Added mpw-bench as an extra target.
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@ -13,10 +13,15 @@
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cd "${BASH_SOURCE%/*}"
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set -e
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# optional features.
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options=(
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# optional features.
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-DDEBUG # Turn on debugging verbosity.
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)
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# available targets.
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targets=(
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mpw # C CLI version of Master Password.
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mpw-bench # C CLI Master Password benchmark utility.
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)
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### DEPENDENCIES
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@ -67,8 +72,67 @@ if ! [[ -e lib/scrypt/scrypt-scryptenc.o ]]; then
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popd
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fi
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echo
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echo "Building mpw..."
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### MPW
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mpw() {
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CFLAGS=(
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# include paths
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-I"lib/scrypt/lib" -I"lib/scrypt/libcperciva"
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)
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LDFLAGS=(
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# library paths
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-L"." -L"lib/scrypt"
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# link libraries
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-l"crypto"
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# scrypt
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"lib/scrypt/scrypt-crypto_aesctr.o"
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"lib/scrypt/scrypt-sha256.o"
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"lib/scrypt/scrypt-crypto_scrypt-nosse.o"
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"lib/scrypt/scrypt-memlimit.o"
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"lib/scrypt/scrypt-scryptenc_cpuperf.o"
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"lib/scrypt/scrypt-scryptenc.o"
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)
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cc "${CFLAGS[@]}" "${options[@]}" -c types.c -o types.o "$@"
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cc "${CFLAGS[@]}" "${LDFLAGS[@]}" "${options[@]}" "types.o" mpw.c -o mpw "$@"
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echo "done! Now run ./install or use ./mpw"
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}
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### MPW-BENCH
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mpw-bench() {
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CFLAGS=(
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# include paths
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-I"lib/scrypt/lib" -I"lib/scrypt/libcperciva"
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-I"lib/bcrypt"
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)
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LDFLAGS=(
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# library paths
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-L"." -L"lib/scrypt"
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-L"lib/bcrypt"
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# libraries
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-l"crypto"
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# scrypt
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"lib/scrypt/scrypt-crypto_aesctr.o"
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"lib/scrypt/scrypt-sha256.o"
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"lib/scrypt/scrypt-crypto_scrypt-nosse.o"
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"lib/scrypt/scrypt-memlimit.o"
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"lib/scrypt/scrypt-scryptenc_cpuperf.o"
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"lib/scrypt/scrypt-scryptenc.o"
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# bcrypt
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"lib/bcrypt/crypt_blowfish.o"
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"lib/bcrypt/crypt_gensalt.o"
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"lib/bcrypt/wrapper.o"
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"lib/bcrypt/x86.o"
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)
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cc "${CFLAGS[@]}" "${options[@]}" -c types.c -o types.o "$@"
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cc "${CFLAGS[@]}" "${LDFLAGS[@]}" "${options[@]}" "types.o" mpw-bench.c -o mpw-bench "$@"
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echo "done! Now use ./mpw-bench"
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}
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### TARGETS
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cc() {
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if hash llvm-gcc 2>/dev/null; then
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@ -78,26 +142,8 @@ cc() {
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fi
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}
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### MPW
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CFLAGS=(
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# include paths.
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-I"lib/scrypt/lib" -I"lib/scrypt/libcperciva"
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)
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LDFLAGS=(
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# library paths.
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-L"." -L"lib/scrypt"
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# link libraries.
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"lib/scrypt/scrypt-crypto_aesctr.o"
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"lib/scrypt/scrypt-sha256.o"
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"lib/scrypt/scrypt-crypto_scrypt-nosse.o"
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"lib/scrypt/scrypt-memlimit.o"
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"lib/scrypt/scrypt-scryptenc_cpuperf.o"
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"lib/scrypt/scrypt-scryptenc.o"
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-l"crypto"
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)
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cc "${CFLAGS[@]}" "${options[@]}" -c types.c -o types.o "$@"
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cc "${CFLAGS[@]}" "${LDFLAGS[@]}" "${options[@]}" "types.o" mpw.c -o mpw "$@"
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echo "done! Now run ./install or use ./mpw"
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for target in "${targets[@]}"; do
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echo
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echo "Building target: $target..."
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"$target" "$@"
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done
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170
MasterPassword/C/mpw-bench.c
Normal file
170
MasterPassword/C/mpw-bench.c
Normal file
@ -0,0 +1,170 @@
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#include <sys/time.h>
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#include <stdio.h>
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#include <sys/ioctl.h>
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#include <sys/types.h>
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#include <fcntl.h>
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#include <unistd.h>
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#include <math.h>
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#include <pwd.h>
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#include <netinet/in.h>
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#include <stdlib.h>
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#include <string.h>
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#include <errno.h>
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#include <alg/sha256.h>
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#include <crypto/crypto_scrypt.h>
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#include <ow-crypt.h>
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#include "types.h"
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#define MP_N 32768
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#define MP_r 8
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#define MP_p 2
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#define MP_dkLen 64
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#define MP_hash PearlHashSHA256
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int main(int argc, char *const argv[]) {
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char *userName = "Robert Lee Mitchel";
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char *masterPassword = "banana colored duckling";
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char *siteName = "masterpasswordapp.com";
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uint32_t siteCounter = 1;
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MPElementType siteType = MPElementTypeGeneratedLong;
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// Start MP
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struct timeval startTime;
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if (gettimeofday(&startTime, NULL) != 0) {
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fprintf(stderr, "Could not get time: %d\n", errno);
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return 1;
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}
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int iterations = 100;
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for (int i = 0; i < iterations; ++i) {
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// Calculate the master key salt.
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char *mpNameSpace = "com.lyndir.masterpassword";
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const uint32_t n_userNameLength = htonl(strlen(userName));
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const size_t masterKeySaltLength = strlen(mpNameSpace) + sizeof(n_userNameLength) + strlen(userName);
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char *masterKeySalt = malloc( masterKeySaltLength );
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if (!masterKeySalt) {
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fprintf(stderr, "Could not allocate master key salt: %d\n", errno);
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return 1;
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}
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char *mKS = masterKeySalt;
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memcpy(mKS, mpNameSpace, strlen(mpNameSpace)); mKS += strlen(mpNameSpace);
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memcpy(mKS, &n_userNameLength, sizeof(n_userNameLength)); mKS += sizeof(n_userNameLength);
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memcpy(mKS, userName, strlen(userName)); mKS += strlen(userName);
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if (mKS - masterKeySalt != masterKeySaltLength)
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abort();
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trc("masterKeySalt ID: %s\n", IDForBuf(masterKeySalt, masterKeySaltLength));
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// Calculate the master key.
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uint8_t *masterKey = malloc( MP_dkLen );
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if (!masterKey) {
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fprintf(stderr, "Could not allocate master key: %d\n", errno);
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return 1;
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}
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if (crypto_scrypt( (const uint8_t *)masterPassword, strlen(masterPassword), (const uint8_t *)masterKeySalt, masterKeySaltLength, MP_N, MP_r, MP_p, masterKey, MP_dkLen ) < 0) {
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fprintf(stderr, "Could not generate master key: %d\n", errno);
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return 1;
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}
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memset(masterKeySalt, 0, masterKeySaltLength);
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free(masterKeySalt);
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// Calculate the site seed.
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const uint32_t n_siteNameLength = htonl(strlen(siteName));
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const uint32_t n_siteCounter = htonl(siteCounter);
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const size_t sitePasswordInfoLength = strlen(mpNameSpace) + sizeof(n_siteNameLength) + strlen(siteName) + sizeof(n_siteCounter);
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char *sitePasswordInfo = malloc( sitePasswordInfoLength );
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if (!sitePasswordInfo) {
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fprintf(stderr, "Could not allocate site seed: %d\n", errno);
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return 1;
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}
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char *sPI = sitePasswordInfo;
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memcpy(sPI, mpNameSpace, strlen(mpNameSpace)); sPI += strlen(mpNameSpace);
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memcpy(sPI, &n_siteNameLength, sizeof(n_siteNameLength)); sPI += sizeof(n_siteNameLength);
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memcpy(sPI, siteName, strlen(siteName)); sPI += strlen(siteName);
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memcpy(sPI, &n_siteCounter, sizeof(n_siteCounter)); sPI += sizeof(n_siteCounter);
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if (sPI - sitePasswordInfo != sitePasswordInfoLength)
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abort();
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uint8_t sitePasswordSeed[32];
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HMAC_SHA256_Buf(masterKey, MP_dkLen, sitePasswordInfo, sitePasswordInfoLength, sitePasswordSeed);
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memset(masterKey, 0, MP_dkLen);
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memset(sitePasswordInfo, 0, sitePasswordInfoLength);
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free(masterKey);
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free(sitePasswordInfo);
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// Determine the cipher.
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const char *cipher = CipherForType(siteType, sitePasswordSeed[0]);
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trc("type %d, cipher: %s\n", siteType, cipher);
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if (strlen(cipher) > 32)
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abort();
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// Encode the password from the seed using the cipher.
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char *sitePassword = calloc(strlen(cipher) + 1, sizeof(char));
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for (int c = 0; c < strlen(cipher); ++c) {
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sitePassword[c] = CharacterFromClass(cipher[c], sitePasswordSeed[c + 1]);
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trc("class %c, character: %c\n", cipher[c], sitePassword[c]);
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}
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memset(sitePasswordSeed, 0, sizeof(sitePasswordSeed));
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fprintf( stderr, "\riteration %d / %d..", i, iterations );
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}
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// Output timing results.
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struct timeval endTime;
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if (gettimeofday(&endTime, NULL) != 0) {
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fprintf(stderr, "Could not get time: %d\n", errno);
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return 1;
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}
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long long secs = (endTime.tv_sec - startTime.tv_sec);
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long long usecs = (endTime.tv_usec - startTime.tv_usec);
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double elapsed = secs + usecs / 1000000.0;
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fprintf( stdout, "Master Password: %d iterations in %llds %lldµs -> %.2f/s\n", iterations, secs, usecs, iterations / elapsed );
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// Start SHA-256
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if (gettimeofday(&startTime, NULL) != 0) {
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fprintf(stderr, "Could not get time: %d\n", errno);
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return 1;
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}
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iterations = 50000000;
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uint8_t hash[32];
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for (int i = 0; i < iterations; ++i)
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SHA256_Buf(masterPassword, strlen(masterPassword), hash);
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// Output timing results.
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if (gettimeofday(&endTime, NULL) != 0) {
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fprintf(stderr, "Could not get time: %d\n", errno);
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return 1;
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}
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secs = (endTime.tv_sec - startTime.tv_sec);
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usecs = (endTime.tv_usec - startTime.tv_usec);
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elapsed = secs + usecs / 1000000.0;
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fprintf( stdout, "SHA-256: %d iterations in %llds %lldµs -> %.2f/s\n", iterations, secs, usecs, iterations / elapsed );
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// Start BCrypt
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if (gettimeofday(&startTime, NULL) != 0) {
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fprintf(stderr, "Could not get time: %d\n", errno);
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return 1;
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}
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int bcrypt_cost = 9;
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iterations = 600;
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for (int i = 0; i < iterations; ++i)
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crypt(masterPassword, crypt_gensalt("$2b$", bcrypt_cost, userName, strlen(userName)));
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// Output timing results.
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if (gettimeofday(&endTime, NULL) != 0) {
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fprintf(stderr, "Could not get time: %d\n", errno);
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return 1;
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}
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secs = (endTime.tv_sec - startTime.tv_sec);
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usecs = (endTime.tv_usec - startTime.tv_usec);
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elapsed = secs + usecs / 1000000.0;
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fprintf( stdout, "BCrypt (cost %d): %d iterations in %llds %lldµs -> %.2f/s\n", bcrypt_cost, iterations, secs, usecs, iterations / elapsed );
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return 0;
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}
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