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00022 #include "avcodec.h"
00023 #include "internal.h"
00024
00025 #define BITSTREAM_READER_LE
00026 #include "get_bits.h"
00027
00028 typedef union MacroBlock {
00029 uint16_t pixels[4];
00030 uint32_t pixels32[2];
00031 } MacroBlock;
00032
00033 typedef union SuperBlock {
00034 uint16_t pixels[64];
00035 uint32_t pixels32[32];
00036 } SuperBlock;
00037
00038 typedef struct CodeBook {
00039 unsigned depth;
00040 unsigned size;
00041 MacroBlock* blocks;
00042 } CodeBook;
00043
00044 typedef struct Escape124Context {
00045 AVFrame frame;
00046
00047 unsigned num_superblocks;
00048
00049 CodeBook codebooks[3];
00050 } Escape124Context;
00051
00052 static int can_safely_read(GetBitContext* gb, uint64_t bits) {
00053 return get_bits_left(gb) >= bits;
00054 }
00055
00061 static av_cold int escape124_decode_init(AVCodecContext *avctx)
00062 {
00063 Escape124Context *s = avctx->priv_data;
00064
00065 avcodec_get_frame_defaults(&s->frame);
00066 avctx->pix_fmt = AV_PIX_FMT_RGB555;
00067
00068 s->num_superblocks = ((unsigned)avctx->width / 8) *
00069 ((unsigned)avctx->height / 8);
00070
00071 return 0;
00072 }
00073
00074 static av_cold int escape124_decode_close(AVCodecContext *avctx)
00075 {
00076 unsigned i;
00077 Escape124Context *s = avctx->priv_data;
00078
00079 for (i = 0; i < 3; i++)
00080 av_free(s->codebooks[i].blocks);
00081
00082 if (s->frame.data[0])
00083 avctx->release_buffer(avctx, &s->frame);
00084
00085 return 0;
00086 }
00087
00088 static CodeBook unpack_codebook(GetBitContext* gb, unsigned depth,
00089 unsigned size)
00090 {
00091 unsigned i, j;
00092 CodeBook cb = { 0 };
00093
00094 if (!can_safely_read(gb, (uint64_t)size * 34))
00095 return cb;
00096
00097 if (size >= INT_MAX / sizeof(MacroBlock))
00098 return cb;
00099 cb.blocks = av_malloc(size ? size * sizeof(MacroBlock) : 1);
00100 if (!cb.blocks)
00101 return cb;
00102
00103 cb.depth = depth;
00104 cb.size = size;
00105 for (i = 0; i < size; i++) {
00106 unsigned mask_bits = get_bits(gb, 4);
00107 unsigned color0 = get_bits(gb, 15);
00108 unsigned color1 = get_bits(gb, 15);
00109
00110 for (j = 0; j < 4; j++) {
00111 if (mask_bits & (1 << j))
00112 cb.blocks[i].pixels[j] = color1;
00113 else
00114 cb.blocks[i].pixels[j] = color0;
00115 }
00116 }
00117 return cb;
00118 }
00119
00120 static unsigned decode_skip_count(GetBitContext* gb)
00121 {
00122 unsigned value;
00123
00124
00125 if (!can_safely_read(gb, 1))
00126 return -1;
00127 value = get_bits1(gb);
00128 if (!value)
00129 return value;
00130
00131 value += get_bits(gb, 3);
00132 if (value != (1 + ((1 << 3) - 1)))
00133 return value;
00134
00135 value += get_bits(gb, 7);
00136 if (value != (1 + ((1 << 3) - 1)) + ((1 << 7) - 1))
00137 return value;
00138
00139 return value + get_bits(gb, 12);
00140 }
00141
00142 static MacroBlock decode_macroblock(Escape124Context* s, GetBitContext* gb,
00143 int* codebook_index, int superblock_index)
00144 {
00145
00146
00147 unsigned block_index, depth;
00148
00149 if (get_bits1(gb)) {
00150 static const char transitions[3][2] = { {2, 1}, {0, 2}, {1, 0} };
00151 *codebook_index = transitions[*codebook_index][get_bits1(gb)];
00152 }
00153
00154 depth = s->codebooks[*codebook_index].depth;
00155
00156
00157
00158
00159 block_index = depth ? get_bits(gb, depth) : 0;
00160
00161 if (*codebook_index == 1) {
00162 block_index += superblock_index << s->codebooks[1].depth;
00163 }
00164
00165
00166
00167 if (block_index >= s->codebooks[*codebook_index].size)
00168 return (MacroBlock) { { 0 } };
00169
00170 return s->codebooks[*codebook_index].blocks[block_index];
00171 }
00172
00173 static void insert_mb_into_sb(SuperBlock* sb, MacroBlock mb, unsigned index) {
00174
00175 uint32_t *dst = sb->pixels32 + index + (index & -4);
00176
00177
00178 dst[0] = mb.pixels32[0];
00179 dst[4] = mb.pixels32[1];
00180 }
00181
00182 static void copy_superblock(uint16_t* dest, unsigned dest_stride,
00183 uint16_t* src, unsigned src_stride)
00184 {
00185 unsigned y;
00186 if (src)
00187 for (y = 0; y < 8; y++)
00188 memcpy(dest + y * dest_stride, src + y * src_stride,
00189 sizeof(uint16_t) * 8);
00190 else
00191 for (y = 0; y < 8; y++)
00192 memset(dest + y * dest_stride, 0, sizeof(uint16_t) * 8);
00193 }
00194
00195 static const uint16_t mask_matrix[] = {0x1, 0x2, 0x10, 0x20,
00196 0x4, 0x8, 0x40, 0x80,
00197 0x100, 0x200, 0x1000, 0x2000,
00198 0x400, 0x800, 0x4000, 0x8000};
00199
00200 static int escape124_decode_frame(AVCodecContext *avctx,
00201 void *data, int *got_frame,
00202 AVPacket *avpkt)
00203 {
00204 const uint8_t *buf = avpkt->data;
00205 int buf_size = avpkt->size;
00206 Escape124Context *s = avctx->priv_data;
00207
00208 GetBitContext gb;
00209 unsigned frame_flags, frame_size;
00210 unsigned i;
00211
00212 unsigned superblock_index, cb_index = 1,
00213 superblock_col_index = 0,
00214 superblocks_per_row = avctx->width / 8, skip = -1;
00215
00216 uint16_t* old_frame_data, *new_frame_data;
00217 unsigned old_stride, new_stride;
00218
00219 AVFrame new_frame;
00220 avcodec_get_frame_defaults(&new_frame);
00221
00222 init_get_bits(&gb, buf, buf_size * 8);
00223
00224
00225
00226 if (!can_safely_read(&gb, 64))
00227 return -1;
00228
00229 frame_flags = get_bits_long(&gb, 32);
00230 frame_size = get_bits_long(&gb, 32);
00231
00232
00233
00234 if (!(frame_flags & 0x114) || !(frame_flags & 0x7800000)) {
00235 av_log(NULL, AV_LOG_DEBUG, "Skipping frame\n");
00236
00237 *got_frame = 1;
00238 *(AVFrame*)data = s->frame;
00239
00240 return frame_size;
00241 }
00242
00243 for (i = 0; i < 3; i++) {
00244 if (frame_flags & (1 << (17 + i))) {
00245 unsigned cb_depth, cb_size;
00246 if (i == 2) {
00247
00248
00249 cb_size = get_bits_long(&gb, 20);
00250 cb_depth = av_log2(cb_size - 1) + 1;
00251 } else {
00252 cb_depth = get_bits(&gb, 4);
00253 if (i == 0) {
00254
00255
00256 cb_size = 1 << cb_depth;
00257 } else {
00258
00259
00260
00261 cb_size = s->num_superblocks << cb_depth;
00262 }
00263 }
00264 av_free(s->codebooks[i].blocks);
00265 s->codebooks[i] = unpack_codebook(&gb, cb_depth, cb_size);
00266 if (!s->codebooks[i].blocks)
00267 return -1;
00268 }
00269 }
00270
00271 new_frame.reference = 3;
00272 if (ff_get_buffer(avctx, &new_frame)) {
00273 av_log(avctx, AV_LOG_ERROR, "get_buffer() failed\n");
00274 return -1;
00275 }
00276
00277 new_frame_data = (uint16_t*)new_frame.data[0];
00278 new_stride = new_frame.linesize[0] / 2;
00279 old_frame_data = (uint16_t*)s->frame.data[0];
00280 old_stride = s->frame.linesize[0] / 2;
00281
00282 for (superblock_index = 0; superblock_index < s->num_superblocks;
00283 superblock_index++) {
00284 MacroBlock mb;
00285 SuperBlock sb;
00286 unsigned multi_mask = 0;
00287
00288 if (skip == -1) {
00289
00290
00291 skip = decode_skip_count(&gb);
00292 }
00293
00294 if (skip) {
00295 copy_superblock(new_frame_data, new_stride,
00296 old_frame_data, old_stride);
00297 } else {
00298 copy_superblock(sb.pixels, 8,
00299 old_frame_data, old_stride);
00300
00301 while (can_safely_read(&gb, 1) && !get_bits1(&gb)) {
00302 unsigned mask;
00303 mb = decode_macroblock(s, &gb, &cb_index, superblock_index);
00304 mask = get_bits(&gb, 16);
00305 multi_mask |= mask;
00306 for (i = 0; i < 16; i++) {
00307 if (mask & mask_matrix[i]) {
00308 insert_mb_into_sb(&sb, mb, i);
00309 }
00310 }
00311 }
00312
00313 if (can_safely_read(&gb, 1) && !get_bits1(&gb)) {
00314 unsigned inv_mask = get_bits(&gb, 4);
00315 for (i = 0; i < 4; i++) {
00316 if (inv_mask & (1 << i)) {
00317 multi_mask ^= 0xF << i*4;
00318 } else {
00319 multi_mask ^= get_bits(&gb, 4) << i*4;
00320 }
00321 }
00322
00323 for (i = 0; i < 16; i++) {
00324 if (multi_mask & mask_matrix[i]) {
00325 if (!can_safely_read(&gb, 1))
00326 break;
00327 mb = decode_macroblock(s, &gb, &cb_index,
00328 superblock_index);
00329 insert_mb_into_sb(&sb, mb, i);
00330 }
00331 }
00332 } else if (frame_flags & (1 << 16)) {
00333 while (can_safely_read(&gb, 1) && !get_bits1(&gb)) {
00334 mb = decode_macroblock(s, &gb, &cb_index, superblock_index);
00335 insert_mb_into_sb(&sb, mb, get_bits(&gb, 4));
00336 }
00337 }
00338
00339 copy_superblock(new_frame_data, new_stride, sb.pixels, 8);
00340 }
00341
00342 superblock_col_index++;
00343 new_frame_data += 8;
00344 if (old_frame_data)
00345 old_frame_data += 8;
00346 if (superblock_col_index == superblocks_per_row) {
00347 new_frame_data += new_stride * 8 - superblocks_per_row * 8;
00348 if (old_frame_data)
00349 old_frame_data += old_stride * 8 - superblocks_per_row * 8;
00350 superblock_col_index = 0;
00351 }
00352 skip--;
00353 }
00354
00355 av_log(NULL, AV_LOG_DEBUG,
00356 "Escape sizes: %i, %i, %i\n",
00357 frame_size, buf_size, get_bits_count(&gb) / 8);
00358
00359 if (s->frame.data[0])
00360 avctx->release_buffer(avctx, &s->frame);
00361
00362 *(AVFrame*)data = s->frame = new_frame;
00363 *got_frame = 1;
00364
00365 return frame_size;
00366 }
00367
00368
00369 AVCodec ff_escape124_decoder = {
00370 .name = "escape124",
00371 .type = AVMEDIA_TYPE_VIDEO,
00372 .id = AV_CODEC_ID_ESCAPE124,
00373 .priv_data_size = sizeof(Escape124Context),
00374 .init = escape124_decode_init,
00375 .close = escape124_decode_close,
00376 .decode = escape124_decode_frame,
00377 .capabilities = CODEC_CAP_DR1,
00378 .long_name = NULL_IF_CONFIG_SMALL("Escape 124"),
00379 };