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The errata framework has a helper to invoke workarounds, complete with a cpu rev_var check. We can use that directly instead of the apply_cpu_pwr_dwn_errata to save on some code, as well as an extra branch. It's also more readable. Also, apply_erratum invocation in cpu files don't need to check the rev_var as that was already done by the cpu_ops dispatcher for us to end up in the file. Finally, X2 erratum 2768515 only applies in the powerdown sequence, i.e. at runtime. It doesn't achieve anything at reset, so we can label it accordingly. Change-Id: I02f9dd7d0619feb54c870938ea186be5e3a6ca7b Signed-off-by: Boyan Karatotev <boyan.karatotev@arm.com>
222 lines
6.7 KiB
ArmAsm
222 lines
6.7 KiB
ArmAsm
/*
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* Copyright (c) 2019-2024, Arm Limited. All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#include <arch.h>
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#include <asm_macros.S>
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#include <common/bl_common.h>
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#include <cortex_a78.h>
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#include <cpu_macros.S>
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#include <plat_macros.S>
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#include "wa_cve_2022_23960_bhb_vector.S"
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/* Hardware handled coherency */
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#if HW_ASSISTED_COHERENCY == 0
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#error "cortex_a78 must be compiled with HW_ASSISTED_COHERENCY enabled"
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#endif
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.globl cortex_a78_reset_func
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.globl cortex_a78_core_pwr_dwn
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#if WORKAROUND_CVE_2022_23960
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wa_cve_2022_23960_bhb_vector_table CORTEX_A78_BHB_LOOP_COUNT, cortex_a78
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#endif /* WORKAROUND_CVE_2022_23960 */
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workaround_reset_start cortex_a78, ERRATUM(1688305), ERRATA_A78_1688305
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sysreg_bit_set CORTEX_A78_ACTLR2_EL1, CORTEX_A78_ACTLR2_EL1_BIT_1
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workaround_reset_end cortex_a78, ERRATUM(1688305)
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check_erratum_ls cortex_a78, ERRATUM(1688305), CPU_REV(1, 0)
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workaround_reset_start cortex_a78, ERRATUM(1821534), ERRATA_A78_1821534
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sysreg_bit_set CORTEX_A78_ACTLR2_EL1, CORTEX_A78_ACTLR2_EL1_BIT_2
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workaround_reset_end cortex_a78, ERRATUM(1821534)
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check_erratum_ls cortex_a78, ERRATUM(1821534), CPU_REV(1, 0)
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workaround_reset_start cortex_a78, ERRATUM(1941498), ERRATA_A78_1941498
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sysreg_bit_set CORTEX_A78_CPUECTLR_EL1, CORTEX_A78_CPUECTLR_EL1_BIT_8
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workaround_reset_end cortex_a78, ERRATUM(1941498)
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check_erratum_ls cortex_a78, ERRATUM(1941498), CPU_REV(1, 1)
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workaround_reset_start cortex_a78, ERRATUM(1951500), ERRATA_A78_1951500
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msr S3_6_c15_c8_0, xzr
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ldr x0, =0x10E3900002
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msr S3_6_c15_c8_2, x0
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ldr x0, =0x10FFF00083
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msr S3_6_c15_c8_3, x0
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ldr x0, =0x2001003FF
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msr S3_6_c15_c8_1, x0
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mov x0, #1
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msr S3_6_c15_c8_0, x0
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ldr x0, =0x10E3800082
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msr S3_6_c15_c8_2, x0
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ldr x0, =0x10FFF00083
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msr S3_6_c15_c8_3, x0
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ldr x0, =0x2001003FF
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msr S3_6_c15_c8_1, x0
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mov x0, #2
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msr S3_6_c15_c8_0, x0
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ldr x0, =0x10E3800200
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msr S3_6_c15_c8_2, x0
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ldr x0, =0x10FFF003E0
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msr S3_6_c15_c8_3, x0
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ldr x0, =0x2001003FF
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msr S3_6_c15_c8_1, x0
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workaround_reset_end cortex_a78, ERRATUM(1951500)
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check_erratum_range cortex_a78, ERRATUM(1951500), CPU_REV(1, 0), CPU_REV(1, 1)
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workaround_reset_start cortex_a78, ERRATUM(1952683), ERRATA_A78_1952683
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ldr x0,=0x5
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msr S3_6_c15_c8_0,x0
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ldr x0,=0xEEE10A10
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msr S3_6_c15_c8_2,x0
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ldr x0,=0xFFEF0FFF
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msr S3_6_c15_c8_3,x0
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ldr x0,=0x0010F000
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msr S3_6_c15_c8_4,x0
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ldr x0,=0x0010F000
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msr S3_6_c15_c8_5,x0
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ldr x0,=0x40000080023ff
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msr S3_6_c15_c8_1,x0
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ldr x0,=0x6
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msr S3_6_c15_c8_0,x0
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ldr x0,=0xEE640F34
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msr S3_6_c15_c8_2,x0
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ldr x0,=0xFFEF0FFF
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msr S3_6_c15_c8_3,x0
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ldr x0,=0x40000080023ff
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msr S3_6_c15_c8_1,x0
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workaround_reset_end cortex_a78, ERRATUM(1952683)
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check_erratum_ls cortex_a78, ERRATUM(1952683), CPU_REV(0, 0)
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workaround_reset_start cortex_a78, ERRATUM(2132060), ERRATA_A78_2132060
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/* Apply the workaround. */
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mrs x1, CORTEX_A78_CPUECTLR_EL1
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mov x0, #CORTEX_A78_CPUECTLR_EL1_PF_MODE_CNSRV
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bfi x1, x0, #CPUECTLR_EL1_PF_MODE_LSB, #CPUECTLR_EL1_PF_MODE_WIDTH
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msr CORTEX_A78_CPUECTLR_EL1, x1
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workaround_reset_end cortex_a78, ERRATUM(2132060)
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check_erratum_ls cortex_a78, ERRATUM(2132060), CPU_REV(1, 2)
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workaround_reset_start cortex_a78, ERRATUM(2242635), ERRATA_A78_2242635
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ldr x0, =0x5
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msr S3_6_c15_c8_0, x0 /* CPUPSELR_EL3 */
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ldr x0, =0x10F600E000
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msr S3_6_c15_c8_2, x0 /* CPUPOR_EL3 */
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ldr x0, =0x10FF80E000
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msr S3_6_c15_c8_3, x0 /* CPUPMR_EL3 */
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ldr x0, =0x80000000003FF
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msr S3_6_c15_c8_1, x0 /* CPUPCR_EL3 */
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workaround_reset_end cortex_a78, ERRATUM(2242635)
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check_erratum_range cortex_a78, ERRATUM(2242635), CPU_REV(1, 0), CPU_REV(1, 2)
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workaround_reset_start cortex_a78, ERRATUM(2376745), ERRATA_A78_2376745
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sysreg_bit_set CORTEX_A78_ACTLR2_EL1, BIT(0)
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workaround_reset_end cortex_a78, ERRATUM(2376745)
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check_erratum_ls cortex_a78, ERRATUM(2376745), CPU_REV(1, 2)
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workaround_reset_start cortex_a78, ERRATUM(2395406), ERRATA_A78_2395406
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sysreg_bit_set CORTEX_A78_ACTLR2_EL1, BIT(40)
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workaround_reset_end cortex_a78, ERRATUM(2395406)
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check_erratum_ls cortex_a78, ERRATUM(2395406), CPU_REV(1, 2)
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workaround_reset_start cortex_a78, ERRATUM(2742426), ERRATA_A78_2742426
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/* Apply the workaround */
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mrs x1, CORTEX_A78_ACTLR5_EL1
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bic x1, x1, #BIT(56)
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orr x1, x1, #BIT(55)
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msr CORTEX_A78_ACTLR5_EL1, x1
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workaround_reset_end cortex_a78, ERRATUM(2742426)
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check_erratum_ls cortex_a78, ERRATUM(2742426), CPU_REV(1, 2)
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workaround_runtime_start cortex_a78, ERRATUM(2772019), ERRATA_A78_2772019
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/* dsb before isb of power down sequence */
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dsb sy
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workaround_runtime_end cortex_a78, ERRATUM(2772019)
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check_erratum_ls cortex_a78, ERRATUM(2772019), CPU_REV(1, 2)
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workaround_reset_start cortex_a78, ERRATUM(2779479), ERRATA_A78_2779479
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sysreg_bit_set CORTEX_A78_ACTLR3_EL1, BIT(47)
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workaround_reset_end cortex_a78, ERRATUM(2779479)
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check_erratum_ls cortex_a78, ERRATUM(2779479), CPU_REV(1, 2)
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workaround_reset_start cortex_a78, CVE(2022, 23960), WORKAROUND_CVE_2022_23960
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#if IMAGE_BL31
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/*
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* The Cortex-X1 generic vectors are overridden to apply errata
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* mitigation on exception entry from lower ELs.
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*/
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override_vector_table wa_cve_vbar_cortex_a78
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#endif /* IMAGE_BL31 */
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workaround_reset_end cortex_a78, CVE(2022, 23960)
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check_erratum_chosen cortex_a78, CVE(2022, 23960), WORKAROUND_CVE_2022_23960
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cpu_reset_func_start cortex_a78
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#if ENABLE_FEAT_AMU
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/* Make sure accesses from EL0/EL1 and EL2 are not trapped to EL3 */
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sysreg_bit_clear actlr_el3, CORTEX_A78_ACTLR_TAM_BIT
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/* Make sure accesses from non-secure EL0/EL1 are not trapped to EL2 */
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sysreg_bit_clear actlr_el2, CORTEX_A78_ACTLR_TAM_BIT
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/* Enable group0 counters */
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mov x0, #CORTEX_A78_AMU_GROUP0_MASK
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msr CPUAMCNTENSET0_EL0, x0
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/* Enable group1 counters */
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mov x0, #CORTEX_A78_AMU_GROUP1_MASK
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msr CPUAMCNTENSET1_EL0, x0
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#endif
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cpu_reset_func_end cortex_a78
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/* ---------------------------------------------
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* HW will do the cache maintenance while powering down
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* ---------------------------------------------
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*/
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func cortex_a78_core_pwr_dwn
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sysreg_bit_set CORTEX_A78_CPUPWRCTLR_EL1, CORTEX_A78_CPUPWRCTLR_EL1_CORE_PWRDN_EN_BIT
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apply_erratum cortex_a78, ERRATUM(2772019), ERRATA_A78_2772019, NO_GET_CPU_REV
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isb
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ret
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endfunc cortex_a78_core_pwr_dwn
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/* ---------------------------------------------
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* This function provides cortex_a78 specific
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* register information for crash reporting.
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* It needs to return with x6 pointing to
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* a list of register names in ascii and
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* x8 - x15 having values of registers to be
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* reported.
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* ---------------------------------------------
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*/
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.section .rodata.cortex_a78_regs, "aS"
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cortex_a78_regs: /* The ascii list of register names to be reported */
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.asciz "cpuectlr_el1", ""
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func cortex_a78_cpu_reg_dump
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adr x6, cortex_a78_regs
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mrs x8, CORTEX_A78_CPUECTLR_EL1
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ret
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endfunc cortex_a78_cpu_reg_dump
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declare_cpu_ops cortex_a78, CORTEX_A78_MIDR, \
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cortex_a78_reset_func, \
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cortex_a78_core_pwr_dwn
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