSub(e.x)),r=this.y.redAdd(this.x).redMul(e.y.redAdd(e.x)),i=this.t.redMul(this.curve.dd).redMul(e.t),n=this.z.redMul(e.z.redAdd(e.z)),a=r.redSub(t),s=n.redSub(i),o=n.redAdd(i),c=r.redAdd(t),u=a.redMul(s),h=o.redMul(c),d=a.redMul(c),f=s.redMul(o);return this.curve.point(u,h,f,d)},Ay.prototype._projAdd=function(e){var t,r,i=this.z.redMul(e.z),n=i.redSqr(),a=this.x.redMul(e.x),s=this.y.redMul(e.y),o=this.curve.d.redMul(a).redMul(s),c=n.redSub(o),u=n.redAdd(o),h=this.x.redAdd(this.y).redMul(e.x.redAdd(e.y)).redISub(a).redISub(s),d=i.redMul(c).redMul(h);return this.curve.twisted?(t=i.redMul(u).redMul(s.redSub(this.curve._mulA(a))),r=c.redMul(u)):(t=i.redMul(u).redMul(s.redSub(a)),r=this.curve._mulC(c).redMul(u)),this.curve.point(d,t,r)},Ay.prototype.add=function(e){return this.isInfinity()?e:e.isInfinity()?this:this.curve.extended?this._extAdd(e):this._projAdd(e)},Ay.prototype.mul=function(e){return this._hasDoubles(e)?this.curve._fixedNafMul(this,e):this.curve._wnafMul(this,e)},Ay.prototype.mulAdd=function(e,t,r){return this.curve._wnafMulAdd(1,[this,t],[e,r],2,!1)},Ay.prototype.jmulAdd=function(e,t,r){return this.curve._wnafMulAdd(1,[this,t],[e,r],2,!0)},Ay.prototype.normalize=function(){if(this.zOne)return this;var e=this.z.redInvm();return this.x=this.x.redMul(e),this.y=this.y.redMul(e),this.t&&(this.t=this.t.redMul(e)),this.z=this.curve.one,this.zOne=!0,this},Ay.prototype.neg=function(){return this.curve.point(this.x.redNeg(),this.y,this.z,this.t&&this.t.redNeg())},Ay.prototype.getX=function(){return this.normalize(),this.x.fromRed()},Ay.prototype.getY=function(){return this.normalize(),this.y.fromRed()},Ay.prototype.eq=function(e){return this===e||0===this.getX().cmp(e.getX())&&0===this.getY().cmp(e.getY())},Ay.prototype.eqXToP=function(e){var t=e.toRed(this.curve.red).redMul(this.z);if(0===this.x.cmp(t))return!0;for(var r=e.clone(),i=this.curve.redN.redMul(this.z);;){if(r.iadd(this.curve.n),r.cmp(this.curve.p)>=0)return!1;if(t.redIAdd(i),0===this.x.cmp(t))return!0}},Ay.prototype.toP=Ay.prototype.normalize,Ay.prototype.mixedAdd=Ay.prototype.add;var Sy=it((function(e,t){var r=t;r.base=hy,r.short=py,r.mont=gy,r.edwards=ky})),Ey=pt.rotl32,Py=pt.sum32,xy=pt.sum32_5,My=At.ft_1,Cy=mt.BlockHash,Ky=[1518500249,1859775393,2400959708,3395469782];function Dy(){if(!(this instanceof Dy))return new Dy;Cy.call(this),this.h=[1732584193,4023233417,2562383102,271733878,3285377520],this.W=Array(80)}pt.inherits(Dy,Cy);var Ry=Dy;Dy.blockSize=512,Dy.outSize=160,Dy.hmacStrength=80,Dy.padLength=64,Dy.prototype._update=function(e,t){for(var r=this.W,i=0;i<16;i++)r[i]=e[t+i];for(;ithis.blockSize&&(e=(new this.Hash).update(e).digest()),et(e.length<=this.blockSize);for(var t=e.length;t