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power-8084.c
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power-8084.c
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/*
* Copyright (c) 2014, The Linux Foundation. All rights reserved.
* Copyright (C) 2018 The LineageOS Project
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions are
* met:
* * * Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* * Redistributions in binary form must reproduce the above
* copyright notice, this list of conditions and the following
* disclaimer in the documentation and/or other materials provided
* with the distribution.
* * Neither the name of The Linux Foundation nor the names of its
* contributors may be used to endorse or promote products derived
* from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED
* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT
* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS
* BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
* BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE
* OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
* IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#define LOG_NIDEBUG 0
#include <errno.h>
#include <string.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <fcntl.h>
#include <dlfcn.h>
#include <stdlib.h>
#define LOG_TAG "QCOM PowerHAL"
#include <log/log.h>
#include <hardware/hardware.h>
#include <hardware/power.h>
#include "utils.h"
#include "metadata-defs.h"
#include "hint-data.h"
#include "performance.h"
#include "power-common.h"
static int first_display_off_hint;
static int current_power_profile = PROFILE_BALANCED;
static int profile_power_save[] = {
0x0A03,
CPUS_ONLINE_MAX_LIMIT_2,
CPU0_MAX_FREQ_NONTURBO_MAX + 1,
CPU1_MAX_FREQ_NONTURBO_MAX + 1,
CPU2_MAX_FREQ_NONTURBO_MAX + 1,
CPU3_MAX_FREQ_NONTURBO_MAX + 1
};
static int profile_bias_power[] = {
0x0A03,
CPUS_ONLINE_MAX_LIMIT_2,
CPU0_MAX_FREQ_NONTURBO_MAX + 14,
CPU1_MAX_FREQ_NONTURBO_MAX + 14,
CPU2_MAX_FREQ_NONTURBO_MAX + 14,
CPU3_MAX_FREQ_NONTURBO_MAX + 14,
};
static int profile_bias_performance[] = {
CPUS_ONLINE_MIN_2,
CPU0_MIN_FREQ_NONTURBO_MAX + 1,
CPU1_MIN_FREQ_NONTURBO_MAX + 1,
CPU2_MIN_FREQ_NONTURBO_MAX + 1,
CPU3_MIN_FREQ_NONTURBO_MAX + 1
};
static int profile_high_performance[] = {
0x0901,
CPUS_ONLINE_MIN_4,
CPU0_MIN_FREQ_NONTURBO_MAX + 5,
CPU1_MIN_FREQ_NONTURBO_MAX + 5,
CPU2_MIN_FREQ_NONTURBO_MAX + 5,
CPU3_MIN_FREQ_NONTURBO_MAX + 5
};
#ifdef INTERACTION_BOOST
int get_number_of_profiles()
{
return 5;
}
#endif
static void set_power_profile(int profile)
{
if (profile == current_power_profile)
return;
ALOGV("%s: Profile=%d", __func__, profile);
if (current_power_profile != PROFILE_BALANCED) {
undo_hint_action(DEFAULT_PROFILE_HINT_ID);
ALOGV("%s: Hint undone", __func__);
}
if (profile == PROFILE_POWER_SAVE) {
perform_hint_action(DEFAULT_PROFILE_HINT_ID, profile_power_save,
ARRAY_SIZE(profile_power_save));
ALOGD("%s: Set powersave mode", __func__);
} else if (profile == PROFILE_HIGH_PERFORMANCE) {
perform_hint_action(DEFAULT_PROFILE_HINT_ID, profile_high_performance,
ARRAY_SIZE(profile_high_performance));
ALOGD("%s: Set performance mode", __func__);
} else if (profile == PROFILE_BIAS_POWER) {
perform_hint_action(DEFAULT_PROFILE_HINT_ID, profile_bias_power,
ARRAY_SIZE(profile_bias_power));
ALOGD("%s: Set bias power mode", __func__);
} else if (profile == PROFILE_BIAS_PERFORMANCE) {
perform_hint_action(DEFAULT_PROFILE_HINT_ID, profile_bias_performance,
ARRAY_SIZE(profile_bias_performance));
ALOGD("%s: Set bias perf mode", __func__);
}
current_power_profile = profile;
}
static int resources_interaction_fling_boost[] = {
CPUS_ONLINE_MIN_3,
0x20F,
0x30F,
0x40F,
0x50F
};
static int resources_interaction_boost[] = {
CPUS_ONLINE_MIN_2,
0x20F,
0x30F,
0x40F,
0x50F
};
static int resources_launch[] = {
CPUS_ONLINE_MIN_3,
CPU0_MIN_FREQ_TURBO_MAX,
CPU1_MIN_FREQ_TURBO_MAX,
CPU2_MIN_FREQ_TURBO_MAX,
CPU3_MIN_FREQ_TURBO_MAX
};
int power_hint_override(power_hint_t hint, void *data)
{
static struct timespec s_previous_boost_timespec;
struct timespec cur_boost_timespec;
long long elapsed_time;
static int s_previous_duration = 0;
int duration;
if (hint == POWER_HINT_SET_PROFILE) {
set_power_profile(*(int32_t *)data);
return HINT_HANDLED;
}
// Skip other hints in high/low power modes
if (current_power_profile == PROFILE_POWER_SAVE ||
current_power_profile == PROFILE_HIGH_PERFORMANCE) {
return HINT_HANDLED;
}
switch (hint) {
case POWER_HINT_INTERACTION:
duration = 500; // 500ms by default
if (data) {
int input_duration = *((int*)data);
if (input_duration > duration) {
duration = (input_duration > 5000) ? 5000 : input_duration;
}
}
clock_gettime(CLOCK_MONOTONIC, &cur_boost_timespec);
elapsed_time = calc_timespan_us(s_previous_boost_timespec, cur_boost_timespec);
// don't hint if previous hint's duration covers this hint's duration
if ((s_previous_duration * 1000) > (elapsed_time + duration * 1000)) {
return HINT_HANDLED;
}
s_previous_boost_timespec = cur_boost_timespec;
s_previous_duration = duration;
if (duration >= 1500) {
interaction(duration, ARRAY_SIZE(resources_interaction_fling_boost),
resources_interaction_fling_boost);
} else {
interaction(duration, ARRAY_SIZE(resources_interaction_boost),
resources_interaction_boost);
}
return HINT_HANDLED;
case POWER_HINT_LAUNCH:
duration = 2000;
interaction(duration, ARRAY_SIZE(resources_launch),
resources_launch);
return HINT_HANDLED;
default:
break;
}
return HINT_NONE;
}
int set_interactive_override(int on)
{
char governor[80];
if (get_scaling_governor(governor, sizeof(governor)) == -1) {
ALOGE("Can't obtain scaling governor.");
return HINT_NONE;
}
if (!on) {
/* Display off. */
/*
* We need to be able to identify the first display off hint
* and release the current lock holder
*/
if (!first_display_off_hint) {
undo_initial_hint_action();
first_display_off_hint = 1;
}
/* Used for all subsequent toggles to the display */
undo_hint_action(DISPLAY_STATE_HINT_ID_2);
if (is_ondemand_governor(governor)) {
int resource_values[] = {
MS_500, SYNC_FREQ_600, OPTIMAL_FREQ_600, THREAD_MIGRATION_SYNC_OFF
};
perform_hint_action(DISPLAY_STATE_HINT_ID,
resource_values, ARRAY_SIZE(resource_values));
}
} else {
/* Display on */
int resource_values2[] = {
CPUS_ONLINE_MIN_2
};
perform_hint_action(DISPLAY_STATE_HINT_ID_2,
resource_values2, ARRAY_SIZE(resource_values2));
if (is_ondemand_governor(governor)) {
undo_hint_action(DISPLAY_STATE_HINT_ID);
}
}
return HINT_HANDLED;
}