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authorThomas Martitz <kugel@rockbox.org>2012-01-03 23:44:38 +0000
committerThomas Martitz <kugel@rockbox.org>2012-01-03 23:44:38 +0000
commitc1bd9b0361ba92c29ceef68d74093e70a1a3e481 (patch)
tree1a42acdf2099b7f5ac06eee11e1d488b388c6d9f /bootloader/iriver_h300.c
parent949e6398c89e3c277a4c542f67a5ee788c6f642d (diff)
downloadrockbox-c1bd9b0361ba92c29ceef68d74093e70a1a3e481.tar.gz
rockbox-c1bd9b0361ba92c29ceef68d74093e70a1a3e481.zip
Rework powermgmt to enable code re-use on appliation and sims.
* Introduce CONFIG_BATTERY_MEASURE define, to allow targets (application) to break powermgmt.c's assumption about the ability to read battery voltage. There's now additionally percentage (android) and remaining time measure (maemo). No measure at all also works (sdl app). If voltage can't be measured, then battery_level() is king and it'll be used for power_history and runtime estimation. * Implement target's API in the simulator, i.e. _battery_voltage(), so it doesn't need to implement it's own powermgmt.c and other stubs. Now the sim behaves much more like a native target, although it still changes the simulated battery voltage quickly, * Other changes include include renaming battery_adc_voltage() to _battery_voltage(), for consistency with the new target functions and making some of the apps code aware that voltage and runtime estimation is not always available. git-svn-id: svn://svn.rockbox.org/rockbox/trunk@31548 a1c6a512-1295-4272-9138-f99709370657
Diffstat (limited to 'bootloader/iriver_h300.c')
-rw-r--r--bootloader/iriver_h300.c2
1 files changed, 1 insertions, 1 deletions
diff --git a/bootloader/iriver_h300.c b/bootloader/iriver_h300.c
index 893532cac7..b6d7da20fa 100644
--- a/bootloader/iriver_h300.c
+++ b/bootloader/iriver_h300.c
@@ -112,7 +112,7 @@ void check_battery(void)
112{ 112{
113 int battery_voltage, batt_int, batt_frac; 113 int battery_voltage, batt_int, batt_frac;
114 114
115 battery_voltage = battery_adc_voltage(); 115 battery_voltage = _battery_voltage();
116 batt_int = battery_voltage / 1000; 116 batt_int = battery_voltage / 1000;
117 batt_frac = (battery_voltage % 1000) / 10; 117 batt_frac = (battery_voltage % 1000) / 10;
118 118