libavcodec/iff.c
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 /*
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  * IFF ACBM/ANIM/DEEP/ILBM/PBM/RGB8/RGBN bitmap decoder
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  * Copyright (c) 2010 Peter Ross <pross@xvid.org>
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  * Copyright (c) 2010 Sebastian Vater <cdgs.basty@googlemail.com>
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  * Copyright (c) 2016 Paul B Mahol
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  *
  * This file is part of FFmpeg.
  *
  * FFmpeg is free software; you can redistribute it and/or
  * modify it under the terms of the GNU Lesser General Public
  * License as published by the Free Software Foundation; either
  * version 2.1 of the License, or (at your option) any later version.
  *
  * FFmpeg is distributed in the hope that it will be useful,
  * but WITHOUT ANY WARRANTY; without even the implied warranty of
  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
  * Lesser General Public License for more details.
  *
  * You should have received a copy of the GNU Lesser General Public
  * License along with FFmpeg; if not, write to the Free Software
  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  */
 
 /**
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  * @file
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  * IFF ACBM/ANIM/DEEP/ILBM/PBM/RGB8/RGBN bitmap decoder
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  */
 
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 #include <stdint.h>
 
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 #include "libavutil/imgutils.h"
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 #include "bytestream.h"
 #include "avcodec.h"
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 #include "internal.h"
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 #include "mathops.h"
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 // TODO: masking bits
 typedef enum {
     MASK_NONE,
     MASK_HAS_MASK,
     MASK_HAS_TRANSPARENT_COLOR,
     MASK_LASSO
 } mask_type;
 
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 typedef struct IffContext {
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     AVFrame *frame;
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     int planesize;
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     uint8_t * planebuf;
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     uint8_t * ham_buf;      ///< temporary buffer for planar to chunky conversation
     uint32_t *ham_palbuf;   ///< HAM decode table
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     uint32_t *mask_buf;     ///< temporary buffer for palette indices
     uint32_t *mask_palbuf;  ///< masking palette table
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     unsigned  compression;  ///< delta compression method used
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     unsigned  is_short;     ///< short compression method used
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     unsigned  is_interlaced;///< video is interlaced
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     unsigned  is_brush;     ///< video is in ANBR format
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     unsigned  bpp;          ///< bits per plane to decode (differs from bits_per_coded_sample if HAM)
     unsigned  ham;          ///< 0 if non-HAM or number of hold bits (6 for bpp > 6, 4 otherwise)
     unsigned  flags;        ///< 1 for EHB, 0 is no extra half darkening
     unsigned  transparency; ///< TODO: transparency color index in palette
     unsigned  masking;      ///< TODO: masking method used
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     int init; // 1 if buffer and palette data already initialized, 0 otherwise
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     int16_t   tvdc[16];     ///< TVDC lookup table
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     GetByteContext gb;
     uint8_t *video[2];
     unsigned video_size;
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     uint32_t *pal;
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 } IffContext;
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 #define LUT8_PART(plane, v)                             \
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     AV_LE2NE64C(UINT64_C(0x0000000)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x1000000)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x0010000)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x1010000)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x0000100)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x1000100)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x0010100)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x1010100)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x0000001)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x1000001)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x0010001)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x1010001)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x0000101)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x1000101)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x0010101)<<32 | v) << plane,  \
     AV_LE2NE64C(UINT64_C(0x1010101)<<32 | v) << plane
0a9cb385
 
 #define LUT8(plane) {                           \
     LUT8_PART(plane, 0x0000000),                \
     LUT8_PART(plane, 0x1000000),                \
     LUT8_PART(plane, 0x0010000),                \
     LUT8_PART(plane, 0x1010000),                \
     LUT8_PART(plane, 0x0000100),                \
     LUT8_PART(plane, 0x1000100),                \
     LUT8_PART(plane, 0x0010100),                \
     LUT8_PART(plane, 0x1010100),                \
     LUT8_PART(plane, 0x0000001),                \
     LUT8_PART(plane, 0x1000001),                \
     LUT8_PART(plane, 0x0010001),                \
     LUT8_PART(plane, 0x1010001),                \
     LUT8_PART(plane, 0x0000101),                \
     LUT8_PART(plane, 0x1000101),                \
     LUT8_PART(plane, 0x0010101),                \
     LUT8_PART(plane, 0x1010101),                \
 }
 
 // 8 planes * 8-bit mask
 static const uint64_t plane8_lut[8][256] = {
     LUT8(0), LUT8(1), LUT8(2), LUT8(3),
     LUT8(4), LUT8(5), LUT8(6), LUT8(7),
 };
 
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 #define LUT32(plane) {                                \
              0,          0,          0,          0,   \
              0,          0,          0, 1 << plane,   \
              0,          0, 1 << plane,          0,   \
              0,          0, 1 << plane, 1 << plane,   \
              0, 1 << plane,          0,          0,   \
              0, 1 << plane,          0, 1 << plane,   \
              0, 1 << plane, 1 << plane,          0,   \
              0, 1 << plane, 1 << plane, 1 << plane,   \
     1 << plane,          0,          0,          0,   \
     1 << plane,          0,          0, 1 << plane,   \
     1 << plane,          0, 1 << plane,          0,   \
     1 << plane,          0, 1 << plane, 1 << plane,   \
     1 << plane, 1 << plane,          0,          0,   \
     1 << plane, 1 << plane,          0, 1 << plane,   \
     1 << plane, 1 << plane, 1 << plane,          0,   \
     1 << plane, 1 << plane, 1 << plane, 1 << plane,   \
 }
 
 // 32 planes * 4-bit mask * 4 lookup tables each
 static const uint32_t plane32_lut[32][16*4] = {
     LUT32( 0), LUT32( 1), LUT32( 2), LUT32( 3),
     LUT32( 4), LUT32( 5), LUT32( 6), LUT32( 7),
     LUT32( 8), LUT32( 9), LUT32(10), LUT32(11),
     LUT32(12), LUT32(13), LUT32(14), LUT32(15),
     LUT32(16), LUT32(17), LUT32(18), LUT32(19),
     LUT32(20), LUT32(21), LUT32(22), LUT32(23),
     LUT32(24), LUT32(25), LUT32(26), LUT32(27),
     LUT32(28), LUT32(29), LUT32(30), LUT32(31),
 };
 
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 // Gray to RGB, required for palette table of grayscale images with bpp < 8
 static av_always_inline uint32_t gray2rgb(const uint32_t x) {
     return x << 16 | x << 8 | x;
 }
 
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 /**
  * Convert CMAP buffer (stored in extradata) to lavc palette format
  */
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 static int cmap_read_palette(AVCodecContext *avctx, uint32_t *pal)
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 {
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     IffContext *s = avctx->priv_data;
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     int count, i;
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     const uint8_t *const palette = avctx->extradata + AV_RB16(avctx->extradata);
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     int palette_size = avctx->extradata_size - AV_RB16(avctx->extradata);
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     if (avctx->bits_per_coded_sample > 8) {
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         av_log(avctx, AV_LOG_ERROR, "bits_per_coded_sample > 8 not supported\n");
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         return AVERROR_INVALIDDATA;
     }
 
     count = 1 << avctx->bits_per_coded_sample;
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     // If extradata is smaller than actually needed, fill the remaining with black.
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     count = FFMIN(palette_size / 3, count);
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     if (count) {
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         for (i = 0; i < count; i++)
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             pal[i] = 0xFF000000 | AV_RB24(palette + i*3);
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         if (s->flags && count >= 32) { // EHB
             for (i = 0; i < 32; i++)
                 pal[i + 32] = 0xFF000000 | (AV_RB24(palette + i*3) & 0xFEFEFE) >> 1;
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             count = FFMAX(count, 64);
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         }
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     } else { // Create gray-scale color palette for bps < 8
         count = 1 << avctx->bits_per_coded_sample;
 
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         for (i = 0; i < count; i++)
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             pal[i] = 0xFF000000 | gray2rgb((i * 255) >> avctx->bits_per_coded_sample);
     }
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     if (s->masking == MASK_HAS_MASK) {
         memcpy(pal + (1 << avctx->bits_per_coded_sample), pal, count * 4);
         for (i = 0; i < count; i++)
             pal[i] &= 0xFFFFFF;
     } else if (s->masking == MASK_HAS_TRANSPARENT_COLOR &&
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         s->transparency < 1 << avctx->bits_per_coded_sample)
         pal[s->transparency] &= 0xFFFFFF;
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     return 0;
 }
 
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 /**
  * Extracts the IFF extra context and updates internal
  * decoder structures.
  *
  * @param avctx the AVCodecContext where to extract extra context to
  * @param avpkt the AVPacket to extract extra context from or NULL to use avctx
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  * @return >= 0 in case of success, a negative error code otherwise
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  */
 static int extract_header(AVCodecContext *const avctx,
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                           const AVPacket *const avpkt)
 {
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     IffContext *s = avctx->priv_data;
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     const uint8_t *buf;
     unsigned buf_size = 0;
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     int i, palette_size;
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     if (avctx->extradata_size < 2) {
         av_log(avctx, AV_LOG_ERROR, "not enough extradata\n");
         return AVERROR_INVALIDDATA;
     }
     palette_size = avctx->extradata_size - AV_RB16(avctx->extradata);
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     if (avpkt && avctx->codec_tag == MKTAG('A', 'N', 'I', 'M')) {
         uint32_t chunk_id;
         uint64_t data_size;
         GetByteContext *gb = &s->gb;
 
         bytestream2_skip(gb, 4);
         while (bytestream2_get_bytes_left(gb) >= 1) {
             chunk_id  = bytestream2_get_le32(gb);
             data_size = bytestream2_get_be32(gb);
 
             if (chunk_id == MKTAG('B', 'M', 'H', 'D')) {
                 bytestream2_skip(gb, data_size + (data_size & 1));
             } else if (chunk_id == MKTAG('A', 'N', 'H', 'D')) {
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                 unsigned extra;
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                 if (data_size < 40)
                     return AVERROR_INVALIDDATA;
 
                 s->compression = (bytestream2_get_byte(gb) << 8) | (s->compression & 0xFF);
                 bytestream2_skip(gb, 19);
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                 extra = bytestream2_get_be32(gb);
                 s->is_short = !(extra & 1);
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                 s->is_brush = extra == 2;
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                 s->is_interlaced = !!(extra & 0x40);
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                 data_size -= 24;
                 bytestream2_skip(gb, data_size + (data_size & 1));
             } else if (chunk_id == MKTAG('D', 'L', 'T', 'A') ||
                        chunk_id == MKTAG('B', 'O', 'D', 'Y')) {
                 if (chunk_id == MKTAG('B','O','D','Y'))
                     s->compression &= 0xFF;
                 break;
             } else if (chunk_id == MKTAG('C', 'M', 'A', 'P')) {
                 int count = data_size / 3;
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                 uint32_t *pal = s->pal;
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                 if (count > 256)
                     return AVERROR_INVALIDDATA;
                 if (s->ham) {
                     for (i = 0; i < count; i++)
                         pal[i] = 0xFF000000 | bytestream2_get_le24(gb);
                 } else {
                     for (i = 0; i < count; i++)
                         pal[i] = 0xFF000000 | bytestream2_get_be24(gb);
                 }
                 bytestream2_skip(gb, data_size & 1);
             } else {
                 bytestream2_skip(gb, data_size + (data_size&1));
             }
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         }
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     } else if (!avpkt) {
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         buf = avctx->extradata;
         buf_size = bytestream_get_be16(&buf);
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         if (buf_size <= 1 || palette_size < 0) {
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             av_log(avctx, AV_LOG_ERROR,
                    "Invalid palette size received: %u -> palette data offset: %d\n",
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                    buf_size, palette_size);
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             return AVERROR_INVALIDDATA;
         }
     }
 
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     if (buf_size >= 41) {
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         s->compression  = bytestream_get_byte(&buf);
         s->bpp          = bytestream_get_byte(&buf);
         s->ham          = bytestream_get_byte(&buf);
         s->flags        = bytestream_get_byte(&buf);
         s->transparency = bytestream_get_be16(&buf);
         s->masking      = bytestream_get_byte(&buf);
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         for (i = 0; i < 16; i++)
             s->tvdc[i] = bytestream_get_be16(&buf);
 
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         if (s->masking == MASK_HAS_MASK) {
4413a842
             if (s->bpp >= 8 && !s->ham) {
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                 avctx->pix_fmt = AV_PIX_FMT_RGB32;
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                 av_freep(&s->mask_buf);
                 av_freep(&s->mask_palbuf);
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                 s->mask_buf = av_malloc((s->planesize * 32) + AV_INPUT_BUFFER_PADDING_SIZE);
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                 if (!s->mask_buf)
                     return AVERROR(ENOMEM);
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                 if (s->bpp > 16) {
                     av_log(avctx, AV_LOG_ERROR, "bpp %d too large for palette\n", s->bpp);
                     av_freep(&s->mask_buf);
                     return AVERROR(ENOMEM);
                 }
29d147c9
                 s->mask_palbuf = av_malloc((2 << s->bpp) * sizeof(uint32_t) + AV_INPUT_BUFFER_PADDING_SIZE);
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                 if (!s->mask_palbuf) {
                     av_freep(&s->mask_buf);
                     return AVERROR(ENOMEM);
                 }
             }
             s->bpp++;
         } else if (s->masking != MASK_NONE && s->masking != MASK_HAS_TRANSPARENT_COLOR) {
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             av_log(avctx, AV_LOG_ERROR, "Masking not supported\n");
             return AVERROR_PATCHWELCOME;
         }
         if (!s->bpp || s->bpp > 32) {
             av_log(avctx, AV_LOG_ERROR, "Invalid number of bitplanes: %u\n", s->bpp);
             return AVERROR_INVALIDDATA;
         } else if (s->ham >= 8) {
             av_log(avctx, AV_LOG_ERROR, "Invalid number of hold bits for HAM: %u\n", s->ham);
             return AVERROR_INVALIDDATA;
         }
 
         av_freep(&s->ham_buf);
         av_freep(&s->ham_palbuf);
 
         if (s->ham) {
8b1171e9
             int i, count = FFMIN(palette_size / 3, 1 << s->ham);
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             int ham_count;
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             const uint8_t *const palette = avctx->extradata + AV_RB16(avctx->extradata);
69224582
 
29d147c9
             s->ham_buf = av_malloc((s->planesize * 8) + AV_INPUT_BUFFER_PADDING_SIZE);
18313287
             if (!s->ham_buf)
                 return AVERROR(ENOMEM);
 
69224582
             ham_count = 8 * (1 << s->ham);
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             s->ham_palbuf = av_malloc((ham_count << !!(s->masking == MASK_HAS_MASK)) * sizeof (uint32_t) + AV_INPUT_BUFFER_PADDING_SIZE);
18313287
             if (!s->ham_palbuf) {
                 av_freep(&s->ham_buf);
                 return AVERROR(ENOMEM);
             }
 
             if (count) { // HAM with color palette attached
                 // prefill with black and palette and set HAM take direct value mask to zero
                 memset(s->ham_palbuf, 0, (1 << s->ham) * 2 * sizeof (uint32_t));
                 for (i=0; i < count; i++) {
cc12a94c
                     s->ham_palbuf[i*2+1] = 0xFF000000 | AV_RL24(palette + i*3);
18313287
                 }
                 count = 1 << s->ham;
             } else { // HAM with grayscale color palette
                 count = 1 << s->ham;
                 for (i=0; i < count; i++) {
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                     s->ham_palbuf[i*2]   = 0xFF000000; // take direct color value from palette
                     s->ham_palbuf[i*2+1] = 0xFF000000 | av_le2ne32(gray2rgb((i * 255) >> s->ham));
18313287
                 }
             }
             for (i=0; i < count; i++) {
                 uint32_t tmp = i << (8 - s->ham);
                 tmp |= tmp >> s->ham;
cc12a94c
                 s->ham_palbuf[(i+count)*2]     = 0xFF00FFFF; // just modify blue color component
                 s->ham_palbuf[(i+count*2)*2]   = 0xFFFFFF00; // just modify red color component
                 s->ham_palbuf[(i+count*3)*2]   = 0xFFFF00FF; // just modify green color component
                 s->ham_palbuf[(i+count)*2+1]   = 0xFF000000 | tmp << 16;
                 s->ham_palbuf[(i+count*2)*2+1] = 0xFF000000 | tmp;
                 s->ham_palbuf[(i+count*3)*2+1] = 0xFF000000 | tmp << 8;
18313287
             }
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             if (s->masking == MASK_HAS_MASK) {
                 for (i = 0; i < ham_count; i++)
                     s->ham_palbuf[(1 << s->bpp) + i] = s->ham_palbuf[i] | 0xFF000000;
             }
18313287
         }
     }
 
     return 0;
 }
 
4b8a1941
 static av_cold int decode_end(AVCodecContext *avctx)
 {
     IffContext *s = avctx->priv_data;
     av_freep(&s->planebuf);
9f890a16
     av_freep(&s->ham_buf);
     av_freep(&s->ham_palbuf);
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     av_freep(&s->video[0]);
     av_freep(&s->video[1]);
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     av_freep(&s->pal);
4b8a1941
     return 0;
 }
 
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 static av_cold int decode_init(AVCodecContext *avctx)
 {
005caa34
     IffContext *s = avctx->priv_data;
0edfa79b
     int err;
005caa34
 
     if (avctx->bits_per_coded_sample <= 8) {
8f615269
         int palette_size;
 
         if (avctx->extradata_size >= 2)
             palette_size = avctx->extradata_size - AV_RB16(avctx->extradata);
         else
             palette_size = 0;
18313287
         avctx->pix_fmt = (avctx->bits_per_coded_sample < 8) ||
ac627b3d
                          (avctx->extradata_size >= 2 && palette_size) ? AV_PIX_FMT_PAL8 : AV_PIX_FMT_GRAY8;
005caa34
     } else if (avctx->bits_per_coded_sample <= 32) {
56090b5b
         if (avctx->codec_tag == MKTAG('R', 'G', 'B', '8')) {
7016aa65
             avctx->pix_fmt = AV_PIX_FMT_RGB32;
56090b5b
         } else if (avctx->codec_tag == MKTAG('R', 'G', 'B', 'N')) {
7016aa65
             avctx->pix_fmt = AV_PIX_FMT_RGB444;
56090b5b
         } else if (avctx->codec_tag != MKTAG('D', 'E', 'E', 'P')) {
8a4284ad
             if (avctx->bits_per_coded_sample == 24) {
25c75525
                 avctx->pix_fmt = AV_PIX_FMT_0BGR32;
8a4284ad
             } else if (avctx->bits_per_coded_sample == 32) {
                 avctx->pix_fmt = AV_PIX_FMT_BGR32;
             } else {
a9b42487
                 avpriv_request_sample(avctx, "unknown bits_per_coded_sample");
8a4284ad
                 return AVERROR_PATCHWELCOME;
             }
         }
005caa34
     } else {
         return AVERROR_INVALIDDATA;
     }
b9e06ddd
 
e16f217c
     if ((err = av_image_check_size(avctx->width, avctx->height, 0, avctx)))
59cca504
         return err;
cfdaee45
     s->planesize = FFALIGN(avctx->width, 16) >> 3; // Align plane size in bits to word-boundary
49633f9f
     s->planebuf  = av_malloc(s->planesize * avctx->height + AV_INPUT_BUFFER_PADDING_SIZE);
005caa34
     if (!s->planebuf)
         return AVERROR(ENOMEM);
b9e06ddd
 
18313287
     s->bpp = avctx->bits_per_coded_sample;
cb928fc4
 
     if (avctx->codec_tag == MKTAG('A', 'N', 'I', 'M')) {
         s->video_size = FFALIGN(avctx->width, 2) * avctx->height * s->bpp;
         s->video[0] = av_calloc(FFALIGN(avctx->width, 2) * avctx->height, s->bpp);
         s->video[1] = av_calloc(FFALIGN(avctx->width, 2) * avctx->height, s->bpp);
0ea03dbb
         s->pal = av_calloc(256, sizeof(*s->pal));
         if (!s->video[0] || !s->video[1] || !s->pal)
cb928fc4
             return AVERROR(ENOMEM);
4b8a1941
     }
18313287
 
     if ((err = extract_header(avctx, NULL)) < 0)
         return err;
b9e06ddd
 
522d3930
     return 0;
b9e06ddd
 }
 
 /**
687dc355
  * Decode interleaved plane buffer up to 8bpp
  * @param dst Destination buffer
  * @param buf Source buffer
  * @param buf_size
  * @param plane plane number to decode as
  */
9d45a32b
 static void decodeplane8(uint8_t *dst, const uint8_t *buf, int buf_size, int plane)
687dc355
 {
0a9cb385
     const uint64_t *lut = plane8_lut[plane];
fb6a72cd
     if (plane >= 8) {
0efcf16a
         av_log(NULL, AV_LOG_WARNING, "Ignoring extra planes beyond 8\n");
fb6a72cd
         return;
     }
2f955ea4
     do {
0a9cb385
         uint64_t v = AV_RN64A(dst) | lut[*buf++];
         AV_WN64A(dst, v);
79a9672d
         dst += 8;
2f955ea4
     } while (--buf_size);
687dc355
 }
 
 /**
  * Decode interleaved plane buffer up to 24bpp
005caa34
  * @param dst Destination buffer
  * @param buf Source buffer
  * @param buf_size
  * @param plane plane number to decode as
b9e06ddd
  */
dce2f7d3
 static void decodeplane32(uint32_t *dst, const uint8_t *buf, int buf_size, int plane)
687dc355
 {
dce2f7d3
     const uint32_t *lut = plane32_lut[plane];
     do {
         unsigned mask = (*buf >> 2) & ~3;
         dst[0] |= lut[mask++];
         dst[1] |= lut[mask++];
         dst[2] |= lut[mask++];
         dst[3] |= lut[mask];
3865ba7b
         mask    = (*buf++ << 2) & 0x3F;
dce2f7d3
         dst[4] |= lut[mask++];
         dst[5] |= lut[mask++];
         dst[6] |= lut[mask++];
         dst[7] |= lut[mask];
3865ba7b
         dst    += 8;
dce2f7d3
     } while (--buf_size);
b9e06ddd
 }
 
18313287
 #define DECODE_HAM_PLANE32(x)       \
     first       = buf[x] << 1;      \
     second      = buf[(x)+1] << 1;  \
     delta      &= pal[first++];     \
     delta      |= pal[first];       \
     dst[x]      = delta;            \
     delta      &= pal[second++];    \
     delta      |= pal[second];      \
     dst[(x)+1]  = delta
 
 /**
  * Converts one line of HAM6/8-encoded chunky buffer to 24bpp.
  *
  * @param dst the destination 24bpp buffer
  * @param buf the source 8bpp chunky buffer
  * @param pal the HAM decode table
  * @param buf_size the plane size in bytes
  */
 static void decode_ham_plane32(uint32_t *dst, const uint8_t  *buf,
                                const uint32_t *const pal, unsigned buf_size)
 {
fdd71cf0
     uint32_t delta = pal[1]; /* first palette entry */
18313287
     do {
         uint32_t first, second;
         DECODE_HAM_PLANE32(0);
         DECODE_HAM_PLANE32(2);
         DECODE_HAM_PLANE32(4);
         DECODE_HAM_PLANE32(6);
         buf += 8;
         dst += 8;
     } while (--buf_size);
 }
 
69224582
 static void lookup_pal_indicies(uint32_t *dst, const uint32_t *buf,
                          const uint32_t *const pal, unsigned width)
 {
     do {
         *dst++ = pal[*buf++];
     } while (--width);
 }
 
ec1d1afc
 /**
49bd8e4b
  * Decode one complete byterun1 encoded line.
ec1d1afc
  *
  * @param dst the destination buffer where to store decompressed bitstream
  * @param dst_size the destination plane size in bytes
  * @param buf the source byterun1 compressed bitstream
  * @param buf_end the EOF of source byterun1 compressed bitstream
  * @return number of consumed bytes in byterun1 compressed bitstream
3865ba7b
  */
ec1d1afc
 static int decode_byterun(uint8_t *dst, int dst_size,
cb928fc4
                           GetByteContext *gb)
3865ba7b
 {
ec1d1afc
     unsigned x;
cb928fc4
     for (x = 0; x < dst_size && bytestream2_get_bytes_left(gb) > 0;) {
ec1d1afc
         unsigned length;
cb928fc4
         const int8_t value = bytestream2_get_byte(gb);
ec1d1afc
         if (value >= 0) {
cb928fc4
             length = FFMIN3(value + 1, dst_size - x, bytestream2_get_bytes_left(gb));
             bytestream2_get_buffer(gb, dst + x, length);
c3ad63c6
             if (length < value + 1)
                 bytestream2_skip(gb, value + 1 - length);
ec1d1afc
         } else if (value > -128) {
4843227b
             length = FFMIN(-value + 1, dst_size - x);
cb928fc4
             memset(dst + x, bytestream2_get_byte(gb), length);
ec1d1afc
         } else { // noop
             continue;
         }
         x += length;
     }
b3f44eaf
     if (x < dst_size) {
         av_log(NULL, AV_LOG_WARNING, "decode_byterun ended before plane size\n");
         memset(dst+x, 0, dst_size - x);
     }
cb928fc4
     return bytestream2_tell(gb);
ec1d1afc
 }
 
49633f9f
 static int decode_byterun2(uint8_t *dst, int height, int line_size,
                            GetByteContext *gb)
 {
     GetByteContext cmds;
     unsigned count;
     int i, y_pos = 0, x_pos = 0;
 
     if (bytestream2_get_be32(gb) != MKBETAG('V', 'D', 'A', 'T'))
         return 0;
 
     bytestream2_skip(gb, 4);
     count = bytestream2_get_be16(gb) - 2;
     if (bytestream2_get_bytes_left(gb) < count)
         return 0;
 
     bytestream2_init(&cmds, gb->buffer, count);
     bytestream2_skip(gb, count);
 
     for (i = 0; i < count && x_pos < line_size; i++) {
         int8_t cmd = bytestream2_get_byte(&cmds);
         int l, r;
 
         if (cmd == 0) {
             l = bytestream2_get_be16(gb);
             while (l-- > 0 && x_pos < line_size) {
                 dst[x_pos + y_pos   * line_size    ] = bytestream2_get_byte(gb);
                 dst[x_pos + y_pos++ * line_size + 1] = bytestream2_get_byte(gb);
                 if (y_pos >= height) {
                     y_pos  = 0;
                     x_pos += 2;
                 }
             }
         } else if (cmd < 0) {
             l = -cmd;
             while (l-- > 0 && x_pos < line_size) {
                 dst[x_pos + y_pos   * line_size    ] = bytestream2_get_byte(gb);
                 dst[x_pos + y_pos++ * line_size + 1] = bytestream2_get_byte(gb);
                 if (y_pos >= height) {
                     y_pos  = 0;
                     x_pos += 2;
                 }
             }
         } else if (cmd == 1) {
             l = bytestream2_get_be16(gb);
             r = bytestream2_get_be16(gb);
             while (l-- > 0 && x_pos < line_size) {
                 dst[x_pos + y_pos   * line_size    ] = r >> 8;
                 dst[x_pos + y_pos++ * line_size + 1] = r & 0xFF;
                 if (y_pos >= height) {
                     y_pos  = 0;
                     x_pos += 2;
                 }
             }
         } else {
             l = cmd;
             r = bytestream2_get_be16(gb);
             while (l-- > 0 && x_pos < line_size) {
                 dst[x_pos + y_pos   * line_size    ] = r >> 8;
                 dst[x_pos + y_pos++ * line_size + 1] = r & 0xFF;
                 if (y_pos >= height) {
                     y_pos  = 0;
                     x_pos += 2;
                 }
             }
         }
     }
 
     return bytestream2_tell(gb);
 }
 
07a7145d
 #define DECODE_RGBX_COMMON(type) \
7016aa65
     if (!length) { \
         length = bytestream2_get_byte(gb); \
         if (!length) { \
             length = bytestream2_get_be16(gb); \
             if (!length) \
                 return; \
         } \
     } \
     for (i = 0; i < length; i++) { \
07a7145d
         *(type *)(dst + y*linesize + x * sizeof(type)) = pixel; \
7016aa65
         x += 1; \
         if (x >= width) { \
             y += 1; \
             if (y >= height) \
                 return; \
             x = 0; \
         } \
     }
 
 /**
  * Decode RGB8 buffer
  * @param[out] dst Destination buffer
  * @param width Width of destination buffer (pixels)
  * @param height Height of destination buffer (pixels)
  * @param linesize Line size of destination buffer (bytes)
  */
 static void decode_rgb8(GetByteContext *gb, uint8_t *dst, int width, int height, int linesize)
 {
     int x = 0, y = 0, i, length;
     while (bytestream2_get_bytes_left(gb) >= 4) {
         uint32_t pixel = 0xFF000000 | bytestream2_get_be24(gb);
         length = bytestream2_get_byte(gb) & 0x7F;
07a7145d
         DECODE_RGBX_COMMON(uint32_t)
7016aa65
     }
 }
 
 /**
  * Decode RGBN buffer
  * @param[out] dst Destination buffer
  * @param width Width of destination buffer (pixels)
  * @param height Height of destination buffer (pixels)
  * @param linesize Line size of destination buffer (bytes)
  */
 static void decode_rgbn(GetByteContext *gb, uint8_t *dst, int width, int height, int linesize)
 {
     int x = 0, y = 0, i, length;
     while (bytestream2_get_bytes_left(gb) >= 2) {
         uint32_t pixel = bytestream2_get_be16u(gb);
         length = pixel & 0x7;
         pixel >>= 4;
07a7145d
         DECODE_RGBX_COMMON(uint16_t)
7016aa65
     }
 }
 
929a24ef
 /**
  * Decode DEEP RLE 32-bit buffer
  * @param[out] dst Destination buffer
  * @param[in] src Source buffer
  * @param src_size Source buffer size (bytes)
  * @param width Width of destination buffer (pixels)
  * @param height Height of destination buffer (pixels)
  * @param linesize Line size of destination buffer (bytes)
  */
 static void decode_deep_rle32(uint8_t *dst, const uint8_t *src, int src_size, int width, int height, int linesize)
 {
     const uint8_t *src_end = src + src_size;
     int x = 0, y = 0, i;
     while (src + 5 <= src_end) {
         int opcode;
         opcode = *(int8_t *)src++;
         if (opcode >= 0) {
             int size = opcode + 1;
             for (i = 0; i < size; i++) {
                 int length = FFMIN(size - i, width);
                 memcpy(dst + y*linesize + x * 4, src, length * 4);
                 src += length * 4;
                 x += length;
                 i += length;
                 if (x >= width) {
                     x = 0;
                     y += 1;
                     if (y >= height)
                         return;
                 }
             }
         } else {
             int size = -opcode + 1;
f9a8eeb0
             uint32_t pixel = AV_RN32(src);
929a24ef
             for (i = 0; i < size; i++) {
                 *(uint32_t *)(dst + y*linesize + x * 4) = pixel;
                 x += 1;
                 if (x >= width) {
                     x = 0;
                     y += 1;
                     if (y >= height)
                         return;
                 }
             }
             src += 4;
         }
     }
 }
 
59fe5a33
 /**
  * Decode DEEP TVDC 32-bit buffer
  * @param[out] dst Destination buffer
  * @param[in] src Source buffer
  * @param src_size Source buffer size (bytes)
  * @param width Width of destination buffer (pixels)
  * @param height Height of destination buffer (pixels)
  * @param linesize Line size of destination buffer (bytes)
  * @param[int] tvdc TVDC lookup table
  */
 static void decode_deep_tvdc32(uint8_t *dst, const uint8_t *src, int src_size, int width, int height, int linesize, const int16_t *tvdc)
 {
     int x = 0, y = 0, plane = 0;
     int8_t pixel = 0;
     int i, j;
 
     for (i = 0; i < src_size * 2;) {
 #define GETNIBBLE ((i & 1) ?  (src[i>>1] & 0xF) : (src[i>>1] >> 4))
         int d = tvdc[GETNIBBLE];
         i++;
         if (d) {
             pixel += d;
             dst[y * linesize + x*4 + plane] = pixel;
             x++;
         } else {
             if (i >= src_size * 2)
                 return;
             d = GETNIBBLE + 1;
             i++;
             d = FFMIN(d, width - x);
             for (j = 0; j < d; j++) {
                 dst[y * linesize + x*4 + plane] = pixel;
                 x++;
             }
         }
         if (x >= width) {
             plane++;
             if (plane >= 4) {
                 y++;
                 if (y >= height)
                     return;
                 plane = 0;
             }
             x = 0;
             pixel = 0;
             i = (i + 1) & ~1;
         }
     }
 }
 
01ead2a6
 static void decode_short_horizontal_delta(uint8_t *dst,
                                           const uint8_t *buf, const uint8_t *buf_end,
                                           int w, int bpp, int dst_size)
 {
     int planepitch = FFALIGN(w, 16) >> 3;
     int pitch = planepitch * bpp;
     GetByteContext ptrs, gb;
     PutByteContext pb;
     unsigned ofssrc, pos;
     int i, k;
 
     bytestream2_init(&ptrs, buf, buf_end - buf);
     bytestream2_init_writer(&pb, dst, dst_size);
 
     for (k = 0; k < bpp; k++) {
         ofssrc = bytestream2_get_be32(&ptrs);
         pos = 0;
 
         if (!ofssrc)
             continue;
 
         if (ofssrc >= buf_end - buf)
             continue;
 
         bytestream2_init(&gb, buf + ofssrc, buf_end - (buf + ofssrc));
         while (bytestream2_peek_be16(&gb) != 0xFFFF && bytestream2_get_bytes_left(&gb) > 3) {
             int16_t offset = bytestream2_get_be16(&gb);
             unsigned noffset;
 
             if (offset >= 0) {
                 unsigned data = bytestream2_get_be16(&gb);
 
                 pos += offset * 2;
                 noffset = (pos / planepitch) * pitch + (pos % planepitch) + k * planepitch;
                 bytestream2_seek_p(&pb, noffset, SEEK_SET);
                 bytestream2_put_be16(&pb, data);
             } else {
                 uint16_t count = bytestream2_get_be16(&gb);
 
                 pos += 2 * -(offset + 2);
                 for (i = 0; i < count; i++) {
                     uint16_t data = bytestream2_get_be16(&gb);
 
                     pos += 2;
                     noffset = (pos / planepitch) * pitch + (pos % planepitch) + k * planepitch;
                     bytestream2_seek_p(&pb, noffset, SEEK_SET);
                     bytestream2_put_be16(&pb, data);
                 }
             }
         }
     }
 }
 
cb928fc4
 static void decode_byte_vertical_delta(uint8_t *dst,
                                        const uint8_t *buf, const uint8_t *buf_end,
a5c5ae5e
                                        int w, int xor, int bpp, int dst_size)
cb928fc4
 {
     int ncolumns = ((w + 15) / 16) * 2;
     int dstpitch = ncolumns * bpp;
     unsigned ofsdst, ofssrc, opcode, x;
     GetByteContext ptrs, gb;
     PutByteContext pb;
     int i, j, k;
 
     bytestream2_init(&ptrs, buf, buf_end - buf);
     bytestream2_init_writer(&pb, dst, dst_size);
 
     for (k = 0; k < bpp; k++) {
         ofssrc = bytestream2_get_be32(&ptrs);
 
         if (!ofssrc)
             continue;
 
         if (ofssrc >= buf_end - buf)
             continue;
 
         bytestream2_init(&gb, buf + ofssrc, buf_end - (buf + ofssrc));
         for (j = 0; j < ncolumns; j++) {
             ofsdst = j + k * ncolumns;
 
             i = bytestream2_get_byte(&gb);
             while (i > 0) {
                 opcode = bytestream2_get_byte(&gb);
 
                 if (opcode == 0) {
                     opcode  = bytestream2_get_byte(&gb);
                     x = bytestream2_get_byte(&gb);
 
                     while (opcode) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
a5c5ae5e
                         if (xor && ofsdst < dst_size) {
                             bytestream2_put_byte(&pb, dst[ofsdst] ^ x);
                         } else {
                             bytestream2_put_byte(&pb, x);
                         }
cb928fc4
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 } else if (opcode < 0x80) {
                     ofsdst += opcode * dstpitch;
                 } else {
                     opcode &= 0x7f;
 
                     while (opcode) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
a5c5ae5e
                         if (xor && ofsdst < dst_size) {
                             bytestream2_put_byte(&pb, dst[ofsdst] ^ bytestream2_get_byte(&gb));
                         } else {
                             bytestream2_put_byte(&pb, bytestream2_get_byte(&gb));
                         }
cb928fc4
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 }
                 i--;
             }
         }
     }
 }
 
 static void decode_delta_j(uint8_t *dst,
                            const uint8_t *buf, const uint8_t *buf_end,
                            int w, int h, int bpp, int dst_size)
 {
     int32_t pitch;
5350e0fc
     uint8_t *ptr;
cb928fc4
     uint32_t type, flag, cols, groups, rows, bytes;
     uint32_t offset;
     int planepitch_byte = (w + 7) / 8;
     int planepitch = ((w + 15) / 16) * 2;
     int kludge_j, b, g, r, d;
     GetByteContext gb;
 
     pitch = planepitch * bpp;
     kludge_j = w < 320 ? (320 - w) / 8 / 2 : 0;
 
     bytestream2_init(&gb, buf, buf_end - buf);
 
     while (bytestream2_get_bytes_left(&gb) >= 2) {
         type = bytestream2_get_be16(&gb);
 
         switch (type) {
         case 0:
             return;
         case 1:
             flag   = bytestream2_get_be16(&gb);
             cols   = bytestream2_get_be16(&gb);
             groups = bytestream2_get_be16(&gb);
 
             for (g = 0; g < groups; g++) {
                 offset = bytestream2_get_be16(&gb);
 
55ef890b
                 if (cols * bpp == 0 || bytestream2_get_bytes_left(&gb) < cols * bpp) {
54904525
                     av_log(NULL, AV_LOG_ERROR, "cols*bpp is invalid (%"PRId32"*%d)", cols, bpp);
8767470f
                     return;
55ef890b
                 }
8767470f
 
cb928fc4
                 if (kludge_j)
                     offset = ((offset / (320 / 8)) * pitch) + (offset % (320 / 8)) - kludge_j;
                 else
                     offset = ((offset / planepitch_byte) * pitch) + (offset % planepitch_byte);
 
                 for (b = 0; b < cols; b++) {
                     for (d = 0; d < bpp; d++) {
                         uint8_t value = bytestream2_get_byte(&gb);
 
5350e0fc
                         if (offset >= dst_size)
                             return;
                         ptr = dst + offset;
 
cb928fc4
                         if (flag)
                             ptr[0] ^= value;
                         else
                             ptr[0]  = value;
 
5350e0fc
                         offset += planepitch;
cb928fc4
                     }
                 }
                 if ((cols * bpp) & 1)
                     bytestream2_skip(&gb, 1);
             }
             break;
         case 2:
             flag   = bytestream2_get_be16(&gb);
             rows   = bytestream2_get_be16(&gb);
             bytes  = bytestream2_get_be16(&gb);
             groups = bytestream2_get_be16(&gb);
 
             for (g = 0; g < groups; g++) {
                 offset = bytestream2_get_be16(&gb);
 
                 if (kludge_j)
                     offset = ((offset / (320 / 8)) * pitch) + (offset % (320/ 8)) - kludge_j;
                 else
                     offset = ((offset / planepitch_byte) * pitch) + (offset % planepitch_byte);
 
                 for (r = 0; r < rows; r++) {
                     for (d = 0; d < bpp; d++) {
5350e0fc
                         unsigned noffset = offset + (r * pitch) + d * planepitch;
cb928fc4
 
55ef890b
                         if (!bytes || bytestream2_get_bytes_left(&gb) < bytes) {
54904525
                             av_log(NULL, AV_LOG_ERROR, "bytes %"PRId32" is invalid", bytes);
8767470f
                             return;
55ef890b
                         }
8767470f
 
cb928fc4
                         for (b = 0; b < bytes; b++) {
                             uint8_t value = bytestream2_get_byte(&gb);
 
5350e0fc
                             if (noffset >= dst_size)
                                 return;
                             ptr = dst + noffset;
 
cb928fc4
                             if (flag)
                                 ptr[0] ^= value;
                             else
                                 ptr[0]  = value;
 
5350e0fc
                             noffset++;
cb928fc4
                         }
                     }
                 }
                 if ((rows * bytes * bpp) & 1)
                     bytestream2_skip(&gb, 1);
             }
             break;
         default:
             return;
         }
     }
 }
 
 static void decode_short_vertical_delta(uint8_t *dst,
                                         const uint8_t *buf, const uint8_t *buf_end,
                                         int w, int bpp, int dst_size)
 {
     int ncolumns = (w + 15) >> 4;
     int dstpitch = ncolumns * bpp * 2;
     unsigned ofsdst, ofssrc, ofsdata, opcode, x;
     GetByteContext ptrs, gb, dptrs, dgb;
     PutByteContext pb;
     int i, j, k;
 
     if (buf_end - buf <= 64)
         return;
 
     bytestream2_init(&ptrs, buf, buf_end - buf);
     bytestream2_init(&dptrs, buf + 32, (buf_end - buf) - 32);
     bytestream2_init_writer(&pb, dst, dst_size);
 
     for (k = 0; k < bpp; k++) {
         ofssrc = bytestream2_get_be32(&ptrs);
         ofsdata = bytestream2_get_be32(&dptrs);
 
         if (!ofssrc)
             continue;
 
         if (ofssrc >= buf_end - buf)
             return;
 
         if (ofsdata >= buf_end - buf)
             return;
 
         bytestream2_init(&gb, buf + ofssrc, buf_end - (buf + ofssrc));
         bytestream2_init(&dgb, buf + ofsdata, buf_end - (buf + ofsdata));
         for (j = 0; j < ncolumns; j++) {
             ofsdst = (j + k * ncolumns) * 2;
 
             i = bytestream2_get_byte(&gb);
             while (i > 0) {
                 opcode = bytestream2_get_byte(&gb);
 
                 if (opcode == 0) {
                     opcode = bytestream2_get_byte(&gb);
                     x = bytestream2_get_be16(&dgb);
 
                     while (opcode) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
                         bytestream2_put_be16(&pb, x);
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 } else if (opcode < 0x80) {
                     ofsdst += opcode * dstpitch;
                 } else {
                     opcode &= 0x7f;
 
                     while (opcode) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
                         bytestream2_put_be16(&pb, bytestream2_get_be16(&dgb));
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 }
                 i--;
             }
         }
     }
 }
 
 static void decode_long_vertical_delta(uint8_t *dst,
                                        const uint8_t *buf, const uint8_t *buf_end,
                                        int w, int bpp, int dst_size)
 {
     int ncolumns = (w + 31) >> 5;
     int dstpitch = ((w + 15) / 16 * 2) * bpp;
     unsigned ofsdst, ofssrc, ofsdata, opcode, x;
     GetByteContext ptrs, gb, dptrs, dgb;
     PutByteContext pb;
     int i, j, k, h;
 
     if (buf_end - buf <= 64)
         return;
 
     h = (((w + 15) / 16 * 2) != ((w + 31) / 32 * 4)) ? 1 : 0;
     bytestream2_init(&ptrs, buf, buf_end - buf);
     bytestream2_init(&dptrs, buf + 32, (buf_end - buf) - 32);
     bytestream2_init_writer(&pb, dst, dst_size);
 
     for (k = 0; k < bpp; k++) {
         ofssrc = bytestream2_get_be32(&ptrs);
         ofsdata = bytestream2_get_be32(&dptrs);
 
         if (!ofssrc)
             continue;
 
         if (ofssrc >= buf_end - buf)
             return;
 
         if (ofsdata >= buf_end - buf)
             return;
 
         bytestream2_init(&gb, buf + ofssrc, buf_end - (buf + ofssrc));
         bytestream2_init(&dgb, buf + ofsdata, buf_end - (buf + ofsdata));
         for (j = 0; j < ncolumns; j++) {
             ofsdst = (j + k * ncolumns) * 4 - h * (2 * k);
 
             i = bytestream2_get_byte(&gb);
             while (i > 0) {
                 opcode = bytestream2_get_byte(&gb);
 
                 if (opcode == 0) {
                     opcode = bytestream2_get_byte(&gb);
                     if (h && (j == (ncolumns - 1))) {
                         x = bytestream2_get_be16(&dgb);
                         bytestream2_skip(&dgb, 2);
                     } else {
                         x = bytestream2_get_be32(&dgb);
                     }
 
                     while (opcode) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
                         if (h && (j == (ncolumns - 1))) {
                             bytestream2_put_be16(&pb, x);
                         } else {
                             bytestream2_put_be32(&pb, x);
                         }
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 } else if (opcode < 0x80) {
                     ofsdst += opcode * dstpitch;
                 } else {
                     opcode &= 0x7f;
 
                     while (opcode) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
                         if (h && (j == (ncolumns - 1))) {
                             bytestream2_put_be16(&pb, bytestream2_get_be16(&dgb));
                             bytestream2_skip(&dgb, 2);
                         } else {
                             bytestream2_put_be32(&pb, bytestream2_get_be32(&dgb));
                         }
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 }
                 i--;
             }
         }
     }
 }
 
 static void decode_short_vertical_delta2(uint8_t *dst,
                                          const uint8_t *buf, const uint8_t *buf_end,
                                          int w, int bpp, int dst_size)
 {
     int ncolumns = (w + 15) >> 4;
     int dstpitch = ncolumns * bpp * 2;
     unsigned ofsdst, ofssrc, opcode, x;
     GetByteContext ptrs, gb;
     PutByteContext pb;
     int i, j, k;
 
     bytestream2_init(&ptrs, buf, buf_end - buf);
     bytestream2_init_writer(&pb, dst, dst_size);
 
     for (k = 0; k < bpp; k++) {
         ofssrc = bytestream2_get_be32(&ptrs);
 
         if (!ofssrc)
             continue;
 
         if (ofssrc >= buf_end - buf)
             continue;
 
         bytestream2_init(&gb, buf + ofssrc, buf_end - (buf + ofssrc));
         for (j = 0; j < ncolumns; j++) {
             ofsdst = (j + k * ncolumns) * 2;
 
             i = bytestream2_get_be16(&gb);
             while (i > 0 && bytestream2_get_bytes_left(&gb) > 4) {
                 opcode = bytestream2_get_be16(&gb);
 
                 if (opcode == 0) {
                     opcode = bytestream2_get_be16(&gb);
                     x = bytestream2_get_be16(&gb);
 
                     while (opcode && bytestream2_get_bytes_left_p(&pb) > 1) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
                         bytestream2_put_be16(&pb, x);
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 } else if (opcode < 0x8000) {
                     ofsdst += opcode * dstpitch;
                 } else {
                     opcode &= 0x7fff;
 
                     while (opcode && bytestream2_get_bytes_left(&gb) > 1 &&
                            bytestream2_get_bytes_left_p(&pb) > 1) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
                         bytestream2_put_be16(&pb, bytestream2_get_be16(&gb));
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 }
                 i--;
             }
         }
     }
 }
 
 static void decode_long_vertical_delta2(uint8_t *dst,
                                         const uint8_t *buf, const uint8_t *buf_end,
                                         int w, int bpp, int dst_size)
 {
     int ncolumns = (w + 31) >> 5;
     int dstpitch = ((w + 15) / 16 * 2) * bpp;
     unsigned ofsdst, ofssrc, opcode, x;
     unsigned skip = 0x80000000, mask = skip - 1;
     GetByteContext ptrs, gb;
     PutByteContext pb;
     int i, j, k, h;
 
     h = (((w + 15) / 16 * 2) != ((w + 31) / 32 * 4)) ? 1 : 0;
     bytestream2_init(&ptrs, buf, buf_end - buf);
     bytestream2_init_writer(&pb, dst, dst_size);
 
     for (k = 0; k < bpp; k++) {
         ofssrc = bytestream2_get_be32(&ptrs);
 
         if (!ofssrc)
             continue;
 
         if (ofssrc >= buf_end - buf)
             continue;
 
         bytestream2_init(&gb, buf + ofssrc, buf_end - (buf + ofssrc));
         for (j = 0; j < ncolumns; j++) {
             ofsdst = (j + k * ncolumns) * 4 - h * (2 * k);
 
             if (h && (j == (ncolumns - 1))) {
                 skip = 0x8000;
                 mask = skip - 1;
             }
 
             i = bytestream2_get_be32(&gb);
             while (i > 0 && bytestream2_get_bytes_left(&gb) > 4) {
                 opcode = bytestream2_get_be32(&gb);
 
                 if (opcode == 0) {
                     if (h && (j == ncolumns - 1)) {
                         opcode = bytestream2_get_be16(&gb);
                         x = bytestream2_get_be16(&gb);
                     } else {
                         opcode = bytestream2_get_be32(&gb);
                         x = bytestream2_get_be32(&gb);
                     }
 
                     while (opcode && bytestream2_get_bytes_left_p(&pb) > 1) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
                         if (h && (j == ncolumns - 1))
                             bytestream2_put_be16(&pb, x);
                         else
                             bytestream2_put_be32(&pb, x);
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 } else if (opcode < skip) {
                     ofsdst += opcode * dstpitch;
                 } else {
                     opcode &= mask;
 
                     while (opcode && bytestream2_get_bytes_left(&gb) > 1 &&
                            bytestream2_get_bytes_left_p(&pb) > 1) {
                         bytestream2_seek_p(&pb, ofsdst, SEEK_SET);
                         if (h && (j == ncolumns - 1)) {
                             bytestream2_put_be16(&pb, bytestream2_get_be16(&gb));
                         } else {
                             bytestream2_put_be32(&pb, bytestream2_get_be32(&gb));
                         }
                         ofsdst += dstpitch;
                         opcode--;
                     }
                 }
                 i--;
             }
         }
     }
 }
 
eef2f642
 static void decode_delta_d(uint8_t *dst,
                            const uint8_t *buf, const uint8_t *buf_end,
                            int w, int flag, int bpp, int dst_size)
 {
     int planepitch = FFALIGN(w, 16) >> 3;
     int pitch = planepitch * bpp;
     int planepitch_byte = (w + 7) / 8;
     unsigned entries, ofssrc;
     GetByteContext gb, ptrs;
     PutByteContext pb;
     int k;
 
     if (buf_end - buf <= 4 * bpp)
         return;
 
     bytestream2_init_writer(&pb, dst, dst_size);
     bytestream2_init(&ptrs, buf, bpp * 4);
 
     for (k = 0; k < bpp; k++) {
         ofssrc = bytestream2_get_be32(&ptrs);
 
         if (!ofssrc)
             continue;
 
         if (ofssrc >= buf_end - buf)
             continue;
 
         bytestream2_init(&gb, buf + ofssrc, buf_end - (buf + ofssrc));
 
         entries = bytestream2_get_be32(&gb);
810a8ba5
         while (entries && bytestream2_get_bytes_left(&gb) >= 8) {
eef2f642
             int32_t opcode  = bytestream2_get_be32(&gb);
             unsigned offset = bytestream2_get_be32(&gb);
 
             bytestream2_seek_p(&pb, (offset / planepitch_byte) * pitch + (offset % planepitch_byte) + k * planepitch, SEEK_SET);
             if (opcode >= 0) {
                 uint32_t x = bytestream2_get_be32(&gb);
                 while (opcode && bytestream2_get_bytes_left_p(&pb) > 0) {
                     bytestream2_put_be32(&pb, x);
                     bytestream2_skip_p(&pb, pitch - 4);
                     opcode--;
                 }
             } else {
                 opcode = -opcode;
                 while (opcode && bytestream2_get_bytes_left(&gb) > 0) {
                     bytestream2_put_be32(&pb, bytestream2_get_be32(&gb));
                     bytestream2_skip_p(&pb, pitch - 4);
                     opcode--;
                 }
             }
             entries--;
         }
     }
 }
 
 static void decode_delta_e(uint8_t *dst,
                            const uint8_t *buf, const uint8_t *buf_end,
                            int w, int flag, int bpp, int dst_size)
 {
     int planepitch = FFALIGN(w, 16) >> 3;
     int pitch = planepitch * bpp;
     int planepitch_byte = (w + 7) / 8;
     unsigned entries, ofssrc;
     GetByteContext gb, ptrs;
     PutByteContext pb;
     int k;
 
     if (buf_end - buf <= 4 * bpp)
         return;
 
     bytestream2_init_writer(&pb, dst, dst_size);
     bytestream2_init(&ptrs, buf, bpp * 4);
 
     for (k = 0; k < bpp; k++) {
         ofssrc = bytestream2_get_be32(&ptrs);
 
         if (!ofssrc)
             continue;
 
         if (ofssrc >= buf_end - buf)
             continue;
 
         bytestream2_init(&gb, buf + ofssrc, buf_end - (buf + ofssrc));
 
         entries = bytestream2_get_be16(&gb);
810a8ba5
         while (entries && bytestream2_get_bytes_left(&gb) >= 6) {
eef2f642
             int16_t opcode  = bytestream2_get_be16(&gb);
             unsigned offset = bytestream2_get_be32(&gb);
 
             bytestream2_seek_p(&pb, (offset / planepitch_byte) * pitch + (offset % planepitch_byte) + k * planepitch, SEEK_SET);
             if (opcode >= 0) {
                 uint16_t x = bytestream2_get_be16(&gb);
                 while (opcode && bytestream2_get_bytes_left_p(&pb) > 0) {
                     bytestream2_put_be16(&pb, x);
                     bytestream2_skip_p(&pb, pitch - 2);
                     opcode--;
                 }
             } else {
                 opcode = -opcode;
                 while (opcode && bytestream2_get_bytes_left(&gb) > 0) {
                     bytestream2_put_be16(&pb, bytestream2_get_be16(&gb));
                     bytestream2_skip_p(&pb, pitch - 2);
                     opcode--;
                 }
             }
             entries--;
         }
     }
 }
 
cb928fc4
 static void decode_delta_l(uint8_t *dst,
                            const uint8_t *buf, const uint8_t *buf_end,
                            int w, int flag, int bpp, int dst_size)
 {
     GetByteContext off0, off1, dgb, ogb;
     PutByteContext pb;
     unsigned poff0, poff1;
     int i, k, dstpitch;
     int planepitch_byte = (w + 7) / 8;
     int planepitch = ((w + 15) / 16) * 2;
     int pitch = planepitch * bpp;
 
     if (buf_end - buf <= 64)
         return;
 
     bytestream2_init(&off0, buf, buf_end - buf);
     bytestream2_init(&off1, buf + 32, buf_end - (buf + 32));
     bytestream2_init_writer(&pb, dst, dst_size);
 
     dstpitch = flag ? (((w + 7) / 8) * bpp): 2;
 
     for (k = 0; k < bpp; k++) {
         poff0 = bytestream2_get_be32(&off0);
         poff1 = bytestream2_get_be32(&off1);
 
         if (!poff0)
             continue;
 
         if (2LL * poff0 >= buf_end - buf)
             return;
 
         if (2LL * poff1 >= buf_end - buf)
             return;
 
         bytestream2_init(&dgb, buf + 2 * poff0, buf_end - (buf + 2 * poff0));
         bytestream2_init(&ogb, buf + 2 * poff1, buf_end - (buf + 2 * poff1));
 
9585c509
         while (bytestream2_peek_be16(&ogb) != 0xFFFF && bytestream2_get_bytes_left(&ogb) >= 4) {
17ea1cd5
             uint32_t offset = bytestream2_get_be16(&ogb);
cb928fc4
             int16_t cnt = bytestream2_get_be16(&ogb);
             uint16_t data;
 
             offset = ((2 * offset) / planepitch_byte) * pitch + ((2 * offset) % planepitch_byte) + k * planepitch;
             if (cnt < 0) {
a2550e7d
                 if (bytestream2_get_bytes_left(&dgb) < 2)
                     break;
cb928fc4
                 bytestream2_seek_p(&pb, offset, SEEK_SET);
                 cnt = -cnt;
                 data = bytestream2_get_be16(&dgb);
                 for (i = 0; i < cnt; i++) {
                     bytestream2_put_be16(&pb, data);
                     bytestream2_skip_p(&pb, dstpitch - 2);
                 }
             } else {
a2550e7d
                 if (bytestream2_get_bytes_left(&dgb) < 2*cnt)
                     break;
cb928fc4
                 bytestream2_seek_p(&pb, offset, SEEK_SET);
                 for (i = 0; i < cnt; i++) {
                     data = bytestream2_get_be16(&dgb);
                     bytestream2_put_be16(&pb, data);
                     bytestream2_skip_p(&pb, dstpitch - 2);
                 }
             }
         }
     }
 }
 
929a24ef
 static int unsupported(AVCodecContext *avctx)
 {
     IffContext *s = avctx->priv_data;
eef2f642
     avpriv_request_sample(avctx, "bitmap (compression 0x%0x, bpp %i, ham %i, interlaced %i)", s->compression, s->bpp, s->ham, s->is_interlaced);
929a24ef
     return AVERROR_INVALIDDATA;
 }
 
 static int decode_frame(AVCodecContext *avctx,
56090b5b
                         void *data, int *got_frame,
                         AVPacket *avpkt)
b9e06ddd
 {
3865ba7b
     IffContext *s          = avctx->priv_data;
cb928fc4
     AVFrame *frame         = data;
     const uint8_t *buf     = avpkt->data;
     int buf_size           = avpkt->size;
3865ba7b
     const uint8_t *buf_end = buf + buf_size;
522d3930
     int y, plane, res;
cb928fc4
     GetByteContext *gb = &s->gb;
9bcdb988
     const AVPixFmtDescriptor *desc;
b9e06ddd
 
cb928fc4
     bytestream2_init(gb, avpkt->data, avpkt->size);
 
18313287
     if ((res = extract_header(avctx, avpkt)) < 0)
         return res;
cb928fc4
 
     if ((res = ff_get_buffer(avctx, frame, 0)) < 0)
522d3930
         return res;
cb928fc4
     s->frame = frame;
9bcdb988
 
cb928fc4
     buf      += bytestream2_tell(gb);
     buf_size -= bytestream2_tell(gb);
9bcdb988
     desc = av_pix_fmt_desc_get(avctx->pix_fmt);
 
759001c5
     if (!s->init && avctx->bits_per_coded_sample <= 8 &&
80e9e63c
         avctx->pix_fmt == AV_PIX_FMT_PAL8) {
cb928fc4
         if ((res = cmap_read_palette(avctx, (uint32_t *)frame->data[1])) < 0)
522d3930
             return res;
80e9e63c
     } else if (!s->init && avctx->bits_per_coded_sample <= 8 &&
                avctx->pix_fmt == AV_PIX_FMT_RGB32) {
8ab97a60
         if ((res = cmap_read_palette(avctx, s->mask_palbuf)) < 0)
929a24ef
             return res;
b9e06ddd
     }
522d3930
     s->init = 1;
b9e06ddd
 
72e33eec
     if (s->compression <= 0xff && (avctx->codec_tag == MKTAG('A', 'N', 'I', 'M'))) {
cb928fc4
         if (avctx->pix_fmt == AV_PIX_FMT_PAL8)
0ea03dbb
             memcpy(s->pal, s->frame->data[1], 256 * 4);
cb928fc4
     }
 
929a24ef
     switch (s->compression) {
cb928fc4
     case 0x0:
56090b5b
         if (avctx->codec_tag == MKTAG('A', 'C', 'B', 'M')) {
f737e760
             if (avctx->pix_fmt == AV_PIX_FMT_PAL8 || avctx->pix_fmt == AV_PIX_FMT_GRAY8) {
cb928fc4
                 memset(frame->data[0], 0, avctx->height * frame->linesize[0]);
f737e760
                 for (plane = 0; plane < s->bpp; plane++) {
56090b5b
                     for (y = 0; y < avctx->height && buf < buf_end; y++) {
cb928fc4
                         uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                         decodeplane8(row, buf, FFMIN(s->planesize, buf_end - buf), plane);
                         buf += s->planesize;
                     }
cf14c822
                 }
f737e760
             } else if (s->ham) { // HAM to AV_PIX_FMT_BGR32
cb928fc4
                 memset(frame->data[0], 0, avctx->height * frame->linesize[0]);
56090b5b
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memset(s->ham_buf, 0, s->planesize * 8);
                     for (plane = 0; plane < s->bpp; plane++) {
                         const uint8_t * start = buf + (plane * avctx->height + y) * s->planesize;
                         if (start >= buf_end)
                             break;
                         decodeplane8(s->ham_buf, start, FFMIN(s->planesize, buf_end - start), plane);
                     }
56090b5b
                     decode_ham_plane32((uint32_t *)row, s->ham_buf, s->ham_palbuf, s->planesize);
f737e760
                 }
             } else
                 return unsupported(avctx);
56090b5b
         } else if (avctx->codec_tag == MKTAG('D', 'E', 'E', 'P')) {
f737e760
             int raw_width = avctx->width * (av_get_bits_per_pixel(desc) >> 3);
             int x;
56090b5b
             for (y = 0; y < avctx->height && buf < buf_end; y++) {
cb928fc4
                 uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                 memcpy(row, buf, FFMIN(raw_width, buf_end - buf));
                 buf += raw_width;
                 if (avctx->pix_fmt == AV_PIX_FMT_BGR32) {
56090b5b
                     for (x = 0; x < avctx->width; x++)
f737e760
                         row[4 * x + 3] = row[4 * x + 3] & 0xF0 | (row[4 * x + 3] >> 4);
3d977edb
                 }
             }
cb928fc4
         } else if (avctx->codec_tag == MKTAG('I', 'L', 'B', 'M') || // interleaved
                    avctx->codec_tag == MKTAG('A', 'N', 'I', 'M')) {
95b20ad7
             if (avctx->codec_tag == MKTAG('A', 'N', 'I', 'M'))
                 memcpy(s->video[0], buf, FFMIN(buf_end - buf, s->video_size));
f737e760
             if (avctx->pix_fmt == AV_PIX_FMT_PAL8 || avctx->pix_fmt == AV_PIX_FMT_GRAY8) {
56090b5b
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memset(row, 0, avctx->width);
                     for (plane = 0; plane < s->bpp && buf < buf_end; plane++) {
                         decodeplane8(row, buf, FFMIN(s->planesize, buf_end - buf), plane);
                         buf += s->planesize;
                     }
299ac811
                 }
f737e760
             } else if (s->ham) { // HAM to AV_PIX_FMT_BGR32
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memset(s->ham_buf, 0, s->planesize * 8);
                     for (plane = 0; plane < s->bpp && buf < buf_end; plane++) {
                         decodeplane8(s->ham_buf, buf, FFMIN(s->planesize, buf_end - buf), plane);
                         buf += s->planesize;
                     }
56090b5b
                     decode_ham_plane32((uint32_t *)row, s->ham_buf, s->ham_palbuf, s->planesize);
18313287
                 }
f737e760
             } else { // AV_PIX_FMT_BGR32
56090b5b
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memset(row, 0, avctx->width << 2);
                     for (plane = 0; plane < s->bpp && buf < buf_end; plane++) {
56090b5b
                         decodeplane32((uint32_t *)row, buf,
                                       FFMIN(s->planesize, buf_end - buf), plane);
f737e760
                         buf += s->planesize;
                     }
299ac811
                 }
fe51b5ce
             }
56090b5b
         } else if (avctx->codec_tag == MKTAG('P', 'B', 'M', ' ')) { // IFF-PBM
f737e760
             if (avctx->pix_fmt == AV_PIX_FMT_PAL8 || avctx->pix_fmt == AV_PIX_FMT_GRAY8) {
56090b5b
                 for (y = 0; y < avctx->height && buf_end > buf; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memcpy(row, buf, FFMIN(avctx->width, buf_end - buf));
                     buf += avctx->width + (avctx->width % 2); // padding if odd
                 }
             } else if (s->ham) { // IFF-PBM: HAM to AV_PIX_FMT_BGR32
                 for (y = 0; y < avctx->height && buf_end > buf; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memcpy(s->ham_buf, buf, FFMIN(avctx->width, buf_end - buf));
                     buf += avctx->width + (avctx->width & 1); // padding if odd
56090b5b
                     decode_ham_plane32((uint32_t *)row, s->ham_buf, s->ham_palbuf, s->planesize);
f737e760
                 }
             } else
                 return unsupported(avctx);
5979fb0b
         } else {
             return unsupported(avctx);
b9e06ddd
         }
f737e760
         break;
cb928fc4
     case 0x1:
         if (avctx->codec_tag == MKTAG('I', 'L', 'B', 'M') || // interleaved
             avctx->codec_tag == MKTAG('A', 'N', 'I', 'M')) {
f737e760
             if (avctx->pix_fmt == AV_PIX_FMT_PAL8 || avctx->pix_fmt == AV_PIX_FMT_GRAY8) {
cb928fc4
                 uint8_t *video = s->video[0];
 
56090b5b
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memset(row, 0, avctx->width);
                     for (plane = 0; plane < s->bpp; plane++) {
cb928fc4
                         buf += decode_byterun(s->planebuf, s->planesize, gb);
                         if (avctx->codec_tag == MKTAG('A', 'N', 'I', 'M')) {
                             memcpy(video, s->planebuf, s->planesize);
                             video += s->planesize;
                         }
f737e760
                         decodeplane8(row, s->planebuf, s->planesize, plane);
                     }
fe51b5ce
                 }
f737e760
             } else if (avctx->bits_per_coded_sample <= 8) { //8-bit (+ mask) to AV_PIX_FMT_BGR32
56090b5b
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memset(s->mask_buf, 0, avctx->width * sizeof(uint32_t));
                     for (plane = 0; plane < s->bpp; plane++) {
cb928fc4
                         buf += decode_byterun(s->planebuf, s->planesize, gb);
f737e760
                         decodeplane32(s->mask_buf, s->planebuf, s->planesize, plane);
                     }
56090b5b
                     lookup_pal_indicies((uint32_t *)row, s->mask_buf, s->mask_palbuf, avctx->width);
69224582
                 }
f737e760
             } else if (s->ham) { // HAM to AV_PIX_FMT_BGR32
cb928fc4
                 uint8_t *video = s->video[0];
56090b5b
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memset(s->ham_buf, 0, s->planesize * 8);
                     for (plane = 0; plane < s->bpp; plane++) {
cb928fc4
                         buf += decode_byterun(s->planebuf, s->planesize, gb);
                         if (avctx->codec_tag == MKTAG('A', 'N', 'I', 'M')) {
                             memcpy(video, s->planebuf, s->planesize);
                             video += s->planesize;
                         }
f737e760
                         decodeplane8(s->ham_buf, s->planebuf, s->planesize, plane);
                     }
56090b5b
                     decode_ham_plane32((uint32_t *)row, s->ham_buf, s->ham_palbuf, s->planesize);
18313287
                 }
56090b5b
             } else { // AV_PIX_FMT_BGR32
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
f737e760
                     memset(row, 0, avctx->width << 2);
                     for (plane = 0; plane < s->bpp; plane++) {
cb928fc4
                         buf += decode_byterun(s->planebuf, s->planesize, gb);
56090b5b
                         decodeplane32((uint32_t *)row, s->planebuf, s->planesize, plane);
f737e760
                     }
005caa34
                 }
b9e06ddd
             }
56090b5b
         } else if (avctx->codec_tag == MKTAG('P', 'B', 'M', ' ')) { // IFF-PBM
f737e760
             if (avctx->pix_fmt == AV_PIX_FMT_PAL8 || avctx->pix_fmt == AV_PIX_FMT_GRAY8) {
56090b5b
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
                     buf += decode_byterun(row, avctx->width, gb);
f737e760
                 }
             } else if (s->ham) { // IFF-PBM: HAM to AV_PIX_FMT_BGR32
56090b5b
                 for (y = 0; y < avctx->height; y++) {
cb928fc4
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
                     buf += decode_byterun(s->ham_buf, avctx->width, gb);
56090b5b
                     decode_ham_plane32((uint32_t *)row, s->ham_buf, s->ham_palbuf, s->planesize);
f737e760
                 }
             } else
                 return unsupported(avctx);
56090b5b
         } else if (avctx->codec_tag == MKTAG('D', 'E', 'E', 'P')) { // IFF-DEEP
f737e760
             if (av_get_bits_per_pixel(desc) == 32)
cb928fc4
                 decode_deep_rle32(frame->data[0], buf, buf_size, avctx->width, avctx->height, frame->linesize[0]);
f737e760
             else
                 return unsupported(avctx);
5979fb0b
         } else if (avctx->codec_tag == MKTAG('A', 'C', 'B', 'M')) {
             if (avctx->pix_fmt == AV_PIX_FMT_PAL8 || avctx->pix_fmt == AV_PIX_FMT_GRAY8) {
                 memset(frame->data[0], 0, avctx->height * frame->linesize[0]);
                 for (plane = 0; plane < s->bpp; plane++) {
                     for (y = 0; y < avctx->height && buf < buf_end; y++) {
                         uint8_t *row = &frame->data[0][y * frame->linesize[0]];
                         decodeplane8(row, buf, FFMIN(s->planesize, buf_end - buf), plane);
                         buf += s->planesize;
                     }
                 }
             } else if (s->ham) { // HAM to AV_PIX_FMT_BGR32
                 memset(frame->data[0], 0, avctx->height * frame->linesize[0]);
                 for (y = 0; y < avctx->height; y++) {
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
                     memset(s->ham_buf, 0, s->planesize * 8);
                     for (plane = 0; plane < s->bpp; plane++) {
                         const uint8_t * start = buf + (plane * avctx->height + y) * s->planesize;
                         if (start >= buf_end)
                             break;
                         decodeplane8(s->ham_buf, start, FFMIN(s->planesize, buf_end - start), plane);
                     }
                     decode_ham_plane32((uint32_t *)row, s->ham_buf, s->ham_palbuf, s->planesize);
                 }
             } else {
                 return unsupported(avctx);
             }
         } else {
             return unsupported(avctx);
fe51b5ce
         }
929a24ef
         break;
49633f9f
     case 0x2:
         if (avctx->codec_tag == MKTAG('I', 'L', 'B', 'M') && avctx->pix_fmt == AV_PIX_FMT_PAL8) {
             for (plane = 0; plane < s->bpp; plane++) {
                 decode_byterun2(s->planebuf, avctx->height, s->planesize, gb);
                 for (y = 0; y < avctx->height; y++) {
                     uint8_t *row = &frame->data[0][y * frame->linesize[0]];
                     decodeplane8(row, s->planebuf + s->planesize * y, s->planesize, plane);
                 }
             }
         } else {
             return unsupported(avctx);
         }
         break;
cb928fc4
     case 0x4:
3539d6c6
         if (avctx->codec_tag == MKTAG('R', 'G', 'B', '8') && avctx->pix_fmt == AV_PIX_FMT_RGB32)
cb928fc4
             decode_rgb8(gb, frame->data[0], avctx->width, avctx->height, frame->linesize[0]);
3539d6c6
         else if (avctx->codec_tag == MKTAG('R', 'G', 'B', 'N') && avctx->pix_fmt == AV_PIX_FMT_RGB444)
cb928fc4
             decode_rgbn(gb, frame->data[0], avctx->width, avctx->height, frame->linesize[0]);
7016aa65
         else
             return unsupported(avctx);
         break;
cb928fc4
     case 0x5:
56090b5b
         if (avctx->codec_tag == MKTAG('D', 'E', 'E', 'P')) {
59fe5a33
             if (av_get_bits_per_pixel(desc) == 32)
cb928fc4
                 decode_deep_tvdc32(frame->data[0], buf, buf_size, avctx->width, avctx->height, frame->linesize[0], s->tvdc);
59fe5a33
             else
                 return unsupported(avctx);
         } else
             return unsupported(avctx);
         break;
01ead2a6
     case 0x300:
     case 0x301:
         decode_short_horizontal_delta(s->video[0], buf, buf_end, avctx->width, s->bpp, s->video_size);
         break;
cb928fc4
     case 0x500:
     case 0x501:
a5c5ae5e
         decode_byte_vertical_delta(s->video[0], buf, buf_end, avctx->width, s->is_brush, s->bpp, s->video_size);
cb928fc4
         break;
     case 0x700:
     case 0x701:
         if (s->is_short)
             decode_short_vertical_delta(s->video[0], buf, buf_end, avctx->width, s->bpp, s->video_size);
         else
             decode_long_vertical_delta(s->video[0], buf, buf_end, avctx->width, s->bpp, s->video_size);
         break;
     case 0x800:
     case 0x801:
         if (s->is_short)
             decode_short_vertical_delta2(s->video[0], buf, buf_end, avctx->width, s->bpp, s->video_size);
         else
             decode_long_vertical_delta2(s->video[0], buf, buf_end, avctx->width, s->bpp, s->video_size);
         break;
     case 0x4a00:
     case 0x4a01:
         decode_delta_j(s->video[0], buf, buf_end, avctx->width, avctx->height, s->bpp, s->video_size);
         break;
eef2f642
     case 0x6400:
     case 0x6401:
         if (s->is_interlaced)
             return unsupported(avctx);
         decode_delta_d(s->video[0], buf, buf_end, avctx->width, s->is_interlaced, s->bpp, s->video_size);
         break;
     case 0x6500:
     case 0x6501:
         if (s->is_interlaced)
             return unsupported(avctx);
         decode_delta_e(s->video[0], buf, buf_end, avctx->width, s->is_interlaced, s->bpp, s->video_size);
         break;
cb928fc4
     case 0x6c00:
     case 0x6c01:
         decode_delta_l(s->video[0], buf, buf_end, avctx->width, s->is_short, s->bpp, s->video_size);
         break;
929a24ef
     default:
         return unsupported(avctx);
b9e06ddd
     }
 
72e33eec
     if (s->compression <= 0xff && (avctx->codec_tag == MKTAG('A', 'N', 'I', 'M'))) {
         memcpy(s->video[1], s->video[0], s->video_size);
     }
 
cb928fc4
     if (s->compression > 0xff) {
         if (avctx->pix_fmt == AV_PIX_FMT_PAL8 || avctx->pix_fmt == AV_PIX_FMT_GRAY8) {
             buf = s->video[0];
             for (y = 0; y < avctx->height; y++) {
                 uint8_t *row = &frame->data[0][y * frame->linesize[0]];
                 memset(row, 0, avctx->width);
                 for (plane = 0; plane < s->bpp; plane++) {
                     decodeplane8(row, buf, s->planesize, plane);
                     buf += s->planesize;
                 }
             }
0ea03dbb
             memcpy(frame->data[1], s->pal, 256 * 4);
cb928fc4
         } else if (s->ham) {
             int i, count = 1 << s->ham;
 
             buf = s->video[0];
             memset(s->ham_palbuf, 0, (1 << s->ham) * 2 * sizeof(uint32_t));
             for (i = 0; i < count; i++) {
0ea03dbb
                 s->ham_palbuf[i*2+1] = s->pal[i];
cb928fc4
             }
             for (i = 0; i < count; i++) {
                 uint32_t tmp = i << (8 - s->ham);
                 tmp |= tmp >> s->ham;
                 s->ham_palbuf[(i+count)*2]     = 0xFF00FFFF;
                 s->ham_palbuf[(i+count*2)*2]   = 0xFFFFFF00;
                 s->ham_palbuf[(i+count*3)*2]   = 0xFFFF00FF;
                 s->ham_palbuf[(i+count)*2+1]   = 0xFF000000 | tmp << 16;
                 s->ham_palbuf[(i+count*2)*2+1] = 0xFF000000 | tmp;
                 s->ham_palbuf[(i+count*3)*2+1] = 0xFF000000 | tmp << 8;
             }
             if (s->masking == MASK_HAS_MASK) {
                 for (i = 0; i < 8 * (1 << s->ham); i++)
                     s->ham_palbuf[(1 << s->bpp) + i] = s->ham_palbuf[i] | 0xFF000000;
             }
             for (y = 0; y < avctx->height; y++) {
                 uint8_t *row = &frame->data[0][y * frame->linesize[0]];
                 memset(s->ham_buf, 0, s->planesize * 8);
                 for (plane = 0; plane < s->bpp; plane++) {
                     decodeplane8(s->ham_buf, buf, s->planesize, plane);
                     buf += s->planesize;
                 }
                 decode_ham_plane32((uint32_t *)row, s->ham_buf, s->ham_palbuf, s->planesize);
             }
         } else {
             return unsupported(avctx);
         }
 
a5c5ae5e
         if (!s->is_brush) {
             FFSWAP(uint8_t *, s->video[0], s->video[1]);
         }
cb928fc4
     }
 
     if (avpkt->flags & AV_PKT_FLAG_KEY) {
         frame->key_frame = 1;
         frame->pict_type = AV_PICTURE_TYPE_I;
     } else {
         frame->key_frame = 0;
         frame->pict_type = AV_PICTURE_TYPE_P;
     }
759001c5
 
df9b9567
     *got_frame = 1;
759001c5
 
b9e06ddd
     return buf_size;
 }
 
137e8081
 #if CONFIG_IFF_ILBM_DECODER
e7e2df27
 AVCodec ff_iff_ilbm_decoder = {
929a24ef
     .name           = "iff",
854c405d
     .long_name      = NULL_IF_CONFIG_SMALL("IFF ACBM/ANIM/DEEP/ILBM/PBM/RGB8/RGBN"),
ec6402b7
     .type           = AVMEDIA_TYPE_VIDEO,
36ef5369
     .id             = AV_CODEC_ID_IFF_ILBM,
ec6402b7
     .priv_data_size = sizeof(IffContext),
     .init           = decode_init,
     .close          = decode_end,
929a24ef
     .decode         = decode_frame,
9a6503f4
     .caps_internal  = FF_CODEC_CAP_INIT_CLEANUP,
def97856
     .capabilities   = AV_CODEC_CAP_DR1,
b9e06ddd
 };
137e8081
 #endif