Merge remote-tracking branch 'refs/remotes/xmrig/master'
Conflicts: CHANGELOG.md README.md src/App.cpp src/App.h src/Cpu.cpp src/Options.cpp src/Options.h src/crypto/CryptoNight_arm.h src/crypto/CryptoNight_x86.h src/version.h
This commit is contained in:
commit
e9edd366fe
8 changed files with 76 additions and 56 deletions
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@ -144,6 +144,7 @@ if (WITH_HTTPD)
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message(FATAL_ERROR "microhttpd NOT found: use `-DWITH_HTTPD=OFF` to build without http deamon support")
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endif()
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else()
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set(MHD_LIBRARY "")
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add_definitions(/DXMRIG_NO_HTTPD)
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add_definitions(/DXMRIG_NO_API)
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endif()
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@ -147,6 +147,13 @@ int App::start()
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Summary::print();
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if (m_options->dryRun()) {
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LOG_NOTICE("OK");
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release();
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return 0;
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}
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# ifndef XMRIG_NO_API
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Api::start();
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# endif
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@ -125,6 +125,9 @@ static char const short_options[] = "a:c:khBp:Px:r:R:s:t:T:o:u:O:v:Vl:S";
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static struct option const options[] = {
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{ "algo", 1, nullptr, 'a' },
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{ "api-access-token", 1, nullptr, 4001 },
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{ "api-port", 1, nullptr, 4000 },
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{ "api-worker-id", 1, nullptr, 4002 },
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{ "av", 1, nullptr, 'v' },
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{ "aesni", 1, nullptr, 'A' },
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{ "multihash-factor", 1, nullptr, 'm' },
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@ -133,6 +136,7 @@ static struct option const options[] = {
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{ "cpu-affinity", 1, nullptr, 1020 },
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{ "cpu-priority", 1, nullptr, 1021 },
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{ "donate-level", 1, nullptr, 1003 },
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{ "dry-run", 0, nullptr, 5000 },
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{ "help", 0, nullptr, 'h' },
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{ "keepalive", 0, nullptr ,'k' },
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{ "log-file", 1, nullptr, 'l' },
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@ -181,6 +185,7 @@ static struct option const config_options[] = {
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{ "cpu-affinity", 1, nullptr, 1020 },
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{ "cpu-priority", 1, nullptr, 1021 },
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{ "donate-level", 1, nullptr, 1003 },
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{ "dry-run", 0, nullptr, 5000 },
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{ "huge-pages", 0, nullptr, 1009 },
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{ "log-file", 1, nullptr, 'l' },
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{ "max-cpu-usage", 1, nullptr, 1004 },
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@ -505,6 +510,7 @@ bool Options::parseArg(int key, const char *arg)
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case 'S': /* --syslog */
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case 1005: /* --safe */
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case 1006: /* --nicehash */
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case 5000: /* --dry-run */
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return parseBoolean(key, true);
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case 1002: /* --no-color */
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@ -719,6 +725,10 @@ bool Options::parseBoolean(int key, bool enable)
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m_colors = enable;
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break;
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case 5000: /* --dry-run */
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m_dryRun = enable;
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break;
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default:
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break;
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}
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@ -46,7 +46,7 @@ NetworkState::NetworkState() :
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int NetworkState::connectionTime() const
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{
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return m_active ? ((uv_now(uv_default_loop()) - m_connectionTime) / 1000) : 0;
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return m_active ? (int)((uv_now(uv_default_loop()) - m_connectionTime) / 1000) : 0;
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}
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@ -56,7 +56,7 @@ uint32_t NetworkState::avgTime() const
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return 0;
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}
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return (uint32_t) connectionTime() / m_latency.size();
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return connectionTime() / (uint32_t)m_latency.size();
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}
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@ -208,14 +208,14 @@ aes_round(__m128i key, __m128i* x0, __m128i* x1, __m128i* x2, __m128i* x3, __m12
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__m128i* x7)
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{
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if (SOFT_AES) {
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*x0 = soft_aesenc(*x0, key);
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*x1 = soft_aesenc(*x1, key);
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*x2 = soft_aesenc(*x2, key);
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*x3 = soft_aesenc(*x3, key);
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*x4 = soft_aesenc(*x4, key);
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*x5 = soft_aesenc(*x5, key);
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*x6 = soft_aesenc(*x6, key);
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*x7 = soft_aesenc(*x7, key);
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*x0 = soft_aesenc((uint32_t*)x0, key);
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*x1 = soft_aesenc((uint32_t*)x1, key);
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*x2 = soft_aesenc((uint32_t*)x2, key);
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*x3 = soft_aesenc((uint32_t*)x3, key);
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*x4 = soft_aesenc((uint32_t*)x4, key);
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*x5 = soft_aesenc((uint32_t*)x5, key);
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*x6 = soft_aesenc((uint32_t*)x6, key);
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*x7 = soft_aesenc((uint32_t*)x7, key);
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}
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# ifndef XMRIG_ARMv7
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else {
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@ -460,13 +460,15 @@ public:
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idx = h[0] ^ h[4];
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for (size_t i = 0; i < ITERATIONS; i++) {
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__m128i cx = _mm_load_si128((__m128i*) &l[idx & MASK]);
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__m128i cx;
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if (SOFT_AES) {
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cx = soft_aesenc(cx, _mm_set_epi64x(ah, al));
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} else {
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cx = soft_aesenc((uint32_t*)&l0[idx0 & MASK], _mm_set_epi64x(ah0, al0));
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}
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else {
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cx = _mm_load_si128((__m128i *) &l0[idx0 & MASK]);
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# ifndef XMRIG_ARMv7
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cx = vreinterpretq_m128i_u8(vaesmcq_u8(vaeseq_u8(cx, vdupq_n_u8(0)))) ^ _mm_set_epi64x(ah, al);
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cx = vreinterpretq_m128i_u8(vaesmcq_u8(vaeseq_u8(cx, vdupq_n_u8(0)))) ^ _mm_set_epi64x(ah0, al0);
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# endif
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}
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@ -631,19 +633,18 @@ public:
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uint64_t idx2 = h2[0] ^h2[4];
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for (size_t i = 0; i < ITERATIONS; i++) {
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__m128i cx0 = _mm_load_si128((__m128i*) &l0[idx0 & MASK]);
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__m128i cx1 = _mm_load_si128((__m128i*) &l1[idx1 & MASK]);
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__m128i cx2 = _mm_load_si128((__m128i*) &l2[idx2 & MASK]);
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__m128i cx0, cx1;
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if (SOFT_AES) {
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cx0 = soft_aesenc(cx0, _mm_set_epi64x(ah0, al0));
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cx1 = soft_aesenc(cx1, _mm_set_epi64x(ah1, al1));
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cx2 = soft_aesenc(cx2, _mm_set_epi64x(ah2, al2));
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} else {
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cx0 = soft_aesenc((uint32_t*)&l0[idx0 & MASK], _mm_set_epi64x(ah0, al0));
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cx1 = soft_aesenc((uint32_t*)&l1[idx1 & MASK], _mm_set_epi64x(ah1, al1));
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}
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else {
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cx0 = _mm_load_si128((__m128i *) &l0[idx0 & MASK]);
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cx1 = _mm_load_si128((__m128i *) &l1[idx1 & MASK]);
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# ifndef XMRIG_ARMv7
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cx0 = vreinterpretq_m128i_u8(vaesmcq_u8(vaeseq_u8(cx0, vdupq_n_u8(0)))) ^ _mm_set_epi64x(ah0, al0);
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cx1 = vreinterpretq_m128i_u8(vaesmcq_u8(vaeseq_u8(cx1, vdupq_n_u8(0)))) ^ _mm_set_epi64x(ah1, al1);
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cx2 = vreinterpretq_m128i_u8(vaesmcq_u8(vaeseq_u8(cx2, vdupq_n_u8(0)))) ^ _mm_set_epi64x(ah2, al2);
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# endif
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}
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@ -204,15 +204,16 @@ aes_round(__m128i key, __m128i* x0, __m128i* x1, __m128i* x2, __m128i* x3, __m12
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__m128i* x7)
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{
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if (SOFT_AES) {
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*x0 = soft_aesenc(*x0, key);
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*x1 = soft_aesenc(*x1, key);
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*x2 = soft_aesenc(*x2, key);
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*x3 = soft_aesenc(*x3, key);
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*x4 = soft_aesenc(*x4, key);
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*x5 = soft_aesenc(*x5, key);
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*x6 = soft_aesenc(*x6, key);
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*x7 = soft_aesenc(*x7, key);
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} else {
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*x0 = soft_aesenc((uint32_t*)x0, key);
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*x1 = soft_aesenc((uint32_t*)x1, key);
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*x2 = soft_aesenc((uint32_t*)x2, key);
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*x3 = soft_aesenc((uint32_t*)x3, key);
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*x4 = soft_aesenc((uint32_t*)x4, key);
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*x5 = soft_aesenc((uint32_t*)x5, key);
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*x6 = soft_aesenc((uint32_t*)x6, key);
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*x7 = soft_aesenc((uint32_t*)x7, key);
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}
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else {
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*x0 = _mm_aesenc_si128(*x0, key);
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*x1 = _mm_aesenc_si128(*x1, key);
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*x2 = _mm_aesenc_si128(*x2, key);
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@ -89,12 +89,12 @@
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alignas(16) const uint32_t saes_table[4][256] = { saes_data(saes_u0), saes_data(saes_u1), saes_data(saes_u2), saes_data(saes_u3) };
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alignas(16) const uint8_t saes_sbox[256] = saes_data(saes_h0);
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static inline __m128i soft_aesenc(__m128i in, __m128i key)
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static inline __m128i soft_aesenc(const uint32_t* in, __m128i key)
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{
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const uint32_t x0 = _mm_cvtsi128_si32(in);
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const uint32_t x1 = _mm_cvtsi128_si32(_mm_shuffle_epi32(in, 0x55));
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const uint32_t x2 = _mm_cvtsi128_si32(_mm_shuffle_epi32(in, 0xAA));
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const uint32_t x3 = _mm_cvtsi128_si32(_mm_shuffle_epi32(in, 0xFF));
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const uint32_t x0 = in[0];
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const uint32_t x1 = in[1];
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const uint32_t x2 = in[2];
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const uint32_t x3 = in[3];
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__m128i out = _mm_set_epi32(
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(saes_table[0][x3 & 0xff] ^ saes_table[1][(x0 >> 8) & 0xff] ^ saes_table[2][(x1 >> 16) & 0xff] ^ saes_table[3][x2 >> 24]),
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@ -532,7 +532,7 @@ void Client::onAllocBuffer(uv_handle_t *handle, size_t suggested_size, uv_buf_t
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auto client = getClient(handle->data);
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buf->base = &client->m_recvBuf.base[client->m_recvBufPos];
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buf->len = client->m_recvBuf.len - client->m_recvBufPos;
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buf->len = client->m_recvBuf.len - (unsigned long)client->m_recvBufPos;
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}
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