Files
fastfetch/src/common/impl/binary_apple.c
T

304 lines
10 KiB
C

#include "common/binary.h"
#include "common/io.h"
#include "common/strutil.h"
#include <string.h>
#include <fcntl.h>
#include <sys/mman.h>
#include <mach-o/loader.h>
#include <mach-o/swap.h>
#include <mach-o/fat.h>
#pragma GCC diagnostic ignored "-Wdeprecated-declarations" // swap_fat_arch
// Ref: https://github.com/AlexDenisov/segment_dumper/blob/master/main.c
typedef struct {
const uint8_t* data;
size_t length;
} FFMemoryMapping;
static inline void wrapMunmap(FFMemoryMapping* mapping) {
assert(mapping);
if (mapping->data == nullptr || mapping->data == MAP_FAILED) {
return;
}
munmap((void*) mapping->data, mapping->length);
}
/**
* Helper function to access data from a memory-mapped file at a specific offset
*/
static inline const void* readData(const FFMemoryMapping* mapping, size_t size, off_t offset) {
if (offset < 0) {
return nullptr;
}
size_t start = (size_t) offset;
if (start > mapping->length || size > mapping->length - start) {
return nullptr;
}
return mapping->data + start;
}
/**
* Handles a Mach-O section by extracting strings from the __cstring section
*
* @param mapping Memory mapping of the Mach-O object file
* @param name Section name to check
* @param offset Offset of the section in the file
* @param size Size of the section
* @param cb Callback function to process strings
* @param userdata User data for the callback
* @param minLength Minimum string length to extract
*
* @return true to continue processing, false to stop
*/
static bool handleMachSection(const FFMemoryMapping* mapping, const char* name, off_t offset, size_t size, bool (*cb)(const char* str, uint32_t len, void* userdata), void* userdata, uint32_t minLength) {
if (!ffStrEquals(name, "__cstring")) {
return true;
}
const char* data = readData(mapping, size, offset);
if (!data) {
return true;
}
for (size_t off = 0; off < size; ++off) {
const char* p = data + off;
if (*p == '\0') {
continue;
}
uint32_t len = (uint32_t) strnlen(p, size - off);
if (len < minLength) {
off += len; // Skip short strings
continue;
}
if (*p >= ' ' && *p <= '~') { // Ignore control characters
if (!cb(p, len, userdata)) {
return false;
}
}
off += len;
}
return true;
}
/**
* Processes a Mach-O header (32-bit or 64-bit)
*
* This function parses the load commands in a Mach-O header, looking for
* LC_SEGMENT or LC_SEGMENT_64 commands that contain the __TEXT segment.
* It then processes the sections within that segment to extract strings.
*
* @param mapping Memory mapping of the Mach-O object file
* @param offset Offset of the Mach header in the file
* @param is_64 Whether this is a 64-bit Mach-O header
* @param cb Callback function to process strings
* @param userdata User data for the callback
* @param minLength Minimum string length to extract
*
* @return nullptr on success, error message on failure
*/
static const char* dumpMachHeader(const FFMemoryMapping* mapping, off_t offset, bool is_64, bool (*cb)(const char* str, uint32_t len, void* userdata), void* userdata, uint32_t minLength) {
uint32_t ncmds;
off_t loadCommandsOffset = offset;
if (is_64) {
const struct mach_header_64* header = readData(mapping, sizeof(struct mach_header_64), offset);
if (!header) {
return "read mach header failed";
}
ncmds = header->ncmds;
loadCommandsOffset += sizeof(*header);
} else {
const struct mach_header* header = readData(mapping, sizeof(struct mach_header), offset);
if (!header) {
return "read mach header failed";
}
ncmds = header->ncmds;
loadCommandsOffset += sizeof(*header);
}
off_t commandOffset = loadCommandsOffset;
const struct load_command* cmd = nullptr;
for (uint32_t i = 0U; i < ncmds; i++, commandOffset += cmd->cmdsize) {
cmd = readData(mapping, sizeof(*cmd), commandOffset);
if (!cmd) {
break;
}
if (cmd->cmdsize < sizeof(*cmd)) {
break;
}
if (cmd->cmd == LC_SEGMENT_64) {
const struct segment_command_64* segment = readData(mapping, sizeof(struct segment_command_64), commandOffset);
if (!segment) {
continue;
}
if (!ffStrEquals(segment->segname, "__TEXT")) {
continue;
}
for (uint32_t j = 0U; j < segment->nsects; j++) {
off_t sectionOffset = commandOffset + (off_t) sizeof(*segment) + (off_t) (j * sizeof(struct section_64));
const struct section_64* section = readData(mapping, sizeof(struct section_64), sectionOffset);
if (!section) {
continue;
}
if (!handleMachSection(mapping, section->sectname, (off_t) section->offset, (size_t) section->size, cb, userdata, minLength)) {
return nullptr;
}
}
} else if (cmd->cmd == LC_SEGMENT) {
const struct segment_command* segment = readData(mapping, sizeof(struct segment_command), commandOffset);
if (!segment) {
continue;
}
if (!ffStrEquals(segment->segname, "__TEXT")) {
continue;
}
for (uint32_t j = 0; j < segment->nsects; j++) {
off_t sectionOffset = commandOffset + (off_t) sizeof(*segment) + (off_t) (j * sizeof(struct section));
const struct section* section = readData(mapping, sizeof(struct section), sectionOffset);
if (!section) {
continue;
}
if (!handleMachSection(mapping, section->sectname, (off_t) section->offset, (size_t) section->size, cb, userdata, minLength)) {
return nullptr;
}
}
}
}
return nullptr;
}
/**
* Processes a Fat binary header (Universal binary)
*
* This function handles the fat header of a universal binary, which can contain
* multiple Mach-O binaries for different architectures. It extracts and processes
* each embedded Mach-O file.
*
* @param mapping Memory mapping of the universal binary
* @param cb Callback function to process strings
* @param userdata User data for the callback
* @param minLength Minimum string length to extract
*
* @return nullptr on success, error message on failure
*/
static const char* dumpFatHeader(const FFMemoryMapping* mapping, bool (*cb)(const char* str, uint32_t len, void* userdata), void* userdata, uint32_t minLength) {
const struct fat_header* headerRaw = readData(mapping, sizeof(struct fat_header), 0);
if (!headerRaw) {
return "read fat header failed";
}
struct fat_header header = *headerRaw;
bool needSwap = header.magic == FAT_CIGAM || header.magic == FAT_CIGAM_64;
if (needSwap) {
swap_fat_header(&header, NX_UnknownByteOrder);
}
for (uint32_t i = 0U; i < header.nfat_arch; i++) {
off_t machHeaderOffset = 0;
if (header.magic == FAT_MAGIC) {
off_t archOffset = (off_t) sizeof(struct fat_header) + (off_t) (i * sizeof(struct fat_arch));
const struct fat_arch* archRaw = readData(mapping, sizeof(struct fat_arch), archOffset);
if (!archRaw) {
continue;
}
struct fat_arch arch = *archRaw;
if (needSwap) {
swap_fat_arch(&arch, 1, NX_UnknownByteOrder);
}
machHeaderOffset = (off_t) arch.offset;
} else {
off_t archOffset = (off_t) sizeof(struct fat_header) + (off_t) (i * sizeof(struct fat_arch_64));
const struct fat_arch_64* archRaw = readData(mapping, sizeof(struct fat_arch_64), archOffset);
if (!archRaw) {
continue;
}
struct fat_arch_64 arch = *archRaw;
if (needSwap) {
swap_fat_arch_64(&arch, 1, NX_UnknownByteOrder);
}
machHeaderOffset = (off_t) arch.offset;
}
const uint32_t* magic = readData(mapping, sizeof(uint32_t), machHeaderOffset);
if (!magic) {
continue;
}
if (*magic == MH_MAGIC_64 || *magic == MH_MAGIC) {
return dumpMachHeader(mapping, machHeaderOffset, *magic == MH_MAGIC_64, cb, userdata, minLength);
}
}
return "Unsupported fat header";
}
/**
* Extracts string literals from a Mach-O (Apple) binary file
*
* This function supports both single-architecture Mach-O files and
* universal binaries (fat binaries) containing multiple architectures.
* It locates the __cstring section in the __TEXT segment which contains
* the string literals used in the program.
*/
const char* ffBinaryExtractStrings(const char* machoFile, bool (*cb)(const char* str, uint32_t len, void* userdata), void* userdata, uint32_t minLength) {
FF_AUTO_CLOSE_FD int fd = open(machoFile, O_RDONLY | O_CLOEXEC);
if (fd < 0) {
return "File could not be opened";
}
struct stat st;
if (fstat(fd, &st) != 0 || st.st_size <= 0) {
return "Failed to stat file";
}
[[gnu::cleanup(wrapMunmap)]] FFMemoryMapping mapping = {
.data = mmap(nullptr, (size_t) st.st_size, PROT_READ, MAP_PRIVATE, fd, 0),
.length = (size_t) st.st_size,
};
if (mapping.data == MAP_FAILED) {
return "mmap failed";
}
// Read the magic number to determine the type of binary
const uint32_t* magic = readData(&mapping, sizeof(uint32_t), 0);
if (!magic) {
return "read magic number failed";
}
// Check for supported formats
// MH_CIGAM and MH_CIGAM_64 seem to be no longer used, as `swap_mach_header` is marked as deprecated.
// However FAT_CIGAM and FAT_CIGAM_64 are still used (/usr/bin/vim).
if (*magic != MH_MAGIC && *magic != MH_MAGIC_64 && *magic != FAT_CIGAM && *magic != FAT_CIGAM_64 && *magic != FAT_MAGIC && *magic != FAT_MAGIC_64) {
return "Unsupported format or big endian mach-o file";
}
// Process either a fat binary or a regular Mach-O binary
if (*magic == FAT_MAGIC || *magic == FAT_MAGIC_64 || *magic == FAT_CIGAM || *magic == FAT_CIGAM_64) {
return dumpFatHeader(&mapping, cb, userdata, minLength);
} else {
return dumpMachHeader(&mapping, 0, *magic == MH_MAGIC_64, cb, userdata, minLength);
}
}