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502 lines
13 KiB
502 lines
13 KiB
2 years ago
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/*
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* H.265 video codec.
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* Copyright (c) 2013-2014 struktur AG, Dirk Farin <farin@struktur.de>
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*
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* This file is part of libde265.
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*
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* libde265 is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Lesser General Public License as
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* published by the Free Software Foundation, either version 3 of
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* the License, or (at your option) any later version.
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*
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* libde265 is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with libde265. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "sei.h"
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#include "util.h"
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#include "md5.h"
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#include "libde265/sps.h"
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#include "libde265/image.h"
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#include "libde265/decctx.h"
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#include <assert.h>
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static de265_error read_sei_decoded_picture_hash(bitreader* reader, sei_message* sei,
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const seq_parameter_set* sps)
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{
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sei_decoded_picture_hash* seihash = &sei->data.decoded_picture_hash;
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seihash->hash_type = (enum sei_decoded_picture_hash_type)get_bits(reader,8);
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if (sps==NULL) {
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return DE265_WARNING_SPS_MISSING_CANNOT_DECODE_SEI;
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}
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int nHashes = sps->chroma_format_idc==0 ? 1 : 3;
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for (int i=0;i<nHashes;i++) {
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switch (seihash->hash_type) {
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case sei_decoded_picture_hash_type_MD5:
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for (int b=0;b<16;b++) { seihash->md5[i][b] = get_bits(reader,8); }
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break;
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case sei_decoded_picture_hash_type_CRC:
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seihash->crc[i] = get_bits(reader,16);
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break;
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case sei_decoded_picture_hash_type_checksum:
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seihash->checksum[i] = get_bits(reader,32);
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break;
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}
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}
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return DE265_OK;
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}
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static void dump_sei_decoded_picture_hash(const sei_message* sei,
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const seq_parameter_set* sps)
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{
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const sei_decoded_picture_hash* seihash = &sei->data.decoded_picture_hash;
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loginfo(LogSEI," hash_type: ");
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switch (seihash->hash_type) {
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case sei_decoded_picture_hash_type_MD5: loginfo(LogSEI,"MD5\n"); break;
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case sei_decoded_picture_hash_type_CRC: loginfo(LogSEI,"CRC\n"); break;
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case sei_decoded_picture_hash_type_checksum: loginfo(LogSEI,"checksum\n"); break;
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}
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int nHashes = sps->chroma_format_idc==0 ? 1 : 3;
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for (int i=0;i<nHashes;i++) {
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switch (seihash->hash_type) {
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case sei_decoded_picture_hash_type_MD5:
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loginfo(LogSEI," MD5[%d]: %02x", i,seihash->md5[i][0]);
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for (int b=1;b<16;b++) {
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loginfo(LogSEI,"*:%02x", seihash->md5[i][b]);
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}
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loginfo(LogSEI,"*\n");
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break;
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case sei_decoded_picture_hash_type_CRC:
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loginfo(LogSEI," CRC[%d]: %02x\n", i,seihash->crc[i]);
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break;
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case sei_decoded_picture_hash_type_checksum:
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loginfo(LogSEI," checksum[%d]: %04x\n", i,seihash->checksum[i]);
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break;
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}
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}
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}
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class raw_hash_data
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{
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public:
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raw_hash_data(int w, int stride);
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~raw_hash_data();
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struct data_chunk {
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const uint8_t* data;
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int len;
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};
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data_chunk prepare_8bit(const uint8_t* data,int y);
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data_chunk prepare_16bit(const uint8_t* data,int y);
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private:
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int mWidth, mStride;
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uint8_t* mMem;
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};
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raw_hash_data::raw_hash_data(int w, int stride)
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{
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mWidth=w;
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mStride=stride;
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mMem = NULL;
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}
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raw_hash_data::~raw_hash_data()
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{
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delete[] mMem;
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}
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raw_hash_data::data_chunk raw_hash_data::prepare_8bit(const uint8_t* data,int y)
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{
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data_chunk chunk;
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chunk.data = data+y*mStride;
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chunk.len = mWidth;
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return chunk;
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}
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raw_hash_data::data_chunk raw_hash_data::prepare_16bit(const uint8_t* data,int y)
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{
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if (mMem == NULL) {
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mMem = new uint8_t[2*mWidth];
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}
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const uint16_t* data16 = (uint16_t*)data;
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for (int x=0; x<mWidth; x++) {
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mMem[2*x+0] = data16[y*mStride+x] & 0xFF;
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mMem[2*x+1] = data16[y*mStride+x] >> 8;
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}
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data_chunk chunk;
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chunk.data = mMem;
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chunk.len = 2*mWidth;
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return chunk;
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}
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static uint32_t compute_checksum_8bit(uint8_t* data,int w,int h,int stride, int bit_depth)
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{
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uint32_t sum = 0;
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if (bit_depth<=8) {
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for (int y=0; y<h; y++)
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for(int x=0; x<w; x++) {
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uint8_t xorMask = ( x & 0xFF ) ^ ( y & 0xFF ) ^ ( x >> 8 ) ^ ( y >> 8 );
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sum += data[y*stride + x] ^ xorMask;
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}
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}
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else {
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for (int y=0; y<h; y++)
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for(int x=0; x<w; x++) {
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uint8_t xorMask = ( x & 0xFF ) ^ ( y & 0xFF ) ^ ( x >> 8 ) ^ ( y >> 8 );
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sum += (data[y*stride + x] & 0xFF) ^ xorMask;
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sum += (data[y*stride + x] >> 8) ^ xorMask;
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}
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}
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return sum & 0xFFFFFFFF;
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}
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static inline uint16_t crc_process_byte(uint16_t crc, uint8_t byte)
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{
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for (int bit=0;bit<8;bit++) {
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int bitVal = (byte >> (7-bit)) & 1;
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int crcMsb = (crc>>15) & 1;
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crc = (((crc<<1) + bitVal) & 0xFFFF);
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if (crcMsb) { crc ^= 0x1021; }
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}
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return crc;
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}
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/*
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static uint16_t compute_CRC_8bit_old(const uint8_t* data,int w,int h,int stride)
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{
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uint16_t crc = 0xFFFF;
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for (int y=0; y<h; y++)
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for(int x=0; x<w; x++) {
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crc = crc_process_byte(crc, data[y*stride+x]);
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}
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crc = crc_process_byte(crc, 0);
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crc = crc_process_byte(crc, 0);
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return crc;
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}
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*/
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static inline uint16_t crc_process_byte_parallel(uint16_t crc, uint8_t byte)
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{
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uint16_t s = byte ^ (crc >> 8);
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uint16_t t = s ^ (s >> 4);
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return ((crc << 8) ^
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t ^
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(t << 5) ^
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(t << 12)) & 0xFFFF;
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}
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static uint32_t compute_CRC_8bit_fast(const uint8_t* data,int w,int h,int stride, int bit_depth)
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{
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raw_hash_data raw_data(w,stride);
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uint16_t crc = 0xFFFF;
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crc = crc_process_byte_parallel(crc, 0);
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crc = crc_process_byte_parallel(crc, 0);
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for (int y=0; y<h; y++) {
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raw_hash_data::data_chunk chunk;
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if (bit_depth>8)
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chunk = raw_data.prepare_16bit(data, y);
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else
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chunk = raw_data.prepare_8bit(data, y);
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for(int x=0; x<chunk.len; x++) {
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crc = crc_process_byte_parallel(crc, chunk.data[x]);
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}
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}
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return crc;
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}
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static void compute_MD5(uint8_t* data,int w,int h,int stride, uint8_t* result, int bit_depth)
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{
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MD5_CTX md5;
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MD5_Init(&md5);
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raw_hash_data raw_data(w,stride);
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for (int y=0; y<h; y++) {
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raw_hash_data::data_chunk chunk;
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if (bit_depth>8)
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chunk = raw_data.prepare_16bit(data, y);
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else
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chunk = raw_data.prepare_8bit(data, y);
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MD5_Update(&md5, (void*)chunk.data, chunk.len);
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}
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MD5_Final(result, &md5);
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}
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static de265_error process_sei_decoded_picture_hash(const sei_message* sei, de265_image* img)
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{
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const sei_decoded_picture_hash* seihash = &sei->data.decoded_picture_hash;
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/* Do not check SEI on pictures that are not output.
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Hash may be wrong, because of a broken link (BLA).
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This happens, for example in conformance stream RAP_B, where a EOS-NAL
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appears before a CRA (POC=32). */
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if (img->PicOutputFlag == false) {
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return DE265_OK;
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}
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//write_picture(img);
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int nHashes = img->get_sps().chroma_format_idc==0 ? 1 : 3;
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for (int i=0;i<nHashes;i++) {
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uint8_t* data;
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int w,h,stride;
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w = img->get_width(i);
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h = img->get_height(i);
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data = img->get_image_plane(i);
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stride = img->get_image_stride(i);
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switch (seihash->hash_type) {
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case sei_decoded_picture_hash_type_MD5:
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{
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uint8_t md5[16];
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compute_MD5(data,w,h,stride,md5, img->get_bit_depth(i));
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/*
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fprintf(stderr,"computed MD5: ");
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for (int b=0;b<16;b++) {
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fprintf(stderr,"%02x", md5[b]);
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}
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fprintf(stderr,"\n");
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*/
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for (int b=0;b<16;b++) {
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if (md5[b] != seihash->md5[i][b]) {
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/*
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fprintf(stderr,"SEI decoded picture MD5 mismatch (POC=%d)\n", img->PicOrderCntVal);
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*/
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return DE265_ERROR_CHECKSUM_MISMATCH;
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}
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}
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}
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break;
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case sei_decoded_picture_hash_type_CRC:
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{
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uint16_t crc = compute_CRC_8bit_fast(data,w,h,stride, img->get_bit_depth(i));
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logtrace(LogSEI,"SEI decoded picture hash: %04x <-[%d]-> decoded picture: %04x\n",
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seihash->crc[i], i, crc);
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if (crc != seihash->crc[i]) {
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/*
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fprintf(stderr,"SEI decoded picture hash: %04x, decoded picture: %04x (POC=%d)\n",
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seihash->crc[i], crc, img->PicOrderCntVal);
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*/
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return DE265_ERROR_CHECKSUM_MISMATCH;
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}
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}
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break;
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case sei_decoded_picture_hash_type_checksum:
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{
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uint32_t chksum = compute_checksum_8bit(data,w,h,stride, img->get_bit_depth(i));
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if (chksum != seihash->checksum[i]) {
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/*
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fprintf(stderr,"SEI decoded picture hash: %04x, decoded picture: %04x (POC=%d)\n",
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seihash->checksum[i], chksum, img->PicOrderCntVal);
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*/
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return DE265_ERROR_CHECKSUM_MISMATCH;
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}
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}
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break;
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}
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}
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loginfo(LogSEI,"decoded picture hash checked: OK\n");
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//printf("checked picture %d SEI: OK\n", img->PicOrderCntVal);
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return DE265_OK;
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}
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de265_error read_sei(bitreader* reader, sei_message* sei, bool suffix, const seq_parameter_set* sps)
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{
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int payload_type = 0;
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for (;;)
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{
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int byte = get_bits(reader,8);
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payload_type += byte;
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if (byte != 0xFF) { break; }
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}
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//printf("SEI payload: %d\n",payload_type);
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int payload_size = 0;
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for (;;)
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{
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int byte = get_bits(reader,8);
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payload_size += byte;
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if (byte != 0xFF) { break; }
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}
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sei->payload_type = (enum sei_payload_type)payload_type;
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sei->payload_size = payload_size;
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// --- sei message dispatch
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de265_error err = DE265_OK;
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switch (sei->payload_type) {
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case sei_payload_type_decoded_picture_hash:
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err = read_sei_decoded_picture_hash(reader,sei,sps);
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break;
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default:
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// TODO: unknown SEI messages are ignored
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break;
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}
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return err;
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}
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void dump_sei(const sei_message* sei, const seq_parameter_set* sps)
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{
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loginfo(LogHeaders,"SEI message: %s\n", sei_type_name(sei->payload_type));
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switch (sei->payload_type) {
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case sei_payload_type_decoded_picture_hash:
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dump_sei_decoded_picture_hash(sei, sps);
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break;
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default:
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// TODO: unknown SEI messages are ignored
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break;
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}
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}
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de265_error process_sei(const sei_message* sei, de265_image* img)
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{
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de265_error err = DE265_OK;
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switch (sei->payload_type) {
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case sei_payload_type_decoded_picture_hash:
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if (img->decctx->param_sei_check_hash) {
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err = process_sei_decoded_picture_hash(sei, img);
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if (err==DE265_OK) {
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//printf("SEI check ok\n");
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}
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}
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break;
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default:
|
||
|
// TODO: unknown SEI messages are ignored
|
||
|
break;
|
||
|
}
|
||
|
|
||
|
return err;
|
||
|
}
|
||
|
|
||
|
|
||
|
const char* sei_type_name(enum sei_payload_type type)
|
||
|
{
|
||
|
switch (type) {
|
||
|
case sei_payload_type_buffering_period:
|
||
|
return "buffering_period";
|
||
|
case sei_payload_type_pic_timing:
|
||
|
return "pic_timing";
|
||
|
case sei_payload_type_pan_scan_rect:
|
||
|
return "pan_scan_rect";
|
||
|
case sei_payload_type_filler_payload:
|
||
|
return "filler_payload";
|
||
|
case sei_payload_type_user_data_registered_itu_t_t35:
|
||
|
return "user_data_registered_itu_t_t35";
|
||
|
case sei_payload_type_user_data_unregistered:
|
||
|
return "user_data_unregistered";
|
||
|
case sei_payload_type_recovery_point:
|
||
|
return "recovery_point";
|
||
|
case sei_payload_type_scene_info:
|
||
|
return "scene_info";
|
||
|
case sei_payload_type_picture_snapshot:
|
||
|
return "picture_snapshot";
|
||
|
case sei_payload_type_progressive_refinement_segment_start:
|
||
|
return "progressive_refinement_segment_start";
|
||
|
case sei_payload_type_progressive_refinement_segment_end:
|
||
|
return "progressive_refinement_segment_end";
|
||
|
case sei_payload_type_film_grain_characteristics:
|
||
|
return "film_grain_characteristics";
|
||
|
case sei_payload_type_post_filter_hint:
|
||
|
return "post_filter_hint";
|
||
|
case sei_payload_type_tone_mapping_info:
|
||
|
return "tone_mapping_info";
|
||
|
case sei_payload_type_frame_packing_arrangement:
|
||
|
return "frame_packing_arrangement";
|
||
|
case sei_payload_type_display_orientation:
|
||
|
return "display_orientation";
|
||
|
case sei_payload_type_structure_of_pictures_info:
|
||
|
return "structure_of_pictures_info";
|
||
|
case sei_payload_type_active_parameter_sets:
|
||
|
return "active_parameter_sets";
|
||
|
case sei_payload_type_decoding_unit_info:
|
||
|
return "decoding_unit_info";
|
||
|
case sei_payload_type_temporal_sub_layer_zero_index:
|
||
|
return "temporal_sub_layer_zero_index";
|
||
|
case sei_payload_type_decoded_picture_hash:
|
||
|
return "decoded_picture_hash";
|
||
|
case sei_payload_type_scalable_nesting:
|
||
|
return "scalable_nesting";
|
||
|
case sei_payload_type_region_refresh_info:
|
||
|
return "region_refresh_info";
|
||
|
case sei_payload_type_no_display:
|
||
|
return "no_display";
|
||
|
case sei_payload_type_motion_constrained_tile_sets:
|
||
|
return "motion_constrained_tile_sets";
|
||
|
|
||
|
default:
|
||
|
return "unknown SEI message";
|
||
|
}
|
||
|
}
|