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https://codeberg.org/anoncontributorxmr/monero.git
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Merge pull request #5231
108c625b
CryptonightR: define out i386/x86_64 specific code on other archs (moneromooo-monero)1b8757dd
slow-hash: fix build on arm (moneromooo-monero)5057eb11
cmake: ARCH_ID fixes for cross compilation (TheCharlatan)
This commit is contained in:
commit
39d7d3113b
7 changed files with 60 additions and 27 deletions
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@ -115,6 +115,9 @@ string(TOLOWER ${CMAKE_BUILD_TYPE} CMAKE_BUILD_TYPE_LOWER)
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# to identify the target architecture, to direct logic in this cmake script.
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# Since ARCH is a cached variable, it will not be set on first cmake invocation.
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if (NOT ARCH OR ARCH STREQUAL "" OR ARCH STREQUAL "native" OR ARCH STREQUAL "default")
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if(CMAKE_SYSTEM_PROCESSOR STREQUAL "")
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set(CMAKE_SYSTEM_PROCESSOR ${CMAKE_HOST_SYSTEM_PROCESSOR})
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endif()
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set(ARCH_ID "${CMAKE_SYSTEM_PROCESSOR}")
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else()
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set(ARCH_ID "${ARCH}")
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@ -47,6 +47,8 @@ set (CMAKE_FIND_ROOT_PATH_MODE_PROGRAM NEVER) # Find programs on host
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set (CMAKE_FIND_ROOT_PATH_MODE_LIBRARY ONLY) # Find libs in target
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set (CMAKE_FIND_ROOT_PATH_MODE_INCLUDE ONLY) # Find includes in target
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set(CMAKE_SYSTEM_PROCESSOR ${CMAKE_HOST_SYSTEM_PROCESSOR} CACHE STRING "" FORCE)
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# specify the cross compiler to be used. Darwin uses clang provided by the SDK.
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if(CMAKE_SYSTEM_NAME STREQUAL "Darwin")
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SET(CMAKE_C_COMPILER @prefix@/native/bin/clang)
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@ -88,6 +90,11 @@ endif()
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if(ARCHITECTURE STREQUAL "i686" AND CMAKE_SYSTEM_NAME STREQUAL "Linux")
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SET(LINUX_32 ON)
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SET(ARCH_ID "i386")
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endif()
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if(ARCHITECTURE STREQUAL "x86_64" AND CMAKE_SYSTEM_NAME STREQUAL "Linux")
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SET(ARCH_ID "x86_64")
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endif()
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#Create a new global cmake flag that indicates building with depends
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@ -46,9 +46,12 @@ set(crypto_sources
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skein.c
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slow-hash.c
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CryptonightR_JIT.c
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CryptonightR_template.S
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tree-hash.c)
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if(ARCH_ID STREQUAL "i386" OR ARCH_ID STREQUAL "x86_64" OR ARCH_ID STREQUAL "x86-64")
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list(APPEND crypto_sources CryptonightR_template.S)
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endif()
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set(crypto_headers)
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set(crypto_private_headers
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@ -12,6 +12,7 @@
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#include "CryptonightR_template.h"
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static const uint8_t prologue[] = {
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#if defined __i386 || defined __x86_64__
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0x4C, 0x8B, 0xD7, // mov r10, rdi
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0x53, // push rbx
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0x55, // push rbp
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@ -26,9 +27,11 @@ static const uint8_t prologue[] = {
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0x41, 0x8B, 0x42, 0x18, // mov eax, DWORD PTR [r10+24]
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0x41, 0x8B, 0x52, 0x1C, // mov edx, DWORD PTR [r10+28]
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0x45, 0x8B, 0x4A, 0x20, // mov r9d, DWORD PTR [r10+32]
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#endif
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};
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static const uint8_t epilogue[] = {
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#if defined __i386 || defined __x86_64__
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0x49, 0x8B, 0xE3, // mov rsp, r11
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0x41, 0x89, 0x1A, // mov DWORD PTR [r10], ebx
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0x41, 0x89, 0x72, 0x04, // mov DWORD PTR [r10+4], esi
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@ -38,6 +41,7 @@ static const uint8_t epilogue[] = {
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0x5D, // pop rbp
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0x5B, // pop rbx
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0xC3, // ret
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#endif
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};
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#define APPEND_CODE(src, size) \
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@ -50,6 +54,7 @@ static const uint8_t epilogue[] = {
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int v4_generate_JIT_code(const struct V4_Instruction* code, v4_random_math_JIT_func buf, const size_t buf_size)
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{
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#if defined __i386 || defined __x86_64__
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uint8_t* JIT_code = (uint8_t*) buf;
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const uint8_t* JIT_code_end = JIT_code + buf_size;
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@ -99,4 +104,7 @@ int v4_generate_JIT_code(const struct V4_Instruction* code, v4_random_math_JIT_f
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__builtin___clear_cache((char*)buf, (char*)JIT_code);
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return 0;
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#else
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return 1;
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#endif
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}
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@ -8,7 +8,11 @@
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// - Call v4_generate_JIT_code with "buf" pointed to memory allocated on previous step
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// - Call the generated code instead of "v4_random_math(code, r)", omit the "code" parameter
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typedef void (*v4_random_math_JIT_func)(uint32_t* r) __attribute__((sysv_abi));
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typedef void (*v4_random_math_JIT_func)(uint32_t* r)
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#if defined __i386 || defined __x86_64__
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__attribute__((sysv_abi))
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#endif
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;
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// Given the random math sequence, generates machine code (x86-64) for it
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// Returns 0 if code was generated successfully
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@ -1,6 +1,8 @@
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#ifndef CRYPTONIGHTR_TEMPLATE_H
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#define CRYPTONIGHTR_TEMPLATE_H
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#if defined __i386 || defined __x86_64__
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void CryptonightR_instruction0(void);
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void CryptonightR_instruction1(void);
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void CryptonightR_instruction2(void);
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@ -1036,4 +1038,6 @@ const void* instructions_mov[257] = {
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CryptonightR_instruction_mov256,
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};
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#endif
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#endif // CRYPTONIGHTR_TEMPLATE_H
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@ -65,6 +65,31 @@ static void local_abort(const char *msg)
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#endif
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}
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volatile int use_v4_jit_flag = -1;
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static inline int use_v4_jit(void)
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{
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#if defined(__x86_64__)
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if (use_v4_jit_flag != -1)
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return use_v4_jit_flag;
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const char *env = getenv("MONERO_USE_CNV4_JIT");
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if (!env) {
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use_v4_jit_flag = 0;
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}
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else if (!strcmp(env, "0") || !strcmp(env, "no")) {
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use_v4_jit_flag = 0;
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}
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else {
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use_v4_jit_flag = 1;
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}
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return use_v4_jit_flag;
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#else
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return 0;
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#endif
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}
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#define VARIANT1_1(p) \
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do if (variant == 1) \
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{ \
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@ -494,31 +519,6 @@ STATIC INLINE int force_software_aes(void)
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return use;
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}
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volatile int use_v4_jit_flag = -1;
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STATIC INLINE int use_v4_jit(void)
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{
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#if defined(__x86_64__)
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if (use_v4_jit_flag != -1)
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return use_v4_jit_flag;
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const char *env = getenv("MONERO_USE_CNV4_JIT");
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if (!env) {
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use_v4_jit_flag = 0;
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}
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else if (!strcmp(env, "0") || !strcmp(env, "no")) {
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use_v4_jit_flag = 0;
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}
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else {
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use_v4_jit_flag = 1;
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}
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return use_v4_jit_flag;
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#else
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return 0;
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#endif
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}
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STATIC INLINE int check_aes_hw(void)
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{
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int cpuid_results[4];
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@ -1029,6 +1029,8 @@ void slow_hash_free_state(void)
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#define U64(x) ((uint64_t *) (x))
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#define hp_jitfunc ((v4_random_math_JIT_func)NULL)
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STATIC INLINE void xor64(uint64_t *a, const uint64_t b)
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{
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*a ^= b;
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@ -1574,6 +1576,8 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
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#else
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// Portable implementation as a fallback
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#define hp_jitfunc ((v4_random_math_JIT_func)NULL)
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void slow_hash_allocate_state(void)
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{
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// Do nothing, this is just to maintain compatibility with the upgraded slow-hash.c
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