#include "lz_decoder.h"
typedef struct {
lzma_dict dict;
lzma_lz_decoder lz;
lzma_next_coder next;
bool next_finished;
bool this_finished;
struct {
size_t pos;
size_t size;
uint8_t buffer[LZMA_BUFFER_SIZE];
} temp;
} lzma_coder;
static void
lz_decoder_reset(lzma_coder *coder)
{
coder->dict.pos = LZ_DICT_INIT_POS;
coder->dict.full = 0;
coder->dict.buf[LZ_DICT_INIT_POS - 1] = '\0';
coder->dict.has_wrapped = false;
coder->dict.need_reset = false;
return;
}
static lzma_ret
decode_buffer(lzma_coder *coder,
const uint8_t *restrict in, size_t *restrict in_pos,
size_t in_size, uint8_t *restrict out,
size_t *restrict out_pos, size_t out_size)
{
while (true) {
if (coder->dict.pos == coder->dict.size) {
coder->dict.pos = LZ_DICT_REPEAT_MAX;
coder->dict.has_wrapped = true;
memcpy(coder->dict.buf, coder->dict.buf
+ coder->dict.size
- LZ_DICT_REPEAT_MAX,
LZ_DICT_REPEAT_MAX);
}
const size_t dict_start = coder->dict.pos;
coder->dict.limit = coder->dict.pos
+ my_min(out_size - *out_pos,
coder->dict.size - coder->dict.pos);
const lzma_ret ret = coder->lz.code(
coder->lz.coder, &coder->dict,
in, in_pos, in_size);
const size_t copy_size = coder->dict.pos - dict_start;
assert(copy_size <= out_size - *out_pos);
if (copy_size > 0)
memcpy(out + *out_pos, coder->dict.buf + dict_start,
copy_size);
*out_pos += copy_size;
if (coder->dict.need_reset) {
lz_decoder_reset(coder);
if (ret != LZMA_OK || *out_pos == out_size)
return ret;
} else {
if (ret != LZMA_OK || *out_pos == out_size
|| coder->dict.pos < coder->dict.size)
return ret;
}
}
}
static lzma_ret
lz_decode(void *coder_ptr, const lzma_allocator *allocator,
const uint8_t *restrict in, size_t *restrict in_pos,
size_t in_size, uint8_t *restrict out,
size_t *restrict out_pos, size_t out_size,
lzma_action action)
{
lzma_coder *coder = coder_ptr;
if (coder->next.code == NULL)
return decode_buffer(coder, in, in_pos, in_size,
out, out_pos, out_size);
while (*out_pos < out_size) {
if (!coder->next_finished
&& coder->temp.pos == coder->temp.size) {
coder->temp.pos = 0;
coder->temp.size = 0;
const lzma_ret ret = coder->next.code(
coder->next.coder,
allocator, in, in_pos, in_size,
coder->temp.buffer, &coder->temp.size,
LZMA_BUFFER_SIZE, action);
if (ret == LZMA_STREAM_END)
coder->next_finished = true;
else if (ret != LZMA_OK || coder->temp.size == 0)
return ret;
}
if (coder->this_finished) {
if (coder->temp.size != 0)
return LZMA_DATA_ERROR;
if (coder->next_finished)
return LZMA_STREAM_END;
return LZMA_OK;
}
const lzma_ret ret = decode_buffer(coder, coder->temp.buffer,
&coder->temp.pos, coder->temp.size,
out, out_pos, out_size);
if (ret == LZMA_STREAM_END)
coder->this_finished = true;
else if (ret != LZMA_OK)
return ret;
else if (coder->next_finished && *out_pos < out_size)
return LZMA_DATA_ERROR;
}
return LZMA_OK;
}
static void
lz_decoder_end(void *coder_ptr, const lzma_allocator *allocator)
{
lzma_coder *coder = coder_ptr;
lzma_next_end(&coder->next, allocator);
lzma_free(coder->dict.buf, allocator);
if (coder->lz.end != NULL)
coder->lz.end(coder->lz.coder, allocator);
else
lzma_free(coder->lz.coder, allocator);
lzma_free(coder, allocator);
return;
}
extern lzma_ret
lzma_lz_decoder_init(lzma_next_coder *next, const lzma_allocator *allocator,
const lzma_filter_info *filters,
lzma_ret (*lz_init)(lzma_lz_decoder *lz,
const lzma_allocator *allocator,
lzma_vli id, const void *options,
lzma_lz_options *lz_options))
{
lzma_coder *coder = next->coder;
if (coder == NULL) {
coder = lzma_alloc(sizeof(lzma_coder), allocator);
if (coder == NULL)
return LZMA_MEM_ERROR;
next->coder = coder;
next->code = &lz_decode;
next->end = &lz_decoder_end;
coder->dict.buf = NULL;
coder->dict.size = 0;
coder->lz = LZMA_LZ_DECODER_INIT;
coder->next = LZMA_NEXT_CODER_INIT;
}
lzma_lz_options lz_options;
return_if_error(lz_init(&coder->lz, allocator,
filters[0].id, filters[0].options, &lz_options));
if (lz_options.dict_size < 4096)
lz_options.dict_size = 4096;
if (lz_options.dict_size > SIZE_MAX - 15 - 2 * LZ_DICT_REPEAT_MAX
- LZ_DICT_EXTRA)
return LZMA_MEM_ERROR;
lz_options.dict_size = (lz_options.dict_size + 15) & ~((size_t)(15));
const size_t alloc_size
= lz_options.dict_size + 2 * LZ_DICT_REPEAT_MAX;
if (coder->dict.size != alloc_size) {
lzma_free(coder->dict.buf, allocator);
coder->dict.buf = lzma_alloc(alloc_size + LZ_DICT_EXTRA,
allocator);
if (coder->dict.buf == NULL)
return LZMA_MEM_ERROR;
coder->dict.size = alloc_size;
}
lz_decoder_reset(next->coder);
if (lz_options.preset_dict != NULL
&& lz_options.preset_dict_size > 0) {
const size_t copy_size = my_min(lz_options.preset_dict_size,
lz_options.dict_size);
const size_t offset = lz_options.preset_dict_size - copy_size;
memcpy(coder->dict.buf + coder->dict.pos,
lz_options.preset_dict + offset,
copy_size);
coder->dict.pos += copy_size;
coder->dict.full = copy_size;
}
coder->next_finished = false;
coder->this_finished = false;
coder->temp.pos = 0;
coder->temp.size = 0;
return lzma_next_filter_init(&coder->next, allocator, filters + 1);
}
extern uint64_t
lzma_lz_decoder_memusage(size_t dictionary_size)
{
return sizeof(lzma_coder) + (uint64_t)(dictionary_size)
+ 2 * LZ_DICT_REPEAT_MAX + LZ_DICT_EXTRA;
}