Many source files in the tree are missing licensing information, which makes it harder for compliance tools to determine the correct license. By default all files without license information are under the default license of the kernel, which is GPL version 2. Update the files which contain no license information with the 'GPL-2.0' SPDX license identifier. The SPDX identifier is a legally binding shorthand, which can be used instead of the full boiler plate text. This patch is based on work done by Thomas Gleixner and Kate Stewart and Philippe Ombredanne. How this work was done: Patches were generated and checked against linux-4.14-rc6 for a subset of the use cases: - file had no licensing information it it. - file was a */uapi/* one with no licensing information in it, - file was a */uapi/* one with existing licensing information, Further patches will be generated in subsequent months to fix up cases where non-standard license headers were used, and references to license had to be inferred by heuristics based on keywords. The analysis to determine which SPDX License Identifier to be applied to a file was done in a spreadsheet of side by side results from of the output of two independent scanners (ScanCode & Windriver) producing SPDX tag:value files created by Philippe Ombredanne. Philippe prepared the base worksheet, and did an initial spot review of a few 1000 files. The 4.13 kernel was the starting point of the analysis with 60,537 files assessed. Kate Stewart did a file by file comparison of the scanner results in the spreadsheet to determine which SPDX license identifier(s) to be applied to the file. She confirmed any determination that was not immediately clear with lawyers working with the Linux Foundation. Criteria used to select files for SPDX license identifier tagging was: - Files considered eligible had to be source code files. - Make and config files were included as candidates if they contained >5 lines of source - File already had some variant of a license header in it (even if <5 lines). All documentation files were explicitly excluded. The following heuristics were used to determine which SPDX license identifiers to apply. - when both scanners couldn't find any license traces, file was considered to have no license information in it, and the top level COPYING file license applied. For non */uapi/* files that summary was: SPDX license identifier # files ---------------------------------------------------|------- GPL-2.0 11139 and resulted in the first patch in this series. If that file was a */uapi/* path one, it was "GPL-2.0 WITH Linux-syscall-note" otherwise it was "GPL-2.0". Results of that was: SPDX license identifier # files ---------------------------------------------------|------- GPL-2.0 WITH Linux-syscall-note 930 and resulted in the second patch in this series. - if a file had some form of licensing information in it, and was one of the */uapi/* ones, it was denoted with the Linux-syscall-note if any GPL family license was found in the file or had no licensing in it (per prior point). Results summary: SPDX license identifier # files ---------------------------------------------------|------ GPL-2.0 WITH Linux-syscall-note 270 GPL-2.0+ WITH Linux-syscall-note 169 ((GPL-2.0 WITH Linux-syscall-note) OR BSD-2-Clause) 21 ((GPL-2.0 WITH Linux-syscall-note) OR BSD-3-Clause) 17 LGPL-2.1+ WITH Linux-syscall-note 15 GPL-1.0+ WITH Linux-syscall-note 14 ((GPL-2.0+ WITH Linux-syscall-note) OR BSD-3-Clause) 5 LGPL-2.0+ WITH Linux-syscall-note 4 LGPL-2.1 WITH Linux-syscall-note 3 ((GPL-2.0 WITH Linux-syscall-note) OR MIT) 3 ((GPL-2.0 WITH Linux-syscall-note) AND MIT) 1 and that resulted in the third patch in this series. - when the two scanners agreed on the detected license(s), that became the concluded license(s). - when there was disagreement between the two scanners (one detected a license but the other didn't, or they both detected different licenses) a manual inspection of the file occurred. - In most cases a manual inspection of the information in the file resulted in a clear resolution of the license that should apply (and which scanner probably needed to revisit its heuristics). - When it was not immediately clear, the license identifier was confirmed with lawyers working with the Linux Foundation. - If there was any question as to the appropriate license identifier, the file was flagged for further research and to be revisited later in time. In total, over 70 hours of logged manual review was done on the spreadsheet to determine the SPDX license identifiers to apply to the source files by Kate, Philippe, Thomas and, in some cases, confirmation by lawyers working with the Linux Foundation. Kate also obtained a third independent scan of the 4.13 code base from FOSSology, and compared selected files where the other two scanners disagreed against that SPDX file, to see if there was new insights. The Windriver scanner is based on an older version of FOSSology in part, so they are related. Thomas did random spot checks in about 500 files from the spreadsheets for the uapi headers and agreed with SPDX license identifier in the files he inspected. For the non-uapi files Thomas did random spot checks in about 15000 files. In initial set of patches against 4.14-rc6, 3 files were found to have copy/paste license identifier errors, and have been fixed to reflect the correct identifier. Additionally Philippe spent 10 hours this week doing a detailed manual inspection and review of the 12,461 patched files from the initial patch version early this week with: - a full scancode scan run, collecting the matched texts, detected license ids and scores - reviewing anything where there was a license detected (about 500+ files) to ensure that the applied SPDX license was correct - reviewing anything where there was no detection but the patch license was not GPL-2.0 WITH Linux-syscall-note to ensure that the applied SPDX license was correct This produced a worksheet with 20 files needing minor correction. This worksheet was then exported into 3 different .csv files for the different types of files to be modified. These .csv files were then reviewed by Greg. Thomas wrote a script to parse the csv files and add the proper SPDX tag to the file, in the format that the file expected. This script was further refined by Greg based on the output to detect more types of files automatically and to distinguish between header and source .c files (which need different comment types.) Finally Greg ran the script using the .csv files to generate the patches. Reviewed-by: Kate Stewart <kstewart@linuxfoundation.org> Reviewed-by: Philippe Ombredanne <pombredanne@nexb.com> Reviewed-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
445 lines
13 KiB
C
445 lines
13 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef __PERF_EVSEL_H
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#define __PERF_EVSEL_H 1
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#include <linux/list.h>
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#include <stdbool.h>
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#include <stddef.h>
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#include <linux/perf_event.h>
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#include <linux/types.h>
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#include "xyarray.h"
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#include "symbol.h"
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#include "cpumap.h"
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#include "counts.h"
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struct perf_evsel;
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/*
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* Per fd, to map back from PERF_SAMPLE_ID to evsel, only used when there are
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* more than one entry in the evlist.
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*/
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struct perf_sample_id {
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struct hlist_node node;
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u64 id;
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struct perf_evsel *evsel;
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int idx;
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int cpu;
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pid_t tid;
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/* Holds total ID period value for PERF_SAMPLE_READ processing. */
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u64 period;
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};
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struct cgroup_sel;
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/*
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* The 'struct perf_evsel_config_term' is used to pass event
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* specific configuration data to perf_evsel__config routine.
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* It is allocated within event parsing and attached to
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* perf_evsel::config_terms list head.
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*/
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enum {
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PERF_EVSEL__CONFIG_TERM_PERIOD,
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PERF_EVSEL__CONFIG_TERM_FREQ,
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PERF_EVSEL__CONFIG_TERM_TIME,
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PERF_EVSEL__CONFIG_TERM_CALLGRAPH,
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PERF_EVSEL__CONFIG_TERM_STACK_USER,
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PERF_EVSEL__CONFIG_TERM_INHERIT,
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PERF_EVSEL__CONFIG_TERM_MAX_STACK,
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PERF_EVSEL__CONFIG_TERM_OVERWRITE,
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PERF_EVSEL__CONFIG_TERM_DRV_CFG,
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PERF_EVSEL__CONFIG_TERM_BRANCH,
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PERF_EVSEL__CONFIG_TERM_MAX,
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};
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struct perf_evsel_config_term {
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struct list_head list;
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int type;
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union {
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u64 period;
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u64 freq;
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bool time;
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char *callgraph;
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char *drv_cfg;
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u64 stack_user;
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int max_stack;
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bool inherit;
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bool overwrite;
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char *branch;
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} val;
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};
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/** struct perf_evsel - event selector
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*
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* @evlist - evlist this evsel is in, if it is in one.
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* @node - To insert it into evlist->entries or in other list_heads, say in
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* the event parsing routines.
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* @name - Can be set to retain the original event name passed by the user,
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* so that when showing results in tools such as 'perf stat', we
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* show the name used, not some alias.
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* @id_pos: the position of the event id (PERF_SAMPLE_ID or
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* PERF_SAMPLE_IDENTIFIER) in a sample event i.e. in the array of
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* struct sample_event
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* @is_pos: the position (counting backwards) of the event id (PERF_SAMPLE_ID or
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* PERF_SAMPLE_IDENTIFIER) in a non-sample event i.e. if sample_id_all
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* is used there is an id sample appended to non-sample events
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* @priv: And what is in its containing unnamed union are tool specific
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*/
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struct perf_evsel {
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struct list_head node;
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struct perf_evlist *evlist;
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struct perf_event_attr attr;
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char *filter;
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struct xyarray *fd;
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struct xyarray *sample_id;
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u64 *id;
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struct perf_counts *counts;
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struct perf_counts *prev_raw_counts;
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int idx;
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u32 ids;
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char *name;
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double scale;
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const char *unit;
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struct event_format *tp_format;
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off_t id_offset;
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void *priv;
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u64 db_id;
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struct cgroup_sel *cgrp;
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void *handler;
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struct cpu_map *cpus;
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struct cpu_map *own_cpus;
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struct thread_map *threads;
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unsigned int sample_size;
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int id_pos;
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int is_pos;
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bool snapshot;
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bool supported;
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bool needs_swap;
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bool no_aux_samples;
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bool immediate;
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bool system_wide;
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bool tracking;
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bool per_pkg;
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bool precise_max;
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bool ignore_missing_thread;
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/* parse modifier helper */
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int exclude_GH;
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int nr_members;
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int sample_read;
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unsigned long *per_pkg_mask;
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struct perf_evsel *leader;
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char *group_name;
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bool cmdline_group_boundary;
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struct list_head config_terms;
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int bpf_fd;
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bool auto_merge_stats;
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bool merged_stat;
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const char * metric_expr;
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const char * metric_name;
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struct perf_evsel **metric_events;
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bool collect_stat;
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};
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union u64_swap {
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u64 val64;
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u32 val32[2];
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};
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struct cpu_map;
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struct target;
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struct thread_map;
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struct record_opts;
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static inline struct cpu_map *perf_evsel__cpus(struct perf_evsel *evsel)
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{
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return evsel->cpus;
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}
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static inline int perf_evsel__nr_cpus(struct perf_evsel *evsel)
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{
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return perf_evsel__cpus(evsel)->nr;
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}
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void perf_counts_values__scale(struct perf_counts_values *count,
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bool scale, s8 *pscaled);
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void perf_evsel__compute_deltas(struct perf_evsel *evsel, int cpu, int thread,
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struct perf_counts_values *count);
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int perf_evsel__object_config(size_t object_size,
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int (*init)(struct perf_evsel *evsel),
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void (*fini)(struct perf_evsel *evsel));
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struct perf_evsel *perf_evsel__new_idx(struct perf_event_attr *attr, int idx);
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static inline struct perf_evsel *perf_evsel__new(struct perf_event_attr *attr)
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{
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return perf_evsel__new_idx(attr, 0);
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}
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struct perf_evsel *perf_evsel__newtp_idx(const char *sys, const char *name, int idx);
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/*
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* Returns pointer with encoded error via <linux/err.h> interface.
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*/
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static inline struct perf_evsel *perf_evsel__newtp(const char *sys, const char *name)
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{
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return perf_evsel__newtp_idx(sys, name, 0);
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}
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struct perf_evsel *perf_evsel__new_cycles(bool precise);
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struct event_format *event_format__new(const char *sys, const char *name);
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void perf_evsel__init(struct perf_evsel *evsel,
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struct perf_event_attr *attr, int idx);
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void perf_evsel__exit(struct perf_evsel *evsel);
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void perf_evsel__delete(struct perf_evsel *evsel);
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struct callchain_param;
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void perf_evsel__config(struct perf_evsel *evsel,
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struct record_opts *opts,
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struct callchain_param *callchain);
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void perf_evsel__config_callchain(struct perf_evsel *evsel,
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struct record_opts *opts,
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struct callchain_param *callchain);
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int __perf_evsel__sample_size(u64 sample_type);
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void perf_evsel__calc_id_pos(struct perf_evsel *evsel);
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bool perf_evsel__is_cache_op_valid(u8 type, u8 op);
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#define PERF_EVSEL__MAX_ALIASES 8
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extern const char *perf_evsel__hw_cache[PERF_COUNT_HW_CACHE_MAX]
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[PERF_EVSEL__MAX_ALIASES];
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extern const char *perf_evsel__hw_cache_op[PERF_COUNT_HW_CACHE_OP_MAX]
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[PERF_EVSEL__MAX_ALIASES];
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extern const char *perf_evsel__hw_cache_result[PERF_COUNT_HW_CACHE_RESULT_MAX]
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[PERF_EVSEL__MAX_ALIASES];
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extern const char *perf_evsel__hw_names[PERF_COUNT_HW_MAX];
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extern const char *perf_evsel__sw_names[PERF_COUNT_SW_MAX];
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int __perf_evsel__hw_cache_type_op_res_name(u8 type, u8 op, u8 result,
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char *bf, size_t size);
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const char *perf_evsel__name(struct perf_evsel *evsel);
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const char *perf_evsel__group_name(struct perf_evsel *evsel);
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int perf_evsel__group_desc(struct perf_evsel *evsel, char *buf, size_t size);
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int perf_evsel__alloc_id(struct perf_evsel *evsel, int ncpus, int nthreads);
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void perf_evsel__close_fd(struct perf_evsel *evsel);
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void __perf_evsel__set_sample_bit(struct perf_evsel *evsel,
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enum perf_event_sample_format bit);
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void __perf_evsel__reset_sample_bit(struct perf_evsel *evsel,
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enum perf_event_sample_format bit);
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#define perf_evsel__set_sample_bit(evsel, bit) \
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__perf_evsel__set_sample_bit(evsel, PERF_SAMPLE_##bit)
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#define perf_evsel__reset_sample_bit(evsel, bit) \
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__perf_evsel__reset_sample_bit(evsel, PERF_SAMPLE_##bit)
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void perf_evsel__set_sample_id(struct perf_evsel *evsel,
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bool use_sample_identifier);
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int perf_evsel__set_filter(struct perf_evsel *evsel, const char *filter);
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int perf_evsel__append_tp_filter(struct perf_evsel *evsel, const char *filter);
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int perf_evsel__append_addr_filter(struct perf_evsel *evsel,
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const char *filter);
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int perf_evsel__apply_filter(struct perf_evsel *evsel, const char *filter);
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int perf_evsel__enable(struct perf_evsel *evsel);
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int perf_evsel__disable(struct perf_evsel *evsel);
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int perf_evsel__open_per_cpu(struct perf_evsel *evsel,
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struct cpu_map *cpus);
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int perf_evsel__open_per_thread(struct perf_evsel *evsel,
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struct thread_map *threads);
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int perf_evsel__open(struct perf_evsel *evsel, struct cpu_map *cpus,
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struct thread_map *threads);
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void perf_evsel__close(struct perf_evsel *evsel);
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struct perf_sample;
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void *perf_evsel__rawptr(struct perf_evsel *evsel, struct perf_sample *sample,
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const char *name);
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u64 perf_evsel__intval(struct perf_evsel *evsel, struct perf_sample *sample,
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const char *name);
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static inline char *perf_evsel__strval(struct perf_evsel *evsel,
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struct perf_sample *sample,
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const char *name)
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{
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return perf_evsel__rawptr(evsel, sample, name);
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}
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struct format_field;
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u64 format_field__intval(struct format_field *field, struct perf_sample *sample, bool needs_swap);
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struct format_field *perf_evsel__field(struct perf_evsel *evsel, const char *name);
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#define perf_evsel__match(evsel, t, c) \
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(evsel->attr.type == PERF_TYPE_##t && \
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evsel->attr.config == PERF_COUNT_##c)
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static inline bool perf_evsel__match2(struct perf_evsel *e1,
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struct perf_evsel *e2)
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{
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return (e1->attr.type == e2->attr.type) &&
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(e1->attr.config == e2->attr.config);
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}
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#define perf_evsel__cmp(a, b) \
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((a) && \
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(b) && \
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(a)->attr.type == (b)->attr.type && \
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(a)->attr.config == (b)->attr.config)
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int perf_evsel__read(struct perf_evsel *evsel, int cpu, int thread,
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struct perf_counts_values *count);
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int perf_evsel__read_counter(struct perf_evsel *evsel, int cpu, int thread);
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int __perf_evsel__read_on_cpu(struct perf_evsel *evsel,
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int cpu, int thread, bool scale);
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/**
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* perf_evsel__read_on_cpu - Read out the results on a CPU and thread
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*
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* @evsel - event selector to read value
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* @cpu - CPU of interest
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* @thread - thread of interest
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*/
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static inline int perf_evsel__read_on_cpu(struct perf_evsel *evsel,
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int cpu, int thread)
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{
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return __perf_evsel__read_on_cpu(evsel, cpu, thread, false);
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}
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/**
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* perf_evsel__read_on_cpu_scaled - Read out the results on a CPU and thread, scaled
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*
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* @evsel - event selector to read value
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* @cpu - CPU of interest
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* @thread - thread of interest
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*/
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static inline int perf_evsel__read_on_cpu_scaled(struct perf_evsel *evsel,
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int cpu, int thread)
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{
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return __perf_evsel__read_on_cpu(evsel, cpu, thread, true);
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}
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int perf_evsel__parse_sample(struct perf_evsel *evsel, union perf_event *event,
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struct perf_sample *sample);
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static inline struct perf_evsel *perf_evsel__next(struct perf_evsel *evsel)
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{
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return list_entry(evsel->node.next, struct perf_evsel, node);
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}
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static inline struct perf_evsel *perf_evsel__prev(struct perf_evsel *evsel)
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{
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return list_entry(evsel->node.prev, struct perf_evsel, node);
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}
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/**
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* perf_evsel__is_group_leader - Return whether given evsel is a leader event
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*
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* @evsel - evsel selector to be tested
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*
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* Return %true if @evsel is a group leader or a stand-alone event
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*/
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static inline bool perf_evsel__is_group_leader(const struct perf_evsel *evsel)
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{
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return evsel->leader == evsel;
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}
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/**
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* perf_evsel__is_group_event - Return whether given evsel is a group event
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*
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* @evsel - evsel selector to be tested
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*
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* Return %true iff event group view is enabled and @evsel is a actual group
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* leader which has other members in the group
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*/
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static inline bool perf_evsel__is_group_event(struct perf_evsel *evsel)
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{
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if (!symbol_conf.event_group)
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return false;
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return perf_evsel__is_group_leader(evsel) && evsel->nr_members > 1;
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}
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bool perf_evsel__is_function_event(struct perf_evsel *evsel);
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static inline bool perf_evsel__is_bpf_output(struct perf_evsel *evsel)
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{
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struct perf_event_attr *attr = &evsel->attr;
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return (attr->config == PERF_COUNT_SW_BPF_OUTPUT) &&
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(attr->type == PERF_TYPE_SOFTWARE);
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}
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struct perf_attr_details {
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bool freq;
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bool verbose;
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bool event_group;
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bool force;
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bool trace_fields;
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};
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int perf_evsel__fprintf(struct perf_evsel *evsel,
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struct perf_attr_details *details, FILE *fp);
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#define EVSEL__PRINT_IP (1<<0)
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#define EVSEL__PRINT_SYM (1<<1)
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#define EVSEL__PRINT_DSO (1<<2)
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#define EVSEL__PRINT_SYMOFFSET (1<<3)
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#define EVSEL__PRINT_ONELINE (1<<4)
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#define EVSEL__PRINT_SRCLINE (1<<5)
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#define EVSEL__PRINT_UNKNOWN_AS_ADDR (1<<6)
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#define EVSEL__PRINT_CALLCHAIN_ARROW (1<<7)
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#define EVSEL__PRINT_SKIP_IGNORED (1<<8)
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struct callchain_cursor;
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int sample__fprintf_callchain(struct perf_sample *sample, int left_alignment,
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unsigned int print_opts,
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struct callchain_cursor *cursor, FILE *fp);
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int sample__fprintf_sym(struct perf_sample *sample, struct addr_location *al,
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int left_alignment, unsigned int print_opts,
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struct callchain_cursor *cursor, FILE *fp);
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bool perf_evsel__fallback(struct perf_evsel *evsel, int err,
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char *msg, size_t msgsize);
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int perf_evsel__open_strerror(struct perf_evsel *evsel, struct target *target,
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int err, char *msg, size_t size);
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static inline int perf_evsel__group_idx(struct perf_evsel *evsel)
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{
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return evsel->idx - evsel->leader->idx;
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}
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#define for_each_group_member(_evsel, _leader) \
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for ((_evsel) = list_entry((_leader)->node.next, struct perf_evsel, node); \
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(_evsel) && (_evsel)->leader == (_leader); \
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(_evsel) = list_entry((_evsel)->node.next, struct perf_evsel, node))
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static inline bool perf_evsel__has_branch_callstack(const struct perf_evsel *evsel)
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{
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return evsel->attr.branch_sample_type & PERF_SAMPLE_BRANCH_CALL_STACK;
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}
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typedef int (*attr__fprintf_f)(FILE *, const char *, const char *, void *);
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int perf_event_attr__fprintf(FILE *fp, struct perf_event_attr *attr,
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attr__fprintf_f attr__fprintf, void *priv);
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char *perf_evsel__env_arch(struct perf_evsel *evsel);
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char *perf_evsel__env_cpuid(struct perf_evsel *evsel);
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#endif /* __PERF_EVSEL_H */
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