| |
| |
| #pragma once |
| #ifndef LLAMA_V3_UTIL_H |
| #define LLAMA_V3_UTIL_H |
|
|
| #include <cstdio> |
| #include <cstdint> |
| #include <cerrno> |
| #include <cstring> |
| #include <cstdarg> |
| #include <cstdlib> |
| #include <climits> |
|
|
| #include <string> |
| #include <vector> |
| #include <stdexcept> |
|
|
| #ifdef __has_include |
| #if __has_include(<unistd.h>) |
| #include <unistd.h> |
| #if defined(_POSIX_MAPPED_FILES) |
| #include <sys/mman.h> |
| #endif |
| #if defined(_POSIX_MEMLOCK_RANGE) |
| #include <sys/resource.h> |
| #endif |
| #endif |
| #endif |
|
|
| #if defined(_WIN32) |
| #define WIN32_LEAN_AND_MEAN |
| #ifndef NOMINMAX |
| #define NOMINMAX |
| #endif |
| #include <windows.h> |
| #include <io.h> |
| #include <stdio.h> |
| #endif |
|
|
| #define LLAMA_V3_ASSERT(x) \ |
| do { \ |
| if (!(x)) { \ |
| fprintf(stderr, "LLAMA_V3_ASSERT: %s:%d: %s\n", __FILE__, __LINE__, #x); \ |
| abort(); \ |
| } \ |
| } while (0) |
|
|
| #ifdef __GNUC__ |
| #ifdef __MINGW32__ |
| __attribute__((format(gnu_printf, 1, 2))) |
| #else |
| __attribute__((format(printf, 1, 2))) |
| #endif |
| #endif |
| static std::string format_old(const char * fmt, ...) { |
| va_list ap, ap2; |
| va_start(ap, fmt); |
| va_copy(ap2, ap); |
| int size = vsnprintf(NULL, 0, fmt, ap); |
| LLAMA_V3_ASSERT(size >= 0 && size < INT_MAX); |
| std::vector<char> buf(size + 1); |
| int size2 = vsnprintf(buf.data(), size + 1, fmt, ap2); |
| LLAMA_V3_ASSERT(size2 == size); |
| va_end(ap2); |
| va_end(ap); |
| return std::string(buf.data(), size); |
| } |
|
|
| struct llama_v3_file { |
| |
| FILE * fp; |
| size_t size; |
|
|
| llama_v3_file(const char * fname, const char * mode) { |
| fp = std::fopen(fname, mode); |
| if (fp == NULL) { |
| throw std::runtime_error(format_old("failed to open %s: %s", fname, strerror(errno))); |
| } |
| seek(0, SEEK_END); |
| size = tell(); |
| seek(0, SEEK_SET); |
| } |
|
|
| size_t tell() const { |
| #ifdef _WIN32 |
| __int64 ret = _ftelli64(fp); |
| #else |
| long ret = std::ftell(fp); |
| #endif |
| LLAMA_V3_ASSERT(ret != -1); |
| return (size_t) ret; |
| } |
|
|
| void seek(size_t offset, int whence) { |
| #ifdef _WIN32 |
| int ret = _fseeki64(fp, (__int64) offset, whence); |
| #else |
| int ret = std::fseek(fp, (long) offset, whence); |
| #endif |
| LLAMA_V3_ASSERT(ret == 0); |
| } |
|
|
| void read_raw(void * ptr, size_t len) const { |
| if (len == 0) { |
| return; |
| } |
| errno = 0; |
| std::size_t ret = std::fread(ptr, len, 1, fp); |
| if (ferror(fp)) { |
| throw std::runtime_error(format_old("read error: %s", strerror(errno))); |
| } |
| if (ret != 1) { |
| throw std::runtime_error(std::string("unexpectedly reached end of file")); |
| } |
| } |
|
|
| std::uint32_t read_u32() { |
| std::uint32_t ret; |
| read_raw(&ret, sizeof(ret)); |
| return ret; |
| } |
|
|
| std::string read_string(std::uint32_t len) { |
| std::vector<char> chars(len); |
| read_raw(chars.data(), len); |
| return std::string(chars.data(), len); |
| } |
|
|
| void write_raw(const void * ptr, size_t len) const { |
| if (len == 0) { |
| return; |
| } |
| errno = 0; |
| size_t ret = std::fwrite(ptr, len, 1, fp); |
| if (ret != 1) { |
| throw std::runtime_error(format_old("write error: %s", strerror(errno))); |
| } |
| } |
|
|
| void write_u32(std::uint32_t val) { |
| write_raw(&val, sizeof(val)); |
| } |
|
|
| ~llama_v3_file() { |
| if (fp) { |
| std::fclose(fp); |
| } |
| } |
| }; |
|
|
| |
| struct llama_v3_data_context { |
| virtual void write(const void * src, size_t size) = 0; |
| virtual size_t get_size_written() = 0; |
| virtual ~llama_v3_data_context() = default; |
| }; |
|
|
| struct llama_v3_data_buffer_context : llama_v3_data_context { |
| uint8_t* ptr; |
| size_t size_written = 0; |
|
|
| llama_v3_data_buffer_context(uint8_t * p) : ptr(p) {} |
|
|
| void write(const void * src, size_t size) override { |
| memcpy(ptr, src, size); |
| ptr += size; |
| size_written += size; |
| } |
|
|
| size_t get_size_written() override { |
| return size_written; |
| } |
| }; |
|
|
| struct llama_v3_data_file_context : llama_v3_data_context { |
| llama_v3_file* file; |
| size_t size_written = 0; |
|
|
| llama_v3_data_file_context(llama_v3_file * f) : file(f) {} |
|
|
| void write(const void * src, size_t size) override { |
| file->write_raw(src, size); |
| size_written += size; |
| } |
|
|
| size_t get_size_written() override { |
| return size_written; |
| } |
| }; |
|
|
| #if defined(_WIN32) |
| static std::string llama_v3_format_win_err(DWORD err) { |
| LPSTR buf; |
| size_t size = FormatMessageA(FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM | FORMAT_MESSAGE_IGNORE_INSERTS, |
| NULL, err, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), (LPSTR)&buf, 0, NULL); |
| if (!size) { |
| return "FormatMessageA failed"; |
| } |
| std::string ret(buf, size); |
| LocalFree(buf); |
| return ret; |
| } |
| #endif |
|
|
| struct llama_v3_mmap { |
| void * addr; |
| size_t size; |
|
|
| llama_v3_mmap(const llama_v3_mmap &) = delete; |
|
|
| #ifdef _POSIX_MAPPED_FILES |
| static constexpr bool SUPPORTED = true; |
|
|
| llama_v3_mmap(struct llama_v3_file * file, size_t prefetch = (size_t) -1 , bool numa = false) { |
| size = file->size; |
| int fd = fileno(file->fp); |
| int flags = MAP_SHARED; |
| |
| if (numa) { prefetch = 0; } |
| #ifdef __linux__ |
| if (prefetch >= file->size) { flags |= MAP_POPULATE; } |
| #endif |
| addr = mmap(NULL, file->size, PROT_READ, flags, fd, 0); |
| if (addr == MAP_FAILED) { |
| throw std::runtime_error(format_old("mmap failed: %s", strerror(errno))); |
| } |
|
|
| if (prefetch > 0) { |
| |
| if (madvise(addr, std::min(file->size, prefetch), MADV_WILLNEED)) { |
| fprintf(stderr, "warning: madvise(.., MADV_WILLNEED) failed: %s\n", |
| strerror(errno)); |
| } |
| } |
| if (numa) { |
| |
| |
| if (madvise(addr, file->size, MADV_RANDOM)) { |
| fprintf(stderr, "warning: madvise(.., MADV_RANDOM) failed: %s\n", |
| strerror(errno)); |
| } |
| } |
| } |
|
|
| ~llama_v3_mmap() { |
| munmap(addr, size); |
| } |
| #elif defined(_WIN32) |
| static constexpr bool SUPPORTED = true; |
|
|
| llama_v3_mmap(struct llama_v3_file * file, bool prefetch = true, bool numa = false) { |
| (void) numa; |
|
|
| size = file->size; |
|
|
| HANDLE hFile = (HANDLE) _get_osfhandle(_fileno(file->fp)); |
|
|
| HANDLE hMapping = CreateFileMappingA(hFile, NULL, PAGE_READONLY, 0, 0, NULL); |
| DWORD error = GetLastError(); |
|
|
| if (hMapping == NULL) { |
| throw std::runtime_error(format_old("CreateFileMappingA failed: %s", llama_v3_format_win_err(error).c_str())); |
| } |
|
|
| addr = MapViewOfFile(hMapping, FILE_MAP_READ, 0, 0, 0); |
| error = GetLastError(); |
| CloseHandle(hMapping); |
|
|
| if (addr == NULL) { |
| throw std::runtime_error(format_old("MapViewOfFile failed: %s", llama_v3_format_win_err(error).c_str())); |
| } |
|
|
| #ifndef USE_FAILSAFE |
| if (prefetch) { |
| |
| |
| BOOL (WINAPI *pPrefetchVirtualMemory) (HANDLE, ULONG_PTR, PWIN32_MEMORY_RANGE_ENTRY, ULONG); |
| HMODULE hKernel32; |
|
|
| |
| hKernel32 = GetModuleHandleW(L"kernel32.dll"); |
|
|
| |
| pPrefetchVirtualMemory = reinterpret_cast<decltype(pPrefetchVirtualMemory)> (GetProcAddress(hKernel32, "PrefetchVirtualMemory")); |
|
|
| if (pPrefetchVirtualMemory) { |
| |
| WIN32_MEMORY_RANGE_ENTRY range; |
| range.VirtualAddress = addr; |
| range.NumberOfBytes = (SIZE_T)size; |
| if (!pPrefetchVirtualMemory(GetCurrentProcess(), 1, &range, 0)) { |
| fprintf(stderr, "warning: PrefetchVirtualMemory failed: %s\n", |
| llama_v3_format_win_err(GetLastError()).c_str()); |
| } |
| } |
| } |
| #else |
| printf("\nPrefetchVirtualMemory skipped in compatibility mode.\n"); |
| #endif |
| } |
|
|
| ~llama_v3_mmap() { |
| if (!UnmapViewOfFile(addr)) { |
| fprintf(stderr, "warning: UnmapViewOfFile failed: %s\n", |
| llama_v3_format_win_err(GetLastError()).c_str()); |
| } |
| } |
| #else |
| static constexpr bool SUPPORTED = false; |
|
|
| llama_v3_mmap(struct llama_v3_file *, bool prefetch = true, bool numa = false) { |
| (void) prefetch; |
| (void) numa; |
|
|
| throw std::runtime_error(std::string("mmap not supported")); |
| } |
| #endif |
| }; |
|
|
| |
| |
| struct llama_v3_mlock { |
| void * addr = NULL; |
| size_t size = 0; |
| bool failed_already = false; |
|
|
| llama_v3_mlock() {} |
| llama_v3_mlock(const llama_v3_mlock &) = delete; |
|
|
| ~llama_v3_mlock() { |
| if (size) { |
| raw_unlock(addr, size); |
| } |
| } |
|
|
| void init(void * ptr) { |
| LLAMA_V3_ASSERT(addr == NULL && size == 0); |
| addr = ptr; |
| } |
|
|
| void grow_to(size_t target_size) { |
| LLAMA_V3_ASSERT(addr); |
| if (failed_already) { |
| return; |
| } |
| size_t granularity = lock_granularity(); |
| target_size = (target_size + granularity - 1) & ~(granularity - 1); |
| if (target_size > size) { |
| if (raw_lock((uint8_t *) addr + size, target_size - size)) { |
| size = target_size; |
| } else { |
| failed_already = true; |
| } |
| } |
| } |
|
|
| #ifdef _POSIX_MEMLOCK_RANGE |
| static constexpr bool SUPPORTED = true; |
|
|
| size_t lock_granularity() { |
| return (size_t) sysconf(_SC_PAGESIZE); |
| } |
|
|
| #ifdef __APPLE__ |
| #define MLOCK_SUGGESTION \ |
| "Try increasing the sysctl values 'vm.user_wire_limit' and 'vm.global_user_wire_limit' and/or " \ |
| "decreasing 'vm.global_no_user_wire_amount'. Also try increasing RLIMIT_MLOCK (ulimit -l).\n" |
| #else |
| #define MLOCK_SUGGESTION \ |
| "Try increasing RLIMIT_MLOCK ('ulimit -l' as root).\n" |
| #endif |
|
|
| bool raw_lock(const void * addr, size_t size) { |
| if (!mlock(addr, size)) { |
| return true; |
| } else { |
| char* errmsg = std::strerror(errno); |
| bool suggest = (errno == ENOMEM); |
|
|
| |
| struct rlimit lock_limit; |
| if (suggest && getrlimit(RLIMIT_MEMLOCK, &lock_limit)) |
| suggest = false; |
| if (suggest && (lock_limit.rlim_max > lock_limit.rlim_cur + size)) |
| suggest = false; |
|
|
| fprintf(stderr, "warning: failed to mlock %zu-byte buffer (after previously locking %zu bytes): %s\n%s", |
| size, this->size, errmsg, suggest ? MLOCK_SUGGESTION : ""); |
| return false; |
| } |
| } |
|
|
| #undef MLOCK_SUGGESTION |
|
|
| void raw_unlock(void * addr, size_t size) { |
| if (munlock(addr, size)) { |
| fprintf(stderr, "warning: failed to munlock buffer: %s\n", std::strerror(errno)); |
| } |
| } |
| #elif defined(_WIN32) |
| static constexpr bool SUPPORTED = true; |
|
|
| size_t lock_granularity() { |
| SYSTEM_INFO si; |
| GetSystemInfo(&si); |
| return (size_t) si.dwPageSize; |
| } |
|
|
| bool raw_lock(void * ptr, size_t len) { |
| for (int tries = 1; ; tries++) { |
| if (VirtualLock(ptr, len)) { |
| return true; |
| } |
| if (tries == 2) { |
| fprintf(stderr, "warning: failed to VirtualLock %zu-byte buffer (after previously locking %zu bytes): %s\n", |
| len, size, llama_v3_format_win_err(GetLastError()).c_str()); |
| return false; |
| } |
|
|
| |
| |
| SIZE_T min_ws_size, max_ws_size; |
| if (!GetProcessWorkingSetSize(GetCurrentProcess(), &min_ws_size, &max_ws_size)) { |
| fprintf(stderr, "warning: GetProcessWorkingSetSize failed: %s\n", |
| llama_v3_format_win_err(GetLastError()).c_str()); |
| return false; |
| } |
| |
| |
| |
| |
| size_t increment = len + 1048576; |
| |
| min_ws_size += increment; |
| max_ws_size += increment; |
| if (!SetProcessWorkingSetSize(GetCurrentProcess(), min_ws_size, max_ws_size)) { |
| fprintf(stderr, "warning: SetProcessWorkingSetSize failed: %s\n", |
| llama_v3_format_win_err(GetLastError()).c_str()); |
| return false; |
| } |
| } |
| } |
|
|
| void raw_unlock(void * ptr, size_t len) { |
| if (!VirtualUnlock(ptr, len)) { |
| fprintf(stderr, "warning: failed to VirtualUnlock buffer: %s\n", |
| llama_v3_format_win_err(GetLastError()).c_str()); |
| } |
| } |
| #else |
| static constexpr bool SUPPORTED = false; |
|
|
| size_t lock_granularity() { |
| return (size_t) 65536; |
| } |
|
|
| bool raw_lock(const void * addr, size_t len) { |
| fprintf(stderr, "warning: mlock not supported on this system\n"); |
| return false; |
| } |
|
|
| void raw_unlock(const void * addr, size_t len) {} |
| #endif |
| }; |
|
|
| |
| struct llama_v3_buffer { |
| uint8_t * addr = NULL; |
| size_t size = 0; |
|
|
| llama_v3_buffer() = default; |
|
|
| void resize(size_t len) { |
| #ifdef GGML_USE_METAL |
| free(addr); |
| int result = posix_memalign((void **) &addr, getpagesize(), len); |
| if (result == 0) { |
| memset(addr, 0, len); |
| } |
| else { |
| addr = NULL; |
| } |
| #else |
| delete[] addr; |
| addr = new uint8_t[len]; |
| #endif |
| size = len; |
| } |
|
|
| ~llama_v3_buffer() { |
| #ifdef GGML_USE_METAL |
| free(addr); |
| #else |
| delete[] addr; |
| #endif |
| addr = NULL; |
| } |
|
|
| |
| llama_v3_buffer(const llama_v3_buffer&) = delete; |
| llama_v3_buffer(llama_v3_buffer&&) = delete; |
| llama_v3_buffer& operator=(const llama_v3_buffer&) = delete; |
| llama_v3_buffer& operator=(llama_v3_buffer&&) = delete; |
| }; |
|
|
| #ifdef GGML_USE_CUDA |
| #include "ggml_v3-cuda.h" |
| struct llama_v3_ctx_buffer { |
| uint8_t * addr = NULL; |
| bool is_cuda; |
| size_t size = 0; |
|
|
| llama_v3_ctx_buffer() = default; |
|
|
| void resize(size_t size) { |
| free(); |
|
|
| addr = (uint8_t *) ggml_v3_cuda_host_malloc(size); |
| if (addr) { |
| is_cuda = true; |
| } |
| else { |
| |
| addr = new uint8_t[size]; |
| is_cuda = false; |
| } |
| this->size = size; |
| } |
|
|
| void free() { |
| if (addr) { |
| if (is_cuda) { |
| ggml_v3_cuda_host_free(addr); |
| } |
| else { |
| delete[] addr; |
| } |
| } |
| addr = NULL; |
| } |
|
|
| ~llama_v3_ctx_buffer() { |
| free(); |
| } |
|
|
| |
| llama_v3_ctx_buffer(const llama_v3_ctx_buffer&) = delete; |
| llama_v3_ctx_buffer(llama_v3_ctx_buffer&&) = delete; |
| llama_v3_ctx_buffer& operator=(const llama_v3_ctx_buffer&) = delete; |
| llama_v3_ctx_buffer& operator=(llama_v3_ctx_buffer&&) = delete; |
| }; |
| #else |
| typedef llama_v3_buffer llama_v3_ctx_buffer; |
| #endif |
|
|
| #endif |
|
|