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-rw-r--r--core/applets/vmemo/vmemo.cpp182
1 files changed, 94 insertions, 88 deletions
diff --git a/core/applets/vmemo/vmemo.cpp b/core/applets/vmemo/vmemo.cpp
index 73bd996..83f19f5 100644
--- a/core/applets/vmemo/vmemo.cpp
+++ b/core/applets/vmemo/vmemo.cpp
@@ -21,35 +21,37 @@
#include <stdio.h>
#include <sys/stat.h>
#include <fcntl.h>
#include <sys/ioctl.h>
#include <linux/soundcard.h>
#include <string.h>
#include <stdlib.h>
typedef struct _waveheader {
u_long main_chunk; /* 'RIFF' */
u_long length; /* filelen */
u_long chunk_type; /* 'WAVE' */
-
u_long sub_chunk; /* 'fmt ' */
- u_long sc_len; /* length of sub_chunk, =16 (chunckSize) */
+ u_long sc_len; /* length of sub_chunk, =16
+ (chunckSize) format len */
u_short format; /* should be 1 for PCM-code (formatTag) */
+
u_short modus; /* 1 Mono, 2 Stereo (channels) */
u_long sample_fq; /* samples per second (samplesPerSecond) */
u_long byte_p_sec; /* avg bytes per second (avgBytePerSecond) */
u_short byte_p_spl; /* samplesize; 1 or 2 bytes (blockAlign) */
u_short bit_p_spl; /* 8, 12 or 16 bit (bitsPerSample) */
u_long data_chunk; /* 'data' */
+
u_long data_length;/* samplecount */
} WaveHeader;
#define RIFF 0x46464952
#define WAVE 0x45564157
#define FMT 0x20746D66
#define DATA 0x61746164
#define PCM_CODE 1
#define WAVE_MONO 1
#define WAVE_STEREO 2
#include "vmemo.h"
@@ -131,97 +133,97 @@ static char * vmemo_xpm[] = {
" h0,!_;2@ ",
" ))))) "};
VMemo::VMemo( QWidget *parent, const char *name )
: QWidget( parent, name )
{
setFixedHeight( 18 );
setFixedWidth( 14 );
recording = FALSE;
struct utsname name; /* check for embedix kernel running on the zaurus, if
- lineo change string, this break
- */
+ lineo change string, this break
+ */
if (uname(&name) != -1)
- {
- QString release=name.release;
- qWarning("System release: %s\n", name.release);
- if(release.find("embedix",0,TRUE) !=-1)
- systemZaurus=TRUE;
- else
- systemZaurus=FALSE;
- }
+ {
+ QString release=name.release;
+ qWarning("System release: %s\n", name.release);
+ if(release.find("embedix",0,TRUE) !=-1)
+ systemZaurus=TRUE;
+ else
+ systemZaurus=FALSE;
+ }
}
VMemo::~VMemo()
{
}
void VMemo::paintEvent( QPaintEvent* )
{
QPainter p(this);
p.drawPixmap( 0, 1,( const char** ) vmemo_xpm );
}
void VMemo::mousePressEvent( QMouseEvent * )
{
// just to be safe
if (recording)
- {
- recording = FALSE;
- return;
- }
+ {
+ recording = FALSE;
+ return;
+ }
qWarning("VMemo::mousePress()");
QSound::play(Resource::findSound("vmemob"));
recording = TRUE;
qWarning("VMemo::mousePress() -> Starting to record");
if (openDSP() == -1)
- {
- // ### Display an error box
- QMessageBox::critical(0, "VMemo", "Could not open dsp device.", "Abort");
- recording = FALSE;
- return;
- }
+ {
+ // ### Display an error box
+ QMessageBox::critical(0, "VMemo", "Could not open dsp device.", "Abort");
+ recording = FALSE;
+ return;
+ }
Config vmCfg("VMemo");
vmCfg.setGroup("Defaults");
QDateTime dt = QDateTime::currentDateTime();
QString fileName;
if(systemZaurus)
- fileName=vmCfg.readEntry("Dir", "/mnt/cf/"); // zaurus does not have /mnt/ramfs
+ fileName=vmCfg.readEntry("Dir", "/mnt/cf/"); // zaurus does not have /mnt/ramfs
else
- fileName=vmCfg.readEntry("Dir", "/mnt/ramfs/");
+ fileName=vmCfg.readEntry("Dir", "/mnt/ramfs/");
fileName += "vm_";
fileName += dt.toString();
fileName += ".wav";
// No spaces in the filename
fileName.replace(QRegExp("'"),"");
fileName.replace(QRegExp(" "),"_");
fileName.replace(QRegExp(":"),".");
fileName.replace(QRegExp(","),"");
if(openWAV(fileName.latin1()) == -1)
- {
- // ### Display an error box
- qWarning("VMemo::mousePress() -> WAV error");
- close(dsp);
- return;
- }
+ {
+ // ### Display an error box
+ qWarning("VMemo::mousePress() -> WAV error");
+ close(dsp);
+ return;
+ }
QArray<int> cats(1);
cats[0] = vmCfg.readNumEntry("Category", 0);
QString dlName("vm_");
dlName += dt.toString();
DocLnk l;
l.setFile(fileName);
l.setName(dlName);
l.setType("audio/x-wav");
l.setCategories(cats);
l.writeLink();
@@ -233,128 +235,132 @@ void VMemo::mouseReleaseEvent( QMouseEvent * )
{
qWarning("VMemo::mouseRelese() -> Done recording");
recording = FALSE;
}
int VMemo::openDSP()
{
Config cfg("Sound");
cfg.setGroup("Record");
speed = cfg.readNumEntry("SampleRate", 11025);
channels = cfg.readNumEntry("Stereo", 1) ? 2 : 1; // 1 = stereo(2), 0 = mono(1)
- if (cfg.readNumEntry("SixteenBit", 1))
- {
- format = AFMT_S16_LE;
- resolution = 16;
- }
+ if (cfg.readNumEntry("SixteenBit", 1)==1)
+ {
+ format = AFMT_S16_LE;
+ resolution = 16;
+ }
else
- {
- format = AFMT_U8;
- resolution = 8;
- }
+ {
+ format = AFMT_U8;
+ resolution = 8;
+ }
- if(systemZaurus)
- dsp = open("/dev/dsp1", O_RDWR); //Zaurus needs /dev/dsp1
+ if(systemZaurus)
+ {
+ dsp = open("/dev/dsp1", O_RDWR); //Zaurus needs /dev/dsp1
+ channels=1; //zaurus has one input channel
+ }
else
- dsp = open("/dev/dsp", O_RDWR);
+ dsp = open("/dev/dsp", O_RDWR);
if(dsp == -1)
- {
+ {
perror("open(\"/dev/dsp\")");
return -1;
- }
+ }
if(ioctl(dsp, SNDCTL_DSP_SETFMT , &format)==-1)
- {
- perror("ioctl(\"SNDCTL_DSP_SETFMT\")");
- return -1;
- }
+ {
+ perror("ioctl(\"SNDCTL_DSP_SETFMT\")");
+ return -1;
+ }
if(ioctl(dsp, SNDCTL_DSP_CHANNELS , &channels)==-1)
- {
- perror("ioctl(\"SNDCTL_DSP_CHANNELS\")");
- return -1;
- }
+ {
+ perror("ioctl(\"SNDCTL_DSP_CHANNELS\")");
+ return -1;
+ }
if(ioctl(dsp, SNDCTL_DSP_SPEED , &speed)==-1)
- {
- perror("ioctl(\"SNDCTL_DSP_SPEED\")");
- return -1;
- }
+ {
+ perror("ioctl(\"SNDCTL_DSP_SPEED\")");
+ return -1;
+ }
if(ioctl(dsp, SOUND_PCM_READ_RATE , &rate)==-1)
- {
- perror("ioctl(\"SOUND_PCM_READ_RATE\")");
- return -1;
- }
+ {
+ perror("ioctl(\"SOUND_PCM_READ_RATE\")");
+ return -1;
+ }
return 1;
}
int VMemo::openWAV(const char *filename)
{
qDebug("Creating %s ",filename);
track.setName(filename);
if(!track.open(IO_WriteOnly|IO_Truncate|IO_Raw))
- {
- qDebug("Could not open file");
- return -1;
- }
+ {
+ qDebug("Could not open file");
+ return -1;
+ }
wav=track.handle();
WaveHeader wh;
- wh.main_chunk = RIFF;
- wh.length = 0;
- wh.chunk_type = WAVE;
-
- wh.sub_chunk = FMT;
- wh.sc_len = 16;
- wh.format = PCM_CODE;
- wh.modus = channels;
- wh.sample_fq = speed;
- wh.bit_p_spl = resolution;
- wh.byte_p_sec = wh.sample_fq * wh.bit_p_spl;
- wh.byte_p_spl = channels * (wh.bit_p_spl % 8);
-
+ wh.main_chunk = RIFF;// RIFF
+ wh.chunk_type = WAVE;//WAVE
+ wh.sub_chunk = FMT;// fmt
+ wh.sc_len = 16;// format length = 16
+ wh.format = PCM_CODE;// PCM
+ wh.modus = channels;// channels
+ wh.sample_fq = speed;//samplerate
+ wh.byte_p_sec = speed * channels * resolution/8;// av bytes per second
+ wh.byte_p_spl = channels * (resolution / 8); //block align
+ wh.bit_p_spl = resolution;//bits per sample 8, or 16
wh.data_chunk = DATA;
- wh.data_length= 0;
-
+ wh.data_length= 0; // <---
+// qDebug("Write header channels %d, speed %d, b/s %d, blockalign %d, bitrate %d"
+// , wh.modus, wh.sample_fq, wh.byte_p_sec, wh.byte_p_spl, wh.bit_p_spl );
write (wav, &wh, sizeof(WaveHeader));
return 1;
}
void VMemo::record(void)
{
int length=0, result, value;
char sound[8192];
qWarning("VMemo::record()");
while(recording)
- {
- result = read(dsp, sound, 512); // 8192
- qApp->processEvents();
- write(wav, sound, result);
- qApp->processEvents();
- length += result;
- qApp->processEvents();
- }
+ {
+ result = read(dsp, sound, 512); // 8192
+ qApp->processEvents();
+ write(wav, sound, result);
+ qApp->processEvents();
+ length += result;
+ qApp->processEvents();
+// printf("%d\r",length);
+// fflush(stdout);
+ }
qWarning("VMemo::record() -> Done recording");
qWarning("VMemo::record() -> Closing dsp");
value = length+36;
lseek(wav, 4, SEEK_SET);
write(wav, &value, 4);
lseek(wav, 40, SEEK_SET);
write(wav, &length, 4);
+// qDebug("File length %d, samplecount %d", value, length);
track.close();
if( ioctl( dsp, SNDCTL_DSP_RESET,0) == -1)// ); //tell driver to stop for a while
- perror("ioctl(\"SNDCTL_DSP_RESET\")");
+ perror("ioctl(\"SNDCTL_DSP_RESET\")");
::close(dsp);
qWarning("VMemo::record() -> playing done recording sound");
QSound::play(Resource::findSound("vmemoe"));
qWarning("VMemo::record() -> terminating");
QMessageBox::information(0, "VMemo", "Recording Done", 1);
}