1532ed618SSoby Mathew /* 20a33adc0SGovindraj Raja * Copyright (c) 2013-2024, Arm Limited and Contributors. All rights reserved. 32b28727eSVarun Wadekar * Copyright (c) 2022, NVIDIA Corporation. All rights reserved. 4532ed618SSoby Mathew * 582cb2c1aSdp-arm * SPDX-License-Identifier: BSD-3-Clause 6532ed618SSoby Mathew */ 7532ed618SSoby Mathew 8532ed618SSoby Mathew #include <assert.h> 940daecc1SAntonio Nino Diaz #include <stdbool.h> 10532ed618SSoby Mathew #include <string.h> 1109d40e0eSAntonio Nino Diaz 1209d40e0eSAntonio Nino Diaz #include <platform_def.h> 1309d40e0eSAntonio Nino Diaz 1409d40e0eSAntonio Nino Diaz #include <arch.h> 1509d40e0eSAntonio Nino Diaz #include <arch_helpers.h> 16b7e398d6SSoby Mathew #include <arch_features.h> 1709d40e0eSAntonio Nino Diaz #include <bl31/interrupt_mgmt.h> 1809d40e0eSAntonio Nino Diaz #include <common/bl_common.h> 19885e2683SClaus Pedersen #include <common/debug.h> 2009d40e0eSAntonio Nino Diaz #include <context.h> 218b95e848SZelalem Aweke #include <drivers/arm/gicv3.h> 2209d40e0eSAntonio Nino Diaz #include <lib/el3_runtime/context_mgmt.h> 23461c0a5dSElizabeth Ho #include <lib/el3_runtime/cpu_data.h> 2409d40e0eSAntonio Nino Diaz #include <lib/el3_runtime/pubsub_events.h> 2509d40e0eSAntonio Nino Diaz #include <lib/extensions/amu.h> 26744ad974Sjohpow01 #include <lib/extensions/brbe.h> 2709d40e0eSAntonio Nino Diaz #include <lib/extensions/mpam.h> 28c73686a1SBoyan Karatotev #include <lib/extensions/pmuv3.h> 29dc78e62dSjohpow01 #include <lib/extensions/sme.h> 3009d40e0eSAntonio Nino Diaz #include <lib/extensions/spe.h> 3109d40e0eSAntonio Nino Diaz #include <lib/extensions/sve.h> 32d4582d30SManish V Badarkhe #include <lib/extensions/sys_reg_trace.h> 33813524eaSManish V Badarkhe #include <lib/extensions/trbe.h> 348fcd3d96SManish V Badarkhe #include <lib/extensions/trf.h> 3509d40e0eSAntonio Nino Diaz #include <lib/utils.h> 36532ed618SSoby Mathew 37781d07a4SJayanth Dodderi Chidanand #if ENABLE_FEAT_TWED 38781d07a4SJayanth Dodderi Chidanand /* Make sure delay value fits within the range(0-15) */ 39781d07a4SJayanth Dodderi Chidanand CASSERT(((TWED_DELAY & ~SCR_TWEDEL_MASK) == 0U), assert_twed_delay_value_check); 40781d07a4SJayanth Dodderi Chidanand #endif /* ENABLE_FEAT_TWED */ 41532ed618SSoby Mathew 42461c0a5dSElizabeth Ho per_world_context_t per_world_context[CPU_DATA_CONTEXT_NUM]; 43461c0a5dSElizabeth Ho static bool has_secure_perworld_init; 44461c0a5dSElizabeth Ho 4524a70738SBoyan Karatotev static void manage_extensions_nonsecure(cpu_context_t *ctx); 46781d07a4SJayanth Dodderi Chidanand static void manage_extensions_secure(cpu_context_t *ctx); 47461c0a5dSElizabeth Ho static void manage_extensions_secure_per_world(void); 48b515f541SZelalem Aweke 49b515f541SZelalem Aweke static void setup_el1_context(cpu_context_t *ctx, const struct entry_point_info *ep) 50b515f541SZelalem Aweke { 51b515f541SZelalem Aweke u_register_t sctlr_elx, actlr_elx; 52b515f541SZelalem Aweke 53b515f541SZelalem Aweke /* 54b515f541SZelalem Aweke * Initialise SCTLR_EL1 to the reset value corresponding to the target 55b515f541SZelalem Aweke * execution state setting all fields rather than relying on the hw. 56b515f541SZelalem Aweke * Some fields have architecturally UNKNOWN reset values and these are 57b515f541SZelalem Aweke * set to zero. 58b515f541SZelalem Aweke * 59b515f541SZelalem Aweke * SCTLR.EE: Endianness is taken from the entrypoint attributes. 60b515f541SZelalem Aweke * 61b515f541SZelalem Aweke * SCTLR.M, SCTLR.C and SCTLR.I: These fields must be zero (as 62b515f541SZelalem Aweke * required by PSCI specification) 63b515f541SZelalem Aweke */ 64b515f541SZelalem Aweke sctlr_elx = (EP_GET_EE(ep->h.attr) != 0U) ? SCTLR_EE_BIT : 0UL; 65b515f541SZelalem Aweke if (GET_RW(ep->spsr) == MODE_RW_64) { 66b515f541SZelalem Aweke sctlr_elx |= SCTLR_EL1_RES1; 67b515f541SZelalem Aweke } else { 68b515f541SZelalem Aweke /* 69b515f541SZelalem Aweke * If the target execution state is AArch32 then the following 70b515f541SZelalem Aweke * fields need to be set. 71b515f541SZelalem Aweke * 72b515f541SZelalem Aweke * SCTRL_EL1.nTWE: Set to one so that EL0 execution of WFE 73b515f541SZelalem Aweke * instructions are not trapped to EL1. 74b515f541SZelalem Aweke * 75b515f541SZelalem Aweke * SCTLR_EL1.nTWI: Set to one so that EL0 execution of WFI 76b515f541SZelalem Aweke * instructions are not trapped to EL1. 77b515f541SZelalem Aweke * 78b515f541SZelalem Aweke * SCTLR_EL1.CP15BEN: Set to one to enable EL0 execution of the 79b515f541SZelalem Aweke * CP15DMB, CP15DSB, and CP15ISB instructions. 80b515f541SZelalem Aweke */ 81b515f541SZelalem Aweke sctlr_elx |= SCTLR_AARCH32_EL1_RES1 | SCTLR_CP15BEN_BIT 82b515f541SZelalem Aweke | SCTLR_NTWI_BIT | SCTLR_NTWE_BIT; 83b515f541SZelalem Aweke } 84b515f541SZelalem Aweke 85b515f541SZelalem Aweke #if ERRATA_A75_764081 86b515f541SZelalem Aweke /* 87b515f541SZelalem Aweke * If workaround of errata 764081 for Cortex-A75 is used then set 88b515f541SZelalem Aweke * SCTLR_EL1.IESB to enable Implicit Error Synchronization Barrier. 89b515f541SZelalem Aweke */ 90b515f541SZelalem Aweke sctlr_elx |= SCTLR_IESB_BIT; 91b515f541SZelalem Aweke #endif 92b515f541SZelalem Aweke /* Store the initialised SCTLR_EL1 value in the cpu_context */ 93b515f541SZelalem Aweke write_ctx_reg(get_el1_sysregs_ctx(ctx), CTX_SCTLR_EL1, sctlr_elx); 94b515f541SZelalem Aweke 95b515f541SZelalem Aweke /* 96b515f541SZelalem Aweke * Base the context ACTLR_EL1 on the current value, as it is 97b515f541SZelalem Aweke * implementation defined. The context restore process will write 98b515f541SZelalem Aweke * the value from the context to the actual register and can cause 99b515f541SZelalem Aweke * problems for processor cores that don't expect certain bits to 100b515f541SZelalem Aweke * be zero. 101b515f541SZelalem Aweke */ 102b515f541SZelalem Aweke actlr_elx = read_actlr_el1(); 103b515f541SZelalem Aweke write_ctx_reg((get_el1_sysregs_ctx(ctx)), (CTX_ACTLR_EL1), (actlr_elx)); 104b515f541SZelalem Aweke } 105b515f541SZelalem Aweke 1062bbad1d1SZelalem Aweke /****************************************************************************** 1072bbad1d1SZelalem Aweke * This function performs initializations that are specific to SECURE state 1082bbad1d1SZelalem Aweke * and updates the cpu context specified by 'ctx'. 1092bbad1d1SZelalem Aweke *****************************************************************************/ 1102bbad1d1SZelalem Aweke static void setup_secure_context(cpu_context_t *ctx, const struct entry_point_info *ep) 111532ed618SSoby Mathew { 1122bbad1d1SZelalem Aweke u_register_t scr_el3; 1132bbad1d1SZelalem Aweke el3_state_t *state; 1142bbad1d1SZelalem Aweke 1152bbad1d1SZelalem Aweke state = get_el3state_ctx(ctx); 1162bbad1d1SZelalem Aweke scr_el3 = read_ctx_reg(state, CTX_SCR_EL3); 1172bbad1d1SZelalem Aweke 1182bbad1d1SZelalem Aweke #if defined(IMAGE_BL31) && !defined(SPD_spmd) 119532ed618SSoby Mathew /* 1202bbad1d1SZelalem Aweke * SCR_EL3.IRQ, SCR_EL3.FIQ: Enable the physical FIQ and IRQ routing as 1212bbad1d1SZelalem Aweke * indicated by the interrupt routing model for BL31. 122532ed618SSoby Mathew */ 1232bbad1d1SZelalem Aweke scr_el3 |= get_scr_el3_from_routing_model(SECURE); 1242bbad1d1SZelalem Aweke #endif 1252bbad1d1SZelalem Aweke 126ef0d0e54SGovindraj Raja /* Allow access to Allocation Tags when FEAT_MTE2 is implemented and enabled. */ 127ef0d0e54SGovindraj Raja if (is_feat_mte2_supported()) { 1282bbad1d1SZelalem Aweke scr_el3 |= SCR_ATA_BIT; 1292bbad1d1SZelalem Aweke } 1302bbad1d1SZelalem Aweke 1312bbad1d1SZelalem Aweke write_ctx_reg(state, CTX_SCR_EL3, scr_el3); 1322bbad1d1SZelalem Aweke 133b515f541SZelalem Aweke /* 134b515f541SZelalem Aweke * Initialize EL1 context registers unless SPMC is running 135b515f541SZelalem Aweke * at S-EL2. 136b515f541SZelalem Aweke */ 137b515f541SZelalem Aweke #if !SPMD_SPM_AT_SEL2 138b515f541SZelalem Aweke setup_el1_context(ctx, ep); 139b515f541SZelalem Aweke #endif 140b515f541SZelalem Aweke 1412bbad1d1SZelalem Aweke manage_extensions_secure(ctx); 142461c0a5dSElizabeth Ho 143461c0a5dSElizabeth Ho /** 144461c0a5dSElizabeth Ho * manage_extensions_secure_per_world api has to be executed once, 145461c0a5dSElizabeth Ho * as the registers getting initialised, maintain constant value across 146461c0a5dSElizabeth Ho * all the cpus for the secure world. 147461c0a5dSElizabeth Ho * Henceforth, this check ensures that the registers are initialised once 148461c0a5dSElizabeth Ho * and avoids re-initialization from multiple cores. 149461c0a5dSElizabeth Ho */ 150461c0a5dSElizabeth Ho if (!has_secure_perworld_init) { 151461c0a5dSElizabeth Ho manage_extensions_secure_per_world(); 152461c0a5dSElizabeth Ho } 153461c0a5dSElizabeth Ho 1542bbad1d1SZelalem Aweke } 1552bbad1d1SZelalem Aweke 1562bbad1d1SZelalem Aweke #if ENABLE_RME 1572bbad1d1SZelalem Aweke /****************************************************************************** 1582bbad1d1SZelalem Aweke * This function performs initializations that are specific to REALM state 1592bbad1d1SZelalem Aweke * and updates the cpu context specified by 'ctx'. 1602bbad1d1SZelalem Aweke *****************************************************************************/ 1612bbad1d1SZelalem Aweke static void setup_realm_context(cpu_context_t *ctx, const struct entry_point_info *ep) 1622bbad1d1SZelalem Aweke { 1632bbad1d1SZelalem Aweke u_register_t scr_el3; 1642bbad1d1SZelalem Aweke el3_state_t *state; 1652bbad1d1SZelalem Aweke 1662bbad1d1SZelalem Aweke state = get_el3state_ctx(ctx); 1672bbad1d1SZelalem Aweke scr_el3 = read_ctx_reg(state, CTX_SCR_EL3); 1682bbad1d1SZelalem Aweke 16901cf14ddSMaksims Svecovs scr_el3 |= SCR_NS_BIT | SCR_NSE_BIT; 17001cf14ddSMaksims Svecovs 17130019d86SSona Mathew /* CSV2 version 2 and above */ 1727db710f0SAndre Przywara if (is_feat_csv2_2_supported()) { 17301cf14ddSMaksims Svecovs /* Enable access to the SCXTNUM_ELx registers. */ 17401cf14ddSMaksims Svecovs scr_el3 |= SCR_EnSCXT_BIT; 1757db710f0SAndre Przywara } 1762bbad1d1SZelalem Aweke 1772bbad1d1SZelalem Aweke write_ctx_reg(state, CTX_SCR_EL3, scr_el3); 1782bbad1d1SZelalem Aweke } 1792bbad1d1SZelalem Aweke #endif /* ENABLE_RME */ 1802bbad1d1SZelalem Aweke 1812bbad1d1SZelalem Aweke /****************************************************************************** 1822bbad1d1SZelalem Aweke * This function performs initializations that are specific to NON-SECURE state 1832bbad1d1SZelalem Aweke * and updates the cpu context specified by 'ctx'. 1842bbad1d1SZelalem Aweke *****************************************************************************/ 1852bbad1d1SZelalem Aweke static void setup_ns_context(cpu_context_t *ctx, const struct entry_point_info *ep) 1862bbad1d1SZelalem Aweke { 1872bbad1d1SZelalem Aweke u_register_t scr_el3; 1882bbad1d1SZelalem Aweke el3_state_t *state; 1892bbad1d1SZelalem Aweke 1902bbad1d1SZelalem Aweke state = get_el3state_ctx(ctx); 1912bbad1d1SZelalem Aweke scr_el3 = read_ctx_reg(state, CTX_SCR_EL3); 1922bbad1d1SZelalem Aweke 1932bbad1d1SZelalem Aweke /* SCR_NS: Set the NS bit */ 1942bbad1d1SZelalem Aweke scr_el3 |= SCR_NS_BIT; 1952bbad1d1SZelalem Aweke 196ef0d0e54SGovindraj Raja /* Allow access to Allocation Tags when FEAT_MTE2 is implemented and enabled. */ 197ef0d0e54SGovindraj Raja if (is_feat_mte2_supported()) { 1982bbad1d1SZelalem Aweke scr_el3 |= SCR_ATA_BIT; 199ef0d0e54SGovindraj Raja } 2002bbad1d1SZelalem Aweke 201f0c96a2eSBoyan Karatotev #if !CTX_INCLUDE_PAUTH_REGS 202f0c96a2eSBoyan Karatotev /* 203f0c96a2eSBoyan Karatotev * Pointer Authentication feature, if present, is always enabled by default 204f0c96a2eSBoyan Karatotev * for Non secure lower exception levels. We do not have an explicit 205f0c96a2eSBoyan Karatotev * flag to set it. 206f0c96a2eSBoyan Karatotev * CTX_INCLUDE_PAUTH_REGS flag, is explicitly used to enable for lower 207f0c96a2eSBoyan Karatotev * exception levels of secure and realm worlds. 208f0c96a2eSBoyan Karatotev * 209f0c96a2eSBoyan Karatotev * To prevent the leakage between the worlds during world switch, 210f0c96a2eSBoyan Karatotev * we enable it only for the non-secure world. 211f0c96a2eSBoyan Karatotev * 212f0c96a2eSBoyan Karatotev * If the Secure/realm world wants to use pointer authentication, 213f0c96a2eSBoyan Karatotev * CTX_INCLUDE_PAUTH_REGS must be explicitly set to 1, in which case 214f0c96a2eSBoyan Karatotev * it will be enabled globally for all the contexts. 215f0c96a2eSBoyan Karatotev * 216f0c96a2eSBoyan Karatotev * SCR_EL3.API: Set to one to not trap any PAuth instructions at ELs 217f0c96a2eSBoyan Karatotev * other than EL3 218f0c96a2eSBoyan Karatotev * 219f0c96a2eSBoyan Karatotev * SCR_EL3.APK: Set to one to not trap any PAuth key values at ELs other 220f0c96a2eSBoyan Karatotev * than EL3 221f0c96a2eSBoyan Karatotev */ 222f0c96a2eSBoyan Karatotev scr_el3 |= SCR_API_BIT | SCR_APK_BIT; 223f0c96a2eSBoyan Karatotev 224f0c96a2eSBoyan Karatotev #endif /* CTX_INCLUDE_PAUTH_REGS */ 225f0c96a2eSBoyan Karatotev 22646cc41d5SManish Pandey #if HANDLE_EA_EL3_FIRST_NS 22746cc41d5SManish Pandey /* SCR_EL3.EA: Route External Abort and SError Interrupt to EL3. */ 22846cc41d5SManish Pandey scr_el3 |= SCR_EA_BIT; 22946cc41d5SManish Pandey #endif 23046cc41d5SManish Pandey 23100e8f79cSManish Pandey #if RAS_TRAP_NS_ERR_REC_ACCESS 23200e8f79cSManish Pandey /* 23300e8f79cSManish Pandey * SCR_EL3.TERR: Trap Error record accesses. Accesses to the RAS ERR 23400e8f79cSManish Pandey * and RAS ERX registers from EL1 and EL2(from any security state) 23500e8f79cSManish Pandey * are trapped to EL3. 23600e8f79cSManish Pandey * Set here to trap only for NS EL1/EL2 23700e8f79cSManish Pandey * 23800e8f79cSManish Pandey */ 23900e8f79cSManish Pandey scr_el3 |= SCR_TERR_BIT; 24000e8f79cSManish Pandey #endif 24100e8f79cSManish Pandey 24230019d86SSona Mathew /* CSV2 version 2 and above */ 2437db710f0SAndre Przywara if (is_feat_csv2_2_supported()) { 24401cf14ddSMaksims Svecovs /* Enable access to the SCXTNUM_ELx registers. */ 24501cf14ddSMaksims Svecovs scr_el3 |= SCR_EnSCXT_BIT; 2467db710f0SAndre Przywara } 24701cf14ddSMaksims Svecovs 2482bbad1d1SZelalem Aweke #ifdef IMAGE_BL31 2492bbad1d1SZelalem Aweke /* 2502bbad1d1SZelalem Aweke * SCR_EL3.IRQ, SCR_EL3.FIQ: Enable the physical FIQ and IRQ routing as 2512bbad1d1SZelalem Aweke * indicated by the interrupt routing model for BL31. 2522bbad1d1SZelalem Aweke */ 2532bbad1d1SZelalem Aweke scr_el3 |= get_scr_el3_from_routing_model(NON_SECURE); 2542bbad1d1SZelalem Aweke #endif 2552bbad1d1SZelalem Aweke write_ctx_reg(state, CTX_SCR_EL3, scr_el3); 2568b95e848SZelalem Aweke 257b515f541SZelalem Aweke /* Initialize EL1 context registers */ 258b515f541SZelalem Aweke setup_el1_context(ctx, ep); 259b515f541SZelalem Aweke 2608b95e848SZelalem Aweke /* Initialize EL2 context registers */ 2618b95e848SZelalem Aweke #if CTX_INCLUDE_EL2_REGS 2628b95e848SZelalem Aweke 2638b95e848SZelalem Aweke /* 2648b95e848SZelalem Aweke * Initialize SCTLR_EL2 context register using Endianness value 2658b95e848SZelalem Aweke * taken from the entrypoint attribute. 2668b95e848SZelalem Aweke */ 267d6af2344SJayanth Dodderi Chidanand u_register_t sctlr_el2_val = (EP_GET_EE(ep->h.attr) != 0U) ? SCTLR_EE_BIT : 0UL; 268d6af2344SJayanth Dodderi Chidanand sctlr_el2_val |= SCTLR_EL2_RES1; 269d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(get_el2_sysregs_ctx(ctx), sctlr_el2, sctlr_el2_val); 270d6af2344SJayanth Dodderi Chidanand 2718b95e848SZelalem Aweke 272ddb615b4SJuan Pablo Conde if (is_feat_hcx_supported()) { 273ddb615b4SJuan Pablo Conde /* 274ddb615b4SJuan Pablo Conde * Initialize register HCRX_EL2 with its init value. 275ddb615b4SJuan Pablo Conde * As the value of HCRX_EL2 is UNKNOWN on reset, there is a 276ddb615b4SJuan Pablo Conde * chance that this can lead to unexpected behavior in lower 277ddb615b4SJuan Pablo Conde * ELs that have not been updated since the introduction of 278ddb615b4SJuan Pablo Conde * this feature if not properly initialized, especially when 279ddb615b4SJuan Pablo Conde * it comes to those bits that enable/disable traps. 280ddb615b4SJuan Pablo Conde */ 281d6af2344SJayanth Dodderi Chidanand write_el2_ctx_hcx(get_el2_sysregs_ctx(ctx), hcrx_el2, 282ddb615b4SJuan Pablo Conde HCRX_EL2_INIT_VAL); 283ddb615b4SJuan Pablo Conde } 2844a530b4cSJuan Pablo Conde 2854a530b4cSJuan Pablo Conde if (is_feat_fgt_supported()) { 2864a530b4cSJuan Pablo Conde /* 2874a530b4cSJuan Pablo Conde * Initialize HFG*_EL2 registers with a default value so legacy 2884a530b4cSJuan Pablo Conde * systems unaware of FEAT_FGT do not get trapped due to their lack 2894a530b4cSJuan Pablo Conde * of initialization for this feature. 2904a530b4cSJuan Pablo Conde */ 291d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(get_el2_sysregs_ctx(ctx), hfgitr_el2, 2924a530b4cSJuan Pablo Conde HFGITR_EL2_INIT_VAL); 293d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(get_el2_sysregs_ctx(ctx), hfgrtr_el2, 2944a530b4cSJuan Pablo Conde HFGRTR_EL2_INIT_VAL); 295d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(get_el2_sysregs_ctx(ctx), hfgwtr_el2, 2964a530b4cSJuan Pablo Conde HFGWTR_EL2_INIT_VAL); 2974a530b4cSJuan Pablo Conde } 298d6af2344SJayanth Dodderi Chidanand 2998b95e848SZelalem Aweke #endif /* CTX_INCLUDE_EL2_REGS */ 30024a70738SBoyan Karatotev 30124a70738SBoyan Karatotev manage_extensions_nonsecure(ctx); 302532ed618SSoby Mathew } 303532ed618SSoby Mathew 304532ed618SSoby Mathew /******************************************************************************* 3052bbad1d1SZelalem Aweke * The following function performs initialization of the cpu_context 'ctx' 3062bbad1d1SZelalem Aweke * for first use that is common to all security states, and sets the 3072bbad1d1SZelalem Aweke * initial entrypoint state as specified by the entry_point_info structure. 308532ed618SSoby Mathew * 3098aabea33SPaul Beesley * The EE and ST attributes are used to configure the endianness and secure 310532ed618SSoby Mathew * timer availability for the new execution context. 311532ed618SSoby Mathew ******************************************************************************/ 3122bbad1d1SZelalem Aweke static void setup_context_common(cpu_context_t *ctx, const entry_point_info_t *ep) 313532ed618SSoby Mathew { 314f1be00daSLouis Mayencourt u_register_t scr_el3; 315532ed618SSoby Mathew el3_state_t *state; 316532ed618SSoby Mathew gp_regs_t *gp_regs; 317532ed618SSoby Mathew 318f0c96a2eSBoyan Karatotev state = get_el3state_ctx(ctx); 319f0c96a2eSBoyan Karatotev 320532ed618SSoby Mathew /* Clear any residual register values from the context */ 32132f0d3c6SDouglas Raillard zeromem(ctx, sizeof(*ctx)); 322532ed618SSoby Mathew 323532ed618SSoby Mathew /* 3245e8cc727SBoyan Karatotev * The lower-EL context is zeroed so that no stale values leak to a world. 3255e8cc727SBoyan Karatotev * It is assumed that an all-zero lower-EL context is good enough for it 3265e8cc727SBoyan Karatotev * to boot correctly. However, there are very few registers where this 3275e8cc727SBoyan Karatotev * is not true and some values need to be recreated. 3285e8cc727SBoyan Karatotev */ 3295e8cc727SBoyan Karatotev #if CTX_INCLUDE_EL2_REGS 3305e8cc727SBoyan Karatotev el2_sysregs_t *el2_ctx = get_el2_sysregs_ctx(ctx); 3315e8cc727SBoyan Karatotev 3325e8cc727SBoyan Karatotev /* 3335e8cc727SBoyan Karatotev * These bits are set in the gicv3 driver. Losing them (especially the 3345e8cc727SBoyan Karatotev * SRE bit) is problematic for all worlds. Henceforth recreate them. 3355e8cc727SBoyan Karatotev */ 336d6af2344SJayanth Dodderi Chidanand u_register_t icc_sre_el2_val = ICC_SRE_DIB_BIT | ICC_SRE_DFB_BIT | 3375e8cc727SBoyan Karatotev ICC_SRE_EN_BIT | ICC_SRE_SRE_BIT; 338d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(el2_ctx, icc_sre_el2, icc_sre_el2_val); 3395e8cc727SBoyan Karatotev #endif /* CTX_INCLUDE_EL2_REGS */ 3405e8cc727SBoyan Karatotev 3415c52d7e5SBoyan Karatotev /* Start with a clean SCR_EL3 copy as all relevant values are set */ 3425c52d7e5SBoyan Karatotev scr_el3 = SCR_RESET_VAL; 343c5ea4f8aSZelalem Aweke 34418f2efd6SDavid Cunado /* 345f0c96a2eSBoyan Karatotev * SCR_EL3.TWE: Set to zero so that execution of WFE instructions at 346f0c96a2eSBoyan Karatotev * EL2, EL1 and EL0 are not trapped to EL3. 347f0c96a2eSBoyan Karatotev * 348f0c96a2eSBoyan Karatotev * SCR_EL3.TWI: Set to zero so that execution of WFI instructions at 349f0c96a2eSBoyan Karatotev * EL2, EL1 and EL0 are not trapped to EL3. 350f0c96a2eSBoyan Karatotev * 351f0c96a2eSBoyan Karatotev * SCR_EL3.SMD: Set to zero to enable SMC calls at EL1 and above, from 352f0c96a2eSBoyan Karatotev * both Security states and both Execution states. 353f0c96a2eSBoyan Karatotev * 354f0c96a2eSBoyan Karatotev * SCR_EL3.SIF: Set to one to disable secure instruction execution from 355f0c96a2eSBoyan Karatotev * Non-secure memory. 356f0c96a2eSBoyan Karatotev */ 357f0c96a2eSBoyan Karatotev scr_el3 &= ~(SCR_TWE_BIT | SCR_TWI_BIT | SCR_SMD_BIT); 358f0c96a2eSBoyan Karatotev 359f0c96a2eSBoyan Karatotev scr_el3 |= SCR_SIF_BIT; 360f0c96a2eSBoyan Karatotev 361f0c96a2eSBoyan Karatotev /* 36218f2efd6SDavid Cunado * SCR_EL3.RW: Set the execution state, AArch32 or AArch64, for next 36318f2efd6SDavid Cunado * Exception level as specified by SPSR. 36418f2efd6SDavid Cunado */ 365c5ea4f8aSZelalem Aweke if (GET_RW(ep->spsr) == MODE_RW_64) { 366532ed618SSoby Mathew scr_el3 |= SCR_RW_BIT; 367c5ea4f8aSZelalem Aweke } 3682bbad1d1SZelalem Aweke 36918f2efd6SDavid Cunado /* 37018f2efd6SDavid Cunado * SCR_EL3.ST: Traps Secure EL1 accesses to the Counter-timer Physical 37118f2efd6SDavid Cunado * Secure timer registers to EL3, from AArch64 state only, if specified 372b515f541SZelalem Aweke * by the entrypoint attributes. If SEL2 is present and enabled, the ST 373b515f541SZelalem Aweke * bit always behaves as 1 (i.e. secure physical timer register access 374b515f541SZelalem Aweke * is not trapped) 37518f2efd6SDavid Cunado */ 376c5ea4f8aSZelalem Aweke if (EP_GET_ST(ep->h.attr) != 0U) { 377532ed618SSoby Mathew scr_el3 |= SCR_ST_BIT; 378c5ea4f8aSZelalem Aweke } 379532ed618SSoby Mathew 380cb4ec47bSjohpow01 /* 381cb4ec47bSjohpow01 * If FEAT_HCX is enabled, enable access to HCRX_EL2 by setting 382cb4ec47bSjohpow01 * SCR_EL3.HXEn. 383cb4ec47bSjohpow01 */ 384c5a3ebbdSAndre Przywara if (is_feat_hcx_supported()) { 385cb4ec47bSjohpow01 scr_el3 |= SCR_HXEn_BIT; 386c5a3ebbdSAndre Przywara } 387cb4ec47bSjohpow01 388ff86e0b4SJuan Pablo Conde /* 389ff86e0b4SJuan Pablo Conde * If FEAT_RNG_TRAP is enabled, all reads of the RNDR and RNDRRS 390ff86e0b4SJuan Pablo Conde * registers are trapped to EL3. 391ff86e0b4SJuan Pablo Conde */ 392ff86e0b4SJuan Pablo Conde #if ENABLE_FEAT_RNG_TRAP 393ff86e0b4SJuan Pablo Conde scr_el3 |= SCR_TRNDR_BIT; 394ff86e0b4SJuan Pablo Conde #endif 395ff86e0b4SJuan Pablo Conde 3961a7c1cfeSJeenu Viswambharan #if FAULT_INJECTION_SUPPORT 3971a7c1cfeSJeenu Viswambharan /* Enable fault injection from lower ELs */ 3981a7c1cfeSJeenu Viswambharan scr_el3 |= SCR_FIEN_BIT; 3991a7c1cfeSJeenu Viswambharan #endif 4001a7c1cfeSJeenu Viswambharan 401f0c96a2eSBoyan Karatotev #if CTX_INCLUDE_PAUTH_REGS 402f0c96a2eSBoyan Karatotev /* 403f0c96a2eSBoyan Karatotev * Enable Pointer Authentication globally for all the worlds. 404f0c96a2eSBoyan Karatotev * 405f0c96a2eSBoyan Karatotev * SCR_EL3.API: Set to one to not trap any PAuth instructions at ELs 406f0c96a2eSBoyan Karatotev * other than EL3 407f0c96a2eSBoyan Karatotev * 408f0c96a2eSBoyan Karatotev * SCR_EL3.APK: Set to one to not trap any PAuth key values at ELs other 409f0c96a2eSBoyan Karatotev * than EL3 410f0c96a2eSBoyan Karatotev */ 411f0c96a2eSBoyan Karatotev scr_el3 |= SCR_API_BIT | SCR_APK_BIT; 412f0c96a2eSBoyan Karatotev #endif /* CTX_INCLUDE_PAUTH_REGS */ 413f0c96a2eSBoyan Karatotev 4145283962eSAntonio Nino Diaz /* 415d3331603SMark Brown * SCR_EL3.TCR2EN: Enable access to TCR2_ELx for AArch64 if present. 416d3331603SMark Brown */ 417d3331603SMark Brown if (is_feat_tcr2_supported() && (GET_RW(ep->spsr) == MODE_RW_64)) { 418d3331603SMark Brown scr_el3 |= SCR_TCR2EN_BIT; 419d3331603SMark Brown } 420d3331603SMark Brown 421d3331603SMark Brown /* 422062b6c6bSMark Brown * SCR_EL3.PIEN: Enable permission indirection and overlay 423062b6c6bSMark Brown * registers for AArch64 if present. 424062b6c6bSMark Brown */ 425062b6c6bSMark Brown if (is_feat_sxpie_supported() || is_feat_sxpoe_supported()) { 426062b6c6bSMark Brown scr_el3 |= SCR_PIEN_BIT; 427062b6c6bSMark Brown } 428062b6c6bSMark Brown 429062b6c6bSMark Brown /* 430688ab57bSMark Brown * SCR_EL3.GCSEn: Enable GCS registers for AArch64 if present. 431688ab57bSMark Brown */ 432688ab57bSMark Brown if ((is_feat_gcs_supported()) && (GET_RW(ep->spsr) == MODE_RW_64)) { 433688ab57bSMark Brown scr_el3 |= SCR_GCSEn_BIT; 434688ab57bSMark Brown } 435688ab57bSMark Brown 436688ab57bSMark Brown /* 43718f2efd6SDavid Cunado * SCR_EL3.HCE: Enable HVC instructions if next execution state is 43818f2efd6SDavid Cunado * AArch64 and next EL is EL2, or if next execution state is AArch32 and 43918f2efd6SDavid Cunado * next mode is Hyp. 440110ee433SJimmy Brisson * SCR_EL3.FGTEn: Enable Fine Grained Virtualization Traps under the 441110ee433SJimmy Brisson * same conditions as HVC instructions and when the processor supports 442110ee433SJimmy Brisson * ARMv8.6-FGT. 44329d0ee54SJimmy Brisson * SCR_EL3.ECVEn: Enable Enhanced Counter Virtualization (ECV) 44429d0ee54SJimmy Brisson * CNTPOFF_EL2 register under the same conditions as HVC instructions 44529d0ee54SJimmy Brisson * and when the processor supports ECV. 446532ed618SSoby Mathew */ 447a0fee747SAntonio Nino Diaz if (((GET_RW(ep->spsr) == MODE_RW_64) && (GET_EL(ep->spsr) == MODE_EL2)) 448a0fee747SAntonio Nino Diaz || ((GET_RW(ep->spsr) != MODE_RW_64) 449a0fee747SAntonio Nino Diaz && (GET_M32(ep->spsr) == MODE32_hyp))) { 450532ed618SSoby Mathew scr_el3 |= SCR_HCE_BIT; 451110ee433SJimmy Brisson 452ce485955SAndre Przywara if (is_feat_fgt_supported()) { 453110ee433SJimmy Brisson scr_el3 |= SCR_FGTEN_BIT; 454110ee433SJimmy Brisson } 45529d0ee54SJimmy Brisson 456b8f03d29SAndre Przywara if (is_feat_ecv_supported()) { 45729d0ee54SJimmy Brisson scr_el3 |= SCR_ECVEN_BIT; 45829d0ee54SJimmy Brisson } 459532ed618SSoby Mathew } 460532ed618SSoby Mathew 4616cac724dSjohpow01 /* Enable WFE trap delay in SCR_EL3 if supported and configured */ 4621223d2a0SAndre Przywara if (is_feat_twed_supported()) { 4636cac724dSjohpow01 /* Set delay in SCR_EL3 */ 4646cac724dSjohpow01 scr_el3 &= ~(SCR_TWEDEL_MASK << SCR_TWEDEL_SHIFT); 465781d07a4SJayanth Dodderi Chidanand scr_el3 |= ((TWED_DELAY & SCR_TWEDEL_MASK) 4666cac724dSjohpow01 << SCR_TWEDEL_SHIFT); 4676cac724dSjohpow01 4686cac724dSjohpow01 /* Enable WFE delay */ 4696cac724dSjohpow01 scr_el3 |= SCR_TWEDEn_BIT; 4701223d2a0SAndre Przywara } 4716cac724dSjohpow01 4729f4b6259SJayanth Dodderi Chidanand #if IMAGE_BL31 && defined(SPD_spmd) && SPMD_SPM_AT_SEL2 4739f4b6259SJayanth Dodderi Chidanand /* Enable S-EL2 if FEAT_SEL2 is implemented for all the contexts. */ 4749f4b6259SJayanth Dodderi Chidanand if (is_feat_sel2_supported()) { 4759f4b6259SJayanth Dodderi Chidanand scr_el3 |= SCR_EEL2_BIT; 4769f4b6259SJayanth Dodderi Chidanand } 4779f4b6259SJayanth Dodderi Chidanand #endif /* (IMAGE_BL31 && defined(SPD_spmd) && SPMD_SPM_AT_SEL2) */ 4789f4b6259SJayanth Dodderi Chidanand 47918f2efd6SDavid Cunado /* 480e290a8fcSAlexei Fedorov * Populate EL3 state so that we've the right context 481e290a8fcSAlexei Fedorov * before doing ERET 4823e61b2b5SDavid Cunado */ 483532ed618SSoby Mathew write_ctx_reg(state, CTX_SCR_EL3, scr_el3); 484532ed618SSoby Mathew write_ctx_reg(state, CTX_ELR_EL3, ep->pc); 485532ed618SSoby Mathew write_ctx_reg(state, CTX_SPSR_EL3, ep->spsr); 486532ed618SSoby Mathew 487532ed618SSoby Mathew /* 488532ed618SSoby Mathew * Store the X0-X7 value from the entrypoint into the context 489532ed618SSoby Mathew * Use memcpy as we are in control of the layout of the structures 490532ed618SSoby Mathew */ 491532ed618SSoby Mathew gp_regs = get_gpregs_ctx(ctx); 492532ed618SSoby Mathew memcpy(gp_regs, (void *)&ep->args, sizeof(aapcs64_params_t)); 493532ed618SSoby Mathew } 494532ed618SSoby Mathew 495532ed618SSoby Mathew /******************************************************************************* 4962bbad1d1SZelalem Aweke * Context management library initialization routine. This library is used by 4972bbad1d1SZelalem Aweke * runtime services to share pointers to 'cpu_context' structures for secure 4982bbad1d1SZelalem Aweke * non-secure and realm states. Management of the structures and their associated 4992bbad1d1SZelalem Aweke * memory is not done by the context management library e.g. the PSCI service 5002bbad1d1SZelalem Aweke * manages the cpu context used for entry from and exit to the non-secure state. 5012bbad1d1SZelalem Aweke * The Secure payload dispatcher service manages the context(s) corresponding to 5022bbad1d1SZelalem Aweke * the secure state. It also uses this library to get access to the non-secure 5032bbad1d1SZelalem Aweke * state cpu context pointers. 5042bbad1d1SZelalem Aweke * Lastly, this library provides the API to make SP_EL3 point to the cpu context 5052bbad1d1SZelalem Aweke * which will be used for programming an entry into a lower EL. The same context 5062bbad1d1SZelalem Aweke * will be used to save state upon exception entry from that EL. 5072bbad1d1SZelalem Aweke ******************************************************************************/ 5082bbad1d1SZelalem Aweke void __init cm_init(void) 5092bbad1d1SZelalem Aweke { 5102bbad1d1SZelalem Aweke /* 5111b491eeaSElyes Haouas * The context management library has only global data to initialize, but 5122bbad1d1SZelalem Aweke * that will be done when the BSS is zeroed out. 5132bbad1d1SZelalem Aweke */ 5142bbad1d1SZelalem Aweke } 5152bbad1d1SZelalem Aweke 5162bbad1d1SZelalem Aweke /******************************************************************************* 5172bbad1d1SZelalem Aweke * This is the high-level function used to initialize the cpu_context 'ctx' for 5182bbad1d1SZelalem Aweke * first use. It performs initializations that are common to all security states 5192bbad1d1SZelalem Aweke * and initializations specific to the security state specified in 'ep' 5202bbad1d1SZelalem Aweke ******************************************************************************/ 5212bbad1d1SZelalem Aweke void cm_setup_context(cpu_context_t *ctx, const entry_point_info_t *ep) 5222bbad1d1SZelalem Aweke { 5232bbad1d1SZelalem Aweke unsigned int security_state; 5242bbad1d1SZelalem Aweke 5252bbad1d1SZelalem Aweke assert(ctx != NULL); 5262bbad1d1SZelalem Aweke 5272bbad1d1SZelalem Aweke /* 5282bbad1d1SZelalem Aweke * Perform initializations that are common 5292bbad1d1SZelalem Aweke * to all security states 5302bbad1d1SZelalem Aweke */ 5312bbad1d1SZelalem Aweke setup_context_common(ctx, ep); 5322bbad1d1SZelalem Aweke 5332bbad1d1SZelalem Aweke security_state = GET_SECURITY_STATE(ep->h.attr); 5342bbad1d1SZelalem Aweke 5352bbad1d1SZelalem Aweke /* Perform security state specific initializations */ 5362bbad1d1SZelalem Aweke switch (security_state) { 5372bbad1d1SZelalem Aweke case SECURE: 5382bbad1d1SZelalem Aweke setup_secure_context(ctx, ep); 5392bbad1d1SZelalem Aweke break; 5402bbad1d1SZelalem Aweke #if ENABLE_RME 5412bbad1d1SZelalem Aweke case REALM: 5422bbad1d1SZelalem Aweke setup_realm_context(ctx, ep); 5432bbad1d1SZelalem Aweke break; 5442bbad1d1SZelalem Aweke #endif 5452bbad1d1SZelalem Aweke case NON_SECURE: 5462bbad1d1SZelalem Aweke setup_ns_context(ctx, ep); 5472bbad1d1SZelalem Aweke break; 5482bbad1d1SZelalem Aweke default: 5492bbad1d1SZelalem Aweke ERROR("Invalid security state\n"); 5502bbad1d1SZelalem Aweke panic(); 5512bbad1d1SZelalem Aweke break; 5522bbad1d1SZelalem Aweke } 5532bbad1d1SZelalem Aweke } 5542bbad1d1SZelalem Aweke 5552bbad1d1SZelalem Aweke /******************************************************************************* 55624a70738SBoyan Karatotev * Enable architecture extensions for EL3 execution. This function only updates 55724a70738SBoyan Karatotev * registers in-place which are expected to either never change or be 55824a70738SBoyan Karatotev * overwritten by el3_exit. 55924a70738SBoyan Karatotev ******************************************************************************/ 56024a70738SBoyan Karatotev #if IMAGE_BL31 56124a70738SBoyan Karatotev void cm_manage_extensions_el3(void) 56224a70738SBoyan Karatotev { 56360d330dcSBoyan Karatotev if (is_feat_spe_supported()) { 56460d330dcSBoyan Karatotev spe_init_el3(); 56560d330dcSBoyan Karatotev } 56660d330dcSBoyan Karatotev 5674085a02cSBoyan Karatotev if (is_feat_amu_supported()) { 5684085a02cSBoyan Karatotev amu_init_el3(); 5694085a02cSBoyan Karatotev } 5704085a02cSBoyan Karatotev 57160d330dcSBoyan Karatotev if (is_feat_sme_supported()) { 57260d330dcSBoyan Karatotev sme_init_el3(); 57360d330dcSBoyan Karatotev } 57460d330dcSBoyan Karatotev 57560d330dcSBoyan Karatotev if (is_feat_trbe_supported()) { 57660d330dcSBoyan Karatotev trbe_init_el3(); 57760d330dcSBoyan Karatotev } 57860d330dcSBoyan Karatotev 57960d330dcSBoyan Karatotev if (is_feat_brbe_supported()) { 58060d330dcSBoyan Karatotev brbe_init_el3(); 58160d330dcSBoyan Karatotev } 58260d330dcSBoyan Karatotev 58360d330dcSBoyan Karatotev if (is_feat_trf_supported()) { 58460d330dcSBoyan Karatotev trf_init_el3(); 58560d330dcSBoyan Karatotev } 58660d330dcSBoyan Karatotev 58760d330dcSBoyan Karatotev pmuv3_init_el3(); 58824a70738SBoyan Karatotev } 58924a70738SBoyan Karatotev #endif /* IMAGE_BL31 */ 59024a70738SBoyan Karatotev 5914087ed6cSJayanth Dodderi Chidanand /****************************************************************************** 5924087ed6cSJayanth Dodderi Chidanand * Function to initialise the registers with the RESET values in the context 5934087ed6cSJayanth Dodderi Chidanand * memory, which are maintained per world. 5944087ed6cSJayanth Dodderi Chidanand ******************************************************************************/ 5954087ed6cSJayanth Dodderi Chidanand #if IMAGE_BL31 5964087ed6cSJayanth Dodderi Chidanand void cm_el3_arch_init_per_world(per_world_context_t *per_world_ctx) 5974087ed6cSJayanth Dodderi Chidanand { 5984087ed6cSJayanth Dodderi Chidanand /* 5994087ed6cSJayanth Dodderi Chidanand * Initialise CPTR_EL3, setting all fields rather than relying on hw. 6004087ed6cSJayanth Dodderi Chidanand * 6014087ed6cSJayanth Dodderi Chidanand * CPTR_EL3.TFP: Set to zero so that accesses to the V- or Z- registers 6024087ed6cSJayanth Dodderi Chidanand * by Advanced SIMD, floating-point or SVE instructions (if 6034087ed6cSJayanth Dodderi Chidanand * implemented) do not trap to EL3. 6044087ed6cSJayanth Dodderi Chidanand * 6054087ed6cSJayanth Dodderi Chidanand * CPTR_EL3.TCPAC: Set to zero so that accesses to CPACR_EL1, 6064087ed6cSJayanth Dodderi Chidanand * CPTR_EL2,CPACR, or HCPTR do not trap to EL3. 6074087ed6cSJayanth Dodderi Chidanand */ 6084087ed6cSJayanth Dodderi Chidanand uint64_t cptr_el3 = CPTR_EL3_RESET_VAL & ~(TCPAC_BIT | TFP_BIT); 609ac4f6aafSArvind Ram Prakash 6104087ed6cSJayanth Dodderi Chidanand per_world_ctx->ctx_cptr_el3 = cptr_el3; 611ac4f6aafSArvind Ram Prakash 612ac4f6aafSArvind Ram Prakash /* 613ac4f6aafSArvind Ram Prakash * Initialize MPAM3_EL3 to its default reset value 614ac4f6aafSArvind Ram Prakash * 615ac4f6aafSArvind Ram Prakash * MPAM3_EL3_RESET_VAL sets the MPAM3_EL3.TRAPLOWER bit that forces 616ac4f6aafSArvind Ram Prakash * all lower ELn MPAM3_EL3 register access to, trap to EL3 617ac4f6aafSArvind Ram Prakash */ 618ac4f6aafSArvind Ram Prakash 619ac4f6aafSArvind Ram Prakash per_world_ctx->ctx_mpam3_el3 = MPAM3_EL3_RESET_VAL; 6204087ed6cSJayanth Dodderi Chidanand } 6214087ed6cSJayanth Dodderi Chidanand #endif /* IMAGE_BL31 */ 6224087ed6cSJayanth Dodderi Chidanand 62324a70738SBoyan Karatotev /******************************************************************************* 624461c0a5dSElizabeth Ho * Initialise per_world_context for Non-Secure world. 625461c0a5dSElizabeth Ho * This function enables the architecture extensions, which have same value 626461c0a5dSElizabeth Ho * across the cores for the non-secure world. 627461c0a5dSElizabeth Ho ******************************************************************************/ 628461c0a5dSElizabeth Ho #if IMAGE_BL31 629461c0a5dSElizabeth Ho void manage_extensions_nonsecure_per_world(void) 630461c0a5dSElizabeth Ho { 6314087ed6cSJayanth Dodderi Chidanand cm_el3_arch_init_per_world(&per_world_context[CPU_CONTEXT_NS]); 6324087ed6cSJayanth Dodderi Chidanand 633461c0a5dSElizabeth Ho if (is_feat_sme_supported()) { 634461c0a5dSElizabeth Ho sme_enable_per_world(&per_world_context[CPU_CONTEXT_NS]); 635461c0a5dSElizabeth Ho } 636461c0a5dSElizabeth Ho 637461c0a5dSElizabeth Ho if (is_feat_sve_supported()) { 638461c0a5dSElizabeth Ho sve_enable_per_world(&per_world_context[CPU_CONTEXT_NS]); 639461c0a5dSElizabeth Ho } 640461c0a5dSElizabeth Ho 641461c0a5dSElizabeth Ho if (is_feat_amu_supported()) { 642461c0a5dSElizabeth Ho amu_enable_per_world(&per_world_context[CPU_CONTEXT_NS]); 643461c0a5dSElizabeth Ho } 644461c0a5dSElizabeth Ho 645461c0a5dSElizabeth Ho if (is_feat_sys_reg_trace_supported()) { 646461c0a5dSElizabeth Ho sys_reg_trace_enable_per_world(&per_world_context[CPU_CONTEXT_NS]); 647461c0a5dSElizabeth Ho } 648ac4f6aafSArvind Ram Prakash 649ac4f6aafSArvind Ram Prakash if (is_feat_mpam_supported()) { 650ac4f6aafSArvind Ram Prakash mpam_enable_per_world(&per_world_context[CPU_CONTEXT_NS]); 651ac4f6aafSArvind Ram Prakash } 652461c0a5dSElizabeth Ho } 653461c0a5dSElizabeth Ho #endif /* IMAGE_BL31 */ 654461c0a5dSElizabeth Ho 655461c0a5dSElizabeth Ho /******************************************************************************* 656461c0a5dSElizabeth Ho * Initialise per_world_context for Secure world. 657461c0a5dSElizabeth Ho * This function enables the architecture extensions, which have same value 658461c0a5dSElizabeth Ho * across the cores for the secure world. 659461c0a5dSElizabeth Ho ******************************************************************************/ 660461c0a5dSElizabeth Ho static void manage_extensions_secure_per_world(void) 661461c0a5dSElizabeth Ho { 662461c0a5dSElizabeth Ho #if IMAGE_BL31 6634087ed6cSJayanth Dodderi Chidanand cm_el3_arch_init_per_world(&per_world_context[CPU_CONTEXT_SECURE]); 6644087ed6cSJayanth Dodderi Chidanand 665461c0a5dSElizabeth Ho if (is_feat_sme_supported()) { 666461c0a5dSElizabeth Ho 667461c0a5dSElizabeth Ho if (ENABLE_SME_FOR_SWD) { 668461c0a5dSElizabeth Ho /* 669461c0a5dSElizabeth Ho * Enable SME, SVE, FPU/SIMD in secure context, SPM must ensure 670461c0a5dSElizabeth Ho * SME, SVE, and FPU/SIMD context properly managed. 671461c0a5dSElizabeth Ho */ 672461c0a5dSElizabeth Ho sme_enable_per_world(&per_world_context[CPU_CONTEXT_SECURE]); 673461c0a5dSElizabeth Ho } else { 674461c0a5dSElizabeth Ho /* 675461c0a5dSElizabeth Ho * Disable SME, SVE, FPU/SIMD in secure context so non-secure 676461c0a5dSElizabeth Ho * world can safely use the associated registers. 677461c0a5dSElizabeth Ho */ 678461c0a5dSElizabeth Ho sme_disable_per_world(&per_world_context[CPU_CONTEXT_SECURE]); 679461c0a5dSElizabeth Ho } 680461c0a5dSElizabeth Ho } 681461c0a5dSElizabeth Ho if (is_feat_sve_supported()) { 682461c0a5dSElizabeth Ho if (ENABLE_SVE_FOR_SWD) { 683461c0a5dSElizabeth Ho /* 684461c0a5dSElizabeth Ho * Enable SVE and FPU in secure context, SPM must ensure 685461c0a5dSElizabeth Ho * that the SVE and FPU register contexts are properly managed. 686461c0a5dSElizabeth Ho */ 687461c0a5dSElizabeth Ho sve_enable_per_world(&per_world_context[CPU_CONTEXT_SECURE]); 688461c0a5dSElizabeth Ho } else { 689461c0a5dSElizabeth Ho /* 690461c0a5dSElizabeth Ho * Disable SVE and FPU in secure context so non-secure world 691461c0a5dSElizabeth Ho * can safely use them. 692461c0a5dSElizabeth Ho */ 693461c0a5dSElizabeth Ho sve_disable_per_world(&per_world_context[CPU_CONTEXT_SECURE]); 694461c0a5dSElizabeth Ho } 695461c0a5dSElizabeth Ho } 696461c0a5dSElizabeth Ho 697461c0a5dSElizabeth Ho /* NS can access this but Secure shouldn't */ 698461c0a5dSElizabeth Ho if (is_feat_sys_reg_trace_supported()) { 699461c0a5dSElizabeth Ho sys_reg_trace_disable_per_world(&per_world_context[CPU_CONTEXT_SECURE]); 700461c0a5dSElizabeth Ho } 701461c0a5dSElizabeth Ho 702461c0a5dSElizabeth Ho has_secure_perworld_init = true; 703461c0a5dSElizabeth Ho #endif /* IMAGE_BL31 */ 704461c0a5dSElizabeth Ho } 705461c0a5dSElizabeth Ho 706461c0a5dSElizabeth Ho /******************************************************************************* 70724a70738SBoyan Karatotev * Enable architecture extensions on first entry to Non-secure world. 70824a70738SBoyan Karatotev ******************************************************************************/ 70924a70738SBoyan Karatotev static void manage_extensions_nonsecure(cpu_context_t *ctx) 71024a70738SBoyan Karatotev { 71124a70738SBoyan Karatotev #if IMAGE_BL31 7124085a02cSBoyan Karatotev if (is_feat_amu_supported()) { 7134085a02cSBoyan Karatotev amu_enable(ctx); 7144085a02cSBoyan Karatotev } 7154085a02cSBoyan Karatotev 71660d330dcSBoyan Karatotev if (is_feat_sme_supported()) { 71760d330dcSBoyan Karatotev sme_enable(ctx); 71860d330dcSBoyan Karatotev } 71960d330dcSBoyan Karatotev 720c73686a1SBoyan Karatotev pmuv3_enable(ctx); 72124a70738SBoyan Karatotev #endif /* IMAGE_BL31 */ 72224a70738SBoyan Karatotev } 72324a70738SBoyan Karatotev 724b48bd790SBoyan Karatotev /* TODO: move to lib/extensions/pauth when it has been ported to FEAT_STATE */ 725b48bd790SBoyan Karatotev static __unused void enable_pauth_el2(void) 726b48bd790SBoyan Karatotev { 727b48bd790SBoyan Karatotev u_register_t hcr_el2 = read_hcr_el2(); 728b48bd790SBoyan Karatotev /* 729b48bd790SBoyan Karatotev * For Armv8.3 pointer authentication feature, disable traps to EL2 when 730b48bd790SBoyan Karatotev * accessing key registers or using pointer authentication instructions 731b48bd790SBoyan Karatotev * from lower ELs. 732b48bd790SBoyan Karatotev */ 733b48bd790SBoyan Karatotev hcr_el2 |= (HCR_API_BIT | HCR_APK_BIT); 734b48bd790SBoyan Karatotev 735b48bd790SBoyan Karatotev write_hcr_el2(hcr_el2); 736b48bd790SBoyan Karatotev } 737b48bd790SBoyan Karatotev 738183329a5SArvind Ram Prakash #if INIT_UNUSED_NS_EL2 73924a70738SBoyan Karatotev /******************************************************************************* 74024a70738SBoyan Karatotev * Enable architecture extensions in-place at EL2 on first entry to Non-secure 74124a70738SBoyan Karatotev * world when EL2 is empty and unused. 74224a70738SBoyan Karatotev ******************************************************************************/ 74324a70738SBoyan Karatotev static void manage_extensions_nonsecure_el2_unused(void) 74424a70738SBoyan Karatotev { 74524a70738SBoyan Karatotev #if IMAGE_BL31 74660d330dcSBoyan Karatotev if (is_feat_spe_supported()) { 74760d330dcSBoyan Karatotev spe_init_el2_unused(); 74860d330dcSBoyan Karatotev } 74960d330dcSBoyan Karatotev 7504085a02cSBoyan Karatotev if (is_feat_amu_supported()) { 7514085a02cSBoyan Karatotev amu_init_el2_unused(); 7524085a02cSBoyan Karatotev } 7534085a02cSBoyan Karatotev 75460d330dcSBoyan Karatotev if (is_feat_mpam_supported()) { 75560d330dcSBoyan Karatotev mpam_init_el2_unused(); 75660d330dcSBoyan Karatotev } 75760d330dcSBoyan Karatotev 75860d330dcSBoyan Karatotev if (is_feat_trbe_supported()) { 75960d330dcSBoyan Karatotev trbe_init_el2_unused(); 76060d330dcSBoyan Karatotev } 76160d330dcSBoyan Karatotev 76260d330dcSBoyan Karatotev if (is_feat_sys_reg_trace_supported()) { 76360d330dcSBoyan Karatotev sys_reg_trace_init_el2_unused(); 76460d330dcSBoyan Karatotev } 76560d330dcSBoyan Karatotev 76660d330dcSBoyan Karatotev if (is_feat_trf_supported()) { 76760d330dcSBoyan Karatotev trf_init_el2_unused(); 76860d330dcSBoyan Karatotev } 76960d330dcSBoyan Karatotev 770c73686a1SBoyan Karatotev pmuv3_init_el2_unused(); 77160d330dcSBoyan Karatotev 77260d330dcSBoyan Karatotev if (is_feat_sve_supported()) { 77360d330dcSBoyan Karatotev sve_init_el2_unused(); 77460d330dcSBoyan Karatotev } 77560d330dcSBoyan Karatotev 77660d330dcSBoyan Karatotev if (is_feat_sme_supported()) { 77760d330dcSBoyan Karatotev sme_init_el2_unused(); 77860d330dcSBoyan Karatotev } 779b48bd790SBoyan Karatotev 780b48bd790SBoyan Karatotev #if ENABLE_PAUTH 781b48bd790SBoyan Karatotev enable_pauth_el2(); 782b48bd790SBoyan Karatotev #endif /* ENABLE_PAUTH */ 78324a70738SBoyan Karatotev #endif /* IMAGE_BL31 */ 78424a70738SBoyan Karatotev } 785183329a5SArvind Ram Prakash #endif /* INIT_UNUSED_NS_EL2 */ 78624a70738SBoyan Karatotev 78724a70738SBoyan Karatotev /******************************************************************************* 78868ac5ed0SArunachalam Ganapathy * Enable architecture extensions on first entry to Secure world. 78968ac5ed0SArunachalam Ganapathy ******************************************************************************/ 790dc78e62dSjohpow01 static void manage_extensions_secure(cpu_context_t *ctx) 79168ac5ed0SArunachalam Ganapathy { 79268ac5ed0SArunachalam Ganapathy #if IMAGE_BL31 7930d122947SBoyan Karatotev if (is_feat_sme_supported()) { 7940d122947SBoyan Karatotev if (ENABLE_SME_FOR_SWD) { 7950d122947SBoyan Karatotev /* 7960d122947SBoyan Karatotev * Enable SME, SVE, FPU/SIMD in secure context, secure manager 7970d122947SBoyan Karatotev * must ensure SME, SVE, and FPU/SIMD context properly managed. 7980d122947SBoyan Karatotev */ 79960d330dcSBoyan Karatotev sme_init_el3(); 8000d122947SBoyan Karatotev sme_enable(ctx); 8010d122947SBoyan Karatotev } else { 8020d122947SBoyan Karatotev /* 8030d122947SBoyan Karatotev * Disable SME, SVE, FPU/SIMD in secure context so non-secure 8040d122947SBoyan Karatotev * world can safely use the associated registers. 8050d122947SBoyan Karatotev */ 8060d122947SBoyan Karatotev sme_disable(ctx); 8070d122947SBoyan Karatotev } 8080d122947SBoyan Karatotev } 809dc78e62dSjohpow01 #endif /* IMAGE_BL31 */ 81068ac5ed0SArunachalam Ganapathy } 81168ac5ed0SArunachalam Ganapathy 81268ac5ed0SArunachalam Ganapathy /******************************************************************************* 813532ed618SSoby Mathew * The following function initializes the cpu_context for a CPU specified by 814532ed618SSoby Mathew * its `cpu_idx` for first use, and sets the initial entrypoint state as 815532ed618SSoby Mathew * specified by the entry_point_info structure. 816532ed618SSoby Mathew ******************************************************************************/ 817532ed618SSoby Mathew void cm_init_context_by_index(unsigned int cpu_idx, 818532ed618SSoby Mathew const entry_point_info_t *ep) 819532ed618SSoby Mathew { 820532ed618SSoby Mathew cpu_context_t *ctx; 821532ed618SSoby Mathew ctx = cm_get_context_by_index(cpu_idx, GET_SECURITY_STATE(ep->h.attr)); 8221634cae8SAntonio Nino Diaz cm_setup_context(ctx, ep); 823532ed618SSoby Mathew } 824532ed618SSoby Mathew 825532ed618SSoby Mathew /******************************************************************************* 826532ed618SSoby Mathew * The following function initializes the cpu_context for the current CPU 827532ed618SSoby Mathew * for first use, and sets the initial entrypoint state as specified by the 828532ed618SSoby Mathew * entry_point_info structure. 829532ed618SSoby Mathew ******************************************************************************/ 830532ed618SSoby Mathew void cm_init_my_context(const entry_point_info_t *ep) 831532ed618SSoby Mathew { 832532ed618SSoby Mathew cpu_context_t *ctx; 833532ed618SSoby Mathew ctx = cm_get_context(GET_SECURITY_STATE(ep->h.attr)); 8341634cae8SAntonio Nino Diaz cm_setup_context(ctx, ep); 835532ed618SSoby Mathew } 836532ed618SSoby Mathew 837b48bd790SBoyan Karatotev /* EL2 present but unused, need to disable safely. SCTLR_EL2 can be ignored */ 838183329a5SArvind Ram Prakash static void init_nonsecure_el2_unused(cpu_context_t *ctx) 839b48bd790SBoyan Karatotev { 840183329a5SArvind Ram Prakash #if INIT_UNUSED_NS_EL2 841b48bd790SBoyan Karatotev u_register_t hcr_el2 = HCR_RESET_VAL; 842b48bd790SBoyan Karatotev u_register_t mdcr_el2; 843b48bd790SBoyan Karatotev u_register_t scr_el3; 844b48bd790SBoyan Karatotev 845b48bd790SBoyan Karatotev scr_el3 = read_ctx_reg(get_el3state_ctx(ctx), CTX_SCR_EL3); 846b48bd790SBoyan Karatotev 847b48bd790SBoyan Karatotev /* Set EL2 register width: Set HCR_EL2.RW to match SCR_EL3.RW */ 848b48bd790SBoyan Karatotev if ((scr_el3 & SCR_RW_BIT) != 0U) { 849b48bd790SBoyan Karatotev hcr_el2 |= HCR_RW_BIT; 850b48bd790SBoyan Karatotev } 851b48bd790SBoyan Karatotev 852b48bd790SBoyan Karatotev write_hcr_el2(hcr_el2); 853b48bd790SBoyan Karatotev 854b48bd790SBoyan Karatotev /* 855b48bd790SBoyan Karatotev * Initialise CPTR_EL2 setting all fields rather than relying on the hw. 856b48bd790SBoyan Karatotev * All fields have architecturally UNKNOWN reset values. 857b48bd790SBoyan Karatotev */ 858b48bd790SBoyan Karatotev write_cptr_el2(CPTR_EL2_RESET_VAL); 859b48bd790SBoyan Karatotev 860b48bd790SBoyan Karatotev /* 861b48bd790SBoyan Karatotev * Initialise CNTHCTL_EL2. All fields are architecturally UNKNOWN on 862b48bd790SBoyan Karatotev * reset and are set to zero except for field(s) listed below. 863b48bd790SBoyan Karatotev * 864b48bd790SBoyan Karatotev * CNTHCTL_EL2.EL1PTEN: Set to one to disable traps to Hyp mode of 865b48bd790SBoyan Karatotev * Non-secure EL0 and EL1 accesses to the physical timer registers. 866b48bd790SBoyan Karatotev * 867b48bd790SBoyan Karatotev * CNTHCTL_EL2.EL1PCTEN: Set to one to disable traps to Hyp mode of 868b48bd790SBoyan Karatotev * Non-secure EL0 and EL1 accesses to the physical counter registers. 869b48bd790SBoyan Karatotev */ 870b48bd790SBoyan Karatotev write_cnthctl_el2(CNTHCTL_RESET_VAL | EL1PCEN_BIT | EL1PCTEN_BIT); 871b48bd790SBoyan Karatotev 872b48bd790SBoyan Karatotev /* 873b48bd790SBoyan Karatotev * Initialise CNTVOFF_EL2 to zero as it resets to an architecturally 874b48bd790SBoyan Karatotev * UNKNOWN value. 875b48bd790SBoyan Karatotev */ 876b48bd790SBoyan Karatotev write_cntvoff_el2(0); 877b48bd790SBoyan Karatotev 878b48bd790SBoyan Karatotev /* 879b48bd790SBoyan Karatotev * Set VPIDR_EL2 and VMPIDR_EL2 to match MIDR_EL1 and MPIDR_EL1 880b48bd790SBoyan Karatotev * respectively. 881b48bd790SBoyan Karatotev */ 882b48bd790SBoyan Karatotev write_vpidr_el2(read_midr_el1()); 883b48bd790SBoyan Karatotev write_vmpidr_el2(read_mpidr_el1()); 884b48bd790SBoyan Karatotev 885b48bd790SBoyan Karatotev /* 886b48bd790SBoyan Karatotev * Initialise VTTBR_EL2. All fields are architecturally UNKNOWN on reset. 887b48bd790SBoyan Karatotev * 888b48bd790SBoyan Karatotev * VTTBR_EL2.VMID: Set to zero. Even though EL1&0 stage 2 address 889b48bd790SBoyan Karatotev * translation is disabled, cache maintenance operations depend on the 890b48bd790SBoyan Karatotev * VMID. 891b48bd790SBoyan Karatotev * 892b48bd790SBoyan Karatotev * VTTBR_EL2.BADDR: Set to zero as EL1&0 stage 2 address translation is 893b48bd790SBoyan Karatotev * disabled. 894b48bd790SBoyan Karatotev */ 895b48bd790SBoyan Karatotev write_vttbr_el2(VTTBR_RESET_VAL & 896b48bd790SBoyan Karatotev ~((VTTBR_VMID_MASK << VTTBR_VMID_SHIFT) | 897b48bd790SBoyan Karatotev (VTTBR_BADDR_MASK << VTTBR_BADDR_SHIFT))); 898b48bd790SBoyan Karatotev 899b48bd790SBoyan Karatotev /* 900b48bd790SBoyan Karatotev * Initialise MDCR_EL2, setting all fields rather than relying on hw. 901b48bd790SBoyan Karatotev * Some fields are architecturally UNKNOWN on reset. 902b48bd790SBoyan Karatotev * 903b48bd790SBoyan Karatotev * MDCR_EL2.TDRA: Set to zero so that Non-secure EL0 and EL1 System 904b48bd790SBoyan Karatotev * register accesses to the Debug ROM registers are not trapped to EL2. 905b48bd790SBoyan Karatotev * 906b48bd790SBoyan Karatotev * MDCR_EL2.TDOSA: Set to zero so that Non-secure EL1 System register 907b48bd790SBoyan Karatotev * accesses to the powerdown debug registers are not trapped to EL2. 908b48bd790SBoyan Karatotev * 909b48bd790SBoyan Karatotev * MDCR_EL2.TDA: Set to zero so that System register accesses to the 910b48bd790SBoyan Karatotev * debug registers do not trap to EL2. 911b48bd790SBoyan Karatotev * 912b48bd790SBoyan Karatotev * MDCR_EL2.TDE: Set to zero so that debug exceptions are not routed to 913b48bd790SBoyan Karatotev * EL2. 914b48bd790SBoyan Karatotev */ 915b48bd790SBoyan Karatotev mdcr_el2 = MDCR_EL2_RESET_VAL & 916b48bd790SBoyan Karatotev ~(MDCR_EL2_TDRA_BIT | MDCR_EL2_TDOSA_BIT | MDCR_EL2_TDA_BIT | 917b48bd790SBoyan Karatotev MDCR_EL2_TDE_BIT); 918b48bd790SBoyan Karatotev 919b48bd790SBoyan Karatotev write_mdcr_el2(mdcr_el2); 920b48bd790SBoyan Karatotev 921b48bd790SBoyan Karatotev /* 922b48bd790SBoyan Karatotev * Initialise HSTR_EL2. All fields are architecturally UNKNOWN on reset. 923b48bd790SBoyan Karatotev * 924b48bd790SBoyan Karatotev * HSTR_EL2.T<n>: Set all these fields to zero so that Non-secure EL0 or 925b48bd790SBoyan Karatotev * EL1 accesses to System registers do not trap to EL2. 926b48bd790SBoyan Karatotev */ 927b48bd790SBoyan Karatotev write_hstr_el2(HSTR_EL2_RESET_VAL & ~(HSTR_EL2_T_MASK)); 928b48bd790SBoyan Karatotev 929b48bd790SBoyan Karatotev /* 930b48bd790SBoyan Karatotev * Initialise CNTHP_CTL_EL2. All fields are architecturally UNKNOWN on 931b48bd790SBoyan Karatotev * reset. 932b48bd790SBoyan Karatotev * 933b48bd790SBoyan Karatotev * CNTHP_CTL_EL2:ENABLE: Set to zero to disable the EL2 physical timer 934b48bd790SBoyan Karatotev * and prevent timer interrupts. 935b48bd790SBoyan Karatotev */ 936b48bd790SBoyan Karatotev write_cnthp_ctl_el2(CNTHP_CTL_RESET_VAL & ~(CNTHP_CTL_ENABLE_BIT)); 937b48bd790SBoyan Karatotev 938b48bd790SBoyan Karatotev manage_extensions_nonsecure_el2_unused(); 939183329a5SArvind Ram Prakash #endif /* INIT_UNUSED_NS_EL2 */ 940b48bd790SBoyan Karatotev } 941b48bd790SBoyan Karatotev 942532ed618SSoby Mathew /******************************************************************************* 943c5ea4f8aSZelalem Aweke * Prepare the CPU system registers for first entry into realm, secure, or 944c5ea4f8aSZelalem Aweke * normal world. 945532ed618SSoby Mathew * 946532ed618SSoby Mathew * If execution is requested to EL2 or hyp mode, SCTLR_EL2 is initialized 947532ed618SSoby Mathew * If execution is requested to non-secure EL1 or svc mode, and the CPU supports 948532ed618SSoby Mathew * EL2 then EL2 is disabled by configuring all necessary EL2 registers. 949532ed618SSoby Mathew * For all entries, the EL1 registers are initialized from the cpu_context 950532ed618SSoby Mathew ******************************************************************************/ 951532ed618SSoby Mathew void cm_prepare_el3_exit(uint32_t security_state) 952532ed618SSoby Mathew { 953b48bd790SBoyan Karatotev u_register_t sctlr_elx, scr_el3; 954532ed618SSoby Mathew cpu_context_t *ctx = cm_get_context(security_state); 955532ed618SSoby Mathew 956a0fee747SAntonio Nino Diaz assert(ctx != NULL); 957532ed618SSoby Mathew 958532ed618SSoby Mathew if (security_state == NON_SECURE) { 959ddb615b4SJuan Pablo Conde uint64_t el2_implemented = el_implemented(2); 960ddb615b4SJuan Pablo Conde 961f1be00daSLouis Mayencourt scr_el3 = read_ctx_reg(get_el3state_ctx(ctx), 962a0fee747SAntonio Nino Diaz CTX_SCR_EL3); 963ddb615b4SJuan Pablo Conde 964d39b1236SJayanth Dodderi Chidanand if (el2_implemented != EL_IMPL_NONE) { 965d39b1236SJayanth Dodderi Chidanand 966ddb615b4SJuan Pablo Conde /* 967ddb615b4SJuan Pablo Conde * If context is not being used for EL2, initialize 968ddb615b4SJuan Pablo Conde * HCRX_EL2 with its init value here. 969ddb615b4SJuan Pablo Conde */ 970ddb615b4SJuan Pablo Conde if (is_feat_hcx_supported()) { 971ddb615b4SJuan Pablo Conde write_hcrx_el2(HCRX_EL2_INIT_VAL); 972ddb615b4SJuan Pablo Conde } 9734a530b4cSJuan Pablo Conde 9744a530b4cSJuan Pablo Conde /* 9754a530b4cSJuan Pablo Conde * Initialize Fine-grained trap registers introduced 9764a530b4cSJuan Pablo Conde * by FEAT_FGT so all traps are initially disabled when 9774a530b4cSJuan Pablo Conde * switching to EL2 or a lower EL, preventing undesired 9784a530b4cSJuan Pablo Conde * behavior. 9794a530b4cSJuan Pablo Conde */ 9804a530b4cSJuan Pablo Conde if (is_feat_fgt_supported()) { 9814a530b4cSJuan Pablo Conde /* 9824a530b4cSJuan Pablo Conde * Initialize HFG*_EL2 registers with a default 9834a530b4cSJuan Pablo Conde * value so legacy systems unaware of FEAT_FGT 9844a530b4cSJuan Pablo Conde * do not get trapped due to their lack of 9854a530b4cSJuan Pablo Conde * initialization for this feature. 9864a530b4cSJuan Pablo Conde */ 9874a530b4cSJuan Pablo Conde write_hfgitr_el2(HFGITR_EL2_INIT_VAL); 9884a530b4cSJuan Pablo Conde write_hfgrtr_el2(HFGRTR_EL2_INIT_VAL); 9894a530b4cSJuan Pablo Conde write_hfgwtr_el2(HFGWTR_EL2_INIT_VAL); 990ddb615b4SJuan Pablo Conde } 9914a530b4cSJuan Pablo Conde 992d39b1236SJayanth Dodderi Chidanand /* Condition to ensure EL2 is being used. */ 993a0fee747SAntonio Nino Diaz if ((scr_el3 & SCR_HCE_BIT) != 0U) { 994532ed618SSoby Mathew /* Use SCTLR_EL1.EE value to initialise sctlr_el2 */ 9952825946eSMax Shvetsov sctlr_elx = read_ctx_reg(get_el1_sysregs_ctx(ctx), 996532ed618SSoby Mathew CTX_SCTLR_EL1); 9972e09d4f8SKen Kuang sctlr_elx &= SCTLR_EE_BIT; 998532ed618SSoby Mathew sctlr_elx |= SCTLR_EL2_RES1; 9995f5d1ed7SLouis Mayencourt #if ERRATA_A75_764081 10005f5d1ed7SLouis Mayencourt /* 1001d39b1236SJayanth Dodderi Chidanand * If workaround of errata 764081 for Cortex-A75 1002d39b1236SJayanth Dodderi Chidanand * is used then set SCTLR_EL2.IESB to enable 1003d39b1236SJayanth Dodderi Chidanand * Implicit Error Synchronization Barrier. 10045f5d1ed7SLouis Mayencourt */ 10055f5d1ed7SLouis Mayencourt sctlr_elx |= SCTLR_IESB_BIT; 1006d39b1236SJayanth Dodderi Chidanand #endif /* ERRATA_A75_764081 */ 1007532ed618SSoby Mathew write_sctlr_el2(sctlr_elx); 1008d39b1236SJayanth Dodderi Chidanand } else { 1009d39b1236SJayanth Dodderi Chidanand /* 1010d39b1236SJayanth Dodderi Chidanand * (scr_el3 & SCR_HCE_BIT==0) 1011d39b1236SJayanth Dodderi Chidanand * EL2 implemented but unused. 1012d39b1236SJayanth Dodderi Chidanand */ 1013b48bd790SBoyan Karatotev init_nonsecure_el2_unused(ctx); 1014532ed618SSoby Mathew } 1015532ed618SSoby Mathew } 1016d39b1236SJayanth Dodderi Chidanand } 101717b4c0ddSDimitris Papastamos cm_el1_sysregs_context_restore(security_state); 101817b4c0ddSDimitris Papastamos cm_set_next_eret_context(security_state); 1019532ed618SSoby Mathew } 1020532ed618SSoby Mathew 102128f39f02SMax Shvetsov #if CTX_INCLUDE_EL2_REGS 1022bb7b85a3SAndre Przywara 1023bb7b85a3SAndre Przywara static void el2_sysregs_context_save_fgt(el2_sysregs_t *ctx) 1024bb7b85a3SAndre Przywara { 1025d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(ctx, hdfgrtr_el2, read_hdfgrtr_el2()); 1026bb7b85a3SAndre Przywara if (is_feat_amu_supported()) { 1027d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(ctx, hafgrtr_el2, read_hafgrtr_el2()); 1028bb7b85a3SAndre Przywara } 1029d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(ctx, hdfgwtr_el2, read_hdfgwtr_el2()); 1030d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(ctx, hfgitr_el2, read_hfgitr_el2()); 1031d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(ctx, hfgrtr_el2, read_hfgrtr_el2()); 1032d6af2344SJayanth Dodderi Chidanand write_el2_ctx_fgt(ctx, hfgwtr_el2, read_hfgwtr_el2()); 1033bb7b85a3SAndre Przywara } 1034bb7b85a3SAndre Przywara 1035bb7b85a3SAndre Przywara static void el2_sysregs_context_restore_fgt(el2_sysregs_t *ctx) 1036bb7b85a3SAndre Przywara { 1037d6af2344SJayanth Dodderi Chidanand write_hdfgrtr_el2(read_el2_ctx_fgt(ctx, hdfgrtr_el2)); 1038bb7b85a3SAndre Przywara if (is_feat_amu_supported()) { 1039d6af2344SJayanth Dodderi Chidanand write_hafgrtr_el2(read_el2_ctx_fgt(ctx, hafgrtr_el2)); 1040bb7b85a3SAndre Przywara } 1041d6af2344SJayanth Dodderi Chidanand write_hdfgwtr_el2(read_el2_ctx_fgt(ctx, hdfgwtr_el2)); 1042d6af2344SJayanth Dodderi Chidanand write_hfgitr_el2(read_el2_ctx_fgt(ctx, hfgitr_el2)); 1043d6af2344SJayanth Dodderi Chidanand write_hfgrtr_el2(read_el2_ctx_fgt(ctx, hfgrtr_el2)); 1044d6af2344SJayanth Dodderi Chidanand write_hfgwtr_el2(read_el2_ctx_fgt(ctx, hfgwtr_el2)); 1045bb7b85a3SAndre Przywara } 1046bb7b85a3SAndre Przywara 10479acff28aSArvind Ram Prakash #if CTX_INCLUDE_MPAM_REGS 10489acff28aSArvind Ram Prakash 10499acff28aSArvind Ram Prakash static void el2_sysregs_context_save_mpam(mpam_t *ctx) 10509448f2b8SAndre Przywara { 10519448f2b8SAndre Przywara u_register_t mpam_idr = read_mpamidr_el1(); 10529448f2b8SAndre Przywara 10539448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAM2_EL2, read_mpam2_el2()); 10549448f2b8SAndre Przywara 10559448f2b8SAndre Przywara /* 10569448f2b8SAndre Przywara * The context registers that we intend to save would be part of the 10579448f2b8SAndre Przywara * PE's system register frame only if MPAMIDR_EL1.HAS_HCR == 1. 10589448f2b8SAndre Przywara */ 10599448f2b8SAndre Przywara if ((mpam_idr & MPAMIDR_HAS_HCR_BIT) == 0U) { 10609448f2b8SAndre Przywara return; 10619448f2b8SAndre Przywara } 10629448f2b8SAndre Przywara 10639448f2b8SAndre Przywara /* 10649448f2b8SAndre Przywara * MPAMHCR_EL2, MPAMVPMV_EL2 and MPAMVPM0_EL2 are always present if 10659448f2b8SAndre Przywara * MPAMIDR_HAS_HCR_BIT == 1. 10669448f2b8SAndre Przywara */ 10679448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMHCR_EL2, read_mpamhcr_el2()); 10689448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPM0_EL2, read_mpamvpm0_el2()); 10699448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPMV_EL2, read_mpamvpmv_el2()); 10709448f2b8SAndre Przywara 10719448f2b8SAndre Przywara /* 10729448f2b8SAndre Przywara * The number of MPAMVPM registers is implementation defined, their 10739448f2b8SAndre Przywara * number is stored in the MPAMIDR_EL1 register. 10749448f2b8SAndre Przywara */ 10759448f2b8SAndre Przywara switch ((mpam_idr >> MPAMIDR_EL1_VPMR_MAX_SHIFT) & MPAMIDR_EL1_VPMR_MAX_MASK) { 10769448f2b8SAndre Przywara case 7: 10779448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPM7_EL2, read_mpamvpm7_el2()); 10789448f2b8SAndre Przywara __fallthrough; 10799448f2b8SAndre Przywara case 6: 10809448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPM6_EL2, read_mpamvpm6_el2()); 10819448f2b8SAndre Przywara __fallthrough; 10829448f2b8SAndre Przywara case 5: 10839448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPM5_EL2, read_mpamvpm5_el2()); 10849448f2b8SAndre Przywara __fallthrough; 10859448f2b8SAndre Przywara case 4: 10869448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPM4_EL2, read_mpamvpm4_el2()); 10879448f2b8SAndre Przywara __fallthrough; 10889448f2b8SAndre Przywara case 3: 10899448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPM3_EL2, read_mpamvpm3_el2()); 10909448f2b8SAndre Przywara __fallthrough; 10919448f2b8SAndre Przywara case 2: 10929448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPM2_EL2, read_mpamvpm2_el2()); 10939448f2b8SAndre Przywara __fallthrough; 10949448f2b8SAndre Przywara case 1: 10959448f2b8SAndre Przywara write_ctx_reg(ctx, CTX_MPAMVPM1_EL2, read_mpamvpm1_el2()); 10969448f2b8SAndre Przywara break; 10979448f2b8SAndre Przywara } 10989448f2b8SAndre Przywara } 10999448f2b8SAndre Przywara 11009acff28aSArvind Ram Prakash #endif /* CTX_INCLUDE_MPAM_REGS */ 11019acff28aSArvind Ram Prakash 11029acff28aSArvind Ram Prakash #if CTX_INCLUDE_MPAM_REGS 11039acff28aSArvind Ram Prakash static void el2_sysregs_context_restore_mpam(mpam_t *ctx) 11049448f2b8SAndre Przywara { 11059448f2b8SAndre Przywara u_register_t mpam_idr = read_mpamidr_el1(); 11069448f2b8SAndre Przywara 11079448f2b8SAndre Przywara write_mpam2_el2(read_ctx_reg(ctx, CTX_MPAM2_EL2)); 11089448f2b8SAndre Przywara 11099448f2b8SAndre Przywara if ((mpam_idr & MPAMIDR_HAS_HCR_BIT) == 0U) { 11109448f2b8SAndre Przywara return; 11119448f2b8SAndre Przywara } 11129448f2b8SAndre Przywara 11139448f2b8SAndre Przywara write_mpamhcr_el2(read_ctx_reg(ctx, CTX_MPAMHCR_EL2)); 11149448f2b8SAndre Przywara write_mpamvpm0_el2(read_ctx_reg(ctx, CTX_MPAMVPM0_EL2)); 11159448f2b8SAndre Przywara write_mpamvpmv_el2(read_ctx_reg(ctx, CTX_MPAMVPMV_EL2)); 11169448f2b8SAndre Przywara 11179448f2b8SAndre Przywara switch ((mpam_idr >> MPAMIDR_EL1_VPMR_MAX_SHIFT) & MPAMIDR_EL1_VPMR_MAX_MASK) { 11189448f2b8SAndre Przywara case 7: 11199448f2b8SAndre Przywara write_mpamvpm7_el2(read_ctx_reg(ctx, CTX_MPAMVPM7_EL2)); 11209448f2b8SAndre Przywara __fallthrough; 11219448f2b8SAndre Przywara case 6: 11229448f2b8SAndre Przywara write_mpamvpm6_el2(read_ctx_reg(ctx, CTX_MPAMVPM6_EL2)); 11239448f2b8SAndre Przywara __fallthrough; 11249448f2b8SAndre Przywara case 5: 11259448f2b8SAndre Przywara write_mpamvpm5_el2(read_ctx_reg(ctx, CTX_MPAMVPM5_EL2)); 11269448f2b8SAndre Przywara __fallthrough; 11279448f2b8SAndre Przywara case 4: 11289448f2b8SAndre Przywara write_mpamvpm4_el2(read_ctx_reg(ctx, CTX_MPAMVPM4_EL2)); 11299448f2b8SAndre Przywara __fallthrough; 11309448f2b8SAndre Przywara case 3: 11319448f2b8SAndre Przywara write_mpamvpm3_el2(read_ctx_reg(ctx, CTX_MPAMVPM3_EL2)); 11329448f2b8SAndre Przywara __fallthrough; 11339448f2b8SAndre Przywara case 2: 11349448f2b8SAndre Przywara write_mpamvpm2_el2(read_ctx_reg(ctx, CTX_MPAMVPM2_EL2)); 11359448f2b8SAndre Przywara __fallthrough; 11369448f2b8SAndre Przywara case 1: 11379448f2b8SAndre Przywara write_mpamvpm1_el2(read_ctx_reg(ctx, CTX_MPAMVPM1_EL2)); 11389448f2b8SAndre Przywara break; 11399448f2b8SAndre Przywara } 11409448f2b8SAndre Przywara } 11419acff28aSArvind Ram Prakash #endif /* CTX_INCLUDE_MPAM_REGS */ 11429448f2b8SAndre Przywara 1143937d6fdbSManish Pandey /* --------------------------------------------------------------------------- 1144937d6fdbSManish Pandey * The following registers are not added: 1145937d6fdbSManish Pandey * ICH_AP0R<n>_EL2 1146937d6fdbSManish Pandey * ICH_AP1R<n>_EL2 1147937d6fdbSManish Pandey * ICH_LR<n>_EL2 1148937d6fdbSManish Pandey * 1149937d6fdbSManish Pandey * NOTE: For a system with S-EL2 present but not enabled, accessing 1150937d6fdbSManish Pandey * ICC_SRE_EL2 is undefined from EL3. To workaround this change the 1151937d6fdbSManish Pandey * SCR_EL3.NS = 1 before accessing this register. 1152937d6fdbSManish Pandey * --------------------------------------------------------------------------- 1153937d6fdbSManish Pandey */ 1154937d6fdbSManish Pandey static void el2_sysregs_context_save_gic(el2_sysregs_t *ctx) 1155937d6fdbSManish Pandey { 1156937d6fdbSManish Pandey #if defined(SPD_spmd) && SPMD_SPM_AT_SEL2 1157d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, icc_sre_el2, read_icc_sre_el2()); 1158937d6fdbSManish Pandey #else 1159937d6fdbSManish Pandey u_register_t scr_el3 = read_scr_el3(); 1160937d6fdbSManish Pandey write_scr_el3(scr_el3 | SCR_NS_BIT); 1161937d6fdbSManish Pandey isb(); 1162937d6fdbSManish Pandey 1163d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, icc_sre_el2, read_icc_sre_el2()); 1164937d6fdbSManish Pandey 1165937d6fdbSManish Pandey write_scr_el3(scr_el3); 1166937d6fdbSManish Pandey isb(); 1167937d6fdbSManish Pandey #endif 1168d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, ich_hcr_el2, read_ich_hcr_el2()); 1169d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, ich_vmcr_el2, read_ich_vmcr_el2()); 1170937d6fdbSManish Pandey } 1171937d6fdbSManish Pandey 1172937d6fdbSManish Pandey static void el2_sysregs_context_restore_gic(el2_sysregs_t *ctx) 1173937d6fdbSManish Pandey { 1174937d6fdbSManish Pandey #if defined(SPD_spmd) && SPMD_SPM_AT_SEL2 1175d6af2344SJayanth Dodderi Chidanand write_icc_sre_el2(read_el2_ctx_common(ctx, icc_sre_el2)); 1176937d6fdbSManish Pandey #else 1177937d6fdbSManish Pandey u_register_t scr_el3 = read_scr_el3(); 1178937d6fdbSManish Pandey write_scr_el3(scr_el3 | SCR_NS_BIT); 1179937d6fdbSManish Pandey isb(); 1180937d6fdbSManish Pandey 1181d6af2344SJayanth Dodderi Chidanand write_icc_sre_el2(read_el2_ctx_common(ctx, icc_sre_el2)); 1182937d6fdbSManish Pandey 1183937d6fdbSManish Pandey write_scr_el3(scr_el3); 1184937d6fdbSManish Pandey isb(); 1185937d6fdbSManish Pandey #endif 1186d6af2344SJayanth Dodderi Chidanand write_ich_hcr_el2(read_el2_ctx_common(ctx, ich_hcr_el2)); 1187d6af2344SJayanth Dodderi Chidanand write_ich_vmcr_el2(read_el2_ctx_common(ctx, ich_vmcr_el2)); 1188937d6fdbSManish Pandey } 1189937d6fdbSManish Pandey 1190ac58e574SBoyan Karatotev /* ----------------------------------------------------- 1191ac58e574SBoyan Karatotev * The following registers are not added: 1192ac58e574SBoyan Karatotev * AMEVCNTVOFF0<n>_EL2 1193ac58e574SBoyan Karatotev * AMEVCNTVOFF1<n>_EL2 1194ac58e574SBoyan Karatotev * ----------------------------------------------------- 1195ac58e574SBoyan Karatotev */ 1196ac58e574SBoyan Karatotev static void el2_sysregs_context_save_common(el2_sysregs_t *ctx) 1197ac58e574SBoyan Karatotev { 1198d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, actlr_el2, read_actlr_el2()); 1199d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, afsr0_el2, read_afsr0_el2()); 1200d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, afsr1_el2, read_afsr1_el2()); 1201d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, amair_el2, read_amair_el2()); 1202d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, cnthctl_el2, read_cnthctl_el2()); 1203d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, cntvoff_el2, read_cntvoff_el2()); 1204d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, cptr_el2, read_cptr_el2()); 1205ac58e574SBoyan Karatotev if (CTX_INCLUDE_AARCH32_REGS) { 1206d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, dbgvcr32_el2, read_dbgvcr32_el2()); 1207ac58e574SBoyan Karatotev } 1208d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, elr_el2, read_elr_el2()); 1209d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, esr_el2, read_esr_el2()); 1210d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, far_el2, read_far_el2()); 1211d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, hacr_el2, read_hacr_el2()); 1212d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, hcr_el2, read_hcr_el2()); 1213d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, hpfar_el2, read_hpfar_el2()); 1214d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, hstr_el2, read_hstr_el2()); 1215d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, mair_el2, read_mair_el2()); 1216d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, mdcr_el2, read_mdcr_el2()); 1217d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, sctlr_el2, read_sctlr_el2()); 1218d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, spsr_el2, read_spsr_el2()); 1219d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, sp_el2, read_sp_el2()); 1220d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, tcr_el2, read_tcr_el2()); 1221d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, tpidr_el2, read_tpidr_el2()); 1222d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, ttbr0_el2, read_ttbr0_el2()); 1223d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, vbar_el2, read_vbar_el2()); 1224d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, vmpidr_el2, read_vmpidr_el2()); 1225d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, vpidr_el2, read_vpidr_el2()); 1226d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, vtcr_el2, read_vtcr_el2()); 1227d6af2344SJayanth Dodderi Chidanand write_el2_ctx_common(ctx, vttbr_el2, read_vttbr_el2()); 1228ac58e574SBoyan Karatotev } 1229ac58e574SBoyan Karatotev 1230ac58e574SBoyan Karatotev static void el2_sysregs_context_restore_common(el2_sysregs_t *ctx) 1231ac58e574SBoyan Karatotev { 1232d6af2344SJayanth Dodderi Chidanand write_actlr_el2(read_el2_ctx_common(ctx, actlr_el2)); 1233d6af2344SJayanth Dodderi Chidanand write_afsr0_el2(read_el2_ctx_common(ctx, afsr0_el2)); 1234d6af2344SJayanth Dodderi Chidanand write_afsr1_el2(read_el2_ctx_common(ctx, afsr1_el2)); 1235d6af2344SJayanth Dodderi Chidanand write_amair_el2(read_el2_ctx_common(ctx, amair_el2)); 1236d6af2344SJayanth Dodderi Chidanand write_cnthctl_el2(read_el2_ctx_common(ctx, cnthctl_el2)); 1237d6af2344SJayanth Dodderi Chidanand write_cntvoff_el2(read_el2_ctx_common(ctx, cntvoff_el2)); 1238d6af2344SJayanth Dodderi Chidanand write_cptr_el2(read_el2_ctx_common(ctx, cptr_el2)); 1239ac58e574SBoyan Karatotev if (CTX_INCLUDE_AARCH32_REGS) { 1240d6af2344SJayanth Dodderi Chidanand write_dbgvcr32_el2(read_el2_ctx_common(ctx, dbgvcr32_el2)); 1241ac58e574SBoyan Karatotev } 1242d6af2344SJayanth Dodderi Chidanand write_elr_el2(read_el2_ctx_common(ctx, elr_el2)); 1243d6af2344SJayanth Dodderi Chidanand write_esr_el2(read_el2_ctx_common(ctx, esr_el2)); 1244d6af2344SJayanth Dodderi Chidanand write_far_el2(read_el2_ctx_common(ctx, far_el2)); 1245d6af2344SJayanth Dodderi Chidanand write_hacr_el2(read_el2_ctx_common(ctx, hacr_el2)); 1246d6af2344SJayanth Dodderi Chidanand write_hcr_el2(read_el2_ctx_common(ctx, hcr_el2)); 1247d6af2344SJayanth Dodderi Chidanand write_hpfar_el2(read_el2_ctx_common(ctx, hpfar_el2)); 1248d6af2344SJayanth Dodderi Chidanand write_hstr_el2(read_el2_ctx_common(ctx, hstr_el2)); 1249d6af2344SJayanth Dodderi Chidanand write_mair_el2(read_el2_ctx_common(ctx, mair_el2)); 1250d6af2344SJayanth Dodderi Chidanand write_mdcr_el2(read_el2_ctx_common(ctx, mdcr_el2)); 1251d6af2344SJayanth Dodderi Chidanand write_sctlr_el2(read_el2_ctx_common(ctx, sctlr_el2)); 1252d6af2344SJayanth Dodderi Chidanand write_spsr_el2(read_el2_ctx_common(ctx, spsr_el2)); 1253d6af2344SJayanth Dodderi Chidanand write_sp_el2(read_el2_ctx_common(ctx, sp_el2)); 1254d6af2344SJayanth Dodderi Chidanand write_tcr_el2(read_el2_ctx_common(ctx, tcr_el2)); 1255d6af2344SJayanth Dodderi Chidanand write_tpidr_el2(read_el2_ctx_common(ctx, tpidr_el2)); 1256d6af2344SJayanth Dodderi Chidanand write_ttbr0_el2(read_el2_ctx_common(ctx, ttbr0_el2)); 1257d6af2344SJayanth Dodderi Chidanand write_vbar_el2(read_el2_ctx_common(ctx, vbar_el2)); 1258d6af2344SJayanth Dodderi Chidanand write_vmpidr_el2(read_el2_ctx_common(ctx, vmpidr_el2)); 1259d6af2344SJayanth Dodderi Chidanand write_vpidr_el2(read_el2_ctx_common(ctx, vpidr_el2)); 1260d6af2344SJayanth Dodderi Chidanand write_vtcr_el2(read_el2_ctx_common(ctx, vtcr_el2)); 1261d6af2344SJayanth Dodderi Chidanand write_vttbr_el2(read_el2_ctx_common(ctx, vttbr_el2)); 1262ac58e574SBoyan Karatotev } 1263ac58e574SBoyan Karatotev 126428f39f02SMax Shvetsov /******************************************************************************* 126528f39f02SMax Shvetsov * Save EL2 sysreg context 126628f39f02SMax Shvetsov ******************************************************************************/ 126728f39f02SMax Shvetsov void cm_el2_sysregs_context_save(uint32_t security_state) 126828f39f02SMax Shvetsov { 126928f39f02SMax Shvetsov cpu_context_t *ctx; 1270d20052f3SZelalem Aweke el2_sysregs_t *el2_sysregs_ctx; 127128f39f02SMax Shvetsov 127228f39f02SMax Shvetsov ctx = cm_get_context(security_state); 127328f39f02SMax Shvetsov assert(ctx != NULL); 127428f39f02SMax Shvetsov 1275d20052f3SZelalem Aweke el2_sysregs_ctx = get_el2_sysregs_ctx(ctx); 1276d20052f3SZelalem Aweke 1277d20052f3SZelalem Aweke el2_sysregs_context_save_common(el2_sysregs_ctx); 1278937d6fdbSManish Pandey el2_sysregs_context_save_gic(el2_sysregs_ctx); 12790a33adc0SGovindraj Raja 1280*c282384dSGovindraj Raja if (is_feat_mte2_supported()) { 1281d6af2344SJayanth Dodderi Chidanand write_el2_ctx_mte(el2_sysregs_ctx, tfsr_el2, read_tfsr_el2()); 12820a33adc0SGovindraj Raja } 12839acff28aSArvind Ram Prakash 12849acff28aSArvind Ram Prakash #if CTX_INCLUDE_MPAM_REGS 12859448f2b8SAndre Przywara if (is_feat_mpam_supported()) { 12869acff28aSArvind Ram Prakash mpam_t *mpam_ctx = get_mpam_ctx(ctx); 12879acff28aSArvind Ram Prakash el2_sysregs_context_save_mpam(mpam_ctx); 12889448f2b8SAndre Przywara } 12899acff28aSArvind Ram Prakash #endif 1290bb7b85a3SAndre Przywara 1291de8c4892SAndre Przywara if (is_feat_fgt_supported()) { 1292d20052f3SZelalem Aweke el2_sysregs_context_save_fgt(el2_sysregs_ctx); 1293de8c4892SAndre Przywara } 1294bb7b85a3SAndre Przywara 1295b8f03d29SAndre Przywara if (is_feat_ecv_v2_supported()) { 1296d6af2344SJayanth Dodderi Chidanand write_el2_ctx_ecv(el2_sysregs_ctx, cntpoff_el2, read_cntpoff_el2()); 1297b8f03d29SAndre Przywara } 1298b8f03d29SAndre Przywara 1299ea735bf5SAndre Przywara if (is_feat_vhe_supported()) { 1300d6af2344SJayanth Dodderi Chidanand write_el2_ctx_vhe(el2_sysregs_ctx, contextidr_el2, 1301d6af2344SJayanth Dodderi Chidanand read_contextidr_el2()); 1302d6af2344SJayanth Dodderi Chidanand write_el2_ctx_vhe(el2_sysregs_ctx, ttbr1_el2, read_ttbr1_el2()); 1303ea735bf5SAndre Przywara } 13046503ff29SAndre Przywara 13056503ff29SAndre Przywara if (is_feat_ras_supported()) { 1306d6af2344SJayanth Dodderi Chidanand write_el2_ctx_ras(el2_sysregs_ctx, vdisr_el2, read_vdisr_el2()); 1307d6af2344SJayanth Dodderi Chidanand write_el2_ctx_ras(el2_sysregs_ctx, vsesr_el2, read_vsesr_el2()); 13086503ff29SAndre Przywara } 1309d5384b69SAndre Przywara 1310d5384b69SAndre Przywara if (is_feat_nv2_supported()) { 1311d6af2344SJayanth Dodderi Chidanand write_el2_ctx_neve(el2_sysregs_ctx, vncr_el2, read_vncr_el2()); 1312d5384b69SAndre Przywara } 1313d5384b69SAndre Przywara 1314fc8d2d39SAndre Przywara if (is_feat_trf_supported()) { 1315d6af2344SJayanth Dodderi Chidanand write_el2_ctx_trf(el2_sysregs_ctx, trfcr_el2, read_trfcr_el2()); 1316fc8d2d39SAndre Przywara } 13177db710f0SAndre Przywara 13187db710f0SAndre Przywara if (is_feat_csv2_2_supported()) { 1319d6af2344SJayanth Dodderi Chidanand write_el2_ctx_csv2_2(el2_sysregs_ctx, scxtnum_el2, 1320d6af2344SJayanth Dodderi Chidanand read_scxtnum_el2()); 13217db710f0SAndre Przywara } 13227db710f0SAndre Przywara 1323c5a3ebbdSAndre Przywara if (is_feat_hcx_supported()) { 1324d6af2344SJayanth Dodderi Chidanand write_el2_ctx_hcx(el2_sysregs_ctx, hcrx_el2, read_hcrx_el2()); 1325c5a3ebbdSAndre Przywara } 1326d6af2344SJayanth Dodderi Chidanand 1327d3331603SMark Brown if (is_feat_tcr2_supported()) { 1328d6af2344SJayanth Dodderi Chidanand write_el2_ctx_tcr2(el2_sysregs_ctx, tcr2_el2, read_tcr2_el2()); 1329d3331603SMark Brown } 1330d6af2344SJayanth Dodderi Chidanand 1331062b6c6bSMark Brown if (is_feat_sxpie_supported()) { 1332d6af2344SJayanth Dodderi Chidanand write_el2_ctx_sxpie(el2_sysregs_ctx, pire0_el2, read_pire0_el2()); 1333d6af2344SJayanth Dodderi Chidanand write_el2_ctx_sxpie(el2_sysregs_ctx, pir_el2, read_pir_el2()); 1334062b6c6bSMark Brown } 1335d6af2344SJayanth Dodderi Chidanand 1336062b6c6bSMark Brown if (is_feat_sxpoe_supported()) { 1337d6af2344SJayanth Dodderi Chidanand write_el2_ctx_sxpoe(el2_sysregs_ctx, por_el2, read_por_el2()); 1338062b6c6bSMark Brown } 1339d6af2344SJayanth Dodderi Chidanand 1340d6af2344SJayanth Dodderi Chidanand if (is_feat_s2pie_supported()) { 1341d6af2344SJayanth Dodderi Chidanand write_el2_ctx_s2pie(el2_sysregs_ctx, s2pir_el2, read_s2pir_el2()); 1342d6af2344SJayanth Dodderi Chidanand } 1343d6af2344SJayanth Dodderi Chidanand 1344688ab57bSMark Brown if (is_feat_gcs_supported()) { 1345d6af2344SJayanth Dodderi Chidanand write_el2_ctx_gcs(el2_sysregs_ctx, gcscr_el2, read_gcspr_el2()); 1346d6af2344SJayanth Dodderi Chidanand write_el2_ctx_gcs(el2_sysregs_ctx, gcspr_el2, read_gcscr_el2()); 1347688ab57bSMark Brown } 134828f39f02SMax Shvetsov } 134928f39f02SMax Shvetsov 135028f39f02SMax Shvetsov /******************************************************************************* 135128f39f02SMax Shvetsov * Restore EL2 sysreg context 135228f39f02SMax Shvetsov ******************************************************************************/ 135328f39f02SMax Shvetsov void cm_el2_sysregs_context_restore(uint32_t security_state) 135428f39f02SMax Shvetsov { 135528f39f02SMax Shvetsov cpu_context_t *ctx; 1356d20052f3SZelalem Aweke el2_sysregs_t *el2_sysregs_ctx; 135728f39f02SMax Shvetsov 135828f39f02SMax Shvetsov ctx = cm_get_context(security_state); 135928f39f02SMax Shvetsov assert(ctx != NULL); 136028f39f02SMax Shvetsov 1361d20052f3SZelalem Aweke el2_sysregs_ctx = get_el2_sysregs_ctx(ctx); 1362d20052f3SZelalem Aweke 1363d20052f3SZelalem Aweke el2_sysregs_context_restore_common(el2_sysregs_ctx); 1364937d6fdbSManish Pandey el2_sysregs_context_restore_gic(el2_sysregs_ctx); 136530788a84SGovindraj Raja 1366*c282384dSGovindraj Raja if (is_feat_mte2_supported()) { 1367d6af2344SJayanth Dodderi Chidanand write_tfsr_el2(read_el2_ctx_mte(el2_sysregs_ctx, tfsr_el2)); 136830788a84SGovindraj Raja } 13699acff28aSArvind Ram Prakash 13709acff28aSArvind Ram Prakash #if CTX_INCLUDE_MPAM_REGS 13719448f2b8SAndre Przywara if (is_feat_mpam_supported()) { 13729acff28aSArvind Ram Prakash mpam_t *mpam_ctx = get_mpam_ctx(ctx); 13739acff28aSArvind Ram Prakash el2_sysregs_context_restore_mpam(mpam_ctx); 13749448f2b8SAndre Przywara } 13759acff28aSArvind Ram Prakash #endif 1376bb7b85a3SAndre Przywara 1377de8c4892SAndre Przywara if (is_feat_fgt_supported()) { 1378d20052f3SZelalem Aweke el2_sysregs_context_restore_fgt(el2_sysregs_ctx); 1379de8c4892SAndre Przywara } 1380bb7b85a3SAndre Przywara 1381b8f03d29SAndre Przywara if (is_feat_ecv_v2_supported()) { 1382d6af2344SJayanth Dodderi Chidanand write_cntpoff_el2(read_el2_ctx_ecv(el2_sysregs_ctx, cntpoff_el2)); 1383b8f03d29SAndre Przywara } 1384b8f03d29SAndre Przywara 1385ea735bf5SAndre Przywara if (is_feat_vhe_supported()) { 1386d6af2344SJayanth Dodderi Chidanand write_contextidr_el2(read_el2_ctx_vhe(el2_sysregs_ctx, 1387d6af2344SJayanth Dodderi Chidanand contextidr_el2)); 1388d6af2344SJayanth Dodderi Chidanand write_ttbr1_el2(read_el2_ctx_vhe(el2_sysregs_ctx, ttbr1_el2)); 1389ea735bf5SAndre Przywara } 13906503ff29SAndre Przywara 13916503ff29SAndre Przywara if (is_feat_ras_supported()) { 1392d6af2344SJayanth Dodderi Chidanand write_vdisr_el2(read_el2_ctx_ras(el2_sysregs_ctx, vdisr_el2)); 1393d6af2344SJayanth Dodderi Chidanand write_vsesr_el2(read_el2_ctx_ras(el2_sysregs_ctx, vsesr_el2)); 13946503ff29SAndre Przywara } 1395d5384b69SAndre Przywara 1396d5384b69SAndre Przywara if (is_feat_nv2_supported()) { 1397d6af2344SJayanth Dodderi Chidanand write_vncr_el2(read_el2_ctx_neve(el2_sysregs_ctx, vncr_el2)); 1398fc8d2d39SAndre Przywara } 13997db710f0SAndre Przywara 1400d6af2344SJayanth Dodderi Chidanand if (is_feat_trf_supported()) { 1401d6af2344SJayanth Dodderi Chidanand write_trfcr_el2(read_el2_ctx_trf(el2_sysregs_ctx, trfcr_el2)); 1402d6af2344SJayanth Dodderi Chidanand } 1403d6af2344SJayanth Dodderi Chidanand 14047db710f0SAndre Przywara if (is_feat_csv2_2_supported()) { 1405d6af2344SJayanth Dodderi Chidanand write_scxtnum_el2(read_el2_ctx_csv2_2(el2_sysregs_ctx, 1406d6af2344SJayanth Dodderi Chidanand scxtnum_el2)); 14077db710f0SAndre Przywara } 14087db710f0SAndre Przywara 1409c5a3ebbdSAndre Przywara if (is_feat_hcx_supported()) { 1410d6af2344SJayanth Dodderi Chidanand write_hcrx_el2(read_el2_ctx_hcx(el2_sysregs_ctx, hcrx_el2)); 1411c5a3ebbdSAndre Przywara } 1412d6af2344SJayanth Dodderi Chidanand 1413d3331603SMark Brown if (is_feat_tcr2_supported()) { 1414d6af2344SJayanth Dodderi Chidanand write_tcr2_el2(read_el2_ctx_tcr2(el2_sysregs_ctx, tcr2_el2)); 1415d3331603SMark Brown } 1416d6af2344SJayanth Dodderi Chidanand 1417062b6c6bSMark Brown if (is_feat_sxpie_supported()) { 1418d6af2344SJayanth Dodderi Chidanand write_pire0_el2(read_el2_ctx_sxpie(el2_sysregs_ctx, pire0_el2)); 1419d6af2344SJayanth Dodderi Chidanand write_pir_el2(read_el2_ctx_sxpie(el2_sysregs_ctx, pir_el2)); 1420062b6c6bSMark Brown } 1421d6af2344SJayanth Dodderi Chidanand 1422062b6c6bSMark Brown if (is_feat_sxpoe_supported()) { 1423d6af2344SJayanth Dodderi Chidanand write_por_el2(read_el2_ctx_sxpoe(el2_sysregs_ctx, por_el2)); 1424062b6c6bSMark Brown } 1425d6af2344SJayanth Dodderi Chidanand 1426d6af2344SJayanth Dodderi Chidanand if (is_feat_s2pie_supported()) { 1427d6af2344SJayanth Dodderi Chidanand write_s2pir_el2(read_el2_ctx_s2pie(el2_sysregs_ctx, s2pir_el2)); 1428d6af2344SJayanth Dodderi Chidanand } 1429d6af2344SJayanth Dodderi Chidanand 1430688ab57bSMark Brown if (is_feat_gcs_supported()) { 1431d6af2344SJayanth Dodderi Chidanand write_gcscr_el2(read_el2_ctx_gcs(el2_sysregs_ctx, gcscr_el2)); 1432d6af2344SJayanth Dodderi Chidanand write_gcspr_el2(read_el2_ctx_gcs(el2_sysregs_ctx, gcspr_el2)); 1433688ab57bSMark Brown } 143428f39f02SMax Shvetsov } 143528f39f02SMax Shvetsov #endif /* CTX_INCLUDE_EL2_REGS */ 143628f39f02SMax Shvetsov 1437532ed618SSoby Mathew /******************************************************************************* 14388b95e848SZelalem Aweke * This function is used to exit to Non-secure world. If CTX_INCLUDE_EL2_REGS 14398b95e848SZelalem Aweke * is enabled, it restores EL1 and EL2 sysreg contexts instead of directly 14408b95e848SZelalem Aweke * updating EL1 and EL2 registers. Otherwise, it calls the generic 14418b95e848SZelalem Aweke * cm_prepare_el3_exit function. 14428b95e848SZelalem Aweke ******************************************************************************/ 14438b95e848SZelalem Aweke void cm_prepare_el3_exit_ns(void) 14448b95e848SZelalem Aweke { 14458b95e848SZelalem Aweke #if CTX_INCLUDE_EL2_REGS 14464085a02cSBoyan Karatotev #if ENABLE_ASSERTIONS 14478b95e848SZelalem Aweke cpu_context_t *ctx = cm_get_context(NON_SECURE); 14488b95e848SZelalem Aweke assert(ctx != NULL); 14498b95e848SZelalem Aweke 1450b515f541SZelalem Aweke /* Assert that EL2 is used. */ 14514085a02cSBoyan Karatotev u_register_t scr_el3 = read_ctx_reg(get_el3state_ctx(ctx), CTX_SCR_EL3); 1452b515f541SZelalem Aweke assert(((scr_el3 & SCR_HCE_BIT) != 0UL) && 1453b515f541SZelalem Aweke (el_implemented(2U) != EL_IMPL_NONE)); 14544085a02cSBoyan Karatotev #endif /* ENABLE_ASSERTIONS */ 14558b95e848SZelalem Aweke 14568b95e848SZelalem Aweke /* Restore EL2 and EL1 sysreg contexts */ 14578b95e848SZelalem Aweke cm_el2_sysregs_context_restore(NON_SECURE); 14588b95e848SZelalem Aweke cm_el1_sysregs_context_restore(NON_SECURE); 14598b95e848SZelalem Aweke cm_set_next_eret_context(NON_SECURE); 14608b95e848SZelalem Aweke #else 14618b95e848SZelalem Aweke cm_prepare_el3_exit(NON_SECURE); 14628b95e848SZelalem Aweke #endif /* CTX_INCLUDE_EL2_REGS */ 14638b95e848SZelalem Aweke } 14648b95e848SZelalem Aweke 146559f8882bSJayanth Dodderi Chidanand static void el1_sysregs_context_save(el1_sysregs_t *ctx) 146659f8882bSJayanth Dodderi Chidanand { 146759f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_SPSR_EL1, read_spsr_el1()); 146859f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_ELR_EL1, read_elr_el1()); 146959f8882bSJayanth Dodderi Chidanand 147059f8882bSJayanth Dodderi Chidanand #if !ERRATA_SPECULATIVE_AT 147159f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_SCTLR_EL1, read_sctlr_el1()); 147259f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_TCR_EL1, read_tcr_el1()); 147359f8882bSJayanth Dodderi Chidanand #endif /* (!ERRATA_SPECULATIVE_AT) */ 147459f8882bSJayanth Dodderi Chidanand 147559f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_CPACR_EL1, read_cpacr_el1()); 147659f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_CSSELR_EL1, read_csselr_el1()); 147759f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_SP_EL1, read_sp_el1()); 147859f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_ESR_EL1, read_esr_el1()); 147959f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_TTBR0_EL1, read_ttbr0_el1()); 148059f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_TTBR1_EL1, read_ttbr1_el1()); 148159f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_MAIR_EL1, read_mair_el1()); 148259f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_AMAIR_EL1, read_amair_el1()); 148359f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_ACTLR_EL1, read_actlr_el1()); 148459f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_TPIDR_EL1, read_tpidr_el1()); 148559f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_TPIDR_EL0, read_tpidr_el0()); 148659f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_TPIDRRO_EL0, read_tpidrro_el0()); 148759f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_PAR_EL1, read_par_el1()); 148859f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_FAR_EL1, read_far_el1()); 148959f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_AFSR0_EL1, read_afsr0_el1()); 149059f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_AFSR1_EL1, read_afsr1_el1()); 149159f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_CONTEXTIDR_EL1, read_contextidr_el1()); 149259f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_VBAR_EL1, read_vbar_el1()); 149359f8882bSJayanth Dodderi Chidanand 149459f8882bSJayanth Dodderi Chidanand #if CTX_INCLUDE_AARCH32_REGS 149559f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_SPSR_ABT, read_spsr_abt()); 149659f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_SPSR_UND, read_spsr_und()); 149759f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_SPSR_IRQ, read_spsr_irq()); 149859f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_SPSR_FIQ, read_spsr_fiq()); 149959f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_DACR32_EL2, read_dacr32_el2()); 150059f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_IFSR32_EL2, read_ifsr32_el2()); 150159f8882bSJayanth Dodderi Chidanand #endif /* CTX_INCLUDE_AARCH32_REGS */ 150259f8882bSJayanth Dodderi Chidanand 150359f8882bSJayanth Dodderi Chidanand #if NS_TIMER_SWITCH 150459f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_CNTP_CTL_EL0, read_cntp_ctl_el0()); 150559f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_CNTP_CVAL_EL0, read_cntp_cval_el0()); 150659f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_CNTV_CTL_EL0, read_cntv_ctl_el0()); 150759f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_CNTV_CVAL_EL0, read_cntv_cval_el0()); 150859f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_CNTKCTL_EL1, read_cntkctl_el1()); 150959f8882bSJayanth Dodderi Chidanand #endif /* NS_TIMER_SWITCH */ 151059f8882bSJayanth Dodderi Chidanand 1511*c282384dSGovindraj Raja #if ENABLE_FEAT_MTE2 151259f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_TFSRE0_EL1, read_tfsre0_el1()); 151359f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_TFSR_EL1, read_tfsr_el1()); 151459f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_RGSR_EL1, read_rgsr_el1()); 151559f8882bSJayanth Dodderi Chidanand write_ctx_reg(ctx, CTX_GCR_EL1, read_gcr_el1()); 1516*c282384dSGovindraj Raja #endif /* ENABLE_FEAT_MTE2 */ 151759f8882bSJayanth Dodderi Chidanand 151859f8882bSJayanth Dodderi Chidanand } 151959f8882bSJayanth Dodderi Chidanand 152059f8882bSJayanth Dodderi Chidanand static void el1_sysregs_context_restore(el1_sysregs_t *ctx) 152159f8882bSJayanth Dodderi Chidanand { 152259f8882bSJayanth Dodderi Chidanand write_spsr_el1(read_ctx_reg(ctx, CTX_SPSR_EL1)); 152359f8882bSJayanth Dodderi Chidanand write_elr_el1(read_ctx_reg(ctx, CTX_ELR_EL1)); 152459f8882bSJayanth Dodderi Chidanand 152559f8882bSJayanth Dodderi Chidanand #if !ERRATA_SPECULATIVE_AT 152659f8882bSJayanth Dodderi Chidanand write_sctlr_el1(read_ctx_reg(ctx, CTX_SCTLR_EL1)); 152759f8882bSJayanth Dodderi Chidanand write_tcr_el1(read_ctx_reg(ctx, CTX_TCR_EL1)); 152859f8882bSJayanth Dodderi Chidanand #endif /* (!ERRATA_SPECULATIVE_AT) */ 152959f8882bSJayanth Dodderi Chidanand 153059f8882bSJayanth Dodderi Chidanand write_cpacr_el1(read_ctx_reg(ctx, CTX_CPACR_EL1)); 153159f8882bSJayanth Dodderi Chidanand write_csselr_el1(read_ctx_reg(ctx, CTX_CSSELR_EL1)); 153259f8882bSJayanth Dodderi Chidanand write_sp_el1(read_ctx_reg(ctx, CTX_SP_EL1)); 153359f8882bSJayanth Dodderi Chidanand write_esr_el1(read_ctx_reg(ctx, CTX_ESR_EL1)); 153459f8882bSJayanth Dodderi Chidanand write_ttbr0_el1(read_ctx_reg(ctx, CTX_TTBR0_EL1)); 153559f8882bSJayanth Dodderi Chidanand write_ttbr1_el1(read_ctx_reg(ctx, CTX_TTBR1_EL1)); 153659f8882bSJayanth Dodderi Chidanand write_mair_el1(read_ctx_reg(ctx, CTX_MAIR_EL1)); 153759f8882bSJayanth Dodderi Chidanand write_amair_el1(read_ctx_reg(ctx, CTX_AMAIR_EL1)); 153859f8882bSJayanth Dodderi Chidanand write_actlr_el1(read_ctx_reg(ctx, CTX_ACTLR_EL1)); 153959f8882bSJayanth Dodderi Chidanand write_tpidr_el1(read_ctx_reg(ctx, CTX_TPIDR_EL1)); 154059f8882bSJayanth Dodderi Chidanand write_tpidr_el0(read_ctx_reg(ctx, CTX_TPIDR_EL0)); 154159f8882bSJayanth Dodderi Chidanand write_tpidrro_el0(read_ctx_reg(ctx, CTX_TPIDRRO_EL0)); 154259f8882bSJayanth Dodderi Chidanand write_par_el1(read_ctx_reg(ctx, CTX_PAR_EL1)); 154359f8882bSJayanth Dodderi Chidanand write_far_el1(read_ctx_reg(ctx, CTX_FAR_EL1)); 154459f8882bSJayanth Dodderi Chidanand write_afsr0_el1(read_ctx_reg(ctx, CTX_AFSR0_EL1)); 154559f8882bSJayanth Dodderi Chidanand write_afsr1_el1(read_ctx_reg(ctx, CTX_AFSR1_EL1)); 154659f8882bSJayanth Dodderi Chidanand write_contextidr_el1(read_ctx_reg(ctx, CTX_CONTEXTIDR_EL1)); 154759f8882bSJayanth Dodderi Chidanand write_vbar_el1(read_ctx_reg(ctx, CTX_VBAR_EL1)); 154859f8882bSJayanth Dodderi Chidanand 154959f8882bSJayanth Dodderi Chidanand #if CTX_INCLUDE_AARCH32_REGS 155059f8882bSJayanth Dodderi Chidanand write_spsr_abt(read_ctx_reg(ctx, CTX_SPSR_ABT)); 155159f8882bSJayanth Dodderi Chidanand write_spsr_und(read_ctx_reg(ctx, CTX_SPSR_UND)); 155259f8882bSJayanth Dodderi Chidanand write_spsr_irq(read_ctx_reg(ctx, CTX_SPSR_IRQ)); 155359f8882bSJayanth Dodderi Chidanand write_spsr_fiq(read_ctx_reg(ctx, CTX_SPSR_FIQ)); 155459f8882bSJayanth Dodderi Chidanand write_dacr32_el2(read_ctx_reg(ctx, CTX_DACR32_EL2)); 155559f8882bSJayanth Dodderi Chidanand write_ifsr32_el2(read_ctx_reg(ctx, CTX_IFSR32_EL2)); 155659f8882bSJayanth Dodderi Chidanand #endif /* CTX_INCLUDE_AARCH32_REGS */ 155759f8882bSJayanth Dodderi Chidanand 155859f8882bSJayanth Dodderi Chidanand #if NS_TIMER_SWITCH 155959f8882bSJayanth Dodderi Chidanand write_cntp_ctl_el0(read_ctx_reg(ctx, CTX_CNTP_CTL_EL0)); 156059f8882bSJayanth Dodderi Chidanand write_cntp_cval_el0(read_ctx_reg(ctx, CTX_CNTP_CVAL_EL0)); 156159f8882bSJayanth Dodderi Chidanand write_cntv_ctl_el0(read_ctx_reg(ctx, CTX_CNTV_CTL_EL0)); 156259f8882bSJayanth Dodderi Chidanand write_cntv_cval_el0(read_ctx_reg(ctx, CTX_CNTV_CVAL_EL0)); 156359f8882bSJayanth Dodderi Chidanand write_cntkctl_el1(read_ctx_reg(ctx, CTX_CNTKCTL_EL1)); 156459f8882bSJayanth Dodderi Chidanand #endif /* NS_TIMER_SWITCH */ 156559f8882bSJayanth Dodderi Chidanand 1566*c282384dSGovindraj Raja #if ENABLE_FEAT_MTE2 156759f8882bSJayanth Dodderi Chidanand write_tfsre0_el1(read_ctx_reg(ctx, CTX_TFSRE0_EL1)); 156859f8882bSJayanth Dodderi Chidanand write_tfsr_el1(read_ctx_reg(ctx, CTX_TFSR_EL1)); 156959f8882bSJayanth Dodderi Chidanand write_rgsr_el1(read_ctx_reg(ctx, CTX_RGSR_EL1)); 157059f8882bSJayanth Dodderi Chidanand write_gcr_el1(read_ctx_reg(ctx, CTX_GCR_EL1)); 1571*c282384dSGovindraj Raja #endif /* ENABLE_FEAT_MTE2 */ 157259f8882bSJayanth Dodderi Chidanand 157359f8882bSJayanth Dodderi Chidanand } 157459f8882bSJayanth Dodderi Chidanand 15758b95e848SZelalem Aweke /******************************************************************************* 1576532ed618SSoby Mathew * The next four functions are used by runtime services to save and restore 1577532ed618SSoby Mathew * EL1 context on the 'cpu_context' structure for the specified security 1578532ed618SSoby Mathew * state. 1579532ed618SSoby Mathew ******************************************************************************/ 1580532ed618SSoby Mathew void cm_el1_sysregs_context_save(uint32_t security_state) 1581532ed618SSoby Mathew { 1582532ed618SSoby Mathew cpu_context_t *ctx; 1583532ed618SSoby Mathew 1584532ed618SSoby Mathew ctx = cm_get_context(security_state); 1585a0fee747SAntonio Nino Diaz assert(ctx != NULL); 1586532ed618SSoby Mathew 15872825946eSMax Shvetsov el1_sysregs_context_save(get_el1_sysregs_ctx(ctx)); 158817b4c0ddSDimitris Papastamos 158917b4c0ddSDimitris Papastamos #if IMAGE_BL31 159017b4c0ddSDimitris Papastamos if (security_state == SECURE) 159117b4c0ddSDimitris Papastamos PUBLISH_EVENT(cm_exited_secure_world); 159217b4c0ddSDimitris Papastamos else 159317b4c0ddSDimitris Papastamos PUBLISH_EVENT(cm_exited_normal_world); 159417b4c0ddSDimitris Papastamos #endif 1595532ed618SSoby Mathew } 1596532ed618SSoby Mathew 1597532ed618SSoby Mathew void cm_el1_sysregs_context_restore(uint32_t security_state) 1598532ed618SSoby Mathew { 1599532ed618SSoby Mathew cpu_context_t *ctx; 1600532ed618SSoby Mathew 1601532ed618SSoby Mathew ctx = cm_get_context(security_state); 1602a0fee747SAntonio Nino Diaz assert(ctx != NULL); 1603532ed618SSoby Mathew 16042825946eSMax Shvetsov el1_sysregs_context_restore(get_el1_sysregs_ctx(ctx)); 160517b4c0ddSDimitris Papastamos 160617b4c0ddSDimitris Papastamos #if IMAGE_BL31 160717b4c0ddSDimitris Papastamos if (security_state == SECURE) 160817b4c0ddSDimitris Papastamos PUBLISH_EVENT(cm_entering_secure_world); 160917b4c0ddSDimitris Papastamos else 161017b4c0ddSDimitris Papastamos PUBLISH_EVENT(cm_entering_normal_world); 161117b4c0ddSDimitris Papastamos #endif 1612532ed618SSoby Mathew } 1613532ed618SSoby Mathew 1614532ed618SSoby Mathew /******************************************************************************* 1615532ed618SSoby Mathew * This function populates ELR_EL3 member of 'cpu_context' pertaining to the 1616532ed618SSoby Mathew * given security state with the given entrypoint 1617532ed618SSoby Mathew ******************************************************************************/ 1618532ed618SSoby Mathew void cm_set_elr_el3(uint32_t security_state, uintptr_t entrypoint) 1619532ed618SSoby Mathew { 1620532ed618SSoby Mathew cpu_context_t *ctx; 1621532ed618SSoby Mathew el3_state_t *state; 1622532ed618SSoby Mathew 1623532ed618SSoby Mathew ctx = cm_get_context(security_state); 1624a0fee747SAntonio Nino Diaz assert(ctx != NULL); 1625532ed618SSoby Mathew 1626532ed618SSoby Mathew /* Populate EL3 state so that ERET jumps to the correct entry */ 1627532ed618SSoby Mathew state = get_el3state_ctx(ctx); 1628532ed618SSoby Mathew write_ctx_reg(state, CTX_ELR_EL3, entrypoint); 1629532ed618SSoby Mathew } 1630532ed618SSoby Mathew 1631532ed618SSoby Mathew /******************************************************************************* 1632532ed618SSoby Mathew * This function populates ELR_EL3 and SPSR_EL3 members of 'cpu_context' 1633532ed618SSoby Mathew * pertaining to the given security state 1634532ed618SSoby Mathew ******************************************************************************/ 1635532ed618SSoby Mathew void cm_set_elr_spsr_el3(uint32_t security_state, 1636532ed618SSoby Mathew uintptr_t entrypoint, uint32_t spsr) 1637532ed618SSoby Mathew { 1638532ed618SSoby Mathew cpu_context_t *ctx; 1639532ed618SSoby Mathew el3_state_t *state; 1640532ed618SSoby Mathew 1641532ed618SSoby Mathew ctx = cm_get_context(security_state); 1642a0fee747SAntonio Nino Diaz assert(ctx != NULL); 1643532ed618SSoby Mathew 1644532ed618SSoby Mathew /* Populate EL3 state so that ERET jumps to the correct entry */ 1645532ed618SSoby Mathew state = get_el3state_ctx(ctx); 1646532ed618SSoby Mathew write_ctx_reg(state, CTX_ELR_EL3, entrypoint); 1647532ed618SSoby Mathew write_ctx_reg(state, CTX_SPSR_EL3, spsr); 1648532ed618SSoby Mathew } 1649532ed618SSoby Mathew 1650532ed618SSoby Mathew /******************************************************************************* 1651532ed618SSoby Mathew * This function updates a single bit in the SCR_EL3 member of the 'cpu_context' 1652532ed618SSoby Mathew * pertaining to the given security state using the value and bit position 1653532ed618SSoby Mathew * specified in the parameters. It preserves all other bits. 1654532ed618SSoby Mathew ******************************************************************************/ 1655532ed618SSoby Mathew void cm_write_scr_el3_bit(uint32_t security_state, 1656532ed618SSoby Mathew uint32_t bit_pos, 1657532ed618SSoby Mathew uint32_t value) 1658532ed618SSoby Mathew { 1659532ed618SSoby Mathew cpu_context_t *ctx; 1660532ed618SSoby Mathew el3_state_t *state; 1661f1be00daSLouis Mayencourt u_register_t scr_el3; 1662532ed618SSoby Mathew 1663532ed618SSoby Mathew ctx = cm_get_context(security_state); 1664a0fee747SAntonio Nino Diaz assert(ctx != NULL); 1665532ed618SSoby Mathew 1666532ed618SSoby Mathew /* Ensure that the bit position is a valid one */ 1667d7b5f408SJimmy Brisson assert(((1UL << bit_pos) & SCR_VALID_BIT_MASK) != 0U); 1668532ed618SSoby Mathew 1669532ed618SSoby Mathew /* Ensure that the 'value' is only a bit wide */ 1670a0fee747SAntonio Nino Diaz assert(value <= 1U); 1671532ed618SSoby Mathew 1672532ed618SSoby Mathew /* 1673532ed618SSoby Mathew * Get the SCR_EL3 value from the cpu context, clear the desired bit 1674532ed618SSoby Mathew * and set it to its new value. 1675532ed618SSoby Mathew */ 1676532ed618SSoby Mathew state = get_el3state_ctx(ctx); 1677f1be00daSLouis Mayencourt scr_el3 = read_ctx_reg(state, CTX_SCR_EL3); 1678d7b5f408SJimmy Brisson scr_el3 &= ~(1UL << bit_pos); 1679f1be00daSLouis Mayencourt scr_el3 |= (u_register_t)value << bit_pos; 1680532ed618SSoby Mathew write_ctx_reg(state, CTX_SCR_EL3, scr_el3); 1681532ed618SSoby Mathew } 1682532ed618SSoby Mathew 1683532ed618SSoby Mathew /******************************************************************************* 1684532ed618SSoby Mathew * This function retrieves SCR_EL3 member of 'cpu_context' pertaining to the 1685532ed618SSoby Mathew * given security state. 1686532ed618SSoby Mathew ******************************************************************************/ 1687f1be00daSLouis Mayencourt u_register_t cm_get_scr_el3(uint32_t security_state) 1688532ed618SSoby Mathew { 1689532ed618SSoby Mathew cpu_context_t *ctx; 1690532ed618SSoby Mathew el3_state_t *state; 1691532ed618SSoby Mathew 1692532ed618SSoby Mathew ctx = cm_get_context(security_state); 1693a0fee747SAntonio Nino Diaz assert(ctx != NULL); 1694532ed618SSoby Mathew 1695532ed618SSoby Mathew /* Populate EL3 state so that ERET jumps to the correct entry */ 1696532ed618SSoby Mathew state = get_el3state_ctx(ctx); 1697f1be00daSLouis Mayencourt return read_ctx_reg(state, CTX_SCR_EL3); 1698532ed618SSoby Mathew } 1699532ed618SSoby Mathew 1700532ed618SSoby Mathew /******************************************************************************* 1701532ed618SSoby Mathew * This function is used to program the context that's used for exception 1702532ed618SSoby Mathew * return. This initializes the SP_EL3 to a pointer to a 'cpu_context' set for 1703532ed618SSoby Mathew * the required security state 1704532ed618SSoby Mathew ******************************************************************************/ 1705532ed618SSoby Mathew void cm_set_next_eret_context(uint32_t security_state) 1706532ed618SSoby Mathew { 1707532ed618SSoby Mathew cpu_context_t *ctx; 1708532ed618SSoby Mathew 1709532ed618SSoby Mathew ctx = cm_get_context(security_state); 1710a0fee747SAntonio Nino Diaz assert(ctx != NULL); 1711532ed618SSoby Mathew 1712532ed618SSoby Mathew cm_set_next_context(ctx); 1713532ed618SSoby Mathew } 1714