Improved power management (FS#3001). Shutdown rockbox when the battery gets to a level where the device doesn't function properly. Calculate remaining charging time while charging (rather than remaining running time). Show "Low Battery" and "Battery Empty" warnings. Also fixes FS#4786.
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@11507 a1c6a512-1295-4272-9138-f99709370657
This commit is contained in:
parent
b3d2017057
commit
8d2711b7d2
7 changed files with 402 additions and 86 deletions
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@ -9782,3 +9782,31 @@
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*: "Keine Abspielliste"
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</voice>
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</phrase>
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<phrase>
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id: LANG_WARNING_BATTERY_LOW
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desc: general warning
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user:
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<source>
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*: "WARNING! Low Battery!"
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</source>
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<dest>
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*: "WARNUNG! Batterie fast leer!"
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</dest>
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<voice>
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*: ""
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</voice>
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</phrase>
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<phrase>
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id: LANG_WARNING_BATTERY_EMPTY
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desc: general warning
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user:
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<source>
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*: "Battery empty! RECHARGE!"
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</source>
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<dest>
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*: "Batterie ist leer! AUFLADEN!"
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</dest>
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<voice>
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*: ""
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</voice>
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</phrase>
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@ -10196,3 +10196,31 @@
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*: "New file"
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</voice>
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</phrase>
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<phrase>
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id: LANG_WARNING_BATTERY_LOW
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desc: general warning
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user:
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<source>
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*: "WARNING! Low Battery!"
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</source>
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<dest>
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*: "WARNING! Low Battery!"
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</dest>
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<voice>
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*: ""
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</voice>
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</phrase>
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<phrase>
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id: LANG_WARNING_BATTERY_EMPTY
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desc: general warning
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user:
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<source>
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*: "Battery empty! RECHARGE!"
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</source>
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<dest>
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*: "Battery empty! RECHARGE!"
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</dest>
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<voice>
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*: ""
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</voice>
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</phrase>
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12
apps/misc.c
12
apps/misc.c
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@ -583,6 +583,15 @@ static bool clean_shutdown(void (*callback)(void *), void *parameter)
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#ifdef X5_BACKLIGHT_SHUTDOWN
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x5_backlight_shutdown();
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#endif
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if (!battery_level_safe())
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gui_syncsplash(3*HZ, true, "%s %s",
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str(LANG_WARNING_BATTERY_EMPTY),
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str(LANG_SHUTTINGDOWN));
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else if (battery_level_critical())
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gui_syncsplash(3*HZ, true, "%s %s",
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str(LANG_WARNING_BATTERY_LOW),
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str(LANG_SHUTTINGDOWN));
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else {
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#ifdef HAVE_TAGCACHE
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if (!tagcache_prepare_shutdown())
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{
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@ -591,8 +600,8 @@ static bool clean_shutdown(void (*callback)(void *), void *parameter)
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return false;
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}
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#endif
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gui_syncsplash(0, true, str(LANG_SHUTTINGDOWN));
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}
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if (global_settings.fade_on_stop
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&& (audio_status() & AUDIO_STATUS_PLAY))
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@ -607,6 +616,7 @@ static bool clean_shutdown(void (*callback)(void *), void *parameter)
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if (callback != NULL)
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callback(parameter);
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if (!battery_level_critical()) /* do not save on critical battery */
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system_flush();
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#ifdef HAVE_EEPROM_SETTINGS
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if (firmware_settings.initialized)
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@ -95,12 +95,24 @@ extern charger_input_state_type charger_input_state;
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# define CURRENT_BACKLIGHT 0 /* no backlight */
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#else /* Values for HD based jukeboxes */
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#ifdef IRIVER_H100_SERIES
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# define CURRENT_NORMAL 80
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# define CURRENT_NORMAL 80 /* 16h playback on 1300mAh battery */
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# define CURRENT_BACKLIGHT 23 /* from IriverBattery twiki page */
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# define CURRENT_SPDIF_OUT 10 /* optical SPDIF output on */
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#else
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# define CURRENT_NORMAL 145 /* usual current in mA when using the AJB including some disk/backlight/... activity */
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# define CURRENT_BACKLIGHT 30 /* additional current when backlight always on */
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#endif /* not IRIVER_H100_SERIES */
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#define CURRENT_USB 500 /* usual current in mA in USB mode */
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# define CURRENT_BACKLIGHT 30 /* additional current when backlight is always on */
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#ifdef IRIVER_H100_SERIES
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# define CURRENT_RECORD 105 /* additional current while recording */
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#elif defined(IRIVER_H300_SERIES)
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# define CURRENT_RECORD 110
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#elif defined(HAVE_RECORDING)
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# define CURRENT_RECORD 35 /* FIXME: this needs adjusting */
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#endif
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#ifdef HAVE_REMOTE_LCD
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# define CURRENT_REMOTE 8 /* add. current when H100-remote connected */
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#endif
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# define CURRENT_MIN_CHG 70 /* minimum charge current */
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# define MIN_CHG_V 8500 /* at 8.5v charger voltage get CURRENT_MIN_CHG */
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@ -112,7 +124,6 @@ extern charger_input_state_type charger_input_state;
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# define MAX_CHG_V 10250 /* anything over 10.25v gives CURRENT_MAX_CHG */
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#endif /* not HAVE_MMC */
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extern unsigned int bat; /* filtered battery voltage, centivolts */
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extern unsigned short power_history[POWER_HISTORY_LEN];
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/* Start up power management thread */
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@ -120,10 +131,10 @@ void powermgmt_init(void);
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#endif /* SIMULATOR */
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/* Returns battery level in percent */
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int battery_level(void);
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/* Returns battery statust */
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int battery_level(void); /* percent */
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int battery_time(void); /* minutes */
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int battery_adc_voltage(void); /* voltage from ADC in centivolts */
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unsigned int battery_voltage(void); /* filtered batt. voltage in centivolts */
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/* read unfiltered battery info */
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@ -132,6 +143,9 @@ void battery_read_info(int *adc, int *voltage, int *level);
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/* Tells if the battery level is safe for disk writes */
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bool battery_level_safe(void);
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/* Tells if battery is in critical power saving state */
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bool battery_level_critical(void);
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void set_poweroff_timeout(int timeout);
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void set_battery_capacity(int capacity); /* set local battery capacity value */
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void set_battery_type(int type); /* set local battery type */
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@ -49,10 +49,15 @@
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#include "wm8758.h"
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#elif defined(HAVE_WM8975)
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#include "wm8975.h"
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#elif defined(HAVE_WM8731)
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#include "wm8731l.h"
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#endif
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#ifdef HAVE_LCD_BITMAP
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#include "font.h"
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#endif
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#if defined(HAVE_RECORDING) && (CONFIG_CODEC == SWCODEC)
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#include "pcm_record.h"
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#endif
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#include "logf.h"
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#include "lcd-remote.h"
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#ifdef SIMULATOR
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@ -149,6 +154,11 @@ bool battery_level_safe(void)
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return battery_level() >= 10;
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}
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bool battery_level_critical(void)
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{
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return false;
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}
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void set_poweroff_timeout(int timeout)
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{
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(void)timeout;
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@ -175,39 +185,55 @@ static const unsigned int battery_level_dangerous[BATTERY_TYPES_COUNT] =
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{
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#if CONFIG_BATTERY == BATT_LIION2200 /* FM Recorder, LiIon */
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280
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#elif CONFIG_BATTERY == BATT_3AAA /* Ondio */
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310, 345 /* alkaline, NiHM */
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#elif CONFIG_BATTERY == BATT_1AA /* iRiver iFP */
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105, 115 /* alkaline, NiHM */
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#elif CONFIG_BATTERY == BATT_LIPOL1300 /* iRiver H1x0 */
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339
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#elif CONFIG_BATTERY == BATT_IAUDIO_X5
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#elif CONFIG_BATTERY == BATT_3AAA /* Ondio: Alkaline, NiHM */
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310, 345
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#elif CONFIG_BATTERY == BATT_1AA /* iRiver iFP: Alkaline, NiHM */
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105, 115
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#elif CONFIG_BATTERY == BATT_LIPOL1300 /* iRiver H1x0: LiPolymer */
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338
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#elif CONFIG_BATTERY == BATT_IAUDIO_X5 /* iAudio X5 */
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354
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#elif CONFIG_BATTERY == BATT_LPCS355385 /* iriver H10 20GB */
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#elif CONFIG_BATTERY == BATT_LPCS355385 /* iriver H10 20GB: LiPolymer*/
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376
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#elif CONFIG_BATTERY == BATT_BP009 /* iriver H10 5/6GB */
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#elif CONFIG_BATTERY == BATT_BP009 /* iriver H10 5/6GB: LiPolymer */
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372
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#else /* Player/recorder, NiMH */
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#else /* Player/recorder: NiMH */
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475
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#endif
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};
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static const short percent_to_volt_discharge[BATTERY_TYPES_COUNT][11] =
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static const unsigned short battery_level_shutoff[BATTERY_TYPES_COUNT] =
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{
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#if CONFIG_BATTERY == BATT_LIION2200 /* FM Recorder */
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258
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#elif CONFIG_BATTERY == BATT_3AAA /* Ondio */
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270, 280
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#elif CONFIG_BATTERY == BATT_LIPOL1300 /* iRiver Hxxx */
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299
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#elif CONFIG_BATTERY == BATT_IAUDIO_X5 /* iAudio X5 */
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350
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#elif CONFIG_BATTERY == BATT_LPCS355385 /* iriver H10 20GB */
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365
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#elif CONFIG_BATTERY == BATT_BP009 /* iriver H10 5/6GB */
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365
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#else /* Player/recorder: NiMH */
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440
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#endif
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};
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/* voltages (centivolt) of 0%, 10%, ... 100% when charging disabled */
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static const unsigned short percent_to_volt_discharge[BATTERY_TYPES_COUNT][11] =
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{
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#if CONFIG_BATTERY == BATT_LIION2200
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/* measured values */
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{ 260, 285, 295, 303, 311, 320, 330, 345, 360, 380, 400 }
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#elif CONFIG_BATTERY == BATT_3AAA
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/* measured values */
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{ 280, 325, 341, 353, 364, 374, 385, 395, 409, 427, 475 }, /* alkaline */
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{ 280, 325, 341, 353, 364, 374, 385, 395, 409, 427, 475 }, /* Alkaline */
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{ 310, 355, 363, 369, 372, 374, 376, 378, 380, 386, 405 } /* NiMH */
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#elif CONFIG_BATTERY == BATT_LIPOL1300
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/* Below 337 the backlight starts flickering during HD access */
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/* Calibrated for Ionity 1900 mAh battery. If necessary, re-calibrate
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* for the 1300 mAh stock battery. */
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// { 337, 358, 365, 369, 372, 377, 383, 389, 397, 406, 413 }
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{ 337, 366, 372, 374, 378, 381, 385, 392, 399, 408, 417 }
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{ 337, 365, 370, 374, 378, 382, 387, 393, 400, 408, 416 }
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#elif CONFIG_BATTERY == BATT_IAUDIO_X5
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/* iAudio x5 series - still experimenting with best curve */
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// Lithium ion discharge curve
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@ -238,12 +264,11 @@ static const short percent_to_volt_discharge[BATTERY_TYPES_COUNT][11] =
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charger_input_state_type charger_input_state IDATA_ATTR;
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/* voltages (centivolt) of 0%, 10%, ... 100% when charging enabled */
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static const short percent_to_volt_charge[11] =
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static const unsigned short percent_to_volt_charge[11] =
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{
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#if CONFIG_BATTERY == BATT_LIPOL1300
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/* Calibrated for 1900 mAh Ionity battery (estimated 90% charge when
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entering in trickle-charging). We will never reach 100%. */
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340, 390, 394, 399, 400, 404, 407, 413, 417, 422, 426
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/* values measured over one full charging cycle */
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354, 386, 393, 398, 400, 402, 404, 408, 413, 418, 423 /* LiPo */
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#elif CONFIG_BATTERY == BATT_LPCS355385
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/* iriver H10 20GB */
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399, 403, 406, 408, 410, 412, 415, 418, 422, 426, 431
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@ -289,9 +314,15 @@ int pid_i = 0; /* PID integral term */
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* Average battery voltage and charger voltage, filtered via a digital
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* exponential filter.
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*/
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static unsigned int battery_centivolts;/* filtered battery voltage, centvolts */
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static unsigned int avgbat; /* average battery voltage (filtering) */
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static unsigned int battery_centivolts;/* filtered battery voltage, centvolts */
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#ifdef HAVE_CHARGE_CTRL
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#define BATT_AVE_SAMPLES 32 /* filter constant / @ 2Hz sample rate */
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#elif CONFIG_BATTERY == BATT_LIPOL1300
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#define BATT_AVE_SAMPLES 128 /* slow filter for iriver */
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#else
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#define BATT_AVE_SAMPLES 64 /* medium filter constant for all others */
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#endif
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/* battery level (0-100%) of this minute, updated once per minute */
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static int battery_percent = -1;
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@ -301,11 +332,12 @@ static int battery_type = 0;
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/* Power history: power_history[0] is the newest sample */
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unsigned short power_history[POWER_HISTORY_LEN];
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static char power_stack[DEFAULT_STACK_SIZE + DEBUG_STACK];
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static char power_stack[DEFAULT_STACK_SIZE/2 + DEBUG_STACK];
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static const char power_thread_name[] = "power";
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static int poweroff_timeout = 0;
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static int powermgmt_est_runningtime_min = -1;
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static bool low_battery = false;
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static bool sleeptimer_active = false;
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static long sleeptimer_endtick;
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@ -331,11 +363,6 @@ void battery_read_info(int *adc, int *voltage, int *level)
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*level = voltage_to_battery_level(centivolts);
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}
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unsigned int battery_voltage(void)
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{
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return battery_centivolts;
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}
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void reset_poweroff_timer(void)
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{
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last_event_tick = current_tick;
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@ -372,12 +399,30 @@ int battery_level(void)
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return battery_percent;
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}
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/* Returns filtered battery voltage [centivolts] */
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unsigned int battery_voltage(void)
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{
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return battery_centivolts;
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}
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/* Returns battery voltage from ADC [centivolts] */
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int battery_adc_voltage(void)
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{
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return (adc_read(ADC_UNREG_POWER) * BATTERY_SCALE_FACTOR + 5000) / 10000;
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}
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/* Tells if the battery level is safe for disk writes */
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bool battery_level_safe(void)
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{
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return battery_centivolts > battery_level_dangerous[battery_type];
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}
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/* Tells if the battery is in critical powersaving state */
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bool battery_level_critical(void)
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{
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return ((battery_capacity * battery_percent / BATTERY_CAPACITY_MIN) < 10);
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}
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void set_poweroff_timeout(int timeout)
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{
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poweroff_timeout = timeout;
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@ -403,8 +448,7 @@ int get_sleep_timer(void)
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return 0;
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}
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/* look into the percent_to_volt_* table and get a realistic battery level
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percentage */
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/* look into the percent_to_volt_* table and get a realistic battery level */
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static int voltage_to_percent(int voltage, const short* table)
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{
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if (voltage <= table[0])
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@ -430,7 +474,33 @@ static int voltage_to_battery_level(int battery_centivolts)
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{
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int level;
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#if CONFIG_CHARGING >= CHARGING_MONITOR
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#if defined(CONFIG_CHARGER) && CONFIG_BATTERY == BATT_LIPOL1300
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if (charger_input_state == NO_CHARGER) {
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/* discharging. calculate new battery level and average with last */
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level = voltage_to_percent(battery_centivolts,
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percent_to_volt_discharge[battery_type]);
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if (level != (battery_percent - 1))
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level = (level + battery_percent + 1) / 2;
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}
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else if (charger_input_state == CHARGER_UNPLUGGED) {
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/* just unplugged. adjust filtered values */
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battery_centivolts -= percent_to_volt_charge[battery_percent/10] -
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percent_to_volt_discharge[0][battery_percent/10];
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avgbat = battery_centivolts * 10000 * BATT_AVE_SAMPLES;
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level = battery_percent;
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}
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else if (charger_input_state == CHARGER_PLUGGED) {
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/* just plugged in. adjust battery values */
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battery_centivolts += percent_to_volt_charge[battery_percent/10] -
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percent_to_volt_discharge[0][battery_percent/10];
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avgbat = battery_centivolts * 10000 * BATT_AVE_SAMPLES;
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level = MIN(12 * battery_percent / 10, 99);
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}
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else { /* charging. calculate new battery level */
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level = voltage_to_percent(battery_centivolts,
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percent_to_volt_charge);
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}
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#elif CONFIG_CHARGING >= CHARGING_MONITOR
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if (charge_state == DISCHARGING) {
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level = voltage_to_percent(battery_centivolts,
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percent_to_volt_discharge[battery_type]);
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|
@ -440,7 +510,7 @@ static int voltage_to_battery_level(int battery_centivolts)
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level = MIN(voltage_to_percent(battery_centivolts,
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percent_to_volt_charge), 99);
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}
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else { /* in topoff/trickle charge, the battery is by definition 100% full */
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else { /* in topoff/trickle charge, battery is by definition 100% full */
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level = 100;
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}
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#else
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@ -456,35 +526,71 @@ static void battery_status_update(void)
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{
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int level = voltage_to_battery_level(battery_centivolts);
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#ifndef HAVE_MMC /* this adjustment is only needed for HD based */
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if (battery_percent == -1) { /* first run of this procedure */
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/* The battery voltage is usually a little lower directly after
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turning on, because the disk was used heavily. Raise it by 5. % */
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level = (level > 95) ? 100 : level + 5;
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}
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#endif
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battery_percent = level;
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/* calculate estimated remaining running time */
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/* discharging: remaining running time */
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/* charging: remaining charging time */
|
||||
#if CONFIG_CHARGING >= CHARGING_MONITOR
|
||||
if (charge_state == CHARGING) {
|
||||
powermgmt_est_runningtime_min = (100 - level) * battery_capacity / 100
|
||||
* 60 / (CURRENT_MAX_CHG - runcurrent());
|
||||
powermgmt_est_runningtime_min = (100 - level) * battery_capacity * 60
|
||||
/ 100 / (CURRENT_MAX_CHG - runcurrent());
|
||||
}
|
||||
else
|
||||
#elif defined(CONFIG_CHARGING) && CONFIG_BATTERY == BATT_LIPOL1300
|
||||
if (charger_inserted()) {
|
||||
#ifdef IRIVER_H300_SERIES
|
||||
/* H300_SERIES use CURRENT_MAX_CHG for basic charge time (80%)
|
||||
* plus 110 min top off charge time */
|
||||
powermgmt_est_runningtime_min = ((100-level) * battery_capacity * 80
|
||||
/100 / CURRENT_MAX_CHG) + 110;
|
||||
#else
|
||||
/* H100_SERIES scaled for 160 min basic charge time (80%) on
|
||||
* 1600 mAh battery plus 110 min top off charge time */
|
||||
powermgmt_est_runningtime_min = ((100 - level) * battery_capacity
|
||||
/ 993) + 110;
|
||||
#endif
|
||||
{
|
||||
powermgmt_est_runningtime_min = level * battery_capacity / 100
|
||||
* 60 / runcurrent();
|
||||
level = (level * 80) / 100;
|
||||
if (level > 72) { /* > 91% */
|
||||
int i = POWER_HISTORY_LEN;
|
||||
int d = 1;
|
||||
#ifdef HAVE_CHARGE_STATE
|
||||
if (charge_state == DISCHARGING)
|
||||
d = -2;
|
||||
#endif
|
||||
while ((i > 2) && (d > 0)) /* search zero or neg. delta */
|
||||
d = power_history[0] - power_history[--i];
|
||||
if ((((d == 0) && (i > 6)) || (d == -1)) && (i < 118)) {
|
||||
/* top off charging */
|
||||
level = MIN(80 + (i*19 / 113), 99); /* show 81% .. 99% */
|
||||
powermgmt_est_runningtime_min = MAX(116 - i, 0);
|
||||
}
|
||||
else if ((d < 0) || (i > 117)) {
|
||||
/* charging finished */
|
||||
level = 100;
|
||||
powermgmt_est_runningtime_min = battery_capacity * 60
|
||||
/ runcurrent();
|
||||
}
|
||||
}
|
||||
}
|
||||
else
|
||||
#endif /* BATT_LIPOL1300 */
|
||||
{
|
||||
if ((battery_centivolts + 2) > percent_to_volt_discharge[0][0])
|
||||
powermgmt_est_runningtime_min = (level + battery_percent) * 60 *
|
||||
battery_capacity / 200 / runcurrent();
|
||||
else
|
||||
powermgmt_est_runningtime_min = (battery_centivolts -
|
||||
battery_level_shutoff[0]) / 2;
|
||||
}
|
||||
|
||||
battery_percent = level;
|
||||
}
|
||||
|
||||
/*
|
||||
* We shut off in the following cases:
|
||||
* 1) The unit is idle, not playing music
|
||||
* 2) The unit is playing music, but is paused
|
||||
* 3) The battery level has reached shutdown limit
|
||||
*
|
||||
* We do not shut off in the following cases:
|
||||
* 1) The USB is connected
|
||||
|
@ -507,6 +613,41 @@ static void handle_auto_poweroff(void)
|
|||
}
|
||||
#endif
|
||||
|
||||
/* For low battery condition do some power-saving stuff */
|
||||
if (!low_battery && battery_level_critical()) {
|
||||
#if CONFIG_BACKLIGHT == BL_IRIVER_H100
|
||||
backlight_set_fade_in(0);
|
||||
backlight_set_fade_out(0);
|
||||
#endif
|
||||
#if defined(CONFIG_BACKLIGHT) && !defined(BOOTLOADER)
|
||||
if (backlight_get_current_timeout() > 2)
|
||||
#endif
|
||||
backlight_set_timeout(2);
|
||||
#ifdef HAVE_REMOTE_LCD
|
||||
remote_backlight_set_timeout(2);
|
||||
#endif
|
||||
ata_spindown(3);
|
||||
#ifdef HAVE_ATA_POWER_OFF
|
||||
ata_poweroff(true);
|
||||
#endif
|
||||
low_battery = true;
|
||||
} else if (low_battery && (battery_percent > 11)) {
|
||||
backlight_set_timeout(10);
|
||||
ata_spindown(10);
|
||||
low_battery = false;
|
||||
}
|
||||
|
||||
/* switch off unit if battery level is too low for reliable operation */
|
||||
#if (CONFIG_BATTERY!=BATT_4AA_NIMH) && (CONFIG_BATTERY!=BATT_3AAA)&& \
|
||||
(CONFIG_BATTERY!=BATT_1AA)
|
||||
if(battery_centivolts < battery_level_shutoff[battery_type]) {
|
||||
if(!shutdown_timeout) {
|
||||
backlight_on();
|
||||
sys_poweroff();
|
||||
}
|
||||
}
|
||||
#endif
|
||||
|
||||
if(timeout &&
|
||||
#if defined(CONFIG_TUNER) && !defined(BOOTLOADER)
|
||||
(!(get_radio_status() & FMRADIO_PLAYING)) &&
|
||||
|
@ -581,6 +722,30 @@ static int runcurrent(void)
|
|||
current += CURRENT_BACKLIGHT;
|
||||
#endif
|
||||
|
||||
#if defined(HAVE_RECORDING) && defined(CURRENT_RECORD)
|
||||
#if CONFIG_CODEC == SWCODEC
|
||||
unsigned int audio_stat = pcm_rec_status();
|
||||
#else
|
||||
int audio_stat = audio_status();
|
||||
#endif
|
||||
if (audio_stat & AUDIO_STATUS_RECORD)
|
||||
current += CURRENT_RECORD;
|
||||
#endif
|
||||
|
||||
#ifdef HAVE_SPDIF_POWER
|
||||
#ifdef SPDIF_POWER_INVERTED
|
||||
if (GPIO1_OUT & 0x01000000)
|
||||
#else
|
||||
if (!(GPIO1_OUT & 0x01000000))
|
||||
#endif
|
||||
current += CURRENT_SPDIF_OUT;
|
||||
#endif
|
||||
|
||||
#ifdef HAVE_REMOTE_LCD
|
||||
if ((GPIO_READ & 0x40000000) == 0)
|
||||
current += CURRENT_REMOTE;
|
||||
#endif
|
||||
|
||||
return(current);
|
||||
}
|
||||
|
||||
|
@ -689,17 +854,31 @@ static void power_thread_sleep(int ticks)
|
|||
* likely always be spinning in USB mode).
|
||||
*/
|
||||
if (!ata_disk_is_active() || usb_inserted()) {
|
||||
avgbat = avgbat - (avgbat / BATT_AVE_SAMPLES) +
|
||||
adc_read(ADC_UNREG_POWER) * BATTERY_SCALE_FACTOR;
|
||||
avgbat += adc_read(ADC_UNREG_POWER) * BATTERY_SCALE_FACTOR
|
||||
- (avgbat / BATT_AVE_SAMPLES);
|
||||
/*
|
||||
* battery_centivolts is the centivolt-scaled filtered battery value.
|
||||
*/
|
||||
battery_centivolts = avgbat / BATT_AVE_SAMPLES / 10000;
|
||||
|
||||
/* update battery status every time an update is available */
|
||||
battery_status_update();
|
||||
|
||||
battery_centivolts = (avgbat / BATT_AVE_SAMPLES + 5000) / 10000;
|
||||
}
|
||||
else if (battery_percent < 8) {
|
||||
/* If battery is low, observe voltage during disk activity.
|
||||
* Shut down if voltage drops below shutoff level and we are not
|
||||
* using NiMH or Alkaline batteries.
|
||||
*/
|
||||
battery_centivolts = (battery_adc_voltage() +
|
||||
battery_centivolts + 1) / 2;
|
||||
#if (CONFIG_BATTERY!=BATT_4AA_NIMH) && (CONFIG_BATTERY!=BATT_3AAA)&& \
|
||||
(CONFIG_BATTERY!=BATT_1AA)
|
||||
if (!shutdown_timeout &&
|
||||
(battery_centivolts < battery_level_shutoff[battery_type]))
|
||||
sys_poweroff();
|
||||
else
|
||||
#endif
|
||||
avgbat += battery_centivolts * 10000
|
||||
- (avgbat / BATT_AVE_SAMPLES);
|
||||
}
|
||||
|
||||
#if CONFIG_CHARGING == CHARGING_CONTROL
|
||||
if (ata_disk_is_active()) {
|
||||
/* flag hdd use for charging calculation */
|
||||
|
@ -711,8 +890,7 @@ static void power_thread_sleep(int ticks)
|
|||
* If we have a lot of pending writes or if the disk is spining,
|
||||
* fsync the debug log file.
|
||||
*/
|
||||
if((wrcount > 10) ||
|
||||
((wrcount > 0) && ata_disk_is_active())) {
|
||||
if((wrcount > 10) || ((wrcount > 0) && ata_disk_is_active())) {
|
||||
fsync(fd);
|
||||
wrcount = 0;
|
||||
}
|
||||
|
@ -745,10 +923,35 @@ static void power_thread(void)
|
|||
#endif
|
||||
|
||||
/* initialize the voltages for the exponential filter */
|
||||
avgbat = adc_read(ADC_UNREG_POWER) * BATTERY_SCALE_FACTOR *
|
||||
BATT_AVE_SAMPLES;
|
||||
avgbat = adc_read(ADC_UNREG_POWER) * BATTERY_SCALE_FACTOR + 15000;
|
||||
|
||||
#ifndef HAVE_MMC /* this adjustment is only needed for HD based */
|
||||
/* The battery voltage is usually a little lower directly after
|
||||
turning on, because the disk was used heavily. Raise it by 5% */
|
||||
#ifdef HAVE_CHARGING
|
||||
if(!charger_inserted()) /* only if charger not connected */
|
||||
#endif
|
||||
avgbat += (percent_to_volt_discharge[battery_type][6] -
|
||||
percent_to_volt_discharge[battery_type][5]) * 5000;
|
||||
#endif /* not HAVE_MMC */
|
||||
|
||||
avgbat = avgbat * BATT_AVE_SAMPLES;
|
||||
battery_centivolts = avgbat / BATT_AVE_SAMPLES / 10000;
|
||||
|
||||
#ifdef CONFIG_CHARING
|
||||
if(charger_inserted()) {
|
||||
battery_percent = voltage_to_percent(battery_centivolts,
|
||||
percent_to_volt_charge);
|
||||
#if CONFIG_BATTERY == BATT_LIPOL1300
|
||||
charger_input_state = CHARGER;
|
||||
#endif
|
||||
} else
|
||||
#endif
|
||||
{ battery_percent = voltage_to_percent(battery_centivolts,
|
||||
percent_to_volt_discharge[battery_type]);
|
||||
battery_percent += (battery_percent < 100);
|
||||
}
|
||||
|
||||
#if defined(DEBUG_FILE) && (CONFIG_CHARGING == CHARGING_CONTROL)
|
||||
fd = -1;
|
||||
wrcount = 0;
|
||||
|
@ -954,7 +1157,7 @@ static void power_thread(void)
|
|||
pid_p = pid_p * PID_PCONST;
|
||||
else
|
||||
pid_p = 0;
|
||||
if(battery_centivolts < target_voltage) {
|
||||
if((unsigned) battery_centivolts < target_voltage) {
|
||||
if(pid_i < 60) {
|
||||
pid_i++; /* limit so it doesn't "wind up" */
|
||||
}
|
||||
|
@ -1067,6 +1270,17 @@ void sys_poweroff(void)
|
|||
/* If the main thread fails to shut down the system, we will force a
|
||||
power off after an 20 second timeout */
|
||||
shutdown_timeout = HZ*20;
|
||||
#if defined(HAVE_RECORDING)
|
||||
#if CONFIG_CODEC == SWCODEC
|
||||
unsigned int audio_stat = pcm_rec_status();
|
||||
#else
|
||||
int audio_stat = audio_status();
|
||||
#endif
|
||||
if (audio_stat & AUDIO_STATUS_RECORD) {
|
||||
audio_stop_recording();
|
||||
shutdown_timeout += 8*HZ;
|
||||
}
|
||||
#endif
|
||||
|
||||
queue_post(&button_queue, SYS_POWEROFF, NULL);
|
||||
}
|
||||
|
@ -1095,30 +1309,42 @@ void shutdown_hw(void)
|
|||
}
|
||||
#endif
|
||||
audio_stop();
|
||||
if (!battery_level_critical()) { /* do not save on critical battery */
|
||||
#ifdef HAVE_LCD_BITMAP
|
||||
glyph_cache_save();
|
||||
#endif
|
||||
if(ata_disk_is_active())
|
||||
ata_spindown(1);
|
||||
}
|
||||
while(ata_disk_is_active())
|
||||
sleep(HZ/10);
|
||||
|
||||
#ifndef IAUDIO_X5
|
||||
#if defined(HAVE_BACKLIGHT_PWM_FADING) && !defined(SIMULATOR)
|
||||
backlight_set_fade_out(0);
|
||||
#endif
|
||||
backlight_off();
|
||||
#endif /* IAUDIO_X5 */
|
||||
#ifdef HAVE_REMOTE_LCD
|
||||
remote_backlight_off();
|
||||
#endif
|
||||
|
||||
mp3_shutdown();
|
||||
#ifdef HAVE_UDA1380
|
||||
uda1380_close();
|
||||
#elif defined(HAVE_TLV320)
|
||||
tlv320_close();
|
||||
#elif defined(HAVE_WM8758) || defined(HAVE_WM8975)
|
||||
#elif defined(HAVE_WM8758) || defined(HAVE_WM8975) | defined(HAVE_WM8731)
|
||||
wmcodec_close();
|
||||
#endif
|
||||
/* If HD is still active we try to wait for spindown, otherwise the
|
||||
shutdown_timeout in power_thread_sleep will force a power off */
|
||||
while(ata_disk_is_active())
|
||||
sleep(HZ/10);
|
||||
#ifndef IAUDIO_X5
|
||||
#if defined(HAVE_BACKLIGHT_PWM_FADING) && !defined(SIMULATOR)
|
||||
backlight_set_fade_out(0);
|
||||
#endif
|
||||
backlight_off();
|
||||
lcd_set_contrast(0);
|
||||
#endif /* IAUDIO_X5 */
|
||||
#ifdef HAVE_REMOTE_LCD
|
||||
remote_backlight_off();
|
||||
lcd_remote_set_contrast(0);
|
||||
#endif
|
||||
power_off();
|
||||
|
|
|
@ -88,5 +88,11 @@ void adc_init(void)
|
|||
adc_scan(ADC_REMOTE);
|
||||
adc_scan(ADC_SCROLLPAD);
|
||||
|
||||
/* FIXME: The ADC sometimes reads 0 for the battery
|
||||
voltage for the first few seconds. It would be better to fix this by
|
||||
figuring out how to use the ADC properly. Until then, work around the
|
||||
problem by waiting until it reads a proper value*/
|
||||
while(adc_scan(ADC_UNREG_POWER)==0);
|
||||
|
||||
tick_add_task(adc_tick);
|
||||
}
|
||||
|
|
|
@ -240,6 +240,10 @@ int audio_status(void)
|
|||
return 0;
|
||||
}
|
||||
|
||||
void audio_stop_recording(void)
|
||||
{
|
||||
}
|
||||
|
||||
void mp3_shutdown(void)
|
||||
{
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue