Coverage Report

Created: 2026-06-13 06:24

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/llama.cpp/src/llama-mmap.cpp
Line
Count
Source
1
#include "llama-mmap.h"
2
3
#include "llama-impl.h"
4
5
#include "ggml.h"
6
7
#include <cstring>
8
#include <climits>
9
#include <stdexcept>
10
#include <cerrno>
11
#include <algorithm>
12
13
#ifdef __has_include
14
    #if __has_include(<unistd.h>)
15
        #include <unistd.h>
16
        #include <fcntl.h>
17
        #include <sys/stat.h>
18
        #if defined(_POSIX_MAPPED_FILES)
19
            #include <sys/mman.h>
20
        #endif
21
        #if defined(_POSIX_MEMLOCK_RANGE)
22
            #include <sys/resource.h>
23
        #endif
24
    #endif
25
#endif
26
27
#if defined(_WIN32)
28
    #define WIN32_LEAN_AND_MEAN
29
    #ifndef NOMINMAX
30
        #define NOMINMAX
31
    #endif
32
    #include <windows.h>
33
    #ifndef PATH_MAX
34
        #define PATH_MAX MAX_PATH
35
    #endif
36
    #include <io.h>
37
#endif
38
39
#if defined(__APPLE__)
40
#include <TargetConditionals.h>
41
#endif
42
43
#ifdef _WIN32
44
#    define llama_mmap_ftell _ftelli64
45
#    define llama_mmap_fseek _fseeki64
46
#else
47
0
#    define llama_mmap_ftell ftello
48
0
#    define llama_mmap_fseek fseeko
49
#endif
50
51
// TODO: consider moving to llama-impl.h if needed in more places
52
#if defined(_WIN32)
53
static std::string llama_format_win_err(DWORD err) {
54
    LPSTR buf;
55
    size_t size = FormatMessageA(FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM | FORMAT_MESSAGE_IGNORE_INSERTS,
56
                                 NULL, err, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), (LPSTR)&buf, 0, NULL);
57
    if (!size) {
58
        return "FormatMessageA failed";
59
    }
60
    std::string ret(buf, size);
61
    LocalFree(buf);
62
    return ret;
63
}
64
#endif
65
66
// llama_file
67
68
struct llama_file::impl {
69
#if defined(_WIN32)
70
    HANDLE fp_win32;
71
    std::string GetErrorMessageWin32(DWORD error_code) const {
72
        std::string ret;
73
        LPSTR lpMsgBuf = NULL;
74
        DWORD bufLen = FormatMessageA(FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM | FORMAT_MESSAGE_IGNORE_INSERTS,
75
                                    NULL, error_code, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), (LPSTR)&lpMsgBuf, 0, NULL);
76
        if (!bufLen) {
77
            ret = format("Win32 error code: %lx", error_code);
78
        } else {
79
            ret = lpMsgBuf;
80
            LocalFree(lpMsgBuf);
81
        }
82
83
        return ret;
84
    }
85
86
    impl(const char * fname, const char * mode, [[maybe_unused]] const bool use_direct_io = false) {
87
        fp = ggml_fopen(fname, mode);
88
        if (fp == NULL) {
89
            throw std::runtime_error(format("failed to open %s: %s", fname, strerror(errno)));
90
        }
91
        fp_win32 = (HANDLE) _get_osfhandle(_fileno(fp));
92
        seek(0, SEEK_END);
93
        size = tell();
94
        seek(0, SEEK_SET);
95
    }
96
97
    impl(FILE * file) : owns_fp(false) {
98
        fp = file;
99
        fp_win32 = (HANDLE) _get_osfhandle(_fileno(fp));
100
        seek(0, SEEK_END);
101
        size = tell();
102
        seek(0, SEEK_SET);
103
    }
104
105
    size_t tell() const {
106
        LARGE_INTEGER li;
107
        li.QuadPart = 0;
108
        BOOL ret = SetFilePointerEx(fp_win32, li, &li, FILE_CURRENT);
109
        if (!ret) {
110
            throw std::runtime_error(format("read error: %s", GetErrorMessageWin32(GetLastError()).c_str()));
111
        }
112
113
        return li.QuadPart;
114
    }
115
116
    void seek(size_t offset, int whence) const {
117
        static_assert(SEEK_SET == FILE_BEGIN, "SEEK_SET != FILE_BEGIN");
118
        static_assert(SEEK_CUR == FILE_CURRENT, "SEEK_CUR != FILE_CURRENT");
119
        static_assert(SEEK_END == FILE_END, "SEEK_END != FILE_END");
120
121
        LARGE_INTEGER li;
122
        li.QuadPart = offset;
123
        BOOL ret = SetFilePointerEx(fp_win32, li, NULL, whence);
124
        if (!ret) {
125
            throw std::runtime_error(format("read error: %s", GetErrorMessageWin32(GetLastError()).c_str()));
126
        }
127
    }
128
129
    void read_raw(void * ptr, size_t len) {
130
        size_t bytes_read = 0;
131
        while (bytes_read < len) {
132
            size_t chunk_size = std::min<size_t>(len - bytes_read, 64*1024*1024);
133
            DWORD chunk_read = 0;
134
            BOOL result = ReadFile(fp_win32, reinterpret_cast<char*>(ptr) + bytes_read, chunk_size, &chunk_read, NULL);
135
            if (!result) {
136
                throw std::runtime_error(format("read error: %s", GetErrorMessageWin32(GetLastError()).c_str()));
137
            }
138
            if (chunk_read < chunk_size || chunk_read == 0) {
139
                throw std::runtime_error("unexpectedly reached end of file");
140
            }
141
142
            bytes_read += chunk_read;
143
        }
144
    }
145
146
    uint32_t read_u32() {
147
        uint32_t val;
148
        read_raw(&val, sizeof(val));
149
        return val;
150
    }
151
152
    void write_raw(const void * ptr, size_t len) const {
153
        size_t bytes_written = 0;
154
        while (bytes_written < len) {
155
            size_t chunk_size = std::min<size_t>(len - bytes_written, 64*1024*1024);
156
            DWORD chunk_written = 0;
157
            BOOL result = WriteFile(fp_win32, reinterpret_cast<char const*>(ptr) + bytes_written, chunk_size, &chunk_written, NULL);
158
            if (!result) {
159
                throw std::runtime_error(format("write error: %s", GetErrorMessageWin32(GetLastError()).c_str()));
160
            }
161
            if (chunk_written < chunk_size || chunk_written == 0) {
162
                throw std::runtime_error("unexpectedly failed to write bytes");
163
            }
164
165
            bytes_written += chunk_written;
166
        }
167
    }
168
169
    void write_u32(uint32_t val) const {
170
        write_raw(&val, sizeof(val));
171
    }
172
173
    bool has_direct_io() const {
174
        return true;
175
    }
176
177
    ~impl() {
178
        if (fp && owns_fp) {
179
            std::fclose(fp);
180
        }
181
    }
182
#else
183
0
    impl(const char * fname, const char * mode, [[maybe_unused]] const bool use_direct_io = false) : fname(fname) {
184
0
#ifdef __linux__
185
        // Try unbuffered I/O for read only
186
0
        if (use_direct_io && std::strcmp(mode, "rb") == 0) {
187
0
            if (init_fd()) {
188
0
                return;
189
0
            }
190
0
            LLAMA_LOG_WARN("Failed to open file '%s' with error: %s. Falling back to buffered I/O",
191
0
                           fname, strerror(errno));
192
0
        }
193
0
#endif
194
0
        init_fp(mode);
195
0
    }
196
197
#ifdef __linux__
198
0
    bool init_fd() {
199
0
        fd = open(fname.c_str(), O_RDONLY | O_DIRECT);
200
201
0
        if (fd != -1) {
202
0
            struct stat file_stats{};
203
0
            fstat(fd, &file_stats);
204
205
0
            size = file_stats.st_size;
206
0
            alignment = file_stats.st_blksize;
207
208
0
            off_t ret = lseek(fd, 0, SEEK_SET);
209
0
            if (ret == -1) {
210
0
                throw std::runtime_error(format("seek error: %s", strerror(errno)));
211
0
            }
212
0
            return true;
213
0
        }
214
0
        return false;
215
0
    }
216
#endif
217
218
0
    void init_fp(const char * mode) {
219
0
        fp = ggml_fopen(fname.c_str(), mode);
220
0
        if (fp == NULL) {
221
0
            throw std::runtime_error(format("failed to open %s: %s", fname.c_str(), strerror(errno)));
222
0
        }
223
0
        seek(0, SEEK_END);
224
0
        size = tell();
225
0
        seek(0, SEEK_SET);
226
0
    }
227
228
0
    impl(FILE * file) : fname("(file*)"), owns_fp(false) {
229
0
        fp = file;
230
0
        seek(0, SEEK_END);
231
0
        size = tell();
232
0
        seek(0, SEEK_SET);
233
0
    }
234
235
0
    size_t tell() const {
236
0
        if (fd == -1) {
237
0
            off_t ret = llama_mmap_ftell(fp);
238
0
            if (ret == -1) {
239
0
                throw std::runtime_error(format("ftell error: %s", strerror(errno)));
240
0
            }
241
242
0
            return (size_t) ret;
243
0
        }
244
245
0
        off_t pos = lseek(fd, 0, SEEK_CUR);
246
0
        if (pos == -1) {
247
0
            throw std::runtime_error(format("lseek error: %s", strerror(errno)));
248
0
        }
249
0
        return (size_t) pos;
250
0
    }
251
252
0
    void seek(size_t offset, int whence) const {
253
0
        off_t ret = 0;
254
0
        if (fd == -1) {
255
0
            ret = llama_mmap_fseek(fp, offset, whence);
256
0
        } else {
257
0
            ret = lseek(fd, offset, whence);
258
0
        }
259
0
        if (ret == -1) {
260
0
            throw std::runtime_error(format("seek error: %s", strerror(errno)));
261
0
        }
262
0
    }
263
264
0
    void read_raw_unsafe(void * ptr, size_t len) {
265
0
        if (len == 0) {
266
0
            return;
267
0
        }
268
0
        errno = 0;
269
0
        if (fd == -1) {
270
0
            const size_t curr_off = tell();
271
0
            const size_t to_read = std::min(len, size - curr_off);
272
273
0
            std::size_t ret = std::fread(ptr, to_read, 1, fp);
274
0
            if (ferror(fp)) {
275
0
                throw std::runtime_error(format("read error: %s", strerror(errno)));
276
0
            }
277
0
            if (to_read > 0 && ret != 1) {
278
0
                throw std::runtime_error("unexpectedly reached end of file");
279
0
            }
280
0
        } else {
281
0
            size_t bytes_read = 0;
282
0
            while (bytes_read < len) {
283
0
                const size_t to_read = len - bytes_read;
284
0
                ssize_t ret = ::read(fd, reinterpret_cast<char *>(ptr) + bytes_read, to_read);
285
286
0
                if (ret == -1) {
287
0
                    if (errno == EINTR) {
288
0
                        continue;  // Interrupted by signal, retry
289
0
                    }
290
                    // Fallback to std::fread in case the DMA controller cannot access the buffer
291
0
                    if (errno == EFAULT || errno == EINVAL) {
292
0
                        LLAMA_LOG_WARN("%s: Falling back to buffered IO due to %s\n", __func__, strerror(errno));
293
0
                        auto curr_off = tell();
294
0
                        close(fd);
295
0
                        fd = -1;
296
0
                        alignment = 1;
297
0
                        init_fp("rb");
298
0
                        seek(curr_off, SEEK_SET);
299
0
                        read_raw_unsafe(ptr, len);
300
0
                        return;
301
0
                    }
302
0
                    throw std::runtime_error(format("read error: %s", strerror(errno)));
303
0
                }
304
0
                if (ret == 0) {
305
                    // EOF: allow if this read was only pulling alignment padding past file end
306
0
                    off_t pos = lseek(fd, 0, SEEK_CUR);
307
0
                    if (pos != -1 && (size_t) pos == size) {
308
0
                        std::memset(reinterpret_cast<char *>(ptr) + bytes_read, 0, len - bytes_read);
309
0
                        return;
310
0
                    }
311
0
                    throw std::runtime_error("unexpectedly reached end of file");
312
0
                }
313
314
0
                bytes_read += (size_t) ret;
315
0
            }
316
0
        }
317
0
    }
318
319
0
    void read_aligned_chunk(void * dest, size_t size) {
320
0
        size_t offset = tell();
321
0
        off_t aligned_offset = offset & ~(alignment - 1);
322
0
        off_t offset_from_alignment = offset - aligned_offset;
323
0
        size_t bytes_to_read = (offset_from_alignment + size + alignment - 1) & ~(alignment - 1);
324
325
0
        void * raw_buffer = nullptr;
326
0
        int ret = posix_memalign(&raw_buffer, alignment, bytes_to_read);
327
0
        if (ret != 0) {
328
0
            throw std::runtime_error(format("posix_memalign failed with error %d", ret));
329
0
        }
330
331
0
        struct aligned_buffer_deleter {
332
0
            void operator()(void * p) const { free(p); }
333
0
        };
334
0
        std::unique_ptr<void, aligned_buffer_deleter> buffer(raw_buffer);
335
336
0
        seek(aligned_offset, SEEK_SET);
337
0
        read_raw_unsafe(buffer.get(), bytes_to_read);
338
339
0
        uintptr_t actual_data = reinterpret_cast<uintptr_t>(buffer.get()) + offset_from_alignment;
340
0
        memcpy(dest, reinterpret_cast<void *>(actual_data), size);
341
0
    }
342
343
0
    void read_raw(void * ptr, size_t len) {
344
0
        if (has_direct_io()) {
345
0
            read_aligned_chunk(ptr, len);
346
0
        } else {
347
0
            read_raw_unsafe(ptr, len);
348
0
        }
349
0
    }
350
351
0
    uint32_t read_u32() {
352
0
        uint32_t ret;
353
0
        read_raw(&ret, sizeof(ret));
354
0
        return ret;
355
0
    }
356
357
0
    void write_raw(const void * ptr, size_t len) const {
358
0
        if (len == 0) {
359
0
            return;
360
0
        }
361
0
        errno = 0;
362
0
        size_t ret = std::fwrite(ptr, len, 1, fp);
363
0
        if (ret != 1) {
364
0
            throw std::runtime_error(format("write error: %s", strerror(errno)));
365
0
        }
366
0
    }
367
368
0
    void write_u32(uint32_t val) const {
369
0
        write_raw(&val, sizeof(val));
370
0
    }
371
372
0
    bool has_direct_io() const {
373
0
        return fd != -1 && alignment > 1;
374
0
    }
375
376
0
    ~impl() {
377
0
        if (fd != -1) {
378
0
            close(fd);
379
0
        } else if (owns_fp) {
380
0
            std::fclose(fp);
381
0
        }
382
0
    }
383
    int fd = -1;
384
    std::string fname;
385
#endif
386
387
0
    size_t read_alignment() const {
388
0
        return alignment;
389
0
    }
390
391
    size_t alignment = 1;
392
393
    FILE * fp{};
394
    size_t size{};
395
    bool owns_fp = true;
396
};
397
398
llama_file::llama_file(const char * fname, const char * mode, const bool use_direct_io) :
399
0
    pimpl(std::make_unique<impl>(fname, mode, use_direct_io)) {}
400
401
0
llama_file::llama_file(FILE * file) : pimpl(std::make_unique<impl>(file)) {}
402
403
0
llama_file::~llama_file() = default;
404
405
0
size_t llama_file::tell() const { return pimpl->tell(); }
406
0
size_t llama_file::size() const { return pimpl->size; }
407
408
0
size_t llama_file::read_alignment() const { return pimpl->read_alignment(); }
409
0
bool llama_file::has_direct_io() const { return pimpl->has_direct_io(); }
410
411
0
int llama_file::file_id() const {
412
#ifdef _WIN32
413
    return _fileno(pimpl->fp);
414
#else
415
0
    if (pimpl->fd != -1) {
416
0
        return pimpl->fd;
417
0
    }
418
#if defined(fileno)
419
    return fileno(pimpl->fp);
420
#else
421
0
    return ::fileno(pimpl->fp);
422
0
#endif
423
0
#endif
424
0
}
425
426
0
void llama_file::seek(size_t offset, int whence) const { pimpl->seek(offset, whence); }
427
0
void llama_file::read_raw(void * ptr, size_t len) { pimpl->read_raw(ptr, len); }
428
#ifdef _WIN32
429
void llama_file::read_raw_unsafe(void * ptr, size_t len) { pimpl->read_raw(ptr, len); }
430
#else
431
0
void llama_file::read_raw_unsafe(void * ptr, size_t len) { pimpl->read_raw_unsafe(ptr, len); }
432
#endif
433
434
0
uint32_t llama_file::read_u32() { return pimpl->read_u32(); }
435
436
0
void llama_file::write_raw(const void * ptr, size_t len) const { pimpl->write_raw(ptr, len); }
437
0
void llama_file::write_u32(uint32_t val) const { pimpl->write_u32(val); }
438
439
// llama_mmap
440
441
struct llama_mmap::impl {
442
#ifdef _POSIX_MAPPED_FILES
443
    std::vector<std::pair<size_t, size_t>> mapped_fragments;
444
445
0
    impl(struct llama_file * file, size_t prefetch, bool numa) {
446
0
        size = file->size();
447
0
        int fd = file->file_id();
448
0
        int flags = MAP_SHARED;
449
0
        if (numa) { prefetch = 0; }
450
0
#ifdef __linux__
451
0
        if (posix_fadvise(fd, 0, 0, POSIX_FADV_SEQUENTIAL)) {
452
0
            LLAMA_LOG_WARN("warning: posix_fadvise(.., POSIX_FADV_SEQUENTIAL) failed: %s\n",
453
0
                    strerror(errno));
454
0
        }
455
0
        if (prefetch) { flags |= MAP_POPULATE; }
456
0
#endif
457
0
        addr = mmap(NULL, file->size(), PROT_READ, flags, fd, 0);
458
0
        if (addr == MAP_FAILED) {
459
0
            throw std::runtime_error(format("mmap failed: %s", strerror(errno)));
460
0
        }
461
462
0
        if (prefetch > 0) {
463
0
            if (posix_madvise(addr, std::min(file->size(), prefetch), POSIX_MADV_WILLNEED)) {
464
0
                LLAMA_LOG_WARN("warning: posix_madvise(.., POSIX_MADV_WILLNEED) failed: %s\n",
465
0
                        strerror(errno));
466
0
            }
467
0
        }
468
0
        if (numa) {
469
0
            if (posix_madvise(addr, file->size(), POSIX_MADV_RANDOM)) {
470
0
                LLAMA_LOG_WARN("warning: posix_madvise(.., POSIX_MADV_RANDOM) failed: %s\n",
471
0
                        strerror(errno));
472
0
            }
473
0
        }
474
475
0
        mapped_fragments.emplace_back(0, file->size());
476
0
    }
477
478
0
    static void align_range(size_t * first, size_t * last, size_t page_size) {
479
0
        size_t offset_in_page = *first & (page_size - 1);
480
0
        size_t offset_to_page = offset_in_page == 0 ? 0 : page_size - offset_in_page;
481
0
        *first += offset_to_page;
482
483
0
        *last = *last & ~(page_size - 1);
484
485
0
        if (*last <= *first) {
486
0
            *last = *first;
487
0
        }
488
0
    }
489
490
0
    void unmap_fragment(size_t first, size_t last) {
491
0
        int page_size = sysconf(_SC_PAGESIZE);
492
0
        align_range(&first, &last, page_size);
493
0
        size_t len = last - first;
494
495
0
        if (len == 0) {
496
0
            return;
497
0
        }
498
499
0
        GGML_ASSERT(first % page_size == 0);
500
0
        GGML_ASSERT(last % page_size == 0);
501
0
        GGML_ASSERT(last > first);
502
503
0
        void * next_page_start = (uint8_t *) addr + first;
504
505
0
        if (munmap(next_page_start, len)) {
506
0
            LLAMA_LOG_WARN("warning: munmap failed: %s\n", strerror(errno));
507
0
        }
508
509
0
        std::vector<std::pair<size_t, size_t>> new_mapped_fragments;
510
0
        for (const auto & frag : mapped_fragments) {
511
0
            if (frag.first < first && frag.second > last) {
512
0
                new_mapped_fragments.emplace_back(frag.first, first);
513
0
                new_mapped_fragments.emplace_back(last, frag.second);
514
0
            } else if (frag.first < first && frag.second > first) {
515
0
                new_mapped_fragments.emplace_back(frag.first, first);
516
0
            } else if (frag.first < last && frag.second > last) {
517
0
                new_mapped_fragments.emplace_back(last, frag.second);
518
0
            } else if (frag.first >= first && frag.second <= last) {
519
0
            } else {
520
0
                new_mapped_fragments.push_back(frag);
521
0
            }
522
0
        }
523
0
        mapped_fragments = std::move(new_mapped_fragments);
524
0
    }
525
526
0
    ~impl() {
527
0
        for (const auto & frag : mapped_fragments) {
528
0
            if (munmap((char *) addr + frag.first, frag.second - frag.first)) {
529
0
                LLAMA_LOG_WARN("warning: munmap failed: %s\n", strerror(errno));
530
0
            }
531
0
        }
532
0
    }
533
#elif defined(_WIN32)
534
    HANDLE hMapping = nullptr;
535
536
    impl(struct llama_file * file, size_t prefetch, bool numa) {
537
        GGML_UNUSED(numa);
538
539
        size = file->size();
540
541
        HANDLE hFile = (HANDLE) _get_osfhandle(file->file_id());
542
543
        hMapping = CreateFileMappingA(hFile, NULL, PAGE_READONLY, 0, 0, NULL);
544
545
        if (hMapping == NULL) {
546
            DWORD error = GetLastError();
547
            throw std::runtime_error(format("CreateFileMappingA failed: %s", llama_format_win_err(error).c_str()));
548
        }
549
550
        addr = MapViewOfFile(hMapping, FILE_MAP_READ, 0, 0, 0);
551
        DWORD error = GetLastError();
552
553
        if (addr == NULL) {
554
            CloseHandle(hMapping);
555
            throw std::runtime_error(format("MapViewOfFile failed: %s", llama_format_win_err(error).c_str()));
556
        }
557
558
        if (prefetch > 0) {
559
#if _WIN32_WINNT >= 0x602
560
            BOOL (WINAPI *pPrefetchVirtualMemory) (HANDLE, ULONG_PTR, PWIN32_MEMORY_RANGE_ENTRY, ULONG);
561
            HMODULE hKernel32 = GetModuleHandleW(L"kernel32.dll");
562
563
            pPrefetchVirtualMemory = (decltype(pPrefetchVirtualMemory))(void *) GetProcAddress(hKernel32, "PrefetchVirtualMemory");
564
565
            if (pPrefetchVirtualMemory) {
566
                WIN32_MEMORY_RANGE_ENTRY range;
567
                range.VirtualAddress = addr;
568
                range.NumberOfBytes = (SIZE_T) std::min(size, prefetch);
569
                if (!pPrefetchVirtualMemory(GetCurrentProcess(), 1, &range, 0)) {
570
                    LLAMA_LOG_WARN("warning: PrefetchVirtualMemory failed: %s\n",
571
                            llama_format_win_err(GetLastError()).c_str());
572
                }
573
            }
574
#else
575
            LLAMA_LOG_DEBUG("skipping PrefetchVirtualMemory because _WIN32_WINNT < 0x602\n");
576
#endif
577
        }
578
    }
579
580
    void unmap_fragment(size_t first, size_t last) {
581
        GGML_UNUSED(first);
582
        GGML_UNUSED(last);
583
    }
584
585
    ~impl() {
586
        if (hMapping) {
587
            if (addr) {
588
                if (!UnmapViewOfFile(addr)) {
589
                    LLAMA_LOG_WARN("warning: UnmapViewOfFile failed: %s\n",
590
                            llama_format_win_err(GetLastError()).c_str());
591
                }
592
            }
593
            if (!CloseHandle(hMapping)) {
594
                LLAMA_LOG_WARN("warning: CloseHandle failed: %s\n",
595
                        llama_format_win_err(GetLastError()).c_str());
596
            }
597
        }
598
    }
599
#else
600
    impl(struct llama_file * file, size_t prefetch, bool numa) {
601
        GGML_UNUSED(file);
602
        GGML_UNUSED(prefetch);
603
        GGML_UNUSED(numa);
604
605
        throw std::runtime_error("mmap not supported");
606
    }
607
608
    void unmap_fragment(size_t first, size_t last) {
609
        GGML_UNUSED(first);
610
        GGML_UNUSED(last);
611
612
        throw std::runtime_error("mmap not supported");
613
    }
614
#endif
615
616
    void * addr;
617
    size_t size;
618
};
619
620
0
llama_mmap::llama_mmap(struct llama_file * file, size_t prefetch, bool numa) : pimpl(std::make_unique<impl>(file, prefetch, numa)) {}
621
0
llama_mmap::~llama_mmap() = default;
622
623
0
size_t llama_mmap::size() const { return pimpl->size; }
624
0
void * llama_mmap::addr() const { return pimpl->addr; }
625
626
0
void llama_mmap::unmap_fragment(size_t first, size_t last) { pimpl->unmap_fragment(first, last); }
627
628
#if defined(_POSIX_MEMLOCK_RANGE) || defined(_WIN32)
629
const bool llama_mmap::SUPPORTED  = true;
630
#else
631
const bool llama_mmap::SUPPORTED  = false;
632
#endif
633
634
// llama_mlock
635
636
struct llama_mlock::impl {
637
#ifdef _POSIX_MEMLOCK_RANGE
638
0
    static size_t lock_granularity() {
639
0
        return (size_t) sysconf(_SC_PAGESIZE);
640
0
    }
641
642
0
    bool raw_lock(const void * addr, size_t size) const {
643
0
        if (!mlock(addr, size)) {
644
0
            return true;
645
0
        }
646
647
#ifdef __APPLE__
648
#define MLOCK_SUGGESTION \
649
        "Try increasing the sysctl values 'vm.user_wire_limit' and 'vm.global_user_wire_limit' and/or " \
650
        "decreasing 'vm.global_no_user_wire_amount'.  Also try increasing RLIMIT_MEMLOCK (ulimit -l).\n"
651
#else
652
0
#define MLOCK_SUGGESTION \
653
0
        "Try increasing RLIMIT_MEMLOCK ('ulimit -l' as root).\n"
654
0
#endif
655
656
0
        char* errmsg = std::strerror(errno);
657
0
        bool suggest = (errno == ENOMEM);
658
#if defined(TARGET_OS_VISION) || defined(TARGET_OS_TV) || defined(_AIX) || defined(__HAIKU__)
659
        // visionOS/tvOS/Haiku don't support RLIMIT_MEMLOCK
660
        // Skip resource limit checks on these platforms
661
        suggest = false;
662
#else
663
0
        struct rlimit lock_limit;
664
0
        if (suggest && getrlimit(RLIMIT_MEMLOCK, &lock_limit)) {
665
0
            suggest = false;
666
0
        }
667
0
        if (suggest && ((uint64_t)lock_limit.rlim_max > (uint64_t)lock_limit.rlim_cur + size)) {
668
0
            suggest = false;
669
0
        }
670
0
#endif
671
672
0
        LLAMA_LOG_WARN("warning: failed to mlock %zu-byte buffer (after previously locking %zu bytes): %s\n%s",
673
0
                size, this->size, errmsg, suggest ? MLOCK_SUGGESTION : "");
674
0
        return false;
675
0
    }
676
677
0
    static void raw_unlock(void * addr, size_t size) {
678
0
        if (munlock(addr, size)) {
679
0
            LLAMA_LOG_WARN("warning: failed to munlock buffer: %s\n", std::strerror(errno));
680
0
        }
681
0
    }
682
#elif defined(_WIN32)
683
    static size_t lock_granularity() {
684
        SYSTEM_INFO si;
685
        GetSystemInfo(&si);
686
        return (size_t) si.dwPageSize;
687
    }
688
689
    bool raw_lock(void * ptr, size_t len) const {
690
        for (int tries = 1; ; tries++) {
691
            if (VirtualLock(ptr, len)) {
692
                return true;
693
            }
694
            if (tries == 2) {
695
                LLAMA_LOG_WARN("warning: failed to VirtualLock %zu-byte buffer (after previously locking %zu bytes): %s\n",
696
                    len, size, llama_format_win_err(GetLastError()).c_str());
697
                return false;
698
            }
699
700
            SIZE_T min_ws_size, max_ws_size;
701
            if (!GetProcessWorkingSetSize(GetCurrentProcess(), &min_ws_size, &max_ws_size)) {
702
                LLAMA_LOG_WARN("warning: GetProcessWorkingSetSize failed: %s\n",
703
                        llama_format_win_err(GetLastError()).c_str());
704
                return false;
705
            }
706
            size_t increment = len + 1048576;
707
            min_ws_size += increment;
708
            max_ws_size += increment;
709
            if (!SetProcessWorkingSetSize(GetCurrentProcess(), min_ws_size, max_ws_size)) {
710
                LLAMA_LOG_WARN("warning: SetProcessWorkingSetSize failed: %s\n",
711
                        llama_format_win_err(GetLastError()).c_str());
712
                return false;
713
            }
714
        }
715
    }
716
717
    static void raw_unlock(void * ptr, size_t len) {
718
        if (!VirtualUnlock(ptr, len)) {
719
            LLAMA_LOG_WARN("warning: failed to VirtualUnlock buffer: %s\n",
720
                    llama_format_win_err(GetLastError()).c_str());
721
        }
722
    }
723
#else
724
    static size_t lock_granularity() {
725
        return (size_t) 65536;
726
    }
727
728
    bool raw_lock(const void * addr, size_t len) const {
729
        LLAMA_LOG_WARN("warning: mlock not supported on this system\n");
730
        return false;
731
    }
732
733
    static void raw_unlock(const void * addr, size_t len) {}
734
#endif
735
736
0
    impl() : addr(NULL), size(0), failed_already(false) {}
737
738
0
    void init(void * ptr) {
739
0
        GGML_ASSERT(addr == NULL && size == 0);
740
0
        addr = ptr;
741
0
    }
742
743
0
    void grow_to(size_t target_size) {
744
0
        GGML_ASSERT(addr);
745
0
        if (failed_already) {
746
0
            return;
747
0
        }
748
0
        size_t granularity = lock_granularity();
749
0
        target_size = (target_size + granularity - 1) & ~(granularity - 1);
750
0
        if (target_size > size) {
751
0
            if (raw_lock((uint8_t *) addr + size, target_size - size)) {
752
0
                size = target_size;
753
0
            } else {
754
0
                failed_already = true;
755
0
            }
756
0
        }
757
0
    }
758
759
    void * addr;
760
    size_t size;
761
762
    bool failed_already;
763
};
764
765
0
llama_mlock::llama_mlock() : pimpl(std::make_unique<impl>()) {}
766
0
llama_mlock::~llama_mlock() = default;
767
768
0
void llama_mlock::init(void * ptr) { pimpl->init(ptr); }
769
0
void llama_mlock::grow_to(size_t target_size) { pimpl->grow_to(target_size); }
770
771
#if defined(_POSIX_MEMLOCK_RANGE) || defined(_WIN32)
772
const bool llama_mlock::SUPPORTED = true;
773
#else
774
const bool llama_mlock::SUPPORTED = false;
775
#endif
776
777
0
size_t llama_path_max() {
778
    return PATH_MAX;
779
0
}