You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

419 lines
12 KiB

refactor(el3-runtime): add arch-features detection mechanism This patch adds architectural features detection procedure to ensure features enabled are present in the given hardware implementation. It verifies whether the architecture build flags passed during compilation match the respective features by reading their ID registers. It reads through all the enabled feature specific ID registers at once and panics in case of mismatch(feature enabled but not implemented in PE). Feature flags are used at sections (context_management, save and restore routines of registers) during context switch. If the enabled feature flag is not supported by the PE, it causes an exception while saving or restoring the registers guarded by them. With this mechanism, the build flags are validated at an early phase prior to their usage, thereby preventing any undefined action under their control. This implementation is based on tristate approach for each feature and currently FEAT_STATE=0 and FEAT_STATE=1 are covered as part of this patch. FEAT_STATE=2 is planned for phase-2 implementation and will be taken care separately. The patch has been explicitly tested, by adding a new test_config with build config enabling majority of the features and detected all of them under FVP launched with parameters enabling v8.7 features. Note: This is an experimental procedure and the mechanism itself is guarded by a macro "FEATURE_DETECTION", which is currently being disabled by default. The "FEATURE_DETECTION" macro is documented and the platforms are encouraged to make use of this diagnostic tool by enabling this "FEATURE_DETECTION" flag explicitly and get used to its behaviour during booting before the procedure gets mandated. Signed-off-by: Jayanth Dodderi Chidanand <jayanthdodderi.chidanand@arm.com> Change-Id: Ia23d95430fe82d417a938b672bfb5edc401b0f43
3 years ago
#
# Copyright (c) 2022-2024, Arm Limited. All rights reserved.
refactor(el3-runtime): add arch-features detection mechanism This patch adds architectural features detection procedure to ensure features enabled are present in the given hardware implementation. It verifies whether the architecture build flags passed during compilation match the respective features by reading their ID registers. It reads through all the enabled feature specific ID registers at once and panics in case of mismatch(feature enabled but not implemented in PE). Feature flags are used at sections (context_management, save and restore routines of registers) during context switch. If the enabled feature flag is not supported by the PE, it causes an exception while saving or restoring the registers guarded by them. With this mechanism, the build flags are validated at an early phase prior to their usage, thereby preventing any undefined action under their control. This implementation is based on tristate approach for each feature and currently FEAT_STATE=0 and FEAT_STATE=1 are covered as part of this patch. FEAT_STATE=2 is planned for phase-2 implementation and will be taken care separately. The patch has been explicitly tested, by adding a new test_config with build config enabling majority of the features and detected all of them under FVP launched with parameters enabling v8.7 features. Note: This is an experimental procedure and the mechanism itself is guarded by a macro "FEATURE_DETECTION", which is currently being disabled by default. The "FEATURE_DETECTION" macro is documented and the platforms are encouraged to make use of this diagnostic tool by enabling this "FEATURE_DETECTION" flag explicitly and get used to its behaviour during booting before the procedure gets mandated. Signed-off-by: Jayanth Dodderi Chidanand <jayanthdodderi.chidanand@arm.com> Change-Id: Ia23d95430fe82d417a938b672bfb5edc401b0f43
3 years ago
#
# SPDX-License-Identifier: BSD-3-Clause
#
# This file lists all of the architectural features, and initializes
# and enables them based on the configured architecture version.
# This file follows the following format:
# - Enable mandatory feature if not updated, as applicable to an Arch Version.
# - By default disable any mandatory features if they have not been defined yet.
# - Disable or enable any optional feature this would be enabled/disabled if needed by platform.
#
################################################################################
# Enable Mandatory features if not updated yet, based on Arch versions.
################################################################################
#
# Enable the features which are mandatory from ARCH version 8.1 and upwards.
ifeq "8.1" "$(word 1, $(sort 8.1 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
armv8-1-a-feats := ENABLE_FEAT_PAN ENABLE_FEAT_VHE
FEAT_LIST := ${armv8-1-a-feats}
endif
# Enable the features which are mandatory from ARCH version 8.2 and upwards.
ifeq "8.2" "$(word 1, $(sort 8.2 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
armv8-2-a-feats := ENABLE_FEAT_RAS
# 8.1 Compliant
armv8-2-a-feats += ${armv8-1-a-feats}
FEAT_LIST := ${armv8-2-a-feats}
endif
# Enable the features which are mandatory from ARCH version 8.3 and upwards.
ifeq "8.3" "$(word 1, $(sort 8.3 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
# 8.2 Compliant
armv8-3-a-feats += ${armv8-2-a-feats}
FEAT_LIST := ${armv8-3-a-feats}
endif
# Enable the features which are mandatory from ARCH version 8.4 and upwards.
ifeq "8.4" "$(word 1, $(sort 8.4 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
armv8-4-a-feats := ENABLE_FEAT_SEL2 ENABLE_TRF_FOR_NS ENABLE_FEAT_DIT
# 8.3 Compliant
armv8-4-a-feats += ${armv8-3-a-feats}
FEAT_LIST := ${armv8-4-a-feats}
endif
# Enable the features which are mandatory from ARCH version 8.5 and upwards.
ifeq "8.5" "$(word 1, $(sort 8.5 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
armv8-5-a-feats := ENABLE_FEAT_RNG ENABLE_FEAT_SB
# 8.4 Compliant
armv8-5-a-feats += ${armv8-4-a-feats}
FEAT_LIST := ${armv8-5-a-feats}
# Enable Memory tagging, Branch Target Identification for aarch64 only.
ifeq ($(ARCH), aarch64)
mem_tag_arch_support ?= yes
endif #(ARCH=aarch64)
endif
# Enable the features which are mandatory from ARCH version 8.6 and upwards.
ifeq "8.6" "$(word 1, $(sort 8.6 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
armv8-6-a-feats := ENABLE_FEAT_ECV ENABLE_FEAT_FGT
# 8.5 Compliant
armv8-6-a-feats += ${armv8-5-a-feats}
FEAT_LIST := ${armv8-6-a-feats}
endif
# Enable the features which are mandatory from ARCH version 8.7 and upwards.
ifeq "8.7" "$(word 1, $(sort 8.7 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
armv8-7-a-feats := ENABLE_FEAT_HCX
# 8.6 Compliant
armv8-7-a-feats += ${armv8-6-a-feats}
FEAT_LIST := ${armv8-7-a-feats}
endif
# Enable the features which are mandatory from ARCH version 8.8 and upwards.
ifeq "8.8" "$(word 1, $(sort 8.8 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
# 8.7 Compliant
armv8-7-a-feats += ${armv8-7-a-feats}
FEAT_LIST := ${armv8-8-a-feats}
endif
# Enable the features which are mandatory from ARCH version 8.9 and upwards.
ifeq "8.9" "$(word 1, $(sort 8.9 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
armv8-9-a-feats := ENABLE_FEAT_TCR2
# 8.8 Compliant
armv8-9-a-feats += ${armv8-8-a-feats}
FEAT_LIST := ${armv8-9-a-feats}
endif
# Enable the features which are mandatory from ARCH version 9.0 and upwards.
ifeq "9.0" "$(word 1, $(sort 9.0 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
# 8.5 Compliant
armv9-0-a-feats += ${armv8-5-a-feats}
FEAT_LIST := ${armv9-0-a-feats}
endif
# Enable the features which are mandatory from ARCH version 9.1 and upwards.
ifeq "9.1" "$(word 1, $(sort 9.1 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
# 8.6 and 9.0 Compliant
armv9-1-a-feats += ${armv8-6-a-feats} ${armv9-0-a-feats}
FEAT_LIST := ${armv9-1-a-feats}
endif
# Enable the features which are mandatory from ARCH version 9.2 and upwards.
ifeq "9.2" "$(word 1, $(sort 9.2 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
# 8.7 and 9.1 Compliant
armv9-2-a-feats += ${armv8-7-a-feats} ${armv9-1-a-feats}
FEAT_LIST := ${armv9-2-a-feats}
endif
# Enable the features which are mandatory from ARCH version 9.3 and upwards.
ifeq "9.3" "$(word 1, $(sort 9.3 $(ARM_ARCH_MAJOR).$(ARM_ARCH_MINOR)))"
# 8.8 and 9.2 Compliant
armv9-3-a-feats += ${armv8-8-a-feats} ${armv9-2-a-feats}
FEAT_LIST := ${armv9-3-a-feats}
endif
# Set all FEAT_* in FEAT_LIST to '1' if they are not yet defined or set
# from build commandline options or platform makefile.
$(eval $(call default_ones, ${sort ${FEAT_LIST}}))
#
################################################################################
# Set mandatory features by default to zero, if they are not already updated.
################################################################################
#
#----
# 8.1
#----
# Flag to enable access to Privileged Access Never bit of PSTATE.
ENABLE_FEAT_PAN ?= 0
# Flag to enable Virtualization Host Extensions.
ENABLE_FEAT_VHE ?= 0
#----
# 8.2
#----
# Enable RAS Support.
ENABLE_FEAT_RAS ?= 0
#----
# 8.3
#----
# Flag to enable Pointer Authentication. Internal flag not meant for
# direct setting. Use BRANCH_PROTECTION to enable PAUTH.
ENABLE_PAUTH ?= 0
# Include pointer authentication (ARMv8.3-PAuth) registers in cpu context. This
# must be set to 1 if the platform wants to use this feature in the Secure
# world. It is not necessary for use in the Non-secure world.
CTX_INCLUDE_PAUTH_REGS ?= 0
#----
# 8.4
#----
# Flag to enable Secure EL-2 feature.
ENABLE_FEAT_SEL2 ?= 0
# By default, disable trace filter control register access to lower non-secure
# exception levels, i.e. NS-EL2, or NS-EL1 if NS-EL2 is implemented, but
# trace filter control register access is unused if FEAT_TRF is implemented.
ENABLE_TRF_FOR_NS ?= 0
# Flag to enable Data Independent Timing instructions.
ENABLE_FEAT_DIT ?= 0
#----
# 8.5
#----
# Flag to enable Branch Target Identification.
# Internal flag not meant for direct setting.
# Use BRANCH_PROTECTION to enable BTI.
ENABLE_BTI ?= 0
# Flag to enable access to the Random Number Generator registers.
ENABLE_FEAT_RNG ?= 0
# Flag to enable Speculation Barrier Instruction.
ENABLE_FEAT_SB ?= 0
#----
# 8.6
#----
# Flag to enable access to the CNTPOFF_EL2 register.
ENABLE_FEAT_ECV ?= 0
# Flag to enable access to the HDFGRTR_EL2 register.
ENABLE_FEAT_FGT ?= 0
#----
# 8.7
#----
# Flag to enable access to the HCRX_EL2 register by setting SCR_EL3.HXEn.
ENABLE_FEAT_HCX ?= 0
#----
# 8.9
#----
# Flag to enable access to TCR2 (FEAT_TCR2).
ENABLE_FEAT_TCR2 ?= 0
#
################################################################################
# Optional Features defaulted to 0 or 2, if they are not enabled from
# build option. Can also be disabled or enabled by platform if needed.
################################################################################
#
#----
# 8.0
#----
# Flag to enable CSV2_2 extension.
ENABLE_FEAT_CSV2_2 ?= 0
# Flag to enable CSV2_3 extension. FEAT_CSV2_3 enables access to the
# SCXTNUM_ELx register.
ENABLE_FEAT_CSV2_3 ?= 0
# By default, disable access of trace system registers from NS lower
# ELs i.e. NS-EL2, or NS-EL1 if NS-EL2 implemented but unused if
# system register trace is implemented. This feature is available if
# trace unit such as ETMv4.x, This feature is OPTIONAL and is only
# permitted in Armv8 implementations.
ENABLE_SYS_REG_TRACE_FOR_NS ?= 0
#----
# 8.2
#----
# Build option to enable/disable the Statistical Profiling Extension,
# keep it enabled by default for AArch64.
ifeq (${ARCH},aarch64)
ENABLE_SPE_FOR_NS ?= 2
else ifeq (${ARCH},aarch32)
ifneq ($(or $(ENABLE_SPE_FOR_NS),0),0)
$(error ENABLE_SPE_FOR_NS is not supported for AArch32)
else
ENABLE_SPE_FOR_NS := 0
endif
endif
# Enable SVE for non-secure world by default.
ifeq (${ARCH},aarch64)
ENABLE_SVE_FOR_NS ?= 2
# SVE is only supported on AArch64 so disable it on AArch32.
else ifeq (${ARCH},aarch32)
ifneq ($(or $(ENABLE_SVE_FOR_NS),0),0)
$(error ENABLE_SVE_FOR_NS is not supported for AArch32)
else
ENABLE_SVE_FOR_NS := 0
endif
endif
#----
# 8.4
#----
# Feature flags for supporting Activity monitor extensions.
ENABLE_FEAT_AMU ?= 0
ENABLE_AMU_AUXILIARY_COUNTERS ?= 0
ENABLE_AMU_FCONF ?= 0
AMU_RESTRICT_COUNTERS ?= 0
# Build option to enable MPAM for lower ELs.
# Enabling it by default
ifeq (${ARCH},aarch64)
ENABLE_FEAT_MPAM ?= 2
else ifeq (${ARCH},aarch32)
ifneq ($(or $(ENABLE_FEAT_MPAM),0),0)
$(error ENABLE_FEAT_MPAM is not supported for AArch32)
else
ENABLE_FEAT_MPAM := 0
endif
endif
# Include nested virtualization control (Armv8.4-NV) registers in cpu context.
# This must be set to 1 if architecture implements Nested Virtualization
# Extension and platform wants to use this feature in the Secure world.
CTX_INCLUDE_NEVE_REGS ?= 0
#----
# 8.5
#----
# Flag to enable support for EL3 trapping of reads of the RNDR and RNDRRS
# registers, by setting SCR_EL3.TRNDR.
ENABLE_FEAT_RNG_TRAP ?= 0
# Enable Memory Tagging Extension. This must be set to 1 if the platform wants
# to use this feature in the Secure world and MTE is enabled at ELX.
ifeq ($(CTX_INCLUDE_MTE_REGS),1)
$(warning CTX_INCLUDE_MTE_REGS option is deprecated use ENABLE_FEAT_MTE, Enabling ENABLE_FEAT_MTE)
ENABLE_FEAT_MTE ?= 1
endif
ifeq (${ARCH},aarch32)
ifneq ($(or $(ENABLE_FEAT_MTE),0),0)
$(error ENABLE_FEAT_MTE is not supported for AArch32)
endif
endif
ENABLE_FEAT_MTE ?= 0
ENABLE_FEAT_MTE2 ?= 0
# Add a error message to indicate incorrect MTE2 selection without MTE enabled.
ifneq ($(ENABLE_FEAT_MTE2),0)
ifeq ($(ENABLE_FEAT_MTE),0)
$(error ENABLE_FEAT_MTE2 is not supported without enabling ENABLE_FEAT_MTE)
endif
endif
#----
# 8.6
#----
# Flag to enable AMUv1p1 extension.
ENABLE_FEAT_AMUv1p1 ?= 0
# Flag to enable delayed trapping of WFE instruction (FEAT_TWED).
ENABLE_FEAT_TWED ?= 0
# In v8.6+ platforms with delayed trapping of WFE being supported
# via FEAT_TWED, this flag takes the delay value to be set in the
# SCR_EL3.TWEDEL(4bit) field, when FEAT_TWED is implemented.
# By default it takes 0, and need to be updated by the platforms.
TWED_DELAY ?= 0
# Disable MTPMU if FEAT_MTPMU is supported.
DISABLE_MTPMU ?= 0
#----
# 8.9
#----
# Flag to enable NoTagAccess memory region attribute for stage 2 of translation.
ENABLE_FEAT_MTE_PERM ?= 0
# Flag to enable access to Stage 2 Permission Indirection (FEAT_S2PIE).
ENABLE_FEAT_S2PIE ?= 0
# Flag to enable access to Stage 1 Permission Indirection (FEAT_S1PIE).
ENABLE_FEAT_S1PIE ?= 0
# Flag to enable access to Stage 2 Permission Overlay (FEAT_S2POE).
ENABLE_FEAT_S2POE ?= 0
# Flag to enable access to Stage 1 Permission Overlay (FEAT_S1POE).
ENABLE_FEAT_S1POE ?= 0
#----
# 9.0
#----
# Scalable Matrix Extension for non-secure world.
ENABLE_SME_FOR_NS ?= 0
# Scalable Vector Extension for secure world.
ENABLE_SVE_FOR_SWD ?= 0
# By default, disable access of trace buffer control registers from NS
# lower ELs i.e. NS-EL2, or NS-EL1 if NS-EL2 implemented but unused
# if FEAT_TRBE is implemented.
# Note FEAT_TRBE is only supported on AArch64 - therefore do not enable in
# AArch32.
ifeq (${ARCH},aarch64)
ENABLE_TRBE_FOR_NS ?= 0
else ifeq (${ARCH},aarch32)
ifneq ($(or $(ENABLE_TRBE_FOR_NS),0),0)
$(error ENABLE_TRBE_FOR_NS is not supported for AArch32)
else
ENABLE_TRBE_FOR_NS := 0
endif
endif
#----
# 9.2
#----
# Flag to enable Realm Management Extension (FEAT_RME).
ENABLE_RME ?= 0
# Scalable Matrix Extension version 2 for non-secure world.
ENABLE_SME2_FOR_NS ?= 0
# Scalable Matrix Extension for secure world.
ENABLE_SME_FOR_SWD ?= 0
# By default, disable access to branch record buffer control registers from NS
# lower ELs i.e. NS-EL2, or NS-EL1 if NS-EL2 implemented but unused
# if FEAT_BRBE is implemented.
ENABLE_BRBE_FOR_NS ?= 0
#----
#9.4
#----
# Flag to enable access to Guarded Control Stack (FEAT_GCS).
ENABLE_FEAT_GCS ?= 0