📄 png.c
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} if (s->zstream.avail_out == 0) { if (!(s->state & PNG_ALLIMAGE)) { png_handle_row(s); } s->zstream.avail_out = s->crow_size; s->zstream.next_out = s->crow_buf; } } length -= buf_size; } return 0;}static int png_read(ByteIOContext *f, int (*alloc_cb)(void *opaque, AVImageInfo *info), void *opaque){ AVImageInfo info1, *info = &info1; PNGDecodeState s1, *s = &s1; uint32_t tag, length; int ret, crc; uint8_t buf[8]; /* check signature */ ret = get_buffer(f, buf, 8); if (ret != 8) return -1; if (memcmp(buf, pngsig, 8) != 0) return -1; memset(s, 0, sizeof(PNGDecodeState)); /* init the zlib */ s->zstream.zalloc = png_zalloc; s->zstream.zfree = png_zfree; s->zstream.opaque = NULL; ret = inflateInit(&s->zstream); if (ret != Z_OK) return -1; for(;;) { if (url_feof(f)) goto fail; length = get_be32(f); if (length > 0x7fffffff) goto fail; tag = get_le32(f);#ifdef DEBUG printf("png: tag=%c%c%c%c length=%u\n", (tag & 0xff), ((tag >> 8) & 0xff), ((tag >> 16) & 0xff), ((tag >> 24) & 0xff), length);#endif switch(tag) { case MKTAG('I', 'H', 'D', 'R'): if (length != 13) goto fail; s->width = get_be32(f); s->height = get_be32(f); s->bit_depth = get_byte(f); s->color_type = get_byte(f); s->compression_type = get_byte(f); s->filter_type = get_byte(f); s->interlace_type = get_byte(f); crc = get_be32(f); s->state |= PNG_IHDR;#ifdef DEBUG printf("width=%d height=%d depth=%d color_type=%d compression_type=%d filter_type=%d interlace_type=%d\n", s->width, s->height, s->bit_depth, s->color_type, s->compression_type, s->filter_type, s->interlace_type);#endif break; case MKTAG('I', 'D', 'A', 'T'): if (!(s->state & PNG_IHDR)) goto fail; if (!(s->state & PNG_IDAT)) { /* init image info */ info->width = s->width; info->height = s->height; info->interleaved = (s->interlace_type != 0); s->channels = png_get_nb_channels(s->color_type); s->bits_per_pixel = s->bit_depth * s->channels; s->bpp = (s->bits_per_pixel + 7) >> 3; s->row_size = (info->width * s->bits_per_pixel + 7) >> 3; if (s->bit_depth == 8 && s->color_type == PNG_COLOR_TYPE_RGB) { info->pix_fmt = PIX_FMT_RGB24; } else if (s->bit_depth == 8 && s->color_type == PNG_COLOR_TYPE_RGB_ALPHA) { info->pix_fmt = PIX_FMT_RGBA32; } else if (s->bit_depth == 8 && s->color_type == PNG_COLOR_TYPE_GRAY) { info->pix_fmt = PIX_FMT_GRAY8; } else if (s->bit_depth == 1 && s->color_type == PNG_COLOR_TYPE_GRAY) { info->pix_fmt = PIX_FMT_MONOBLACK; } else if (s->color_type == PNG_COLOR_TYPE_PALETTE) { info->pix_fmt = PIX_FMT_PAL8; } else { goto fail; } ret = alloc_cb(opaque, info); if (ret) goto the_end; /* compute the compressed row size */ if (!s->interlace_type) { s->crow_size = s->row_size + 1; } else { s->pass = 0; s->pass_row_size = png_pass_row_size(s->pass, s->bits_per_pixel, s->width); s->crow_size = s->pass_row_size + 1; }#ifdef DEBUG printf("row_size=%d crow_size =%d\n", s->row_size, s->crow_size);#endif s->image_buf = info->pict.data[0]; s->image_linesize = info->pict.linesize[0]; /* copy the palette if needed */ if (s->color_type == PNG_COLOR_TYPE_PALETTE) memcpy(info->pict.data[1], s->palette, 256 * sizeof(uint32_t)); /* empty row is used if differencing to the first row */ s->last_row = av_mallocz(s->row_size); if (!s->last_row) goto fail; if (s->interlace_type || s->color_type == PNG_COLOR_TYPE_RGB_ALPHA) { s->tmp_row = av_malloc(s->row_size); if (!s->tmp_row) goto fail; } /* compressed row */ s->crow_buf = av_malloc(s->row_size + 1); if (!s->crow_buf) goto fail; s->zstream.avail_out = s->crow_size; s->zstream.next_out = s->crow_buf; } s->state |= PNG_IDAT; if (png_decode_idat(s, f, length) < 0) goto fail; /* skip crc */ crc = get_be32(f); break; case MKTAG('P', 'L', 'T', 'E'): { int n, i, r, g, b; if ((length % 3) != 0 || length > 256 * 3) goto skip_tag; /* read the palette */ n = length / 3; for(i=0;i<n;i++) { r = get_byte(f); g = get_byte(f); b = get_byte(f); s->palette[i] = (0xff << 24) | (r << 16) | (g << 8) | b; } for(;i<256;i++) { s->palette[i] = (0xff << 24); } s->state |= PNG_PLTE; crc = get_be32(f); } break; case MKTAG('t', 'R', 'N', 'S'): { int v, i; /* read the transparency. XXX: Only palette mode supported */ if (s->color_type != PNG_COLOR_TYPE_PALETTE || length > 256 || !(s->state & PNG_PLTE)) goto skip_tag; for(i=0;i<length;i++) { v = get_byte(f); s->palette[i] = (s->palette[i] & 0x00ffffff) | (v << 24); } crc = get_be32(f); } break; case MKTAG('I', 'E', 'N', 'D'): if (!(s->state & PNG_ALLIMAGE)) goto fail; crc = get_be32(f); goto exit_loop; default: /* skip tag */ skip_tag: url_fskip(f, length + 4); break; } } exit_loop: ret = 0; the_end: inflateEnd(&s->zstream); av_free(s->crow_buf); av_free(s->last_row); av_free(s->tmp_row); return ret; fail: ret = -1; goto the_end;}static void png_write_chunk(ByteIOContext *f, uint32_t tag, const uint8_t *buf, int length){ uint32_t crc; uint8_t tagbuf[4]; put_be32(f, length); crc = crc32(0, Z_NULL, 0); tagbuf[0] = tag; tagbuf[1] = tag >> 8; tagbuf[2] = tag >> 16; tagbuf[3] = tag >> 24; crc = crc32(crc, tagbuf, 4); put_le32(f, tag); if (length > 0) { crc = crc32(crc, buf, length); put_buffer(f, buf, length); } put_be32(f, crc);}/* XXX: use avcodec generic function ? */static void to_be32(uint8_t *p, uint32_t v){ p[0] = v >> 24; p[1] = v >> 16; p[2] = v >> 8; p[3] = v;}typedef struct PNGEncodeState { ByteIOContext *f; z_stream zstream; uint8_t buf[IOBUF_SIZE];} PNGEncodeState;/* XXX: do filtering */static int png_write_row(PNGEncodeState *s, const uint8_t *data, int size){ int ret; s->zstream.avail_in = size; s->zstream.next_in = (uint8_t *)data; while (s->zstream.avail_in > 0) { ret = deflate(&s->zstream, Z_NO_FLUSH); if (ret != Z_OK) return -1; if (s->zstream.avail_out == 0) { png_write_chunk(s->f, MKTAG('I', 'D', 'A', 'T'), s->buf, IOBUF_SIZE); s->zstream.avail_out = IOBUF_SIZE; s->zstream.next_out = s->buf; } } return 0;}static int png_write(ByteIOContext *f, AVImageInfo *info){ PNGEncodeState s1, *s = &s1; int bit_depth, color_type, y, len, row_size, ret, is_progressive; int bits_per_pixel, pass_row_size; uint8_t *ptr; uint8_t *crow_buf = NULL; uint8_t *tmp_buf = NULL; s->f = f; is_progressive = info->interleaved; switch(info->pix_fmt) { case PIX_FMT_RGBA32: bit_depth = 8; color_type = PNG_COLOR_TYPE_RGB_ALPHA; break; case PIX_FMT_RGB24: bit_depth = 8; color_type = PNG_COLOR_TYPE_RGB; break; case PIX_FMT_GRAY8: bit_depth = 8; color_type = PNG_COLOR_TYPE_GRAY; break; case PIX_FMT_MONOBLACK: bit_depth = 1; color_type = PNG_COLOR_TYPE_GRAY; break; case PIX_FMT_PAL8: bit_depth = 8; color_type = PNG_COLOR_TYPE_PALETTE; break; default: return -1; } bits_per_pixel = png_get_nb_channels(color_type) * bit_depth; row_size = (info->width * bits_per_pixel + 7) >> 3; s->zstream.zalloc = png_zalloc; s->zstream.zfree = png_zfree; s->zstream.opaque = NULL; ret = deflateInit2(&s->zstream, Z_DEFAULT_COMPRESSION, Z_DEFLATED, 15, 8, Z_DEFAULT_STRATEGY); if (ret != Z_OK) return -1; crow_buf = av_malloc(row_size + 1); if (!crow_buf) goto fail; if (is_progressive) { tmp_buf = av_malloc(row_size + 1); if (!tmp_buf) goto fail; } /* write png header */ put_buffer(f, pngsig, 8); to_be32(s->buf, info->width); to_be32(s->buf + 4, info->height); s->buf[8] = bit_depth; s->buf[9] = color_type; s->buf[10] = 0; /* compression type */ s->buf[11] = 0; /* filter type */ s->buf[12] = is_progressive; /* interlace type */ png_write_chunk(f, MKTAG('I', 'H', 'D', 'R'), s->buf, 13); /* put the palette if needed */ if (color_type == PNG_COLOR_TYPE_PALETTE) { int has_alpha, alpha, i; unsigned int v; uint32_t *palette; uint8_t *alpha_ptr; palette = (uint32_t *)info->pict.data[1]; ptr = s->buf; alpha_ptr = s->buf + 256 * 3; has_alpha = 0; for(i = 0; i < 256; i++) { v = palette[i]; alpha = v >> 24; if (alpha != 0xff) has_alpha = 1; *alpha_ptr++ = alpha; ptr[0] = v >> 16; ptr[1] = v >> 8; ptr[2] = v; ptr += 3; } png_write_chunk(f, MKTAG('P', 'L', 'T', 'E'), s->buf, 256 * 3); if (has_alpha) { png_write_chunk(f, MKTAG('t', 'R', 'N', 'S'), s->buf + 256 * 3, 256); } } /* now put each row */ s->zstream.avail_out = IOBUF_SIZE; s->zstream.next_out = s->buf; if (is_progressive) { uint8_t *ptr1; int pass; for(pass = 0; pass < NB_PASSES; pass++) { /* NOTE: a pass is completely omited if no pixels would be output */ pass_row_size = png_pass_row_size(pass, bits_per_pixel, info->width); if (pass_row_size > 0) { for(y = 0; y < info->height; y++) { if ((png_pass_ymask[pass] << (y & 7)) & 0x80) { ptr = info->pict.data[0] + y * info->pict.linesize[0]; if (color_type == PNG_COLOR_TYPE_RGB_ALPHA) { convert_from_rgba32(tmp_buf, ptr, info->width); ptr1 = tmp_buf; } else { ptr1 = ptr; } png_get_interlaced_row(crow_buf + 1, pass_row_size, bits_per_pixel, pass, ptr1, info->width); crow_buf[0] = PNG_FILTER_VALUE_NONE; png_write_row(s, crow_buf, pass_row_size + 1); } } } } } else { for(y = 0; y < info->height; y++) { ptr = info->pict.data[0] + y * info->pict.linesize[0]; if (color_type == PNG_COLOR_TYPE_RGB_ALPHA) convert_from_rgba32(crow_buf + 1, ptr, info->width); else memcpy(crow_buf + 1, ptr, row_size); crow_buf[0] = PNG_FILTER_VALUE_NONE; png_write_row(s, crow_buf, row_size + 1); } } /* compress last bytes */ for(;;) { ret = deflate(&s->zstream, Z_FINISH); if (ret == Z_OK || ret == Z_STREAM_END) { len = IOBUF_SIZE - s->zstream.avail_out; if (len > 0) { png_write_chunk(f, MKTAG('I', 'D', 'A', 'T'), s->buf, len); } s->zstream.avail_out = IOBUF_SIZE; s->zstream.next_out = s->buf; if (ret == Z_STREAM_END) break; } else { goto fail; } } png_write_chunk(f, MKTAG('I', 'E', 'N', 'D'), NULL, 0); put_flush_packet(f); ret = 0; the_end: av_free(crow_buf); av_free(tmp_buf); deflateEnd(&s->zstream); return ret; fail: ret = -1; goto the_end;}AVImageFormat png_image_format = { "png", "png", png_probe, png_read, (1 << PIX_FMT_RGBA32) | (1 << PIX_FMT_RGB24) | (1 << PIX_FMT_GRAY8) | (1 << PIX_FMT_MONOBLACK) | (1 << PIX_FMT_PAL8), png_write, AVIMAGE_INTERLEAVED,};#endif
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