xref: /rk3399_ARM-atf/plat/nvidia/tegra/common/tegra_pm.c (revision 3b40f993f40e1299edcea8ab662df5a2f518e89c)
108438e24SVarun Wadekar /*
208438e24SVarun Wadekar  * Copyright (c) 2015, ARM Limited and Contributors. All rights reserved.
308438e24SVarun Wadekar  *
408438e24SVarun Wadekar  * Redistribution and use in source and binary forms, with or without
508438e24SVarun Wadekar  * modification, are permitted provided that the following conditions are met:
608438e24SVarun Wadekar  *
708438e24SVarun Wadekar  * Redistributions of source code must retain the above copyright notice, this
808438e24SVarun Wadekar  * list of conditions and the following disclaimer.
908438e24SVarun Wadekar  *
1008438e24SVarun Wadekar  * Redistributions in binary form must reproduce the above copyright notice,
1108438e24SVarun Wadekar  * this list of conditions and the following disclaimer in the documentation
1208438e24SVarun Wadekar  * and/or other materials provided with the distribution.
1308438e24SVarun Wadekar  *
1408438e24SVarun Wadekar  * Neither the name of ARM nor the names of its contributors may be used
1508438e24SVarun Wadekar  * to endorse or promote products derived from this software without specific
1608438e24SVarun Wadekar  * prior written permission.
1708438e24SVarun Wadekar  *
1808438e24SVarun Wadekar  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
1908438e24SVarun Wadekar  * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
2008438e24SVarun Wadekar  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
2108438e24SVarun Wadekar  * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
2208438e24SVarun Wadekar  * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
2308438e24SVarun Wadekar  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
2408438e24SVarun Wadekar  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
2508438e24SVarun Wadekar  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
2608438e24SVarun Wadekar  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
2708438e24SVarun Wadekar  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
2808438e24SVarun Wadekar  * POSSIBILITY OF SUCH DAMAGE.
2908438e24SVarun Wadekar  */
3008438e24SVarun Wadekar 
3108438e24SVarun Wadekar #include <arch_helpers.h>
3208438e24SVarun Wadekar #include <assert.h>
3308438e24SVarun Wadekar #include <bl_common.h>
3408438e24SVarun Wadekar #include <context.h>
3508438e24SVarun Wadekar #include <context_mgmt.h>
3608438e24SVarun Wadekar #include <debug.h>
3708438e24SVarun Wadekar #include <memctrl.h>
3808438e24SVarun Wadekar #include <mmio.h>
3908438e24SVarun Wadekar #include <platform.h>
4008438e24SVarun Wadekar #include <platform_def.h>
4108438e24SVarun Wadekar #include <pmc.h>
4208438e24SVarun Wadekar #include <psci.h>
4308438e24SVarun Wadekar #include <tegra_def.h>
4408438e24SVarun Wadekar #include <tegra_private.h>
4508438e24SVarun Wadekar 
4608438e24SVarun Wadekar extern uint64_t tegra_bl31_phys_base;
4708438e24SVarun Wadekar extern uint64_t sec_entry_point[PLATFORM_CORE_COUNT];
4808438e24SVarun Wadekar static int system_suspended;
4908438e24SVarun Wadekar 
5008438e24SVarun Wadekar /*
5108438e24SVarun Wadekar  * The following platform setup functions are weakly defined. They
5208438e24SVarun Wadekar  * provide typical implementations that will be overridden by a SoC.
5308438e24SVarun Wadekar  */
5493eafbcaSVarun Wadekar #pragma weak tegra_soc_prepare_cpu_suspend
5593eafbcaSVarun Wadekar #pragma weak tegra_soc_prepare_cpu_on
5693eafbcaSVarun Wadekar #pragma weak tegra_soc_prepare_cpu_off
5793eafbcaSVarun Wadekar #pragma weak tegra_soc_prepare_cpu_on_finish
58*3b40f993SVarun Wadekar #pragma weak tegra_soc_prepare_system_reset
5908438e24SVarun Wadekar 
6093eafbcaSVarun Wadekar int tegra_soc_prepare_cpu_suspend(unsigned int id, unsigned int afflvl)
6108438e24SVarun Wadekar {
6208438e24SVarun Wadekar 	return PSCI_E_NOT_SUPPORTED;
6308438e24SVarun Wadekar }
6408438e24SVarun Wadekar 
6593eafbcaSVarun Wadekar int tegra_soc_prepare_cpu_on(unsigned long mpidr)
6608438e24SVarun Wadekar {
6708438e24SVarun Wadekar 	return PSCI_E_SUCCESS;
6808438e24SVarun Wadekar }
6908438e24SVarun Wadekar 
7093eafbcaSVarun Wadekar int tegra_soc_prepare_cpu_off(unsigned long mpidr)
7108438e24SVarun Wadekar {
7208438e24SVarun Wadekar 	return PSCI_E_SUCCESS;
7308438e24SVarun Wadekar }
7408438e24SVarun Wadekar 
7593eafbcaSVarun Wadekar int tegra_soc_prepare_cpu_on_finish(unsigned long mpidr)
7608438e24SVarun Wadekar {
7708438e24SVarun Wadekar 	return PSCI_E_SUCCESS;
7808438e24SVarun Wadekar }
7908438e24SVarun Wadekar 
80*3b40f993SVarun Wadekar int tegra_soc_prepare_system_reset(void)
81*3b40f993SVarun Wadekar {
82*3b40f993SVarun Wadekar 	return PSCI_E_SUCCESS;
83*3b40f993SVarun Wadekar }
84*3b40f993SVarun Wadekar 
8508438e24SVarun Wadekar /*******************************************************************************
8608438e24SVarun Wadekar  * Track system suspend entry.
8708438e24SVarun Wadekar  ******************************************************************************/
8808438e24SVarun Wadekar void tegra_pm_system_suspend_entry(void)
8908438e24SVarun Wadekar {
9008438e24SVarun Wadekar 	system_suspended = 1;
9108438e24SVarun Wadekar }
9208438e24SVarun Wadekar 
9308438e24SVarun Wadekar /*******************************************************************************
9408438e24SVarun Wadekar  * Track system suspend exit.
9508438e24SVarun Wadekar  ******************************************************************************/
9608438e24SVarun Wadekar void tegra_pm_system_suspend_exit(void)
9708438e24SVarun Wadekar {
9808438e24SVarun Wadekar 	system_suspended = 0;
9908438e24SVarun Wadekar }
10008438e24SVarun Wadekar 
10108438e24SVarun Wadekar /*******************************************************************************
10208438e24SVarun Wadekar  * Get the system suspend state.
10308438e24SVarun Wadekar  ******************************************************************************/
10408438e24SVarun Wadekar int tegra_system_suspended(void)
10508438e24SVarun Wadekar {
10608438e24SVarun Wadekar 	return system_suspended;
10708438e24SVarun Wadekar }
10808438e24SVarun Wadekar 
10908438e24SVarun Wadekar /*******************************************************************************
11008438e24SVarun Wadekar  * Handler called when an affinity instance is about to enter standby.
11108438e24SVarun Wadekar  ******************************************************************************/
11208438e24SVarun Wadekar void tegra_affinst_standby(unsigned int power_state)
11308438e24SVarun Wadekar {
11408438e24SVarun Wadekar 	/*
11508438e24SVarun Wadekar 	 * Enter standby state
11608438e24SVarun Wadekar 	 * dsb is good practice before using wfi to enter low power states
11708438e24SVarun Wadekar 	 */
11808438e24SVarun Wadekar 	dsb();
11908438e24SVarun Wadekar 	wfi();
12008438e24SVarun Wadekar }
12108438e24SVarun Wadekar 
12208438e24SVarun Wadekar /*******************************************************************************
12394c672e7SVarun Wadekar  * This handler is called by the PSCI implementation during the `SYSTEM_SUSPEND`
12494c672e7SVarun Wadekar  * call to get the `power_state` parameter. This allows the platform to encode
12594c672e7SVarun Wadekar  * the appropriate State-ID field within the `power_state` parameter which can
12694c672e7SVarun Wadekar  * be utilized in `affinst_suspend()` to suspend to system affinity level.
12794c672e7SVarun Wadekar ******************************************************************************/
12894c672e7SVarun Wadekar unsigned int tegra_get_sys_suspend_power_state(void)
12994c672e7SVarun Wadekar {
13094c672e7SVarun Wadekar 	unsigned int power_state;
13194c672e7SVarun Wadekar 
13294c672e7SVarun Wadekar 	power_state = psci_make_powerstate(PLAT_SYS_SUSPEND_STATE_ID,
13394c672e7SVarun Wadekar 			PSTATE_TYPE_POWERDOWN, MPIDR_AFFLVL2);
13494c672e7SVarun Wadekar 
13594c672e7SVarun Wadekar 	return power_state;
13694c672e7SVarun Wadekar }
13794c672e7SVarun Wadekar 
13894c672e7SVarun Wadekar /*******************************************************************************
13908438e24SVarun Wadekar  * Handler called to check the validity of the power state parameter.
14008438e24SVarun Wadekar  ******************************************************************************/
14108438e24SVarun Wadekar int32_t tegra_validate_power_state(unsigned int power_state)
14208438e24SVarun Wadekar {
14393eafbcaSVarun Wadekar 	return tegra_soc_validate_power_state(power_state);
14408438e24SVarun Wadekar }
14508438e24SVarun Wadekar 
14608438e24SVarun Wadekar /*******************************************************************************
14708438e24SVarun Wadekar  * Handler called when an affinity instance is about to be turned on. The
14808438e24SVarun Wadekar  * level and mpidr determine the affinity instance.
14908438e24SVarun Wadekar  ******************************************************************************/
15008438e24SVarun Wadekar int tegra_affinst_on(unsigned long mpidr,
15108438e24SVarun Wadekar 		   unsigned long sec_entrypoint,
15208438e24SVarun Wadekar 		   unsigned int afflvl,
15308438e24SVarun Wadekar 		   unsigned int state)
15408438e24SVarun Wadekar {
15508438e24SVarun Wadekar 	int cpu = mpidr & MPIDR_CPU_MASK;
15608438e24SVarun Wadekar 
15708438e24SVarun Wadekar 	/*
15808438e24SVarun Wadekar 	 * Support individual CPU power on only.
15908438e24SVarun Wadekar 	 */
16008438e24SVarun Wadekar 	if (afflvl > MPIDR_AFFLVL0)
16108438e24SVarun Wadekar 		return PSCI_E_SUCCESS;
16208438e24SVarun Wadekar 
16308438e24SVarun Wadekar 	/*
16408438e24SVarun Wadekar 	 * Flush entrypoint variable to PoC since it will be
16508438e24SVarun Wadekar 	 * accessed after a reset with the caches turned off.
16608438e24SVarun Wadekar 	 */
16708438e24SVarun Wadekar 	sec_entry_point[cpu] = sec_entrypoint;
16808438e24SVarun Wadekar 	flush_dcache_range((uint64_t)&sec_entry_point[cpu], sizeof(uint64_t));
16908438e24SVarun Wadekar 
17093eafbcaSVarun Wadekar 	return tegra_soc_prepare_cpu_on(mpidr);
17108438e24SVarun Wadekar }
17208438e24SVarun Wadekar 
17308438e24SVarun Wadekar /*******************************************************************************
17408438e24SVarun Wadekar  * Handler called when an affinity instance is about to be turned off. The
17508438e24SVarun Wadekar  * level determines the affinity instance. The 'state' arg. allows the
17608438e24SVarun Wadekar  * platform to decide whether the cluster is being turned off and take apt
17708438e24SVarun Wadekar  * actions.
17808438e24SVarun Wadekar  *
17908438e24SVarun Wadekar  * CAUTION: This function is called with coherent stacks so that caches can be
18008438e24SVarun Wadekar  * turned off, flushed and coherency disabled. There is no guarantee that caches
18108438e24SVarun Wadekar  * will remain turned on across calls to this function as each affinity level is
18208438e24SVarun Wadekar  * dealt with. So do not write & read global variables across calls. It will be
18308438e24SVarun Wadekar  * wise to do flush a write to the global to prevent unpredictable results.
18408438e24SVarun Wadekar  ******************************************************************************/
18508438e24SVarun Wadekar void tegra_affinst_off(unsigned int afflvl, unsigned int state)
18608438e24SVarun Wadekar {
18708438e24SVarun Wadekar 	/*
18808438e24SVarun Wadekar 	 * Support individual CPU power off only.
18908438e24SVarun Wadekar 	 */
19008438e24SVarun Wadekar 	if (afflvl > MPIDR_AFFLVL0)
19108438e24SVarun Wadekar 		return;
19208438e24SVarun Wadekar 
19393eafbcaSVarun Wadekar 	tegra_soc_prepare_cpu_off(read_mpidr());
19408438e24SVarun Wadekar }
19508438e24SVarun Wadekar 
19608438e24SVarun Wadekar /*******************************************************************************
19708438e24SVarun Wadekar  * Handler called when an affinity instance is about to be suspended. The
19808438e24SVarun Wadekar  * level and mpidr determine the affinity instance. The 'state' arg. allows the
19908438e24SVarun Wadekar  * platform to decide whether the cluster is being turned off and take apt
20008438e24SVarun Wadekar  * actions.
20108438e24SVarun Wadekar  *
20208438e24SVarun Wadekar  * CAUTION: This function is called with coherent stacks so that caches can be
20308438e24SVarun Wadekar  * turned off, flushed and coherency disabled. There is no guarantee that caches
20408438e24SVarun Wadekar  * will remain turned on across calls to this function as each affinity level is
20508438e24SVarun Wadekar  * dealt with. So do not write & read global variables across calls. It will be
20608438e24SVarun Wadekar  * wise to flush a write to the global variable, to prevent unpredictable
20708438e24SVarun Wadekar  * results.
20808438e24SVarun Wadekar  ******************************************************************************/
20908438e24SVarun Wadekar void tegra_affinst_suspend(unsigned long sec_entrypoint,
21008438e24SVarun Wadekar 			unsigned int afflvl,
21108438e24SVarun Wadekar 			unsigned int state)
21208438e24SVarun Wadekar {
21308438e24SVarun Wadekar 	int id = psci_get_suspend_stateid();
21408438e24SVarun Wadekar 	int cpu = read_mpidr() & MPIDR_CPU_MASK;
21508438e24SVarun Wadekar 
21608438e24SVarun Wadekar 	if (afflvl > PLATFORM_MAX_AFFLVL)
21708438e24SVarun Wadekar 		return;
21808438e24SVarun Wadekar 
21908438e24SVarun Wadekar 	/*
22008438e24SVarun Wadekar 	 * Flush entrypoint variable to PoC since it will be
22108438e24SVarun Wadekar 	 * accessed after a reset with the caches turned off.
22208438e24SVarun Wadekar 	 */
22308438e24SVarun Wadekar 	sec_entry_point[cpu] = sec_entrypoint;
22408438e24SVarun Wadekar 	flush_dcache_range((uint64_t)&sec_entry_point[cpu], sizeof(uint64_t));
22508438e24SVarun Wadekar 
22693eafbcaSVarun Wadekar 	tegra_soc_prepare_cpu_suspend(id, afflvl);
22708438e24SVarun Wadekar 
22808438e24SVarun Wadekar 	/* disable GICC */
22908438e24SVarun Wadekar 	tegra_gic_cpuif_deactivate();
23008438e24SVarun Wadekar }
23108438e24SVarun Wadekar 
23208438e24SVarun Wadekar /*******************************************************************************
23308438e24SVarun Wadekar  * Handler called when an affinity instance has just been powered on after
23408438e24SVarun Wadekar  * being turned off earlier. The level determines the affinity instance.
23508438e24SVarun Wadekar  * The 'state' arg. allows the platform to decide whether the cluster was
23608438e24SVarun Wadekar  * turned off prior to wakeup and do what's necessary to set it up.
23708438e24SVarun Wadekar  ******************************************************************************/
23808438e24SVarun Wadekar void tegra_affinst_on_finish(unsigned int afflvl, unsigned int state)
23908438e24SVarun Wadekar {
24008438e24SVarun Wadekar 	plat_params_from_bl2_t *plat_params;
24108438e24SVarun Wadekar 
24208438e24SVarun Wadekar 	/*
24308438e24SVarun Wadekar 	 * Support individual CPU power on only.
24408438e24SVarun Wadekar 	 */
24508438e24SVarun Wadekar 	if (afflvl > MPIDR_AFFLVL0)
24608438e24SVarun Wadekar 		return;
24708438e24SVarun Wadekar 
24808438e24SVarun Wadekar 	/*
24908438e24SVarun Wadekar 	 * Initialize the GIC cpu and distributor interfaces
25008438e24SVarun Wadekar 	 */
25108438e24SVarun Wadekar 	tegra_gic_setup();
25208438e24SVarun Wadekar 
25308438e24SVarun Wadekar 	/*
25408438e24SVarun Wadekar 	 * Check if we are exiting from deep sleep.
25508438e24SVarun Wadekar 	 */
25608438e24SVarun Wadekar 	if (tegra_system_suspended()) {
25708438e24SVarun Wadekar 
25808438e24SVarun Wadekar 		/*
25908438e24SVarun Wadekar 		 * Lock scratch registers which hold the CPU vectors.
26008438e24SVarun Wadekar 		 */
26108438e24SVarun Wadekar 		tegra_pmc_lock_cpu_vectors();
26208438e24SVarun Wadekar 
26308438e24SVarun Wadekar 		/*
26408438e24SVarun Wadekar 		 * SMMU configuration.
26508438e24SVarun Wadekar 		 */
26608438e24SVarun Wadekar 		tegra_memctrl_setup();
26708438e24SVarun Wadekar 
26808438e24SVarun Wadekar 		/*
26908438e24SVarun Wadekar 		 * Security configuration to allow DRAM/device access.
27008438e24SVarun Wadekar 		 */
27108438e24SVarun Wadekar 		plat_params = bl31_get_plat_params();
27208438e24SVarun Wadekar 		tegra_memctrl_tzdram_setup(tegra_bl31_phys_base,
27308438e24SVarun Wadekar 			plat_params->tzdram_size);
27408438e24SVarun Wadekar 	}
27508438e24SVarun Wadekar 
27608438e24SVarun Wadekar 	/*
27708438e24SVarun Wadekar 	 * Reset hardware settings.
27808438e24SVarun Wadekar 	 */
27993eafbcaSVarun Wadekar 	tegra_soc_prepare_cpu_on_finish(read_mpidr());
28008438e24SVarun Wadekar }
28108438e24SVarun Wadekar 
28208438e24SVarun Wadekar /*******************************************************************************
28308438e24SVarun Wadekar  * Handler called when an affinity instance has just been powered on after
28408438e24SVarun Wadekar  * having been suspended earlier. The level and mpidr determine the affinity
28508438e24SVarun Wadekar  * instance.
28608438e24SVarun Wadekar  ******************************************************************************/
28708438e24SVarun Wadekar void tegra_affinst_suspend_finish(unsigned int afflvl, unsigned int state)
28808438e24SVarun Wadekar {
28908438e24SVarun Wadekar 	if (afflvl == MPIDR_AFFLVL0)
29008438e24SVarun Wadekar 		tegra_affinst_on_finish(afflvl, state);
29108438e24SVarun Wadekar }
29208438e24SVarun Wadekar 
29308438e24SVarun Wadekar /*******************************************************************************
29408438e24SVarun Wadekar  * Handler called when the system wants to be powered off
29508438e24SVarun Wadekar  ******************************************************************************/
29608438e24SVarun Wadekar __dead2 void tegra_system_off(void)
29708438e24SVarun Wadekar {
29808438e24SVarun Wadekar 	ERROR("Tegra System Off: operation not handled.\n");
29908438e24SVarun Wadekar 	panic();
30008438e24SVarun Wadekar }
30108438e24SVarun Wadekar 
30208438e24SVarun Wadekar /*******************************************************************************
30308438e24SVarun Wadekar  * Handler called when the system wants to be restarted.
30408438e24SVarun Wadekar  ******************************************************************************/
30508438e24SVarun Wadekar __dead2 void tegra_system_reset(void)
30608438e24SVarun Wadekar {
307*3b40f993SVarun Wadekar 	/* per-SoC system reset handler */
308*3b40f993SVarun Wadekar 	tegra_soc_prepare_system_reset();
309*3b40f993SVarun Wadekar 
31008438e24SVarun Wadekar 	/*
31108438e24SVarun Wadekar 	 * Program the PMC in order to restart the system.
31208438e24SVarun Wadekar 	 */
31308438e24SVarun Wadekar 	tegra_pmc_system_reset();
31408438e24SVarun Wadekar }
31508438e24SVarun Wadekar 
31608438e24SVarun Wadekar /*******************************************************************************
31708438e24SVarun Wadekar  * Export the platform handlers to enable psci to invoke them
31808438e24SVarun Wadekar  ******************************************************************************/
31908438e24SVarun Wadekar static const plat_pm_ops_t tegra_plat_pm_ops = {
32008438e24SVarun Wadekar 	.affinst_standby	= tegra_affinst_standby,
32108438e24SVarun Wadekar 	.affinst_on		= tegra_affinst_on,
32208438e24SVarun Wadekar 	.affinst_off		= tegra_affinst_off,
32308438e24SVarun Wadekar 	.affinst_suspend	= tegra_affinst_suspend,
32408438e24SVarun Wadekar 	.affinst_on_finish	= tegra_affinst_on_finish,
32508438e24SVarun Wadekar 	.affinst_suspend_finish	= tegra_affinst_suspend_finish,
32608438e24SVarun Wadekar 	.system_off		= tegra_system_off,
32708438e24SVarun Wadekar 	.system_reset		= tegra_system_reset,
32894c672e7SVarun Wadekar 	.validate_power_state	= tegra_validate_power_state,
32994c672e7SVarun Wadekar 	.get_sys_suspend_power_state = tegra_get_sys_suspend_power_state
33008438e24SVarun Wadekar };
33108438e24SVarun Wadekar 
33208438e24SVarun Wadekar /*******************************************************************************
33308438e24SVarun Wadekar  * Export the platform specific power ops & initialize the fvp power controller
33408438e24SVarun Wadekar  ******************************************************************************/
33508438e24SVarun Wadekar int platform_setup_pm(const plat_pm_ops_t **plat_ops)
33608438e24SVarun Wadekar {
33708438e24SVarun Wadekar 	/*
33808438e24SVarun Wadekar 	 * Reset hardware settings.
33908438e24SVarun Wadekar 	 */
34093eafbcaSVarun Wadekar 	tegra_soc_prepare_cpu_on_finish(read_mpidr());
34108438e24SVarun Wadekar 
34208438e24SVarun Wadekar 	/*
34308438e24SVarun Wadekar 	 * Initialize PM ops struct
34408438e24SVarun Wadekar 	 */
34508438e24SVarun Wadekar 	*plat_ops = &tegra_plat_pm_ops;
34608438e24SVarun Wadekar 
34708438e24SVarun Wadekar 	return 0;
34808438e24SVarun Wadekar }
349