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|
//=========================================================
// MusE
// Linux Music Editor
// $Id: wave.cpp,v 1.19.2.20 2009/12/20 05:00:35 terminator356 Exp $
//
// (C) Copyright 2000-2004 Werner Schweer (ws@seh.de)
//=========================================================
#include <fcntl.h>
#include <unistd.h>
#include <errno.h>
#include <cmath>
#include <QDateTime>
#include <QFileInfo>
#include <QMessageBox>
#include <QProgressDialog>
#include "xml.h"
#include "song.h"
#include "wave.h"
#include "app.h"
#include "filedialog.h"
#include "arranger/arranger.h"
#include "globals.h"
#include "event.h"
#include "audio.h"
///#include "sig.h"
#include "al/sig.h"
//#define WAVE_DEBUG
//#define WAVE_DEBUG_PRC
/*
const char* audioFilePattern[] = {
"Wave/Binary (*.wav *.ogg *.bin)",
"Wave (*.wav *.ogg)",
"Binary (*.bin)",
"All Files (*)",
0
};
*/
const int cacheMag = 128;
// ClipList* waveClips;
SndFileList SndFile::sndFiles;
//---------------------------------------------------------
// SndFile
//---------------------------------------------------------
SndFile::SndFile(const QString& name)
{
finfo = new QFileInfo(name);
sf = 0;
sfUI = 0;
csize = 0;
cache = 0;
openFlag = false;
sndFiles.push_back(this);
refCount=0;
}
SndFile::~SndFile()
{
if (openFlag)
close();
for (iSndFile i = sndFiles.begin(); i != sndFiles.end(); ++i) {
if (*i == this) {
sndFiles.erase(i);
break;
}
}
delete finfo;
if (cache) {
for (unsigned i = 0; i < channels(); ++i)
delete cache[i];
delete[] cache;
cache = 0;
}
}
//---------------------------------------------------------
// openRead
//---------------------------------------------------------
bool SndFile::openRead()
{
if (openFlag) {
printf("SndFile:: alread open\n");
return false;
}
QString p = path();
sfinfo.format = 0;
sf = sf_open(p.toLatin1().constData(), SFM_READ, &sfinfo);
sfinfo.format = 0;
sfUI = sf_open(p.toLatin1().constData(), SFM_READ, &sfinfo);
if (sf == 0 || sfUI == 0)
return true;
writeFlag = false;
openFlag = true;
QString cacheName = finfo->absolutePath() + QString("/") + finfo->completeBaseName() + QString(".wca");
readCache(cacheName, true);
return false;
}
//---------------------------------------------------------
// update
// called after recording to file
//---------------------------------------------------------
void SndFile::update()
{
close();
// force recreation of wca data
QString cacheName = finfo->absolutePath() +
QString("/") + finfo->completeBaseName() + QString(".wca");
::remove(cacheName.toLatin1().constData());
if (openRead()) {
printf("SndFile::update openRead(%s) failed: %s\n", path().toLatin1().constData(), strerror().toLatin1().constData());
}
}
//---------------------------------------------------------
// readCache
//---------------------------------------------------------
void SndFile::readCache(const QString& path, bool showProgress)
{
// printf("readCache %s for %d samples channel %d\n",
// path.toLatin1().constData(), samples(), channels());
if (cache) {
for (unsigned i = 0; i < channels(); ++i)
delete cache[i];
delete[] cache;
}
if (samples() == 0) {
// printf("SndFile::readCache: file empty\n");
return;
}
csize = (samples() + cacheMag - 1)/cacheMag;
cache = new SampleV*[channels()];
for (unsigned ch = 0; ch < channels(); ++ch)
cache[ch] = new SampleV[csize];
FILE* cfile = fopen(path.toLatin1().constData(), "r");
if (cfile) {
for (unsigned ch = 0; ch < channels(); ++ch)
fread(cache[ch], csize * sizeof(SampleV), 1, cfile);
fclose(cfile);
return;
}
//---------------------------------------------------
// create cache
//---------------------------------------------------
QProgressDialog* progress = 0;
if (showProgress) {
QString label(QWidget::tr("create peakfile for "));
label += basename();
progress = new QProgressDialog(label,
QString::null, 0, csize, 0);
progress->setMinimumDuration(0);
progress->show();
}
float data[channels()][cacheMag];
float* fp[channels()];
for (unsigned k = 0; k < channels(); ++k)
fp[k] = &data[k][0];
int interval = csize / 10;
if(!interval)
interval = 1;
for (int i = 0; i < csize; i++) {
if (showProgress && ((i % interval) == 0))
progress->setValue(i);
seek(i * cacheMag, 0);
read(channels(), fp, cacheMag);
for (unsigned ch = 0; ch < channels(); ++ch) {
float rms = 0.0;
cache[ch][i].peak = 0;
for (int n = 0; n < cacheMag; n++) {
float fd = data[ch][n];
rms += fd * fd;
int idata = int(fd * 255.0);
if (idata < 0)
idata = -idata;
if (cache[ch][i].peak < idata)
cache[ch][i].peak = idata;
}
// amplify rms value +12dB
int rmsValue = int((sqrt(rms/cacheMag) * 255.0));
if (rmsValue > 255)
rmsValue = 255;
cache[ch][i].rms = rmsValue;
}
}
if (showProgress)
progress->setValue(csize);
writeCache(path);
if (showProgress)
delete progress;
}
//---------------------------------------------------------
// writeCache
//---------------------------------------------------------
void SndFile::writeCache(const QString& path)
{
FILE* cfile = fopen(path.toLatin1().constData(), "w");
if (cfile == 0)
return;
for (unsigned ch = 0; ch < channels(); ++ch)
fwrite(cache[ch], csize * sizeof(SampleV), 1, cfile);
fclose(cfile);
}
//---------------------------------------------------------
// read
//---------------------------------------------------------
void SndFile::read(SampleV* s, int mag, unsigned pos, bool overwrite)
{
if(overwrite)
for (unsigned ch = 0; ch < channels(); ++ch) {
s[ch].peak = 0;
s[ch].rms = 0;
}
if (pos > samples()) {
// printf("%p pos %d > samples %d\n", this, pos, samples());
return;
}
if (mag < cacheMag) {
float data[channels()][mag];
float* fp[channels()];
for (unsigned i = 0; i < channels(); ++i)
fp[i] = &data[i][0];
sf_count_t ret = 0;
if(sfUI)
ret = sf_seek(sfUI, pos, SEEK_SET);
else
ret = sf_seek(sf, pos, SEEK_SET);
if(ret == -1)
return;
{
int srcChannels = channels();
int dstChannels = sfinfo.channels;
size_t n = mag;
float** dst = fp;
float buffer[n * dstChannels];
size_t rn = 0;
if(sfUI)
rn = sf_readf_float(sfUI, buffer, n);
else
rn = sf_readf_float(sf, buffer, n);
if(rn != n)
return;
float* src = buffer;
if (srcChannels == dstChannels) {
for (size_t i = 0; i < rn; ++i) {
for (int ch = 0; ch < srcChannels; ++ch)
*(dst[ch]+i) = *src++;
}
}
else if ((srcChannels == 1) && (dstChannels == 2)) {
// stereo to mono
for (size_t i = 0; i < rn; ++i)
*(dst[0] + i) = src[i + i] + src[i + i + 1];
}
else if ((srcChannels == 2) && (dstChannels == 1)) {
// mono to stereo
for (size_t i = 0; i < rn; ++i) {
float data = *src++;
*(dst[0]+i) = data;
*(dst[1]+i) = data;
}
}
}
for (unsigned ch = 0; ch < channels(); ++ch) {
if(overwrite)
s[ch].peak = 0;
float rms = 0.0;
for (int i = 0; i < mag; i++) {
float fd = data[ch][i];
rms += fd;
int idata = int(fd * 255.0);
if (idata < 0)
idata = -idata;
if (s[ch].peak < idata)
s[ch].peak = idata;
}
s[ch].rms = 0; // TODO rms / mag;
}
}
else {
mag /= cacheMag;
int rest = csize - (pos/cacheMag);
int end = mag;
if (rest < mag)
end = rest;
for (unsigned ch = 0; ch < channels(); ++ch) {
int rms = 0;
int off = pos/cacheMag;
for (int offset = off; offset < off+end; offset++) {
rms += cache[ch][offset].rms;
if (s[ch].peak < cache[ch][offset].peak)
s[ch].peak = cache[ch][offset].peak;
}
if(overwrite)
s[ch].rms = rms / mag;
else
s[ch].rms += rms / mag;
}
}
}
//---------------------------------------------------------
// openWrite
//---------------------------------------------------------
bool SndFile::openWrite()
{
if (openFlag) {
printf("SndFile:: alread open\n");
return false;
}
QString p = path();
sf = sf_open(p.toLatin1().constData(), SFM_RDWR, &sfinfo);
sfUI = 0;
if (sf) {
openFlag = true;
writeFlag = true;
QString cacheName = finfo->absolutePath() +
QString("/") + finfo->completeBaseName() + QString(".wca");
readCache(cacheName, true);
}
return sf == 0;
}
//---------------------------------------------------------
// close
//---------------------------------------------------------
void SndFile::close()
{
if (!openFlag) {
printf("SndFile:: alread closed\n");
return;
}
sf_close(sf);
if (sfUI)
sf_close(sfUI);
openFlag = false;
}
//---------------------------------------------------------
// remove
//---------------------------------------------------------
void SndFile::remove()
{
if (openFlag)
close();
QFile::remove(finfo->filePath());
}
QString SndFile::basename() const
{
return finfo->completeBaseName();
}
QString SndFile::path() const
{
return finfo->filePath();
}
QString SndFile::dirPath() const
{
return finfo->absolutePath();
}
QString SndFile::name() const
{
return finfo->fileName();
}
//---------------------------------------------------------
// samples
//---------------------------------------------------------
unsigned SndFile::samples() const
{
if (!writeFlag) // if file is read only sfinfo is reliable
return sfinfo.frames;
sf_count_t curPos = sf_seek(sf, 0, SEEK_CUR);
int frames = sf_seek(sf, 0, SEEK_END);
sf_seek(sf, curPos, SEEK_SET);
return frames;
}
//---------------------------------------------------------
// channels
//---------------------------------------------------------
unsigned SndFile::channels() const
{
return sfinfo.channels;
}
unsigned SndFile::samplerate() const
{
return sfinfo.samplerate;
}
unsigned SndFile::format() const
{
return sfinfo.format;
}
void SndFile::setFormat(int fmt, int ch, int rate)
{
sfinfo.samplerate = rate;
sfinfo.channels = ch;
sfinfo.format = fmt;
sfinfo.seekable = true;
sfinfo.frames = 0;
}
//---------------------------------------------------------
// readWithHeap
// not as realtime friendly but can retrieve bigger data
//---------------------------------------------------------
size_t SndFile::readWithHeap(int srcChannels, float** dst, size_t n, bool overwrite)
{
float *buffer = new float[n * sfinfo.channels];
int rn = readInternal(srcChannels,dst,n,overwrite, buffer);
delete buffer;
return rn;
}
//---------------------------------------------------------
// read
//---------------------------------------------------------
size_t SndFile::read(int srcChannels, float** dst, size_t n, bool overwrite)
{
float buffer[n * sfinfo.channels];
int rn = readInternal(srcChannels,dst,n,overwrite, buffer);
return rn;
}
size_t SndFile::readInternal(int srcChannels, float** dst, size_t n, bool overwrite, float *buffer)
{
size_t rn = sf_readf_float(sf, buffer, n);
float* src = buffer;
int dstChannels = sfinfo.channels;
if (srcChannels == dstChannels) {
if(overwrite)
for (size_t i = 0; i < rn; ++i) {
for (int ch = 0; ch < srcChannels; ++ch)
*(dst[ch]+i) = *src++;
}
else
for (size_t i = 0; i < rn; ++i) {
for (int ch = 0; ch < srcChannels; ++ch)
*(dst[ch]+i) += *src++;
}
}
else if ((srcChannels == 1) && (dstChannels == 2)) {
// stereo to mono
if(overwrite)
for (size_t i = 0; i < rn; ++i)
*(dst[0] + i) = src[i + i] + src[i + i + 1];
else
for (size_t i = 0; i < rn; ++i)
*(dst[0] + i) += src[i + i] + src[i + i + 1];
}
else if ((srcChannels == 2) && (dstChannels == 1)) {
// mono to stereo
if(overwrite)
for (size_t i = 0; i < rn; ++i) {
float data = *src++;
*(dst[0]+i) = data;
*(dst[1]+i) = data;
}
else
for (size_t i = 0; i < rn; ++i) {
float data = *src++;
*(dst[0]+i) += data;
*(dst[1]+i) += data;
}
}
else {
printf("SndFile:read channel mismatch %d -> %d\n",
srcChannels, dstChannels);
}
return rn;
}
//---------------------------------------------------------
// write
//
// A hardcoded limiter was added that limits the output at 0.99/-0.99
// libsndfile handles signal betwee -1.0/1.0 with current setting
// outside these values there will be heavy distortion
//
//---------------------------------------------------------
size_t SndFile::write(int srcChannels, float** src, size_t n)
{
int dstChannels = sfinfo.channels;
//float buffer[n * dstChannels];
float *buffer = new float[n * dstChannels];
float *dst = buffer;
const float limitValue=0.9999;
if (srcChannels == dstChannels) {
for (size_t i = 0; i < n; ++i) {
for (int ch = 0; ch < dstChannels; ++ch)
//*dst++ = *(src[ch]+i); // < limitValue ? *(src[ch]+i) : limitValue;
if (*(src[ch]+i) > 0)
*dst++ = *(src[ch]+i) < limitValue ? *(src[ch]+i) : limitValue;
else
*dst++ = *(src[ch]+i) > -limitValue ? *(src[ch]+i) : -limitValue;
}
}
else if ((srcChannels == 1) && (dstChannels == 2)) {
// mono to stereo
for (size_t i = 0; i < n; ++i) {
float data = *(src[0]+i);
if (data > 0) {
*dst++ = data < limitValue ? data : limitValue;
*dst++ = data < limitValue ? data : limitValue;
}
else {
*dst++ = data > -limitValue ? data : -limitValue;
*dst++ = data > -limitValue ? data : -limitValue;
}
}
}
else if ((srcChannels == 2) && (dstChannels == 1)) {
// stereo to mono
for (size_t i = 0; i < n; ++i)
if (*(src[0]+i) + *(src[1]+i) > 0)
*dst++ = (*(src[0]+i) + *(src[1]+i)) < limitValue ? (*(src[0]+i) + *(src[1]+i)) : limitValue;
else
*dst++ = (*(src[0]+i) + *(src[1]+i)) > -limitValue ? (*(src[0]+i) + *(src[1]+i)) : -limitValue;
}
else {
printf("SndFile:write channel mismatch %d -> %d\n",
srcChannels, dstChannels);
delete buffer;
return 0;
}
int nbr = sf_writef_float(sf, buffer, n) ;
delete buffer;
return nbr;
}
//---------------------------------------------------------
// seek
//---------------------------------------------------------
off_t SndFile::seek(off_t frames, int whence)
{
return sf_seek(sf, frames, whence);
}
//---------------------------------------------------------
// strerror
//---------------------------------------------------------
QString SndFile::strerror() const
{
char buffer[128];
buffer[0] = 0;
sf_error_str(sf, buffer, 128);
return QString(buffer);
}
//---------------------------------------------------------
// search
//---------------------------------------------------------
SndFile* SndFileList::search(const QString& name)
{
for (iSndFile i = begin(); i != end(); ++i) {
if ((*i)->path() == name)
return *i;
}
return 0;
}
//---------------------------------------------------------
// getSnd
//---------------------------------------------------------
SndFile* getWave(const QString& inName, bool readOnlyFlag)
{
QString name = inName;
if (QFileInfo(name).isRelative()) {
name = museProject + QString("/") + name;
}
else {
if (!QFile::exists(name)) {
if (QFile::exists(museProject + QString("/") + name)) {
name = museProject + QString("/") + name;
}
}
}
// printf("=====%s %s\n", inName.toLatin1().constData(), name.toLatin1().constData());
// only open one instance of wave file
SndFile* f = SndFile::sndFiles.search(name);
if (f == 0) {
if (!QFile::exists(name)) {
fprintf(stderr, "wave file <%s> not found\n",
name.toLatin1().constData());
return 0;
}
f = new SndFile(name);
bool error;
if (readOnlyFlag)
error = f->openRead();
else {
error = f->openWrite();
// if peak cache is older than wave file we reaquire the cache
QFileInfo wavinfo(name);
QString cacheName = wavinfo.absolutePath() + QString("/") + wavinfo.completeBaseName() + QString(".wca");
QFileInfo wcainfo(cacheName);
if (!wcainfo.exists() || wcainfo.lastModified() < wavinfo.lastModified()) {
//printf("wcafile is older or does not exist!\n");
QFile(cacheName).remove();
f->readCache(cacheName,true);
}
}
if (error) {
fprintf(stderr, "open wave file(%s) for %s failed: %s\n",
name.toLatin1().constData(),
readOnlyFlag ? "writing" : "reading",
f->strerror().toLatin1().constData());
QMessageBox::critical(NULL, "MusE import error.",
"MusE failed to import the file.\n"
"Possibly this wasn't a sound file?\n"
"If it was check the permissions, MusE\n"
"sometimes requires write access to the file.");
delete f;
f = 0;
}
}
else {
if (!readOnlyFlag && ! f->isWritable()) {
if (f->isOpen())
f->close();
f->openWrite();
}
else {
// if peak cache is older than wave file we reaquire the cache
QFileInfo wavinfo(name);
QString cacheName = wavinfo.absolutePath() + QString("/") + wavinfo.completeBaseName() + QString(".wca");
QFileInfo wcainfo(cacheName);
if (!wcainfo.exists() || wcainfo.lastModified() < wavinfo.lastModified()) {
//printf("wcafile is older or does not exist!\n");
QFile(cacheName).remove();
f->readCache(cacheName,true);
}
}
}
return f;
}
//---------------------------------------------------------
// applyUndoFile
//---------------------------------------------------------
void SndFile::applyUndoFile(const QString& original, const QString& tmpfile, unsigned startframe, unsigned endframe)
{
// This one is called on both undo and redo of a wavfile
// For redo to be called, undo must have been called first, and we don't store both the original data and the modified data in separate
// files. Thus, each time this function is called the data in the "original"-file will be written to the tmpfile, after the data
// from the tmpfile has been applied.
//
// F.ex. if mute has been made on part of a wavfile, the unmuted data is stored in the tmpfile when
// the undo operation occurs. The unmuted data is then written back to the original file, and the mute data will be
// put in the tmpfile, and when redo is eventually called the data is switched again (causing the muted data to be written to the "original"
// file. The data is merely switched.
//printf("Applying undofile: orig=%s tmpfile=%s startframe=%d endframe=%d\n", original.toLatin1().constData(), tmpfile.toLatin1().constData(), startframe, endframe);
SndFile* orig = sndFiles.search(original);
SndFile tmp = SndFile(tmpfile);
if (!orig) {
printf("Internal error: could not find original file: %s in filelist - Aborting\n", original.toLatin1().constData());
return;
}
if (!orig->isOpen()) {
if (orig->openRead()) {
printf("Cannot open original file %s for reading - cannot undo! Aborting\n", original.toLatin1().constData());
return;
}
}
if (!tmp.isOpen()) {
if (tmp.openRead()) {
printf("Could not open temporary file %s for writing - cannot undo! Aborting\n", tmpfile.toLatin1().constData());
return;
}
}
audio->msgIdle(true);
tmp.setFormat(orig->format(), orig->channels(), orig->samplerate());
// Read data in original file to memory before applying tmpfile to original
unsigned file_channels = orig->channels();
unsigned tmpdatalen = endframe - startframe;
float* data2beoverwritten[file_channels];
for (unsigned i=0; i<file_channels; i++) {
data2beoverwritten[i] = new float[tmpdatalen];
}
orig->seek(startframe, 0);
orig->readWithHeap(file_channels, data2beoverwritten, tmpdatalen);
orig->close();
// Read data from temporary file to memory
float* tmpfiledata[file_channels];
for (unsigned i=0; i<file_channels; i++) {
tmpfiledata[i] = new float[tmpdatalen];
}
tmp.seek(0, 0);
tmp.readWithHeap(file_channels, tmpfiledata, tmpdatalen);
tmp.close();
// Write temporary data to original file:
if (orig->openWrite()) {
printf("Cannot open orig for write - aborting.\n");
return;
}
orig->seek(startframe, 0);
orig->write(file_channels, tmpfiledata, tmpdatalen);
// Delete dataholder for temporary file
for (unsigned i=0; i<file_channels; i++) {
delete[] tmpfiledata[i];
}
// Write the overwritten data to the tmpfile
if (tmp.openWrite()) {
printf("Cannot open tmpfile for writing - redo operation of this file won't be possible. Aborting.\n");
audio->msgIdle(false);
return;
}
tmp.seek(0, 0);
tmp.write(file_channels, data2beoverwritten, tmpdatalen);
tmp.close();
// Delete dataholder for replaced original file
for (unsigned i=0; i<file_channels; i++) {
delete[] data2beoverwritten[i];
}
orig->close();
orig->openRead();
orig->update();
audio->msgIdle(false);
}
//---------------------------------------------------------
// importAudio
//---------------------------------------------------------
void MusE::importWave()
{
Track* track = arranger->curTrack();
if (track == 0 || track->type() != Track::WAVE) {
QMessageBox::critical(this, QString("MusE"),
tr("to import an audio file you have first to select"
"a wave track"));
return;
}
//QString fn = getOpenFileName(lastWavePath, audioFilePattern, this,
QString fn = getOpenFileName(lastWavePath, audio_file_pattern, this,
tr("Import Wave File"), 0);
if (!fn.isEmpty()) {
lastWavePath = fn;
importWaveToTrack(fn);
}
}
//---------------------------------------------------------
// importWaveToTrack
//---------------------------------------------------------
bool MusE::importWaveToTrack(QString& name, unsigned tick, Track* track)
{
if (track==NULL)
track = (WaveTrack*)(arranger->curTrack());
SndFile* f = getWave(name, true);
if (f == 0) {
printf("import audio file failed\n");
return true;
}
int samples = f->samples();
if ((unsigned)sampleRate !=f->samplerate()) {
if(QMessageBox::question(this, tr("Import Wavefile"),
tr("This wave file has a samplerate of %1,\n"
"as opposed to current setting %2.\n"
"Do you still want to import it?").arg(f->samplerate()).arg(sampleRate),
tr("&Yes"), tr("&No"),
QString::null, 0, 1 ))
{
//printf("why won't muse let me delete the file object? %d\n", f->getRefCount());
if (f->getRefCount() == 0)
delete f;
return true;
}
}
track->setChannels(f->channels());
WavePart* part = new WavePart((WaveTrack *)track);
if (tick)
part->setTick(tick);
else
part->setTick(song->cpos());
part->setLenFrame(samples);
Event event(Wave);
SndFileR sf(f);
event.setSndFile(sf);
event.setSpos(0);
event.setLenFrame(samples);
part->addEvent(event);
part->setName(QFileInfo(name).completeBaseName());
audio->msgAddPart(part);
unsigned endTick = part->tick() + part->lenTick();
if (song->len() < endTick)
song->setLen(endTick);
return false;
}
#if 0
//---------------------------------------------------------
// Clip
//---------------------------------------------------------
ClipBase::ClipBase(const SndFileR& file, int start, int l)
: f(file)
{
refCount = 0;
for (int i = 1; true; ++i) {
_name.sprintf("%s.%d", f.basename().toLatin1().constData(), i);
ciClip ic = waveClips->begin();
for (; ic != waveClips->end(); ++ic) {
if ((*ic)->name() == _name)
break;
}
if (ic == waveClips->end())
break;
// try another name
}
_spos = start;
len = l;
deleted = false;
lrefs = 0;
waveClips->add(this);
}
//---------------------------------------------------------
// read
//---------------------------------------------------------
void ClipBase::read(unsigned srcOffset, float** buffer, int channel, unsigned n)
{
if (f.isNull())
return;
f.seek(srcOffset + _spos, 0);
f.read(channel, buffer, n);
}
ClipBase::~ClipBase()
{
waveClips->remove(this);
}
//---------------------------------------------------------
// ClipList::write(level, xml)
//---------------------------------------------------------
void ClipList::write(int level, Xml& xml) const
{
for (ciClip i = begin(); i != end(); ++i) {
ClipBase* clip = *i;
// only write visible clips
if (clip->references())
(*i)->write(level, xml);
}
}
//---------------------------------------------------------
// ClipBase::write(level, xml)
//---------------------------------------------------------
void ClipBase::write(int level, Xml& xml) const
{
xml.tag(level++, "clip");
QString path = f.dirPath();
//
// waves in the project dirctory are stored
// with relative path name, others with absolute path
//
if (path == museProject)
xml.strTag(level, "file", f.name());
else
xml.strTag(level, "file", f.path());
xml.strTag(level, "name", _name);
xml.intTag(level, "tick", _spos);
xml.intTag(level, "len", len);
xml.etag(level, "clip");
}
//---------------------------------------------------------
// ClipBase::read
//---------------------------------------------------------
ClipBase* readClip(Xml& xml)
{
SndFile* f = 0;
QString name;
unsigned spos = 0;
int len = 0;
for (;;) {
Xml::Token token = xml.parse();
const QString& tag = xml.s1();
switch (token) {
case Xml::Error:
case Xml::End:
return 0;
case Xml::TagStart:
if (tag == "file")
f = getWave(xml.parse1(), false);
else if (tag == "name")
name = xml.parse1();
else if (tag == "tick")
spos = xml.parseInt();
else if (tag == "len")
len = xml.parseInt();
else
xml.unknown("Clip");
break;
case Xml::TagEnd:
if (tag == "clip") {
if (!f)
printf("clip: file not found\n");
ClipBase* clip = new ClipBase(f, spos, len);
clip->setName(name);
return clip;
}
default:
break;
}
}
}
//---------------------------------------------------------
// search
//---------------------------------------------------------
Clip ClipList::search(const QString& name) const
{
for (ciClip i = begin(); i != end(); ++i)
if ((*i)->name() == name)
return Clip(*i);
fprintf(stderr, "ClipList: clip <%s> not found\n",
name.toLatin1().constData());
return Clip();
}
//---------------------------------------------------------
// remove
//---------------------------------------------------------
void ClipList::remove(ClipBase* clip)
{
for (iClip i = begin(); i != end(); ++i) {
if (*i == clip) {
erase(i);
return;
}
}
printf("ClipList:remove: clip not found\n");
}
//---------------------------------------------------------
// idx
//---------------------------------------------------------
int ClipList::idx(const Clip& clip) const
{
int n = 0;
for (ciClip i = begin(); i != end(); ++i, ++n) {
if (clip == *i)
return n;
}
return -1;
}
#endif
//---------------------------------------------------------
// cmdAddRecordedWave
//---------------------------------------------------------
//void Song::cmdAddRecordedWave(WaveTrack* track, const Pos& s, const Pos& e)
void Song::cmdAddRecordedWave(WaveTrack* track, Pos s, Pos e)
{
if (debugMsg)
printf("cmdAddRecordedWave - loopCount = %d, punchin = %d", audio->loopCount(), punchin());
SndFile* f = track->recFile();
if (f == 0) {
printf("cmdAddRecordedWave: no snd file for track <%s>\n",
track->name().toLatin1().constData());
return;
}
// Removed by Tim. p3.3.8
//unsigned startTick = roundDownBar(s.tick());
//unsigned endTick = roundUpBar(e.tick());
// Added by Tim. p3.3.8
if((audio->loopCount() > 0 && s.tick() > lPos().tick()) || (punchin() && s.tick() < lPos().tick()))
s.setTick(lPos().tick());
// If we are looping, just set the end to the right marker, since we don't know how many loops have occurred.
// (Fixed: Added Audio::loopCount)
// Otherwise if punchout is on, limit the end to the right marker.
//if(loop() || (punchout() && e.tick() > rPos().tick()) )
if((audio->loopCount() > 0) || (punchout() && e.tick() > rPos().tick()) )
e.setTick(rPos().tick());
// No part to be created? Delete the rec sound file.
if(s.tick() >= e.tick())
{
QString st = f->path();
delete f;
// The function which calls this function already does this immediately after. But do it here anyway.
track->setRecFile(0);
remove(st.toLatin1().constData());
if(debugMsg)
printf("Song::cmdAddRecordedWave: remove file %s - start=%d end=%d\n", st.toLatin1().constData(), s.tick(), e.tick());
return;
}
// Round the start down using the Arranger part snap raster value.
unsigned startTick = AL::sigmap.raster1(s.tick(), song->arrangerRaster());
// Round the end up using the Arranger part snap raster value.
unsigned endTick = AL::sigmap.raster2(e.tick(), song->arrangerRaster());
f->update();
WavePart* part = new WavePart(track);
part->setTick(startTick);
part->setLenTick(endTick - startTick);
part->setName(track->name());
// create Event
Event event(Wave);
SndFileR sf(f);
event.setSndFile(sf);
// We are done with the _recFile member. Set to zero. The function which
// calls this function already does this immediately after. But do it here anyway.
track->setRecFile(0);
event.setSpos(0);
// Since the part start was snapped down, we must apply the difference so that the
// wave event tick lines up with when the user actually started recording.
// Added by Tim. p3.3.8
event.setTick(s.tick() - startTick);
event.setLenFrame(e.frame() - s.frame());
part->addEvent(event);
song->cmdAddPart(part);
if (song->len() < endTick)
song->setLen(endTick);
}
//---------------------------------------------------------
// cmdChangeWave
// called from GUI context
//---------------------------------------------------------
void Song::cmdChangeWave(QString original, QString tmpfile, unsigned sx, unsigned ex)
{
char* original_charstr = new char[original.length() + 1];
char* tmpfile_charstr = new char[tmpfile.length() + 1];
strcpy(original_charstr, original.toLatin1().constData());
strcpy(tmpfile_charstr, tmpfile.toLatin1().constData());
song->undoOp(UndoOp::ModifyClip, original_charstr, tmpfile_charstr, sx, ex);
}
//---------------------------------------------------------
// SndFileR
//---------------------------------------------------------
SndFileR::SndFileR(SndFile* _sf)
{
sf = _sf;
if (sf)
(sf->refCount)++;
}
SndFileR::SndFileR(const SndFileR& ed)
{
sf = ed.sf;
if (sf)
(sf->refCount)++;
}
//---------------------------------------------------------
// operator=
//---------------------------------------------------------
SndFileR& SndFileR::operator=(const SndFileR& ed)
{
if (sf == ed.sf)
return *this;
if (sf && --(sf->refCount) == 0) {
delete sf;
}
sf = ed.sf;
if (sf)
(sf->refCount)++;
return *this;
}
//---------------------------------------------------------
// ~SndFileR
//---------------------------------------------------------
SndFileR::~SndFileR()
{
if (sf)
if (--(sf->refCount) == 0) {
delete sf;
sf=NULL;
}
}
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