317 lines
7.5 KiB
C
317 lines
7.5 KiB
C
/*
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* Copyright (C) 2018 int32_tel Corporation. 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 PROFILING_INTERNAL_H
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#define PROFILING_INTERNAL_H
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#ifdef PROFILING_ON
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#include <vcpu.h>
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#include <vm_configurations.h>
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#define MAX_MSR_LIST_NUM 15U
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#define MAX_PROFILING_MSR_STORE_NUM 1
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#define MAX_HV_MSR_LIST_NUM (MSR_AREA_COUNT)
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#define MAX_GROUP_NUM 1U
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#define COLLECT_PROFILE_DATA 0
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#define COLLECT_POWER_DATA 1
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#define SEP_BUF_ENTRY_SIZE 32U
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#define SOCWATCH_MSR_OP 100U
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#define MAGIC_NUMBER 0x99999988U
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enum MSR_CMD_STATUS {
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MSR_OP_READY = 0,
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MSR_OP_REQUESTED,
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MSR_OP_HANDLED
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};
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enum MSR_CMD_TYPE {
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MSR_OP_NONE = 0,
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MSR_OP_READ,
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MSR_OP_WRITE,
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MSR_OP_READ_CLEAR
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};
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enum PMU_MSR_TYPE {
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PMU_MSR_CCCR = 0,
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PMU_MSR_ESCR,
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PMU_MSR_DATA
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};
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typedef enum IPI_COMMANDS {
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IPI_MSR_OP = 0,
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IPI_PMU_CONFIG,
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IPI_PMU_START,
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IPI_PMU_STOP,
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IPI_VMSW_CONFIG,
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IPI_UNKNOWN,
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} ipi_commands;
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typedef enum SEP_PMU_STATE {
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PMU_INITIALIZED = 0,
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PMU_SETUP,
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PMU_RUNNING,
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PMU_UNINITIALIZED,
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PMU_UNKNOWN
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} sep_pmu_state;
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typedef enum PROFILING_SEP_FEATURE {
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CORE_PMU_SAMPLING = 0,
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CORE_PMU_COUNTING,
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PEBS_PMU_SAMPLING,
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LBR_PMU_SAMPLING,
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UNCORE_PMU_SAMPLING,
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VM_SWITCH_TRACING,
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MAX_SEP_FEATURE_ID
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} profiling_sep_feature;
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typedef enum SOCWATCH_STATE {
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SW_SETUP = 0,
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SW_RUNNING,
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SW_STOPPED
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} socwatch_state;
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typedef enum PROFILING_SOCWATCH_FEATURE {
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SOCWATCH_COMMAND = 0,
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SOCWATCH_VM_SWITCH_TRACING,
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MAX_SOCWATCH_FEATURE_ID
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} profiling_socwatch_feature;
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struct profiling_version_info {
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int32_t major;
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int32_t minor;
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int64_t supported_features;
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int64_t reserved;
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};
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struct profiling_pcpuid {
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uint32_t leaf;
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uint32_t subleaf;
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uint32_t eax;
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uint32_t ebx;
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uint32_t ecx;
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uint32_t edx;
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};
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struct profiling_control {
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int32_t collector_id;
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int32_t reserved;
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uint64_t switches;
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};
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struct profiling_vcpu_pcpu_map {
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int16_t vcpu_id;
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int16_t pcpu_id;
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uint32_t apic_id;
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};
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struct profiling_vm_info {
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uint16_t vm_id_num;
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uint8_t uuid[16];
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char vm_name[16];
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uint16_t num_vcpus;
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struct profiling_vcpu_pcpu_map cpu_map[CONFIG_MAX_VCPUS_PER_VM];
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};
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struct profiling_vm_info_list {
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uint16_t num_vms;
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struct profiling_vm_info vm_list[CONFIG_MAX_VM_NUM+1];
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};
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struct sw_msr_op_info {
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uint64_t core_msr[MAX_MSR_LIST_NUM];
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uint32_t cpu_id;
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uint32_t valid_entries;
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uint16_t sample_id;
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};
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struct profiling_msr_op {
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/* value to write or location to write into */
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uint64_t value;
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/* MSR address to read/write; last entry will have value of -1 */
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uint32_t msr_id;
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/* parameter; usage depends on operation */
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uint16_t param;
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uint8_t msr_op_type;
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uint8_t reg_type;
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};
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struct profiling_msr_ops_list {
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int32_t collector_id;
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uint32_t num_entries;
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int32_t msr_op_state;
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struct profiling_msr_op entries[MAX_MSR_LIST_NUM];
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};
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struct profiling_pmi_config {
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uint32_t num_groups;
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uint32_t trigger_count;
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struct profiling_msr_op initial_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op start_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op stop_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op entry_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op exit_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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};
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struct profiling_vmsw_config {
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int32_t collector_id;
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struct profiling_msr_op initial_list[MAX_MSR_LIST_NUM];
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struct profiling_msr_op entry_list[MAX_MSR_LIST_NUM];
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struct profiling_msr_op exit_list[MAX_MSR_LIST_NUM];
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};
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struct guest_vm_info {
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uint64_t vmenter_tsc;
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uint64_t vmexit_tsc;
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uint64_t vmexit_reason;
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uint64_t guest_rip;
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uint64_t guest_rflags;
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uint64_t guest_cs;
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uint16_t guest_vm_id;
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int32_t external_vector;
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};
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struct profiling_status {
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uint32_t samples_logged;
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uint32_t samples_dropped;
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};
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struct sep_state {
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sep_pmu_state pmu_state;
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uint32_t current_pmi_group_id;
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uint32_t num_pmi_groups;
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struct profiling_msr_op
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pmi_initial_msr_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op
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pmi_start_msr_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op
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pmi_stop_msr_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op
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pmi_entry_msr_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op
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pmi_exit_msr_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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uint32_t current_vmsw_group_id;
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uint32_t num_msw_groups;
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struct profiling_msr_op
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vmsw_initial_msr_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op
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vmsw_entry_msr_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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struct profiling_msr_op
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vmsw_exit_msr_list[MAX_GROUP_NUM][MAX_MSR_LIST_NUM];
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/* sep handling statistics */
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uint32_t samples_logged;
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uint32_t samples_dropped;
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uint32_t valid_pmi_count;
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uint32_t total_pmi_count;
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uint32_t total_vmexit_count;
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uint32_t frozen_well;
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uint32_t frozen_delayed;
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uint32_t nofrozen_pmi;
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struct msr_store_entry vmexit_msr_list[MAX_PROFILING_MSR_STORE_NUM + MAX_HV_MSR_LIST_NUM];
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uint32_t vmexit_msr_cnt;
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uint64_t guest_debugctl_value;
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uint64_t saved_debugctl_value;
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} __aligned(8);
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struct data_header {
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int32_t collector_id;
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uint16_t cpu_id;
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uint16_t data_type;
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uint64_t tsc;
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uint64_t payload_size;
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uint64_t reserved;
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} __aligned(SEP_BUF_ENTRY_SIZE);
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#define DATA_HEADER_SIZE ((uint64_t)sizeof(struct data_header))
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struct core_pmu_sample {
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/* context where PMI is triggered */
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uint16_t os_id;
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/* reserved */
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uint16_t reserved;
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/* the task id */
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uint32_t task_id;
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/* instruction pointer */
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uint64_t rip;
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/* the task name */
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char task[16];
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/* physical cpu ID */
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uint32_t cpu_id;
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/* the process id */
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uint32_t process_id;
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/* perf global status msr value (for overflow status) */
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uint64_t overflow_status;
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/* rflags */
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uint32_t rflags;
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/* code segment */
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uint32_t cs;
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} __aligned(SEP_BUF_ENTRY_SIZE);
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#define CORE_PMU_SAMPLE_SIZE ((uint64_t)sizeof(struct core_pmu_sample))
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#define NUM_LBR_ENTRY 32
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struct lbr_pmu_sample {
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/* LBR TOS */
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uint64_t lbr_tos;
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/* LBR FROM IP */
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uint64_t lbr_from_ip[NUM_LBR_ENTRY];
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/* LBR TO IP */
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uint64_t lbr_to_ip[NUM_LBR_ENTRY];
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/* LBR info */
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uint64_t lbr_info[NUM_LBR_ENTRY];
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} __aligned(SEP_BUF_ENTRY_SIZE);
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#define LBR_PMU_SAMPLE_SIZE ((uint64_t)sizeof(struct lbr_pmu_sample))
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struct pmu_sample {
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/* core pmu sample */
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struct core_pmu_sample csample;
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/* lbr pmu sample */
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struct lbr_pmu_sample lsample;
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} __aligned(SEP_BUF_ENTRY_SIZE);
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struct vm_switch_trace {
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uint64_t vm_enter_tsc;
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uint64_t vm_exit_tsc;
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uint64_t vm_exit_reason;
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uint16_t os_id;
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uint16_t reserved;
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}__aligned(SEP_BUF_ENTRY_SIZE);
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#define VM_SWITCH_TRACE_SIZE ((uint64_t)sizeof(struct vm_switch_trace))
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/*
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* Wrapper containing SEP sampling/profiling related data structures
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*/
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struct profiling_info_wrapper {
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struct profiling_msr_ops_list *msr_node;
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struct sep_state sep_state;
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struct guest_vm_info vm_info;
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ipi_commands ipi_cmd;
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struct pmu_sample pmu_sample;
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struct vm_switch_trace vm_switch_trace;
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socwatch_state soc_state;
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struct sw_msr_op_info sw_msr_op_info;
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spinlock_t sw_lock;
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} __aligned(8);
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int32_t profiling_get_version_info(struct acrn_vm *vm, uint64_t addr);
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int32_t profiling_get_pcpu_id(struct acrn_vm *vm, uint64_t addr);
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int32_t profiling_msr_ops_all_cpus(struct acrn_vm *vm, uint64_t addr);
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int32_t profiling_vm_list_info(struct acrn_vm *vm, uint64_t addr);
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int32_t profiling_get_control(struct acrn_vm *vm, uint64_t addr);
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int32_t profiling_set_control(struct acrn_vm *vm, uint64_t addr);
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int32_t profiling_configure_pmi(struct acrn_vm *vm, uint64_t addr);
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int32_t profiling_configure_vmsw(struct acrn_vm *vm, uint64_t addr);
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void profiling_ipi_handler(void *data);
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int32_t profiling_get_status_info(struct acrn_vm *vm, uint64_t addr);
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#endif
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#endif /* PROFILING_INTERNAL_H */
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