276 lines
7.5 KiB
C
276 lines
7.5 KiB
C
/*
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BASS recording example
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Copyright (c) 2002-2019 Un4seen Developments Ltd.
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*/
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#include <gtk/gtk.h>
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#include <glade/glade.h>
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#include <string.h>
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#include <malloc.h>
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#include <regex.h>
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#include "bass.h"
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// path to glade file
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#ifndef GLADE_PATH
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#define GLADE_PATH ""
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#endif
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GladeXML *glade;
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GtkWidget *win = 0;
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GtkWidget *filesel; // file selector
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#define FREQ 44100
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#define CHANS 2
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#define BUFSTEP 200000 // memory allocation unit
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int input; // current input source
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char *recbuf = NULL; // recording buffer
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DWORD reclen; // recording length
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HRECORD rchan = 0; // recording channel
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HSTREAM chan = 0; // playback channel
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// display error messages
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void Error(const char *es)
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{
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GtkWidget *dialog = gtk_message_dialog_new(GTK_WINDOW(win), GTK_DIALOG_DESTROY_WITH_PARENT,
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GTK_MESSAGE_ERROR, GTK_BUTTONS_OK, "%s\n(error code: %d)", es, BASS_ErrorGetCode());
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gtk_dialog_run(GTK_DIALOG(dialog));
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gtk_widget_destroy(dialog);
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}
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#define GetWidget(id) glade_xml_get_widget(glade,id)
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void WindowDestroy(GtkObject *obj, gpointer data)
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{
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gtk_main_quit();
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}
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// buffer the recorded data
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BOOL CALLBACK RecordingCallback(HRECORD handle, const void *buffer, DWORD length, void *user)
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{
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// increase buffer size if needed
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if ((reclen % BUFSTEP) + length >= BUFSTEP) {
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recbuf = realloc(recbuf, ((reclen + length) / BUFSTEP + 1) * BUFSTEP);
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if (!recbuf) {
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rchan = 0;
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Error("Out of memory!");
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gtk_button_set_label(GTK_BUTTON(GetWidget("record")), "Record");
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return FALSE; // stop recording
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}
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}
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// buffer the data
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memcpy(recbuf + reclen, buffer, length);
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reclen += length;
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return TRUE; // continue recording
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}
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void StartRecording()
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{
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WAVEFORMATEX *wf;
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if (recbuf) { // free old recording
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BASS_StreamFree(chan);
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chan = 0;
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free(recbuf);
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recbuf = NULL;
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gtk_widget_set_sensitive(GetWidget("play"), FALSE);
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gtk_widget_set_sensitive(GetWidget("save"), FALSE);
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}
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// allocate initial buffer and make space for WAVE header
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recbuf = malloc(BUFSTEP);
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reclen = 44;
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// fill the WAVE header
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memcpy(recbuf, "RIFF\0\0\0\0WAVEfmt \20\0\0\0", 20);
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memcpy(recbuf + 36, "data\0\0\0\0", 8);
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wf = (WAVEFORMATEX*)(recbuf + 20);
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wf->wFormatTag = 1;
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wf->nChannels = CHANS;
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wf->wBitsPerSample = 16;
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wf->nSamplesPerSec = FREQ;
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wf->nBlockAlign = wf->nChannels * wf->wBitsPerSample / 8;
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wf->nAvgBytesPerSec = wf->nSamplesPerSec * wf->nBlockAlign;
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// start recording
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rchan = BASS_RecordStart(FREQ, CHANS, 0, RecordingCallback, 0);
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if (!rchan) {
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Error("Can't start recording");
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free(recbuf);
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recbuf = 0;
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return;
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}
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gtk_button_set_label(GTK_BUTTON(GetWidget("record")), "Stop");
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}
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void StopRecording()
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{
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BASS_ChannelStop(rchan);
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rchan = 0;
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gtk_button_set_label(GTK_BUTTON(GetWidget("record")), "Record");
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// complete the WAVE header
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*(DWORD*)(recbuf + 4) = reclen - 8;
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*(DWORD*)(recbuf + 40) = reclen - 44;
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// enable "save" button
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gtk_widget_set_sensitive(GetWidget("save"), TRUE);
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// create a stream from the recording
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if (chan = BASS_StreamCreateFile(TRUE, recbuf, 0, reclen, 0))
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gtk_widget_set_sensitive(GetWidget("play"), TRUE); // enable "play" button
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}
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gboolean FileExtensionFilter(const GtkFileFilterInfo *info, gpointer data)
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{
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return !regexec((regex_t*)data, info->filename, 0, NULL, 0);
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}
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// write the recorded data to disk
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void WriteToDisk()
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{
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int resp = gtk_dialog_run(GTK_DIALOG(filesel));
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gtk_widget_hide(filesel);
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if (resp == GTK_RESPONSE_ACCEPT) {
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char *file = gtk_file_chooser_get_filename(GTK_FILE_CHOOSER(filesel));
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FILE *fp = fopen(file, "wb");
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if (fp) {
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fwrite(recbuf, reclen, 1, fp);
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fclose(fp);
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} else
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Error("Can't create the file");
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g_free(file);
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}
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}
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void UpdateInputInfo()
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{
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float level;
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int r = BASS_RecordGetInput(input, &level); // get info on the input
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if (r == -1 || level < 0) { // failed
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r = BASS_RecordGetInput(-1, &level); // try master input instead
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if (r == -1 || level < 0) level = 1; // that failed too, just display 100%
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}
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gtk_range_set_value(GTK_RANGE(GetWidget("level")), level * 100); // set the level slider
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}
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void RecordClicked(GtkButton *obj, gpointer data)
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{
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if (!rchan)
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StartRecording();
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else
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StopRecording();
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}
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void PlayClicked(GtkButton *obj, gpointer data)
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{
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BASS_ChannelPlay(chan, TRUE); // play the recorded data
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}
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void SaveClicked(GtkButton *obj, gpointer data)
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{
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WriteToDisk();
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}
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void InputChanged(GtkComboBox *obj, gpointer data)
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{
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int i;
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input = gtk_combo_box_get_active(obj); // get the selection
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// enable the selected input
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for (i = 0; BASS_RecordSetInput(i, BASS_INPUT_OFF, -1); i++); // 1st disable all inputs, then...
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BASS_RecordSetInput(input, BASS_INPUT_ON, -1); // enable the selected
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UpdateInputInfo(); // update info
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}
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void LevelChanged(GtkRange *range, gpointer data)
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{
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double level = gtk_range_get_value(range) / 100;
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if (!BASS_RecordSetInput(input, 0, level)) // failed to set input level
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BASS_RecordSetInput(-1, 0, level); // try master level instead
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}
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gboolean TimerProc(gpointer data)
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{ // update the recording/playback counter
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char text[30] = "";
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if (rchan) { // recording
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if (!BASS_ChannelIsActive(rchan)) { // the recording has stopped, eg. unplugged device
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StopRecording();
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Error("The recording stopped");
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return TRUE;
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}
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sprintf(text, "%d", reclen - 44);
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} else if (chan) {
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if (BASS_ChannelIsActive(chan)) // playing
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sprintf(text, "%lld / %lld", BASS_ChannelGetPosition(chan, BASS_POS_BYTE), BASS_ChannelGetLength(chan, BASS_POS_BYTE));
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else
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sprintf(text, "%lld", BASS_ChannelGetLength(chan, BASS_POS_BYTE));
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}
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gtk_label_set(GTK_LABEL(GetWidget("status")), text);
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return TRUE;
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}
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int main(int argc, char* argv[])
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{
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regex_t fregex;
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gtk_init(&argc, &argv);
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// check the correct BASS was loaded
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if (HIWORD(BASS_GetVersion()) != BASSVERSION) {
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Error("An incorrect version of BASS was loaded");
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return 0;
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}
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// initalize default recording device
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if (!BASS_RecordInit(-1)) {
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Error("Can't initialize recording device");
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return 0;
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}
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// initialize default output device
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if (!BASS_Init(-1, FREQ, 0, NULL, NULL))
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Error("Can't initialize output device");
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// initialize GUI
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glade = glade_xml_new(GLADE_PATH"rectest.glade", NULL, NULL);
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if (!glade) return 0;
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win = GetWidget("window1");
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if (!win) return 0;
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glade_xml_signal_autoconnect(glade);
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{ // get list of inputs
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int c;
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const char *i;
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GtkComboBox *list = GTK_COMBO_BOX(GetWidget("input"));
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for (c = 0; i = BASS_RecordGetInputName(c); c++) {
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gtk_combo_box_append_text(list, i);
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if (!(BASS_RecordGetInput(c, NULL) & BASS_INPUT_OFF)) { // this 1 is currently "on"
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input = c;
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gtk_combo_box_set_active(list, input);
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UpdateInputInfo(); // display info
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}
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}
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}
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{ // initialize file selector
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GtkFileFilter *filter;
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filesel = gtk_file_chooser_dialog_new("Save File", GTK_WINDOW(win), GTK_FILE_CHOOSER_ACTION_SAVE,
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GTK_STOCK_CANCEL, GTK_RESPONSE_CANCEL, GTK_STOCK_SAVE, GTK_RESPONSE_ACCEPT, NULL);
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gtk_file_chooser_set_do_overwrite_confirmation(GTK_FILE_CHOOSER(filesel), TRUE);
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filter = gtk_file_filter_new();
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gtk_file_filter_set_name(filter, "WAV files");
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regcomp(&fregex, "\\.wav$", REG_ICASE | REG_NOSUB | REG_EXTENDED);
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gtk_file_filter_add_custom(filter, GTK_FILE_FILTER_FILENAME, FileExtensionFilter, &fregex, NULL);
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gtk_file_chooser_add_filter(GTK_FILE_CHOOSER(filesel), filter);
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filter = gtk_file_filter_new();
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gtk_file_filter_set_name(filter, "All files");
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gtk_file_filter_add_pattern(filter, "*");
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gtk_file_chooser_add_filter(GTK_FILE_CHOOSER(filesel), filter);
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}
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g_timeout_add(200, TimerProc, NULL);
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gtk_main();
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gtk_widget_destroy(filesel);
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regfree(&fregex);
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// release all BASS stuff
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BASS_RecordFree();
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BASS_Free();
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return 0;
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}
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