Added RIFF analyser
This commit is contained in:
parent
945e6f2d1a
commit
b7d1d38fb4
6 changed files with 350 additions and 0 deletions
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@ -169,6 +169,7 @@ set(libHeaders
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${SOURCE_DIR}/lib/vorbis.h
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${SOURCE_DIR}/lib/triggers.h
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${SOURCE_DIR}/lib/opus.h
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${SOURCE_DIR}/lib/riff.h
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)
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########################################
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@ -215,6 +216,7 @@ set(libSources
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${SOURCE_DIR}/lib/vorbis.cpp
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${SOURCE_DIR}/lib/triggers.cpp
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${SOURCE_DIR}/lib/opus.cpp
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${SOURCE_DIR}/lib/riff.cpp
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)
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########################################
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@ -282,6 +284,7 @@ makeAnalyser(TS ts) #LTS
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makeAnalyser(MP4 mp4) #LTS
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makeAnalyser(H264 h264) #LTS
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makeAnalyser(HLS hls) #LTS
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makeAnalyser(RIFF riff) #LTS
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#LTS_START
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########################################
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@ -68,5 +68,58 @@ namespace Bit{
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p[7] = val & 0xFF;
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}
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/// Retrieves a short in little endian from the pointer p.
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inline unsigned short btohs_le(const char * p) {
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return ((unsigned short)p[1] << 8) | p[0];
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}
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/// Stores a short value of val in little endian to the pointer p.
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inline void htobs_le(char * p, unsigned short val) {
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p[1] = (val >> 8) & 0xFF;
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p[0] = val & 0xFF;
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}
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/// Retrieves a long in network order from the pointer p.
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inline unsigned long btohl_le(const char * p) {
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return ((unsigned long)p[3] << 24) | ((unsigned long)p[2] << 16) | ((unsigned long)p[1] << 8) | p[0];
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}
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/// Stores a long value of val in little endian to the pointer p.
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inline void htobl_le(char * p, unsigned long val) {
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p[3] = (val >> 24) & 0xFF;
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p[2] = (val >> 16) & 0xFF;
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p[1] = (val >> 8) & 0xFF;
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p[0] = val & 0xFF;
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}
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/// Retrieves a long in little endian from the pointer p.
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inline unsigned long btoh24_le(const char * p) {
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return ((unsigned long)p[2] << 16) | ((unsigned long)p[1] << 8) | p[0];
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}
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/// Stores a long value of val in network order to the pointer p.
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inline void htob24_le(char * p, unsigned long val) {
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p[2] = (val >> 16) & 0xFF;
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p[1] = (val >> 8) & 0xFF;
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p[0] = val & 0xFF;
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}
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/// Retrieves a long long in little endian from the pointer p.
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inline unsigned long long btohll_le(const char * p) {
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return ((unsigned long long)p[7] << 56) | ((unsigned long long)p[6] << 48) | ((unsigned long long)p[5] << 40) | ((unsigned long long)p[4] << 32) | ((unsigned long)p[3] << 24) | ((unsigned long)p[2] << 16) | ((unsigned long)p[1] << 8) | p[0];
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}
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/// Stores a long value of val in little endian to the pointer p.
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inline void htobll_le(char * p, unsigned long long val) {
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p[7] = (val >> 56) & 0xFF;
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p[6] = (val >> 48) & 0xFF;
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p[5] = (val >> 40) & 0xFF;
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p[4] = (val >> 32) & 0xFF;
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p[3] = (val >> 24) & 0xFF;
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p[2] = (val >> 16) & 0xFF;
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p[1] = (val >> 8) & 0xFF;
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p[0] = val & 0xFF;
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}
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}
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158
lib/riff.cpp
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158
lib/riff.cpp
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@ -0,0 +1,158 @@
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#include "riff.h"
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namespace RIFF{
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Chunk::Chunk(const void *_p, uint32_t len){
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p = (const char *)_p;
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if (len && len < getPayloadSize() + 8){
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FAIL_MSG("Chunk %s (%lub) does not fit in %lu bytes length!", getType().c_str(),
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getPayloadSize() + 8, len);
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p = 0;
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}
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}
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Chunk::Chunk(void *_p, const char * t, uint32_t len){
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p = (const char *)_p;
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memcpy((void*)p, t, 4);
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Bit::htobl_le((char*)p+4, len);
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}
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void Chunk::toPrettyString(std::ostream &o, size_t indent) const{
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if (!p){
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o << std::string(indent, ' ') << "INVALID CHUNK" << std::endl;
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return;
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}
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switch (Bit::btohl(p)){
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case 0x52494646lu: // RIFF
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case 0x4C495354lu: // LIST
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return ListChunk(p).toPrettyString(o, indent);
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case 0x666D7420: // "fmt "
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return fmt(p).toPrettyString(o, indent);
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case 0x66616374: // fact
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return fact(p).toPrettyString(o, indent);
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case 0x49534654: // ISFT
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return ISFT(p).toPrettyString(o, indent);
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default:
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o << std::string(indent, ' ') << "[" << getType() << "] UNIMPLEMENTED ("
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<< (getPayloadSize() + 8) << "b)" << std::endl;
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}
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}
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void ListChunk::toPrettyString(std::ostream &o, size_t indent) const{
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o << std::string(indent, ' ') << "[" << getType() << "] " << getIdentifier() << " ("
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<< (getPayloadSize() + 8) << "b):" << std::endl;
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indent += 2;
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uint32_t i = 12;
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uint32_t len = getPayloadSize() + 8;
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while (i + 8 <= len){
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const Chunk C(p + i);
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C.toPrettyString(o, indent);
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i += C.getPayloadSize() + 8;
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if (!C){return;}
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}
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}
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uint16_t fmt::getFormat() const{
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if (!p){return 0;}
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return Bit::btohs_le(p + 8);
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}
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std::string fmt::getCodec() const{
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switch (getFormat()){
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case 0x1: return "PCM";
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case 0x2: return "ADPCM";
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case 0x3: return "FLOAT";
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case 0x102:
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case 0x172:
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case 0x6: return "PCMA";
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case 0x101:
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case 0x171:
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case 0x7: return "PCMU";
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case 0x55: return "MP3";
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case 0xFFFE: // Extended, not implemented
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default: return "?";
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}
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}
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uint16_t fmt::getChannels() const{
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if (!p){return 0;}
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return Bit::btohs_le(p + 10);
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}
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uint32_t fmt::getHz() const{
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if (!p){return 0;}
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return Bit::btohl_le(p + 12);
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}
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uint32_t fmt::getBPS() const{
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if (!p){return 0;}
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return Bit::btohl_le(p + 16);
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}
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uint16_t fmt::getBlockSize() const{
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if (!p){return 0;}
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return Bit::btohs_le(p + 20);
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}
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uint16_t fmt::getSize() const{
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if (!p){return 0;}
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return Bit::btohs_le(p + 22);
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}
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uint16_t fmt::getExtLen() const{
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if (getPayloadSize() < 18){return 0;}
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return Bit::btohs_le(p + 24);
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}
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uint16_t fmt::getValidBits() const{
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if (getPayloadSize() < 20 || getExtLen() < 2){return 0;}
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return Bit::btohs_le(p + 26);
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}
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uint32_t fmt::getChannelMask() const{
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if (getPayloadSize() < 24 || getExtLen() < 6){return 0;}
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return Bit::btohl_le(p + 28);
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}
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std::string fmt::getGUID() const{
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if (getPayloadSize() < 40 || getExtLen() < 22){return "";}
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return std::string(p + 32, 16);
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}
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void fmt::toPrettyString(std::ostream &o, size_t indent) const{
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o << std::string(indent, ' ') << "[" << getType() << "] (" << (getPayloadSize() + 8)
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<< "b):" << std::endl;
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indent += 1;
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o << std::string(indent, ' ') << "Codec: " << getCodec() << " (" << getFormat() << ")"
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<< std::endl;
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o << std::string(indent, ' ') << "Channels: " << getChannels() << std::endl;
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o << std::string(indent, ' ') << "Sample rate: " << getHz() << "Hz" << std::endl;
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o << std::string(indent, ' ') << "Bytes/s: " << getBPS() << std::endl;
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o << std::string(indent, ' ') << "Block size: " << getBlockSize() << " bytes" << std::endl;
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o << std::string(indent, ' ') << "Sample size: " << getSize() << " bits" << std::endl;
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if (getExtLen()){
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o << std::string(indent, ' ') << "-- extended " << getExtLen() << "bytes --" << std::endl;
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if (getExtLen() >= 2){
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o << std::string(indent, ' ') << "Valid bits: " << getValidBits() << std::endl;
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}
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if (getExtLen() >= 6){
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o << std::string(indent, ' ') << "Channel mask: " << getChannelMask() << std::endl;
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}
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if (getExtLen() >= 22){
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o << std::string(indent, ' ') << "GUID: " << getGUID() << std::endl;
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}
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}
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}
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uint32_t fact::getSamplesPerChannel() const{
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if (!p){return 0;}
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return Bit::btohl_le(p + 8);
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}
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void fact::toPrettyString(std::ostream &o, size_t indent) const{
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o << std::string(indent, ' ') << "[" << getType() << "] (" << (getPayloadSize() + 8)
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<< "b):" << std::endl;
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indent += 1;
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o << std::string(indent, ' ') << "Samples per channel: " << getSamplesPerChannel() << std::endl;
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}
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std::string ISFT::getSoftware() const{
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if (!p){return 0;}
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return std::string(p+8, getPayloadSize());
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}
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void ISFT::toPrettyString(std::ostream &o, size_t indent) const{
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o << std::string(indent, ' ') << "[" << getType() << "] (" << (getPayloadSize() + 8)
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<< "b):" << std::endl;
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indent += 1;
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o << std::string(indent, ' ') << "Software: " << getSoftware() << std::endl;
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}
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}
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77
lib/riff.h
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77
lib/riff.h
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#pragma once
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#include "bitfields.h"
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#include "defines.h"
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#include <string>
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namespace RIFF{
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/// Basic RIFF chunk class - can only read type and size.
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/// All RIFF chunks have this format.
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class Chunk{
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public:
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Chunk(const void *_p = 0, uint32_t len = 0);
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Chunk(void *_p, const char * t, uint32_t len);
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inline operator bool() const{return p;}
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inline std::string getType() const{
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if (!p){return "";}
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return std::string(p, 4);
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}
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inline uint32_t getPayloadSize() const{
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if (!p){return 0;}
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return Bit::btohl_le(p + 4);
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}
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virtual void toPrettyString(std::ostream &o, size_t indent = 0) const;
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protected:
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const char *p;
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};
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/// List-type RIFF chunk. Can read list identifier.
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/// "RIFF" and "LIST" type chunks follow this format.
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class ListChunk : public Chunk{
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public:
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ListChunk(const void *_p = 0, uint32_t len = 0) : Chunk(_p, len){}
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inline std::string getIdentifier() const{
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if (!p){return "";}
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return std::string(p + 8, 4);
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}
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virtual void toPrettyString(std::ostream &o, size_t indent = 0) const;
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};
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/// WAVE "fmt " class.
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class fmt : public Chunk{
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public:
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fmt(const void *_p = 0, uint32_t len = 0) : Chunk(_p, len){}
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uint16_t getFormat() const;
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std::string getCodec() const;
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uint16_t getChannels() const;
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uint32_t getHz() const;
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uint32_t getBPS() const;
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uint16_t getBlockSize() const;
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uint16_t getSize() const;
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uint16_t getExtLen() const;
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uint16_t getValidBits() const;
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uint32_t getChannelMask() const;
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std::string getGUID() const;
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virtual void toPrettyString(std::ostream &o, size_t indent = 0) const;
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};
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/// WAVE fact class.
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class fact : public Chunk {
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public:
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fact(const void *_p = 0, uint32_t len = 0) : Chunk(_p, len){}
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uint32_t getSamplesPerChannel() const;
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virtual void toPrettyString(std::ostream &o, size_t indent = 0) const;
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};
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/// ISFT class. Contains software name.
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class ISFT : public Chunk {
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public:
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ISFT(const void *_p = 0, uint32_t len = 0) : Chunk(_p, len){}
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std::string getSoftware() const;
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virtual void toPrettyString(std::ostream &o, size_t indent = 0) const;
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};
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}
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44
src/analysers/analyser_riff.cpp
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44
src/analysers/analyser_riff.cpp
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#include "analyser_riff.h"
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#include <iostream>
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#include <mist/riff.h>
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void AnalyserRIFF::init(Util::Config &conf){
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Analyser::init(conf);
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}
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AnalyserRIFF::AnalyserRIFF(Util::Config &conf) : Analyser(conf){
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curPos = prePos = 0;
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}
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bool AnalyserRIFF::parsePacket(){
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prePos = curPos;
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// Read in smart bursts until we have enough data
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while (isOpen() && dataBuffer.size() < neededBytes()){
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uint64_t needed = neededBytes();
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dataBuffer.reserve(needed);
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for (uint64_t i = dataBuffer.size(); i < needed; ++i){
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dataBuffer += std::cin.get();
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++curPos;
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if (!std::cin.good()){dataBuffer.erase(dataBuffer.size() - 1, 1);}
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}
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}
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if (dataBuffer.size() < 8){return false;}
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RIFF::Chunk C(dataBuffer.data(), dataBuffer.size());
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INFO_MSG("Read a chunk at position %d", prePos);
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if (detail >= 2){C.toPrettyString(std::cout);}
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///\TODO update mediaTime with the current timestamp
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if (C){
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dataBuffer.erase(0, C.getPayloadSize()+8);
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return true;
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}
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return false;
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}
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/// Calculates how many bytes we need to read a whole box.
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uint64_t AnalyserRIFF::neededBytes(){
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if (dataBuffer.size() < 8){return 8;}
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return RIFF::Chunk(dataBuffer.data()).getPayloadSize()+8;
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}
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15
src/analysers/analyser_riff.h
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15
src/analysers/analyser_riff.h
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#include "analyser.h"
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class AnalyserRIFF : public Analyser{
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public:
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AnalyserRIFF(Util::Config &conf);
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static void init(Util::Config &conf);
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bool parsePacket();
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private:
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uint64_t neededBytes();
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std::string dataBuffer;
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uint64_t curPos;
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uint64_t prePos;
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};
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