5a8eac1a5a
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@7303 a1c6a512-1295-4272-9138-f99709370657
860 lines
26 KiB
C
860 lines
26 KiB
C
/***************************************************************************
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* __________ __ ___.
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* Open \______ \ ____ ____ | | _\_ |__ _______ ___
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* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
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* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
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* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
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* \/ \/ \/ \/ \/
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* $Id$
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*
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* Copyright (C) 2002 Björn Stenberg
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*
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* All files in this archive are subject to the GNU General Public License.
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* See the file COPYING in the source tree root for full license agreement.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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****************************************************************************/
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#include "config.h"
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#include <stdio.h>
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#include <stdbool.h>
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#include "system.h"
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#include "kernel.h"
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#include "lcd.h"
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#include "menu.h"
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#include "button.h"
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#include "mp3_playback.h"
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#include "settings.h"
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#include "status.h"
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#include "screens.h"
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#ifdef HAVE_LCD_BITMAP
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#include "icons.h"
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#include "font.h"
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#include "widgets.h"
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#endif
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#include "lang.h"
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#include "sprintf.h"
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#include "talk.h"
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#include "misc.h"
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#include "sound.h"
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#if CONFIG_HWCODEC == MAS3587F
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#include "peakmeter.h"
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#include "mas.h"
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#endif
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static const char* const fmt[] =
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{
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"", /* no decimals */
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"%d.%d %s ", /* 1 decimal */
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"%d.%02d %s " /* 2 decimals */
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};
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bool set_sound(const char* string,
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int* variable,
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int setting)
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{
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bool done = false;
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bool changed = true;
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int min, max;
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int val;
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int numdec;
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int integer;
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int dec;
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const char* unit;
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char str[32];
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int talkunit = UNIT_INT;
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int steps;
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int button;
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unit = sound_unit(setting);
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numdec = sound_numdecimals(setting);
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steps = sound_steps(setting);
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min = sound_min(setting);
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max = sound_max(setting);
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if (*unit == 'd') /* crude reconstruction */
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talkunit = UNIT_DB;
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else if (*unit == '%')
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talkunit = UNIT_PERCENT;
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else if (*unit == 'H')
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talkunit = UNIT_HERTZ;
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#ifdef HAVE_LCD_BITMAP
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if(global_settings.statusbar)
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lcd_setmargins(0, STATUSBAR_HEIGHT);
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else
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lcd_setmargins(0, 0);
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#endif
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lcd_clear_display();
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lcd_puts_scroll(0,0,string);
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while (!done) {
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if (changed) {
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val = sound_val2phys(setting, *variable);
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if(numdec)
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{
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integer = val / (10 * numdec);
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dec = val % (10 * numdec);
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snprintf(str,sizeof str, fmt[numdec], integer, dec, unit);
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}
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else
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{
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snprintf(str,sizeof str,"%d %s ", val, unit);
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}
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if (global_settings.talk_menu)
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talk_value(val, talkunit, false); /* speak it */
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}
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lcd_puts(0,1,str);
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status_draw(true);
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lcd_update();
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changed = false;
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button = button_get_w_tmo(HZ/2);
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switch( button ) {
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case SETTINGS_INC:
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case SETTINGS_INC | BUTTON_REPEAT:
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(*variable)+=steps;
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if(*variable > max )
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*variable = max;
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changed = true;
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break;
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case SETTINGS_DEC:
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case SETTINGS_DEC | BUTTON_REPEAT:
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(*variable)-=steps;
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if(*variable < min )
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*variable = min;
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changed = true;
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break;
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case SETTINGS_OK:
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case SETTINGS_CANCEL:
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#ifdef SETTINGS_OK2
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case SETTINGS_OK2:
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#endif
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#ifdef SETTINGS_CANCEL2
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case SETTINGS_CANCEL2:
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#endif
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done = true;
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break;
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default:
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if(default_event_handler(button) == SYS_USB_CONNECTED)
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return true;
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break;
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}
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if (changed)
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sound_set(setting, *variable);
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}
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lcd_stop_scroll();
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return false;
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}
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static bool volume(void)
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{
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return set_sound(str(LANG_VOLUME), &global_settings.volume, SOUND_VOLUME);
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}
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static bool balance(void)
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{
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return set_sound(str(LANG_BALANCE), &global_settings.balance,
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SOUND_BALANCE);
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}
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static bool bass(void)
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{
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return set_sound(str(LANG_BASS), &global_settings.bass, SOUND_BASS);
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}
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static bool treble(void)
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{
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return set_sound(str(LANG_TREBLE), &global_settings.treble, SOUND_TREBLE);
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}
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#if (CONFIG_HWCODEC == MAS3587F) || (CONFIG_HWCODEC == MAS3539F)
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static bool loudness(void)
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{
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return set_sound(str(LANG_LOUDNESS), &global_settings.loudness,
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SOUND_LOUDNESS);
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}
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static bool mdb_strength(void)
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{
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return set_sound(str(LANG_MDB_STRENGTH), &global_settings.mdb_strength,
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SOUND_MDB_STRENGTH);
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}
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static bool mdb_harmonics(void)
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{
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return set_sound(str(LANG_MDB_HARMONICS), &global_settings.mdb_harmonics,
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SOUND_MDB_HARMONICS);
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}
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static bool mdb_center(void)
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{
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return set_sound(str(LANG_MDB_CENTER), &global_settings.mdb_center,
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SOUND_MDB_CENTER);
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}
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static bool mdb_shape(void)
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{
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return set_sound(str(LANG_MDB_SHAPE), &global_settings.mdb_shape,
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SOUND_MDB_SHAPE);
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}
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static void set_mdb_enable(bool value)
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{
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sound_set(SOUND_MDB_ENABLE, (int)value);
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}
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static bool mdb_enable(void)
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{
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return set_bool_options(str(LANG_MDB_ENABLE),
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&global_settings.mdb_enable,
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STR(LANG_SET_BOOL_YES),
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STR(LANG_SET_BOOL_NO),
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set_mdb_enable);
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}
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static void set_superbass(bool value)
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{
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sound_set(SOUND_SUPERBASS, (int)value);
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}
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static bool superbass(void)
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{
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return set_bool_options(str(LANG_SUPERBASS),
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&global_settings.superbass,
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STR(LANG_SET_BOOL_YES),
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STR(LANG_SET_BOOL_NO),
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set_superbass);
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}
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static void set_avc(int val)
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{
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sound_set(SOUND_AVC, val);
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}
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static bool avc(void)
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{
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static const struct opt_items names[] = {
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{ STR(LANG_OFF) },
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{ "20ms", TALK_ID(20, UNIT_MS) },
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{ "2s", TALK_ID(2, UNIT_SEC) },
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{ "4s", TALK_ID(4, UNIT_SEC) },
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{ "8s", TALK_ID(8, UNIT_SEC) }
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};
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return set_option(str(LANG_DECAY), &global_settings.avc, INT,
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names, 5, set_avc);
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}
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#endif
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#ifdef HAVE_RECORDING
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static bool recsource(void)
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{
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static const struct opt_items names[] = {
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{ STR(LANG_RECORDING_SRC_MIC) },
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{ STR(LANG_RECORDING_SRC_LINE) },
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{ STR(LANG_RECORDING_SRC_DIGITAL) }
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};
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return set_option(str(LANG_RECORDING_SOURCE),
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&global_settings.rec_source, INT,
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names, 3, NULL );
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}
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static bool recfrequency(void)
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{
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static const struct opt_items names[] = {
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{ "44.1kHz", TALK_ID(44, UNIT_KHZ) },
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{ "48kHz", TALK_ID(48, UNIT_KHZ) },
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{ "32kHz", TALK_ID(32, UNIT_KHZ) },
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{ "22.05kHz", TALK_ID(22, UNIT_KHZ) },
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{ "24kHz", TALK_ID(24, UNIT_KHZ) },
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{ "16kHz", TALK_ID(16, UNIT_KHZ) }
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};
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return set_option(str(LANG_RECORDING_FREQUENCY),
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&global_settings.rec_frequency, INT,
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names, 6, NULL );
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}
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static bool recchannels(void)
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{
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static const struct opt_items names[] = {
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{ STR(LANG_CHANNEL_STEREO) },
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{ STR(LANG_CHANNEL_MONO) }
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};
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return set_option(str(LANG_RECORDING_CHANNELS),
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&global_settings.rec_channels, INT,
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names, 2, NULL );
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}
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static bool recquality(void)
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{
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return set_int(str(LANG_RECORDING_QUALITY), "", UNIT_INT,
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&global_settings.rec_quality,
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NULL, 1, 0, 7, NULL );
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}
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static bool receditable(void)
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{
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return set_bool(str(LANG_RECORDING_EDITABLE),
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&global_settings.rec_editable);
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}
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static bool rectimesplit(void)
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{
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static const struct opt_items names[] = {
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{ STR(LANG_OFF) },
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{ "00:05" , TALK_ID(5, UNIT_MIN) },
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{ "00:10" , TALK_ID(10, UNIT_MIN) },
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{ "00:15" , TALK_ID(15, UNIT_MIN) },
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{ "00:30" , TALK_ID(30, UNIT_MIN) },
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{ "01:00" , TALK_ID(1, UNIT_HOUR) },
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{ "01:14" , TALK_ID(74, UNIT_MIN) },
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{ "01:20" , TALK_ID(80, UNIT_MIN) },
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{ "02:00" , TALK_ID(2, UNIT_HOUR) },
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{ "04:00" , TALK_ID(4, UNIT_HOUR) },
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{ "06:00" , TALK_ID(6, UNIT_HOUR) },
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{ "08:00" , TALK_ID(8, UNIT_HOUR) },
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{ "10:00" , TALK_ID(10, UNIT_HOUR) },
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{ "12:00" , TALK_ID(12, UNIT_HOUR) },
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{ "18:00" , TALK_ID(18, UNIT_HOUR) },
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{ "24:00" , TALK_ID(24, UNIT_HOUR) }
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};
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return set_option(str(LANG_RECORD_TIMESPLIT),
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&global_settings.rec_timesplit, INT,
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names, 16, NULL );
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}
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static bool recprerecord(void)
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{
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static const struct opt_items names[] = {
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{ STR(LANG_OFF) },
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{ "1s", TALK_ID(1, UNIT_SEC) },
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{ "2s", TALK_ID(2, UNIT_SEC) },
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{ "3s", TALK_ID(3, UNIT_SEC) },
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{ "4s", TALK_ID(4, UNIT_SEC) },
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{ "5s", TALK_ID(5, UNIT_SEC) },
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{ "6s", TALK_ID(6, UNIT_SEC) },
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{ "7s", TALK_ID(7, UNIT_SEC) },
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{ "8s", TALK_ID(8, UNIT_SEC) },
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{ "9s", TALK_ID(9, UNIT_SEC) },
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{ "10s", TALK_ID(10, UNIT_SEC) },
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{ "11s", TALK_ID(11, UNIT_SEC) },
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{ "12s", TALK_ID(12, UNIT_SEC) },
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{ "13s", TALK_ID(13, UNIT_SEC) },
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{ "14s", TALK_ID(14, UNIT_SEC) },
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{ "15s", TALK_ID(15, UNIT_SEC) },
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{ "16s", TALK_ID(16, UNIT_SEC) },
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{ "17s", TALK_ID(17, UNIT_SEC) },
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{ "18s", TALK_ID(18, UNIT_SEC) },
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{ "19s", TALK_ID(19, UNIT_SEC) },
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{ "20s", TALK_ID(20, UNIT_SEC) },
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{ "21s", TALK_ID(21, UNIT_SEC) },
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{ "22s", TALK_ID(22, UNIT_SEC) },
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{ "23s", TALK_ID(23, UNIT_SEC) },
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{ "24s", TALK_ID(24, UNIT_SEC) },
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{ "25s", TALK_ID(25, UNIT_SEC) },
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{ "26s", TALK_ID(26, UNIT_SEC) },
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{ "27s", TALK_ID(27, UNIT_SEC) },
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{ "28s", TALK_ID(28, UNIT_SEC) },
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{ "29s", TALK_ID(29, UNIT_SEC) },
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{ "30s", TALK_ID(30, UNIT_SEC) }
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};
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return set_option(str(LANG_RECORD_PRERECORD_TIME),
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&global_settings.rec_prerecord_time, INT,
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names, 31, NULL );
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}
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static bool recdirectory(void)
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{
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static const struct opt_items names[] = {
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{ rec_base_directory, -1 },
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{ STR(LANG_RECORD_CURRENT_DIR) }
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};
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return set_option(str(LANG_RECORD_DIRECTORY),
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&global_settings.rec_directory, INT,
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names, 2, NULL );
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}
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static bool reconstartup(void)
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{
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return set_bool(str(LANG_RECORD_STARTUP),
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&global_settings.rec_startup);
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}
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#endif /* MAS3587F */
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static void set_chanconf(int val)
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{
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sound_set(SOUND_CHANNELS, val);
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}
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static bool chanconf(void)
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{
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static const struct opt_items names[] = {
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{ STR(LANG_CHANNEL_STEREO) },
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{ STR(LANG_CHANNEL_MONO) },
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{ STR(LANG_CHANNEL_CUSTOM) },
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{ STR(LANG_CHANNEL_LEFT) },
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{ STR(LANG_CHANNEL_RIGHT) },
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{ STR(LANG_CHANNEL_KARAOKE) }
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};
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return set_option(str(LANG_CHANNEL), &global_settings.channel_config, INT,
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names, 6, set_chanconf );
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}
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static bool stereo_width(void)
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{
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return set_sound(str(LANG_STEREO_WIDTH), &global_settings.stereo_width,
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SOUND_STEREO_WIDTH);
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}
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bool sound_menu(void)
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{
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int m;
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bool result;
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static const struct menu_item items[] = {
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{ ID2P(LANG_VOLUME), volume },
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{ ID2P(LANG_BASS), bass },
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{ ID2P(LANG_TREBLE), treble },
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{ ID2P(LANG_BALANCE), balance },
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{ ID2P(LANG_CHANNEL_MENU), chanconf },
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{ ID2P(LANG_STEREO_WIDTH), stereo_width },
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#if (CONFIG_HWCODEC == MAS3587F) || (CONFIG_HWCODEC == MAS3539F)
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{ ID2P(LANG_LOUDNESS), loudness },
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{ ID2P(LANG_AUTOVOL), avc },
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{ ID2P(LANG_SUPERBASS), superbass },
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{ ID2P(LANG_MDB_ENABLE), mdb_enable },
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{ ID2P(LANG_MDB_STRENGTH), mdb_strength },
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{ ID2P(LANG_MDB_HARMONICS), mdb_harmonics },
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{ ID2P(LANG_MDB_CENTER), mdb_center },
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{ ID2P(LANG_MDB_SHAPE), mdb_shape },
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#endif
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};
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m=menu_init( items, sizeof(items) / sizeof(*items), NULL,
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NULL, NULL, NULL);
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result = menu_run(m);
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menu_exit(m);
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return result;
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}
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#ifdef HAVE_RECORDING
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enum trigger_menu_option
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{
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TRIGGER_MODE,
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PRERECORD_TIME,
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START_THRESHOLD,
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START_DURATION,
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STOP_THRESHOLD,
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STOP_POSTREC,
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STOP_GAP,
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TRIG_OPTION_COUNT,
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};
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#if !defined(SIMULATOR) && CONFIG_HWCODEC == MAS3587F
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static char* create_thres_str(int threshold)
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{
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static char retval[6];
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if (threshold < 0) {
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if (threshold < -88) {
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snprintf (retval, sizeof retval, "%s", str(LANG_DB_INF));
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} else {
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snprintf (retval, sizeof retval, "%ddb", threshold + 1);
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}
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} else {
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snprintf (retval, sizeof retval, "%d%%", threshold);
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}
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return retval;
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}
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#define INF_DB (-89)
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static void change_threshold(int *threshold, int change)
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{
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if (global_settings.peak_meter_dbfs) {
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if (*threshold >= 0) {
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int db = (calc_db(*threshold * MAX_PEAK / 100) - 9000) / 100;
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*threshold = db;
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}
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*threshold += change;
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if (*threshold > -1) {
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*threshold = INF_DB;
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} else if (*threshold < INF_DB) {
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*threshold = -1;
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}
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} else {
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if (*threshold < 0) {
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*threshold = peak_meter_db2sample(*threshold * 100) * 100 / MAX_PEAK;
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}
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*threshold += change;
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if (*threshold > 100) {
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*threshold = 0;
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} else if (*threshold < 0) {
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*threshold = 100;
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}
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}
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}
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/* Variable button definitions */
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#if CONFIG_KEYPAD == RECORDER_PAD
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#define TRIG_CANCEL BUTTON_OFF
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#define TRIG_ACCEPT BUTTON_PLAY
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#define TRIG_RESET_SIM BUTTON_F2
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#elif CONFIG_KEYPAD == ONDIO_PAD
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#define TRIG_CANCEL BUTTON_OFF
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#define TRIG_ACCEPT BUTTON_MENU
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#endif
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/**
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* Displays a menu for editing the trigger settings.
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*/
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bool rectrigger(void)
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{
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int exit_request = false;
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enum trigger_menu_option selected = TRIGGER_MODE;
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bool retval = false;
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int old_x_margin, old_y_margin;
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#define TRIGGER_MODE_COUNT 3
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static const unsigned char *trigger_modes[] = {
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ID2P(LANG_OFF),
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ID2P(LANG_RECORD_TRIG_NOREARM),
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ID2P(LANG_RECORD_TRIG_REARM)
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};
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#define PRERECORD_TIMES_COUNT 31
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static const unsigned char *prerecord_times[] = {
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ID2P(LANG_OFF),"1s","2s", "3s", "4s", "5s", "6s", "7s", "8s", "9s",
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"10s", "11s", "12s", "13s", "14s", "15s", "16s", "17s", "18s", "19s",
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"20s", "21s", "22s", "23s", "24s", "25s", "26s", "27s", "28s", "29s",
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"30s"
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};
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static const unsigned char *option_name[] = {
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[TRIGGER_MODE] = ID2P(LANG_RECORD_TRIGGER_MODE),
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[PRERECORD_TIME] = ID2P(LANG_RECORD_PRERECORD_TIME),
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[START_THRESHOLD] = ID2P(LANG_RECORD_START_THRESHOLD),
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[START_DURATION] = ID2P(LANG_RECORD_MIN_DURATION),
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[STOP_THRESHOLD] = ID2P(LANG_RECORD_STOP_THRESHOLD),
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[STOP_POSTREC] = ID2P(LANG_RECORD_STOP_POSTREC),
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[STOP_GAP] = ID2P(LANG_RECORD_STOP_GAP)
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};
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int old_start_thres = global_settings.rec_start_thres;
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int old_start_duration = global_settings.rec_start_duration;
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int old_prerecord_time = global_settings.rec_prerecord_time;
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int old_stop_thres = global_settings.rec_stop_thres;
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int old_stop_postrec = global_settings.rec_stop_postrec;
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int old_stop_gap = global_settings.rec_stop_gap;
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int old_trigger_mode = global_settings.rec_trigger_mode;
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int offset = 0;
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int option_lines;
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int w, h;
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/* restart trigger with new values */
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settings_apply_trigger();
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peak_meter_trigger (global_settings.rec_trigger_mode != TRIG_MODE_OFF);
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lcd_clear_display();
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old_x_margin = lcd_getxmargin();
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old_y_margin = lcd_getymargin();
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if(global_settings.statusbar)
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lcd_setmargins(0, STATUSBAR_HEIGHT);
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else
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lcd_setmargins(0, 0);
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lcd_getstringsize("M", &w, &h);
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// two lines are reserved for peak meter and trigger status
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option_lines = (LCD_HEIGHT/h) - (global_settings.statusbar ? 1:0) - 2;
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while (!exit_request) {
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int stat_height = global_settings.statusbar ? STATUSBAR_HEIGHT : 0;
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int button, i;
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const char *str;
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char option_value[TRIG_OPTION_COUNT][7];
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snprintf(
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option_value[TRIGGER_MODE],
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sizeof option_value[TRIGGER_MODE],
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"%s",
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P2STR(trigger_modes[global_settings.rec_trigger_mode]));
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snprintf (
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option_value[PRERECORD_TIME],
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sizeof option_value[PRERECORD_TIME],
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"%s",
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P2STR(prerecord_times[global_settings.rec_prerecord_time]));
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/* due to value range shift (peak_meter_define_trigger) -1 is 0db */
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if (global_settings.rec_start_thres == -1) {
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str = str(LANG_OFF);
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} else {
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str = create_thres_str(global_settings.rec_start_thres);
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}
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snprintf(
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option_value[START_THRESHOLD],
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sizeof option_value[START_THRESHOLD],
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"%s",
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str);
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snprintf(
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option_value[START_DURATION],
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sizeof option_value[START_DURATION],
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"%s",
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trig_durations[global_settings.rec_start_duration]);
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if (global_settings.rec_stop_thres <= INF_DB) {
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str = str(LANG_OFF);
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} else {
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str = create_thres_str(global_settings.rec_stop_thres);
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}
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snprintf(
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option_value[STOP_THRESHOLD],
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sizeof option_value[STOP_THRESHOLD],
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"%s",
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str);
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snprintf(
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option_value[STOP_POSTREC],
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sizeof option_value[STOP_POSTREC],
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"%s",
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trig_durations[global_settings.rec_stop_postrec]);
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snprintf(
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option_value[STOP_GAP],
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sizeof option_value[STOP_GAP],
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"%s",
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trig_durations[global_settings.rec_stop_gap]);
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lcd_set_drawmode(DRMODE_SOLID|DRMODE_INVERSEVID);
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lcd_fillrect(0, stat_height, LCD_WIDTH, LCD_HEIGHT - stat_height);
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lcd_set_drawmode(DRMODE_SOLID);
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status_draw(true);
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/* reselect FONT_SYSFONT as status_draw has changed the font */
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/*lcd_setfont(FONT_SYSFIXED);*/
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for (i = 0; i < option_lines; i++) {
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int x, y;
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str = P2STR(option_name[i + offset]);
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lcd_putsxy(5, stat_height + i * h, str);
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str = option_value[i + offset];
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lcd_getstringsize(str, &w, &h);
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y = stat_height + i * h;
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x = LCD_WIDTH - w;
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lcd_putsxy(x, y, str);
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if ((int)selected == (i + offset)) {
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lcd_set_drawmode(DRMODE_COMPLEMENT);
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lcd_fillrect(x, y, w, h);
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lcd_set_drawmode(DRMODE_SOLID);
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}
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}
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scrollbar(0, stat_height,
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4, LCD_HEIGHT - 16 - stat_height,
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TRIG_OPTION_COUNT, offset, offset + option_lines,
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VERTICAL);
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peak_meter_draw_trig(0, LCD_HEIGHT - 8 - TRIG_HEIGHT);
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button = peak_meter_draw_get_btn(0, LCD_HEIGHT - 8, LCD_WIDTH, 8);
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lcd_update();
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switch (button) {
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case TRIG_CANCEL:
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splash(50, true, str(LANG_RESET_DONE_CANCEL));
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global_settings.rec_start_thres = old_start_thres;
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global_settings.rec_start_duration = old_start_duration;
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global_settings.rec_prerecord_time = old_prerecord_time;
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global_settings.rec_stop_thres = old_stop_thres;
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global_settings.rec_stop_postrec = old_stop_postrec;
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global_settings.rec_stop_gap = old_stop_gap;
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global_settings.rec_trigger_mode = old_trigger_mode;
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exit_request = true;
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break;
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case TRIG_ACCEPT:
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exit_request = true;
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break;
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case BUTTON_UP:
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selected += TRIG_OPTION_COUNT - 1;
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selected %= TRIG_OPTION_COUNT;
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offset = MIN(offset, (int)selected);
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offset = MAX(offset, (int)selected - option_lines + 1);
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break;
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case BUTTON_DOWN:
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selected ++;
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selected %= TRIG_OPTION_COUNT;
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offset = MIN(offset, (int)selected);
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offset = MAX(offset, (int)selected - option_lines + 1);
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break;
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case BUTTON_RIGHT:
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case BUTTON_RIGHT | BUTTON_REPEAT:
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switch (selected) {
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case TRIGGER_MODE:
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global_settings.rec_trigger_mode ++;
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global_settings.rec_trigger_mode %= TRIGGER_MODE_COUNT;
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break;
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case PRERECORD_TIME:
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global_settings.rec_prerecord_time ++;
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global_settings.rec_prerecord_time %= PRERECORD_TIMES_COUNT;
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break;
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case START_THRESHOLD:
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change_threshold(&global_settings.rec_start_thres, 1);
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break;
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case START_DURATION:
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global_settings.rec_start_duration ++;
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global_settings.rec_start_duration %= TRIG_DURATION_COUNT;
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break;
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case STOP_THRESHOLD:
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change_threshold(&global_settings.rec_stop_thres, 1);
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break;
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case STOP_POSTREC:
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global_settings.rec_stop_postrec ++;
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global_settings.rec_stop_postrec %= TRIG_DURATION_COUNT;
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break;
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case STOP_GAP:
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global_settings.rec_stop_gap ++;
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global_settings.rec_stop_gap %= TRIG_DURATION_COUNT;
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break;
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case TRIG_OPTION_COUNT:
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// avoid compiler warnings
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break;
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}
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peak_meter_trigger(global_settings.rec_trigger_mode!=TRIG_OFF);
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settings_apply_trigger();
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break;
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case BUTTON_LEFT:
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case BUTTON_LEFT | BUTTON_REPEAT:
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switch (selected) {
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case TRIGGER_MODE:
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global_settings.rec_trigger_mode+=TRIGGER_MODE_COUNT-1;
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global_settings.rec_trigger_mode %= TRIGGER_MODE_COUNT;
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break;
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case PRERECORD_TIME:
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global_settings.rec_prerecord_time += PRERECORD_TIMES_COUNT - 1;
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global_settings.rec_prerecord_time %= PRERECORD_TIMES_COUNT;
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break;
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case START_THRESHOLD:
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change_threshold(&global_settings.rec_start_thres, -1);
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break;
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case START_DURATION:
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global_settings.rec_start_duration += TRIG_DURATION_COUNT-1;
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global_settings.rec_start_duration %= TRIG_DURATION_COUNT;
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break;
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case STOP_THRESHOLD:
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change_threshold(&global_settings.rec_stop_thres, -1);
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break;
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case STOP_POSTREC:
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global_settings.rec_stop_postrec +=
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TRIG_DURATION_COUNT - 1;
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global_settings.rec_stop_postrec %=
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TRIG_DURATION_COUNT;
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break;
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case STOP_GAP:
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global_settings.rec_stop_gap +=
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TRIG_DURATION_COUNT - 1;
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global_settings.rec_stop_gap %= TRIG_DURATION_COUNT;
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break;
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case TRIG_OPTION_COUNT:
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// avoid compiler warnings
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break;
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}
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if (global_settings.rec_trigger_mode == TRIG_OFF) {
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peak_meter_trigger(true);
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} else {
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/* restart trigger with new values */
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settings_apply_trigger();
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}
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break;
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#ifdef TRIG_RESET_SIM
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case TRIG_RESET_SIM:
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peak_meter_trigger(true);
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break;
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#endif
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case SYS_USB_CONNECTED:
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if(default_event_handler(button) == SYS_USB_CONNECTED) {
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retval = true;
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exit_request = true;
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}
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break;
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}
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}
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peak_meter_trigger(false);
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lcd_setfont(FONT_UI);
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lcd_setmargins(old_x_margin, old_y_margin);
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return retval;
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}
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#endif
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bool recording_menu(bool no_source)
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{
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int m;
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int i = 0;
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struct menu_item items[10];
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bool result;
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items[i].desc = ID2P(LANG_RECORDING_QUALITY);
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items[i++].function = recquality;
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items[i].desc = ID2P(LANG_RECORDING_FREQUENCY);
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items[i++].function = recfrequency;
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if(!no_source) {
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items[i].desc = ID2P(LANG_RECORDING_SOURCE);
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items[i++].function = recsource;
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}
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items[i].desc = ID2P(LANG_RECORDING_CHANNELS);
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items[i++].function = recchannels;
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items[i].desc = ID2P(LANG_RECORDING_EDITABLE);
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items[i++].function = receditable;
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items[i].desc = ID2P(LANG_RECORD_TIMESPLIT);
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items[i++].function = rectimesplit;
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items[i].desc = ID2P(LANG_RECORD_PRERECORD_TIME);
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items[i++].function = recprerecord;
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items[i].desc = ID2P(LANG_RECORD_DIRECTORY);
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items[i++].function = recdirectory;
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items[i].desc = ID2P(LANG_RECORD_STARTUP);
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items[i++].function = reconstartup;
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#if !defined(SIMULATOR) && CONFIG_HWCODEC == MAS3587F
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items[i].desc = str(LANG_RECORD_TRIGGER);
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items[i++].function = rectrigger;
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#endif
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m=menu_init( items, i, NULL, NULL, NULL, NULL);
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result = menu_run(m);
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menu_exit(m);
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return result;
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}
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#endif
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