263 lines
9.5 KiB
C++
263 lines
9.5 KiB
C++
#include <cstdio>
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#include <cstdlib>
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#include <cstring>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <dirent.h>
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#include <sstream>
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#include "timing.h"
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#include "converter.h"
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#include "procs.h"
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#include "config.h"
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namespace Converter {
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Converter::Converter(){
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fillFFMpegEncoders();
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}
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void Converter::fillFFMpegEncoders(){
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std::vector<char*> cmd;
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cmd.reserve(3);
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cmd.push_back((char*)"ffmpeg");
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cmd.push_back((char*)"-encoders");
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cmd.push_back(NULL);
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int outFD = -1;
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Util::Procs::StartPiped("FFMpegInfo", &cmd[0], 0, &outFD, 0);
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while( Util::Procs::isActive("FFMpegInfo")){ Util::sleep(100); }
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FILE * outFile = fdopen( outFD, "r" );
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char * fileBuf = 0;
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size_t fileBufLen = 0;
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while ( !(feof(outFile) || ferror(outFile)) && (getline(&fileBuf, &fileBufLen, outFile) != -1)){
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if (strstr(fileBuf, "aac") || strstr(fileBuf, "AAC")){
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strtok(fileBuf, " \t");
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allCodecs["ffmpeg"][strtok(NULL, " \t")] = "aac";
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}
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if (strstr(fileBuf, "h264") || strstr(fileBuf, "H264")){
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strtok(fileBuf, " \t");
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allCodecs["ffmpeg"][strtok(NULL, " \t")] = "h264";
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}
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if (strstr(fileBuf, "mp3") || strstr(fileBuf, "MP3")){
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strtok(fileBuf, " \t");
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allCodecs["ffmpeg"][strtok(NULL, " \t")] = "mp3";
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}
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}
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fclose( outFile );
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}
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converterInfo & Converter::getCodecs(){
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return allCodecs;
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}
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JSON::Value Converter::getEncoders(){
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JSON::Value result;
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for (converterInfo::iterator convIt = allCodecs.begin(); convIt != allCodecs.end(); convIt++){
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for (codecInfo::iterator codIt = convIt->second.begin(); codIt != convIt->second.end(); codIt++){
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result[convIt->first][codIt->first] = codIt->second;
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}
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}
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return result;
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}
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JSON::Value Converter::queryPath(std::string myPath){
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std::vector<char*> cmd;
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cmd.reserve(3);
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cmd.push_back((char*)"MistInfo");
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cmd.push_back(NULL);
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cmd.push_back(NULL);
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fprintf( stderr, "Querying %s\n", myPath.c_str());
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JSON::Value result;
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DIR * Dirp = opendir(myPath.c_str());
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struct stat StatBuf;
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if (Dirp){
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dirent * entry;
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while ((entry = readdir(Dirp))){
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if (stat(std::string(myPath + "/" + entry->d_name).c_str(), &StatBuf) == -1){
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continue;
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}
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if ((StatBuf.st_mode & S_IFREG) == 0){
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continue;
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}
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std::string fileName = entry->d_name;
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std::string myPath = std::string(myPath + (myPath[myPath.size()-1] == '/' ? "" : "/") + entry->d_name);
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cmd[1] = (char*)myPath.c_str();
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int outFD = -1;
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Util::Procs::StartPiped("MistInfo", &cmd[0], 0, &outFD, 0);
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while( Util::Procs::isActive("MistInfo")){ Util::sleep(10); }
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FILE * outFile = fdopen( outFD, "r" );
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char * fileBuf = 0;
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size_t fileBufLen = 0;
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getline(&fileBuf, &fileBufLen, outFile);
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std::string line = fileBuf;
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result[fileName] = JSON::fromString(std::string(fileBuf));
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if ( !result[fileName]){
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result.removeMember(fileName);
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}
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fclose( outFile );
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}
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}
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return result;
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}
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void Converter::startConversion(std::string name, JSON::Value parameters) {
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if ( !parameters.isMember("input")){
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statusHistory[name] = "No input file supplied";
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return;
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}
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if ( !parameters.isMember("output")){
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statusHistory[name] = "No output file supplied";
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return;
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}
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if ( !parameters.isMember("encoder")){
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statusHistory[name] = "No encoder specified";
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return;
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}
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if (allCodecs.find(parameters["encoder"]) == allCodecs.end()){
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statusHistory[name] = "Can not find encoder " + parameters["encoder"];
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return;
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}
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std::stringstream encoderCommand;
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if (parameters["encoder"] == "ffmpeg"){
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encoderCommand << "ffmpeg -i ";
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encoderCommand << parameters["input"].asString() << " ";
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if (parameters.isMember("video")){
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if ( !parameters["video"].isMember("codec") || parameters["video"]["codec"] == "copy"){
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encoderCommand << "-vcodec copy ";
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}else{
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codecInfo::iterator vidCodec = allCodecs["ffmpeg"].find(parameters["video"]["codec"]);
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if (vidCodec == allCodecs["ffmpeg"].end()){
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statusHistory[name] = "Can not find video codec " + parameters["video"]["codec"].asString();
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return;
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}
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encoderCommand << "-vcodec " << vidCodec->first << " ";
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if (parameters["video"].isMember("kfps")){
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encoderCommand << "-r " << parameters["video"]["kfps"].asInt() / 1000 << " ";
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}
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///\todo Keyframe interval (different in older and newer versions of ffmpeg?)
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}
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}else{
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encoderCommand << "-vn ";
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}
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if (parameters.isMember("audio")){
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if ( !parameters["audio"].isMember("codec")){
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encoderCommand << "-acodec copy ";
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}else{
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codecInfo::iterator audCodec = allCodecs["ffmpeg"].find(parameters["audio"]["codec"]);
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if (audCodec == allCodecs["ffmpeg"].end()){
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statusHistory[name] = "Can not find audio codec " + parameters["audio"]["codec"].asString();
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return;
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}
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if (audCodec->second == "aac"){
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encoderCommand << "-strict -2 ";
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}
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encoderCommand << "-acodec " << audCodec->first << " ";
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if (parameters["audio"].isMember("samplerate")){
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encoderCommand << "-ar " << parameters["audio"]["samplerate"].asInt() << " ";
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}
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}
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}else{
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encoderCommand << "-an ";
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}
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encoderCommand << "-f flv -";
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}
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int statusFD = -1;
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Util::Procs::StartPiped2(name,encoderCommand.str(),Util::getMyPath() + "MistFLV2DTSC -o " + parameters["output"].asString(),0,0,&statusFD,0);
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parameters["statusFD"] = statusFD;
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allConversions[name] = parameters;
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}
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void Converter::updateStatus(){
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if (allConversions.size()){
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std::map<std::string,JSON::Value>::iterator cIt;
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bool hasChanged = true;
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while (hasChanged && allConversions.size()){
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hasChanged = false;
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for (cIt = allConversions.begin(); cIt != allConversions.end(); cIt++){
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if (Util::Procs::isActive(cIt->first)){
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continue;
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}
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if (cIt->second["output"].asString().find(".dtsc") != std::string::npos){
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statusHistory[cIt->first] = "Conversion succesful, running DTSCFix";
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Util::Procs::Start(cIt->first+"DTSCFix",Util::getMyPath() + "MistDTSCFix " + cIt->second["output"].asString());
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}else{
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statusHistory[cIt->first] = "Conversion succesful";
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}
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allConversions.erase(cIt);
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hasChanged = true;
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break;
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}
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}
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}
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if(statusHistory.size()){
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std::map<std::string,std::string>::iterator sIt;
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for (sIt = statusHistory.begin(); sIt != statusHistory.end(); sIt++){
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if (statusHistory[sIt->first].find("DTSCFix") != std::string::npos){
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if (Util::Procs::isActive(sIt->first+"DTSCFIX")){
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continue;
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}
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statusHistory[sIt->first] = "Conversion succesful";
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}
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}
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}
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}
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JSON::Value parseFFMpegStatus(std::string statusLine){
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JSON::Value result;
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int curOffset = statusLine.find("frame=") + 6;
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result["frame"] = atoi(statusLine.substr(curOffset, statusLine.find("fps=") - curOffset).c_str() );
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curOffset = statusLine.find("time=") + 5;
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int myTime = 0;
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myTime += atoi(statusLine.substr(curOffset, 2).c_str()) * 60 * 60 * 1000;
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myTime += atoi(statusLine.substr(curOffset+3, 2).c_str()) * 60 * 1000;
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myTime += atoi(statusLine.substr(curOffset+6, 2).c_str()) *1000;
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myTime += atoi(statusLine.substr(curOffset+9, 2).c_str()) * 10;
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result["time"] = myTime;
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return result;
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}
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JSON::Value Converter::getStatus(){
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updateStatus();
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JSON::Value result;
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if (allConversions.size()){
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for (std::map<std::string,JSON::Value>::iterator cIt = allConversions.begin(); cIt != allConversions.end(); cIt++){
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int statusFD = dup(cIt->second["statusFD"].asInt());
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fsync( statusFD );
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FILE* statusFile = fdopen( statusFD, "r" );
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char * fileBuf = 0;
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size_t fileBufLen = 0;
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fseek(statusFile,0,SEEK_END);
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std::string line;
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int totalTime = 0;
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do{
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getdelim(&fileBuf, &fileBufLen, '\r', statusFile);
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line = fileBuf;
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if (line.find("Duration") != std::string::npos){
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int curOffset = line.find("Duration: ") + 10;
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totalTime += atoi(line.substr(curOffset, 2).c_str()) * 60 * 60 * 1000;
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totalTime += atoi(line.substr(curOffset+3, 2).c_str()) * 60 * 1000;
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totalTime += atoi(line.substr(curOffset+6, 2).c_str()) *1000;
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totalTime += atoi(line.substr(curOffset+9, 2).c_str()) * 10;
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cIt->second["duration"] = totalTime;
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}
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}while(line.find("frame") != 0);//"frame" is the fist word on an actual status line of ffmpeg
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result[cIt->first] = parseFFMpegStatus( line );
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result[cIt->first]["duration"] = cIt->second["duration"];
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result[cIt->first]["progress"] = (result[cIt->first]["time"].asInt() * 100) / cIt->second["duration"].asInt();
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free(fileBuf);
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fclose(statusFile);
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}
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}
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if (statusHistory.size()){
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std::map<std::string,std::string>::iterator sIt;
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for (sIt = statusHistory.begin(); sIt != statusHistory.end(); sIt++){
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result[sIt->first] = sIt->second;
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}
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}
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return result;
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}
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void Converter::clearStatus(){
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statusHistory.clear();
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}
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}
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