xref: /rk3399_ARM-atf/lib/el3_runtime/aarch64/context_mgmt.c (revision c73686a11cea8f9d22d7df3c5480f8824cfeec09)
1532ed618SSoby Mathew /*
201cf14ddSMaksims Svecovs  * Copyright (c) 2013-2023, 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>
2309d40e0eSAntonio Nino Diaz #include <lib/el3_runtime/pubsub_events.h>
2409d40e0eSAntonio Nino Diaz #include <lib/extensions/amu.h>
25744ad974Sjohpow01 #include <lib/extensions/brbe.h>
2609d40e0eSAntonio Nino Diaz #include <lib/extensions/mpam.h>
27*c73686a1SBoyan Karatotev #include <lib/extensions/pmuv3.h>
28dc78e62dSjohpow01 #include <lib/extensions/sme.h>
2909d40e0eSAntonio Nino Diaz #include <lib/extensions/spe.h>
3009d40e0eSAntonio Nino Diaz #include <lib/extensions/sve.h>
31d4582d30SManish V Badarkhe #include <lib/extensions/sys_reg_trace.h>
32813524eaSManish V Badarkhe #include <lib/extensions/trbe.h>
338fcd3d96SManish V Badarkhe #include <lib/extensions/trf.h>
3409d40e0eSAntonio Nino Diaz #include <lib/utils.h>
35532ed618SSoby Mathew 
36781d07a4SJayanth Dodderi Chidanand #if ENABLE_FEAT_TWED
37781d07a4SJayanth Dodderi Chidanand /* Make sure delay value fits within the range(0-15) */
38781d07a4SJayanth Dodderi Chidanand CASSERT(((TWED_DELAY & ~SCR_TWEDEL_MASK) == 0U), assert_twed_delay_value_check);
39781d07a4SJayanth Dodderi Chidanand #endif /* ENABLE_FEAT_TWED */
40532ed618SSoby Mathew 
4124a70738SBoyan Karatotev static void manage_extensions_nonsecure(cpu_context_t *ctx);
42781d07a4SJayanth Dodderi Chidanand static void manage_extensions_secure(cpu_context_t *ctx);
43b515f541SZelalem Aweke 
44b515f541SZelalem Aweke static void setup_el1_context(cpu_context_t *ctx, const struct entry_point_info *ep)
45b515f541SZelalem Aweke {
46b515f541SZelalem Aweke 	u_register_t sctlr_elx, actlr_elx;
47b515f541SZelalem Aweke 
48b515f541SZelalem Aweke 	/*
49b515f541SZelalem Aweke 	 * Initialise SCTLR_EL1 to the reset value corresponding to the target
50b515f541SZelalem Aweke 	 * execution state setting all fields rather than relying on the hw.
51b515f541SZelalem Aweke 	 * Some fields have architecturally UNKNOWN reset values and these are
52b515f541SZelalem Aweke 	 * set to zero.
53b515f541SZelalem Aweke 	 *
54b515f541SZelalem Aweke 	 * SCTLR.EE: Endianness is taken from the entrypoint attributes.
55b515f541SZelalem Aweke 	 *
56b515f541SZelalem Aweke 	 * SCTLR.M, SCTLR.C and SCTLR.I: These fields must be zero (as
57b515f541SZelalem Aweke 	 * required by PSCI specification)
58b515f541SZelalem Aweke 	 */
59b515f541SZelalem Aweke 	sctlr_elx = (EP_GET_EE(ep->h.attr) != 0U) ? SCTLR_EE_BIT : 0UL;
60b515f541SZelalem Aweke 	if (GET_RW(ep->spsr) == MODE_RW_64) {
61b515f541SZelalem Aweke 		sctlr_elx |= SCTLR_EL1_RES1;
62b515f541SZelalem Aweke 	} else {
63b515f541SZelalem Aweke 		/*
64b515f541SZelalem Aweke 		 * If the target execution state is AArch32 then the following
65b515f541SZelalem Aweke 		 * fields need to be set.
66b515f541SZelalem Aweke 		 *
67b515f541SZelalem Aweke 		 * SCTRL_EL1.nTWE: Set to one so that EL0 execution of WFE
68b515f541SZelalem Aweke 		 *  instructions are not trapped to EL1.
69b515f541SZelalem Aweke 		 *
70b515f541SZelalem Aweke 		 * SCTLR_EL1.nTWI: Set to one so that EL0 execution of WFI
71b515f541SZelalem Aweke 		 *  instructions are not trapped to EL1.
72b515f541SZelalem Aweke 		 *
73b515f541SZelalem Aweke 		 * SCTLR_EL1.CP15BEN: Set to one to enable EL0 execution of the
74b515f541SZelalem Aweke 		 *  CP15DMB, CP15DSB, and CP15ISB instructions.
75b515f541SZelalem Aweke 		 */
76b515f541SZelalem Aweke 		sctlr_elx |= SCTLR_AARCH32_EL1_RES1 | SCTLR_CP15BEN_BIT
77b515f541SZelalem Aweke 					| SCTLR_NTWI_BIT | SCTLR_NTWE_BIT;
78b515f541SZelalem Aweke 	}
79b515f541SZelalem Aweke 
80b515f541SZelalem Aweke #if ERRATA_A75_764081
81b515f541SZelalem Aweke 	/*
82b515f541SZelalem Aweke 	 * If workaround of errata 764081 for Cortex-A75 is used then set
83b515f541SZelalem Aweke 	 * SCTLR_EL1.IESB to enable Implicit Error Synchronization Barrier.
84b515f541SZelalem Aweke 	 */
85b515f541SZelalem Aweke 	sctlr_elx |= SCTLR_IESB_BIT;
86b515f541SZelalem Aweke #endif
87b515f541SZelalem Aweke 	/* Store the initialised SCTLR_EL1 value in the cpu_context */
88b515f541SZelalem Aweke 	write_ctx_reg(get_el1_sysregs_ctx(ctx), CTX_SCTLR_EL1, sctlr_elx);
89b515f541SZelalem Aweke 
90b515f541SZelalem Aweke 	/*
91b515f541SZelalem Aweke 	 * Base the context ACTLR_EL1 on the current value, as it is
92b515f541SZelalem Aweke 	 * implementation defined. The context restore process will write
93b515f541SZelalem Aweke 	 * the value from the context to the actual register and can cause
94b515f541SZelalem Aweke 	 * problems for processor cores that don't expect certain bits to
95b515f541SZelalem Aweke 	 * be zero.
96b515f541SZelalem Aweke 	 */
97b515f541SZelalem Aweke 	actlr_elx = read_actlr_el1();
98b515f541SZelalem Aweke 	write_ctx_reg((get_el1_sysregs_ctx(ctx)), (CTX_ACTLR_EL1), (actlr_elx));
99b515f541SZelalem Aweke }
100b515f541SZelalem Aweke 
1012bbad1d1SZelalem Aweke /******************************************************************************
1022bbad1d1SZelalem Aweke  * This function performs initializations that are specific to SECURE state
1032bbad1d1SZelalem Aweke  * and updates the cpu context specified by 'ctx'.
1042bbad1d1SZelalem Aweke  *****************************************************************************/
1052bbad1d1SZelalem Aweke static void setup_secure_context(cpu_context_t *ctx, const struct entry_point_info *ep)
106532ed618SSoby Mathew {
1072bbad1d1SZelalem Aweke 	u_register_t scr_el3;
1082bbad1d1SZelalem Aweke 	el3_state_t *state;
1092bbad1d1SZelalem Aweke 
1102bbad1d1SZelalem Aweke 	state = get_el3state_ctx(ctx);
1112bbad1d1SZelalem Aweke 	scr_el3 = read_ctx_reg(state, CTX_SCR_EL3);
1122bbad1d1SZelalem Aweke 
1132bbad1d1SZelalem Aweke #if defined(IMAGE_BL31) && !defined(SPD_spmd)
114532ed618SSoby Mathew 	/*
1152bbad1d1SZelalem Aweke 	 * SCR_EL3.IRQ, SCR_EL3.FIQ: Enable the physical FIQ and IRQ routing as
1162bbad1d1SZelalem Aweke 	 * indicated by the interrupt routing model for BL31.
117532ed618SSoby Mathew 	 */
1182bbad1d1SZelalem Aweke 	scr_el3 |= get_scr_el3_from_routing_model(SECURE);
1192bbad1d1SZelalem Aweke #endif
1202bbad1d1SZelalem Aweke 
1212bbad1d1SZelalem Aweke #if !CTX_INCLUDE_MTE_REGS || ENABLE_ASSERTIONS
1222bbad1d1SZelalem Aweke 	/* Get Memory Tagging Extension support level */
1232bbad1d1SZelalem Aweke 	unsigned int mte = get_armv8_5_mte_support();
1242bbad1d1SZelalem Aweke #endif
1252bbad1d1SZelalem Aweke 	/*
1262bbad1d1SZelalem Aweke 	 * Allow access to Allocation Tags when CTX_INCLUDE_MTE_REGS
1272bbad1d1SZelalem Aweke 	 * is set, or when MTE is only implemented at EL0.
1282bbad1d1SZelalem Aweke 	 */
1292bbad1d1SZelalem Aweke #if CTX_INCLUDE_MTE_REGS
1302bbad1d1SZelalem Aweke 	assert((mte == MTE_IMPLEMENTED_ELX) || (mte == MTE_IMPLEMENTED_ASY));
1312bbad1d1SZelalem Aweke 	scr_el3 |= SCR_ATA_BIT;
1322bbad1d1SZelalem Aweke #else
1332bbad1d1SZelalem Aweke 	if (mte == MTE_IMPLEMENTED_EL0) {
1342bbad1d1SZelalem Aweke 		scr_el3 |= SCR_ATA_BIT;
1352bbad1d1SZelalem Aweke 	}
1362bbad1d1SZelalem Aweke #endif /* CTX_INCLUDE_MTE_REGS */
1372bbad1d1SZelalem Aweke 
1382bbad1d1SZelalem Aweke 	/* Enable S-EL2 if the next EL is EL2 and S-EL2 is present */
139623f6140SAndre Przywara 	if ((GET_EL(ep->spsr) == MODE_EL2) && is_feat_sel2_supported()) {
1402bbad1d1SZelalem Aweke 		if (GET_RW(ep->spsr) != MODE_RW_64) {
1412bbad1d1SZelalem Aweke 			ERROR("S-EL2 can not be used in AArch32\n.");
1422bbad1d1SZelalem Aweke 			panic();
1432bbad1d1SZelalem Aweke 		}
1442bbad1d1SZelalem Aweke 
1452bbad1d1SZelalem Aweke 		scr_el3 |= SCR_EEL2_BIT;
1462bbad1d1SZelalem Aweke 	}
1472bbad1d1SZelalem Aweke 
1482bbad1d1SZelalem Aweke 	write_ctx_reg(state, CTX_SCR_EL3, scr_el3);
1492bbad1d1SZelalem Aweke 
150b515f541SZelalem Aweke 	/*
151b515f541SZelalem Aweke 	 * Initialize EL1 context registers unless SPMC is running
152b515f541SZelalem Aweke 	 * at S-EL2.
153b515f541SZelalem Aweke 	 */
154b515f541SZelalem Aweke #if !SPMD_SPM_AT_SEL2
155b515f541SZelalem Aweke 	setup_el1_context(ctx, ep);
156b515f541SZelalem Aweke #endif
157b515f541SZelalem Aweke 
1582bbad1d1SZelalem Aweke 	manage_extensions_secure(ctx);
1592bbad1d1SZelalem Aweke }
1602bbad1d1SZelalem Aweke 
1612bbad1d1SZelalem Aweke #if ENABLE_RME
1622bbad1d1SZelalem Aweke /******************************************************************************
1632bbad1d1SZelalem Aweke  * This function performs initializations that are specific to REALM state
1642bbad1d1SZelalem Aweke  * and updates the cpu context specified by 'ctx'.
1652bbad1d1SZelalem Aweke  *****************************************************************************/
1662bbad1d1SZelalem Aweke static void setup_realm_context(cpu_context_t *ctx, const struct entry_point_info *ep)
1672bbad1d1SZelalem Aweke {
1682bbad1d1SZelalem Aweke 	u_register_t scr_el3;
1692bbad1d1SZelalem Aweke 	el3_state_t *state;
1702bbad1d1SZelalem Aweke 
1712bbad1d1SZelalem Aweke 	state = get_el3state_ctx(ctx);
1722bbad1d1SZelalem Aweke 	scr_el3 = read_ctx_reg(state, CTX_SCR_EL3);
1732bbad1d1SZelalem Aweke 
17401cf14ddSMaksims Svecovs 	scr_el3 |= SCR_NS_BIT | SCR_NSE_BIT;
17501cf14ddSMaksims Svecovs 
1767db710f0SAndre Przywara 	if (is_feat_csv2_2_supported()) {
17701cf14ddSMaksims Svecovs 		/* Enable access to the SCXTNUM_ELx registers. */
17801cf14ddSMaksims Svecovs 		scr_el3 |= SCR_EnSCXT_BIT;
1797db710f0SAndre Przywara 	}
1802bbad1d1SZelalem Aweke 
1812bbad1d1SZelalem Aweke 	write_ctx_reg(state, CTX_SCR_EL3, scr_el3);
1822bbad1d1SZelalem Aweke }
1832bbad1d1SZelalem Aweke #endif /* ENABLE_RME */
1842bbad1d1SZelalem Aweke 
1852bbad1d1SZelalem Aweke /******************************************************************************
1862bbad1d1SZelalem Aweke  * This function performs initializations that are specific to NON-SECURE state
1872bbad1d1SZelalem Aweke  * and updates the cpu context specified by 'ctx'.
1882bbad1d1SZelalem Aweke  *****************************************************************************/
1892bbad1d1SZelalem Aweke static void setup_ns_context(cpu_context_t *ctx, const struct entry_point_info *ep)
1902bbad1d1SZelalem Aweke {
1912bbad1d1SZelalem Aweke 	u_register_t scr_el3;
1922bbad1d1SZelalem Aweke 	el3_state_t *state;
1932bbad1d1SZelalem Aweke 
1942bbad1d1SZelalem Aweke 	state = get_el3state_ctx(ctx);
1952bbad1d1SZelalem Aweke 	scr_el3 = read_ctx_reg(state, CTX_SCR_EL3);
1962bbad1d1SZelalem Aweke 
1972bbad1d1SZelalem Aweke 	/* SCR_NS: Set the NS bit */
1982bbad1d1SZelalem Aweke 	scr_el3 |= SCR_NS_BIT;
1992bbad1d1SZelalem Aweke 
2002bbad1d1SZelalem Aweke #if !CTX_INCLUDE_PAUTH_REGS
2012bbad1d1SZelalem Aweke 	/*
2022bbad1d1SZelalem Aweke 	 * If the pointer authentication registers aren't saved during world
2032bbad1d1SZelalem Aweke 	 * switches the value of the registers can be leaked from the Secure to
2042bbad1d1SZelalem Aweke 	 * the Non-secure world. To prevent this, rather than enabling pointer
2052bbad1d1SZelalem Aweke 	 * authentication everywhere, we only enable it in the Non-secure world.
2062bbad1d1SZelalem Aweke 	 *
2072bbad1d1SZelalem Aweke 	 * If the Secure world wants to use pointer authentication,
2082bbad1d1SZelalem Aweke 	 * CTX_INCLUDE_PAUTH_REGS must be set to 1.
2092bbad1d1SZelalem Aweke 	 */
2102bbad1d1SZelalem Aweke 	scr_el3 |= SCR_API_BIT | SCR_APK_BIT;
2112bbad1d1SZelalem Aweke #endif /* !CTX_INCLUDE_PAUTH_REGS */
2122bbad1d1SZelalem Aweke 
2132bbad1d1SZelalem Aweke 	/* Allow access to Allocation Tags when MTE is implemented. */
2142bbad1d1SZelalem Aweke 	scr_el3 |= SCR_ATA_BIT;
2152bbad1d1SZelalem Aweke 
21646cc41d5SManish Pandey #if HANDLE_EA_EL3_FIRST_NS
21746cc41d5SManish Pandey 	/* SCR_EL3.EA: Route External Abort and SError Interrupt to EL3. */
21846cc41d5SManish Pandey 	scr_el3 |= SCR_EA_BIT;
21946cc41d5SManish Pandey #endif
22046cc41d5SManish Pandey 
22100e8f79cSManish Pandey #if RAS_TRAP_NS_ERR_REC_ACCESS
22200e8f79cSManish Pandey 	/*
22300e8f79cSManish Pandey 	 * SCR_EL3.TERR: Trap Error record accesses. Accesses to the RAS ERR
22400e8f79cSManish Pandey 	 * and RAS ERX registers from EL1 and EL2(from any security state)
22500e8f79cSManish Pandey 	 * are trapped to EL3.
22600e8f79cSManish Pandey 	 * Set here to trap only for NS EL1/EL2
22700e8f79cSManish Pandey 	 *
22800e8f79cSManish Pandey 	 */
22900e8f79cSManish Pandey 	scr_el3 |= SCR_TERR_BIT;
23000e8f79cSManish Pandey #endif
23100e8f79cSManish Pandey 
2327db710f0SAndre Przywara 	if (is_feat_csv2_2_supported()) {
23301cf14ddSMaksims Svecovs 		/* Enable access to the SCXTNUM_ELx registers. */
23401cf14ddSMaksims Svecovs 		scr_el3 |= SCR_EnSCXT_BIT;
2357db710f0SAndre Przywara 	}
23601cf14ddSMaksims Svecovs 
2372bbad1d1SZelalem Aweke #ifdef IMAGE_BL31
2382bbad1d1SZelalem Aweke 	/*
2392bbad1d1SZelalem Aweke 	 * SCR_EL3.IRQ, SCR_EL3.FIQ: Enable the physical FIQ and IRQ routing as
2402bbad1d1SZelalem Aweke 	 *  indicated by the interrupt routing model for BL31.
2412bbad1d1SZelalem Aweke 	 */
2422bbad1d1SZelalem Aweke 	scr_el3 |= get_scr_el3_from_routing_model(NON_SECURE);
2432bbad1d1SZelalem Aweke #endif
2442bbad1d1SZelalem Aweke 	write_ctx_reg(state, CTX_SCR_EL3, scr_el3);
2458b95e848SZelalem Aweke 
246b515f541SZelalem Aweke 	/* Initialize EL1 context registers */
247b515f541SZelalem Aweke 	setup_el1_context(ctx, ep);
248b515f541SZelalem Aweke 
2498b95e848SZelalem Aweke 	/* Initialize EL2 context registers */
2508b95e848SZelalem Aweke #if CTX_INCLUDE_EL2_REGS
2518b95e848SZelalem Aweke 
2528b95e848SZelalem Aweke 	/*
2538b95e848SZelalem Aweke 	 * Initialize SCTLR_EL2 context register using Endianness value
2548b95e848SZelalem Aweke 	 * taken from the entrypoint attribute.
2558b95e848SZelalem Aweke 	 */
2568b95e848SZelalem Aweke 	u_register_t sctlr_el2 = (EP_GET_EE(ep->h.attr) != 0U) ? SCTLR_EE_BIT : 0UL;
2578b95e848SZelalem Aweke 	sctlr_el2 |= SCTLR_EL2_RES1;
2588b95e848SZelalem Aweke 	write_ctx_reg(get_el2_sysregs_ctx(ctx), CTX_SCTLR_EL2,
2598b95e848SZelalem Aweke 			sctlr_el2);
2608b95e848SZelalem Aweke 
2618b95e848SZelalem Aweke 	/*
2622b28727eSVarun Wadekar 	 * Program the ICC_SRE_EL2 to make sure the correct bits are set
2632b28727eSVarun Wadekar 	 * when restoring NS context.
2648b95e848SZelalem Aweke 	 */
2652b28727eSVarun Wadekar 	u_register_t icc_sre_el2 = ICC_SRE_DIB_BIT | ICC_SRE_DFB_BIT |
2662b28727eSVarun Wadekar 				   ICC_SRE_EN_BIT | ICC_SRE_SRE_BIT;
2678b95e848SZelalem Aweke 	write_ctx_reg(get_el2_sysregs_ctx(ctx), CTX_ICC_SRE_EL2,
2688b95e848SZelalem Aweke 			icc_sre_el2);
2697f856198SBoyan Karatotev 
270ddb615b4SJuan Pablo Conde 	if (is_feat_hcx_supported()) {
271ddb615b4SJuan Pablo Conde 		/*
272ddb615b4SJuan Pablo Conde 		 * Initialize register HCRX_EL2 with its init value.
273ddb615b4SJuan Pablo Conde 		 * As the value of HCRX_EL2 is UNKNOWN on reset, there is a
274ddb615b4SJuan Pablo Conde 		 * chance that this can lead to unexpected behavior in lower
275ddb615b4SJuan Pablo Conde 		 * ELs that have not been updated since the introduction of
276ddb615b4SJuan Pablo Conde 		 * this feature if not properly initialized, especially when
277ddb615b4SJuan Pablo Conde 		 * it comes to those bits that enable/disable traps.
278ddb615b4SJuan Pablo Conde 		 */
279ddb615b4SJuan Pablo Conde 		write_ctx_reg(get_el2_sysregs_ctx(ctx), CTX_HCRX_EL2,
280ddb615b4SJuan Pablo Conde 			HCRX_EL2_INIT_VAL);
281ddb615b4SJuan Pablo Conde 	}
2828b95e848SZelalem Aweke #endif /* CTX_INCLUDE_EL2_REGS */
28324a70738SBoyan Karatotev 
28424a70738SBoyan Karatotev 	manage_extensions_nonsecure(ctx);
285532ed618SSoby Mathew }
286532ed618SSoby Mathew 
287532ed618SSoby Mathew /*******************************************************************************
2882bbad1d1SZelalem Aweke  * The following function performs initialization of the cpu_context 'ctx'
2892bbad1d1SZelalem Aweke  * for first use that is common to all security states, and sets the
2902bbad1d1SZelalem Aweke  * initial entrypoint state as specified by the entry_point_info structure.
291532ed618SSoby Mathew  *
2928aabea33SPaul Beesley  * The EE and ST attributes are used to configure the endianness and secure
293532ed618SSoby Mathew  * timer availability for the new execution context.
294532ed618SSoby Mathew  ******************************************************************************/
2952bbad1d1SZelalem Aweke static void setup_context_common(cpu_context_t *ctx, const entry_point_info_t *ep)
296532ed618SSoby Mathew {
297f1be00daSLouis Mayencourt 	u_register_t scr_el3;
298532ed618SSoby Mathew 	el3_state_t *state;
299532ed618SSoby Mathew 	gp_regs_t *gp_regs;
300532ed618SSoby Mathew 
301532ed618SSoby Mathew 	/* Clear any residual register values from the context */
30232f0d3c6SDouglas Raillard 	zeromem(ctx, sizeof(*ctx));
303532ed618SSoby Mathew 
304532ed618SSoby Mathew 	/*
30518f2efd6SDavid Cunado 	 * SCR_EL3 was initialised during reset sequence in macro
30618f2efd6SDavid Cunado 	 * el3_arch_init_common. This code modifies the SCR_EL3 fields that
30718f2efd6SDavid Cunado 	 * affect the next EL.
30818f2efd6SDavid Cunado 	 *
30918f2efd6SDavid Cunado 	 * The following fields are initially set to zero and then updated to
31018f2efd6SDavid Cunado 	 * the required value depending on the state of the SPSR_EL3 and the
31118f2efd6SDavid Cunado 	 * Security state and entrypoint attributes of the next EL.
312532ed618SSoby Mathew 	 */
313f1be00daSLouis Mayencourt 	scr_el3 = read_scr();
31446cc41d5SManish Pandey 	scr_el3 &= ~(SCR_NS_BIT | SCR_RW_BIT | SCR_EA_BIT | SCR_FIQ_BIT | SCR_IRQ_BIT |
3152bbad1d1SZelalem Aweke 			SCR_ST_BIT | SCR_HCE_BIT | SCR_NSE_BIT);
316c5ea4f8aSZelalem Aweke 
31718f2efd6SDavid Cunado 	/*
31818f2efd6SDavid Cunado 	 * SCR_EL3.RW: Set the execution state, AArch32 or AArch64, for next
31918f2efd6SDavid Cunado 	 *  Exception level as specified by SPSR.
32018f2efd6SDavid Cunado 	 */
321c5ea4f8aSZelalem Aweke 	if (GET_RW(ep->spsr) == MODE_RW_64) {
322532ed618SSoby Mathew 		scr_el3 |= SCR_RW_BIT;
323c5ea4f8aSZelalem Aweke 	}
3242bbad1d1SZelalem Aweke 
32518f2efd6SDavid Cunado 	/*
32618f2efd6SDavid Cunado 	 * SCR_EL3.ST: Traps Secure EL1 accesses to the Counter-timer Physical
32718f2efd6SDavid Cunado 	 * Secure timer registers to EL3, from AArch64 state only, if specified
328b515f541SZelalem Aweke 	 * by the entrypoint attributes. If SEL2 is present and enabled, the ST
329b515f541SZelalem Aweke 	 * bit always behaves as 1 (i.e. secure physical timer register access
330b515f541SZelalem Aweke 	 * is not trapped)
33118f2efd6SDavid Cunado 	 */
332c5ea4f8aSZelalem Aweke 	if (EP_GET_ST(ep->h.attr) != 0U) {
333532ed618SSoby Mathew 		scr_el3 |= SCR_ST_BIT;
334c5ea4f8aSZelalem Aweke 	}
335532ed618SSoby Mathew 
336cb4ec47bSjohpow01 	/*
337cb4ec47bSjohpow01 	 * If FEAT_HCX is enabled, enable access to HCRX_EL2 by setting
338cb4ec47bSjohpow01 	 * SCR_EL3.HXEn.
339cb4ec47bSjohpow01 	 */
340c5a3ebbdSAndre Przywara 	if (is_feat_hcx_supported()) {
341cb4ec47bSjohpow01 		scr_el3 |= SCR_HXEn_BIT;
342c5a3ebbdSAndre Przywara 	}
343cb4ec47bSjohpow01 
344ff86e0b4SJuan Pablo Conde 	/*
345ff86e0b4SJuan Pablo Conde 	 * If FEAT_RNG_TRAP is enabled, all reads of the RNDR and RNDRRS
346ff86e0b4SJuan Pablo Conde 	 * registers are trapped to EL3.
347ff86e0b4SJuan Pablo Conde 	 */
348ff86e0b4SJuan Pablo Conde #if ENABLE_FEAT_RNG_TRAP
349ff86e0b4SJuan Pablo Conde 	scr_el3 |= SCR_TRNDR_BIT;
350ff86e0b4SJuan Pablo Conde #endif
351ff86e0b4SJuan Pablo Conde 
3521a7c1cfeSJeenu Viswambharan #if FAULT_INJECTION_SUPPORT
3531a7c1cfeSJeenu Viswambharan 	/* Enable fault injection from lower ELs */
3541a7c1cfeSJeenu Viswambharan 	scr_el3 |= SCR_FIEN_BIT;
3551a7c1cfeSJeenu Viswambharan #endif
3561a7c1cfeSJeenu Viswambharan 
3575283962eSAntonio Nino Diaz 	/*
358d3331603SMark Brown 	 * SCR_EL3.TCR2EN: Enable access to TCR2_ELx for AArch64 if present.
359d3331603SMark Brown 	 */
360d3331603SMark Brown 	if (is_feat_tcr2_supported() && (GET_RW(ep->spsr) == MODE_RW_64)) {
361d3331603SMark Brown 		scr_el3 |= SCR_TCR2EN_BIT;
362d3331603SMark Brown 	}
363d3331603SMark Brown 
364d3331603SMark Brown 	/*
365062b6c6bSMark Brown 	 * SCR_EL3.PIEN: Enable permission indirection and overlay
366062b6c6bSMark Brown 	 * registers for AArch64 if present.
367062b6c6bSMark Brown 	 */
368062b6c6bSMark Brown 	if (is_feat_sxpie_supported() || is_feat_sxpoe_supported()) {
369062b6c6bSMark Brown 		scr_el3 |= SCR_PIEN_BIT;
370062b6c6bSMark Brown 	}
371062b6c6bSMark Brown 
372062b6c6bSMark Brown 	/*
373688ab57bSMark Brown 	 * SCR_EL3.GCSEn: Enable GCS registers for AArch64 if present.
374688ab57bSMark Brown 	 */
375688ab57bSMark Brown 	if ((is_feat_gcs_supported()) && (GET_RW(ep->spsr) == MODE_RW_64)) {
376688ab57bSMark Brown 		scr_el3 |= SCR_GCSEn_BIT;
377688ab57bSMark Brown 	}
378688ab57bSMark Brown 
379688ab57bSMark Brown 	/*
3802bbad1d1SZelalem Aweke 	 * CPTR_EL3 was initialized out of reset, copy that value to the
3812bbad1d1SZelalem Aweke 	 * context register.
3825283962eSAntonio Nino Diaz 	 */
38368ac5ed0SArunachalam Ganapathy 	write_ctx_reg(get_el3state_ctx(ctx), CTX_CPTR_EL3, read_cptr_el3());
384532ed618SSoby Mathew 
385532ed618SSoby Mathew 	/*
38618f2efd6SDavid Cunado 	 * SCR_EL3.HCE: Enable HVC instructions if next execution state is
38718f2efd6SDavid Cunado 	 * AArch64 and next EL is EL2, or if next execution state is AArch32 and
38818f2efd6SDavid Cunado 	 * next mode is Hyp.
389110ee433SJimmy Brisson 	 * SCR_EL3.FGTEn: Enable Fine Grained Virtualization Traps under the
390110ee433SJimmy Brisson 	 * same conditions as HVC instructions and when the processor supports
391110ee433SJimmy Brisson 	 * ARMv8.6-FGT.
39229d0ee54SJimmy Brisson 	 * SCR_EL3.ECVEn: Enable Enhanced Counter Virtualization (ECV)
39329d0ee54SJimmy Brisson 	 * CNTPOFF_EL2 register under the same conditions as HVC instructions
39429d0ee54SJimmy Brisson 	 * and when the processor supports ECV.
395532ed618SSoby Mathew 	 */
396a0fee747SAntonio Nino Diaz 	if (((GET_RW(ep->spsr) == MODE_RW_64) && (GET_EL(ep->spsr) == MODE_EL2))
397a0fee747SAntonio Nino Diaz 	    || ((GET_RW(ep->spsr) != MODE_RW_64)
398a0fee747SAntonio Nino Diaz 		&& (GET_M32(ep->spsr) == MODE32_hyp))) {
399532ed618SSoby Mathew 		scr_el3 |= SCR_HCE_BIT;
400110ee433SJimmy Brisson 
401ce485955SAndre Przywara 		if (is_feat_fgt_supported()) {
402110ee433SJimmy Brisson 			scr_el3 |= SCR_FGTEN_BIT;
403110ee433SJimmy Brisson 		}
40429d0ee54SJimmy Brisson 
405b8f03d29SAndre Przywara 		if (is_feat_ecv_supported()) {
40629d0ee54SJimmy Brisson 			scr_el3 |= SCR_ECVEN_BIT;
40729d0ee54SJimmy Brisson 		}
408532ed618SSoby Mathew 	}
409532ed618SSoby Mathew 
4106cac724dSjohpow01 	/* Enable WFE trap delay in SCR_EL3 if supported and configured */
4111223d2a0SAndre Przywara 	if (is_feat_twed_supported()) {
4126cac724dSjohpow01 		/* Set delay in SCR_EL3 */
4136cac724dSjohpow01 		scr_el3 &= ~(SCR_TWEDEL_MASK << SCR_TWEDEL_SHIFT);
414781d07a4SJayanth Dodderi Chidanand 		scr_el3 |= ((TWED_DELAY & SCR_TWEDEL_MASK)
4156cac724dSjohpow01 				<< SCR_TWEDEL_SHIFT);
4166cac724dSjohpow01 
4176cac724dSjohpow01 		/* Enable WFE delay */
4186cac724dSjohpow01 		scr_el3 |= SCR_TWEDEn_BIT;
4191223d2a0SAndre Przywara 	}
4206cac724dSjohpow01 
42118f2efd6SDavid Cunado 	/*
422e290a8fcSAlexei Fedorov 	 * Populate EL3 state so that we've the right context
423e290a8fcSAlexei Fedorov 	 * before doing ERET
4243e61b2b5SDavid Cunado 	 */
425532ed618SSoby Mathew 	state = get_el3state_ctx(ctx);
426532ed618SSoby Mathew 	write_ctx_reg(state, CTX_SCR_EL3, scr_el3);
427532ed618SSoby Mathew 	write_ctx_reg(state, CTX_ELR_EL3, ep->pc);
428532ed618SSoby Mathew 	write_ctx_reg(state, CTX_SPSR_EL3, ep->spsr);
429532ed618SSoby Mathew 
430532ed618SSoby Mathew 	/*
431532ed618SSoby Mathew 	 * Store the X0-X7 value from the entrypoint into the context
432532ed618SSoby Mathew 	 * Use memcpy as we are in control of the layout of the structures
433532ed618SSoby Mathew 	 */
434532ed618SSoby Mathew 	gp_regs = get_gpregs_ctx(ctx);
435532ed618SSoby Mathew 	memcpy(gp_regs, (void *)&ep->args, sizeof(aapcs64_params_t));
436532ed618SSoby Mathew }
437532ed618SSoby Mathew 
438532ed618SSoby Mathew /*******************************************************************************
4392bbad1d1SZelalem Aweke  * Context management library initialization routine. This library is used by
4402bbad1d1SZelalem Aweke  * runtime services to share pointers to 'cpu_context' structures for secure
4412bbad1d1SZelalem Aweke  * non-secure and realm states. Management of the structures and their associated
4422bbad1d1SZelalem Aweke  * memory is not done by the context management library e.g. the PSCI service
4432bbad1d1SZelalem Aweke  * manages the cpu context used for entry from and exit to the non-secure state.
4442bbad1d1SZelalem Aweke  * The Secure payload dispatcher service manages the context(s) corresponding to
4452bbad1d1SZelalem Aweke  * the secure state. It also uses this library to get access to the non-secure
4462bbad1d1SZelalem Aweke  * state cpu context pointers.
4472bbad1d1SZelalem Aweke  * Lastly, this library provides the API to make SP_EL3 point to the cpu context
4482bbad1d1SZelalem Aweke  * which will be used for programming an entry into a lower EL. The same context
4492bbad1d1SZelalem Aweke  * will be used to save state upon exception entry from that EL.
4502bbad1d1SZelalem Aweke  ******************************************************************************/
4512bbad1d1SZelalem Aweke void __init cm_init(void)
4522bbad1d1SZelalem Aweke {
4532bbad1d1SZelalem Aweke 	/*
4541b491eeaSElyes Haouas 	 * The context management library has only global data to initialize, but
4552bbad1d1SZelalem Aweke 	 * that will be done when the BSS is zeroed out.
4562bbad1d1SZelalem Aweke 	 */
4572bbad1d1SZelalem Aweke }
4582bbad1d1SZelalem Aweke 
4592bbad1d1SZelalem Aweke /*******************************************************************************
4602bbad1d1SZelalem Aweke  * This is the high-level function used to initialize the cpu_context 'ctx' for
4612bbad1d1SZelalem Aweke  * first use. It performs initializations that are common to all security states
4622bbad1d1SZelalem Aweke  * and initializations specific to the security state specified in 'ep'
4632bbad1d1SZelalem Aweke  ******************************************************************************/
4642bbad1d1SZelalem Aweke void cm_setup_context(cpu_context_t *ctx, const entry_point_info_t *ep)
4652bbad1d1SZelalem Aweke {
4662bbad1d1SZelalem Aweke 	unsigned int security_state;
4672bbad1d1SZelalem Aweke 
4682bbad1d1SZelalem Aweke 	assert(ctx != NULL);
4692bbad1d1SZelalem Aweke 
4702bbad1d1SZelalem Aweke 	/*
4712bbad1d1SZelalem Aweke 	 * Perform initializations that are common
4722bbad1d1SZelalem Aweke 	 * to all security states
4732bbad1d1SZelalem Aweke 	 */
4742bbad1d1SZelalem Aweke 	setup_context_common(ctx, ep);
4752bbad1d1SZelalem Aweke 
4762bbad1d1SZelalem Aweke 	security_state = GET_SECURITY_STATE(ep->h.attr);
4772bbad1d1SZelalem Aweke 
4782bbad1d1SZelalem Aweke 	/* Perform security state specific initializations */
4792bbad1d1SZelalem Aweke 	switch (security_state) {
4802bbad1d1SZelalem Aweke 	case SECURE:
4812bbad1d1SZelalem Aweke 		setup_secure_context(ctx, ep);
4822bbad1d1SZelalem Aweke 		break;
4832bbad1d1SZelalem Aweke #if ENABLE_RME
4842bbad1d1SZelalem Aweke 	case REALM:
4852bbad1d1SZelalem Aweke 		setup_realm_context(ctx, ep);
4862bbad1d1SZelalem Aweke 		break;
4872bbad1d1SZelalem Aweke #endif
4882bbad1d1SZelalem Aweke 	case NON_SECURE:
4892bbad1d1SZelalem Aweke 		setup_ns_context(ctx, ep);
4902bbad1d1SZelalem Aweke 		break;
4912bbad1d1SZelalem Aweke 	default:
4922bbad1d1SZelalem Aweke 		ERROR("Invalid security state\n");
4932bbad1d1SZelalem Aweke 		panic();
4942bbad1d1SZelalem Aweke 		break;
4952bbad1d1SZelalem Aweke 	}
4962bbad1d1SZelalem Aweke }
4972bbad1d1SZelalem Aweke 
4982bbad1d1SZelalem Aweke /*******************************************************************************
4990fd0f222SDimitris Papastamos  * Enable architecture extensions on first entry to Non-secure world.
5000fd0f222SDimitris Papastamos  * When EL2 is implemented but unused `el2_unused` is non-zero, otherwise
50124a70738SBoyan Karatotev  * it is zero. This function updates some registers in-place and its contents
50224a70738SBoyan Karatotev  * are being prepared to be moved to cm_manage_extensions_el3 and
50324a70738SBoyan Karatotev  * cm_manage_extensions_nonsecure.
5040fd0f222SDimitris Papastamos  ******************************************************************************/
50524a70738SBoyan Karatotev static void manage_extensions_nonsecure_mixed(bool el2_unused, cpu_context_t *ctx)
5060fd0f222SDimitris Papastamos {
5070fd0f222SDimitris Papastamos #if IMAGE_BL31
5086437a09aSAndre Przywara 	if (is_feat_spe_supported()) {
509281a08ccSDimitris Papastamos 		spe_enable(el2_unused);
5106437a09aSAndre Przywara 	}
511380559c1SDimitris Papastamos 
512b57e16a4SAndre Przywara 	if (is_feat_amu_supported()) {
51368ac5ed0SArunachalam Ganapathy 		amu_enable(el2_unused, ctx);
514b57e16a4SAndre Przywara 	}
51568ac5ed0SArunachalam Ganapathy 
5160d122947SBoyan Karatotev 	/* Enable SVE and FPU/SIMD */
5170d122947SBoyan Karatotev 	if (is_feat_sve_supported()) {
5180d122947SBoyan Karatotev 		sve_enable(ctx);
5190d122947SBoyan Karatotev 	}
5200d122947SBoyan Karatotev 
52145007acdSJayanth Dodderi Chidanand 	if (is_feat_sme_supported()) {
522dc78e62dSjohpow01 		sme_enable(ctx);
5232b0bc4e0SJayanth Dodderi Chidanand 	}
5241a853370SDavid Cunado 
5259448f2b8SAndre Przywara 	if (is_feat_mpam_supported()) {
5265f835918SJeenu Viswambharan 		mpam_enable(el2_unused);
5279448f2b8SAndre Przywara 	}
528813524eaSManish V Badarkhe 
529f5360cfaSAndre Przywara 	if (is_feat_trbe_supported()) {
530813524eaSManish V Badarkhe 		trbe_enable();
531f5360cfaSAndre Przywara 	}
532813524eaSManish V Badarkhe 
533ff491036SAndre Przywara 	if (is_feat_brbe_supported()) {
534744ad974Sjohpow01 		brbe_enable();
535ff491036SAndre Przywara 	}
536744ad974Sjohpow01 
537603a0c6fSAndre Przywara 	if (is_feat_sys_reg_trace_supported()) {
538d4582d30SManish V Badarkhe 		sys_reg_trace_enable(ctx);
539603a0c6fSAndre Przywara 	}
540d4582d30SManish V Badarkhe 
541fc8d2d39SAndre Przywara 	if (is_feat_trf_supported()) {
5428fcd3d96SManish V Badarkhe 		trf_enable();
543fc8d2d39SAndre Przywara 	}
5440fd0f222SDimitris Papastamos #endif
5450fd0f222SDimitris Papastamos }
5460fd0f222SDimitris Papastamos 
5470fd0f222SDimitris Papastamos /*******************************************************************************
54824a70738SBoyan Karatotev  * Enable architecture extensions for EL3 execution. This function only updates
54924a70738SBoyan Karatotev  * registers in-place which are expected to either never change or be
55024a70738SBoyan Karatotev  * overwritten by el3_exit.
55124a70738SBoyan Karatotev  ******************************************************************************/
55224a70738SBoyan Karatotev #if IMAGE_BL31
55324a70738SBoyan Karatotev void cm_manage_extensions_el3(void)
55424a70738SBoyan Karatotev {
555*c73686a1SBoyan Karatotev 	pmuv3_disable_el3();
55624a70738SBoyan Karatotev }
55724a70738SBoyan Karatotev #endif /* IMAGE_BL31 */
55824a70738SBoyan Karatotev 
55924a70738SBoyan Karatotev /*******************************************************************************
56024a70738SBoyan Karatotev  * Enable architecture extensions on first entry to Non-secure world.
56124a70738SBoyan Karatotev  ******************************************************************************/
56224a70738SBoyan Karatotev static void manage_extensions_nonsecure(cpu_context_t *ctx)
56324a70738SBoyan Karatotev {
56424a70738SBoyan Karatotev #if IMAGE_BL31
565*c73686a1SBoyan Karatotev 	pmuv3_enable(ctx);
56624a70738SBoyan Karatotev #endif /* IMAGE_BL31 */
56724a70738SBoyan Karatotev }
56824a70738SBoyan Karatotev 
56924a70738SBoyan Karatotev /*******************************************************************************
57024a70738SBoyan Karatotev  * Enable architecture extensions in-place at EL2 on first entry to Non-secure
57124a70738SBoyan Karatotev  * world when EL2 is empty and unused.
57224a70738SBoyan Karatotev  ******************************************************************************/
57324a70738SBoyan Karatotev static void manage_extensions_nonsecure_el2_unused(void)
57424a70738SBoyan Karatotev {
57524a70738SBoyan Karatotev #if IMAGE_BL31
576*c73686a1SBoyan Karatotev 	pmuv3_init_el2_unused();
57724a70738SBoyan Karatotev #endif /* IMAGE_BL31 */
57824a70738SBoyan Karatotev }
57924a70738SBoyan Karatotev 
58024a70738SBoyan Karatotev /*******************************************************************************
58168ac5ed0SArunachalam Ganapathy  * Enable architecture extensions on first entry to Secure world.
58268ac5ed0SArunachalam Ganapathy  ******************************************************************************/
583dc78e62dSjohpow01 static void manage_extensions_secure(cpu_context_t *ctx)
58468ac5ed0SArunachalam Ganapathy {
58568ac5ed0SArunachalam Ganapathy #if IMAGE_BL31
5860d122947SBoyan Karatotev 	if (is_feat_sve_supported()) {
5872b0bc4e0SJayanth Dodderi Chidanand 		if (ENABLE_SVE_FOR_SWD) {
588dc78e62dSjohpow01 		/*
5892b0bc4e0SJayanth Dodderi Chidanand 		 * Enable SVE and FPU in secure context, secure manager must
5902b0bc4e0SJayanth Dodderi Chidanand 		 * ensure that the SVE and FPU register contexts are properly
5912b0bc4e0SJayanth Dodderi Chidanand 		 * managed.
592dc78e62dSjohpow01 		 */
59368ac5ed0SArunachalam Ganapathy 			sve_enable(ctx);
5942b0bc4e0SJayanth Dodderi Chidanand 		} else {
595dc78e62dSjohpow01 		/*
5962b0bc4e0SJayanth Dodderi Chidanand 		 * Disable SVE and FPU in secure context so non-secure world
5972b0bc4e0SJayanth Dodderi Chidanand 		 * can safely use them.
598dc78e62dSjohpow01 		 */
599dc78e62dSjohpow01 			sve_disable(ctx);
6002b0bc4e0SJayanth Dodderi Chidanand 		}
6012b0bc4e0SJayanth Dodderi Chidanand 	}
6022b0bc4e0SJayanth Dodderi Chidanand 
6030d122947SBoyan Karatotev 	if (is_feat_sme_supported()) {
6040d122947SBoyan Karatotev 		if (ENABLE_SME_FOR_SWD) {
6050d122947SBoyan Karatotev 		/*
6060d122947SBoyan Karatotev 		 * Enable SME, SVE, FPU/SIMD in secure context, secure manager
6070d122947SBoyan Karatotev 		 * must ensure SME, SVE, and FPU/SIMD context properly managed.
6080d122947SBoyan Karatotev 		 */
6090d122947SBoyan Karatotev 			sme_enable(ctx);
6100d122947SBoyan Karatotev 		} else {
6110d122947SBoyan Karatotev 		/*
6120d122947SBoyan Karatotev 		 * Disable SME, SVE, FPU/SIMD in secure context so non-secure
6130d122947SBoyan Karatotev 		 * world can safely use the associated registers.
6140d122947SBoyan Karatotev 		 */
6150d122947SBoyan Karatotev 			sme_disable(ctx);
6160d122947SBoyan Karatotev 		}
6170d122947SBoyan Karatotev 	}
618dc78e62dSjohpow01 #endif /* IMAGE_BL31 */
61968ac5ed0SArunachalam Ganapathy }
62068ac5ed0SArunachalam Ganapathy 
62168ac5ed0SArunachalam Ganapathy /*******************************************************************************
622532ed618SSoby Mathew  * The following function initializes the cpu_context for a CPU specified by
623532ed618SSoby Mathew  * its `cpu_idx` for first use, and sets the initial entrypoint state as
624532ed618SSoby Mathew  * specified by the entry_point_info structure.
625532ed618SSoby Mathew  ******************************************************************************/
626532ed618SSoby Mathew void cm_init_context_by_index(unsigned int cpu_idx,
627532ed618SSoby Mathew 			      const entry_point_info_t *ep)
628532ed618SSoby Mathew {
629532ed618SSoby Mathew 	cpu_context_t *ctx;
630532ed618SSoby Mathew 	ctx = cm_get_context_by_index(cpu_idx, GET_SECURITY_STATE(ep->h.attr));
6311634cae8SAntonio Nino Diaz 	cm_setup_context(ctx, ep);
632532ed618SSoby Mathew }
633532ed618SSoby Mathew 
634532ed618SSoby Mathew /*******************************************************************************
635532ed618SSoby Mathew  * The following function initializes the cpu_context for the current CPU
636532ed618SSoby Mathew  * for first use, and sets the initial entrypoint state as specified by the
637532ed618SSoby Mathew  * entry_point_info structure.
638532ed618SSoby Mathew  ******************************************************************************/
639532ed618SSoby Mathew void cm_init_my_context(const entry_point_info_t *ep)
640532ed618SSoby Mathew {
641532ed618SSoby Mathew 	cpu_context_t *ctx;
642532ed618SSoby Mathew 	ctx = cm_get_context(GET_SECURITY_STATE(ep->h.attr));
6431634cae8SAntonio Nino Diaz 	cm_setup_context(ctx, ep);
644532ed618SSoby Mathew }
645532ed618SSoby Mathew 
646532ed618SSoby Mathew /*******************************************************************************
647c5ea4f8aSZelalem Aweke  * Prepare the CPU system registers for first entry into realm, secure, or
648c5ea4f8aSZelalem Aweke  * normal world.
649532ed618SSoby Mathew  *
650532ed618SSoby Mathew  * If execution is requested to EL2 or hyp mode, SCTLR_EL2 is initialized
651532ed618SSoby Mathew  * If execution is requested to non-secure EL1 or svc mode, and the CPU supports
652532ed618SSoby Mathew  * EL2 then EL2 is disabled by configuring all necessary EL2 registers.
653532ed618SSoby Mathew  * For all entries, the EL1 registers are initialized from the cpu_context
654532ed618SSoby Mathew  ******************************************************************************/
655532ed618SSoby Mathew void cm_prepare_el3_exit(uint32_t security_state)
656532ed618SSoby Mathew {
657f1be00daSLouis Mayencourt 	u_register_t sctlr_elx, scr_el3, mdcr_el2;
658532ed618SSoby Mathew 	cpu_context_t *ctx = cm_get_context(security_state);
65940daecc1SAntonio Nino Diaz 	bool el2_unused = false;
660a0fee747SAntonio Nino Diaz 	uint64_t hcr_el2 = 0U;
661532ed618SSoby Mathew 
662a0fee747SAntonio Nino Diaz 	assert(ctx != NULL);
663532ed618SSoby Mathew 
664532ed618SSoby Mathew 	if (security_state == NON_SECURE) {
665ddb615b4SJuan Pablo Conde 		uint64_t el2_implemented = el_implemented(2);
666ddb615b4SJuan Pablo Conde 
667f1be00daSLouis Mayencourt 		scr_el3 = read_ctx_reg(get_el3state_ctx(ctx),
668a0fee747SAntonio Nino Diaz 						 CTX_SCR_EL3);
669ddb615b4SJuan Pablo Conde 
670ddb615b4SJuan Pablo Conde 		if (((scr_el3 & SCR_HCE_BIT) != 0U)
671ddb615b4SJuan Pablo Conde 			|| (el2_implemented != EL_IMPL_NONE)) {
672ddb615b4SJuan Pablo Conde 			/*
673ddb615b4SJuan Pablo Conde 			 * If context is not being used for EL2, initialize
674ddb615b4SJuan Pablo Conde 			 * HCRX_EL2 with its init value here.
675ddb615b4SJuan Pablo Conde 			 */
676ddb615b4SJuan Pablo Conde 			if (is_feat_hcx_supported()) {
677ddb615b4SJuan Pablo Conde 				write_hcrx_el2(HCRX_EL2_INIT_VAL);
678ddb615b4SJuan Pablo Conde 			}
679ddb615b4SJuan Pablo Conde 		}
680ddb615b4SJuan Pablo Conde 
681a0fee747SAntonio Nino Diaz 		if ((scr_el3 & SCR_HCE_BIT) != 0U) {
682532ed618SSoby Mathew 			/* Use SCTLR_EL1.EE value to initialise sctlr_el2 */
6832825946eSMax Shvetsov 			sctlr_elx = read_ctx_reg(get_el1_sysregs_ctx(ctx),
684532ed618SSoby Mathew 							   CTX_SCTLR_EL1);
6852e09d4f8SKen Kuang 			sctlr_elx &= SCTLR_EE_BIT;
686532ed618SSoby Mathew 			sctlr_elx |= SCTLR_EL2_RES1;
6875f5d1ed7SLouis Mayencourt #if ERRATA_A75_764081
6885f5d1ed7SLouis Mayencourt 			/*
6895f5d1ed7SLouis Mayencourt 			 * If workaround of errata 764081 for Cortex-A75 is used
6905f5d1ed7SLouis Mayencourt 			 * then set SCTLR_EL2.IESB to enable Implicit Error
6915f5d1ed7SLouis Mayencourt 			 * Synchronization Barrier.
6925f5d1ed7SLouis Mayencourt 			 */
6935f5d1ed7SLouis Mayencourt 			sctlr_elx |= SCTLR_IESB_BIT;
6945f5d1ed7SLouis Mayencourt #endif
695532ed618SSoby Mathew 			write_sctlr_el2(sctlr_elx);
696ddb615b4SJuan Pablo Conde 		} else if (el2_implemented != EL_IMPL_NONE) {
69740daecc1SAntonio Nino Diaz 			el2_unused = true;
6980fd0f222SDimitris Papastamos 
69918f2efd6SDavid Cunado 			/*
70018f2efd6SDavid Cunado 			 * EL2 present but unused, need to disable safely.
70118f2efd6SDavid Cunado 			 * SCTLR_EL2 can be ignored in this case.
70218f2efd6SDavid Cunado 			 *
7033ff4aaacSJeenu Viswambharan 			 * Set EL2 register width appropriately: Set HCR_EL2
7043ff4aaacSJeenu Viswambharan 			 * field to match SCR_EL3.RW.
70518f2efd6SDavid Cunado 			 */
706a0fee747SAntonio Nino Diaz 			if ((scr_el3 & SCR_RW_BIT) != 0U)
7073ff4aaacSJeenu Viswambharan 				hcr_el2 |= HCR_RW_BIT;
7083ff4aaacSJeenu Viswambharan 
7093ff4aaacSJeenu Viswambharan 			/*
7103ff4aaacSJeenu Viswambharan 			 * For Armv8.3 pointer authentication feature, disable
7113ff4aaacSJeenu Viswambharan 			 * traps to EL2 when accessing key registers or using
7123ff4aaacSJeenu Viswambharan 			 * pointer authentication instructions from lower ELs.
7133ff4aaacSJeenu Viswambharan 			 */
7143ff4aaacSJeenu Viswambharan 			hcr_el2 |= (HCR_API_BIT | HCR_APK_BIT);
7153ff4aaacSJeenu Viswambharan 
7163ff4aaacSJeenu Viswambharan 			write_hcr_el2(hcr_el2);
717532ed618SSoby Mathew 
71818f2efd6SDavid Cunado 			/*
71918f2efd6SDavid Cunado 			 * Initialise CPTR_EL2 setting all fields rather than
72018f2efd6SDavid Cunado 			 * relying on the hw. All fields have architecturally
72118f2efd6SDavid Cunado 			 * UNKNOWN reset values.
72218f2efd6SDavid Cunado 			 *
72318f2efd6SDavid Cunado 			 * CPTR_EL2.TCPAC: Set to zero so that Non-secure EL1
72418f2efd6SDavid Cunado 			 *  accesses to the CPACR_EL1 or CPACR from both
72518f2efd6SDavid Cunado 			 *  Execution states do not trap to EL2.
72618f2efd6SDavid Cunado 			 *
72718f2efd6SDavid Cunado 			 * CPTR_EL2.TTA: Set to zero so that Non-secure System
72818f2efd6SDavid Cunado 			 *  register accesses to the trace registers from both
72918f2efd6SDavid Cunado 			 *  Execution states do not trap to EL2.
730d4582d30SManish V Badarkhe 			 *  If PE trace unit System registers are not implemented
731d4582d30SManish V Badarkhe 			 *  then this bit is reserved, and must be set to zero.
73218f2efd6SDavid Cunado 			 *
73318f2efd6SDavid Cunado 			 * CPTR_EL2.TFP: Set to zero so that Non-secure accesses
73418f2efd6SDavid Cunado 			 *  to SIMD and floating-point functionality from both
73518f2efd6SDavid Cunado 			 *  Execution states do not trap to EL2.
73618f2efd6SDavid Cunado 			 */
73718f2efd6SDavid Cunado 			write_cptr_el2(CPTR_EL2_RESET_VAL &
73818f2efd6SDavid Cunado 					~(CPTR_EL2_TCPAC_BIT | CPTR_EL2_TTA_BIT
73918f2efd6SDavid Cunado 					| CPTR_EL2_TFP_BIT));
740532ed618SSoby Mathew 
74118f2efd6SDavid Cunado 			/*
7428aabea33SPaul Beesley 			 * Initialise CNTHCTL_EL2. All fields are
74318f2efd6SDavid Cunado 			 * architecturally UNKNOWN on reset and are set to zero
74418f2efd6SDavid Cunado 			 * except for field(s) listed below.
74518f2efd6SDavid Cunado 			 *
746c5ea4f8aSZelalem Aweke 			 * CNTHCTL_EL2.EL1PTEN: Set to one to disable traps to
74718f2efd6SDavid Cunado 			 *  Hyp mode of Non-secure EL0 and EL1 accesses to the
74818f2efd6SDavid Cunado 			 *  physical timer registers.
74918f2efd6SDavid Cunado 			 *
75018f2efd6SDavid Cunado 			 * CNTHCTL_EL2.EL1PCTEN: Set to one to disable traps to
75118f2efd6SDavid Cunado 			 *  Hyp mode of  Non-secure EL0 and EL1 accesses to the
75218f2efd6SDavid Cunado 			 *  physical counter registers.
75318f2efd6SDavid Cunado 			 */
75418f2efd6SDavid Cunado 			write_cnthctl_el2(CNTHCTL_RESET_VAL |
75518f2efd6SDavid Cunado 						EL1PCEN_BIT | EL1PCTEN_BIT);
756532ed618SSoby Mathew 
75718f2efd6SDavid Cunado 			/*
75818f2efd6SDavid Cunado 			 * Initialise CNTVOFF_EL2 to zero as it resets to an
75918f2efd6SDavid Cunado 			 * architecturally UNKNOWN value.
76018f2efd6SDavid Cunado 			 */
761532ed618SSoby Mathew 			write_cntvoff_el2(0);
762532ed618SSoby Mathew 
76318f2efd6SDavid Cunado 			/*
76418f2efd6SDavid Cunado 			 * Set VPIDR_EL2 and VMPIDR_EL2 to match MIDR_EL1 and
76518f2efd6SDavid Cunado 			 * MPIDR_EL1 respectively.
76618f2efd6SDavid Cunado 			 */
767532ed618SSoby Mathew 			write_vpidr_el2(read_midr_el1());
768532ed618SSoby Mathew 			write_vmpidr_el2(read_mpidr_el1());
769532ed618SSoby Mathew 
770532ed618SSoby Mathew 			/*
77118f2efd6SDavid Cunado 			 * Initialise VTTBR_EL2. All fields are architecturally
77218f2efd6SDavid Cunado 			 * UNKNOWN on reset.
77318f2efd6SDavid Cunado 			 *
77418f2efd6SDavid Cunado 			 * VTTBR_EL2.VMID: Set to zero. Even though EL1&0 stage
77518f2efd6SDavid Cunado 			 *  2 address translation is disabled, cache maintenance
77618f2efd6SDavid Cunado 			 *  operations depend on the VMID.
77718f2efd6SDavid Cunado 			 *
77818f2efd6SDavid Cunado 			 * VTTBR_EL2.BADDR: Set to zero as EL1&0 stage 2 address
77918f2efd6SDavid Cunado 			 *  translation is disabled.
780532ed618SSoby Mathew 			 */
78118f2efd6SDavid Cunado 			write_vttbr_el2(VTTBR_RESET_VAL &
78218f2efd6SDavid Cunado 				~((VTTBR_VMID_MASK << VTTBR_VMID_SHIFT)
78318f2efd6SDavid Cunado 				| (VTTBR_BADDR_MASK << VTTBR_BADDR_SHIFT)));
78418f2efd6SDavid Cunado 
785495f3d3cSDavid Cunado 			/*
78618f2efd6SDavid Cunado 			 * Initialise MDCR_EL2, setting all fields rather than
78718f2efd6SDavid Cunado 			 * relying on hw. Some fields are architecturally
78818f2efd6SDavid Cunado 			 * UNKNOWN on reset.
78918f2efd6SDavid Cunado 			 *
790e290a8fcSAlexei Fedorov 			 * MDCR_EL2.TTRF: Set to zero so that access to Trace
791e290a8fcSAlexei Fedorov 			 *  Filter Control register TRFCR_EL1 at EL1 is not
792e290a8fcSAlexei Fedorov 			 *  trapped to EL2. This bit is RES0 in versions of
793e290a8fcSAlexei Fedorov 			 *  the architecture earlier than ARMv8.4.
794e290a8fcSAlexei Fedorov 			 *
795e290a8fcSAlexei Fedorov 			 * MDCR_EL2.TPMS: Set to zero so that accesses to
796e290a8fcSAlexei Fedorov 			 *  Statistical Profiling control registers from EL1
797e290a8fcSAlexei Fedorov 			 *  do not trap to EL2. This bit is RES0 when SPE is
798e290a8fcSAlexei Fedorov 			 *  not implemented.
799e290a8fcSAlexei Fedorov 			 *
80018f2efd6SDavid Cunado 			 * MDCR_EL2.TDRA: Set to zero so that Non-secure EL0 and
80118f2efd6SDavid Cunado 			 *  EL1 System register accesses to the Debug ROM
80218f2efd6SDavid Cunado 			 *  registers are not trapped to EL2.
80318f2efd6SDavid Cunado 			 *
80418f2efd6SDavid Cunado 			 * MDCR_EL2.TDOSA: Set to zero so that Non-secure EL1
80518f2efd6SDavid Cunado 			 *  System register accesses to the powerdown debug
80618f2efd6SDavid Cunado 			 *  registers are not trapped to EL2.
80718f2efd6SDavid Cunado 			 *
80818f2efd6SDavid Cunado 			 * MDCR_EL2.TDA: Set to zero so that System register
80918f2efd6SDavid Cunado 			 *  accesses to the debug registers do not trap to EL2.
81018f2efd6SDavid Cunado 			 *
81118f2efd6SDavid Cunado 			 * MDCR_EL2.TDE: Set to zero so that debug exceptions
81218f2efd6SDavid Cunado 			 *  are not routed to EL2.
81318f2efd6SDavid Cunado 			 *
81440ff9074SManish V Badarkhe 			 * MDCR_EL2.E2TB: Set to zero so that the trace Buffer
81540ff9074SManish V Badarkhe 			 *  owning exception level is NS-EL1 and, tracing is
81640ff9074SManish V Badarkhe 			 *  prohibited at NS-EL2. These bits are RES0 when
81740ff9074SManish V Badarkhe 			 *  FEAT_TRBE is not implemented.
818495f3d3cSDavid Cunado 			 */
819*c73686a1SBoyan Karatotev 			mdcr_el2 = ((MDCR_EL2_RESET_VAL) & ~(MDCR_EL2_TTRF |
820e290a8fcSAlexei Fedorov 				     MDCR_EL2_TDRA_BIT | MDCR_EL2_TDOSA_BIT |
821e290a8fcSAlexei Fedorov 				     MDCR_EL2_TDA_BIT | MDCR_EL2_TDE_BIT |
822*c73686a1SBoyan Karatotev 				     MDCR_EL2_E2TB(MDCR_EL2_E2TB_EL1)));
823d832aee9Sdp-arm 
824d832aee9Sdp-arm 			write_mdcr_el2(mdcr_el2);
825d832aee9Sdp-arm 
826939f66d6SDavid Cunado 			/*
82718f2efd6SDavid Cunado 			 * Initialise HSTR_EL2. All fields are architecturally
82818f2efd6SDavid Cunado 			 * UNKNOWN on reset.
82918f2efd6SDavid Cunado 			 *
83018f2efd6SDavid Cunado 			 * HSTR_EL2.T<n>: Set all these fields to zero so that
83118f2efd6SDavid Cunado 			 *  Non-secure EL0 or EL1 accesses to System registers
83218f2efd6SDavid Cunado 			 *  do not trap to EL2.
833939f66d6SDavid Cunado 			 */
83418f2efd6SDavid Cunado 			write_hstr_el2(HSTR_EL2_RESET_VAL & ~(HSTR_EL2_T_MASK));
835939f66d6SDavid Cunado 			/*
83618f2efd6SDavid Cunado 			 * Initialise CNTHP_CTL_EL2. All fields are
83718f2efd6SDavid Cunado 			 * architecturally UNKNOWN on reset.
83818f2efd6SDavid Cunado 			 *
83918f2efd6SDavid Cunado 			 * CNTHP_CTL_EL2:ENABLE: Set to zero to disable the EL2
84018f2efd6SDavid Cunado 			 *  physical timer and prevent timer interrupts.
841939f66d6SDavid Cunado 			 */
84218f2efd6SDavid Cunado 			write_cnthp_ctl_el2(CNTHP_CTL_RESET_VAL &
84318f2efd6SDavid Cunado 						~(CNTHP_CTL_ENABLE_BIT));
84424a70738SBoyan Karatotev 
84524a70738SBoyan Karatotev 			manage_extensions_nonsecure_el2_unused();
846532ed618SSoby Mathew 		}
84724a70738SBoyan Karatotev 		manage_extensions_nonsecure_mixed(el2_unused, ctx);
848532ed618SSoby Mathew 	}
849532ed618SSoby Mathew 
85017b4c0ddSDimitris Papastamos 	cm_el1_sysregs_context_restore(security_state);
85117b4c0ddSDimitris Papastamos 	cm_set_next_eret_context(security_state);
852532ed618SSoby Mathew }
853532ed618SSoby Mathew 
85428f39f02SMax Shvetsov #if CTX_INCLUDE_EL2_REGS
855bb7b85a3SAndre Przywara 
856bb7b85a3SAndre Przywara static void el2_sysregs_context_save_fgt(el2_sysregs_t *ctx)
857bb7b85a3SAndre Przywara {
858bb7b85a3SAndre Przywara 	write_ctx_reg(ctx, CTX_HDFGRTR_EL2, read_hdfgrtr_el2());
859bb7b85a3SAndre Przywara 	if (is_feat_amu_supported()) {
860bb7b85a3SAndre Przywara 		write_ctx_reg(ctx, CTX_HAFGRTR_EL2, read_hafgrtr_el2());
861bb7b85a3SAndre Przywara 	}
862bb7b85a3SAndre Przywara 	write_ctx_reg(ctx, CTX_HDFGWTR_EL2, read_hdfgwtr_el2());
863bb7b85a3SAndre Przywara 	write_ctx_reg(ctx, CTX_HFGITR_EL2, read_hfgitr_el2());
864bb7b85a3SAndre Przywara 	write_ctx_reg(ctx, CTX_HFGRTR_EL2, read_hfgrtr_el2());
865bb7b85a3SAndre Przywara 	write_ctx_reg(ctx, CTX_HFGWTR_EL2, read_hfgwtr_el2());
866bb7b85a3SAndre Przywara }
867bb7b85a3SAndre Przywara 
868bb7b85a3SAndre Przywara static void el2_sysregs_context_restore_fgt(el2_sysregs_t *ctx)
869bb7b85a3SAndre Przywara {
870bb7b85a3SAndre Przywara 	write_hdfgrtr_el2(read_ctx_reg(ctx, CTX_HDFGRTR_EL2));
871bb7b85a3SAndre Przywara 	if (is_feat_amu_supported()) {
872bb7b85a3SAndre Przywara 		write_hafgrtr_el2(read_ctx_reg(ctx, CTX_HAFGRTR_EL2));
873bb7b85a3SAndre Przywara 	}
874bb7b85a3SAndre Przywara 	write_hdfgwtr_el2(read_ctx_reg(ctx, CTX_HDFGWTR_EL2));
875bb7b85a3SAndre Przywara 	write_hfgitr_el2(read_ctx_reg(ctx, CTX_HFGITR_EL2));
876bb7b85a3SAndre Przywara 	write_hfgrtr_el2(read_ctx_reg(ctx, CTX_HFGRTR_EL2));
877bb7b85a3SAndre Przywara 	write_hfgwtr_el2(read_ctx_reg(ctx, CTX_HFGWTR_EL2));
878bb7b85a3SAndre Przywara }
879bb7b85a3SAndre Przywara 
8809448f2b8SAndre Przywara static void el2_sysregs_context_save_mpam(el2_sysregs_t *ctx)
8819448f2b8SAndre Przywara {
8829448f2b8SAndre Przywara 	u_register_t mpam_idr = read_mpamidr_el1();
8839448f2b8SAndre Przywara 
8849448f2b8SAndre Przywara 	write_ctx_reg(ctx, CTX_MPAM2_EL2, read_mpam2_el2());
8859448f2b8SAndre Przywara 
8869448f2b8SAndre Przywara 	/*
8879448f2b8SAndre Przywara 	 * The context registers that we intend to save would be part of the
8889448f2b8SAndre Przywara 	 * PE's system register frame only if MPAMIDR_EL1.HAS_HCR == 1.
8899448f2b8SAndre Przywara 	 */
8909448f2b8SAndre Przywara 	if ((mpam_idr & MPAMIDR_HAS_HCR_BIT) == 0U) {
8919448f2b8SAndre Przywara 		return;
8929448f2b8SAndre Przywara 	}
8939448f2b8SAndre Przywara 
8949448f2b8SAndre Przywara 	/*
8959448f2b8SAndre Przywara 	 * MPAMHCR_EL2, MPAMVPMV_EL2 and MPAMVPM0_EL2 are always present if
8969448f2b8SAndre Przywara 	 * MPAMIDR_HAS_HCR_BIT == 1.
8979448f2b8SAndre Przywara 	 */
8989448f2b8SAndre Przywara 	write_ctx_reg(ctx, CTX_MPAMHCR_EL2, read_mpamhcr_el2());
8999448f2b8SAndre Przywara 	write_ctx_reg(ctx, CTX_MPAMVPM0_EL2, read_mpamvpm0_el2());
9009448f2b8SAndre Przywara 	write_ctx_reg(ctx, CTX_MPAMVPMV_EL2, read_mpamvpmv_el2());
9019448f2b8SAndre Przywara 
9029448f2b8SAndre Przywara 	/*
9039448f2b8SAndre Przywara 	 * The number of MPAMVPM registers is implementation defined, their
9049448f2b8SAndre Przywara 	 * number is stored in the MPAMIDR_EL1 register.
9059448f2b8SAndre Przywara 	 */
9069448f2b8SAndre Przywara 	switch ((mpam_idr >> MPAMIDR_EL1_VPMR_MAX_SHIFT) & MPAMIDR_EL1_VPMR_MAX_MASK) {
9079448f2b8SAndre Przywara 	case 7:
9089448f2b8SAndre Przywara 		write_ctx_reg(ctx, CTX_MPAMVPM7_EL2, read_mpamvpm7_el2());
9099448f2b8SAndre Przywara 		__fallthrough;
9109448f2b8SAndre Przywara 	case 6:
9119448f2b8SAndre Przywara 		write_ctx_reg(ctx, CTX_MPAMVPM6_EL2, read_mpamvpm6_el2());
9129448f2b8SAndre Przywara 		__fallthrough;
9139448f2b8SAndre Przywara 	case 5:
9149448f2b8SAndre Przywara 		write_ctx_reg(ctx, CTX_MPAMVPM5_EL2, read_mpamvpm5_el2());
9159448f2b8SAndre Przywara 		__fallthrough;
9169448f2b8SAndre Przywara 	case 4:
9179448f2b8SAndre Przywara 		write_ctx_reg(ctx, CTX_MPAMVPM4_EL2, read_mpamvpm4_el2());
9189448f2b8SAndre Przywara 		__fallthrough;
9199448f2b8SAndre Przywara 	case 3:
9209448f2b8SAndre Przywara 		write_ctx_reg(ctx, CTX_MPAMVPM3_EL2, read_mpamvpm3_el2());
9219448f2b8SAndre Przywara 		__fallthrough;
9229448f2b8SAndre Przywara 	case 2:
9239448f2b8SAndre Przywara 		write_ctx_reg(ctx, CTX_MPAMVPM2_EL2, read_mpamvpm2_el2());
9249448f2b8SAndre Przywara 		__fallthrough;
9259448f2b8SAndre Przywara 	case 1:
9269448f2b8SAndre Przywara 		write_ctx_reg(ctx, CTX_MPAMVPM1_EL2, read_mpamvpm1_el2());
9279448f2b8SAndre Przywara 		break;
9289448f2b8SAndre Przywara 	}
9299448f2b8SAndre Przywara }
9309448f2b8SAndre Przywara 
9319448f2b8SAndre Przywara static void el2_sysregs_context_restore_mpam(el2_sysregs_t *ctx)
9329448f2b8SAndre Przywara {
9339448f2b8SAndre Przywara 	u_register_t mpam_idr = read_mpamidr_el1();
9349448f2b8SAndre Przywara 
9359448f2b8SAndre Przywara 	write_mpam2_el2(read_ctx_reg(ctx, CTX_MPAM2_EL2));
9369448f2b8SAndre Przywara 
9379448f2b8SAndre Przywara 	if ((mpam_idr & MPAMIDR_HAS_HCR_BIT) == 0U) {
9389448f2b8SAndre Przywara 		return;
9399448f2b8SAndre Przywara 	}
9409448f2b8SAndre Przywara 
9419448f2b8SAndre Przywara 	write_mpamhcr_el2(read_ctx_reg(ctx, CTX_MPAMHCR_EL2));
9429448f2b8SAndre Przywara 	write_mpamvpm0_el2(read_ctx_reg(ctx, CTX_MPAMVPM0_EL2));
9439448f2b8SAndre Przywara 	write_mpamvpmv_el2(read_ctx_reg(ctx, CTX_MPAMVPMV_EL2));
9449448f2b8SAndre Przywara 
9459448f2b8SAndre Przywara 	switch ((mpam_idr >> MPAMIDR_EL1_VPMR_MAX_SHIFT) & MPAMIDR_EL1_VPMR_MAX_MASK) {
9469448f2b8SAndre Przywara 	case 7:
9479448f2b8SAndre Przywara 		write_mpamvpm7_el2(read_ctx_reg(ctx, CTX_MPAMVPM7_EL2));
9489448f2b8SAndre Przywara 		__fallthrough;
9499448f2b8SAndre Przywara 	case 6:
9509448f2b8SAndre Przywara 		write_mpamvpm6_el2(read_ctx_reg(ctx, CTX_MPAMVPM6_EL2));
9519448f2b8SAndre Przywara 		__fallthrough;
9529448f2b8SAndre Przywara 	case 5:
9539448f2b8SAndre Przywara 		write_mpamvpm5_el2(read_ctx_reg(ctx, CTX_MPAMVPM5_EL2));
9549448f2b8SAndre Przywara 		__fallthrough;
9559448f2b8SAndre Przywara 	case 4:
9569448f2b8SAndre Przywara 		write_mpamvpm4_el2(read_ctx_reg(ctx, CTX_MPAMVPM4_EL2));
9579448f2b8SAndre Przywara 		__fallthrough;
9589448f2b8SAndre Przywara 	case 3:
9599448f2b8SAndre Przywara 		write_mpamvpm3_el2(read_ctx_reg(ctx, CTX_MPAMVPM3_EL2));
9609448f2b8SAndre Przywara 		__fallthrough;
9619448f2b8SAndre Przywara 	case 2:
9629448f2b8SAndre Przywara 		write_mpamvpm2_el2(read_ctx_reg(ctx, CTX_MPAMVPM2_EL2));
9639448f2b8SAndre Przywara 		__fallthrough;
9649448f2b8SAndre Przywara 	case 1:
9659448f2b8SAndre Przywara 		write_mpamvpm1_el2(read_ctx_reg(ctx, CTX_MPAMVPM1_EL2));
9669448f2b8SAndre Przywara 		break;
9679448f2b8SAndre Przywara 	}
9689448f2b8SAndre Przywara }
9699448f2b8SAndre Przywara 
97028f39f02SMax Shvetsov /*******************************************************************************
97128f39f02SMax Shvetsov  * Save EL2 sysreg context
97228f39f02SMax Shvetsov  ******************************************************************************/
97328f39f02SMax Shvetsov void cm_el2_sysregs_context_save(uint32_t security_state)
97428f39f02SMax Shvetsov {
97528f39f02SMax Shvetsov 	u_register_t scr_el3 = read_scr();
97628f39f02SMax Shvetsov 
97728f39f02SMax Shvetsov 	/*
978c5ea4f8aSZelalem Aweke 	 * Always save the non-secure and realm EL2 context, only save the
97928f39f02SMax Shvetsov 	 * S-EL2 context if S-EL2 is enabled.
98028f39f02SMax Shvetsov 	 */
981c5ea4f8aSZelalem Aweke 	if ((security_state != SECURE) ||
9826b704da3SRuari Phipps 	    ((security_state == SECURE) && ((scr_el3 & SCR_EEL2_BIT) != 0U))) {
98328f39f02SMax Shvetsov 		cpu_context_t *ctx;
984d20052f3SZelalem Aweke 		el2_sysregs_t *el2_sysregs_ctx;
98528f39f02SMax Shvetsov 
98628f39f02SMax Shvetsov 		ctx = cm_get_context(security_state);
98728f39f02SMax Shvetsov 		assert(ctx != NULL);
98828f39f02SMax Shvetsov 
989d20052f3SZelalem Aweke 		el2_sysregs_ctx = get_el2_sysregs_ctx(ctx);
990d20052f3SZelalem Aweke 
991d20052f3SZelalem Aweke 		el2_sysregs_context_save_common(el2_sysregs_ctx);
992d20052f3SZelalem Aweke #if CTX_INCLUDE_MTE_REGS
993d20052f3SZelalem Aweke 		el2_sysregs_context_save_mte(el2_sysregs_ctx);
994d20052f3SZelalem Aweke #endif
9959448f2b8SAndre Przywara 		if (is_feat_mpam_supported()) {
996d20052f3SZelalem Aweke 			el2_sysregs_context_save_mpam(el2_sysregs_ctx);
9979448f2b8SAndre Przywara 		}
998bb7b85a3SAndre Przywara 
999de8c4892SAndre Przywara 		if (is_feat_fgt_supported()) {
1000d20052f3SZelalem Aweke 			el2_sysregs_context_save_fgt(el2_sysregs_ctx);
1001de8c4892SAndre Przywara 		}
1002bb7b85a3SAndre Przywara 
1003b8f03d29SAndre Przywara 		if (is_feat_ecv_v2_supported()) {
1004b8f03d29SAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_CNTPOFF_EL2,
1005b8f03d29SAndre Przywara 				      read_cntpoff_el2());
1006b8f03d29SAndre Przywara 		}
1007b8f03d29SAndre Przywara 
1008ea735bf5SAndre Przywara 		if (is_feat_vhe_supported()) {
1009ea735bf5SAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_CONTEXTIDR_EL2,
1010ea735bf5SAndre Przywara 				      read_contextidr_el2());
1011ea735bf5SAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_TTBR1_EL2,
1012ea735bf5SAndre Przywara 				      read_ttbr1_el2());
1013ea735bf5SAndre Przywara 		}
10146503ff29SAndre Przywara 
10156503ff29SAndre Przywara 		if (is_feat_ras_supported()) {
10166503ff29SAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_VDISR_EL2,
10176503ff29SAndre Przywara 				      read_vdisr_el2());
10186503ff29SAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_VSESR_EL2,
10196503ff29SAndre Przywara 				      read_vsesr_el2());
10206503ff29SAndre Przywara 		}
1021d5384b69SAndre Przywara 
1022d5384b69SAndre Przywara 		if (is_feat_nv2_supported()) {
1023d5384b69SAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_VNCR_EL2,
1024d5384b69SAndre Przywara 				      read_vncr_el2());
1025d5384b69SAndre Przywara 		}
1026d5384b69SAndre Przywara 
1027fc8d2d39SAndre Przywara 		if (is_feat_trf_supported()) {
1028fc8d2d39SAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_TRFCR_EL2, read_trfcr_el2());
1029fc8d2d39SAndre Przywara 		}
10307db710f0SAndre Przywara 
10317db710f0SAndre Przywara 		if (is_feat_csv2_2_supported()) {
10327db710f0SAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_SCXTNUM_EL2,
10337db710f0SAndre Przywara 				      read_scxtnum_el2());
10347db710f0SAndre Przywara 		}
10357db710f0SAndre Przywara 
1036c5a3ebbdSAndre Przywara 		if (is_feat_hcx_supported()) {
1037c5a3ebbdSAndre Przywara 			write_ctx_reg(el2_sysregs_ctx, CTX_HCRX_EL2, read_hcrx_el2());
1038c5a3ebbdSAndre Przywara 		}
1039d3331603SMark Brown 		if (is_feat_tcr2_supported()) {
1040d3331603SMark Brown 			write_ctx_reg(el2_sysregs_ctx, CTX_TCR2_EL2, read_tcr2_el2());
1041d3331603SMark Brown 		}
1042062b6c6bSMark Brown 		if (is_feat_sxpie_supported()) {
1043062b6c6bSMark Brown 			write_ctx_reg(el2_sysregs_ctx, CTX_PIRE0_EL2, read_pire0_el2());
1044062b6c6bSMark Brown 			write_ctx_reg(el2_sysregs_ctx, CTX_PIR_EL2, read_pir_el2());
1045062b6c6bSMark Brown 		}
1046062b6c6bSMark Brown 		if (is_feat_s2pie_supported()) {
1047062b6c6bSMark Brown 			write_ctx_reg(el2_sysregs_ctx, CTX_S2PIR_EL2, read_s2pir_el2());
1048062b6c6bSMark Brown 		}
1049062b6c6bSMark Brown 		if (is_feat_sxpoe_supported()) {
1050062b6c6bSMark Brown 			write_ctx_reg(el2_sysregs_ctx, CTX_POR_EL2, read_por_el2());
1051062b6c6bSMark Brown 		}
1052688ab57bSMark Brown 		if (is_feat_gcs_supported()) {
1053688ab57bSMark Brown 			write_ctx_reg(el2_sysregs_ctx, CTX_GCSPR_EL2, read_gcspr_el2());
1054688ab57bSMark Brown 			write_ctx_reg(el2_sysregs_ctx, CTX_GCSCR_EL2, read_gcscr_el2());
1055688ab57bSMark Brown 		}
105628f39f02SMax Shvetsov 	}
105728f39f02SMax Shvetsov }
105828f39f02SMax Shvetsov 
105928f39f02SMax Shvetsov /*******************************************************************************
106028f39f02SMax Shvetsov  * Restore EL2 sysreg context
106128f39f02SMax Shvetsov  ******************************************************************************/
106228f39f02SMax Shvetsov void cm_el2_sysregs_context_restore(uint32_t security_state)
106328f39f02SMax Shvetsov {
106428f39f02SMax Shvetsov 	u_register_t scr_el3 = read_scr();
106528f39f02SMax Shvetsov 
106628f39f02SMax Shvetsov 	/*
1067c5ea4f8aSZelalem Aweke 	 * Always restore the non-secure and realm EL2 context, only restore the
106828f39f02SMax Shvetsov 	 * S-EL2 context if S-EL2 is enabled.
106928f39f02SMax Shvetsov 	 */
1070c5ea4f8aSZelalem Aweke 	if ((security_state != SECURE) ||
10716b704da3SRuari Phipps 	    ((security_state == SECURE) && ((scr_el3 & SCR_EEL2_BIT) != 0U))) {
107228f39f02SMax Shvetsov 		cpu_context_t *ctx;
1073d20052f3SZelalem Aweke 		el2_sysregs_t *el2_sysregs_ctx;
107428f39f02SMax Shvetsov 
107528f39f02SMax Shvetsov 		ctx = cm_get_context(security_state);
107628f39f02SMax Shvetsov 		assert(ctx != NULL);
107728f39f02SMax Shvetsov 
1078d20052f3SZelalem Aweke 		el2_sysregs_ctx = get_el2_sysregs_ctx(ctx);
1079d20052f3SZelalem Aweke 
1080d20052f3SZelalem Aweke 		el2_sysregs_context_restore_common(el2_sysregs_ctx);
1081d20052f3SZelalem Aweke #if CTX_INCLUDE_MTE_REGS
1082d20052f3SZelalem Aweke 		el2_sysregs_context_restore_mte(el2_sysregs_ctx);
1083d20052f3SZelalem Aweke #endif
10849448f2b8SAndre Przywara 		if (is_feat_mpam_supported()) {
1085d20052f3SZelalem Aweke 			el2_sysregs_context_restore_mpam(el2_sysregs_ctx);
10869448f2b8SAndre Przywara 		}
1087bb7b85a3SAndre Przywara 
1088de8c4892SAndre Przywara 		if (is_feat_fgt_supported()) {
1089d20052f3SZelalem Aweke 			el2_sysregs_context_restore_fgt(el2_sysregs_ctx);
1090de8c4892SAndre Przywara 		}
1091bb7b85a3SAndre Przywara 
1092b8f03d29SAndre Przywara 		if (is_feat_ecv_v2_supported()) {
1093b8f03d29SAndre Przywara 			write_cntpoff_el2(read_ctx_reg(el2_sysregs_ctx,
1094b8f03d29SAndre Przywara 						       CTX_CNTPOFF_EL2));
1095b8f03d29SAndre Przywara 		}
1096b8f03d29SAndre Przywara 
1097ea735bf5SAndre Przywara 		if (is_feat_vhe_supported()) {
1098ea735bf5SAndre Przywara 			write_contextidr_el2(read_ctx_reg(el2_sysregs_ctx, CTX_CONTEXTIDR_EL2));
1099ea735bf5SAndre Przywara 			write_ttbr1_el2(read_ctx_reg(el2_sysregs_ctx, CTX_TTBR1_EL2));
1100ea735bf5SAndre Przywara 		}
11016503ff29SAndre Przywara 
11026503ff29SAndre Przywara 		if (is_feat_ras_supported()) {
11036503ff29SAndre Przywara 			write_vdisr_el2(read_ctx_reg(el2_sysregs_ctx, CTX_VDISR_EL2));
11046503ff29SAndre Przywara 			write_vsesr_el2(read_ctx_reg(el2_sysregs_ctx, CTX_VSESR_EL2));
11056503ff29SAndre Przywara 		}
1106d5384b69SAndre Przywara 
1107d5384b69SAndre Przywara 		if (is_feat_nv2_supported()) {
1108d5384b69SAndre Przywara 			write_vncr_el2(read_ctx_reg(el2_sysregs_ctx, CTX_VNCR_EL2));
1109d5384b69SAndre Przywara 		}
1110fc8d2d39SAndre Przywara 		if (is_feat_trf_supported()) {
1111fc8d2d39SAndre Przywara 			write_trfcr_el2(read_ctx_reg(el2_sysregs_ctx, CTX_TRFCR_EL2));
1112fc8d2d39SAndre Przywara 		}
11137db710f0SAndre Przywara 
11147db710f0SAndre Przywara 		if (is_feat_csv2_2_supported()) {
11157db710f0SAndre Przywara 			write_scxtnum_el2(read_ctx_reg(el2_sysregs_ctx,
11167db710f0SAndre Przywara 						       CTX_SCXTNUM_EL2));
11177db710f0SAndre Przywara 		}
11187db710f0SAndre Przywara 
1119c5a3ebbdSAndre Przywara 		if (is_feat_hcx_supported()) {
1120c5a3ebbdSAndre Przywara 			write_hcrx_el2(read_ctx_reg(el2_sysregs_ctx, CTX_HCRX_EL2));
1121c5a3ebbdSAndre Przywara 		}
1122d3331603SMark Brown 		if (is_feat_tcr2_supported()) {
1123d3331603SMark Brown 			write_tcr2_el2(read_ctx_reg(el2_sysregs_ctx, CTX_TCR2_EL2));
1124d3331603SMark Brown 		}
1125062b6c6bSMark Brown 		if (is_feat_sxpie_supported()) {
1126062b6c6bSMark Brown 			write_pire0_el2(read_ctx_reg(el2_sysregs_ctx, CTX_PIRE0_EL2));
1127062b6c6bSMark Brown 			write_pir_el2(read_ctx_reg(el2_sysregs_ctx, CTX_PIR_EL2));
1128062b6c6bSMark Brown 		}
1129062b6c6bSMark Brown 		if (is_feat_s2pie_supported()) {
1130062b6c6bSMark Brown 			write_s2pir_el2(read_ctx_reg(el2_sysregs_ctx, CTX_S2PIR_EL2));
1131062b6c6bSMark Brown 		}
1132062b6c6bSMark Brown 		if (is_feat_sxpoe_supported()) {
1133062b6c6bSMark Brown 			write_por_el2(read_ctx_reg(el2_sysregs_ctx, CTX_POR_EL2));
1134062b6c6bSMark Brown 		}
1135688ab57bSMark Brown 		if (is_feat_gcs_supported()) {
1136688ab57bSMark Brown 			write_gcscr_el2(read_ctx_reg(el2_sysregs_ctx, CTX_GCSCR_EL2));
1137688ab57bSMark Brown 			write_gcspr_el2(read_ctx_reg(el2_sysregs_ctx, CTX_GCSPR_EL2));
1138688ab57bSMark Brown 		}
113928f39f02SMax Shvetsov 	}
114028f39f02SMax Shvetsov }
114128f39f02SMax Shvetsov #endif /* CTX_INCLUDE_EL2_REGS */
114228f39f02SMax Shvetsov 
1143532ed618SSoby Mathew /*******************************************************************************
11448b95e848SZelalem Aweke  * This function is used to exit to Non-secure world. If CTX_INCLUDE_EL2_REGS
11458b95e848SZelalem Aweke  * is enabled, it restores EL1 and EL2 sysreg contexts instead of directly
11468b95e848SZelalem Aweke  * updating EL1 and EL2 registers. Otherwise, it calls the generic
11478b95e848SZelalem Aweke  * cm_prepare_el3_exit function.
11488b95e848SZelalem Aweke  ******************************************************************************/
11498b95e848SZelalem Aweke void cm_prepare_el3_exit_ns(void)
11508b95e848SZelalem Aweke {
11518b95e848SZelalem Aweke #if CTX_INCLUDE_EL2_REGS
11528b95e848SZelalem Aweke 	cpu_context_t *ctx = cm_get_context(NON_SECURE);
11538b95e848SZelalem Aweke 	assert(ctx != NULL);
11548b95e848SZelalem Aweke 
1155b515f541SZelalem Aweke 	/* Assert that EL2 is used. */
1156b515f541SZelalem Aweke #if ENABLE_ASSERTIONS
1157b515f541SZelalem Aweke 	el3_state_t *state = get_el3state_ctx(ctx);
1158b515f541SZelalem Aweke 	u_register_t scr_el3 = read_ctx_reg(state, CTX_SCR_EL3);
1159b515f541SZelalem Aweke #endif
1160b515f541SZelalem Aweke 	assert(((scr_el3 & SCR_HCE_BIT) != 0UL) &&
1161b515f541SZelalem Aweke 			(el_implemented(2U) != EL_IMPL_NONE));
1162b515f541SZelalem Aweke 
11638b95e848SZelalem Aweke 	/*
11648b95e848SZelalem Aweke 	 * Currently some extensions are configured using
11658b95e848SZelalem Aweke 	 * direct register updates. Therefore, do this here
11668b95e848SZelalem Aweke 	 * instead of when setting up context.
11678b95e848SZelalem Aweke 	 */
116824a70738SBoyan Karatotev 	manage_extensions_nonsecure_mixed(0, ctx);
11698b95e848SZelalem Aweke 
11708b95e848SZelalem Aweke 	/*
11718b95e848SZelalem Aweke 	 * Set the NS bit to be able to access the ICC_SRE_EL2
11728b95e848SZelalem Aweke 	 * register when restoring context.
11738b95e848SZelalem Aweke 	 */
11748b95e848SZelalem Aweke 	write_scr_el3(read_scr_el3() | SCR_NS_BIT);
11758b95e848SZelalem Aweke 
117604825031SOlivier Deprez 	/*
117704825031SOlivier Deprez 	 * Ensure the NS bit change is committed before the EL2/EL1
117804825031SOlivier Deprez 	 * state restoration.
117904825031SOlivier Deprez 	 */
118004825031SOlivier Deprez 	isb();
118104825031SOlivier Deprez 
11828b95e848SZelalem Aweke 	/* Restore EL2 and EL1 sysreg contexts */
11838b95e848SZelalem Aweke 	cm_el2_sysregs_context_restore(NON_SECURE);
11848b95e848SZelalem Aweke 	cm_el1_sysregs_context_restore(NON_SECURE);
11858b95e848SZelalem Aweke 	cm_set_next_eret_context(NON_SECURE);
11868b95e848SZelalem Aweke #else
11878b95e848SZelalem Aweke 	cm_prepare_el3_exit(NON_SECURE);
11888b95e848SZelalem Aweke #endif /* CTX_INCLUDE_EL2_REGS */
11898b95e848SZelalem Aweke }
11908b95e848SZelalem Aweke 
11918b95e848SZelalem Aweke /*******************************************************************************
1192532ed618SSoby Mathew  * The next four functions are used by runtime services to save and restore
1193532ed618SSoby Mathew  * EL1 context on the 'cpu_context' structure for the specified security
1194532ed618SSoby Mathew  * state.
1195532ed618SSoby Mathew  ******************************************************************************/
1196532ed618SSoby Mathew void cm_el1_sysregs_context_save(uint32_t security_state)
1197532ed618SSoby Mathew {
1198532ed618SSoby Mathew 	cpu_context_t *ctx;
1199532ed618SSoby Mathew 
1200532ed618SSoby Mathew 	ctx = cm_get_context(security_state);
1201a0fee747SAntonio Nino Diaz 	assert(ctx != NULL);
1202532ed618SSoby Mathew 
12032825946eSMax Shvetsov 	el1_sysregs_context_save(get_el1_sysregs_ctx(ctx));
120417b4c0ddSDimitris Papastamos 
120517b4c0ddSDimitris Papastamos #if IMAGE_BL31
120617b4c0ddSDimitris Papastamos 	if (security_state == SECURE)
120717b4c0ddSDimitris Papastamos 		PUBLISH_EVENT(cm_exited_secure_world);
120817b4c0ddSDimitris Papastamos 	else
120917b4c0ddSDimitris Papastamos 		PUBLISH_EVENT(cm_exited_normal_world);
121017b4c0ddSDimitris Papastamos #endif
1211532ed618SSoby Mathew }
1212532ed618SSoby Mathew 
1213532ed618SSoby Mathew void cm_el1_sysregs_context_restore(uint32_t security_state)
1214532ed618SSoby Mathew {
1215532ed618SSoby Mathew 	cpu_context_t *ctx;
1216532ed618SSoby Mathew 
1217532ed618SSoby Mathew 	ctx = cm_get_context(security_state);
1218a0fee747SAntonio Nino Diaz 	assert(ctx != NULL);
1219532ed618SSoby Mathew 
12202825946eSMax Shvetsov 	el1_sysregs_context_restore(get_el1_sysregs_ctx(ctx));
122117b4c0ddSDimitris Papastamos 
122217b4c0ddSDimitris Papastamos #if IMAGE_BL31
122317b4c0ddSDimitris Papastamos 	if (security_state == SECURE)
122417b4c0ddSDimitris Papastamos 		PUBLISH_EVENT(cm_entering_secure_world);
122517b4c0ddSDimitris Papastamos 	else
122617b4c0ddSDimitris Papastamos 		PUBLISH_EVENT(cm_entering_normal_world);
122717b4c0ddSDimitris Papastamos #endif
1228532ed618SSoby Mathew }
1229532ed618SSoby Mathew 
1230532ed618SSoby Mathew /*******************************************************************************
1231532ed618SSoby Mathew  * This function populates ELR_EL3 member of 'cpu_context' pertaining to the
1232532ed618SSoby Mathew  * given security state with the given entrypoint
1233532ed618SSoby Mathew  ******************************************************************************/
1234532ed618SSoby Mathew void cm_set_elr_el3(uint32_t security_state, uintptr_t entrypoint)
1235532ed618SSoby Mathew {
1236532ed618SSoby Mathew 	cpu_context_t *ctx;
1237532ed618SSoby Mathew 	el3_state_t *state;
1238532ed618SSoby Mathew 
1239532ed618SSoby Mathew 	ctx = cm_get_context(security_state);
1240a0fee747SAntonio Nino Diaz 	assert(ctx != NULL);
1241532ed618SSoby Mathew 
1242532ed618SSoby Mathew 	/* Populate EL3 state so that ERET jumps to the correct entry */
1243532ed618SSoby Mathew 	state = get_el3state_ctx(ctx);
1244532ed618SSoby Mathew 	write_ctx_reg(state, CTX_ELR_EL3, entrypoint);
1245532ed618SSoby Mathew }
1246532ed618SSoby Mathew 
1247532ed618SSoby Mathew /*******************************************************************************
1248532ed618SSoby Mathew  * This function populates ELR_EL3 and SPSR_EL3 members of 'cpu_context'
1249532ed618SSoby Mathew  * pertaining to the given security state
1250532ed618SSoby Mathew  ******************************************************************************/
1251532ed618SSoby Mathew void cm_set_elr_spsr_el3(uint32_t security_state,
1252532ed618SSoby Mathew 			uintptr_t entrypoint, uint32_t spsr)
1253532ed618SSoby Mathew {
1254532ed618SSoby Mathew 	cpu_context_t *ctx;
1255532ed618SSoby Mathew 	el3_state_t *state;
1256532ed618SSoby Mathew 
1257532ed618SSoby Mathew 	ctx = cm_get_context(security_state);
1258a0fee747SAntonio Nino Diaz 	assert(ctx != NULL);
1259532ed618SSoby Mathew 
1260532ed618SSoby Mathew 	/* Populate EL3 state so that ERET jumps to the correct entry */
1261532ed618SSoby Mathew 	state = get_el3state_ctx(ctx);
1262532ed618SSoby Mathew 	write_ctx_reg(state, CTX_ELR_EL3, entrypoint);
1263532ed618SSoby Mathew 	write_ctx_reg(state, CTX_SPSR_EL3, spsr);
1264532ed618SSoby Mathew }
1265532ed618SSoby Mathew 
1266532ed618SSoby Mathew /*******************************************************************************
1267532ed618SSoby Mathew  * This function updates a single bit in the SCR_EL3 member of the 'cpu_context'
1268532ed618SSoby Mathew  * pertaining to the given security state using the value and bit position
1269532ed618SSoby Mathew  * specified in the parameters. It preserves all other bits.
1270532ed618SSoby Mathew  ******************************************************************************/
1271532ed618SSoby Mathew void cm_write_scr_el3_bit(uint32_t security_state,
1272532ed618SSoby Mathew 			  uint32_t bit_pos,
1273532ed618SSoby Mathew 			  uint32_t value)
1274532ed618SSoby Mathew {
1275532ed618SSoby Mathew 	cpu_context_t *ctx;
1276532ed618SSoby Mathew 	el3_state_t *state;
1277f1be00daSLouis Mayencourt 	u_register_t scr_el3;
1278532ed618SSoby Mathew 
1279532ed618SSoby Mathew 	ctx = cm_get_context(security_state);
1280a0fee747SAntonio Nino Diaz 	assert(ctx != NULL);
1281532ed618SSoby Mathew 
1282532ed618SSoby Mathew 	/* Ensure that the bit position is a valid one */
1283d7b5f408SJimmy Brisson 	assert(((1UL << bit_pos) & SCR_VALID_BIT_MASK) != 0U);
1284532ed618SSoby Mathew 
1285532ed618SSoby Mathew 	/* Ensure that the 'value' is only a bit wide */
1286a0fee747SAntonio Nino Diaz 	assert(value <= 1U);
1287532ed618SSoby Mathew 
1288532ed618SSoby Mathew 	/*
1289532ed618SSoby Mathew 	 * Get the SCR_EL3 value from the cpu context, clear the desired bit
1290532ed618SSoby Mathew 	 * and set it to its new value.
1291532ed618SSoby Mathew 	 */
1292532ed618SSoby Mathew 	state = get_el3state_ctx(ctx);
1293f1be00daSLouis Mayencourt 	scr_el3 = read_ctx_reg(state, CTX_SCR_EL3);
1294d7b5f408SJimmy Brisson 	scr_el3 &= ~(1UL << bit_pos);
1295f1be00daSLouis Mayencourt 	scr_el3 |= (u_register_t)value << bit_pos;
1296532ed618SSoby Mathew 	write_ctx_reg(state, CTX_SCR_EL3, scr_el3);
1297532ed618SSoby Mathew }
1298532ed618SSoby Mathew 
1299532ed618SSoby Mathew /*******************************************************************************
1300532ed618SSoby Mathew  * This function retrieves SCR_EL3 member of 'cpu_context' pertaining to the
1301532ed618SSoby Mathew  * given security state.
1302532ed618SSoby Mathew  ******************************************************************************/
1303f1be00daSLouis Mayencourt u_register_t cm_get_scr_el3(uint32_t security_state)
1304532ed618SSoby Mathew {
1305532ed618SSoby Mathew 	cpu_context_t *ctx;
1306532ed618SSoby Mathew 	el3_state_t *state;
1307532ed618SSoby Mathew 
1308532ed618SSoby Mathew 	ctx = cm_get_context(security_state);
1309a0fee747SAntonio Nino Diaz 	assert(ctx != NULL);
1310532ed618SSoby Mathew 
1311532ed618SSoby Mathew 	/* Populate EL3 state so that ERET jumps to the correct entry */
1312532ed618SSoby Mathew 	state = get_el3state_ctx(ctx);
1313f1be00daSLouis Mayencourt 	return read_ctx_reg(state, CTX_SCR_EL3);
1314532ed618SSoby Mathew }
1315532ed618SSoby Mathew 
1316532ed618SSoby Mathew /*******************************************************************************
1317532ed618SSoby Mathew  * This function is used to program the context that's used for exception
1318532ed618SSoby Mathew  * return. This initializes the SP_EL3 to a pointer to a 'cpu_context' set for
1319532ed618SSoby Mathew  * the required security state
1320532ed618SSoby Mathew  ******************************************************************************/
1321532ed618SSoby Mathew void cm_set_next_eret_context(uint32_t security_state)
1322532ed618SSoby Mathew {
1323532ed618SSoby Mathew 	cpu_context_t *ctx;
1324532ed618SSoby Mathew 
1325532ed618SSoby Mathew 	ctx = cm_get_context(security_state);
1326a0fee747SAntonio Nino Diaz 	assert(ctx != NULL);
1327532ed618SSoby Mathew 
1328532ed618SSoby Mathew 	cm_set_next_context(ctx);
1329532ed618SSoby Mathew }
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