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Currently, as part of the context_memory report, we explicitly list the EL3, EL1 and EL2 registers and memory usage per CPU for each world. The remaining bits in the cpu_context_t structure are grouped and listed as other section. This patch enhances this part, by individually listing all the remaining bits (GPREGS, PAUTH_REGS) separately providing a much detailed overview of the context memory consumption amongst the registers. The patch has been tested on the CI with the following patch and the results are summarised precisely. [https://review.trustedfirmware.org/c/ci/tf-a-ci-scripts/+/28849] Change-Id: I16f210b605ddd7900600519520accf1ccd057bc7 Signed-off-by: Jayanth Dodderi Chidanand <jayanthdodderi.chidanand@arm.com>
208 lines
5.4 KiB
C
208 lines
5.4 KiB
C
/*
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* Copyright (c) 2023-2024, 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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#include <string.h>
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#include <common/debug.h>
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#include <context.h>
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#include <lib/el3_runtime/context_mgmt.h>
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#include <lib/el3_runtime/cpu_data.h>
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/********************************************************************************
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* Function that returns the corresponding string constant for a security state
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* index.
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*******************************************************************************/
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static const char *get_context_name_by_idx(unsigned int security_state_idx)
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{
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assert(security_state_idx < CPU_CONTEXT_NUM);
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static const char * const state_names[] = {
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"Secure",
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"Non Secure"
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#if ENABLE_RME
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, "Realm"
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#endif /* ENABLE_RME */
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};
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return state_names[security_state_idx];
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}
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#define PRINT_MEM_USAGE_SEPARATOR() \
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do { \
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printf("+-----------+-----------+-----------" \
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"+-----------+-----------+-----------+\n"); \
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} while (false)
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#define NAME_PLACEHOLDER_LEN 14
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#define PRINT_DASH(n) \
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for (; n > 0; n--) { \
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putchar('-'); \
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}
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#define PRINT_SINGLE_MEM_USAGE_SEP_BLOCK() \
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do { \
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printf("+-----------"); \
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} while (false)
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/********************************************************************************
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* This function prints the allocated memory for a specific security state.
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* Values are grouped by exception level and core. The memory usage for the
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* global context and the total memory for the security state are also computed.
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*******************************************************************************/
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static size_t report_allocated_memory(unsigned int security_state_idx)
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{
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size_t core_total = 0U;
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size_t gp_total = 0U;
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size_t el3_total = 0U;
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size_t other_total = 0U;
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size_t total = 0U;
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size_t per_world_ctx_size = 0U;
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#if CTX_INCLUDE_EL2_REGS
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size_t el2_total = 0U;
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#else
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size_t el1_total = 0U;
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#endif /* CTX_INCLUDE_EL2_REGS */
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#if CTX_INCLUDE_PAUTH_REGS
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size_t pauth_total = 0U;
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PRINT_SINGLE_MEM_USAGE_SEP_BLOCK();
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#endif
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PRINT_MEM_USAGE_SEPARATOR();
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printf("| Core | GP | EL3 ");
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#if CTX_INCLUDE_EL2_REGS
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printf("| EL2 ");
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#else
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printf("| EL1 ");
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#endif /* CTX_INCLUDE_EL2_REGS */
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#if CTX_INCLUDE_PAUTH_REGS
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printf("| PAUTH ");
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#endif
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printf("| Other | Total |\n");
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/* Compute memory usage for each core's context */
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for (unsigned int i = 0U; i < PLATFORM_CORE_COUNT; i++) {
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size_t size_other = 0U;
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size_t el3_size = 0U;
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size_t gp_size = 0U;
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#if CTX_INCLUDE_EL2_REGS
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size_t el2_size = 0U;
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#else
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size_t el1_size = 0U;
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#endif /* CTX_INCLUDE_EL2_REGS */
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#if CTX_INCLUDE_PAUTH_REGS
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size_t pauth_size = 0U;
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PRINT_SINGLE_MEM_USAGE_SEP_BLOCK();
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#endif
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PRINT_MEM_USAGE_SEPARATOR();
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cpu_context_t *ctx = (cpu_context_t *)cm_get_context_by_index(i,
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security_state_idx);
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core_total = sizeof(*ctx);
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el3_size = sizeof(ctx->el3state_ctx);
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gp_size = sizeof(ctx->gpregs_ctx);
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size_other = core_total - (el3_size + gp_size);
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printf("| %9u | %8luB | %8luB ", i, gp_size, el3_size);
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#if CTX_INCLUDE_EL2_REGS
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el2_size = sizeof(ctx->el2_sysregs_ctx);
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size_other -= el2_size;
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el2_total += el2_size;
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printf("| %8luB ", el2_size);
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#else
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el1_size = sizeof(ctx->el1_sysregs_ctx);
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size_other -= el1_size;
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el1_total += el1_size;
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printf("| %8luB ", el1_size);
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#endif /* CTX_INCLUDE_EL2_REGS */
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#if CTX_INCLUDE_PAUTH_REGS
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pauth_size = sizeof(ctx->pauth_ctx);
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size_other -= pauth_size;
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pauth_total += pauth_size;
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printf("| %8luB ", pauth_size);
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#endif
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printf("| %8luB | %8luB |\n", size_other, core_total);
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gp_total += gp_size;
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el3_total += el3_size;
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other_total += size_other;
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total += core_total;
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}
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#if CTX_INCLUDE_PAUTH_REGS
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PRINT_SINGLE_MEM_USAGE_SEP_BLOCK();
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#endif
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PRINT_MEM_USAGE_SEPARATOR();
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#if CTX_INCLUDE_PAUTH_REGS
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PRINT_SINGLE_MEM_USAGE_SEP_BLOCK();
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#endif
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PRINT_MEM_USAGE_SEPARATOR();
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printf("| All | %8luB | %8luB ", gp_total, el3_total);
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#if CTX_INCLUDE_EL2_REGS
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printf("| %8luB ", el2_total);
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#else
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printf("| %8luB ", el1_total);
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#endif /* CTX_INCLUDE_EL2_REGS */
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#if CTX_INCLUDE_PAUTH_REGS
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printf("| %8luB ", pauth_total);
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#endif
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printf("| %8luB | %8luB |\n", other_total, total);
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#if CTX_INCLUDE_PAUTH_REGS
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PRINT_SINGLE_MEM_USAGE_SEP_BLOCK();
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#endif
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PRINT_MEM_USAGE_SEPARATOR();
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printf("\n");
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/* Compute memory usage for the global context */
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per_world_ctx_size = sizeof(per_world_context[security_state_idx]);
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total += per_world_ctx_size;
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printf("Per-world context: %luB\n\n", per_world_ctx_size);
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printf("TOTAL: %luB\n", total);
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return total;
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}
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/********************************************************************************
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* Reports the allocated memory for every security state and then reports the
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* total system-wide allocated memory.
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*******************************************************************************/
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void report_ctx_memory_usage(void)
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{
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INFO("Context memory allocation:\n");
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size_t total = 0U;
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for (unsigned int i = 0U; i < CPU_CONTEXT_NUM; i++) {
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const char *context_name = get_context_name_by_idx(i);
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size_t len = 0U;
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printf("Memory usage for %s:\n", context_name);
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total += report_allocated_memory(i);
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printf("------------------------");
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len = NAME_PLACEHOLDER_LEN - printf("End %s", context_name);
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PRINT_DASH(len);
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printf("-----------------------\n\n");
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}
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printf("Total context memory allocated: %luB\n\n", total);
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}
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