Added H264 analyser (most code by Erik Zandvliet)

This commit is contained in:
Thulinma 2017-02-28 16:24:55 +01:00
parent bf1949f5ab
commit faa696c6d1
6 changed files with 1297 additions and 62 deletions

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@ -273,6 +273,7 @@ makeAnalyser(RAX rax)
#makeAnalyser(RTP rtp) #LTS
makeAnalyser(RTSP rtsp_rtp) #LTS
makeAnalyser(TS ts) #LTS
makeAnalyser(H264 h264) #LTS
makeAnalyser(TSStream tsstream) #LTS
makeAnalyser(Stats stats) #LTS

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@ -151,6 +151,91 @@ namespace Utils {
return golombPeeker() - 1;
}
bitWriter::bitWriter(){
dataBuffer = NULL;
bufferSize = 0;
reallocate(0);
dataSize = 0;
}
bitWriter::~bitWriter(){
if (dataBuffer != NULL){
free(dataBuffer);
}
}
void bitWriter::reallocate(size_t newSize){
size_t sizeBefore = bufferSize / 8;
char * tmp;
if (dataBuffer != NULL){
tmp = (char*)realloc(dataBuffer, (newSize / 8) + 1);
}else{
tmp = (char*)malloc((newSize / 8) + 1);
}
if (tmp){
dataBuffer = tmp;
bufferSize = ((newSize / 8) + 1) * 8;
memset(dataBuffer + sizeBefore, 0x00, (bufferSize / 8) - sizeBefore);
}else{
FAIL_MSG("Could not reallocate!!");
}
}
size_t bitWriter::size() {
return dataSize;
}
void bitWriter::append(uint64_t value, size_t bitLength){
if (dataSize + bitLength > bufferSize){
reallocate(dataSize + bitLength);
}
int64_t fullShift = (bitLength / 8) * 8;
uint64_t firstMask = ((0x01ull << (bitLength % 8)) - 1) << fullShift;
appendData( ((value & firstMask) >> fullShift), bitLength - fullShift);
while (fullShift > 0) {
fullShift -= 8;
uint64_t mask = (0xFFull) << fullShift;
appendData((value & mask) >> fullShift, 8);
}
}
void bitWriter::appendData(uint8_t data, size_t len){
size_t byteOffset = dataSize / 8;
size_t bitOffset = dataSize % 8;
if (len <= 8 - bitOffset){
dataBuffer[byteOffset] |= (data << (8 - bitOffset - len));
dataSize += len;
}else{
size_t shift = (len - (8 - bitOffset));
dataBuffer[byteOffset] |= (data >> shift);
dataSize += (len - shift);
appendData(data, shift);
}
}
size_t bitWriter::UExpGolombEncodedSize(uint64_t value){
value ++;
size_t res = 1;
size_t maxVal = 1;
while (value > maxVal){
maxVal = (maxVal << 1 | 0x01);
res += 1;
}
return 2 * res - 1;
}
void bitWriter::appendExpGolomb(uint64_t value){
append(value + 1, UExpGolombEncodedSize(value));
}
void bitWriter::appendUExpGolomb(uint64_t value){
append(value + 1, UExpGolombEncodedSize(value));
}
//Note: other bitstream here
bitstreamLSBF::bitstreamLSBF() {
readBufferOffset = 0;

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@ -1,5 +1,6 @@
#pragma once
#include<string>
#include "defines.h"
namespace Utils {
class bitstream {
@ -26,6 +27,17 @@ namespace Utils {
long long unsigned int getUExpGolomb();
long long int peekExpGolomb();
long long unsigned int peekUExpGolomb();
static size_t bitSizeUExpGolomb(size_t value){
size_t i = 1;
size_t power = 2;
while (power - 2 < value){
i+= 2;
power *= 2;
}
return i;
}
private:
bool checkBufferSize(unsigned int size);
long long unsigned int golombGetter();
@ -36,6 +48,27 @@ namespace Utils {
size_t bufferSize;
};
class bitWriter {
public:
bitWriter();
~bitWriter();
size_t size();
void append(uint64_t value, size_t bitLength);
void appendExpGolomb(uint64_t value);
void appendUExpGolomb(uint64_t value);
static size_t UExpGolombEncodedSize(uint64_t value);
std::string str() { return std::string(dataBuffer, (dataSize / 8) + (dataSize % 8 ? 1 : 0)); }
protected:
void reallocate(size_t newSize);
void appendData(uint8_t data, size_t len);
char * dataBuffer;
//NOTE: ALL SIZES IN BITS!
size_t bufferSize;
size_t dataSize;
};
class bitstreamLSBF {
public:
bitstreamLSBF();

File diff suppressed because it is too large Load diff

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@ -1,7 +1,12 @@
#pragma once
#include <deque>
#include <string>
#include <cstdlib>
#include <cstdio>
#include "nal.h"
#include "bitfields.h"
#include "bitstream.h"
namespace h264 {
@ -67,4 +72,229 @@ namespace h264 {
unsigned long dataLen;
};
class nalUnit {
public:
nalUnit(const char * data, size_t len) : payload(data, len) {}
uint8_t getType() { return payload[0] & 0x1F; }
virtual void toPrettyString(std::ostream & out){
out << "Nal unit of type " << (((uint8_t)payload[0]) & 0x1F) << ", " << payload.size() << " bytes long" << std::endl;
}
void write(std::ostream & out){
//always writes in annex_b style
out.write("\000\000\000\001", 4);
out.write(payload.data(), payload.size());
}
virtual std::string generate() { return ""; }
virtual void setSPSNumber(size_t newNumber) {}
virtual void setPPSNumber(size_t newNumber) {}
protected:
std::string payload;
};
class hrd_parameters {
public:
hrd_parameters() {}
hrd_parameters(Utils::bitstream & bs);
void toPrettyString(std::ostream & out, size_t indent = 0);
uint64_t cpbCntMinus1;
uint8_t bitRateScale;
uint8_t cpbSizeScale;
};
class vui_parameters {
public:
vui_parameters() {};
vui_parameters(Utils::bitstream & bs);
void generate(Utils::bitWriter & bw);
void toPrettyString(std::ostream & out, size_t indent = 0);
bool aspectRatioInfoPresentFlag;
uint8_t aspectRatioIdc;
uint16_t sarWidth;
uint16_t sarHeight;
bool overscanInfoPresentFlag;
bool overscanAppropriateFlag;
bool videoSignalTypePresentFlag;
uint8_t videoFormat;
bool videoFullRangeFlag;
bool colourDescriptionPresentFlag;
uint8_t colourPrimaries;
uint8_t transferCharacteristics;
uint8_t matrixCoefficients;
bool chromaLocInfoPresentFlag;
uint64_t chromaSampleLocTypeTopField;
uint64_t chromaSampleLocTypeBottomField;
bool timingInfoPresentFlag;
uint32_t numUnitsInTick;
uint32_t timeScale;
bool fixedFrameRateFlag;
bool nalHrdParametersPresentFlag;
bool vclHrdParametersPresentFlag;
bool lowDelayHrdFlag;
bool picStructPresentFlag;
bool bitstreamRestrictionFlag;
bool motionVectorsOverPicBoundariesFlag;
uint64_t maxBytesPerPicDenom;
uint64_t maxBitsPerMbDenom;
uint64_t log2MaxMvLengthHorizontal;
uint64_t log2MaxMvLengthVertical;
uint64_t numReorderFrames;
uint64_t maxDecFrameBuffering;
};
class spsUnit : public nalUnit {
public:
spsUnit(const char * data, size_t len);
~spsUnit(){
if (scalingListPresentFlags != NULL){
free(scalingListPresentFlags);
}
}
std::string generate();
void toPrettyString(std::ostream & out);
void scalingList(uint64_t * scalingList, size_t sizeOfScalingList, bool & useDefaultScalingMatrixFlag, Utils::bitstream & bs);
void setSPSNumber(size_t newNumber);
uint8_t profileIdc;
bool constraintSet0Flag;
bool constraintSet1Flag;
bool constraintSet2Flag;
bool constraintSet3Flag;
bool constraintSet4Flag;
bool constraintSet5Flag;
uint8_t levelIdc;
uint64_t seqParameterSetId;
uint64_t chromaFormatIdc;
bool separateColourPlaneFlag;
uint64_t bitDepthLumaMinus8;
uint64_t bitDepthChromaMinus8;
bool qpprimeYZeroTransformBypassFlag;
bool seqScalingMatrixPresentFlag;
//Here go scaling lists
uint8_t * scalingListPresentFlags;
uint64_t ** scalingList4x4;
bool * useDefaultScalingMatrix4x4Flag;
uint64_t ** scalingList8x8;
bool * useDefaultScalingMatrix8x8Flag;
uint64_t log2MaxFrameNumMinus4;
uint64_t picOrderCntType;
uint64_t log2MaxPicOrderCntLsbMinus4;
//Here go values for pic_order_cnt_type == 1
uint64_t maxNumRefFrames;
bool gapsInFrameNumValueAllowedFlag;
uint64_t picWidthInMbsMinus1;
uint64_t picHeightInMapUnitsMinus1;
bool frameMbsOnlyFlag;
bool mbAdaptiveFrameFieldFlag;
bool direct8x8InferenceFlag;
bool frameCroppingFlag;
uint64_t frameCropLeftOffset;
uint64_t frameCropRightOffset;
uint64_t frameCropTopOffset;
uint64_t frameCropBottomOffset;
bool vuiParametersPresentFlag;
vui_parameters vuiParams;
//DERIVATIVE VALUES
uint8_t derived_subWidthC;
uint8_t derived_subHeightC;
uint8_t derived_mbWidthC;
uint8_t derived_mbHeightC;
uint64_t derived_bitDepth_Y;
uint64_t derived_qpBdOffset_Y;
uint64_t derived_bitDepth_C;
uint64_t derived_qpBdOffset_C;
uint64_t derived_rawMbBits;
uint64_t derived_maxFrameNum;
uint64_t derived_maxPicOrderCntLsb;
uint64_t derived_picWidthInMbs;
uint64_t derived_picWidthInSamples_L;
uint64_t derived_picWidthInSamples_C;
uint64_t derived_picHeightInMapUnits;
uint64_t derived_picSizeInMapUnits;
uint64_t derived_frameHeightInMbs;
size_t derived_scalingListSize;
size_t derived_scalingList4x4Amount;
size_t derived_scalingList8x8Amount;
};
class ppsUnit : public nalUnit {
public:
ppsUnit(const char * data, size_t len, uint8_t chromaFormatIdc = 0);
~ppsUnit(){
if (picScalingMatrixPresentFlags != NULL){
free(picScalingMatrixPresentFlags);
}
}
void scalingList(uint64_t * scalingList, size_t sizeOfScalingList, bool & useDefaultScalingMatrixFlag, Utils::bitstream & bs);
void setPPSNumber(size_t newNumber);
void setSPSNumber(size_t newNumber);
void toPrettyString(std::ostream & out);
std::string generate();
uint64_t picParameterSetId;
uint64_t seqParameterSetId;
bool entropyCodingModeFlag;
bool bottomFieldPicOrderInFramePresentFlag;
uint64_t numSliceGroupsMinus1;
uint64_t numrefIdx10DefaultActiveMinus1;
uint64_t numrefIdx11DefaultActiveMinus1;
bool weightedPredFlag;
uint8_t weightedBipredIdc;
int64_t picInitQpMinus26;
int64_t picInitQsMinus26;
int64_t chromaQpIndexOffset;
bool deblockingFilterControlPresentFlag;
bool constrainedIntraPredFlag;
bool redundantPicCntPresentFlag;
bool transform8x8ModeFlag;
bool picScalingMatrixPresentFlag;
//Here go scaling lists
uint8_t * picScalingMatrixPresentFlags;
uint64_t ** scalingList4x4;
bool * useDefaultScalingMatrix4x4Flag;
uint64_t ** scalingList8x8;
bool * useDefaultScalingMatrix8x8Flag;
int64_t secondChromaQpIndexOffset;
size_t derived_scalingListSize;
size_t derived_scalingList4x4Amount;
size_t derived_scalingList8x8Amount;
bool status_moreRBSP;
};
class codedSliceUnit : public nalUnit {
public:
codedSliceUnit(const char * data, size_t len);
void setPPSNumber(size_t newNumber);
void toPrettyString(std::ostream & out);
uint64_t firstMbInSlice;
uint64_t sliceType;
uint64_t picParameterSetId;
};
class seiUnit : public nalUnit {
public:
seiUnit(const char * data, size_t len);
void toPrettyString(std::ostream & out);
uint32_t payloadType;
uint32_t payloadSize;
};
nalUnit * nalFactory(FILE * in, bool annexb = true);
nalUnit * nalFactory(char * data, size_t len, size_t & offset, bool annexb = true);
}

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@ -0,0 +1,30 @@
/// \file h264_analyser.cpp
/// Reads an H264 file and prints all readable data about it
#include <string>
#include <iostream>
#include <cstdio>
#include <mist/config.h>
#include <mist/defines.h>
#include <mist/h264.h>
#include <mist/bitfields.h>
#include <mist/bitstream.h>
int main(int argc, char ** argv){
Util::Config conf = Util::Config(argv[0]);
conf.addOption("filename", JSON::fromString("{\"arg_num\":1, \"arg\":\"string\", \"help\":\"Full path of the file to analyse.\"}"));
conf.parseArgs(argc, argv);
FILE * F = fopen(conf.getString("filename").c_str(), "r+b");
if (!F){
FAIL_MSG("No such file");
}
h264::nalUnit * nalPtr = h264::nalFactory(F);
while (nalPtr){
nalPtr->toPrettyString(std::cout);
nalPtr = h264::nalFactory(F);
}
return 0;
}