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EHF currently allows for registering interrupt handlers for a defined priority ranges. This is primarily targeted at various EL3 dispatchers to own ranges of secure interrupt priorities in order to delegate execution to lower ELs. The RAS support added by earlier patches necessitates registering handlers based on interrupt number so that error handling agents shall receive and handle specific Error Recovery or Fault Handling interrupts at EL3. This patch introduces a macro, RAS_INTERRUPTS() to declare an array of interrupt numbers and handlers. Error handling agents can use this macro to register handlers for individual RAS interrupts. The array is expected to be sorted in the increasing order of interrupt numbers. As part of RAS initialisation, the list of all RAS interrupts are sorted based on their ID so that, given an interrupt, its handler can be looked up with a simple binary search. For an error handling agent that wants to handle a RAS interrupt, platform must: - Define PLAT_RAS_PRI to be the priority of all RAS exceptions. - Enumerate interrupts to have the GIC driver program individual EL3 interrupts to the required priority range. This is required by EHF even before this patch. Documentation to follow. Change-Id: I9471e4887ff541f8a7a63309e9cd8f771f76aeda Signed-off-by: Jeenu Viswambharan <jeenu.viswambharan@arm.com>
200 lines
5.1 KiB
C
200 lines
5.1 KiB
C
/*
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* Copyright (c) 2018, ARM Limited and Contributors. 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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#ifndef __RAS_COMMON__
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#define __RAS_COMMON__
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#define ERR_HANDLER_VERSION 1
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/* Error record access mechanism */
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#define ERR_ACCESS_SYSREG 0
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#define ERR_ACCESS_MEMMAP 1
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/*
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* Register all error records on the platform.
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*
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* This macro must be used in the same file as the array of error record info
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* are declared. Only then would ARRAY_SIZE() yield a meaningful value.
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*/
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#define REGISTER_ERR_RECORD_INFO(_records) \
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const struct err_record_mapping err_record_mapping = { \
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.err_records = _records, \
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.num_err_records = ARRAY_SIZE(_records), \
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}
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/* Error record info iterator */
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#define for_each_err_record_info(_i, _info) \
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for (_i = 0, _info = err_record_mapping.err_records; \
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_i < err_record_mapping.num_err_records; \
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_i++, _info++)
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#define _ERR_RECORD_COMMON(_probe, _handler, _aux) \
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.probe = _probe, \
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.handler = _handler, \
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.aux_data = _aux,
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#define ERR_RECORD_SYSREG_V1(_idx_start, _num_idx, _probe, _handler, _aux) \
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{ \
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.version = 1, \
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.sysreg.idx_start = _idx_start, \
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.sysreg.num_idx = _num_idx, \
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.access = ERR_ACCESS_SYSREG, \
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_ERR_RECORD_COMMON(_probe, _handler, _aux) \
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}
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#define ERR_RECORD_MEMMAP_V1(_base_addr, _size_num_k, _probe, _handler, _aux) \
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{ \
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.version = 1, \
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.memmap.base_addr = _base_addr, \
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.memmap.size_num_k = _size_num_k, \
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.access = ERR_ACCESS_MEMMAP, \
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_ERR_RECORD_COMMON(_probe, _handler, _aux) \
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}
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/*
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* Macro to be used to name and declare an array of RAS interrupts along with
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* their handlers.
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*
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* This macro must be used in the same file as the array of interrupts are
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* declared. Only then would ARRAY_SIZE() yield a meaningful value. Also, the
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* array is expected to be sorted in the increasing order of interrupt number.
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*/
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#define REGISTER_RAS_INTERRUPTS(_array) \
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const struct ras_interrupt_mapping ras_interrupt_mapping = { \
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.intrs = _array, \
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.num_intrs = ARRAY_SIZE(_array), \
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}
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#ifndef __ASSEMBLY__
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#include <assert.h>
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#include <ras_arch.h>
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struct err_record_info;
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struct ras_interrupt {
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/* Interrupt number, and the associated error record info */
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unsigned int intr_number;
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struct err_record_info *err_record;
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void *cookie;
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};
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/* Function to probe a error record group for error */
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typedef int (*err_record_probe_t)(const struct err_record_info *info,
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int *probe_data);
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/* Data passed to error record group handler */
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struct err_handler_data {
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/* Info passed on from top-level exception handler */
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uint64_t flags;
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void *cookie;
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void *handle;
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/* Data structure version */
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unsigned int version;
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/* Reason for EA: one the ERROR_* constants */
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unsigned int ea_reason;
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/*
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* For EAs received at vector, the value read from ESR; for an EA
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* synchronized by ESB, the value of DISR.
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*/
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uint32_t syndrome;
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/* For errors signalled via. interrupt, the raw interrupt ID; otherwise, 0. */
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unsigned int interrupt;
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};
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/* Function to handle error from an error record group */
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typedef int (*err_record_handler_t)(const struct err_record_info *info,
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int probe_data, const struct err_handler_data *const data);
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/* Error record information */
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struct err_record_info {
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/* Function to probe error record group for errors */
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err_record_probe_t probe;
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/* Function to handle error record group errors */
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err_record_handler_t handler;
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/* Opaque group-specific data */
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void *aux_data;
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/* Additional information for Standard Error Records */
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union {
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struct {
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/*
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* For a group accessed via. memory-mapped register,
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* base address of the page hosting error records, and
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* the size of the record group.
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*/
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uintptr_t base_addr;
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/* Size of group in number of KBs */
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unsigned int size_num_k;
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} memmap;
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struct {
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/*
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* For error records accessed via. system register, index of
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* the error record.
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*/
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unsigned int idx_start;
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unsigned int num_idx;
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} sysreg;
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};
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/* Data structure version */
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unsigned int version;
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/* Error record access mechanism */
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unsigned int access:1;
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};
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struct err_record_mapping {
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struct err_record_info *err_records;
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size_t num_err_records;
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};
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struct ras_interrupt_mapping {
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struct ras_interrupt *intrs;
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size_t num_intrs;
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};
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extern const struct err_record_mapping err_record_mapping;
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extern const struct ras_interrupt_mapping ras_interrupt_mapping;
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/*
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* Helper functions to probe memory-mapped and system registers implemented in
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* Standard Error Record format
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*/
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static inline int ras_err_ser_probe_memmap(const struct err_record_info *info,
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int *probe_data)
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{
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assert(info->version == ERR_HANDLER_VERSION);
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return ser_probe_memmap(info->memmap.base_addr, info->memmap.size_num_k,
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probe_data);
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}
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static inline int ras_err_ser_probe_sysreg(const struct err_record_info *info,
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int *probe_data)
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{
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assert(info->version == ERR_HANDLER_VERSION);
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return ser_probe_sysreg(info->sysreg.idx_start, info->sysreg.num_idx,
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probe_data);
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}
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int ras_ea_handler(unsigned int ea_reason, uint64_t syndrome, void *cookie,
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void *handle, uint64_t flags);
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void ras_init(void);
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#endif /* __ASSEMBLY__ */
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#endif /* __RAS_COMMON__ */
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