Add couple of basic utility functions to post process the mmap buffer. It includes function to read the total number of samples present in the mmap buffer and function to get the address of the first sample. Add function "get_intr_regs" which will return pointer to interrupt registers present in the sample, incase sample type PERF_SAMPLE_REGS_INTR is set. Add functions "get_reg_value" which can be used to read any interrupt register value from a given sample. Signed-off-by: Kajol Jain <kjain@linux.ibm.com> Signed-off-by: Michael Ellerman <mpe@ellerman.id.au> Link: https://lore.kernel.org/r/20220127072012.662451-5-kjain@linux.ibm.com
413 lines
9.8 KiB
C
413 lines
9.8 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Copyright 2022, Athira Rajeev, IBM Corp.
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* Copyright 2022, Madhavan Srinivasan, IBM Corp.
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* Copyright 2022, Kajol Jain, IBM Corp.
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*/
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#include <unistd.h>
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#include <sys/syscall.h>
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#include <string.h>
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#include <stdio.h>
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#include <sys/ioctl.h>
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#include <sys/mman.h>
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#include <stdlib.h>
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#include <ctype.h>
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#include "misc.h"
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#define PAGE_SIZE sysconf(_SC_PAGESIZE)
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/* Storage for platform version */
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int pvr;
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u64 platform_extended_mask;
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/* Mask and Shift for Event code fields */
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int ev_mask_pmcxsel, ev_shift_pmcxsel; //pmcxsel field
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int ev_mask_marked, ev_shift_marked; //marked filed
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int ev_mask_comb, ev_shift_comb; //combine field
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int ev_mask_unit, ev_shift_unit; //unit field
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int ev_mask_pmc, ev_shift_pmc; //pmc field
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int ev_mask_cache, ev_shift_cache; //Cache sel field
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int ev_mask_sample, ev_shift_sample; //Random sampling field
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int ev_mask_thd_sel, ev_shift_thd_sel; //thresh_sel field
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int ev_mask_thd_start, ev_shift_thd_start; //thresh_start field
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int ev_mask_thd_stop, ev_shift_thd_stop; //thresh_stop field
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int ev_mask_thd_cmp, ev_shift_thd_cmp; //thresh cmp field
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int ev_mask_sm, ev_shift_sm; //SDAR mode field
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int ev_mask_rsq, ev_shift_rsq; //radix scope qual field
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int ev_mask_l2l3, ev_shift_l2l3; //l2l3 sel field
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int ev_mask_mmcr3_src, ev_shift_mmcr3_src; //mmcr3 field
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static void init_ev_encodes(void)
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{
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ev_mask_pmcxsel = 0xff;
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ev_shift_pmcxsel = 0;
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ev_mask_marked = 1;
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ev_shift_marked = 8;
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ev_mask_unit = 0xf;
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ev_shift_unit = 12;
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ev_mask_pmc = 0xf;
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ev_shift_pmc = 16;
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ev_mask_sample = 0x1f;
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ev_shift_sample = 24;
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ev_mask_thd_sel = 0x7;
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ev_shift_thd_sel = 29;
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ev_mask_thd_start = 0xf;
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ev_shift_thd_start = 36;
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ev_mask_thd_stop = 0xf;
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ev_shift_thd_stop = 32;
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switch (pvr) {
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case POWER10:
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ev_mask_rsq = 1;
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ev_shift_rsq = 9;
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ev_mask_comb = 3;
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ev_shift_comb = 10;
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ev_mask_cache = 3;
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ev_shift_cache = 20;
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ev_mask_sm = 0x3;
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ev_shift_sm = 22;
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ev_mask_l2l3 = 0x1f;
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ev_shift_l2l3 = 40;
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ev_mask_mmcr3_src = 0x7fff;
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ev_shift_mmcr3_src = 45;
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break;
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case POWER9:
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ev_mask_comb = 3;
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ev_shift_comb = 10;
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ev_mask_cache = 0xf;
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ev_shift_cache = 20;
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ev_mask_thd_cmp = 0x3ff;
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ev_shift_thd_cmp = 40;
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ev_mask_sm = 0x3;
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ev_shift_sm = 50;
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break;
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default:
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FAIL_IF_EXIT(1);
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}
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}
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/* Return the extended regs mask value */
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static u64 perf_get_platform_reg_mask(void)
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{
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if (have_hwcap2(PPC_FEATURE2_ARCH_3_1))
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return PERF_POWER10_MASK;
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if (have_hwcap2(PPC_FEATURE2_ARCH_3_00))
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return PERF_POWER9_MASK;
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return -1;
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}
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int check_extended_regs_support(void)
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{
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int fd;
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struct event event;
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event_init(&event, 0x1001e);
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event.attr.type = 4;
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event.attr.sample_period = 1;
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event.attr.disabled = 1;
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event.attr.sample_type = PERF_SAMPLE_REGS_INTR;
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event.attr.sample_regs_intr = platform_extended_mask;
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fd = event_open(&event);
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if (fd != -1)
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return 0;
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return -1;
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}
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int check_pvr_for_sampling_tests(void)
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{
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pvr = PVR_VER(mfspr(SPRN_PVR));
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platform_extended_mask = perf_get_platform_reg_mask();
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/*
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* Check for supported platforms
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* for sampling test
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*/
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if ((pvr != POWER10) && (pvr != POWER9))
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goto out;
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/*
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* Check PMU driver registered by looking for
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* PPC_FEATURE2_EBB bit in AT_HWCAP2
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*/
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if (!have_hwcap2(PPC_FEATURE2_EBB))
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goto out;
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/* check if platform supports extended regs */
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if (check_extended_regs_support())
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goto out;
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init_ev_encodes();
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return 0;
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out:
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printf("%s: Sampling tests un-supported\n", __func__);
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return -1;
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}
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/*
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* Allocate mmap buffer of "mmap_pages" number of
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* pages.
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*/
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void *event_sample_buf_mmap(int fd, int mmap_pages)
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{
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size_t page_size = sysconf(_SC_PAGESIZE);
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size_t mmap_size;
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void *buff;
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if (mmap_pages <= 0)
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return NULL;
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if (fd <= 0)
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return NULL;
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mmap_size = page_size * (1 + mmap_pages);
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buff = mmap(NULL, mmap_size,
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PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0);
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if (buff == MAP_FAILED) {
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perror("mmap() failed.");
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return NULL;
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}
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return buff;
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}
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/*
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* Post process the mmap buffer.
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* - If sample_count != NULL then return count of total
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* number of samples present in the mmap buffer.
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* - If sample_count == NULL then return the address
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* of first sample from the mmap buffer
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*/
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void *__event_read_samples(void *sample_buff, size_t *size, u64 *sample_count)
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{
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size_t page_size = sysconf(_SC_PAGESIZE);
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struct perf_event_header *header = sample_buff + page_size;
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struct perf_event_mmap_page *metadata_page = sample_buff;
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unsigned long data_head, data_tail;
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/*
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* PERF_RECORD_SAMPLE:
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* struct {
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* struct perf_event_header hdr;
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* u64 data[];
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* };
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*/
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data_head = metadata_page->data_head;
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/* sync memory before reading sample */
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mb();
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data_tail = metadata_page->data_tail;
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/* Check for sample_count */
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if (sample_count)
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*sample_count = 0;
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while (1) {
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/*
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* Reads the mmap data buffer by moving
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* the data_tail to know the last read data.
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* data_head points to head in data buffer.
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* refer "struct perf_event_mmap_page" in
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* "include/uapi/linux/perf_event.h".
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*/
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if (data_head - data_tail < sizeof(header))
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return NULL;
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data_tail += sizeof(header);
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if (header->type == PERF_RECORD_SAMPLE) {
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*size = (header->size - sizeof(header));
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if (!sample_count)
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return sample_buff + page_size + data_tail;
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data_tail += *size;
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*sample_count += 1;
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} else {
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*size = (header->size - sizeof(header));
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if ((metadata_page->data_tail + *size) > metadata_page->data_head)
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data_tail = metadata_page->data_head;
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else
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data_tail += *size;
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}
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header = (struct perf_event_header *)((void *)header + header->size);
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}
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return NULL;
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}
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int collect_samples(void *sample_buff)
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{
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u64 sample_count;
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size_t size = 0;
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__event_read_samples(sample_buff, &size, &sample_count);
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return sample_count;
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}
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static void *perf_read_first_sample(void *sample_buff, size_t *size)
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{
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return __event_read_samples(sample_buff, size, NULL);
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}
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u64 *get_intr_regs(struct event *event, void *sample_buff)
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{
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u64 type = event->attr.sample_type;
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u64 *intr_regs;
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size_t size = 0;
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if ((type ^ PERF_SAMPLE_REGS_INTR))
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return NULL;
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intr_regs = (u64 *)perf_read_first_sample(sample_buff, &size);
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if (!intr_regs)
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return NULL;
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/*
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* First entry in the sample buffer used to specify
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* PERF_SAMPLE_REGS_ABI_64, skip perf regs abi to access
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* interrupt registers.
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*/
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++intr_regs;
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return intr_regs;
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}
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static const unsigned int __perf_reg_mask(const char *register_name)
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{
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if (!strcmp(register_name, "R0"))
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return 0;
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else if (!strcmp(register_name, "R1"))
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return 1;
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else if (!strcmp(register_name, "R2"))
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return 2;
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else if (!strcmp(register_name, "R3"))
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return 3;
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else if (!strcmp(register_name, "R4"))
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return 4;
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else if (!strcmp(register_name, "R5"))
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return 5;
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else if (!strcmp(register_name, "R6"))
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return 6;
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else if (!strcmp(register_name, "R7"))
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return 7;
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else if (!strcmp(register_name, "R8"))
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return 8;
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else if (!strcmp(register_name, "R9"))
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return 9;
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else if (!strcmp(register_name, "R10"))
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return 10;
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else if (!strcmp(register_name, "R11"))
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return 11;
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else if (!strcmp(register_name, "R12"))
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return 12;
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else if (!strcmp(register_name, "R13"))
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return 13;
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else if (!strcmp(register_name, "R14"))
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return 14;
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else if (!strcmp(register_name, "R15"))
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return 15;
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else if (!strcmp(register_name, "R16"))
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return 16;
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else if (!strcmp(register_name, "R17"))
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return 17;
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else if (!strcmp(register_name, "R18"))
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return 18;
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else if (!strcmp(register_name, "R19"))
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return 19;
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else if (!strcmp(register_name, "R20"))
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return 20;
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else if (!strcmp(register_name, "R21"))
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return 21;
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else if (!strcmp(register_name, "R22"))
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return 22;
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else if (!strcmp(register_name, "R23"))
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return 23;
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else if (!strcmp(register_name, "R24"))
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return 24;
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else if (!strcmp(register_name, "R25"))
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return 25;
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else if (!strcmp(register_name, "R26"))
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return 26;
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else if (!strcmp(register_name, "R27"))
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return 27;
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else if (!strcmp(register_name, "R28"))
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return 28;
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else if (!strcmp(register_name, "R29"))
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return 29;
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else if (!strcmp(register_name, "R30"))
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return 30;
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else if (!strcmp(register_name, "R31"))
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return 31;
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else if (!strcmp(register_name, "NIP"))
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return 32;
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else if (!strcmp(register_name, "MSR"))
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return 33;
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else if (!strcmp(register_name, "ORIG_R3"))
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return 34;
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else if (!strcmp(register_name, "CTR"))
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return 35;
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else if (!strcmp(register_name, "LINK"))
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return 36;
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else if (!strcmp(register_name, "XER"))
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return 37;
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else if (!strcmp(register_name, "CCR"))
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return 38;
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else if (!strcmp(register_name, "SOFTE"))
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return 39;
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else if (!strcmp(register_name, "TRAP"))
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return 40;
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else if (!strcmp(register_name, "DAR"))
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return 41;
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else if (!strcmp(register_name, "DSISR"))
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return 42;
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else if (!strcmp(register_name, "SIER"))
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return 43;
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else if (!strcmp(register_name, "MMCRA"))
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return 44;
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else if (!strcmp(register_name, "MMCR0"))
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return 45;
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else if (!strcmp(register_name, "MMCR1"))
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return 46;
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else if (!strcmp(register_name, "MMCR2"))
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return 47;
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else if (!strcmp(register_name, "MMCR3"))
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return 48;
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else if (!strcmp(register_name, "SIER2"))
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return 49;
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else if (!strcmp(register_name, "SIER3"))
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return 50;
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else if (!strcmp(register_name, "PMC1"))
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return 51;
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else if (!strcmp(register_name, "PMC2"))
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return 52;
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else if (!strcmp(register_name, "PMC3"))
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return 53;
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else if (!strcmp(register_name, "PMC4"))
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return 54;
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else if (!strcmp(register_name, "PMC5"))
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return 55;
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else if (!strcmp(register_name, "PMC6"))
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return 56;
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else if (!strcmp(register_name, "SDAR"))
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return 57;
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else if (!strcmp(register_name, "SIAR"))
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return 58;
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else
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return -1;
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}
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u64 get_reg_value(u64 *intr_regs, char *register_name)
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{
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int register_bit_position;
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register_bit_position = __perf_reg_mask(register_name);
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if (register_bit_position < 0 || (!((platform_extended_mask >>
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(register_bit_position - 1)) & 1)))
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return -1;
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return *(intr_regs + register_bit_position);
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}
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