#include "lodepng.h"
#include <stdio.h>
#include <stdlib.h>
#ifdef LODEPNG_COMPILE_CPP
#include <fstream>
#endif
#define VERSION_STRING "20120729"
static void* mymalloc(size_t size)
{
return malloc(size);
}
static void* myrealloc(void* ptr, size_t new_size)
{
return realloc(ptr, new_size);
}
static void myfree(void* ptr)
{
free(ptr);
}
unsigned lodepng_custom_zlib_decompress(unsigned char** out, size_t* outsize,
const unsigned char* in, size_t insize,
const LodePNGDecompressSettings* settings);
unsigned lodepng_custom_zlib_compress(unsigned char** out, size_t* outsize,
const unsigned char* in, size_t insize,
const LodePNGCompressSettings* settings);
unsigned lodepng_custom_inflate(unsigned char** out, size_t* outsize,
const unsigned char* in, size_t insize,
const LodePNGDecompressSettings* settings);
unsigned lodepng_custom_deflate(unsigned char** out, size_t* outsize,
const unsigned char* in, size_t insize,
const LodePNGCompressSettings* settings);
#define CERROR_BREAK(errorvar, code)\
{\
errorvar = code;\
break;\
}
#define ERROR_BREAK(code) CERROR_BREAK(error, code)
#define CERROR_RETURN_ERROR(errorvar, code)\
{\
errorvar = code;\
return code;\
}
#define CERROR_TRY_RETURN(call)\
{\
unsigned error = call;\
if(error) return error;\
}
#ifdef LODEPNG_COMPILE_ZLIB
typedef struct uivector
{
unsigned* data;
size_t size;
size_t allocsize;
} uivector;
static void uivector_cleanup(void* p)
{
((uivector*)p)->size = ((uivector*)p)->allocsize = 0;
myfree(((uivector*)p)->data);
((uivector*)p)->data = NULL;
}
static unsigned uivector_resize(uivector* p, size_t size)
{
if(size * sizeof(unsigned) > p->allocsize)
{
size_t newsize = size * sizeof(unsigned) * 2;
void* data = myrealloc(p->data, newsize);
if(data)
{
p->allocsize = newsize;
p->data = (unsigned*)data;
p->size = size;
}
else return 0;
}
else p->size = size;
return 1;
}
static unsigned uivector_resizev(uivector* p, size_t size, unsigned value)
{
size_t oldsize = p->size, i;
if(!uivector_resize(p, size)) return 0;
for(i = oldsize; i < size; i++) p->data[i] = value;
return 1;
}
static void uivector_init(uivector* p)
{
p->data = NULL;
p->size = p->allocsize = 0;
}
#ifdef LODEPNG_COMPILE_ENCODER
static unsigned uivector_push_back(uivector* p, unsigned c)
{
if(!uivector_resize(p, p->size + 1)) return 0;
p->data[p->size - 1] = c;
return 1;
}
static unsigned uivector_copy(uivector* p, const uivector* q)
{
size_t i;
if(!uivector_resize(p, q->size)) return 0;
for(i = 0; i < q->size; i++) p->data[i] = q->data[i];
return 1;
}
static void uivector_swap(uivector* p, uivector* q)
{
size_t tmp;
unsigned* tmpp;
tmp = p->size; p->size = q->size; q->size = tmp;
tmp = p->allocsize; p->allocsize = q->allocsize; q->allocsize = tmp;
tmpp = p->data; p->data = q->data; q->data = tmpp;
}
#endif
#endif
typedef struct ucvector
{
unsigned char* data;
size_t size;
size_t allocsize;
} ucvector;
static void ucvector_cleanup(void* p)
{
((ucvector*)p)->size = ((ucvector*)p)->allocsize = 0;
myfree(((ucvector*)p)->data);
((ucvector*)p)->data = NULL;
}
static unsigned ucvector_resize(ucvector* p, size_t size)
{
if(size * sizeof(unsigned char) > p->allocsize)
{
size_t newsize = size * sizeof(unsigned char) * 2;
void* data = myrealloc(p->data, newsize);
if(data)
{
p->allocsize = newsize;
p->data = (unsigned char*)data;
p->size = size;
}
else return 0;
}
else p->size = size;
return 1;
}
#ifdef LODEPNG_COMPILE_DECODER
#ifdef LODEPNG_COMPILE_PNG
static unsigned ucvector_resizev(ucvector* p, size_t size, unsigned char value)
{
size_t oldsize = p->size, i;
if(!ucvector_resize(p, size)) return 0;
for(i = oldsize; i < size; i++) p->data[i] = value;
return 1;
}
#endif
#endif
static void ucvector_init(ucvector* p)
{
p->data = NULL;
p->size = p->allocsize = 0;
}
#ifdef LODEPNG_COMPILE_ZLIB
static void ucvector_init_buffer(ucvector* p, unsigned char* buffer, size_t size)
{
p->data = buffer;
p->allocsize = p->size = size;
}
#endif
#ifdef LODEPNG_COMPILE_ENCODER
static unsigned ucvector_push_back(ucvector* p, unsigned char c)
{
if(!ucvector_resize(p, p->size + 1)) return 0;
p->data[p->size - 1] = c;
return 1;
}
#endif
#ifdef LODEPNG_COMPILE_PNG
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
static unsigned string_resize(char** out, size_t size)
{
char* data = (char*)myrealloc(*out, size + 1);
if(data)
{
data[size] = 0;
*out = data;
}
return data != 0;
}
static void string_init(char** out)
{
*out = NULL;
string_resize(out, 0);
}
static void string_cleanup(char** out)
{
myfree(*out);
*out = NULL;
}
static void string_set(char** out, const char* in)
{
size_t insize = strlen(in), i = 0;
if(string_resize(out, insize))
{
for(i = 0; i < insize; i++)
{
(*out)[i] = in[i];
}
}
}
#endif
#endif
unsigned lodepng_read32bitInt(const unsigned char* buffer)
{
return (buffer[0] << 24) | (buffer[1] << 16) | (buffer[2] << 8) | buffer[3];
}
static void lodepng_set32bitInt(unsigned char* buffer, unsigned value)
{
buffer[0] = (unsigned char)((value >> 24) & 0xff);
buffer[1] = (unsigned char)((value >> 16) & 0xff);
buffer[2] = (unsigned char)((value >> 8) & 0xff);
buffer[3] = (unsigned char)((value ) & 0xff);
}
#ifdef LODEPNG_COMPILE_ENCODER
static void lodepng_add32bitInt(ucvector* buffer, unsigned value)
{
ucvector_resize(buffer, buffer->size + 4);
lodepng_set32bitInt(&buffer->data[buffer->size - 4], value);
}
#endif
#ifdef LODEPNG_COMPILE_DISK
unsigned lodepng_load_file(unsigned char** out, size_t* outsize, const char* filename)
{
FILE* file;
long size;
*out = 0;
*outsize = 0;
file = fopen(filename, "rb");
if(!file) return 78;
fseek(file , 0 , SEEK_END);
size = ftell(file);
rewind(file);
*outsize = 0;
*out = (unsigned char*)mymalloc((size_t)size);
if(size && (*out)) (*outsize) = fread(*out, 1, (size_t)size, file);
fclose(file);
if(!(*out) && size) return 83;
return 0;
}
unsigned lodepng_save_file(const unsigned char* buffer, size_t buffersize, const char* filename)
{
FILE* file;
file = fopen(filename, "wb" );
if(!file) return 79;
fwrite((char*)buffer , 1 , buffersize, file);
fclose(file);
return 0;
}
#endif
#ifdef LODEPNG_COMPILE_ZLIB
#ifdef LODEPNG_COMPILE_ENCODER
static void addBitToStream(size_t* bitpointer, ucvector* bitstream, unsigned char bit)
{
if((*bitpointer) % 8 == 0) ucvector_push_back(bitstream, (unsigned char)0);
(bitstream->data[bitstream->size - 1]) |= (bit << ((*bitpointer) & 0x7));
(*bitpointer)++;
}
static void addBitsToStream(size_t* bitpointer, ucvector* bitstream, unsigned value, size_t nbits)
{
size_t i;
for(i = 0; i < nbits; i++) addBitToStream(bitpointer, bitstream, (unsigned char)((value >> i) & 1));
}
static void addBitsToStreamReversed(size_t* bitpointer, ucvector* bitstream, unsigned value, size_t nbits)
{
size_t i;
for(i = 0; i < nbits; i++) addBitToStream(bitpointer, bitstream, (unsigned char)((value >> (nbits - 1 - i)) & 1));
}
#endif
#ifdef LODEPNG_COMPILE_DECODER
#define READBIT(bitpointer, bitstream) ((bitstream[bitpointer >> 3] >> (bitpointer & 0x7)) & (unsigned char)1)
static unsigned char readBitFromStream(size_t* bitpointer, const unsigned char* bitstream)
{
unsigned char result = (unsigned char)(READBIT(*bitpointer, bitstream));
(*bitpointer)++;
return result;
}
static unsigned readBitsFromStream(size_t* bitpointer, const unsigned char* bitstream, size_t nbits)
{
unsigned result = 0, i;
for(i = 0; i < nbits; i++)
{
result += ((unsigned)READBIT(*bitpointer, bitstream)) << i;
(*bitpointer)++;
}
return result;
}
#endif
#define FIRST_LENGTH_CODE_INDEX 257
#define LAST_LENGTH_CODE_INDEX 285
#define NUM_DEFLATE_CODE_SYMBOLS 288
#define NUM_DISTANCE_SYMBOLS 32
#define NUM_CODE_LENGTH_CODES 19
static const unsigned LENGTHBASE[29]
= {3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31, 35, 43, 51, 59,
67, 83, 99, 115, 131, 163, 195, 227, 258};
static const unsigned LENGTHEXTRA[29]
= {0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3,
4, 4, 4, 4, 5, 5, 5, 5, 0};
static const unsigned DISTANCEBASE[30]
= {1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193, 257, 385, 513,
769, 1025, 1537, 2049, 3073, 4097, 6145, 8193, 12289, 16385, 24577};
static const unsigned DISTANCEEXTRA[30]
= {0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8,
8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13};
static const unsigned CLCL_ORDER[NUM_CODE_LENGTH_CODES]
= {16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15};
typedef struct HuffmanTree
{
unsigned* tree2d;
unsigned* tree1d;
unsigned* lengths;
unsigned maxbitlen;
unsigned numcodes;
} HuffmanTree;
static void HuffmanTree_init(HuffmanTree* tree)
{
tree->tree2d = 0;
tree->tree1d = 0;
tree->lengths = 0;
}
static void HuffmanTree_cleanup(HuffmanTree* tree)
{
myfree(tree->tree2d);
myfree(tree->tree1d);
myfree(tree->lengths);
}
static unsigned HuffmanTree_make2DTree(HuffmanTree* tree)
{
unsigned nodefilled = 0;
unsigned treepos = 0;
unsigned n, i;
tree->tree2d = (unsigned*)mymalloc(tree->numcodes * 2 * sizeof(unsigned));
if(!tree->tree2d) return 83;
for(n = 0; n < tree->numcodes * 2; n++)
{
tree->tree2d[n] = 32767;
}
for(n = 0; n < tree->numcodes; n++)
{
for(i = 0; i < tree->lengths[n]; i++)
{
unsigned char bit = (unsigned char)((tree->tree1d[n] >> (tree->lengths[n] - i - 1)) & 1);
if(treepos > tree->numcodes - 2) return 55;
if(tree->tree2d[2 * treepos + bit] == 32767)
{
if(i + 1 == tree->lengths[n])
{
tree->tree2d[2 * treepos + bit] = n;
treepos = 0;
}
else
{
nodefilled++;
tree->tree2d[2 * treepos + bit] = nodefilled + tree->numcodes;
treepos = nodefilled;
}
}
else treepos = tree->tree2d[2 * treepos + bit] - tree->numcodes;
}
}
for(n = 0; n < tree->numcodes * 2; n++)
{
if(tree->tree2d[n] == 32767) tree->tree2d[n] = 0;
}
return 0;
}
static unsigned HuffmanTree_makeFromLengths2(HuffmanTree* tree)
{
uivector blcount;
uivector nextcode;
unsigned bits, n, error = 0;
uivector_init(&blcount);
uivector_init(&nextcode);
tree->tree1d = (unsigned*)mymalloc(tree->numcodes * sizeof(unsigned));
if(!tree->tree1d) error = 83;
if(!uivector_resizev(&blcount, tree->maxbitlen + 1, 0)
|| !uivector_resizev(&nextcode, tree->maxbitlen + 1, 0))
error = 83;
if(!error)
{
for(bits = 0; bits < tree->numcodes; bits++) blcount.data[tree->lengths[bits]]++;
for(bits = 1; bits <= tree->maxbitlen; bits++)
{
nextcode.data[bits] = (nextcode.data[bits - 1] + blcount.data[bits - 1]) << 1;
}
for(n = 0; n < tree->numcodes; n++)
{
if(tree->lengths[n] != 0) tree->tree1d[n] = nextcode.data[tree->lengths[n]]++;
}
}
uivector_cleanup(&blcount);
uivector_cleanup(&nextcode);
if(!error) return HuffmanTree_make2DTree(tree);
else return error;
}
static unsigned HuffmanTree_makeFromLengths(HuffmanTree* tree, const unsigned* bitlen,
size_t numcodes, unsigned maxbitlen)
{
unsigned i;
tree->lengths = (unsigned*)mymalloc(numcodes * sizeof(unsigned));
if(!tree->lengths) return 83;
for(i = 0; i < numcodes; i++) tree->lengths[i] = bitlen[i];
tree->numcodes = (unsigned)numcodes;
tree->maxbitlen = maxbitlen;
return HuffmanTree_makeFromLengths2(tree);
}
#ifdef LODEPNG_COMPILE_ENCODER
typedef struct Coin
{
uivector symbols;
float weight;
} Coin;
static void coin_init(Coin* c)
{
uivector_init(&c->symbols);
}
static void coin_cleanup(void* c)
{
uivector_cleanup(&((Coin*)c)->symbols);
}
static void coin_copy(Coin* c1, const Coin* c2)
{
c1->weight = c2->weight;
uivector_copy(&c1->symbols, &c2->symbols);
}
static void add_coins(Coin* c1, const Coin* c2)
{
size_t i;
for(i = 0; i < c2->symbols.size; i++) uivector_push_back(&c1->symbols, c2->symbols.data[i]);
c1->weight += c2->weight;
}
static void init_coins(Coin* coins, size_t num)
{
size_t i;
for(i = 0; i < num; i++) coin_init(&coins[i]);
}
static void cleanup_coins(Coin* coins, size_t num)
{
size_t i;
for(i = 0; i < num; i++) coin_cleanup(&coins[i]);
}
static void sort_coins(Coin* data, size_t amount)
{
size_t gap = amount;
unsigned char swapped = 0;
while((gap > 1) || swapped)
{
size_t i;
gap = (gap * 10) / 13;
if(gap == 9 || gap == 10) gap = 11;
if(gap < 1) gap = 1;
swapped = 0;
for(i = 0; i < amount - gap; i++)
{
size_t j = i + gap;
if(data[j].weight < data[i].weight)
{
float temp = data[j].weight; data[j].weight = data[i].weight; data[i].weight = temp;
uivector_swap(&data[i].symbols, &data[j].symbols);
swapped = 1;
}
}
}
}
static unsigned append_symbol_coins(Coin* coins, const unsigned* frequencies, unsigned numcodes, size_t sum)
{
unsigned i;
unsigned j = 0;
for(i = 0; i < numcodes; i++)
{
if(frequencies[i] != 0)
{
coins[j].weight = frequencies[i] / (float)sum;
uivector_push_back(&coins[j].symbols, i);
j++;
}
}
return 0;
}
unsigned lodepng_huffman_code_lengths(unsigned* lengths, const unsigned* frequencies,
size_t numcodes, unsigned maxbitlen)
{
unsigned i, j;
size_t sum = 0, numpresent = 0;
unsigned error = 0;
Coin* coins;
Coin* prev_row;
unsigned numcoins;
unsigned coinmem;
if(numcodes == 0) return 80;
for(i = 0; i < numcodes; i++)
{
if(frequencies[i] > 0)
{
numpresent++;
sum += frequencies[i];
}
}
for(i = 0; i < numcodes; i++) lengths[i] = 0;
if(numpresent == 0)
{
lengths[0] = 1;
}
else if(numpresent == 1)
{
for(i = 0; i < numcodes; i++) if(frequencies[i]) lengths[i] = 1;
}
else
{
coinmem = numpresent * 2;
coins = (Coin*)mymalloc(sizeof(Coin) * coinmem);
prev_row = (Coin*)mymalloc(sizeof(Coin) * coinmem);
if(!coins || !prev_row) return 83;
init_coins(coins, coinmem);
init_coins(prev_row, coinmem);
error = append_symbol_coins(coins, frequencies, numcodes, sum);
numcoins = numpresent;
sort_coins(coins, numcoins);
if(!error)
{
unsigned numprev = 0;
for(j = 1; j <= maxbitlen && !error; j++)
{
unsigned tempnum;
Coin* tempcoins;
tempcoins = prev_row; prev_row = coins; coins = tempcoins;
tempnum = numprev; numprev = numcoins; numcoins = tempnum;
cleanup_coins(coins, numcoins);
init_coins(coins, numcoins);
numcoins = 0;
for(i = 0; i + 1 < numprev; i += 2)
{
Coin* coin = &coins[numcoins++];
coin_copy(coin, &prev_row[i]);
add_coins(coin, &prev_row[i + 1]);
}
if(j < maxbitlen)
{
error = append_symbol_coins(coins + numcoins, frequencies, numcodes, sum);
numcoins += numpresent;
}
sort_coins(coins, numcoins);
}
}
if(!error)
{
for(i = 0; i < numpresent - 1; i++)
{
Coin* coin = &coins[i];
for(j = 0; j < coin->symbols.size; j++) lengths[coin->symbols.data[j]]++;
}
}
cleanup_coins(coins, coinmem);
myfree(coins);
cleanup_coins(prev_row, coinmem);
myfree(prev_row);
}
return error;
}
static unsigned HuffmanTree_makeFromFrequencies(HuffmanTree* tree, const unsigned* frequencies,
size_t numcodes, unsigned maxbitlen)
{
unsigned error = 0;
tree->maxbitlen = maxbitlen;
tree->numcodes = (unsigned)numcodes;
tree->lengths = (unsigned*)myrealloc(tree->lengths, numcodes * sizeof(unsigned));
if(!tree->lengths) return 83;
memset(tree->lengths, 0, numcodes * sizeof(unsigned));
error = lodepng_huffman_code_lengths(tree->lengths, frequencies, numcodes, maxbitlen);
if(!error) error = HuffmanTree_makeFromLengths2(tree);
return error;
}
static unsigned HuffmanTree_getCode(const HuffmanTree* tree, unsigned index)
{
return tree->tree1d[index];
}
static unsigned HuffmanTree_getLength(const HuffmanTree* tree, unsigned index)
{
return tree->lengths[index];
}
#endif
static unsigned generateFixedLitLenTree(HuffmanTree* tree)
{
unsigned i, error = 0;
unsigned* bitlen = (unsigned*)mymalloc(NUM_DEFLATE_CODE_SYMBOLS * sizeof(unsigned));
if(!bitlen) return 83;
for(i = 0; i <= 143; i++) bitlen[i] = 8;
for(i = 144; i <= 255; i++) bitlen[i] = 9;
for(i = 256; i <= 279; i++) bitlen[i] = 7;
for(i = 280; i <= 287; i++) bitlen[i] = 8;
error = HuffmanTree_makeFromLengths(tree, bitlen, NUM_DEFLATE_CODE_SYMBOLS, 15);
myfree(bitlen);
return error;
}
static unsigned generateFixedDistanceTree(HuffmanTree* tree)
{
unsigned i, error = 0;
unsigned* bitlen = (unsigned*)mymalloc(NUM_DISTANCE_SYMBOLS * sizeof(unsigned));
if(!bitlen) return 83;
for(i = 0; i < NUM_DISTANCE_SYMBOLS; i++) bitlen[i] = 5;
error = HuffmanTree_makeFromLengths(tree, bitlen, NUM_DISTANCE_SYMBOLS, 15);
myfree(bitlen);
return error;
}
#ifdef LODEPNG_COMPILE_DECODER
static unsigned huffmanDecodeSymbol(const unsigned char* in, size_t* bp,
const HuffmanTree* codetree, size_t inbitlength)
{
unsigned treepos = 0, ct;
for(;;)
{
if(*bp >= inbitlength) return (unsigned)(-1);
ct = codetree->tree2d[(treepos << 1) + READBIT(*bp, in)];
(*bp)++;
if(ct < codetree->numcodes) return ct;
else treepos = ct - codetree->numcodes;
if(treepos >= codetree->numcodes) return (unsigned)(-1);
}
}
#endif
#ifdef LODEPNG_COMPILE_DECODER
static void getTreeInflateFixed(HuffmanTree* tree_ll, HuffmanTree* tree_d)
{
generateFixedLitLenTree(tree_ll);
generateFixedDistanceTree(tree_d);
}
static unsigned getTreeInflateDynamic(HuffmanTree* tree_ll, HuffmanTree* tree_d,
const unsigned char* in, size_t* bp, size_t inlength)
{
unsigned error = 0;
unsigned n, HLIT, HDIST, HCLEN, i;
size_t inbitlength = inlength * 8;
unsigned* bitlen_ll = 0;
unsigned* bitlen_d = 0;
unsigned* bitlen_cl = 0;
HuffmanTree tree_cl;
if((*bp) >> 3 >= inlength - 2) return 49;
HLIT = readBitsFromStream(bp, in, 5) + 257;
HDIST = readBitsFromStream(bp, in, 5) + 1;
HCLEN = readBitsFromStream(bp, in, 4) + 4;
HuffmanTree_init(&tree_cl);
while(!error)
{
bitlen_cl = (unsigned*)mymalloc(NUM_CODE_LENGTH_CODES * sizeof(unsigned));
if(!bitlen_cl) ERROR_BREAK(83 );
for(i = 0; i < NUM_CODE_LENGTH_CODES; i++)
{
if(i < HCLEN) bitlen_cl[CLCL_ORDER[i]] = readBitsFromStream(bp, in, 3);
else bitlen_cl[CLCL_ORDER[i]] = 0;
}
error = HuffmanTree_makeFromLengths(&tree_cl, bitlen_cl, NUM_CODE_LENGTH_CODES, 7);
if(error) break;
bitlen_ll = (unsigned*)mymalloc(NUM_DEFLATE_CODE_SYMBOLS * sizeof(unsigned));
bitlen_d = (unsigned*)mymalloc(NUM_DISTANCE_SYMBOLS * sizeof(unsigned));
if(!bitlen_ll || !bitlen_d) ERROR_BREAK(83 );
for(i = 0; i < NUM_DEFLATE_CODE_SYMBOLS; i++) bitlen_ll[i] = 0;
for(i = 0; i < NUM_DISTANCE_SYMBOLS; i++) bitlen_d[i] = 0;
i = 0;
while(i < HLIT + HDIST)
{
unsigned code = huffmanDecodeSymbol(in, bp, &tree_cl, inbitlength);
if(code <= 15)
{
if(i < HLIT) bitlen_ll[i] = code;
else bitlen_d[i - HLIT] = code;
i++;
}
else if(code == 16)
{
unsigned replength = 3;
unsigned value;
if(*bp >= inbitlength) ERROR_BREAK(50);
if (i == 0) ERROR_BREAK(54);
replength += readBitsFromStream(bp, in, 2);
if(i < HLIT + 1) value = bitlen_ll[i - 1];
else value = bitlen_d[i - HLIT - 1];
for(n = 0; n < replength; n++)
{
if(i >= HLIT + HDIST) ERROR_BREAK(13);
if(i < HLIT) bitlen_ll[i] = value;
else bitlen_d[i - HLIT] = value;
i++;
}
}
else if(code == 17)
{
unsigned replength = 3;
if(*bp >= inbitlength) ERROR_BREAK(50);
replength += readBitsFromStream(bp, in, 3);
for(n = 0; n < replength; n++)
{
if(i >= HLIT + HDIST) ERROR_BREAK(14);
if(i < HLIT) bitlen_ll[i] = 0;
else bitlen_d[i - HLIT] = 0;
i++;
}
}
else if(code == 18)
{
unsigned replength = 11;
if(*bp >= inbitlength) ERROR_BREAK(50);
replength += readBitsFromStream(bp, in, 7);
for(n = 0; n < replength; n++)
{
if(i >= HLIT + HDIST) ERROR_BREAK(15);
if(i < HLIT) bitlen_ll[i] = 0;
else bitlen_d[i - HLIT] = 0;
i++;
}
}
else
{
if(code == (unsigned)(-1))
{
error = (*bp) > inbitlength ? 10 : 11;
}
else error = 16;
break;
}
}
if(error) break;
if(bitlen_ll[256] == 0) ERROR_BREAK(64);
error = HuffmanTree_makeFromLengths(tree_ll, bitlen_ll, NUM_DEFLATE_CODE_SYMBOLS, 15);
if(error) break;
error = HuffmanTree_makeFromLengths(tree_d, bitlen_d, NUM_DISTANCE_SYMBOLS, 15);
break;
}
myfree(bitlen_cl);
myfree(bitlen_ll);
myfree(bitlen_d);
HuffmanTree_cleanup(&tree_cl);
return error;
}
static unsigned inflateHuffmanBlock(ucvector* out, const unsigned char* in, size_t* bp,
size_t* pos, size_t inlength, unsigned btype)
{
unsigned error = 0;
HuffmanTree tree_ll;
HuffmanTree tree_d;
size_t inbitlength = inlength * 8;
HuffmanTree_init(&tree_ll);
HuffmanTree_init(&tree_d);
if(btype == 1) getTreeInflateFixed(&tree_ll, &tree_d);
else if(btype == 2)
{
error = getTreeInflateDynamic(&tree_ll, &tree_d, in, bp, inlength);
}
while(!error)
{
unsigned code_ll = huffmanDecodeSymbol(in, bp, &tree_ll, inbitlength);
if(code_ll <= 255)
{
if((*pos) >= out->size)
{
if(!ucvector_resize(out, ((*pos) + 1) * 2)) ERROR_BREAK(83 );
}
out->data[(*pos)] = (unsigned char)(code_ll);
(*pos)++;
}
else if(code_ll >= FIRST_LENGTH_CODE_INDEX && code_ll <= LAST_LENGTH_CODE_INDEX)
{
unsigned code_d, distance;
unsigned numextrabits_l, numextrabits_d;
size_t start, forward, backward, length;
length = LENGTHBASE[code_ll - FIRST_LENGTH_CODE_INDEX];
numextrabits_l = LENGTHEXTRA[code_ll - FIRST_LENGTH_CODE_INDEX];
if(*bp >= inbitlength) ERROR_BREAK(51);
length += readBitsFromStream(bp, in, numextrabits_l);
code_d = huffmanDecodeSymbol(in, bp, &tree_d, inbitlength);
if(code_d > 29)
{
if(code_ll == (unsigned)(-1))
{
error = (*bp) > inlength * 8 ? 10 : 11;
}
else error = 18;
break;
}
distance = DISTANCEBASE[code_d];
numextrabits_d = DISTANCEEXTRA[code_d];
if(*bp >= inbitlength) ERROR_BREAK(51);
distance += readBitsFromStream(bp, in, numextrabits_d);
start = (*pos);
if(distance > start) ERROR_BREAK(52);
backward = start - distance;
if((*pos) + length >= out->size)
{
if(!ucvector_resize(out, ((*pos) + length) * 2)) ERROR_BREAK(83 );
}
for(forward = 0; forward < length; forward++)
{
out->data[(*pos)] = out->data[backward];
(*pos)++;
backward++;
if(backward >= start) backward = start - distance;
}
}
else if(code_ll == 256)
{
break;
}
else
{
error = (*bp) > inlength * 8 ? 10 : 11;
break;
}
}
HuffmanTree_cleanup(&tree_ll);
HuffmanTree_cleanup(&tree_d);
return error;
}
static unsigned inflateNoCompression(ucvector* out, const unsigned char* in, size_t* bp, size_t* pos, size_t inlength)
{
size_t p;
unsigned LEN, NLEN, n, error = 0;
while(((*bp) & 0x7) != 0) (*bp)++;
p = (*bp) / 8;
if(p >= inlength - 4) return 52;
LEN = in[p] + 256 * in[p + 1]; p += 2;
NLEN = in[p] + 256 * in[p + 1]; p += 2;
if(LEN + NLEN != 65535) return 21;
if((*pos) + LEN >= out->size)
{
if(!ucvector_resize(out, (*pos) + LEN)) return 83;
}
if(p + LEN > inlength) return 23;
for(n = 0; n < LEN; n++) out->data[(*pos)++] = in[p++];
(*bp) = p * 8;
return error;
}
static unsigned lodepng_inflatev(ucvector* out,
const unsigned char* in, size_t insize,
const LodePNGDecompressSettings* settings)
{
size_t bp = 0;
unsigned BFINAL = 0;
size_t pos = 0;
unsigned error = 0;
(void)settings;
while(!BFINAL)
{
unsigned BTYPE;
if(bp + 2 >= insize * 8) return 52;
BFINAL = readBitFromStream(&bp, in);
BTYPE = 1 * readBitFromStream(&bp, in);
BTYPE += 2 * readBitFromStream(&bp, in);
if(BTYPE == 3) return 20;
else if(BTYPE == 0) error = inflateNoCompression(out, in, &bp, &pos, insize);
else error = inflateHuffmanBlock(out, in, &bp, &pos, insize, BTYPE);
if(error) return error;
}
if(!ucvector_resize(out, pos)) error = 83;
return error;
}
unsigned lodepng_inflate(unsigned char** out, size_t* outsize,
const unsigned char* in, size_t insize,
const LodePNGDecompressSettings* settings)
{
#if LODEPNG_CUSTOM_ZLIB_DECODER == 2
if(settings->custom_decoder)
{
return lodepng_custom_inflate(out, outsize, in, insize, settings);
}
else
{
#endif
unsigned error;
ucvector v;
ucvector_init_buffer(&v, *out, *outsize);
error = lodepng_inflatev(&v, in, insize, settings);
*out = v.data;
*outsize = v.size;
return error;
#if LODEPNG_CUSTOM_ZLIB_DECODER == 2
}
#endif
}
#endif
#ifdef LODEPNG_COMPILE_ENCODER
static const size_t MAX_SUPPORTED_DEFLATE_LENGTH = 258;
static void addHuffmanSymbol(size_t* bp, ucvector* compressed, unsigned code, unsigned bitlen)
{
addBitsToStreamReversed(bp, compressed, code, bitlen);
}
static size_t searchCodeIndex(const unsigned* array, size_t array_size, size_t value)
{
size_t left = 1;
size_t right = array_size - 1;
while(left <= right)
{
size_t mid = (left + right) / 2;
if(array[mid] <= value) left = mid + 1;
else if(array[mid - 1] > value) right = mid - 1;
else return mid - 1;
}
return array_size - 1;
}
static void addLengthDistance(uivector* values, size_t length, size_t distance)
{
unsigned length_code = (unsigned)searchCodeIndex(LENGTHBASE, 29, length);
unsigned extra_length = (unsigned)(length - LENGTHBASE[length_code]);
unsigned dist_code = (unsigned)searchCodeIndex(DISTANCEBASE, 30, distance);
unsigned extra_distance = (unsigned)(distance - DISTANCEBASE[dist_code]);
uivector_push_back(values, length_code + FIRST_LENGTH_CODE_INDEX);
uivector_push_back(values, extra_length);
uivector_push_back(values, dist_code);
uivector_push_back(values, extra_distance);
}
static const unsigned HASH_NUM_VALUES = 65536;
static const unsigned HASH_NUM_CHARACTERS = 3;
static const unsigned HASH_SHIFT = 2;
typedef struct Hash
{
int* head;
int* val;
unsigned short* chain;
unsigned short* zeros;
} Hash;
static unsigned hash_init(Hash* hash, unsigned windowsize)
{
unsigned i;
hash->head = (int*)mymalloc(sizeof(int) * HASH_NUM_VALUES);
hash->val = (int*)mymalloc(sizeof(int) * windowsize);
hash->chain = (unsigned short*)mymalloc(sizeof(unsigned short) * windowsize);
hash->zeros = (unsigned short*)mymalloc(sizeof(unsigned short) * windowsize);
if(!hash->head || !hash->val || !hash->chain || !hash->zeros) return 83;
for(i = 0; i < HASH_NUM_VALUES; i++) hash->head[i] = -1;
for(i = 0; i < windowsize; i++) hash->val[i] = -1;
for(i = 0; i < windowsize; i++) hash->chain[i] = i;
return 0;
}
static void hash_cleanup(Hash* hash)
{
myfree(hash->head);
myfree(hash->val);
myfree(hash->chain);
myfree(hash->zeros);
}
static unsigned getHash(const unsigned char* data, size_t size, size_t pos)
{
unsigned result = 0;
size_t amount, i;
if(pos >= size) return 0;
amount = HASH_NUM_CHARACTERS;
if(pos + amount >= size) amount = size - pos;
for(i = 0; i < amount; i++) result ^= (data[pos + i] << (i * HASH_SHIFT));
return result % HASH_NUM_VALUES;
}
static unsigned countZeros(const unsigned char* data, size_t size, size_t pos)
{
const unsigned char* start = data + pos;
const unsigned char* end = start + MAX_SUPPORTED_DEFLATE_LENGTH;
if(end > data + size) end = data + size;
data = start;
while (data != end && *data == 0) data++;
return data - start;
}
static void updateHashChain(Hash* hash,
size_t pos, int hashval, unsigned windowsize)
{
unsigned wpos = pos % windowsize;
hash->val[wpos] = hashval;
if(hash->head[hashval] != -1)
{
hash->chain[wpos] = hash->head[hashval];
}
hash->head[hashval] = wpos;
}
#define LAZY_MATCHING
static unsigned encodeLZ77(uivector* out, Hash* hash,
const unsigned char* in, size_t inpos, size_t insize, unsigned windowsize)
{
unsigned short numzeros = 0;
int usezeros = windowsize >= 8192;
unsigned pos, i, error = 0;
if(!error)
{
unsigned offset;
unsigned length;
#ifdef LAZY_MATCHING
unsigned lazy = 0;
unsigned lazylength = 0, lazyoffset = 0;
#endif
unsigned hashval;
unsigned current_offset, current_length;
const unsigned char *lastptr, *foreptr, *backptr;
unsigned short hashpos, prevpos;
for(pos = inpos; pos < insize; pos++)
{
size_t wpos = pos % windowsize;
hashval = getHash(in, insize, pos);
updateHashChain(hash, pos, hashval, windowsize);
if(usezeros && hashval == 0)
{
numzeros = countZeros(in, insize, pos);
hash->zeros[wpos] = numzeros;
}
length = 0;
offset = 0;
prevpos = hash->head[hashval];
hashpos = hash->chain[prevpos];
lastptr = &in[insize < pos + MAX_SUPPORTED_DEFLATE_LENGTH ? insize : pos + MAX_SUPPORTED_DEFLATE_LENGTH];
if(hash->val[wpos] == (int)hashval)
{
unsigned maxchainlength = windowsize >= 8192 ? windowsize : windowsize / 8;
for(;;)
{
if(prevpos < wpos && hashpos > prevpos && hashpos <= wpos) break;
if(prevpos > wpos && (hashpos <= wpos || hashpos > prevpos)) break;
if(maxchainlength-- == 0) break;
current_offset = hashpos <= wpos ? wpos - hashpos : wpos - hashpos + windowsize;
if(current_offset > 0)
{
foreptr = &in[pos];
backptr = &in[pos - current_offset];
if(usezeros && hashval == 0 && hash->val[hashpos] == 0 )
{
unsigned short skip = hash->zeros[hashpos];
if(skip > numzeros) skip = numzeros;
backptr += skip;
foreptr += skip;
}
while(foreptr != lastptr && *backptr == *foreptr)
{
++backptr;
++foreptr;
}
current_length = (unsigned)(foreptr - &in[pos]);
if(current_length > length)
{
length = current_length;
offset = current_offset;
if(current_length == MAX_SUPPORTED_DEFLATE_LENGTH) break;
}
}
if(hashpos == hash->chain[hashpos]) break;
prevpos = hashpos;
hashpos = hash->chain[hashpos];
}
}
#ifdef LAZY_MATCHING
if(!lazy && length >= 3 && length < MAX_SUPPORTED_DEFLATE_LENGTH)
{
lazy = 1;
lazylength = length;
lazyoffset = offset;
continue;
}
if(lazy)
{
lazy = 0;
if(pos == 0) ERROR_BREAK(81);
if(length > lazylength + 1)
{
if(!uivector_push_back(out, in[pos - 1])) ERROR_BREAK(83 );
}
else
{
length = lazylength;
offset = lazyoffset;
hash->head[hashval] = -1;
pos--;
}
}
#endif
if(length >= 3 && offset > windowsize) ERROR_BREAK(86 );
if(length < 3)
{
if(!uivector_push_back(out, in[pos])) ERROR_BREAK(83 );
}
else
{
if(length == 3 && offset > 2048)
{
if(!uivector_push_back(out, in[pos + 0])) ERROR_BREAK(83 );
if(!uivector_push_back(out, in[pos + 1])) ERROR_BREAK(83 );
if(!uivector_push_back(out, in[pos + 2])) ERROR_BREAK(83 );
}
else
{
addLengthDistance(out, length, offset);
}
for(i = 1; i < length; i++)
{
pos++;
hashval = getHash(in, insize, pos);
updateHashChain(hash, pos, hashval, windowsize);
if(usezeros && hashval == 0)
{
hash->zeros[pos % windowsize] = countZeros(in, insize, pos);
}
}
}
}
}
return error;
}
static unsigned deflateNoCompression(ucvector* out, const unsigned char* data, size_t datasize)
{
size_t i, j, numdeflateblocks = (datasize + 65534) / 65535;
unsigned datapos = 0;
for(i = 0; i < numdeflateblocks; i++)
{
unsigned BFINAL, BTYPE, LEN, NLEN;
unsigned char firstbyte;
BFINAL = (i == numdeflateblocks - 1);
BTYPE = 0;
firstbyte = (unsigned char)(BFINAL + ((BTYPE & 1) << 1) + ((BTYPE & 2) << 1));
ucvector_push_back(out, firstbyte);
LEN = 65535;
if(datasize - datapos < 65535) LEN = (unsigned)datasize - datapos;
NLEN = 65535 - LEN;
ucvector_push_back(out, (unsigned char)(LEN % 256));
ucvector_push_back(out, (unsigned char)(LEN / 256));
ucvector_push_back(out, (unsigned char)(NLEN % 256));
ucvector_push_back(out, (unsigned char)(NLEN / 256));
for(j = 0; j < 65535 && datapos < datasize; j++)
{
ucvector_push_back(out, data[datapos++]);
}
}
return 0;
}
static void writeLZ77data(size_t* bp, ucvector* out, const uivector* lz77_encoded,
const HuffmanTree* tree_ll, const HuffmanTree* tree_d)
{
size_t i = 0;
for(i = 0; i < lz77_encoded->size; i++)
{
unsigned val = lz77_encoded->data[i];
addHuffmanSymbol(bp, out, HuffmanTree_getCode(tree_ll, val), HuffmanTree_getLength(tree_ll, val));
if(val > 256)
{
unsigned length_index = val - FIRST_LENGTH_CODE_INDEX;
unsigned n_length_extra_bits = LENGTHEXTRA[length_index];
unsigned length_extra_bits = lz77_encoded->data[++i];
unsigned distance_code = lz77_encoded->data[++i];
unsigned distance_index = distance_code;
unsigned n_distance_extra_bits = DISTANCEEXTRA[distance_index];
unsigned distance_extra_bits = lz77_encoded->data[++i];
addBitsToStream(bp, out, length_extra_bits, n_length_extra_bits);
addHuffmanSymbol(bp, out, HuffmanTree_getCode(tree_d, distance_code),
HuffmanTree_getLength(tree_d, distance_code));
addBitsToStream(bp, out, distance_extra_bits, n_distance_extra_bits);
}
}
}
static unsigned deflateDynamic(ucvector* out, size_t* bp, Hash* hash,
const unsigned char* data, size_t datapos, size_t dataend,
const LodePNGCompressSettings* settings, int final)
{
unsigned error = 0;
uivector lz77_encoded;
HuffmanTree tree_ll;
HuffmanTree tree_d;
HuffmanTree tree_cl;
uivector frequencies_ll;
uivector frequencies_d;
uivector frequencies_cl;
uivector bitlen_lld;
uivector bitlen_lld_e;
uivector bitlen_cl;
size_t datasize = dataend - datapos;
unsigned BFINAL = final;
size_t numcodes_ll, numcodes_d, i;
unsigned HLIT, HDIST, HCLEN;
uivector_init(&lz77_encoded);
HuffmanTree_init(&tree_ll);
HuffmanTree_init(&tree_d);
HuffmanTree_init(&tree_cl);
uivector_init(&frequencies_ll);
uivector_init(&frequencies_d);
uivector_init(&frequencies_cl);
uivector_init(&bitlen_lld);
uivector_init(&bitlen_lld_e);
uivector_init(&bitlen_cl);
while(!error)
{
if(settings->use_lz77)
{
error = encodeLZ77(&lz77_encoded, hash, data, datapos, dataend, settings->windowsize);
if(error) break;
}
else
{
if(!uivector_resize(&lz77_encoded, datasize)) ERROR_BREAK(83 );
for(i = datapos; i < dataend; i++) lz77_encoded.data[i] = data[i];
}
if(!uivector_resizev(&frequencies_ll, 286, 0)) ERROR_BREAK(83 );
if(!uivector_resizev(&frequencies_d, 30, 0)) ERROR_BREAK(83 );
for(i = 0; i < lz77_encoded.size; i++)
{
unsigned symbol = lz77_encoded.data[i];
frequencies_ll.data[symbol]++;
if(symbol > 256)
{
unsigned dist = lz77_encoded.data[i + 2];
frequencies_d.data[dist]++;
i += 3;
}
}
frequencies_ll.data[256] = 1;
error = HuffmanTree_makeFromFrequencies(&tree_ll, frequencies_ll.data, frequencies_ll.size, 15);
if(error) break;
error = HuffmanTree_makeFromFrequencies(&tree_d, frequencies_d.data, frequencies_d.size, 15);
if(error) break;
numcodes_ll = tree_ll.numcodes; if(numcodes_ll > 286) numcodes_ll = 286;
numcodes_d = tree_d.numcodes; if(numcodes_d > 30) numcodes_d = 30;
for(i = 0; i < numcodes_ll; i++) uivector_push_back(&bitlen_lld, HuffmanTree_getLength(&tree_ll, (unsigned)i));
for(i = 0; i < numcodes_d; i++) uivector_push_back(&bitlen_lld, HuffmanTree_getLength(&tree_d, (unsigned)i));
for(i = 0; i < (unsigned)bitlen_lld.size; i++)
{
unsigned j = 0;
while(i + j + 1 < (unsigned)bitlen_lld.size && bitlen_lld.data[i + j + 1] == bitlen_lld.data[i]) j++;
if(bitlen_lld.data[i] == 0 && j >= 2)
{
j++;
if(j <= 10)
{
uivector_push_back(&bitlen_lld_e, 17);
uivector_push_back(&bitlen_lld_e, j - 3);
}
else
{
if(j > 138) j = 138;
uivector_push_back(&bitlen_lld_e, 18);
uivector_push_back(&bitlen_lld_e, j - 11);
}
i += (j - 1);
}
else if(j >= 3)
{
size_t k;
unsigned num = j / 6, rest = j % 6;
uivector_push_back(&bitlen_lld_e, bitlen_lld.data[i]);
for(k = 0; k < num; k++)
{
uivector_push_back(&bitlen_lld_e, 16);
uivector_push_back(&bitlen_lld_e, 6 - 3);
}
if(rest >= 3)
{
uivector_push_back(&bitlen_lld_e, 16);
uivector_push_back(&bitlen_lld_e, rest - 3);
}
else j -= rest;
i += j;
}
else
{
uivector_push_back(&bitlen_lld_e, bitlen_lld.data[i]);
}
}
if(!uivector_resizev(&frequencies_cl, NUM_CODE_LENGTH_CODES, 0)) ERROR_BREAK(83 );
for(i = 0; i < bitlen_lld_e.size; i++)
{
frequencies_cl.data[bitlen_lld_e.data[i]]++;
if(bitlen_lld_e.data[i] >= 16) i++;
}
error = HuffmanTree_makeFromFrequencies(&tree_cl, frequencies_cl.data, frequencies_cl.size, 7);
if(error) break;
if(!uivector_resize(&bitlen_cl, NUM_CODE_LENGTH_CODES)) ERROR_BREAK(83 );
for(i = 0; i < NUM_CODE_LENGTH_CODES; i++)
{
bitlen_cl.data[i] = HuffmanTree_getLength(&tree_cl, CLCL_ORDER[i]);
}
while(bitlen_cl.data[bitlen_cl.size - 1] == 0 && bitlen_cl.size > 4)
{
if(!uivector_resize(&bitlen_cl, bitlen_cl.size - 1)) ERROR_BREAK(83 );
}
if(error) break;
addBitToStream(bp, out, BFINAL);
addBitToStream(bp, out, 0);
addBitToStream(bp, out, 1);
HLIT = (unsigned)(numcodes_ll - 257);
HDIST = (unsigned)(numcodes_d - 1);
HCLEN = (unsigned)bitlen_cl.size - 4;
addBitsToStream(bp, out, HLIT, 5);
addBitsToStream(bp, out, HDIST, 5);
addBitsToStream(bp, out, HCLEN, 4);
for(i = 0; i < HCLEN + 4; i++) addBitsToStream(bp, out, bitlen_cl.data[i], 3);
for(i = 0; i < bitlen_lld_e.size; i++)
{
addHuffmanSymbol(bp, out, HuffmanTree_getCode(&tree_cl, bitlen_lld_e.data[i]),
HuffmanTree_getLength(&tree_cl, bitlen_lld_e.data[i]));
if(bitlen_lld_e.data[i] == 16) addBitsToStream(bp, out, bitlen_lld_e.data[++i], 2);
else if(bitlen_lld_e.data[i] == 17) addBitsToStream(bp, out, bitlen_lld_e.data[++i], 3);
else if(bitlen_lld_e.data[i] == 18) addBitsToStream(bp, out, bitlen_lld_e.data[++i], 7);
}
writeLZ77data(bp, out, &lz77_encoded, &tree_ll, &tree_d);
if(HuffmanTree_getLength(&tree_ll, 256) == 0) ERROR_BREAK(64);
addHuffmanSymbol(bp, out, HuffmanTree_getCode(&tree_ll, 256), HuffmanTree_getLength(&tree_ll, 256));
break;
}
uivector_cleanup(&lz77_encoded);
HuffmanTree_cleanup(&tree_ll);
HuffmanTree_cleanup(&tree_d);
HuffmanTree_cleanup(&tree_cl);
uivector_cleanup(&frequencies_ll);
uivector_cleanup(&frequencies_d);
uivector_cleanup(&frequencies_cl);
uivector_cleanup(&bitlen_lld_e);
uivector_cleanup(&bitlen_lld);
uivector_cleanup(&bitlen_cl);
return error;
}
static unsigned deflateFixed(ucvector* out, size_t* bp, Hash* hash,
const unsigned char* data,
size_t datapos, size_t dataend,
const LodePNGCompressSettings* settings, int final)
{
HuffmanTree tree_ll;
HuffmanTree tree_d;
unsigned BFINAL = final;
unsigned error = 0;
size_t i;
HuffmanTree_init(&tree_ll);
HuffmanTree_init(&tree_d);
generateFixedLitLenTree(&tree_ll);
generateFixedDistanceTree(&tree_d);
addBitToStream(bp, out, BFINAL);
addBitToStream(bp, out, 1);
addBitToStream(bp, out, 0);
if(settings->use_lz77)
{
uivector lz77_encoded;
uivector_init(&lz77_encoded);
error = encodeLZ77(&lz77_encoded, hash, data, datapos, dataend, settings->windowsize);
if(!error) writeLZ77data(bp, out, &lz77_encoded, &tree_ll, &tree_d);
uivector_cleanup(&lz77_encoded);
}
else
{
for(i = datapos; i < dataend; i++)
{
addHuffmanSymbol(bp, out, HuffmanTree_getCode(&tree_ll, data[i]), HuffmanTree_getLength(&tree_ll, data[i]));
}
}
if(!error) addHuffmanSymbol(bp, out, HuffmanTree_getCode(&tree_ll, 256), HuffmanTree_getLength(&tree_ll, 256));
HuffmanTree_cleanup(&tree_ll);
HuffmanTree_cleanup(&tree_d);
return error;
}
static unsigned lodepng_deflatev(ucvector* out, const unsigned char* in, size_t insize,
const LodePNGCompressSettings* settings)
{
#if LODEPNG_CUSTOM_ZLIB_ENCODER == 2
if(settings->custom_encoder)
{
unsigned char** out2 = &out->data;
size_t* outsize = &out->size;
unsigned error = lodepng_custom_deflate(out2, outsize, in, insize, settings);
if(!error) ucvector_init_buffer(out, *out2, *outsize);
return error;
}
else
{
#endif
unsigned error = 0;
size_t i, blocksize, numdeflateblocks;
size_t bp = 0;
Hash hash;
if(settings->btype > 2) return 61;
if(settings->btype == 0) return deflateNoCompression(out, in, insize);
if(settings->btype == 1) blocksize = insize;
else
{
blocksize = insize / 8 + 8;
if(blocksize < 65535) blocksize = 65535;
}
numdeflateblocks = (insize + blocksize - 1) / blocksize;
if(numdeflateblocks == 0) numdeflateblocks = 1;
error = hash_init(&hash, settings->windowsize);
if(error) return error;
for(i = 0; i < numdeflateblocks && !error; i++)
{
int final = i == numdeflateblocks - 1;
size_t start = i * blocksize;
size_t end = start + blocksize;
if(end > insize) end = insize;
if(settings->btype == 1) error = deflateFixed(out, &bp, &hash, in, start, end, settings, final);
else if(settings->btype == 2) error = deflateDynamic(out, &bp, &hash, in, start, end, settings, final);
}
hash_cleanup(&hash);
return error;
#if LODEPNG_CUSTOM_ZLIB_ENCODER == 2
}
#endif
}
unsigned lodepng_deflate(unsigned char** out, size_t* outsize,
const unsigned char* in, size_t insize,
const LodePNGCompressSettings* settings)
{
unsigned error;
ucvector v;
ucvector_init_buffer(&v, *out, *outsize);
error = lodepng_deflatev(&v, in, insize, settings);
*out = v.data;
*outsize = v.size;
return error;
}
#endif
static unsigned update_adler32(unsigned adler, const unsigned char* data, unsigned len)
{
unsigned s1 = adler & 0xffff;
unsigned s2 = (adler >> 16) & 0xffff;
while(len > 0)
{
unsigned amount = len > 5550 ? 5550 : len;
len -= amount;
while(amount > 0)
{
s1 = (s1 + *data++);
s2 = (s2 + s1);
amount--;
}
s1 %= 65521;
s2 %= 65521;
}
return (s2 << 16) | s1;
}
static unsigned adler32(const unsigned char* data, unsigned len)
{
return update_adler32(1L, data, len);
}
#ifdef LODEPNG_COMPILE_DECODER
unsigned lodepng_zlib_decompress(unsigned char** out, size_t* outsize, const unsigned char* in,
size_t insize, const LodePNGDecompressSettings* settings)
{
#if LODEPNG_CUSTOM_ZLIB_DECODER == 1
if(settings->custom_decoder)
{
return lodepng_custom_zlib_decompress(out, outsize, in, insize, settings);
}
else
{
#endif
unsigned error = 0;
unsigned CM, CINFO, FDICT;
if(insize < 2) return 53;
if((in[0] * 256 + in[1]) % 31 != 0)
{
return 24;
}
CM = in[0] & 15;
CINFO = (in[0] >> 4) & 15;
FDICT = (in[1] >> 5) & 1;
if(CM != 8 || CINFO > 7)
{
return 25;
}
if(FDICT != 0)
{
return 26;
}
error = lodepng_inflate(out, outsize, in + 2, insize - 2, settings);
if(error) return error;
if(!settings->ignore_adler32)
{
unsigned ADLER32 = lodepng_read32bitInt(&in[insize - 4]);
unsigned checksum = adler32(*out, (unsigned)(*outsize));
if(checksum != ADLER32) return 58;
}
return 0;
#if LODEPNG_CUSTOM_ZLIB_DECODER == 1
}
#endif
}
#endif
#ifdef LODEPNG_COMPILE_ENCODER
unsigned lodepng_zlib_compress(unsigned char** out, size_t* outsize, const unsigned char* in,
size_t insize, const LodePNGCompressSettings* settings)
{
#if LODEPNG_CUSTOM_ZLIB_ENCODER == 1
if(settings->custom_encoder)
{
return lodepng_custom_zlib_compress(out, outsize, in, insize, settings);
}
else
{
#endif
ucvector deflatedata, outv;
size_t i;
unsigned error;
unsigned ADLER32;
unsigned CMF = 120;
unsigned FLEVEL = 0;
unsigned FDICT = 0;
unsigned CMFFLG = 256 * CMF + FDICT * 32 + FLEVEL * 64;
unsigned FCHECK = 31 - CMFFLG % 31;
CMFFLG += FCHECK;
ucvector_init_buffer(&outv, *out, *outsize);
ucvector_push_back(&outv, (unsigned char)(CMFFLG / 256));
ucvector_push_back(&outv, (unsigned char)(CMFFLG % 256));
ucvector_init(&deflatedata);
error = lodepng_deflatev(&deflatedata, in, insize, settings);
if(!error)
{
ADLER32 = adler32(in, (unsigned)insize);
for(i = 0; i < deflatedata.size; i++) ucvector_push_back(&outv, deflatedata.data[i]);
ucvector_cleanup(&deflatedata);
lodepng_add32bitInt(&outv, ADLER32);
}
*out = outv.data;
*outsize = outv.size;
return error;
#if LODEPNG_CUSTOM_ZLIB_ENCODER == 1
}
#endif
}
#endif
#else
#ifdef LODEPNG_COMPILE_DECODER
static unsigned lodepng_zlib_decompress(unsigned char** out, size_t* outsize, const unsigned char* in,
size_t insize, const LodePNGDecompressSettings* settings)
{
return lodepng_custom_zlib_decompress(out, outsize, in, insize, settings);
}
#endif
#ifdef LODEPNG_COMPILE_ENCODER
static unsigned lodepng_zlib_compress(unsigned char** out, size_t* outsize, const unsigned char* in,
size_t insize, const LodePNGCompressSettings* settings)
{
return lodepng_custom_zlib_compress(out, outsize, in, insize, settings);
}
#endif
#endif
#ifdef LODEPNG_COMPILE_ENCODER
#define DEFAULT_WINDOWSIZE 2048
void lodepng_compress_settings_init(LodePNGCompressSettings* settings)
{
settings->btype = 2;
settings->use_lz77 = 1;
settings->windowsize = DEFAULT_WINDOWSIZE;
#if LODEPNG_CUSTOM_ZLIB_ENCODER == 0
settings->custom_encoder = 0;
#else
settings->custom_encoder = 1;
#endif
}
#if LODEPNG_CUSTOM_ZLIB_ENCODER == 0
const LodePNGCompressSettings lodepng_default_compress_settings = {2, 1, DEFAULT_WINDOWSIZE, 0};
#else
const LodePNGCompressSettings lodepng_default_compress_settings = {2, 1, DEFAULT_WINDOWSIZE, 1};
#endif
#endif
#ifdef LODEPNG_COMPILE_DECODER
void lodepng_decompress_settings_init(LodePNGDecompressSettings* settings)
{
settings->ignore_adler32 = 0;
#if LODEPNG_CUSTOM_ZLIB_DECODER == 0
settings->custom_decoder = 0;
#else
settings->custom_decoder = 1;
#endif
}
#if LODEPNG_CUSTOM_ZLIB_DECODER == 0
const LodePNGDecompressSettings lodepng_default_decompress_settings = {0, 0};
#else
const LodePNGDecompressSettings lodepng_default_decompress_settings = {0, 1};
#endif
#endif
#ifdef LODEPNG_COMPILE_PNG
static unsigned Crc32_crc_table_computed = 0;
static unsigned Crc32_crc_table[256];
static void Crc32_make_crc_table(void)
{
unsigned c, k, n;
for(n = 0; n < 256; n++)
{
c = n;
for(k = 0; k < 8; k++)
{
if(c & 1) c = 0xedb88320L ^ (c >> 1);
else c = c >> 1;
}
Crc32_crc_table[n] = c;
}
Crc32_crc_table_computed = 1;
}
static unsigned Crc32_update_crc(const unsigned char* buf, unsigned crc, size_t len)
{
unsigned c = crc;
size_t n;
if(!Crc32_crc_table_computed) Crc32_make_crc_table();
for(n = 0; n < len; n++)
{
c = Crc32_crc_table[(c ^ buf[n]) & 0xff] ^ (c >> 8);
}
return c;
}
unsigned lodepng_crc32(const unsigned char* buf, size_t len)
{
return Crc32_update_crc(buf, 0xffffffffL, len) ^ 0xffffffffL;
}
static unsigned char readBitFromReversedStream(size_t* bitpointer, const unsigned char* bitstream)
{
unsigned char result = (unsigned char)((bitstream[(*bitpointer) >> 3] >> (7 - ((*bitpointer) & 0x7))) & 1);
(*bitpointer)++;
return result;
}
static unsigned readBitsFromReversedStream(size_t* bitpointer, const unsigned char* bitstream, size_t nbits)
{
unsigned result = 0;
size_t i;
for(i = nbits - 1; i < nbits; i--)
{
result += (unsigned)readBitFromReversedStream(bitpointer, bitstream) << i;
}
return result;
}
#ifdef LODEPNG_COMPILE_DECODER
static void setBitOfReversedStream0(size_t* bitpointer, unsigned char* bitstream, unsigned char bit)
{
if(bit)
{
bitstream[(*bitpointer) >> 3] |= (bit << (7 - ((*bitpointer) & 0x7)));
}
(*bitpointer)++;
}
#endif
static void setBitOfReversedStream(size_t* bitpointer, unsigned char* bitstream, unsigned char bit)
{
if(bit == 0) bitstream[(*bitpointer) >> 3] &= (unsigned char)(~(1 << (7 - ((*bitpointer) & 0x7))));
else bitstream[(*bitpointer) >> 3] |= (1 << (7 - ((*bitpointer) & 0x7)));
(*bitpointer)++;
}
unsigned lodepng_chunk_length(const unsigned char* chunk)
{
return lodepng_read32bitInt(&chunk[0]);
}
void lodepng_chunk_type(char type[5], const unsigned char* chunk)
{
unsigned i;
for(i = 0; i < 4; i++) type[i] = chunk[4 + i];
type[4] = 0;
}
unsigned char lodepng_chunk_type_equals(const unsigned char* chunk, const char* type)
{
if(strlen(type) != 4) return 0;
return (chunk[4] == type[0] && chunk[5] == type[1] && chunk[6] == type[2] && chunk[7] == type[3]);
}
unsigned char lodepng_chunk_ancillary(const unsigned char* chunk)
{
return((chunk[4] & 32) != 0);
}
unsigned char lodepng_chunk_private(const unsigned char* chunk)
{
return((chunk[6] & 32) != 0);
}
unsigned char lodepng_chunk_safetocopy(const unsigned char* chunk)
{
return((chunk[7] & 32) != 0);
}
unsigned char* lodepng_chunk_data(unsigned char* chunk)
{
return &chunk[8];
}
const unsigned char* lodepng_chunk_data_const(const unsigned char* chunk)
{
return &chunk[8];
}
unsigned lodepng_chunk_check_crc(const unsigned char* chunk)
{
unsigned length = lodepng_chunk_length(chunk);
unsigned CRC = lodepng_read32bitInt(&chunk[length + 8]);
unsigned checksum = lodepng_crc32(&chunk[4], length + 4);
if(CRC != checksum) return 1;
else return 0;
}
void lodepng_chunk_generate_crc(unsigned char* chunk)
{
unsigned length = lodepng_chunk_length(chunk);
unsigned CRC = lodepng_crc32(&chunk[4], length + 4);
lodepng_set32bitInt(chunk + 8 + length, CRC);
}
unsigned char* lodepng_chunk_next(unsigned char* chunk)
{
unsigned total_chunk_length = lodepng_chunk_length(chunk) + 12;
return &chunk[total_chunk_length];
}
const unsigned char* lodepng_chunk_next_const(const unsigned char* chunk)
{
unsigned total_chunk_length = lodepng_chunk_length(chunk) + 12;
return &chunk[total_chunk_length];
}
unsigned lodepng_chunk_append(unsigned char** out, size_t* outlength, const unsigned char* chunk)
{
unsigned i;
unsigned total_chunk_length = lodepng_chunk_length(chunk) + 12;
unsigned char *chunk_start, *new_buffer;
size_t new_length = (*outlength) + total_chunk_length;
if(new_length < total_chunk_length || new_length < (*outlength)) return 77;
new_buffer = (unsigned char*)myrealloc(*out, new_length);
if(!new_buffer) return 83;
(*out) = new_buffer;
(*outlength) = new_length;
chunk_start = &(*out)[new_length - total_chunk_length];
for(i = 0; i < total_chunk_length; i++) chunk_start[i] = chunk[i];
return 0;
}
unsigned lodepng_chunk_create(unsigned char** out, size_t* outlength, unsigned length,
const char* type, const unsigned char* data)
{
unsigned i;
unsigned char *chunk, *new_buffer;
size_t new_length = (*outlength) + length + 12;
if(new_length < length + 12 || new_length < (*outlength)) return 77;
new_buffer = (unsigned char*)myrealloc(*out, new_length);
if(!new_buffer) return 83;
(*out) = new_buffer;
(*outlength) = new_length;
chunk = &(*out)[(*outlength) - length - 12];
lodepng_set32bitInt(chunk, (unsigned)length);
chunk[4] = type[0];
chunk[5] = type[1];
chunk[6] = type[2];
chunk[7] = type[3];
for(i = 0; i < length; i++) chunk[8 + i] = data[i];
lodepng_chunk_generate_crc(chunk);
return 0;
}
static unsigned checkColorValidity(LodePNGColorType colortype, unsigned bd)
{
switch(colortype)
{
case 0: if(!(bd == 1 || bd == 2 || bd == 4 || bd == 8 || bd == 16)) return 37; break;
case 2: if(!( bd == 8 || bd == 16)) return 37; break;
case 3: if(!(bd == 1 || bd == 2 || bd == 4 || bd == 8 )) return 37; break;
case 4: if(!( bd == 8 || bd == 16)) return 37; break;
case 6: if(!( bd == 8 || bd == 16)) return 37; break;
default: return 31;
}
return 0;
}
static unsigned getNumColorChannels(LodePNGColorType colortype)
{
switch(colortype)
{
case 0: return 1;
case 2: return 3;
case 3: return 1;
case 4: return 2;
case 6: return 4;
}
return 0;
}
static unsigned lodepng_get_bpp_lct(LodePNGColorType colortype, unsigned bitdepth)
{
return getNumColorChannels(colortype) * bitdepth;
}
void lodepng_color_mode_init(LodePNGColorMode* info)
{
info->key_defined = 0;
info->key_r = info->key_g = info->key_b = 0;
info->colortype = LCT_RGBA;
info->bitdepth = 8;
info->palette = 0;
info->palettesize = 0;
}
void lodepng_color_mode_cleanup(LodePNGColorMode* info)
{
lodepng_palette_clear(info);
}
unsigned lodepng_color_mode_copy(LodePNGColorMode* dest, const LodePNGColorMode* source)
{
size_t i;
lodepng_color_mode_cleanup(dest);
*dest = *source;
if(source->palette)
{
dest->palette = (unsigned char*)mymalloc(source->palettesize * 4);
if(!dest->palette && source->palettesize) return 83;
for(i = 0; i < source->palettesize * 4; i++) dest->palette[i] = source->palette[i];
}
return 0;
}
static int lodepng_color_mode_equal(const LodePNGColorMode* a, const LodePNGColorMode* b)
{
size_t i;
if(a->colortype != b->colortype) return 0;
if(a->bitdepth != b->bitdepth) return 0;
if(a->key_defined != b->key_defined) return 0;
if(a->key_defined)
{
if(a->key_r != b->key_r) return 0;
if(a->key_g != b->key_g) return 0;
if(a->key_b != b->key_b) return 0;
}
if(a->palettesize != b->palettesize) return 0;
for(i = 0; i < a->palettesize * 4; i++)
{
if(a->palette[i] != b->palette[i]) return 0;
}
return 1;
}
void lodepng_palette_clear(LodePNGColorMode* info)
{
if(info->palette) myfree(info->palette);
info->palettesize = 0;
}
unsigned lodepng_palette_add(LodePNGColorMode* info,
unsigned char r, unsigned char g, unsigned char b, unsigned char a)
{
unsigned char* data;
if(!(info->palettesize & (info->palettesize - 1)))
{
size_t alloc_size = info->palettesize == 0 ? 4 : info->palettesize * 4 * 2;
data = (unsigned char*)myrealloc(info->palette, alloc_size);
if(!data) return 83;
else info->palette = data;
}
info->palette[4 * info->palettesize + 0] = r;
info->palette[4 * info->palettesize + 1] = g;
info->palette[4 * info->palettesize + 2] = b;
info->palette[4 * info->palettesize + 3] = a;
info->palettesize++;
return 0;
}
unsigned lodepng_get_bpp(const LodePNGColorMode* info)
{
return lodepng_get_bpp_lct(info->colortype, info->bitdepth);
}
unsigned lodepng_get_channels(const LodePNGColorMode* info)
{
return getNumColorChannels(info->colortype);
}
unsigned lodepng_is_greyscale_type(const LodePNGColorMode* info)
{
return info->colortype == LCT_GREY || info->colortype == LCT_GREY_ALPHA;
}
unsigned lodepng_is_alpha_type(const LodePNGColorMode* info)
{
return (info->colortype & 4) != 0;
}
unsigned lodepng_is_palette_type(const LodePNGColorMode* info)
{
return info->colortype == LCT_PALETTE;
}
unsigned lodepng_has_palette_alpha(const LodePNGColorMode* info)
{
size_t i;
for(i = 0; i < info->palettesize; i++)
{
if(info->palette[i * 4 + 3] < 255) return 1;
}
return 0;
}
unsigned lodepng_can_have_alpha(const LodePNGColorMode* info)
{
return info->key_defined
|| lodepng_is_alpha_type(info)
|| lodepng_has_palette_alpha(info);
}
size_t lodepng_get_raw_size(unsigned w, unsigned h, const LodePNGColorMode* color)
{
return (w * h * lodepng_get_bpp(color) + 7) / 8;
}
size_t lodepng_get_raw_size_lct(unsigned w, unsigned h, LodePNGColorType colortype, unsigned bitdepth)
{
return (w * h * lodepng_get_bpp_lct(colortype, bitdepth) + 7) / 8;
}
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
static void LodePNGUnknownChunks_init(LodePNGInfo* info)
{
unsigned i;
for(i = 0; i < 3; i++) info->unknown_chunks_data[i] = 0;
for(i = 0; i < 3; i++) info->unknown_chunks_size[i] = 0;
}
static void LodePNGUnknownChunks_cleanup(LodePNGInfo* info)
{
unsigned i;
for(i = 0; i < 3; i++) myfree(info->unknown_chunks_data[i]);
}
static unsigned LodePNGUnknownChunks_copy(LodePNGInfo* dest, const LodePNGInfo* src)
{
unsigned i;
LodePNGUnknownChunks_cleanup(dest);
for(i = 0; i < 3; i++)
{
size_t j;
dest->unknown_chunks_size[i] = src->unknown_chunks_size[i];
dest->unknown_chunks_data[i] = (unsigned char*)mymalloc(src->unknown_chunks_size[i]);
if(!dest->unknown_chunks_data[i] && dest->unknown_chunks_size[i]) return 83;
for(j = 0; j < src->unknown_chunks_size[i]; j++)
{
dest->unknown_chunks_data[i][j] = src->unknown_chunks_data[i][j];
}
}
return 0;
}
static void LodePNGText_init(LodePNGInfo* info)
{
info->text_num = 0;
info->text_keys = NULL;
info->text_strings = NULL;
}
static void LodePNGText_cleanup(LodePNGInfo* info)
{
size_t i;
for(i = 0; i < info->text_num; i++)
{
string_cleanup(&info->text_keys[i]);
string_cleanup(&info->text_strings[i]);
}
myfree(info->text_keys);
myfree(info->text_strings);
}
static unsigned LodePNGText_copy(LodePNGInfo* dest, const LodePNGInfo* source)
{
size_t i = 0;
dest->text_keys = 0;
dest->text_strings = 0;
dest->text_num = 0;
for(i = 0; i < source->text_num; i++)
{
CERROR_TRY_RETURN(lodepng_add_text(dest, source->text_keys[i], source->text_strings[i]));
}
return 0;
}
void lodepng_clear_text(LodePNGInfo* info)
{
LodePNGText_cleanup(info);
}
unsigned lodepng_add_text(LodePNGInfo* info, const char* key, const char* str)
{
char** new_keys = (char**)(myrealloc(info->text_keys, sizeof(char*) * (info->text_num + 1)));
char** new_strings = (char**)(myrealloc(info->text_strings, sizeof(char*) * (info->text_num + 1)));
if(!new_keys || !new_strings)
{
myfree(new_keys);
myfree(new_strings);
return 83;
}
info->text_num++;
info->text_keys = new_keys;
info->text_strings = new_strings;
string_init(&info->text_keys[info->text_num - 1]);
string_set(&info->text_keys[info->text_num - 1], key);
string_init(&info->text_strings[info->text_num - 1]);
string_set(&info->text_strings[info->text_num - 1], str);
return 0;
}
static void LodePNGIText_init(LodePNGInfo* info)
{
info->itext_num = 0;
info->itext_keys = NULL;
info->itext_langtags = NULL;
info->itext_transkeys = NULL;
info->itext_strings = NULL;
}
static void LodePNGIText_cleanup(LodePNGInfo* info)
{
size_t i;
for(i = 0; i < info->itext_num; i++)
{
string_cleanup(&info->itext_keys[i]);
string_cleanup(&info->itext_langtags[i]);
string_cleanup(&info->itext_transkeys[i]);
string_cleanup(&info->itext_strings[i]);
}
myfree(info->itext_keys);
myfree(info->itext_langtags);
myfree(info->itext_transkeys);
myfree(info->itext_strings);
}
static unsigned LodePNGIText_copy(LodePNGInfo* dest, const LodePNGInfo* source)
{
size_t i = 0;
dest->itext_keys = 0;
dest->itext_langtags = 0;
dest->itext_transkeys = 0;
dest->itext_strings = 0;
dest->itext_num = 0;
for(i = 0; i < source->itext_num; i++)
{
CERROR_TRY_RETURN(lodepng_add_itext(dest, source->itext_keys[i], source->itext_langtags[i],
source->itext_transkeys[i], source->itext_strings[i]));
}
return 0;
}
void lodepng_clear_itext(LodePNGInfo* info)
{
LodePNGIText_cleanup(info);
}
unsigned lodepng_add_itext(LodePNGInfo* info, const char* key, const char* langtag,
const char* transkey, const char* str)
{
char** new_keys = (char**)(myrealloc(info->itext_keys, sizeof(char*) * (info->itext_num + 1)));
char** new_langtags = (char**)(myrealloc(info->itext_langtags, sizeof(char*) * (info->itext_num + 1)));
char** new_transkeys = (char**)(myrealloc(info->itext_transkeys, sizeof(char*) * (info->itext_num + 1)));
char** new_strings = (char**)(myrealloc(info->itext_strings, sizeof(char*) * (info->itext_num + 1)));
if(!new_keys || !new_langtags || !new_transkeys || !new_strings)
{
myfree(new_keys);
myfree(new_langtags);
myfree(new_transkeys);
myfree(new_strings);
return 83;
}
info->itext_num++;
info->itext_keys = new_keys;
info->itext_langtags = new_langtags;
info->itext_transkeys = new_transkeys;
info->itext_strings = new_strings;
string_init(&info->itext_keys[info->itext_num - 1]);
string_set(&info->itext_keys[info->itext_num - 1], key);
string_init(&info->itext_langtags[info->itext_num - 1]);
string_set(&info->itext_langtags[info->itext_num - 1], langtag);
string_init(&info->itext_transkeys[info->itext_num - 1]);
string_set(&info->itext_transkeys[info->itext_num - 1], transkey);
string_init(&info->itext_strings[info->itext_num - 1]);
string_set(&info->itext_strings[info->itext_num - 1], str);
return 0;
}
#endif
void lodepng_info_init(LodePNGInfo* info)
{
lodepng_color_mode_init(&info->color);
info->interlace_method = 0;
info->compression_method = 0;
info->filter_method = 0;
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
info->background_defined = 0;
info->background_r = info->background_g = info->background_b = 0;
LodePNGText_init(info);
LodePNGIText_init(info);
info->time_defined = 0;
info->phys_defined = 0;
LodePNGUnknownChunks_init(info);
#endif
}
void lodepng_info_cleanup(LodePNGInfo* info)
{
lodepng_color_mode_cleanup(&info->color);
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
LodePNGText_cleanup(info);
LodePNGIText_cleanup(info);
LodePNGUnknownChunks_cleanup(info);
#endif
}
unsigned lodepng_info_copy(LodePNGInfo* dest, const LodePNGInfo* source)
{
lodepng_info_cleanup(dest);
*dest = *source;
lodepng_color_mode_init(&dest->color);
CERROR_TRY_RETURN(lodepng_color_mode_copy(&dest->color, &source->color));
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
CERROR_TRY_RETURN(LodePNGText_copy(dest, source));
CERROR_TRY_RETURN(LodePNGIText_copy(dest, source));
LodePNGUnknownChunks_init(dest);
CERROR_TRY_RETURN(LodePNGUnknownChunks_copy(dest, source));
#endif
return 0;
}
void lodepng_info_swap(LodePNGInfo* a, LodePNGInfo* b)
{
LodePNGInfo temp = *a;
*a = *b;
*b = temp;
}
static void addColorBits(unsigned char* out, size_t index, unsigned bits, unsigned in)
{
unsigned p = index % (8 / bits);
in &= (1 << bits) - 1;
in = in << (bits * (8 / bits - p - 1));
if(p == 0) out[index * bits / 8] = in;
else out[index * bits / 8] |= in;
}
typedef struct ColorTree ColorTree;
struct ColorTree
{
ColorTree* next;
int index;
};
static void color_tree_make_next(ColorTree* tree);
static void color_tree_init(ColorTree* tree, int next)
{
if(next) color_tree_make_next(tree);
else tree->next = 0;
tree->index = -1;
}
static void color_tree_make_next(ColorTree* tree)
{
int i;
tree->next = (ColorTree*)mymalloc(256 * sizeof(ColorTree));
for(i = 0; i < 256; i++) color_tree_init(&tree->next[i], 0);
}
static void color_tree_cleanup(ColorTree* tree)
{
if(tree->next)
{
int i;
for(i = 0; i < 256; i++) color_tree_cleanup(&tree->next[i]);
myfree(tree->next);
}
}
static int color_tree_get(ColorTree* tree, unsigned char r, unsigned char g, unsigned char b, unsigned char a)
{
tree = &tree->next[r];
if(tree->next == 0) return -1;
tree = &tree->next[g];
if(tree->next == 0) return -1;
tree = &tree->next[b];
if(tree->next == 0) return -1;
tree = &tree->next[a];
return tree->index;
}
#ifdef LODEPNG_COMPILE_ENCODER
static int color_tree_has(ColorTree* tree, unsigned char r, unsigned char g, unsigned char b, unsigned char a)
{
return color_tree_get(tree, r, g, b, a) >= 0;
}
#endif
static void color_tree_add(ColorTree* tree, unsigned char r, unsigned char g, unsigned char b, unsigned char a, int index)
{
tree = &tree->next[r];
if(tree->next == 0) color_tree_make_next(tree);
tree = &tree->next[g];
if(tree->next == 0) color_tree_make_next(tree);
tree = &tree->next[b];
if(tree->next == 0) color_tree_make_next(tree);
tree = &tree->next[a];
tree->index = index;
}
static unsigned rgba8ToPixel(unsigned char* out, size_t i,
const LodePNGColorMode* mode, ColorTree* tree ,
unsigned char r, unsigned char g, unsigned char b, unsigned char a)
{
if(mode->colortype == LCT_GREY)
{
unsigned char grey = r; ;
if(mode->bitdepth == 8) out[i] = grey;
else if(mode->bitdepth == 16) out[i * 2 + 0] = out[i * 2 + 1] = grey;
else
{
grey = (grey >> (8 - mode->bitdepth)) & ((1 << mode->bitdepth) - 1);
addColorBits(out, i, mode->bitdepth, grey);
}
}
else if(mode->colortype == LCT_RGB)
{
if(mode->bitdepth == 8)
{
out[i * 3 + 0] = r;
out[i * 3 + 1] = g;
out[i * 3 + 2] = b;
}
else
{
out[i * 6 + 0] = out[i * 6 + 1] = r;
out[i * 6 + 2] = out[i * 6 + 3] = g;
out[i * 6 + 4] = out[i * 6 + 5] = b;
}
}
else if(mode->colortype == LCT_PALETTE)
{
int index = color_tree_get(tree, r, g, b, a);
if(index < 0) return 82;
if(mode->bitdepth == 8) out[i] = index;
else addColorBits(out, i, mode->bitdepth, index);
}
else if(mode->colortype == LCT_GREY_ALPHA)
{
unsigned char grey = r; ;
if(mode->bitdepth == 8)
{
out[i * 2 + 0] = grey;
out[i * 2 + 1] = a;
}
else if(mode->bitdepth == 16)
{
out[i * 4 + 0] = out[i * 4 + 1] = grey;
out[i * 4 + 2] = out[i * 4 + 3] = a;
}
}
else if(mode->colortype == LCT_RGBA)
{
if(mode->bitdepth == 8)
{
out[i * 4 + 0] = r;
out[i * 4 + 1] = g;
out[i * 4 + 2] = b;
out[i * 4 + 3] = a;
}
else
{
out[i * 8 + 0] = out[i * 8 + 1] = r;
out[i * 8 + 2] = out[i * 8 + 3] = g;
out[i * 8 + 4] = out[i * 8 + 5] = b;
out[i * 8 + 6] = out[i * 8 + 7] = a;
}
}
return 0;
}
static unsigned rgba16ToPixel(unsigned char* out, size_t i,
const LodePNGColorMode* mode,
unsigned short r, unsigned short g, unsigned short b, unsigned short a)
{
if(mode->bitdepth != 16) return 85;
if(mode->colortype == LCT_GREY)
{
unsigned short grey = r; ;
out[i * 2 + 0] = (grey >> 8) & 255;
out[i * 2 + 1] = grey & 255;
}
else if(mode->colortype == LCT_RGB)
{
out[i * 6 + 0] = (r >> 8) & 255;
out[i * 6 + 1] = r & 255;
out[i * 6 + 2] = (g >> 8) & 255;
out[i * 6 + 3] = g & 255;
out[i * 6 + 4] = (b >> 8) & 255;
out[i * 6 + 5] = b & 255;
}
else if(mode->colortype == LCT_GREY_ALPHA)
{
unsigned short grey = r; ;
out[i * 4 + 0] = (grey >> 8) & 255;
out[i * 4 + 1] = grey & 255;
out[i * 4 + 2] = (a >> 8) & 255;
out[i * 4 + 3] = a & 255;
}
else if(mode->colortype == LCT_RGBA)
{
out[i * 8 + 0] = (r >> 8) & 255;
out[i * 8 + 1] = r & 255;
out[i * 8 + 2] = (g >> 8) & 255;
out[i * 8 + 3] = g & 255;
out[i * 8 + 4] = (b >> 8) & 255;
out[i * 8 + 5] = b & 255;
out[i * 8 + 6] = (a >> 8) & 255;
out[i * 8 + 7] = a & 255;
}
return 0;
}
static unsigned getPixelColorRGBA8(unsigned char* r, unsigned char* g, unsigned char* b, unsigned char* a,
const unsigned char* in, size_t i, const LodePNGColorMode* mode)
{
if(mode->colortype == LCT_GREY)
{
if(mode->bitdepth == 8)
{
*r = *g = *b = in[i];
if(mode->key_defined && *r == mode->key_r) *a = 0;
else *a = 255;
}
else if(mode->bitdepth == 16)
{
*r = *g = *b = in[i * 2 + 0];
if(mode->key_defined && 256U * in[i * 2 + 0] + in[i * 2 + 1] == mode->key_r) *a = 0;
else *a = 255;
}
else
{
unsigned highest = ((1U << mode->bitdepth) - 1U);
size_t j = i * mode->bitdepth;
unsigned value = readBitsFromReversedStream(&j, in, mode->bitdepth);
*r = *g = *b = (value * 255) / highest;
if(mode->key_defined && value == mode->key_r) *a = 0;
else *a = 255;
}
}
else if(mode->colortype == LCT_RGB)
{
if(mode->bitdepth == 8)
{
*r = in[i * 3 + 0]; *g = in[i * 3 + 1]; *b = in[i * 3 + 2];
if(mode->key_defined && *r == mode->key_r && *g == mode->key_g && *b == mode->key_b) *a = 0;
else *a = 255;
}
else
{
*r = in[i * 6 + 0];
*g = in[i * 6 + 2];
*b = in[i * 6 + 4];
if(mode->key_defined && 256U * in[i * 6 + 0] + in[i * 6 + 1] == mode->key_r
&& 256U * in[i * 6 + 2] + in[i * 6 + 3] == mode->key_g
&& 256U * in[i * 6 + 4] + in[i * 6 + 5] == mode->key_b) *a = 0;
else *a = 255;
}
}
else if(mode->colortype == LCT_PALETTE)
{
unsigned index;
if(mode->bitdepth == 8) index = in[i];
else
{
size_t j = i * mode->bitdepth;
index = readBitsFromReversedStream(&j, in, mode->bitdepth);
}
if(index >= mode->palettesize) return 47;
*r = mode->palette[index * 4 + 0];
*g = mode->palette[index * 4 + 1];
*b = mode->palette[index * 4 + 2];
*a = mode->palette[index * 4 + 3];
}
else if(mode->colortype == LCT_GREY_ALPHA)
{
if(mode->bitdepth == 8)
{
*r = *g = *b = in[i * 2 + 0];
*a = in[i * 2 + 1];
}
else
{
*r = *g = *b = in[i * 4 + 0];
*a = in[i * 4 + 2];
}
}
else if(mode->colortype == LCT_RGBA)
{
if(mode->bitdepth == 8)
{
*r = in[i * 4 + 0]; *g = in[i * 4 + 1]; *b = in[i * 4 + 2]; *a = in[i * 4 + 3];
}
else
{
*r = in[i * 8 + 0]; *g = in[i * 8 + 2]; *b = in[i * 8 + 4]; *a = in[i * 8 + 6];
}
}
return 0;
}
static unsigned getPixelColorRGBA16(unsigned short* r, unsigned short* g, unsigned short* b, unsigned short* a,
const unsigned char* in, size_t i, const LodePNGColorMode* mode)
{
if(mode->bitdepth != 16) return 85;
if(mode->colortype == LCT_GREY)
{
*r = *g = *b = 256 * in[i * 2 + 0] + in[i * 2 + 1];
if(mode->key_defined && 256U * in[i * 2 + 0] + in[i * 2 + 1] == mode->key_r) *a = 0;
else *a = 65535;
}
else if(mode->colortype == LCT_RGB)
{
*r = 256 * in[i * 6 + 0] + in[i * 6 + 1];
*g = 256 * in[i * 6 + 2] + in[i * 6 + 3];
*b = 256 * in[i * 6 + 4] + in[i * 6 + 5];
if(mode->key_defined && 256U * in[i * 6 + 0] + in[i * 6 + 1] == mode->key_r
&& 256U * in[i * 6 + 2] + in[i * 6 + 3] == mode->key_g
&& 256U * in[i * 6 + 4] + in[i * 6 + 5] == mode->key_b) *a = 0;
else *a = 65535;
}
else if(mode->colortype == LCT_GREY_ALPHA)
{
*r = *g = *b = 256 * in[i * 4 + 0] + in[i * 4 + 1];
*a = 256 * in[i * 4 + 2] + in[i * 4 + 3];
}
else if(mode->colortype == LCT_RGBA)
{
*r = 256 * in[i * 8 + 0] + in[i * 8 + 1];
*g = 256 * in[i * 8 + 2] + in[i * 8 + 3];
*b = 256 * in[i * 8 + 4] + in[i * 8 + 5];
*a = 256 * in[i * 8 + 6] + in[i * 8 + 7];
}
else return 85;
return 0;
}
unsigned lodepng_convert(unsigned char* out, const unsigned char* in,
LodePNGColorMode* mode_out, LodePNGColorMode* mode_in,
unsigned w, unsigned h)
{
unsigned error = 0;
size_t i;
ColorTree tree;
if(lodepng_color_mode_equal(mode_out, mode_in))
{
size_t numbytes = lodepng_get_raw_size(w, h, mode_in);
for(i = 0; i < numbytes; i++) out[i] = in[i];
return error;
}
if(mode_out->colortype == LCT_PALETTE)
{
size_t palsize = 1 << mode_out->bitdepth;
if(mode_out->palettesize < palsize) palsize = mode_out->palettesize;
color_tree_init(&tree, 1);
for(i = 0; i < palsize; i++)
{
unsigned char* p = &mode_out->palette[i * 4];
color_tree_add(&tree, p[0], p[1], p[2], p[3], i);
}
}
if(mode_in->bitdepth == 16 && mode_out->bitdepth == 16)
{
size_t numpixels = w * h;
for(i = 0; i < numpixels; i++)
{
unsigned short r = 0, g = 0, b = 0, a = 0;
error = getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode_in);
if(error) return error;
error = rgba16ToPixel(out, i, mode_out, r, g, b, a);
if(error) return error;
}
}
else
{
size_t numpixels = w * h;
for(i = 0; i < numpixels; i++)
{
unsigned char r = 0, g = 0, b = 0, a = 0;
error = getPixelColorRGBA8(&r, &g, &b, &a, in, i, mode_in);
if(error) return error;
error = rgba8ToPixel(out, i, mode_out, &tree, r, g, b, a);
if(error) return error;
}
}
if(mode_out->colortype == LCT_PALETTE)
{
color_tree_cleanup(&tree);
}
return error;
}
#ifdef LODEPNG_COMPILE_ENCODER
typedef struct ColorProfile
{
unsigned char sixteenbit;
unsigned char sixteenbit_done;
unsigned char colored;
unsigned char colored_done;
unsigned char key;
unsigned short key_r;
unsigned short key_g;
unsigned short key_b;
unsigned char alpha;
unsigned char alpha_done;
unsigned numcolors;
ColorTree tree;
unsigned char* palette;
unsigned maxnumcolors;
unsigned char numcolors_done;
unsigned greybits;
unsigned char greybits_done;
} ColorProfile;
static void color_profile_init(ColorProfile* profile, LodePNGColorMode* mode)
{
profile->sixteenbit = 0;
profile->sixteenbit_done = mode->bitdepth == 16 ? 0 : 1;
profile->colored = 0;
profile->colored_done = lodepng_is_greyscale_type(mode) ? 1 : 0;
profile->key = 0;
profile->alpha = 0;
profile->alpha_done = lodepng_can_have_alpha(mode) ? 0 : 1;
profile->numcolors = 0;
color_tree_init(&profile->tree, 1);
profile->palette = (unsigned char*)mymalloc(1024);
profile->maxnumcolors = 257;
if(lodepng_get_bpp(mode) <= 8)
{
int bpp = lodepng_get_bpp(mode);
profile->maxnumcolors = bpp == 1 ? 2 : (bpp == 2 ? 4 : (bpp == 4 ? 16 : 256));
}
profile->numcolors_done = 0;
profile->greybits = 1;
profile->greybits_done = lodepng_get_bpp(mode) == 1 ? 1 : 0;
}
static void color_profile_cleanup(ColorProfile* profile)
{
color_tree_cleanup(&profile->tree);
myfree(profile->palette);
}
unsigned getValueRequiredBits(unsigned char value)
{
if(value == 0 || value == 255) return 1;
if(value % 17 == 0) return value % 85 == 0 ? 2 : 4;
return 8;
}
static unsigned get_color_profile(ColorProfile* profile,
const unsigned char* in, size_t numpixels,
LodePNGColorMode* mode)
{
unsigned error = 0;
size_t i;
if(mode->bitdepth == 16)
{
for(i = 0; i < numpixels; i++)
{
unsigned short r, g, b, a;
error = getPixelColorRGBA16(&r, &g, &b, &a, in, i, mode);
if(error) break;
if(!profile->sixteenbit_done
&& (((r & 255) != ((r >> 8) & 255))
|| ((g & 255) != ((g >> 8) & 255))
|| ((b & 255) != ((b >> 8) & 255))))
{
profile->sixteenbit = 1;
profile->sixteenbit_done = 1;
profile->greybits_done = 1;
profile->numcolors_done = 1;
}
if(!profile->colored_done && (r != g || r != b))
{
profile->colored = 1;
profile->colored_done = 1;
profile->greybits_done = 1;
}
if(!profile->alpha_done && a != 255)
{
if(a == 0 && !(profile->key && (r != profile->key_r || g != profile->key_g || b != profile->key_b)))
{
if(!profile->key)
{
profile->key = 1;
profile->key_r = r;
profile->key_g = g;
profile->key_b = b;
}
}
else
{
profile->alpha = 1;
profile->alpha_done = 1;
profile->greybits_done = 1;
}
}
if(!profile->greybits_done)
{
unsigned bits = getValueRequiredBits(r);
if(bits > profile->greybits) profile->greybits = bits;
if(profile->greybits >= 8) profile->greybits_done = 1;
}
if(!profile->numcolors_done)
{
if(!color_tree_has(&profile->tree, r, g, b, a))
{
color_tree_add(&profile->tree, r, g, b, a, profile->numcolors);
if(profile->numcolors < 256)
{
unsigned char* p = profile->palette;
unsigned i = profile->numcolors;
p[i * 4 + 0] = r;
p[i * 4 + 1] = g;
p[i * 4 + 2] = b;
p[i * 4 + 3] = a;
}
profile->numcolors++;
if(profile->numcolors >= profile->maxnumcolors) profile->numcolors_done = 1;
}
}
if(profile->alpha_done && profile->numcolors_done
&& profile->colored_done && profile->sixteenbit_done && profile->greybits_done)
{
break;
}
};
}
else
{
for(i = 0; i < numpixels; i++)
{
unsigned char r, g, b, a;
error = getPixelColorRGBA8(&r, &g, &b, &a, in, i, mode);
if(error) break;
if(!profile->colored_done && (r != g || r != b))
{
profile->colored = 1;
profile->colored_done = 1;
profile->greybits_done = 1;
}
if(!profile->alpha_done && a != 255)
{
if(a == 0 && !(profile->key && (r != profile->key_r || g != profile->key_g || b != profile->key_b)))
{
if(!profile->key)
{
profile->key = 1;
profile->key_r = r;
profile->key_g = g;
profile->key_b = b;
}
}
else
{
profile->alpha = 1;
profile->alpha_done = 1;
profile->greybits_done = 1;
}
}
if(!profile->greybits_done)
{
unsigned bits = getValueRequiredBits(r);
if(bits > profile->greybits) profile->greybits = bits;
if(profile->greybits >= 8) profile->greybits_done = 1;
}
if(!profile->numcolors_done)
{
if(!color_tree_has(&profile->tree, r, g, b, a))
{
color_tree_add(&profile->tree, r, g, b, a, profile->numcolors);
if(profile->numcolors < 256)
{
unsigned char* p = profile->palette;
unsigned i = profile->numcolors;
p[i * 4 + 0] = r;
p[i * 4 + 1] = g;
p[i * 4 + 2] = b;
p[i * 4 + 3] = a;
}
profile->numcolors++;
if(profile->numcolors >= profile->maxnumcolors) profile->numcolors_done = 1;
}
}
if(profile->alpha_done && profile->numcolors_done && profile->colored_done && profile->greybits_done)
{
break;
}
};
}
if(mode->bitdepth < 16)
{
profile->key_r *= 257;
profile->key_g *= 257;
profile->key_b *= 257;
}
return error;
}
static unsigned doAutoChooseColor(LodePNGColorMode* mode_out,
const unsigned char* image, unsigned w, unsigned h, LodePNGColorMode* mode_in,
LodePNGAutoConvert auto_convert)
{
ColorProfile profile;
unsigned error = 0;
if(auto_convert == LAC_ALPHA)
{
if(mode_out->colortype != LCT_RGBA && mode_out->colortype != LCT_GREY_ALPHA) return 0;
}
color_profile_init(&profile, mode_in);
if(auto_convert == LAC_ALPHA)
{
profile.colored_done = 1;
profile.greybits_done = 1;
profile.numcolors_done = 1;
profile.sixteenbit_done = 1;
}
error = get_color_profile(&profile, image, w * h, mode_in);
if(!error && auto_convert == LAC_ALPHA)
{
if(!profile.alpha)
{
mode_out->colortype = (mode_out->colortype == LCT_RGBA ? LCT_RGB : LCT_GREY);
}
}
else if(!error && auto_convert != LAC_ALPHA)
{
mode_out->key_defined = 0;
if(profile.sixteenbit)
{
mode_out->bitdepth = 16;
if(profile.alpha)
{
mode_out->colortype = profile.colored ? LCT_RGBA : LCT_GREY_ALPHA;
}
else
{
mode_out->colortype = profile.colored ? LCT_RGB : LCT_GREY;
if(profile.key)
{
mode_out->key_defined = 1;
mode_out->key_r = profile.key_r;
mode_out->key_g = profile.key_g;
mode_out->key_b = profile.key_b;
}
}
}
else
{
unsigned n = profile.numcolors;
int palette_ok = n <= 256 && (n * 2 < w * h);
unsigned palettebits = n <= 2 ? 1 : (n <= 4 ? 2 : (n <= 16 ? 4 : 8));
int grey_ok = !profile.colored && !profile.alpha;
if(palette_ok || grey_ok)
{
if(!palette_ok || (grey_ok && profile.greybits <= palettebits))
{
mode_out->colortype = LCT_GREY;
mode_out->bitdepth = profile.greybits;
if(profile.key)
{
unsigned keyval = profile.key_r;
keyval &= (profile.greybits - 1);
mode_out->key_defined = 1;
mode_out->key_r = keyval;
mode_out->key_g = keyval;
mode_out->key_b = keyval;
}
}
else
{
unsigned i;
unsigned char* p = profile.palette;
for(i = 0; i < profile.numcolors; i++)
{
error = lodepng_palette_add(mode_out, p[i * 4 + 0], p[i * 4 + 1], p[i * 4 + 2], p[i * 4 + 3]);
if(error) break;
}
mode_out->colortype = LCT_PALETTE;
mode_out->bitdepth = palettebits;
}
}
else
{
mode_out->bitdepth = 8;
if(profile.alpha)
{
mode_out->colortype = profile.colored ? LCT_RGBA : LCT_GREY_ALPHA;
}
else
{
mode_out->colortype = profile.colored ? LCT_RGB : LCT_GREY ;
if(profile.key)
{
mode_out->key_defined = 1;
mode_out->key_r = profile.key_r % 256;
mode_out->key_g = profile.key_g % 256;
mode_out->key_b = profile.key_b % 256;
}
}
}
}
}
color_profile_cleanup(&profile);
if(mode_out->colortype == LCT_PALETTE && mode_in->palettesize == mode_out->palettesize)
{
size_t i;
for(i = 0; i < mode_in->palettesize * 4; i++)
{
mode_out->palette[i] = mode_in->palette[i];
}
}
if(auto_convert == LAC_AUTO_NO_NIBBLES && mode_out->bitdepth < 8)
{
mode_out->bitdepth = 8;
}
return error;
}
#endif
static unsigned char paethPredictor(short a, short b, short c)
{
short pa = abs(b - c);
short pb = abs(a - c);
short pc = abs(a + b - c - c);
if(pc < pa && pc < pb) return (unsigned char)c;
else if(pb < pa) return (unsigned char)b;
else return (unsigned char)a;
}
static const unsigned ADAM7_IX[7] = { 0, 4, 0, 2, 0, 1, 0 };
static const unsigned ADAM7_IY[7] = { 0, 0, 4, 0, 2, 0, 1 };
static const unsigned ADAM7_DX[7] = { 8, 8, 4, 4, 2, 2, 1 };
static const unsigned ADAM7_DY[7] = { 8, 8, 8, 4, 4, 2, 2 };
static void Adam7_getpassvalues(unsigned passw[7], unsigned passh[7], size_t filter_passstart[8],
size_t padded_passstart[8], size_t passstart[8], unsigned w, unsigned h, unsigned bpp)
{
unsigned i;
for(i = 0; i < 7; i++)
{
passw[i] = (w + ADAM7_DX[i] - ADAM7_IX[i] - 1) / ADAM7_DX[i];
passh[i] = (h + ADAM7_DY[i] - ADAM7_IY[i] - 1) / ADAM7_DY[i];
if(passw[i] == 0) passh[i] = 0;
if(passh[i] == 0) passw[i] = 0;
}
filter_passstart[0] = padded_passstart[0] = passstart[0] = 0;
for(i = 0; i < 7; i++)
{
filter_passstart[i + 1] = filter_passstart[i]
+ ((passw[i] && passh[i]) ? passh[i] * (1 + (passw[i] * bpp + 7) / 8) : 0);
padded_passstart[i + 1] = padded_passstart[i] + passh[i] * ((passw[i] * bpp + 7) / 8);
passstart[i + 1] = passstart[i] + (passh[i] * passw[i] * bpp + 7) / 8;
}
}
#ifdef LODEPNG_COMPILE_DECODER
unsigned lodepng_inspect(unsigned* w, unsigned* h, LodePNGState* state,
const unsigned char* in, size_t insize)
{
LodePNGInfo* info = &state->info_png;
if(insize == 0 || in == 0)
{
CERROR_RETURN_ERROR(state->error, 48);
}
if(insize < 29)
{
CERROR_RETURN_ERROR(state->error, 27);
}
lodepng_info_cleanup(info);
lodepng_info_init(info);
if(in[0] != 137 || in[1] != 80 || in[2] != 78 || in[3] != 71
|| in[4] != 13 || in[5] != 10 || in[6] != 26 || in[7] != 10)
{
CERROR_RETURN_ERROR(state->error, 28);
}
if(in[12] != 'I' || in[13] != 'H' || in[14] != 'D' || in[15] != 'R')
{
CERROR_RETURN_ERROR(state->error, 29);
}
*w = lodepng_read32bitInt(&in[16]);
*h = lodepng_read32bitInt(&in[20]);
info->color.bitdepth = in[24];
info->color.colortype = (LodePNGColorType)in[25];
info->compression_method = in[26];
info->filter_method = in[27];
info->interlace_method = in[28];
if(!state->decoder.ignore_crc)
{
unsigned CRC = lodepng_read32bitInt(&in[29]);
unsigned checksum = lodepng_crc32(&in[12], 17);
if(CRC != checksum)
{
CERROR_RETURN_ERROR(state->error, 57);
}
}
if(info->compression_method != 0) CERROR_RETURN_ERROR(state->error, 32);
if(info->filter_method != 0) CERROR_RETURN_ERROR(state->error, 33);
if(info->interlace_method > 1) CERROR_RETURN_ERROR(state->error, 34);
state->error = checkColorValidity(info->color.colortype, info->color.bitdepth);
return state->error;
}
static unsigned unfilterScanline(unsigned char* recon, const unsigned char* scanline, const unsigned char* precon,
size_t bytewidth, unsigned char filterType, size_t length)
{
size_t i;
switch(filterType)
{
case 0:
for(i = 0; i < length; i++) recon[i] = scanline[i];
break;
case 1:
for(i = 0; i < bytewidth; i++) recon[i] = scanline[i];
for(i = bytewidth; i < length; i++) recon[i] = scanline[i] + recon[i - bytewidth];
break;
case 2:
if(precon)
{
for(i = 0; i < length; i++) recon[i] = scanline[i] + precon[i];
}
else
{
for(i = 0; i < length; i++) recon[i] = scanline[i];
}
break;
case 3:
if(precon)
{
for(i = 0; i < bytewidth; i++) recon[i] = scanline[i] + precon[i] / 2;
for(i = bytewidth; i < length; i++) recon[i] = scanline[i] + ((recon[i - bytewidth] + precon[i]) / 2);
}
else
{
for(i = 0; i < bytewidth; i++) recon[i] = scanline[i];
for(i = bytewidth; i < length; i++) recon[i] = scanline[i] + recon[i - bytewidth] / 2;
}
break;
case 4:
if(precon)
{
for(i = 0; i < bytewidth; i++)
{
recon[i] = (scanline[i] + precon[i]);
}
for(i = bytewidth; i < length; i++)
{
recon[i] = (scanline[i] + paethPredictor(recon[i - bytewidth], precon[i], precon[i - bytewidth]));
}
}
else
{
for(i = 0; i < bytewidth; i++)
{
recon[i] = scanline[i];
}
for(i = bytewidth; i < length; i++)
{
recon[i] = (scanline[i] + recon[i - bytewidth]);
}
}
break;
default: return 36;
}
return 0;
}
static unsigned unfilter(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp)
{
unsigned y;
unsigned char* prevline = 0;
size_t bytewidth = (bpp + 7) / 8;
size_t linebytes = (w * bpp + 7) / 8;
for(y = 0; y < h; y++)
{
size_t outindex = linebytes * y;
size_t inindex = (1 + linebytes) * y;
unsigned char filterType = in[inindex];
CERROR_TRY_RETURN(unfilterScanline(&out[outindex], &in[inindex + 1], prevline, bytewidth, filterType, linebytes));
prevline = &out[outindex];
}
return 0;
}
static void Adam7_deinterlace(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp)
{
unsigned passw[7], passh[7];
size_t filter_passstart[8], padded_passstart[8], passstart[8];
unsigned i;
Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp);
if(bpp >= 8)
{
for(i = 0; i < 7; i++)
{
unsigned x, y, b;
size_t bytewidth = bpp / 8;
for(y = 0; y < passh[i]; y++)
for(x = 0; x < passw[i]; x++)
{
size_t pixelinstart = passstart[i] + (y * passw[i] + x) * bytewidth;
size_t pixeloutstart = ((ADAM7_IY[i] + y * ADAM7_DY[i]) * w + ADAM7_IX[i] + x * ADAM7_DX[i]) * bytewidth;
for(b = 0; b < bytewidth; b++)
{
out[pixeloutstart + b] = in[pixelinstart + b];
}
}
}
}
else
{
for(i = 0; i < 7; i++)
{
unsigned x, y, b;
unsigned ilinebits = bpp * passw[i];
unsigned olinebits = bpp * w;
size_t obp, ibp;
for(y = 0; y < passh[i]; y++)
for(x = 0; x < passw[i]; x++)
{
ibp = (8 * passstart[i]) + (y * ilinebits + x * bpp);
obp = (ADAM7_IY[i] + y * ADAM7_DY[i]) * olinebits + (ADAM7_IX[i] + x * ADAM7_DX[i]) * bpp;
for(b = 0; b < bpp; b++)
{
unsigned char bit = readBitFromReversedStream(&ibp, in);
setBitOfReversedStream0(&obp, out, bit);
}
}
}
}
}
static void removePaddingBits(unsigned char* out, const unsigned char* in,
size_t olinebits, size_t ilinebits, unsigned h)
{
unsigned y;
size_t diff = ilinebits - olinebits;
size_t ibp = 0, obp = 0;
for(y = 0; y < h; y++)
{
size_t x;
for(x = 0; x < olinebits; x++)
{
unsigned char bit = readBitFromReversedStream(&ibp, in);
setBitOfReversedStream(&obp, out, bit);
}
ibp += diff;
}
}
static unsigned postProcessScanlines(unsigned char* out, unsigned char* in,
unsigned w, unsigned h, const LodePNGInfo* info_png)
{
unsigned bpp = lodepng_get_bpp(&info_png->color);
if(bpp == 0) return 31;
if(info_png->interlace_method == 0)
{
if(bpp < 8 && w * bpp != ((w * bpp + 7) / 8) * 8)
{
CERROR_TRY_RETURN(unfilter(in, in, w, h, bpp));
removePaddingBits(out, in, w * bpp, ((w * bpp + 7) / 8) * 8, h);
}
else CERROR_TRY_RETURN(unfilter(out, in, w, h, bpp));
}
else
{
unsigned passw[7], passh[7]; size_t filter_passstart[8], padded_passstart[8], passstart[8];
unsigned i;
Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp);
for(i = 0; i < 7; i++)
{
CERROR_TRY_RETURN(unfilter(&in[padded_passstart[i]], &in[filter_passstart[i]], passw[i], passh[i], bpp));
if(bpp < 8)
{
removePaddingBits(&in[passstart[i]], &in[padded_passstart[i]], passw[i] * bpp,
((passw[i] * bpp + 7) / 8) * 8, passh[i]);
}
}
Adam7_deinterlace(out, in, w, h, bpp);
}
return 0;
}
static void decodeGeneric(unsigned char** out, unsigned* w, unsigned* h,
LodePNGState* state,
const unsigned char* in, size_t insize)
{
unsigned char IEND = 0;
const unsigned char* chunk;
size_t i;
ucvector idat;
unsigned unknown = 0;
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
unsigned critical_pos = 1;
#endif
*out = 0;
state->error = lodepng_inspect(w, h, state, in, insize);
if(state->error) return;
ucvector_init(&idat);
chunk = &in[33];
while(!IEND && !state->error)
{
unsigned chunkLength;
const unsigned char* data;
if((size_t)((chunk - in) + 12) > insize || chunk < in) CERROR_BREAK(state->error, 30);
chunkLength = lodepng_chunk_length(chunk);
if(chunkLength > 2147483647) CERROR_BREAK(state->error, 63);
if((size_t)((chunk - in) + chunkLength + 12) > insize || (chunk + chunkLength + 12) < in)
{
CERROR_BREAK(state->error, 64);
}
data = lodepng_chunk_data_const(chunk);
if(lodepng_chunk_type_equals(chunk, "IDAT"))
{
size_t oldsize = idat.size;
if(!ucvector_resize(&idat, oldsize + chunkLength)) CERROR_BREAK(state->error, 83 );
for(i = 0; i < chunkLength; i++) idat.data[oldsize + i] = data[i];
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
critical_pos = 3;
#endif
}
else if(lodepng_chunk_type_equals(chunk, "IEND"))
{
IEND = 1;
}
else if(lodepng_chunk_type_equals(chunk, "PLTE"))
{
unsigned pos = 0;
if(state->info_png.color.palette) myfree(state->info_png.color.palette);
state->info_png.color.palettesize = chunkLength / 3;
state->info_png.color.palette = (unsigned char*)mymalloc(4 * state->info_png.color.palettesize);
if(!state->info_png.color.palette && state->info_png.color.palettesize)
{
state->info_png.color.palettesize = 0;
CERROR_BREAK(state->error, 83);
}
if(state->info_png.color.palettesize > 256) CERROR_BREAK(state->error, 38);
for(i = 0; i < state->info_png.color.palettesize; i++)
{
state->info_png.color.palette[4 * i + 0] = data[pos++];
state->info_png.color.palette[4 * i + 1] = data[pos++];
state->info_png.color.palette[4 * i + 2] = data[pos++];
state->info_png.color.palette[4 * i + 3] = 255;
}
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
critical_pos = 2;
#endif
}
else if(lodepng_chunk_type_equals(chunk, "tRNS"))
{
if(state->info_png.color.colortype == LCT_PALETTE)
{
if(chunkLength > state->info_png.color.palettesize) CERROR_BREAK(state->error, 38);
for(i = 0; i < chunkLength; i++) state->info_png.color.palette[4 * i + 3] = data[i];
}
else if(state->info_png.color.colortype == LCT_GREY)
{
if(chunkLength != 2) CERROR_BREAK(state->error, 30);
state->info_png.color.key_defined = 1;
state->info_png.color.key_r = state->info_png.color.key_g
= state->info_png.color.key_b = 256 * data[0] + data[1];
}
else if(state->info_png.color.colortype == LCT_RGB)
{
if(chunkLength != 6) CERROR_BREAK(state->error, 41);
state->info_png.color.key_defined = 1;
state->info_png.color.key_r = 256 * data[0] + data[1];
state->info_png.color.key_g = 256 * data[2] + data[3];
state->info_png.color.key_b = 256 * data[4] + data[5];
}
else CERROR_BREAK(state->error, 42);
}
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
else if(lodepng_chunk_type_equals(chunk, "bKGD"))
{
if(state->info_png.color.colortype == LCT_PALETTE)
{
if(chunkLength != 1) CERROR_BREAK(state->error, 43);
state->info_png.background_defined = 1;
state->info_png.background_r = state->info_png.background_g = state->info_png.background_b = data[0];
}
else if(state->info_png.color.colortype == LCT_GREY || state->info_png.color.colortype == LCT_GREY_ALPHA)
{
if(chunkLength != 2) CERROR_BREAK(state->error, 44);
state->info_png.background_defined = 1;
state->info_png.background_r = state->info_png.background_g = state->info_png.background_b
= 256 * data[0] + data[1];
}
else if(state->info_png.color.colortype == LCT_RGB || state->info_png.color.colortype == LCT_RGBA)
{
if(chunkLength != 6) CERROR_BREAK(state->error, 45);
state->info_png.background_defined = 1;
state->info_png.background_r = 256 * data[0] + data[1];
state->info_png.background_g = 256 * data[2] + data[3];
state->info_png.background_b = 256 * data[4] + data[5];
}
}
else if(lodepng_chunk_type_equals(chunk, "tEXt"))
{
if(state->decoder.read_text_chunks)
{
char *key = 0, *str = 0;
while(!state->error)
{
unsigned length, string2_begin;
length = 0;
while(length < chunkLength && data[length] != 0) length++;
if(length + 1 >= chunkLength) CERROR_BREAK(state->error, 75);
key = (char*)mymalloc(length + 1);
if(!key) CERROR_BREAK(state->error, 83);
key[length] = 0;
for(i = 0; i < length; i++) key[i] = data[i];
string2_begin = length + 1;
if(string2_begin > chunkLength) CERROR_BREAK(state->error, 75);
length = chunkLength - string2_begin;
str = (char*)mymalloc(length + 1);
if(!str) CERROR_BREAK(state->error, 83);
str[length] = 0;
for(i = 0; i < length; i++) str[i] = data[string2_begin + i];
state->error = lodepng_add_text(&state->info_png, key, str);
break;
}
myfree(key);
myfree(str);
}
}
else if(lodepng_chunk_type_equals(chunk, "zTXt"))
{
if(state->decoder.read_text_chunks)
{
unsigned length, string2_begin;
char *key = 0;
ucvector decoded;
ucvector_init(&decoded);
while(!state->error)
{
for(length = 0; length < chunkLength && data[length] != 0; length++) ;
if(length + 2 >= chunkLength) CERROR_BREAK(state->error, 75);
key = (char*)mymalloc(length + 1);
if(!key) CERROR_BREAK(state->error, 83);
key[length] = 0;
for(i = 0; i < length; i++) key[i] = data[i];
if(data[length + 1] != 0) CERROR_BREAK(state->error, 72);
string2_begin = length + 2;
if(string2_begin > chunkLength) CERROR_BREAK(state->error, 75);
length = chunkLength - string2_begin;
state->error = lodepng_zlib_decompress(&decoded.data, &decoded.size,
(unsigned char*)(&data[string2_begin]),
length, &state->decoder.zlibsettings);
if(state->error) break;
ucvector_push_back(&decoded, 0);
state->error = lodepng_add_text(&state->info_png, key, (char*)decoded.data);
break;
}
myfree(key);
ucvector_cleanup(&decoded);
if(state->error) break;
}
}
else if(lodepng_chunk_type_equals(chunk, "iTXt"))
{
if(state->decoder.read_text_chunks)
{
unsigned length, begin, compressed;
char *key = 0, *langtag = 0, *transkey = 0;
ucvector decoded;
ucvector_init(&decoded);
while(!state->error)
{
if(chunkLength < 5) CERROR_BREAK(state->error, 30);
for(length = 0; length < chunkLength && data[length] != 0; length++) ;
if(length + 2 >= chunkLength) CERROR_BREAK(state->error, 75);
key = (char*)mymalloc(length + 1);
if(!key) CERROR_BREAK(state->error, 83);
key[length] = 0;
for(i = 0; i < length; i++) key[i] = data[i];
compressed = data[length + 1];
if(data[length + 2] != 0) CERROR_BREAK(state->error, 72);
begin = length + 3;
length = 0;
for(i = begin; i < chunkLength && data[i] != 0; i++) length++;
if(begin + length + 1 >= chunkLength) CERROR_BREAK(state->error, 75);
langtag = (char*)mymalloc(length + 1);
if(!langtag) CERROR_BREAK(state->error, 83);
langtag[length] = 0;
for(i = 0; i < length; i++) langtag[i] = data[begin + i];
begin += length + 1;
length = 0;
for(i = begin; i < chunkLength && data[i] != 0; i++) length++;
if(begin + length + 1 >= chunkLength) CERROR_BREAK(state->error, 75);
transkey = (char*)mymalloc(length + 1);
if(!transkey) CERROR_BREAK(state->error, 83);
transkey[length] = 0;
for(i = 0; i < length; i++) transkey[i] = data[begin + i];
begin += length + 1;
if(begin > chunkLength) CERROR_BREAK(state->error, 75);
length = chunkLength - begin;
if(compressed)
{
state->error = lodepng_zlib_decompress(&decoded.data, &decoded.size,
(unsigned char*)(&data[begin]),
length, &state->decoder.zlibsettings);
if(state->error) break;
if(decoded.allocsize < decoded.size) decoded.allocsize = decoded.size;
ucvector_push_back(&decoded, 0);
}
else
{
if(!ucvector_resize(&decoded, length + 1)) CERROR_BREAK(state->error, 83 );
decoded.data[length] = 0;
for(i = 0; i < length; i++) decoded.data[i] = data[begin + i];
}
state->error = lodepng_add_itext(&state->info_png, key, langtag, transkey, (char*)decoded.data);
break;
}
myfree(key);
myfree(langtag);
myfree(transkey);
ucvector_cleanup(&decoded);
if(state->error) break;
}
}
else if(lodepng_chunk_type_equals(chunk, "tIME"))
{
if(chunkLength != 7) CERROR_BREAK(state->error, 73);
state->info_png.time_defined = 1;
state->info_png.time.year = 256 * data[0] + data[+ 1];
state->info_png.time.month = data[2];
state->info_png.time.day = data[3];
state->info_png.time.hour = data[4];
state->info_png.time.minute = data[5];
state->info_png.time.second = data[6];
}
else if(lodepng_chunk_type_equals(chunk, "pHYs"))
{
if(chunkLength != 9) CERROR_BREAK(state->error, 74);
state->info_png.phys_defined = 1;
state->info_png.phys_x = 16777216 * data[0] + 65536 * data[1] + 256 * data[2] + data[3];
state->info_png.phys_y = 16777216 * data[4] + 65536 * data[5] + 256 * data[6] + data[7];
state->info_png.phys_unit = data[8];
}
#endif
else
{
if(!lodepng_chunk_ancillary(chunk)) CERROR_BREAK(state->error, 69);
unknown = 1;
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
if(state->decoder.remember_unknown_chunks)
{
state->error = lodepng_chunk_append(&state->info_png.unknown_chunks_data[critical_pos - 1],
&state->info_png.unknown_chunks_size[critical_pos - 1], chunk);
if(state->error) break;
}
#endif
}
if(!state->decoder.ignore_crc && !unknown)
{
if(lodepng_chunk_check_crc(chunk)) CERROR_BREAK(state->error, 57);
}
if(!IEND) chunk = lodepng_chunk_next_const(chunk);
}
if(!state->error)
{
ucvector scanlines;
ucvector_init(&scanlines);
if(!ucvector_resize(&scanlines, lodepng_get_raw_size(*w, *h, &state->info_png.color) + *h))
{
state->error = 83;
}
if(!state->error)
{
state->error = lodepng_zlib_decompress(&scanlines.data, &scanlines.size, idat.data,
idat.size, &state->decoder.zlibsettings);
}
if(!state->error)
{
ucvector outv;
ucvector_init(&outv);
if(!ucvector_resizev(&outv,
lodepng_get_raw_size(*w, *h, &state->info_png.color), 0)) state->error = 83;
if(!state->error) state->error = postProcessScanlines(outv.data, scanlines.data, *w, *h, &state->info_png);
*out = outv.data;
}
ucvector_cleanup(&scanlines);
}
ucvector_cleanup(&idat);
}
unsigned lodepng_decode(unsigned char** out, unsigned* w, unsigned* h,
LodePNGState* state,
const unsigned char* in, size_t insize)
{
*out = 0;
decodeGeneric(out, w, h, state, in, insize);
if(state->error) return state->error;
if(!state->decoder.color_convert || lodepng_color_mode_equal(&state->info_raw, &state->info_png.color))
{
if(!state->decoder.color_convert)
{
state->error = lodepng_color_mode_copy(&state->info_raw, &state->info_png.color);
if(state->error) return state->error;
}
}
else
{
unsigned char* data = *out;
size_t outsize;
if(!(state->info_raw.colortype == LCT_RGB || state->info_raw.colortype == LCT_RGBA)
&& !(state->info_raw.bitdepth == 8))
{
return 56;
}
outsize = lodepng_get_raw_size(*w, *h, &state->info_raw);
*out = (unsigned char*)mymalloc(outsize);
if(!(*out))
{
state->error = 83;
}
else state->error = lodepng_convert(*out, data, &state->info_raw, &state->info_png.color, *w, *h);
myfree(data);
}
return state->error;
}
unsigned lodepng_decode_memory(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in,
size_t insize, LodePNGColorType colortype, unsigned bitdepth)
{
unsigned error;
LodePNGState state;
lodepng_state_init(&state);
state.info_raw.colortype = colortype;
state.info_raw.bitdepth = bitdepth;
error = lodepng_decode(out, w, h, &state, in, insize);
lodepng_state_cleanup(&state);
return error;
}
unsigned lodepng_decode32(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in, size_t insize)
{
return lodepng_decode_memory(out, w, h, in, insize, LCT_RGBA, 8);
}
unsigned lodepng_decode24(unsigned char** out, unsigned* w, unsigned* h, const unsigned char* in, size_t insize)
{
return lodepng_decode_memory(out, w, h, in, insize, LCT_RGB, 8);
}
#ifdef LODEPNG_COMPILE_DISK
unsigned lodepng_decode_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename,
LodePNGColorType colortype, unsigned bitdepth)
{
unsigned char* buffer;
size_t buffersize;
unsigned error;
error = lodepng_load_file(&buffer, &buffersize, filename);
if(!error) error = lodepng_decode_memory(out, w, h, buffer, buffersize, colortype, bitdepth);
myfree(buffer);
return error;
}
unsigned lodepng_decode32_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename)
{
return lodepng_decode_file(out, w, h, filename, LCT_RGBA, 8);
}
unsigned lodepng_decode24_file(unsigned char** out, unsigned* w, unsigned* h, const char* filename)
{
return lodepng_decode_file(out, w, h, filename, LCT_RGB, 8);
}
#endif
void lodepng_decoder_settings_init(LodePNGDecoderSettings* settings)
{
settings->color_convert = 1;
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
settings->read_text_chunks = 1;
settings->remember_unknown_chunks = 0;
#endif
settings->ignore_crc = 0;
lodepng_decompress_settings_init(&settings->zlibsettings);
}
#endif
#if defined(LODEPNG_COMPILE_DECODER) || defined(LODEPNG_COMPILE_ENCODER)
void lodepng_state_init(LodePNGState* state)
{
#ifdef LODEPNG_COMPILE_DECODER
lodepng_decoder_settings_init(&state->decoder);
#endif
#ifdef LODEPNG_COMPILE_ENCODER
lodepng_encoder_settings_init(&state->encoder);
#endif
lodepng_color_mode_init(&state->info_raw);
lodepng_info_init(&state->info_png);
state->error = 1;
}
void lodepng_state_cleanup(LodePNGState* state)
{
lodepng_color_mode_cleanup(&state->info_raw);
lodepng_info_cleanup(&state->info_png);
}
void lodepng_state_copy(LodePNGState* dest, const LodePNGState* source)
{
lodepng_state_cleanup(dest);
*dest = *source;
lodepng_color_mode_init(&dest->info_raw);
lodepng_info_init(&dest->info_png);
dest->error = lodepng_color_mode_copy(&dest->info_raw, &source->info_raw); if(dest->error) return;
dest->error = lodepng_info_copy(&dest->info_png, &source->info_png); if(dest->error) return;
}
#endif
#ifdef LODEPNG_COMPILE_ENCODER
static unsigned addChunk(ucvector* out, const char* chunkName, const unsigned char* data, size_t length)
{
CERROR_TRY_RETURN(lodepng_chunk_create(&out->data, &out->size, (unsigned)length, chunkName, data));
out->allocsize = out->size;
return 0;
}
static void writeSignature(ucvector* out)
{
ucvector_push_back(out, 137);
ucvector_push_back(out, 80);
ucvector_push_back(out, 78);
ucvector_push_back(out, 71);
ucvector_push_back(out, 13);
ucvector_push_back(out, 10);
ucvector_push_back(out, 26);
ucvector_push_back(out, 10);
}
static unsigned addChunk_IHDR(ucvector* out, unsigned w, unsigned h,
LodePNGColorType colortype, unsigned bitdepth, unsigned interlace_method)
{
unsigned error = 0;
ucvector header;
ucvector_init(&header);
lodepng_add32bitInt(&header, w);
lodepng_add32bitInt(&header, h);
ucvector_push_back(&header, (unsigned char)bitdepth);
ucvector_push_back(&header, (unsigned char)colortype);
ucvector_push_back(&header, 0);
ucvector_push_back(&header, 0);
ucvector_push_back(&header, interlace_method);
error = addChunk(out, "IHDR", header.data, header.size);
ucvector_cleanup(&header);
return error;
}
static unsigned addChunk_PLTE(ucvector* out, const LodePNGColorMode* info)
{
unsigned error = 0;
size_t i;
ucvector PLTE;
ucvector_init(&PLTE);
for(i = 0; i < info->palettesize * 4; i++)
{
if(i % 4 != 3) ucvector_push_back(&PLTE, info->palette[i]);
}
error = addChunk(out, "PLTE", PLTE.data, PLTE.size);
ucvector_cleanup(&PLTE);
return error;
}
static unsigned addChunk_tRNS(ucvector* out, const LodePNGColorMode* info)
{
unsigned error = 0;
size_t i;
ucvector tRNS;
ucvector_init(&tRNS);
if(info->colortype == LCT_PALETTE)
{
size_t amount = info->palettesize;
for(i = info->palettesize; i > 0; i--)
{
if(info->palette[4 * (i - 1) + 3] == 255) amount--;
else break;
}
for(i = 0; i < amount; i++) ucvector_push_back(&tRNS, info->palette[4 * i + 3]);
}
else if(info->colortype == LCT_GREY)
{
if(info->key_defined)
{
ucvector_push_back(&tRNS, (unsigned char)(info->key_r / 256));
ucvector_push_back(&tRNS, (unsigned char)(info->key_r % 256));
}
}
else if(info->colortype == LCT_RGB)
{
if(info->key_defined)
{
ucvector_push_back(&tRNS, (unsigned char)(info->key_r / 256));
ucvector_push_back(&tRNS, (unsigned char)(info->key_r % 256));
ucvector_push_back(&tRNS, (unsigned char)(info->key_g / 256));
ucvector_push_back(&tRNS, (unsigned char)(info->key_g % 256));
ucvector_push_back(&tRNS, (unsigned char)(info->key_b / 256));
ucvector_push_back(&tRNS, (unsigned char)(info->key_b % 256));
}
}
error = addChunk(out, "tRNS", tRNS.data, tRNS.size);
ucvector_cleanup(&tRNS);
return error;
}
static unsigned addChunk_IDAT(ucvector* out, const unsigned char* data, size_t datasize,
LodePNGCompressSettings* zlibsettings)
{
ucvector zlibdata;
unsigned error = 0;
ucvector_init(&zlibdata);
error = lodepng_zlib_compress(&zlibdata.data, &zlibdata.size, data, datasize, zlibsettings);
if(!error) error = addChunk(out, "IDAT", zlibdata.data, zlibdata.size);
ucvector_cleanup(&zlibdata);
return error;
}
static unsigned addChunk_IEND(ucvector* out)
{
unsigned error = 0;
error = addChunk(out, "IEND", 0, 0);
return error;
}
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
static unsigned addChunk_tEXt(ucvector* out, const char* keyword, const char* textstring)
{
unsigned error = 0;
size_t i;
ucvector text;
ucvector_init(&text);
for(i = 0; keyword[i] != 0; i++) ucvector_push_back(&text, (unsigned char)keyword[i]);
ucvector_push_back(&text, 0);
for(i = 0; textstring[i] != 0; i++) ucvector_push_back(&text, (unsigned char)textstring[i]);
error = addChunk(out, "tEXt", text.data, text.size);
ucvector_cleanup(&text);
return error;
}
static unsigned addChunk_zTXt(ucvector* out, const char* keyword, const char* textstring,
LodePNGCompressSettings* zlibsettings)
{
unsigned error = 0;
ucvector data, compressed;
size_t i, textsize = strlen(textstring);
ucvector_init(&data);
ucvector_init(&compressed);
for(i = 0; keyword[i] != 0; i++) ucvector_push_back(&data, (unsigned char)keyword[i]);
ucvector_push_back(&data, 0);
ucvector_push_back(&data, 0);
error = lodepng_zlib_compress(&compressed.data, &compressed.size,
(unsigned char*)textstring, textsize, zlibsettings);
if(!error)
{
for(i = 0; i < compressed.size; i++) ucvector_push_back(&data, compressed.data[i]);
error = addChunk(out, "zTXt", data.data, data.size);
}
ucvector_cleanup(&compressed);
ucvector_cleanup(&data);
return error;
}
static unsigned addChunk_iTXt(ucvector* out, unsigned compressed, const char* keyword, const char* langtag,
const char* transkey, const char* textstring, LodePNGCompressSettings* zlibsettings)
{
unsigned error = 0;
ucvector data;
size_t i, textsize = strlen(textstring);
ucvector_init(&data);
for(i = 0; keyword[i] != 0; i++) ucvector_push_back(&data, (unsigned char)keyword[i]);
ucvector_push_back(&data, 0);
ucvector_push_back(&data, compressed ? 1 : 0);
ucvector_push_back(&data, 0);
for(i = 0; langtag[i] != 0; i++) ucvector_push_back(&data, (unsigned char)langtag[i]);
ucvector_push_back(&data, 0);
for(i = 0; transkey[i] != 0; i++) ucvector_push_back(&data, (unsigned char)transkey[i]);
ucvector_push_back(&data, 0);
if(compressed)
{
ucvector compressed_data;
ucvector_init(&compressed_data);
error = lodepng_zlib_compress(&compressed_data.data, &compressed_data.size,
(unsigned char*)textstring, textsize, zlibsettings);
if(!error)
{
for(i = 0; i < compressed_data.size; i++) ucvector_push_back(&data, compressed_data.data[i]);
}
ucvector_cleanup(&compressed_data);
}
else
{
for(i = 0; textstring[i] != 0; i++) ucvector_push_back(&data, (unsigned char)textstring[i]);
}
if(!error) error = addChunk(out, "iTXt", data.data, data.size);
ucvector_cleanup(&data);
return error;
}
static unsigned addChunk_bKGD(ucvector* out, const LodePNGInfo* info)
{
unsigned error = 0;
ucvector bKGD;
ucvector_init(&bKGD);
if(info->color.colortype == LCT_GREY || info->color.colortype == LCT_GREY_ALPHA)
{
ucvector_push_back(&bKGD, (unsigned char)(info->background_r / 256));
ucvector_push_back(&bKGD, (unsigned char)(info->background_r % 256));
}
else if(info->color.colortype == LCT_RGB || info->color.colortype == LCT_RGBA)
{
ucvector_push_back(&bKGD, (unsigned char)(info->background_r / 256));
ucvector_push_back(&bKGD, (unsigned char)(info->background_r % 256));
ucvector_push_back(&bKGD, (unsigned char)(info->background_g / 256));
ucvector_push_back(&bKGD, (unsigned char)(info->background_g % 256));
ucvector_push_back(&bKGD, (unsigned char)(info->background_b / 256));
ucvector_push_back(&bKGD, (unsigned char)(info->background_b % 256));
}
else if(info->color.colortype == LCT_PALETTE)
{
ucvector_push_back(&bKGD, (unsigned char)(info->background_r % 256));
}
error = addChunk(out, "bKGD", bKGD.data, bKGD.size);
ucvector_cleanup(&bKGD);
return error;
}
static unsigned addChunk_tIME(ucvector* out, const LodePNGTime* time)
{
unsigned error = 0;
unsigned char* data = (unsigned char*)mymalloc(7);
if(!data) return 83;
data[0] = (unsigned char)(time->year / 256);
data[1] = (unsigned char)(time->year % 256);
data[2] = time->month;
data[3] = time->day;
data[4] = time->hour;
data[5] = time->minute;
data[6] = time->second;
error = addChunk(out, "tIME", data, 7);
myfree(data);
return error;
}
static unsigned addChunk_pHYs(ucvector* out, const LodePNGInfo* info)
{
unsigned error = 0;
ucvector data;
ucvector_init(&data);
lodepng_add32bitInt(&data, info->phys_x);
lodepng_add32bitInt(&data, info->phys_y);
ucvector_push_back(&data, info->phys_unit);
error = addChunk(out, "pHYs", data.data, data.size);
ucvector_cleanup(&data);
return error;
}
#endif
static void filterScanline(unsigned char* out, const unsigned char* scanline, const unsigned char* prevline,
size_t length, size_t bytewidth, unsigned char filterType)
{
size_t i;
switch(filterType)
{
case 0:
for(i = 0; i < length; i++) out[i] = scanline[i];
break;
case 1:
if(prevline)
{
for(i = 0; i < bytewidth; i++) out[i] = scanline[i];
for(i = bytewidth; i < length; i++) out[i] = scanline[i] - scanline[i - bytewidth];
}
else
{
for(i = 0; i < bytewidth; i++) out[i] = scanline[i];
for(i = bytewidth; i < length; i++) out[i] = scanline[i] - scanline[i - bytewidth];
}
break;
case 2:
if(prevline)
{
for(i = 0; i < length; i++) out[i] = scanline[i] - prevline[i];
}
else
{
for(i = 0; i < length; i++) out[i] = scanline[i];
}
break;
case 3:
if(prevline)
{
for(i = 0; i < bytewidth; i++) out[i] = scanline[i] - prevline[i] / 2;
for(i = bytewidth; i < length; i++) out[i] = scanline[i] - ((scanline[i - bytewidth] + prevline[i]) / 2);
}
else
{
for(i = 0; i < bytewidth; i++) out[i] = scanline[i];
for(i = bytewidth; i < length; i++) out[i] = scanline[i] - scanline[i - bytewidth] / 2;
}
break;
case 4:
if(prevline)
{
for(i = 0; i < bytewidth; i++) out[i] = (scanline[i] - prevline[i]);
for(i = bytewidth; i < length; i++)
{
out[i] = (scanline[i] - paethPredictor(scanline[i - bytewidth], prevline[i], prevline[i - bytewidth]));
}
}
else
{
for(i = 0; i < bytewidth; i++) out[i] = scanline[i];
for(i = bytewidth; i < length; i++) out[i] = (scanline[i] - scanline[i - bytewidth]);
}
break;
default: return;
}
}
static unsigned filter(unsigned char* out, const unsigned char* in, unsigned w, unsigned h,
const LodePNGColorMode* info, const LodePNGEncoderSettings* settings)
{
unsigned bpp = lodepng_get_bpp(info);
size_t linebytes = (w * bpp + 7) / 8;
size_t bytewidth = (bpp + 7) / 8;
const unsigned char* prevline = 0;
unsigned x, y;
unsigned error = 0;
int heuristic_zero = info->colortype == LCT_PALETTE || info->bitdepth < 8;
if(bpp == 0) return 31;
if((!heuristic_zero && settings->filter_strategy == LFS_HEURISTIC)||
settings->filter_strategy == LFS_MINSUM)
{
size_t sum[5];
ucvector attempt[5];
size_t smallest = 0;
unsigned type, bestType = 0;
for(type = 0; type < 5; type++) ucvector_init(&attempt[type]);
for(type = 0; type < 5; type++)
{
if(!ucvector_resize(&attempt[type], linebytes)) ERROR_BREAK(83 );
}
if(!error)
{
for(y = 0; y < h; y++)
{
for(type = 0; type < 5; type++)
{
filterScanline(attempt[type].data, &in[y * linebytes], prevline, linebytes, bytewidth, type);
sum[type] = 0;
for(x = 0; x < attempt[type].size; x+=3)
{
if(type == 0) sum[type] += (unsigned char)(attempt[type].data[x]);
else
{
signed char s = (signed char)(attempt[type].data[x]);
sum[type] += s < 0 ? -s : s;
}
}
if(type == 0 || sum[type] < smallest)
{
bestType = type;
smallest = sum[type];
}
}
prevline = &in[y * linebytes];
out[y * (linebytes + 1)] = bestType;
for(x = 0; x < linebytes; x++) out[y * (linebytes + 1) + 1 + x] = attempt[bestType].data[x];
}
}
for(type = 0; type < 5; type++) ucvector_cleanup(&attempt[type]);
}
else if((heuristic_zero && settings->filter_strategy == LFS_HEURISTIC)||
settings->filter_strategy == LFS_ZERO)
{
for(y = 0; y < h; y++)
{
size_t outindex = (1 + linebytes) * y;
size_t inindex = linebytes * y;
const unsigned TYPE = 0;
out[outindex] = TYPE;
filterScanline(&out[outindex + 1], &in[inindex], prevline, linebytes, bytewidth, TYPE);
prevline = &in[inindex];
}
}
else if(settings->filter_strategy == LFS_PREDEFINED)
{
for(y = 0; y < h; y++)
{
size_t outindex = (1 + linebytes) * y;
size_t inindex = linebytes * y;
unsigned type = settings->predefined_filters[y];
out[outindex] = type;
filterScanline(&out[outindex + 1], &in[inindex], prevline, linebytes, bytewidth, type);
prevline = &in[inindex];
}
}
else
{
size_t size[5];
ucvector attempt[5];
size_t smallest = 0;
unsigned type = 0, bestType = 0;
unsigned char* dummy;
LodePNGCompressSettings zlibsettings = settings->zlibsettings;
zlibsettings.btype = 1;
zlibsettings.custom_encoder = 0;
for(type = 0; type < 5; type++)
{
ucvector_init(&attempt[type]);
ucvector_resize(&attempt[type], linebytes);
}
for(y = 0; y < h; y++)
{
for(type = 0; type < 5; type++)
{
unsigned testsize = attempt[type].size;
filterScanline(attempt[type].data, &in[y * linebytes], prevline, linebytes, bytewidth, type);
size[type] = 0;
dummy = 0;
lodepng_zlib_compress(&dummy, &size[type], attempt[type].data, testsize, &zlibsettings);
myfree(dummy);
if(type == 0 || size[type] < smallest)
{
bestType = type;
smallest = size[type];
}
}
prevline = &in[y * linebytes];
out[y * (linebytes + 1)] = bestType;
for(x = 0; x < linebytes; x++) out[y * (linebytes + 1) + 1 + x] = attempt[bestType].data[x];
}
for(type = 0; type < 5; type++) ucvector_cleanup(&attempt[type]);
}
return error;
}
static void addPaddingBits(unsigned char* out, const unsigned char* in,
size_t olinebits, size_t ilinebits, unsigned h)
{
unsigned y;
size_t diff = olinebits - ilinebits;
size_t obp = 0, ibp = 0;
for(y = 0; y < h; y++)
{
size_t x;
for(x = 0; x < ilinebits; x++)
{
unsigned char bit = readBitFromReversedStream(&ibp, in);
setBitOfReversedStream(&obp, out, bit);
}
for(x = 0; x < diff; x++) setBitOfReversedStream(&obp, out, 0);
}
}
static void Adam7_interlace(unsigned char* out, const unsigned char* in, unsigned w, unsigned h, unsigned bpp)
{
unsigned passw[7], passh[7];
size_t filter_passstart[8], padded_passstart[8], passstart[8];
unsigned i;
Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp);
if(bpp >= 8)
{
for(i = 0; i < 7; i++)
{
unsigned x, y, b;
size_t bytewidth = bpp / 8;
for(y = 0; y < passh[i]; y++)
for(x = 0; x < passw[i]; x++)
{
size_t pixelinstart = ((ADAM7_IY[i] + y * ADAM7_DY[i]) * w + ADAM7_IX[i] + x * ADAM7_DX[i]) * bytewidth;
size_t pixeloutstart = passstart[i] + (y * passw[i] + x) * bytewidth;
for(b = 0; b < bytewidth; b++)
{
out[pixeloutstart + b] = in[pixelinstart + b];
}
}
}
}
else
{
for(i = 0; i < 7; i++)
{
unsigned x, y, b;
unsigned ilinebits = bpp * passw[i];
unsigned olinebits = bpp * w;
size_t obp, ibp;
for(y = 0; y < passh[i]; y++)
for(x = 0; x < passw[i]; x++)
{
ibp = (ADAM7_IY[i] + y * ADAM7_DY[i]) * olinebits + (ADAM7_IX[i] + x * ADAM7_DX[i]) * bpp;
obp = (8 * passstart[i]) + (y * ilinebits + x * bpp);
for(b = 0; b < bpp; b++)
{
unsigned char bit = readBitFromReversedStream(&ibp, in);
setBitOfReversedStream(&obp, out, bit);
}
}
}
}
}
static unsigned preProcessScanlines(unsigned char** out, size_t* outsize, const unsigned char* in,
unsigned w, unsigned h,
const LodePNGInfo* info_png, const LodePNGEncoderSettings* settings)
{
unsigned bpp = lodepng_get_bpp(&info_png->color);
unsigned error = 0;
if(info_png->interlace_method == 0)
{
*outsize = h + (h * ((w * bpp + 7) / 8));
*out = (unsigned char*)mymalloc(*outsize);
if(!(*out) && (*outsize)) error = 83;
if(!error)
{
if(bpp < 8 && w * bpp != ((w * bpp + 7) / 8) * 8)
{
ucvector padded;
ucvector_init(&padded);
if(!ucvector_resize(&padded, h * ((w * bpp + 7) / 8))) error = 83;
if(!error)
{
addPaddingBits(padded.data, in, ((w * bpp + 7) / 8) * 8, w * bpp, h);
error = filter(*out, padded.data, w, h, &info_png->color, settings);
}
ucvector_cleanup(&padded);
}
else
{
error = filter(*out, in, w, h, &info_png->color, settings);
}
}
}
else
{
unsigned char* adam7 = (unsigned char*)mymalloc((h * w * bpp + 7) / 8);
if(!adam7 && ((h * w * bpp + 7) / 8)) error = 83;
while(!error)
{
unsigned passw[7], passh[7];
size_t filter_passstart[8], padded_passstart[8], passstart[8];
unsigned i;
Adam7_getpassvalues(passw, passh, filter_passstart, padded_passstart, passstart, w, h, bpp);
*outsize = filter_passstart[7];
*out = (unsigned char*)mymalloc(*outsize);
if(!(*out) && (*outsize)) ERROR_BREAK(83 );
Adam7_interlace(adam7, in, w, h, bpp);
for(i = 0; i < 7; i++)
{
if(bpp < 8)
{
ucvector padded;
ucvector_init(&padded);
if(!ucvector_resize(&padded, h * ((w * bpp + 7) / 8))) error = 83;
if(!error)
{
addPaddingBits(&padded.data[padded_passstart[i]], &adam7[passstart[i]],
((passw[i] * bpp + 7) / 8) * 8, passw[i] * bpp, passh[i]);
error = filter(&(*out)[filter_passstart[i]], &padded.data[padded_passstart[i]],
passw[i], passh[i], &info_png->color, settings);
}
ucvector_cleanup(&padded);
}
else
{
error = filter(&(*out)[filter_passstart[i]], &adam7[padded_passstart[i]],
passw[i], passh[i], &info_png->color, settings);
}
}
break;
}
myfree(adam7);
}
return error;
}
static unsigned getPaletteTranslucency(const unsigned char* palette, size_t palettesize)
{
size_t i, key = 0;
unsigned r, g, b;
for(i = 0; i < palettesize; i++)
{
if(!key && palette[4 * i + 3] == 0)
{
r = palette[4 * i + 0]; g = palette[4 * i + 1]; b = palette[4 * i + 2];
key = 1;
i = (size_t)(-1);
}
else if(palette[4 * i + 3] != 255) return 2;
else if(key && r == palette[i * 4 + 0] && g == palette[i * 4 + 1] && b == palette[i * 4 + 2]) return 2;
}
return key;
}
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
static unsigned addUnknownChunks(ucvector* out, unsigned char* data, size_t datasize)
{
unsigned char* inchunk = data;
while((size_t)(inchunk - data) < datasize)
{
CERROR_TRY_RETURN(lodepng_chunk_append(&out->data, &out->size, inchunk));
out->allocsize = out->size;
inchunk = lodepng_chunk_next(inchunk);
}
return 0;
}
#endif
unsigned lodepng_encode(unsigned char** out, size_t* outsize,
const unsigned char* image, unsigned w, unsigned h,
LodePNGState* state)
{
LodePNGInfo info;
ucvector outv;
unsigned char* data = 0;
size_t datasize = 0;
*out = 0;
*outsize = 0;
state->error = 0;
lodepng_info_init(&info);
lodepng_info_copy(&info, &state->info_png);
if((info.color.colortype == LCT_PALETTE || state->encoder.force_palette)
&& (info.color.palettesize == 0 || info.color.palettesize > 256))
{
state->error = 68;
return state->error;
}
if(state->encoder.auto_convert != LAC_NO)
{
state->error = doAutoChooseColor(&info.color, image, w, h, &state->info_raw,
state->encoder.auto_convert);
}
if(state->error) return state->error;
if(state->encoder.zlibsettings.windowsize > 32768)
{
CERROR_RETURN_ERROR(state->error, 60);
}
if(state->encoder.zlibsettings.btype > 2)
{
CERROR_RETURN_ERROR(state->error, 61);
}
if(state->info_png.interlace_method > 1)
{
CERROR_RETURN_ERROR(state->error, 71);
}
if((state->error = checkColorValidity(info.color.colortype, info.color.bitdepth))) return state->error;
if((state->error = checkColorValidity(state->info_raw.colortype, state->info_raw.bitdepth))) return state->error;
if(!lodepng_color_mode_equal(&state->info_raw, &info.color))
{
unsigned char* converted;
size_t size = (w * h * lodepng_get_bpp(&info.color) + 7) / 8;
converted = (unsigned char*)mymalloc(size);
if(!converted && size) state->error = 83;
if(!state->error)
{
state->error = lodepng_convert(converted, image, &info.color, &state->info_raw, w, h);
}
if(!state->error) preProcessScanlines(&data, &datasize, converted, w, h, &info, &state->encoder);
myfree(converted);
}
else preProcessScanlines(&data, &datasize, image, w, h, &info, &state->encoder);
ucvector_init(&outv);
while(!state->error)
{
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
size_t i;
#endif
writeSignature(&outv);
addChunk_IHDR(&outv, w, h, info.color.colortype, info.color.bitdepth, info.interlace_method);
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
if(info.unknown_chunks_data[0])
{
state->error = addUnknownChunks(&outv, info.unknown_chunks_data[0], info.unknown_chunks_size[0]);
if(state->error) break;
}
#endif
if(info.color.colortype == LCT_PALETTE)
{
addChunk_PLTE(&outv, &info.color);
}
if(state->encoder.force_palette && (info.color.colortype == LCT_RGB || info.color.colortype == LCT_RGBA))
{
addChunk_PLTE(&outv, &info.color);
}
if(info.color.colortype == LCT_PALETTE && getPaletteTranslucency(info.color.palette, info.color.palettesize) != 0)
{
addChunk_tRNS(&outv, &info.color);
}
if((info.color.colortype == LCT_GREY || info.color.colortype == LCT_RGB) && info.color.key_defined)
{
addChunk_tRNS(&outv, &info.color);
}
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
if(info.background_defined) addChunk_bKGD(&outv, &info);
if(info.phys_defined) addChunk_pHYs(&outv, &info);
if(info.unknown_chunks_data[1])
{
state->error = addUnknownChunks(&outv, info.unknown_chunks_data[1], info.unknown_chunks_size[1]);
if(state->error) break;
}
#endif
state->error = addChunk_IDAT(&outv, data, datasize, &state->encoder.zlibsettings);
if(state->error) break;
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
if(info.time_defined) addChunk_tIME(&outv, &info.time);
for(i = 0; i < info.text_num; i++)
{
if(strlen(info.text_keys[i]) > 79)
{
state->error = 66;
break;
}
if(strlen(info.text_keys[i]) < 1)
{
state->error = 67;
break;
}
if(state->encoder.text_compression)
addChunk_zTXt(&outv, info.text_keys[i], info.text_strings[i], &state->encoder.zlibsettings);
else
addChunk_tEXt(&outv, info.text_keys[i], info.text_strings[i]);
}
if(state->encoder.add_id)
{
unsigned alread_added_id_text = 0;
for(i = 0; i < info.text_num; i++)
{
if(!strcmp(info.text_keys[i], "LodePNG"))
{
alread_added_id_text = 1;
break;
}
}
if(alread_added_id_text == 0)
addChunk_tEXt(&outv, "LodePNG", VERSION_STRING);
}
for(i = 0; i < info.itext_num; i++)
{
if(strlen(info.itext_keys[i]) > 79)
{
state->error = 66;
break;
}
if(strlen(info.itext_keys[i]) < 1)
{
state->error = 67;
break;
}
addChunk_iTXt(&outv, state->encoder.text_compression,
info.itext_keys[i], info.itext_langtags[i], info.itext_transkeys[i], info.itext_strings[i],
&state->encoder.zlibsettings);
}
if(info.unknown_chunks_data[2])
{
state->error = addUnknownChunks(&outv, info.unknown_chunks_data[2], info.unknown_chunks_size[2]);
if(state->error) break;
}
#endif
addChunk_IEND(&outv);
break;
}
lodepng_info_cleanup(&info);
myfree(data);
*out = outv.data;
*outsize = outv.size;
return state->error;
}
unsigned lodepng_encode_memory(unsigned char** out, size_t* outsize, const unsigned char* image,
unsigned w, unsigned h, LodePNGColorType colortype, unsigned bitdepth)
{
unsigned error;
LodePNGState state;
lodepng_state_init(&state);
state.info_raw.colortype = colortype;
state.info_raw.bitdepth = bitdepth;
state.info_png.color.colortype = colortype;
state.info_png.color.bitdepth = bitdepth;
lodepng_encode(out, outsize, image, w, h, &state);
error = state.error;
lodepng_state_cleanup(&state);
return error;
}
unsigned lodepng_encode32(unsigned char** out, size_t* outsize, const unsigned char* image, unsigned w, unsigned h)
{
return lodepng_encode_memory(out, outsize, image, w, h, LCT_RGBA, 8);
}
unsigned lodepng_encode24(unsigned char** out, size_t* outsize, const unsigned char* image, unsigned w, unsigned h)
{
return lodepng_encode_memory(out, outsize, image, w, h, LCT_RGB, 8);
}
#ifdef LODEPNG_COMPILE_DISK
unsigned lodepng_encode_file(const char* filename, const unsigned char* image, unsigned w, unsigned h,
LodePNGColorType colortype, unsigned bitdepth)
{
unsigned char* buffer;
size_t buffersize;
unsigned error = lodepng_encode_memory(&buffer, &buffersize, image, w, h, colortype, bitdepth);
if(!error) error = lodepng_save_file(buffer, buffersize, filename);
myfree(buffer);
return error;
}
unsigned lodepng_encode32_file(const char* filename, const unsigned char* image, unsigned w, unsigned h)
{
return lodepng_encode_file(filename, image, w, h, LCT_RGBA, 8);
}
unsigned lodepng_encode24_file(const char* filename, const unsigned char* image, unsigned w, unsigned h)
{
return lodepng_encode_file(filename, image, w, h, LCT_RGB, 8);
}
#endif
void lodepng_encoder_settings_init(LodePNGEncoderSettings* settings)
{
lodepng_compress_settings_init(&settings->zlibsettings);
settings->filter_strategy = LFS_HEURISTIC;
settings->auto_convert = LAC_AUTO;
settings->force_palette = 0;
settings->predefined_filters = 0;
#ifdef LODEPNG_COMPILE_ANCILLARY_CHUNKS
settings->add_id = 0;
settings->text_compression = 1;
#endif
}
#endif
#endif
#ifdef LODEPNG_COMPILE_ERROR_TEXT
const char* lodepng_error_text(unsigned code)
{
switch(code)
{
case 0: return "no error, everything went ok";
case 1: return "nothing done yet";
case 10: return "end of input memory reached without huffman end code";
case 11: return "error in code tree made it jump outside of huffman tree";
case 13: return "problem while processing dynamic deflate block";
case 14: return "problem while processing dynamic deflate block";
case 15: return "problem while processing dynamic deflate block";
case 16: return "unexisting code while processing dynamic deflate block";
case 17: return "end of out buffer memory reached while inflating";
case 18: return "invalid distance code while inflating";
case 19: return "end of out buffer memory reached while inflating";
case 20: return "invalid deflate block BTYPE encountered while decoding";
case 21: return "NLEN is not ones complement of LEN in a deflate block";
case 22: return "end of out buffer memory reached while inflating";
case 23: return "end of in buffer memory reached while inflating";
case 24: return "invalid FCHECK in zlib header";
case 25: return "invalid compression method in zlib header";
case 26: return "FDICT encountered in zlib header while it's not used for PNG";
case 27: return "PNG file is smaller than a PNG header";
case 28: return "incorrect PNG signature, it's no PNG or corrupted";
case 29: return "first chunk is not the header chunk";
case 30: return "chunk length too large, chunk broken off at end of file";
case 31: return "illegal PNG color type or bpp";
case 32: return "illegal PNG compression method";
case 33: return "illegal PNG filter method";
case 34: return "illegal PNG interlace method";
case 35: return "chunk length of a chunk is too large or the chunk too small";
case 36: return "illegal PNG filter type encountered";
case 37: return "illegal bit depth for this color type given";
case 38: return "the palette is too big";
case 39: return "more palette alpha values given in tRNS chunk than there are colors in the palette";
case 40: return "tRNS chunk has wrong size for greyscale image";
case 41: return "tRNS chunk has wrong size for RGB image";
case 42: return "tRNS chunk appeared while it was not allowed for this color type";
case 43: return "bKGD chunk has wrong size for palette image";
case 44: return "bKGD chunk has wrong size for greyscale image";
case 45: return "bKGD chunk has wrong size for RGB image";
case 46: return "a value in indexed image is larger than the palette size (bitdepth = 8)";
case 47: return "a value in indexed image is larger than the palette size (bitdepth < 8)";
case 48: return "empty input or file doesn't exist";
case 49: return "jumped past memory while generating dynamic huffman tree";
case 50: return "jumped past memory while generating dynamic huffman tree";
case 51: return "jumped past memory while inflating huffman block";
case 52: return "jumped past memory while inflating";
case 53: return "size of zlib data too small";
case 54: return "repeat symbol in tree while there was no value symbol yet";
case 55: return "jumped past tree while generating huffman tree";
case 56: return "given output image colortype or bitdepth not supported for color conversion";
case 57: return "invalid CRC encountered (checking CRC can be disabled)";
case 58: return "invalid ADLER32 encountered (checking ADLER32 can be disabled)";
case 59: return "requested color conversion not supported";
case 60: return "invalid window size given in the settings of the encoder (must be 0-32768)";
case 61: return "invalid BTYPE given in the settings of the encoder (only 0, 1 and 2 are allowed)";
case 62: return "conversion from color to greyscale not supported";
case 63: return "length of a chunk too long, max allowed for PNG is 2147483647 bytes per chunk";
case 64: return "the length of the END symbol 256 in the Huffman tree is 0";
case 66: return "the length of a text chunk keyword given to the encoder is longer than the maximum of 79 bytes";
case 67: return "the length of a text chunk keyword given to the encoder is smaller than the minimum of 1 byte";
case 68: return "tried to encode a PLTE chunk with a palette that has less than 1 or more than 256 colors";
case 69: return "unknown chunk type with 'critical' flag encountered by the decoder";
case 71: return "unexisting interlace mode given to encoder (must be 0 or 1)";
case 72: return "while decoding, unexisting compression method encountering in zTXt or iTXt chunk (it must be 0)";
case 73: return "invalid tIME chunk size";
case 74: return "invalid pHYs chunk size";
case 75: return "no null termination char found while decoding text chunk";
case 76: return "iTXt chunk too short to contain required bytes";
case 77: return "integer overflow in buffer size";
case 78: return "failed to open file for reading";
case 79: return "failed to open file for writing";
case 80: return "tried creating a tree of 0 symbols";
case 81: return "lazy matching at pos 0 is impossible";
case 82: return "color conversion to palette requested while a color isn't in palette";
case 83: return "memory allocation failed";
case 84: return "given image too small to contain all pixels to be encoded";
case 85: return "internal color conversion bug";
case 86: return "impossible offset in lz77 encoding (internal bug)";
}
return "unknown error code";
}
#endif
#ifdef LODEPNG_COMPILE_CPP
namespace lodepng
{
#ifdef LODEPNG_COMPILE_DISK
void load_file(std::vector<unsigned char>& buffer, const std::string& filename)
{
std::ifstream file(filename.c_str(), std::ios::in|std::ios::binary|std::ios::ate);
std::streamsize size = 0;
if(file.seekg(0, std::ios::end).good()) size = file.tellg();
if(file.seekg(0, std::ios::beg).good()) size -= file.tellg();
buffer.resize(size_t(size));
if(size > 0) file.read((char*)(&buffer[0]), size);
}
void save_file(const std::vector<unsigned char>& buffer, const std::string& filename)
{
std::ofstream file(filename.c_str(), std::ios::out|std::ios::binary);
file.write(buffer.empty() ? 0 : (char*)&buffer[0], std::streamsize(buffer.size()));
}
#endif
#ifdef LODEPNG_COMPILE_ZLIB
#ifdef LODEPNG_COMPILE_DECODER
unsigned decompress(std::vector<unsigned char>& out, const unsigned char* in, size_t insize,
const LodePNGDecompressSettings& settings)
{
unsigned char* buffer = 0;
size_t buffersize = 0;
unsigned error = lodepng_zlib_decompress(&buffer, &buffersize, in, insize, &settings);
if(buffer)
{
out.insert(out.end(), &buffer[0], &buffer[buffersize]);
myfree(buffer);
}
return error;
}
unsigned decompress(std::vector<unsigned char>& out, const std::vector<unsigned char>& in,
const LodePNGDecompressSettings& settings)
{
return decompress(out, in.empty() ? 0 : &in[0], in.size(), settings);
}
#endif
#ifdef LODEPNG_COMPILE_ENCODER
unsigned compress(std::vector<unsigned char>& out, const unsigned char* in, size_t insize,
const LodePNGCompressSettings& settings)
{
unsigned char* buffer = 0;
size_t buffersize = 0;
unsigned error = lodepng_zlib_compress(&buffer, &buffersize, in, insize, &settings);
if(buffer)
{
out.insert(out.end(), &buffer[0], &buffer[buffersize]);
myfree(buffer);
}
return error;
}
unsigned compress(std::vector<unsigned char>& out, const std::vector<unsigned char>& in,
const LodePNGCompressSettings& settings)
{
return compress(out, in.empty() ? 0 : &in[0], in.size(), settings);
}
#endif #endif
#ifdef LODEPNG_COMPILE_PNG
State::State()
{
lodepng_state_init(this);
}
State::State(const State& other)
{
lodepng_state_init(this);
lodepng_state_copy(this, &other);
}
State::~State()
{
lodepng_state_cleanup(this);
}
State& State::operator=(const State& other)
{
lodepng_state_copy(this, &other);
return *this;
}
#ifdef LODEPNG_COMPILE_DECODER
unsigned decode(std::vector<unsigned char>& out, unsigned& w, unsigned& h, const unsigned char* in,
size_t insize, LodePNGColorType colortype, unsigned bitdepth)
{
unsigned char* buffer;
unsigned error = lodepng_decode_memory(&buffer, &w, &h, in, insize, colortype, bitdepth);
if(buffer && !error)
{
State state;
state.info_raw.colortype = colortype;
state.info_raw.bitdepth = bitdepth;
size_t buffersize = lodepng_get_raw_size(w, h, &state.info_raw);
out.insert(out.end(), &buffer[0], &buffer[buffersize]);
myfree(buffer);
}
return error;
}
unsigned decode(std::vector<unsigned char>& out, unsigned& w, unsigned& h,
const std::vector<unsigned char>& in, LodePNGColorType colortype, unsigned bitdepth)
{
return decode(out, w, h, in.empty() ? 0 : &in[0], (unsigned)in.size(), colortype, bitdepth);
}
unsigned decode(std::vector<unsigned char>& out, unsigned& w, unsigned& h,
State& state,
const unsigned char* in, size_t insize)
{
unsigned char* buffer;
unsigned error = lodepng_decode(&buffer, &w, &h, &state, in, insize);
if(buffer && !error)
{
size_t buffersize = lodepng_get_raw_size(w, h, &state.info_raw);
out.insert(out.end(), &buffer[0], &buffer[buffersize]);
myfree(buffer);
}
return error;
}
unsigned decode(std::vector<unsigned char>& out, unsigned& w, unsigned& h,
State& state,
const std::vector<unsigned char>& in)
{
return decode(out, w, h, state, in.empty() ? 0 : &in[0], in.size());
}
#ifdef LODEPNG_COMPILE_DISK
unsigned decode(std::vector<unsigned char>& out, unsigned& w, unsigned& h, const std::string& filename,
LodePNGColorType colortype, unsigned bitdepth)
{
std::vector<unsigned char> buffer;
load_file(buffer, filename);
return decode(out, w, h, buffer, colortype, bitdepth);
}
#endif #endif
#ifdef LODEPNG_COMPILE_ENCODER
unsigned encode(std::vector<unsigned char>& out, const unsigned char* in, unsigned w, unsigned h,
LodePNGColorType colortype, unsigned bitdepth)
{
unsigned char* buffer;
size_t buffersize;
unsigned error = lodepng_encode_memory(&buffer, &buffersize, in, w, h, colortype, bitdepth);
if(buffer)
{
out.insert(out.end(), &buffer[0], &buffer[buffersize]);
myfree(buffer);
}
return error;
}
unsigned encode(std::vector<unsigned char>& out,
const std::vector<unsigned char>& in, unsigned w, unsigned h,
LodePNGColorType colortype, unsigned bitdepth)
{
if(lodepng_get_raw_size_lct(w, h, colortype, bitdepth) > in.size()) return 84;
return encode(out, in.empty() ? 0 : &in[0], w, h, colortype, bitdepth);
}
unsigned encode(std::vector<unsigned char>& out,
const unsigned char* in, unsigned w, unsigned h,
State& state)
{
unsigned char* buffer;
size_t buffersize;
unsigned error = lodepng_encode(&buffer, &buffersize, in, w, h, &state);
if(buffer)
{
out.insert(out.end(), &buffer[0], &buffer[buffersize]);
myfree(buffer);
}
return error;
}
unsigned encode(std::vector<unsigned char>& out,
const std::vector<unsigned char>& in, unsigned w, unsigned h,
State& state)
{
if(lodepng_get_raw_size(w, h, &state.info_raw) > in.size()) return 84;
return encode(out, in.empty() ? 0 : &in[0], w, h, state);
}
#ifdef LODEPNG_COMPILE_DISK
unsigned encode(const std::string& filename,
const unsigned char* in, unsigned w, unsigned h,
LodePNGColorType colortype, unsigned bitdepth)
{
std::vector<unsigned char> buffer;
unsigned error = encode(buffer, in, w, h, colortype, bitdepth);
if(!error) save_file(buffer, filename);
return error;
}
unsigned encode(const std::string& filename,
const std::vector<unsigned char>& in, unsigned w, unsigned h,
LodePNGColorType colortype, unsigned bitdepth)
{
if(lodepng_get_raw_size_lct(w, h, colortype, bitdepth) > in.size()) return 84;
return encode(filename, in.empty() ? 0 : &in[0], w, h, colortype, bitdepth);
}
#endif #endif #endif } #endif