1532ed618SSoby Mathew /* 2532ed618SSoby Mathew * Copyright (c) 2013-2016, ARM Limited and Contributors. All rights reserved. 3532ed618SSoby Mathew * 4532ed618SSoby Mathew * Redistribution and use in source and binary forms, with or without 5532ed618SSoby Mathew * modification, are permitted provided that the following conditions are met: 6532ed618SSoby Mathew * 7532ed618SSoby Mathew * Redistributions of source code must retain the above copyright notice, this 8532ed618SSoby Mathew * list of conditions and the following disclaimer. 9532ed618SSoby Mathew * 10532ed618SSoby Mathew * Redistributions in binary form must reproduce the above copyright notice, 11532ed618SSoby Mathew * this list of conditions and the following disclaimer in the documentation 12532ed618SSoby Mathew * and/or other materials provided with the distribution. 13532ed618SSoby Mathew * 14532ed618SSoby Mathew * Neither the name of ARM nor the names of its contributors may be used 15532ed618SSoby Mathew * to endorse or promote products derived from this software without specific 16532ed618SSoby Mathew * prior written permission. 17532ed618SSoby Mathew * 18532ed618SSoby Mathew * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 19532ed618SSoby Mathew * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 20532ed618SSoby Mathew * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 21532ed618SSoby Mathew * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE 22532ed618SSoby Mathew * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 23532ed618SSoby Mathew * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 24532ed618SSoby Mathew * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 25532ed618SSoby Mathew * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 26532ed618SSoby Mathew * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 27532ed618SSoby Mathew * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 28532ed618SSoby Mathew * POSSIBILITY OF SUCH DAMAGE. 29532ed618SSoby Mathew */ 30532ed618SSoby Mathew 31532ed618SSoby Mathew #include <arch.h> 32532ed618SSoby Mathew #include <arch_helpers.h> 33532ed618SSoby Mathew #include <assert.h> 34532ed618SSoby Mathew #include <debug.h> 35532ed618SSoby Mathew #include <platform.h> 36cf0b1492SSoby Mathew #include <smcc.h> 37532ed618SSoby Mathew #include <string.h> 38532ed618SSoby Mathew #include "psci_private.h" 39532ed618SSoby Mathew 40532ed618SSoby Mathew /******************************************************************************* 41532ed618SSoby Mathew * PSCI frontend api for servicing SMCs. Described in the PSCI spec. 42532ed618SSoby Mathew ******************************************************************************/ 43532ed618SSoby Mathew int psci_cpu_on(u_register_t target_cpu, 44532ed618SSoby Mathew uintptr_t entrypoint, 45532ed618SSoby Mathew u_register_t context_id) 46532ed618SSoby Mathew 47532ed618SSoby Mathew { 48532ed618SSoby Mathew int rc; 49532ed618SSoby Mathew entry_point_info_t ep; 50532ed618SSoby Mathew 51532ed618SSoby Mathew /* Determine if the cpu exists of not */ 52532ed618SSoby Mathew rc = psci_validate_mpidr(target_cpu); 53532ed618SSoby Mathew if (rc != PSCI_E_SUCCESS) 54532ed618SSoby Mathew return PSCI_E_INVALID_PARAMS; 55532ed618SSoby Mathew 56532ed618SSoby Mathew /* Validate the entry point and get the entry_point_info */ 57532ed618SSoby Mathew rc = psci_validate_entry_point(&ep, entrypoint, context_id); 58532ed618SSoby Mathew if (rc != PSCI_E_SUCCESS) 59532ed618SSoby Mathew return rc; 60532ed618SSoby Mathew 61532ed618SSoby Mathew /* 62532ed618SSoby Mathew * To turn this cpu on, specify which power 63532ed618SSoby Mathew * levels need to be turned on 64532ed618SSoby Mathew */ 65532ed618SSoby Mathew return psci_cpu_on_start(target_cpu, &ep); 66532ed618SSoby Mathew } 67532ed618SSoby Mathew 68532ed618SSoby Mathew unsigned int psci_version(void) 69532ed618SSoby Mathew { 70532ed618SSoby Mathew return PSCI_MAJOR_VER | PSCI_MINOR_VER; 71532ed618SSoby Mathew } 72532ed618SSoby Mathew 73532ed618SSoby Mathew int psci_cpu_suspend(unsigned int power_state, 74532ed618SSoby Mathew uintptr_t entrypoint, 75532ed618SSoby Mathew u_register_t context_id) 76532ed618SSoby Mathew { 77532ed618SSoby Mathew int rc; 78532ed618SSoby Mathew unsigned int target_pwrlvl, is_power_down_state; 79532ed618SSoby Mathew entry_point_info_t ep; 80532ed618SSoby Mathew psci_power_state_t state_info = { {PSCI_LOCAL_STATE_RUN} }; 81532ed618SSoby Mathew plat_local_state_t cpu_pd_state; 82532ed618SSoby Mathew 83532ed618SSoby Mathew /* Validate the power_state parameter */ 84532ed618SSoby Mathew rc = psci_validate_power_state(power_state, &state_info); 85532ed618SSoby Mathew if (rc != PSCI_E_SUCCESS) { 86532ed618SSoby Mathew assert(rc == PSCI_E_INVALID_PARAMS); 87532ed618SSoby Mathew return rc; 88532ed618SSoby Mathew } 89532ed618SSoby Mathew 90532ed618SSoby Mathew /* 91532ed618SSoby Mathew * Get the value of the state type bit from the power state parameter. 92532ed618SSoby Mathew */ 93532ed618SSoby Mathew is_power_down_state = psci_get_pstate_type(power_state); 94532ed618SSoby Mathew 95532ed618SSoby Mathew /* Sanity check the requested suspend levels */ 96532ed618SSoby Mathew assert(psci_validate_suspend_req(&state_info, is_power_down_state) 97532ed618SSoby Mathew == PSCI_E_SUCCESS); 98532ed618SSoby Mathew 99532ed618SSoby Mathew target_pwrlvl = psci_find_target_suspend_lvl(&state_info); 100a1c3faa6SSandrine Bailleux if (target_pwrlvl == PSCI_INVALID_PWR_LVL) { 101a1c3faa6SSandrine Bailleux ERROR("Invalid target power level for suspend operation\n"); 102a1c3faa6SSandrine Bailleux panic(); 103a1c3faa6SSandrine Bailleux } 104532ed618SSoby Mathew 105532ed618SSoby Mathew /* Fast path for CPU standby.*/ 106532ed618SSoby Mathew if (is_cpu_standby_req(is_power_down_state, target_pwrlvl)) { 107532ed618SSoby Mathew if (!psci_plat_pm_ops->cpu_standby) 108532ed618SSoby Mathew return PSCI_E_INVALID_PARAMS; 109532ed618SSoby Mathew 110532ed618SSoby Mathew /* 111532ed618SSoby Mathew * Set the state of the CPU power domain to the platform 112532ed618SSoby Mathew * specific retention state and enter the standby state. 113532ed618SSoby Mathew */ 114532ed618SSoby Mathew cpu_pd_state = state_info.pwr_domain_state[PSCI_CPU_PWR_LVL]; 115532ed618SSoby Mathew psci_set_cpu_local_state(cpu_pd_state); 116532ed618SSoby Mathew 117532ed618SSoby Mathew #if ENABLE_PSCI_STAT 118532ed618SSoby Mathew /* 119532ed618SSoby Mathew * Capture time-stamp before CPU standby 120532ed618SSoby Mathew * No cache maintenance is needed as caches 121532ed618SSoby Mathew * are ON through out the CPU standby operation. 122532ed618SSoby Mathew */ 123532ed618SSoby Mathew PMF_CAPTURE_TIMESTAMP(psci_svc, PSCI_STAT_ID_ENTER_LOW_PWR, 124532ed618SSoby Mathew PMF_NO_CACHE_MAINT); 125532ed618SSoby Mathew #endif 126532ed618SSoby Mathew 127532ed618SSoby Mathew psci_plat_pm_ops->cpu_standby(cpu_pd_state); 128532ed618SSoby Mathew 129532ed618SSoby Mathew /* Upon exit from standby, set the state back to RUN. */ 130532ed618SSoby Mathew psci_set_cpu_local_state(PSCI_LOCAL_STATE_RUN); 131532ed618SSoby Mathew 132532ed618SSoby Mathew #if ENABLE_PSCI_STAT 133532ed618SSoby Mathew /* Capture time-stamp after CPU standby */ 134532ed618SSoby Mathew PMF_CAPTURE_TIMESTAMP(psci_svc, PSCI_STAT_ID_EXIT_LOW_PWR, 135532ed618SSoby Mathew PMF_NO_CACHE_MAINT); 136532ed618SSoby Mathew 137532ed618SSoby Mathew /* Update PSCI stats */ 138532ed618SSoby Mathew psci_stats_update_pwr_up(PSCI_CPU_PWR_LVL, &state_info, 139532ed618SSoby Mathew PMF_NO_CACHE_MAINT); 140532ed618SSoby Mathew #endif 141532ed618SSoby Mathew 142532ed618SSoby Mathew return PSCI_E_SUCCESS; 143532ed618SSoby Mathew } 144532ed618SSoby Mathew 145532ed618SSoby Mathew /* 146532ed618SSoby Mathew * If a power down state has been requested, we need to verify entry 147532ed618SSoby Mathew * point and program entry information. 148532ed618SSoby Mathew */ 149532ed618SSoby Mathew if (is_power_down_state) { 150532ed618SSoby Mathew rc = psci_validate_entry_point(&ep, entrypoint, context_id); 151532ed618SSoby Mathew if (rc != PSCI_E_SUCCESS) 152532ed618SSoby Mathew return rc; 153532ed618SSoby Mathew } 154532ed618SSoby Mathew 155532ed618SSoby Mathew /* 156532ed618SSoby Mathew * Do what is needed to enter the power down state. Upon success, 157532ed618SSoby Mathew * enter the final wfi which will power down this CPU. This function 158532ed618SSoby Mathew * might return if the power down was abandoned for any reason, e.g. 159532ed618SSoby Mathew * arrival of an interrupt 160532ed618SSoby Mathew */ 161532ed618SSoby Mathew psci_cpu_suspend_start(&ep, 162532ed618SSoby Mathew target_pwrlvl, 163532ed618SSoby Mathew &state_info, 164532ed618SSoby Mathew is_power_down_state); 165532ed618SSoby Mathew 166532ed618SSoby Mathew return PSCI_E_SUCCESS; 167532ed618SSoby Mathew } 168532ed618SSoby Mathew 169532ed618SSoby Mathew 170532ed618SSoby Mathew int psci_system_suspend(uintptr_t entrypoint, u_register_t context_id) 171532ed618SSoby Mathew { 172532ed618SSoby Mathew int rc; 173532ed618SSoby Mathew psci_power_state_t state_info; 174532ed618SSoby Mathew entry_point_info_t ep; 175532ed618SSoby Mathew 176532ed618SSoby Mathew /* Check if the current CPU is the last ON CPU in the system */ 177532ed618SSoby Mathew if (!psci_is_last_on_cpu()) 178532ed618SSoby Mathew return PSCI_E_DENIED; 179532ed618SSoby Mathew 180532ed618SSoby Mathew /* Validate the entry point and get the entry_point_info */ 181532ed618SSoby Mathew rc = psci_validate_entry_point(&ep, entrypoint, context_id); 182532ed618SSoby Mathew if (rc != PSCI_E_SUCCESS) 183532ed618SSoby Mathew return rc; 184532ed618SSoby Mathew 185532ed618SSoby Mathew /* Query the psci_power_state for system suspend */ 186532ed618SSoby Mathew psci_query_sys_suspend_pwrstate(&state_info); 187532ed618SSoby Mathew 188532ed618SSoby Mathew /* Ensure that the psci_power_state makes sense */ 189532ed618SSoby Mathew assert(psci_find_target_suspend_lvl(&state_info) == PLAT_MAX_PWR_LVL); 190532ed618SSoby Mathew assert(psci_validate_suspend_req(&state_info, PSTATE_TYPE_POWERDOWN) 191532ed618SSoby Mathew == PSCI_E_SUCCESS); 192532ed618SSoby Mathew assert(is_local_state_off(state_info.pwr_domain_state[PLAT_MAX_PWR_LVL])); 193532ed618SSoby Mathew 194532ed618SSoby Mathew /* 195532ed618SSoby Mathew * Do what is needed to enter the system suspend state. This function 196532ed618SSoby Mathew * might return if the power down was abandoned for any reason, e.g. 197532ed618SSoby Mathew * arrival of an interrupt 198532ed618SSoby Mathew */ 199532ed618SSoby Mathew psci_cpu_suspend_start(&ep, 200532ed618SSoby Mathew PLAT_MAX_PWR_LVL, 201532ed618SSoby Mathew &state_info, 202532ed618SSoby Mathew PSTATE_TYPE_POWERDOWN); 203532ed618SSoby Mathew 204532ed618SSoby Mathew return PSCI_E_SUCCESS; 205532ed618SSoby Mathew } 206532ed618SSoby Mathew 207532ed618SSoby Mathew int psci_cpu_off(void) 208532ed618SSoby Mathew { 209532ed618SSoby Mathew int rc; 210532ed618SSoby Mathew unsigned int target_pwrlvl = PLAT_MAX_PWR_LVL; 211532ed618SSoby Mathew 212532ed618SSoby Mathew /* 213532ed618SSoby Mathew * Do what is needed to power off this CPU and possible higher power 214532ed618SSoby Mathew * levels if it able to do so. Upon success, enter the final wfi 215532ed618SSoby Mathew * which will power down this CPU. 216532ed618SSoby Mathew */ 217532ed618SSoby Mathew rc = psci_do_cpu_off(target_pwrlvl); 218532ed618SSoby Mathew 219532ed618SSoby Mathew /* 220532ed618SSoby Mathew * The only error cpu_off can return is E_DENIED. So check if that's 221532ed618SSoby Mathew * indeed the case. 222532ed618SSoby Mathew */ 223532ed618SSoby Mathew assert(rc == PSCI_E_DENIED); 224532ed618SSoby Mathew 225532ed618SSoby Mathew return rc; 226532ed618SSoby Mathew } 227532ed618SSoby Mathew 228532ed618SSoby Mathew int psci_affinity_info(u_register_t target_affinity, 229532ed618SSoby Mathew unsigned int lowest_affinity_level) 230532ed618SSoby Mathew { 231532ed618SSoby Mathew unsigned int target_idx; 232532ed618SSoby Mathew 233532ed618SSoby Mathew /* We dont support level higher than PSCI_CPU_PWR_LVL */ 234532ed618SSoby Mathew if (lowest_affinity_level > PSCI_CPU_PWR_LVL) 235532ed618SSoby Mathew return PSCI_E_INVALID_PARAMS; 236532ed618SSoby Mathew 237532ed618SSoby Mathew /* Calculate the cpu index of the target */ 238532ed618SSoby Mathew target_idx = plat_core_pos_by_mpidr(target_affinity); 239532ed618SSoby Mathew if (target_idx == -1) 240532ed618SSoby Mathew return PSCI_E_INVALID_PARAMS; 241532ed618SSoby Mathew 242532ed618SSoby Mathew return psci_get_aff_info_state_by_idx(target_idx); 243532ed618SSoby Mathew } 244532ed618SSoby Mathew 245532ed618SSoby Mathew int psci_migrate(u_register_t target_cpu) 246532ed618SSoby Mathew { 247532ed618SSoby Mathew int rc; 248532ed618SSoby Mathew u_register_t resident_cpu_mpidr; 249532ed618SSoby Mathew 250532ed618SSoby Mathew rc = psci_spd_migrate_info(&resident_cpu_mpidr); 251532ed618SSoby Mathew if (rc != PSCI_TOS_UP_MIG_CAP) 252532ed618SSoby Mathew return (rc == PSCI_TOS_NOT_UP_MIG_CAP) ? 253532ed618SSoby Mathew PSCI_E_DENIED : PSCI_E_NOT_SUPPORTED; 254532ed618SSoby Mathew 255532ed618SSoby Mathew /* 256532ed618SSoby Mathew * Migrate should only be invoked on the CPU where 257532ed618SSoby Mathew * the Secure OS is resident. 258532ed618SSoby Mathew */ 259532ed618SSoby Mathew if (resident_cpu_mpidr != read_mpidr_el1()) 260532ed618SSoby Mathew return PSCI_E_NOT_PRESENT; 261532ed618SSoby Mathew 262532ed618SSoby Mathew /* Check the validity of the specified target cpu */ 263532ed618SSoby Mathew rc = psci_validate_mpidr(target_cpu); 264532ed618SSoby Mathew if (rc != PSCI_E_SUCCESS) 265532ed618SSoby Mathew return PSCI_E_INVALID_PARAMS; 266532ed618SSoby Mathew 267532ed618SSoby Mathew assert(psci_spd_pm && psci_spd_pm->svc_migrate); 268532ed618SSoby Mathew 269532ed618SSoby Mathew rc = psci_spd_pm->svc_migrate(read_mpidr_el1(), target_cpu); 270532ed618SSoby Mathew assert(rc == PSCI_E_SUCCESS || rc == PSCI_E_INTERN_FAIL); 271532ed618SSoby Mathew 272532ed618SSoby Mathew return rc; 273532ed618SSoby Mathew } 274532ed618SSoby Mathew 275532ed618SSoby Mathew int psci_migrate_info_type(void) 276532ed618SSoby Mathew { 277532ed618SSoby Mathew u_register_t resident_cpu_mpidr; 278532ed618SSoby Mathew 279532ed618SSoby Mathew return psci_spd_migrate_info(&resident_cpu_mpidr); 280532ed618SSoby Mathew } 281532ed618SSoby Mathew 282532ed618SSoby Mathew long psci_migrate_info_up_cpu(void) 283532ed618SSoby Mathew { 284532ed618SSoby Mathew u_register_t resident_cpu_mpidr; 285532ed618SSoby Mathew int rc; 286532ed618SSoby Mathew 287532ed618SSoby Mathew /* 288532ed618SSoby Mathew * Return value of this depends upon what 289532ed618SSoby Mathew * psci_spd_migrate_info() returns. 290532ed618SSoby Mathew */ 291532ed618SSoby Mathew rc = psci_spd_migrate_info(&resident_cpu_mpidr); 292532ed618SSoby Mathew if (rc != PSCI_TOS_NOT_UP_MIG_CAP && rc != PSCI_TOS_UP_MIG_CAP) 293532ed618SSoby Mathew return PSCI_E_INVALID_PARAMS; 294532ed618SSoby Mathew 295532ed618SSoby Mathew return resident_cpu_mpidr; 296532ed618SSoby Mathew } 297532ed618SSoby Mathew 298*28d3d614SJeenu Viswambharan int psci_node_hw_state(u_register_t target_cpu, 299*28d3d614SJeenu Viswambharan unsigned int power_level) 300*28d3d614SJeenu Viswambharan { 301*28d3d614SJeenu Viswambharan int rc; 302*28d3d614SJeenu Viswambharan 303*28d3d614SJeenu Viswambharan /* Validate target_cpu */ 304*28d3d614SJeenu Viswambharan rc = psci_validate_mpidr(target_cpu); 305*28d3d614SJeenu Viswambharan if (rc != PSCI_E_SUCCESS) 306*28d3d614SJeenu Viswambharan return PSCI_E_INVALID_PARAMS; 307*28d3d614SJeenu Viswambharan 308*28d3d614SJeenu Viswambharan /* Validate power_level against PLAT_MAX_PWR_LVL */ 309*28d3d614SJeenu Viswambharan if (power_level > PLAT_MAX_PWR_LVL) 310*28d3d614SJeenu Viswambharan return PSCI_E_INVALID_PARAMS; 311*28d3d614SJeenu Viswambharan 312*28d3d614SJeenu Viswambharan /* 313*28d3d614SJeenu Viswambharan * Dispatch this call to platform to query power controller, and pass on 314*28d3d614SJeenu Viswambharan * to the caller what it returns 315*28d3d614SJeenu Viswambharan */ 316*28d3d614SJeenu Viswambharan assert(psci_plat_pm_ops->get_node_hw_state); 317*28d3d614SJeenu Viswambharan rc = psci_plat_pm_ops->get_node_hw_state(target_cpu, power_level); 318*28d3d614SJeenu Viswambharan assert((rc >= HW_ON && rc <= HW_STANDBY) || rc == PSCI_E_NOT_SUPPORTED 319*28d3d614SJeenu Viswambharan || rc == PSCI_E_INVALID_PARAMS); 320*28d3d614SJeenu Viswambharan return rc; 321*28d3d614SJeenu Viswambharan } 322*28d3d614SJeenu Viswambharan 323532ed618SSoby Mathew int psci_features(unsigned int psci_fid) 324532ed618SSoby Mathew { 325532ed618SSoby Mathew unsigned int local_caps = psci_caps; 326532ed618SSoby Mathew 327532ed618SSoby Mathew /* Check if it is a 64 bit function */ 328532ed618SSoby Mathew if (((psci_fid >> FUNCID_CC_SHIFT) & FUNCID_CC_MASK) == SMC_64) 329532ed618SSoby Mathew local_caps &= PSCI_CAP_64BIT_MASK; 330532ed618SSoby Mathew 331532ed618SSoby Mathew /* Check for invalid fid */ 332532ed618SSoby Mathew if (!(is_std_svc_call(psci_fid) && is_valid_fast_smc(psci_fid) 333532ed618SSoby Mathew && is_psci_fid(psci_fid))) 334532ed618SSoby Mathew return PSCI_E_NOT_SUPPORTED; 335532ed618SSoby Mathew 336532ed618SSoby Mathew 337532ed618SSoby Mathew /* Check if the psci fid is supported or not */ 338532ed618SSoby Mathew if (!(local_caps & define_psci_cap(psci_fid))) 339532ed618SSoby Mathew return PSCI_E_NOT_SUPPORTED; 340532ed618SSoby Mathew 341532ed618SSoby Mathew /* Format the feature flags */ 342532ed618SSoby Mathew if (psci_fid == PSCI_CPU_SUSPEND_AARCH32 || 343532ed618SSoby Mathew psci_fid == PSCI_CPU_SUSPEND_AARCH64) { 344532ed618SSoby Mathew /* 345532ed618SSoby Mathew * The trusted firmware does not support OS Initiated Mode. 346532ed618SSoby Mathew */ 347532ed618SSoby Mathew return (FF_PSTATE << FF_PSTATE_SHIFT) | 348532ed618SSoby Mathew ((!FF_SUPPORTS_OS_INIT_MODE) << FF_MODE_SUPPORT_SHIFT); 349532ed618SSoby Mathew } 350532ed618SSoby Mathew 351532ed618SSoby Mathew /* Return 0 for all other fid's */ 352532ed618SSoby Mathew return PSCI_E_SUCCESS; 353532ed618SSoby Mathew } 354532ed618SSoby Mathew 355532ed618SSoby Mathew /******************************************************************************* 356532ed618SSoby Mathew * PSCI top level handler for servicing SMCs. 357532ed618SSoby Mathew ******************************************************************************/ 358cf0b1492SSoby Mathew u_register_t psci_smc_handler(uint32_t smc_fid, 359532ed618SSoby Mathew u_register_t x1, 360532ed618SSoby Mathew u_register_t x2, 361532ed618SSoby Mathew u_register_t x3, 362532ed618SSoby Mathew u_register_t x4, 363532ed618SSoby Mathew void *cookie, 364532ed618SSoby Mathew void *handle, 365532ed618SSoby Mathew u_register_t flags) 366532ed618SSoby Mathew { 367532ed618SSoby Mathew if (is_caller_secure(flags)) 368cf0b1492SSoby Mathew return SMC_UNK; 369532ed618SSoby Mathew 370532ed618SSoby Mathew /* Check the fid against the capabilities */ 371532ed618SSoby Mathew if (!(psci_caps & define_psci_cap(smc_fid))) 372cf0b1492SSoby Mathew return SMC_UNK; 373532ed618SSoby Mathew 374532ed618SSoby Mathew if (((smc_fid >> FUNCID_CC_SHIFT) & FUNCID_CC_MASK) == SMC_32) { 375532ed618SSoby Mathew /* 32-bit PSCI function, clear top parameter bits */ 376532ed618SSoby Mathew 377532ed618SSoby Mathew x1 = (uint32_t)x1; 378532ed618SSoby Mathew x2 = (uint32_t)x2; 379532ed618SSoby Mathew x3 = (uint32_t)x3; 380532ed618SSoby Mathew 381532ed618SSoby Mathew switch (smc_fid) { 382532ed618SSoby Mathew case PSCI_VERSION: 383cf0b1492SSoby Mathew return psci_version(); 384532ed618SSoby Mathew 385532ed618SSoby Mathew case PSCI_CPU_OFF: 386cf0b1492SSoby Mathew return psci_cpu_off(); 387532ed618SSoby Mathew 388532ed618SSoby Mathew case PSCI_CPU_SUSPEND_AARCH32: 389cf0b1492SSoby Mathew return psci_cpu_suspend(x1, x2, x3); 390532ed618SSoby Mathew 391532ed618SSoby Mathew case PSCI_CPU_ON_AARCH32: 392cf0b1492SSoby Mathew return psci_cpu_on(x1, x2, x3); 393532ed618SSoby Mathew 394532ed618SSoby Mathew case PSCI_AFFINITY_INFO_AARCH32: 395cf0b1492SSoby Mathew return psci_affinity_info(x1, x2); 396532ed618SSoby Mathew 397532ed618SSoby Mathew case PSCI_MIG_AARCH32: 398cf0b1492SSoby Mathew return psci_migrate(x1); 399532ed618SSoby Mathew 400532ed618SSoby Mathew case PSCI_MIG_INFO_TYPE: 401cf0b1492SSoby Mathew return psci_migrate_info_type(); 402532ed618SSoby Mathew 403532ed618SSoby Mathew case PSCI_MIG_INFO_UP_CPU_AARCH32: 404cf0b1492SSoby Mathew return psci_migrate_info_up_cpu(); 405532ed618SSoby Mathew 406*28d3d614SJeenu Viswambharan case PSCI_NODE_HW_STATE_AARCH32: 407*28d3d614SJeenu Viswambharan return psci_node_hw_state(x1, x2); 408*28d3d614SJeenu Viswambharan 409532ed618SSoby Mathew case PSCI_SYSTEM_SUSPEND_AARCH32: 410cf0b1492SSoby Mathew return psci_system_suspend(x1, x2); 411532ed618SSoby Mathew 412532ed618SSoby Mathew case PSCI_SYSTEM_OFF: 413532ed618SSoby Mathew psci_system_off(); 414532ed618SSoby Mathew /* We should never return from psci_system_off() */ 415532ed618SSoby Mathew 416532ed618SSoby Mathew case PSCI_SYSTEM_RESET: 417532ed618SSoby Mathew psci_system_reset(); 418532ed618SSoby Mathew /* We should never return from psci_system_reset() */ 419532ed618SSoby Mathew 420532ed618SSoby Mathew case PSCI_FEATURES: 421cf0b1492SSoby Mathew return psci_features(x1); 422532ed618SSoby Mathew 423532ed618SSoby Mathew #if ENABLE_PSCI_STAT 424532ed618SSoby Mathew case PSCI_STAT_RESIDENCY_AARCH32: 425cf0b1492SSoby Mathew return psci_stat_residency(x1, x2); 426532ed618SSoby Mathew 427532ed618SSoby Mathew case PSCI_STAT_COUNT_AARCH32: 428cf0b1492SSoby Mathew return psci_stat_count(x1, x2); 429532ed618SSoby Mathew #endif 430532ed618SSoby Mathew 431532ed618SSoby Mathew default: 432532ed618SSoby Mathew break; 433532ed618SSoby Mathew } 434532ed618SSoby Mathew } else { 435532ed618SSoby Mathew /* 64-bit PSCI function */ 436532ed618SSoby Mathew 437532ed618SSoby Mathew switch (smc_fid) { 438532ed618SSoby Mathew case PSCI_CPU_SUSPEND_AARCH64: 439cf0b1492SSoby Mathew return psci_cpu_suspend(x1, x2, x3); 440532ed618SSoby Mathew 441532ed618SSoby Mathew case PSCI_CPU_ON_AARCH64: 442cf0b1492SSoby Mathew return psci_cpu_on(x1, x2, x3); 443532ed618SSoby Mathew 444532ed618SSoby Mathew case PSCI_AFFINITY_INFO_AARCH64: 445cf0b1492SSoby Mathew return psci_affinity_info(x1, x2); 446532ed618SSoby Mathew 447532ed618SSoby Mathew case PSCI_MIG_AARCH64: 448cf0b1492SSoby Mathew return psci_migrate(x1); 449532ed618SSoby Mathew 450532ed618SSoby Mathew case PSCI_MIG_INFO_UP_CPU_AARCH64: 451cf0b1492SSoby Mathew return psci_migrate_info_up_cpu(); 452532ed618SSoby Mathew 453*28d3d614SJeenu Viswambharan case PSCI_NODE_HW_STATE_AARCH64: 454*28d3d614SJeenu Viswambharan return psci_node_hw_state(x1, x2); 455*28d3d614SJeenu Viswambharan 456532ed618SSoby Mathew case PSCI_SYSTEM_SUSPEND_AARCH64: 457cf0b1492SSoby Mathew return psci_system_suspend(x1, x2); 458532ed618SSoby Mathew 459532ed618SSoby Mathew #if ENABLE_PSCI_STAT 460532ed618SSoby Mathew case PSCI_STAT_RESIDENCY_AARCH64: 461cf0b1492SSoby Mathew return psci_stat_residency(x1, x2); 462532ed618SSoby Mathew 463532ed618SSoby Mathew case PSCI_STAT_COUNT_AARCH64: 464cf0b1492SSoby Mathew return psci_stat_count(x1, x2); 465532ed618SSoby Mathew #endif 466532ed618SSoby Mathew 467532ed618SSoby Mathew default: 468532ed618SSoby Mathew break; 469532ed618SSoby Mathew } 470532ed618SSoby Mathew } 471532ed618SSoby Mathew 472532ed618SSoby Mathew WARN("Unimplemented PSCI Call: 0x%x \n", smc_fid); 473cf0b1492SSoby Mathew return SMC_UNK; 474532ed618SSoby Mathew } 475