Files
fpk/src/fpk.c
T

355 lines
7.5 KiB
C

#include "fpk.h"
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#define FPK_HEADER_FIELD_ENTRY_COUNT 4
#define FPK_HEADER_FIELD_DIR_OFFSET 12
#define FPK_HEADER_FIELD_STRTAB_OFFSET 20
#define FPK_DIR_ENTRY_FIELD_PATH_OFFSET 0
#define FPK_DIR_ENTRY_FIELD_DATA_OFFSET 8
#define FPK_DIR_ENTRY_FIELD_DATA_SIZE 16
#define FPK_DIR_ENTRY_FIELD_METHOD 24
struct fpk {
FILE *file;
uint64_t entry_count;
fpk_entry_t *entries;
char *strtab;
};
struct fpk_writer_entry {
char *path;
uint64_t data_offset;
uint64_t data_size;
uint8_t method;
};
struct fpk_writer {
FILE *file;
struct fpk_writer_entry *entries;
uint64_t count;
uint64_t capacity;
uint64_t cursor;
};
static uint32_t get_u32le(const unsigned char *p)
{
return (uint32_t)p[0] | (uint32_t)p[1] << 8 | (uint32_t)p[2] << 16 |
(uint32_t)p[3] << 24;
}
static uint64_t get_u64le(const unsigned char *p)
{
return (uint64_t)get_u32le(p) | (uint64_t)get_u32le(p + 4) << 32;
}
static void put_u32le(unsigned char *p, uint32_t v)
{
p[0] = (unsigned char)(v);
p[1] = (unsigned char)(v >> 8);
p[2] = (unsigned char)(v >> 16);
p[3] = (unsigned char)(v >> 24);
}
static void put_u64le(unsigned char *p, uint64_t v)
{
put_u32le(p, (uint32_t)v);
put_u32le(p + 4, (uint32_t)(v >> 32));
}
static char *dup_path(const char *path)
{
size_t len = strlen(path) + 1;
char *copy = malloc(len);
if (copy != NULL)
memcpy(copy, path, len);
return copy;
}
struct fpk *fpk_open(const char *path)
{
struct fpk *fpk;
unsigned char header[FPK_HEADER_SIZE];
uint64_t dir_offset, strtab_offset, strtab_size;
uint64_t i;
fpk = malloc(sizeof(*fpk));
if (fpk == NULL)
goto out;
fpk->file = NULL;
fpk->entries = NULL;
fpk->strtab = NULL;
fpk->file = fopen(path, "rb");
if (fpk->file == NULL)
goto fail;
if (fread(header, 1, FPK_HEADER_SIZE, fpk->file) != FPK_HEADER_SIZE)
goto fail;
if (memcmp(header, FPK_MAGIC, FPK_MAGIC_SIZE) != 0)
goto fail;
fpk->entry_count = get_u64le(header + FPK_HEADER_FIELD_ENTRY_COUNT);
dir_offset = get_u64le(header + FPK_HEADER_FIELD_DIR_OFFSET);
strtab_offset = get_u64le(header + FPK_HEADER_FIELD_STRTAB_OFFSET);
if (dir_offset < strtab_offset)
goto fail;
strtab_size = dir_offset - strtab_offset;
fpk->strtab = malloc((size_t)strtab_size);
if (fpk->strtab == NULL)
goto fail;
if (fseek(fpk->file, (long)strtab_offset, SEEK_SET) != 0)
goto fail;
if (fread(fpk->strtab, 1, (size_t)strtab_size, fpk->file) !=
strtab_size)
goto fail;
fpk->entries = malloc((size_t)fpk->entry_count * sizeof(fpk_entry_t));
if (fpk->entries == NULL)
goto fail;
if (fseek(fpk->file, (long)dir_offset, SEEK_SET) != 0)
goto fail;
for (i = 0; i < fpk->entry_count; i++) {
unsigned char rec[FPK_DIR_ENTRY_SIZE];
uint64_t path_offset;
if (fread(rec, 1, FPK_DIR_ENTRY_SIZE, fpk->file) !=
FPK_DIR_ENTRY_SIZE)
goto fail;
path_offset = get_u64le(rec + FPK_DIR_ENTRY_FIELD_PATH_OFFSET);
if (path_offset >= strtab_size)
goto fail;
fpk->entries[i].path = fpk->strtab + path_offset;
fpk->entries[i].data_offset =
get_u64le(rec + FPK_DIR_ENTRY_FIELD_DATA_OFFSET);
fpk->entries[i].data_size =
get_u64le(rec + FPK_DIR_ENTRY_FIELD_DATA_SIZE);
fpk->entries[i].method = rec[FPK_DIR_ENTRY_FIELD_METHOD];
}
goto out;
fail:
fpk_close(fpk);
fpk = NULL;
out:
return fpk;
}
void fpk_close(struct fpk *fpk)
{
if (fpk == NULL)
return;
if (fpk->file != NULL)
fclose(fpk->file);
free(fpk->entries);
free(fpk->strtab);
free(fpk);
}
fpk_entry_t *fpk_find(struct fpk *fpk, const char *path)
{
uint64_t i;
for (i = 0; i < fpk->entry_count; i++) {
if (strcmp(fpk->entries[i].path, path) == 0)
return &fpk->entries[i];
}
return NULL;
}
void *fpk_read(struct fpk *fpk, const fpk_entry_t *entry, size_t *out_size)
{
void *buf;
buf = malloc((size_t)entry->data_size);
if (buf == NULL)
goto out;
if (fseek(fpk->file, (long)entry->data_offset, SEEK_SET) != 0 ||
fread(buf, 1, (size_t)entry->data_size, fpk->file) !=
entry->data_size) {
free(buf);
buf = NULL;
goto out;
}
*out_size = (size_t)entry->data_size;
out:
return buf;
}
uint64_t fpk_entry_count(const struct fpk *fpk)
{
return fpk->entry_count;
}
const fpk_entry_t *fpk_entry_at(const struct fpk *fpk, uint64_t index)
{
if (index >= fpk->entry_count)
return NULL;
return &fpk->entries[index];
}
#define FPK_WRITER_INITIAL_CAPACITY 16
struct fpk_writer *fpk_writer_open(const char *path)
{
struct fpk_writer *w;
unsigned char placeholder[FPK_HEADER_SIZE];
w = malloc(sizeof(*w));
if (w == NULL)
goto out;
w->entries = NULL;
w->count = 0;
w->capacity = 0;
w->file = fopen(path, "wb");
if (w->file == NULL)
goto fail_free;
memset(placeholder, 0, sizeof(placeholder));
if (fwrite(placeholder, 1, FPK_HEADER_SIZE, w->file) !=
FPK_HEADER_SIZE)
goto fail_close;
w->cursor = FPK_HEADER_SIZE;
goto out;
fail_close:
fclose(w->file);
fail_free:
free(w);
w = NULL;
out:
return w;
}
int fpk_writer_add(struct fpk_writer *w, const char *path, const void *data,
size_t size)
{
struct fpk_writer_entry *entry;
char *path_copy = NULL;
int ret = 0;
if (w->count == w->capacity) {
uint64_t new_capacity = w->capacity == 0
? FPK_WRITER_INITIAL_CAPACITY
: w->capacity * 2;
struct fpk_writer_entry *new_entries = realloc(
w->entries, (size_t)new_capacity * sizeof(*new_entries));
if (new_entries == NULL) {
ret = -1;
goto out;
}
w->entries = new_entries;
w->capacity = new_capacity;
}
path_copy = dup_path(path);
if (path_copy == NULL) {
ret = -1;
goto out;
}
if (size > 0 && fwrite(data, 1, size, w->file) != size) {
ret = -1;
goto out;
}
entry = &w->entries[w->count];
entry->path = path_copy;
entry->data_offset = w->cursor;
entry->data_size = size;
entry->method = FPK_METHOD_STORE;
w->cursor += size;
w->count++;
out:
if (ret != 0)
free(path_copy);
return ret;
}
int fpk_writer_finalize(struct fpk_writer *w)
{
uint64_t strtab_offset, dir_offset, path_offset;
unsigned char header[FPK_HEADER_SIZE];
unsigned char rec[FPK_DIR_ENTRY_SIZE];
uint64_t i;
int ret = 0;
strtab_offset = w->cursor;
if (fseek(w->file, (long)strtab_offset, SEEK_SET) != 0) {
ret = -1;
goto out;
}
path_offset = 0;
for (i = 0; i < w->count && ret == 0; i++) {
size_t len = strlen(w->entries[i].path) + 1;
if (fwrite(w->entries[i].path, 1, len, w->file) != len)
ret = -1;
else
path_offset += len;
}
if (ret != 0)
goto out;
dir_offset = strtab_offset + path_offset;
path_offset = 0;
for (i = 0; i < w->count && ret == 0; i++) {
put_u64le(rec + FPK_DIR_ENTRY_FIELD_PATH_OFFSET, path_offset);
put_u64le(rec + FPK_DIR_ENTRY_FIELD_DATA_OFFSET,
w->entries[i].data_offset);
put_u64le(rec + FPK_DIR_ENTRY_FIELD_DATA_SIZE,
w->entries[i].data_size);
rec[FPK_DIR_ENTRY_FIELD_METHOD] = w->entries[i].method;
if (fwrite(rec, 1, FPK_DIR_ENTRY_SIZE, w->file) !=
FPK_DIR_ENTRY_SIZE)
ret = -1;
else
path_offset += strlen(w->entries[i].path) + 1;
}
if (ret != 0)
goto out;
memcpy(header, FPK_MAGIC, FPK_MAGIC_SIZE);
put_u64le(header + FPK_HEADER_FIELD_ENTRY_COUNT, w->count);
put_u64le(header + FPK_HEADER_FIELD_DIR_OFFSET, dir_offset);
put_u64le(header + FPK_HEADER_FIELD_STRTAB_OFFSET, strtab_offset);
if (fseek(w->file, 0, SEEK_SET) != 0 ||
fwrite(header, 1, FPK_HEADER_SIZE, w->file) != FPK_HEADER_SIZE ||
fflush(w->file) != 0)
ret = -1;
out:
return ret;
}
void fpk_writer_close(struct fpk_writer *w)
{
uint64_t i;
if (w == NULL)
return;
if (w->file != NULL)
fclose(w->file);
for (i = 0; i < w->count; i++)
free(w->entries[i].path);
free(w->entries);
free(w);
}