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crypto,cmake: enable ASM mul impl on ARM; add cmake opt
This was disabled earlier as part of diagnosing failing tests on ARM, which turned out to be due to aliasing, fixed by adding -fno-strict-aliasing. So, re-enabling it back.
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@ -74,3 +74,13 @@ bitmonero_add_library(crypto
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${crypto_sources}
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${crypto_headers}
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${crypto_private_headers})
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if (ARM)
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option(NO_OPTIMIZED_MULTIPLY_ON_ARM
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"Compute multiply using generic C implementation instead of ARM ASM" OFF)
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if(NO_OPTIMIZED_MULTIPLY_ON_ARM)
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message(STATUS "Using generic C implementation for multiply")
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set_property(SOURCE slow-hash.c
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PROPERTY COMPILE_DEFINITIONS "NO_OPTIMIZED_MULTIPLY_ON_ARM")
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endif()
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endif()
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@ -679,7 +679,7 @@ void slow_hash_free_state(void)
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#include "aesb.c"
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#ifndef ARM_MUL_IMPL_ASM
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#ifdef NO_OPTIMIZED_MULTIPLY_ON_ARM
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/* The asm corresponds to this C code */
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#define SHORT uint32_t
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#define LONG uint64_t
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@ -712,7 +712,7 @@ void mul(const uint8_t *ca, const uint8_t *cb, uint8_t *cres) {
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res[0] = t.tmp[6];
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res[1] = t.tmp[7];
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}
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#else // ARM_MUL_IMPL_ASM (TODO: this fails hash-slow test with GCC 6.1.1)
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#else // !NO_OPTIMIZED_MULTIPLY_ON_ARM
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/* Can work as inline, but actually runs slower. Keep it separate */
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#define mul(a, b, c) cn_mul128(a, b, c)
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@ -747,7 +747,7 @@ __asm__ __volatile__(
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: [A]"r"(aa[1]), [a]"r"(aa[0]), [B]"r"(bb[1]), [b]"r"(bb[0]), [r]"r"(r)
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: "cc", "memory");
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}
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#endif // ARM_MUL_IMPL_ASM
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#endif // NO_OPTIMIZED_MULTIPLY_ON_ARM
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STATIC INLINE void sum_half_blocks(uint8_t* a, const uint8_t* b)
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{
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