linux/tools/perf/util/parse-events.y
Ian Rogers 251aa04024 perf parse-events: Wildcard most "numeric" events
Numeric events are either raw events or those with ABI defined numbers
matched by the lexer. PERF_TYPE_HARDWARE and PERF_TYPE_HW_CACHE events
should wildcard match on hybrid systems. So "cycles" should match each
PMU type with an extended type, not just PERF_TYPE_HARDWARE.

Change wildcard matching to add the event even if wildcard PMU
scanning fails, there will be no extended type but this best matches
previous behavior.

Only set the extended type when the event type supports it and when
perf_pmus__supports_extended_type is true. This new function returns
true if >1 core PMU and avoids potential errors on older kernels.

Modify evsel__compute_group_pmu_name using a helper
perf_pmu__is_software to determine when grouping should occur. Try to
use PMUs, and evsel__find_pmu, as being more dependable than
evsel->pmu_name.

Set a parse events error if a hardware term's PMU lookup fails, to
provide extra diagnostics.

Fixes: 8bc75f699c ("perf parse-events: Support wildcards on raw events")
Reported-by: Kan Liang <kan.liang@linux.intel.com>
Signed-off-by: Ian Rogers <irogers@google.com>
Tested-by: Kan Liang <kan.liang@linux.intel.com>
Cc: Adrian Hunter <adrian.hunter@intel.com>
Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com>
Cc: Ingo Molnar <mingo@redhat.com>
Cc: Jiri Olsa <jolsa@kernel.org>
Cc: Mark Rutland <mark.rutland@arm.com>
Cc: Namhyung Kim <namhyung@kernel.org>
Cc: Peter Zijlstra <peterz@infradead.org>
Cc: Ravi Bangoria <ravi.bangoria@amd.com>
Cc: Rob Herring <robh@kernel.org>
Cc: Thomas Richter <tmricht@linux.ibm.com>
Cc: Xing Zhengjun <zhengjun.xing@linux.intel.com>
Link: https://lore.kernel.org/r/20230601082954.754318-4-irogers@google.com
Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
2023-06-01 14:27:30 -03:00

991 lines
18 KiB
Text

%define api.pure full
%parse-param {void *_parse_state}
%parse-param {void *scanner}
%lex-param {void* scanner}
%locations
%{
#define YYDEBUG 1
#include <errno.h>
#include <fnmatch.h>
#include <stdio.h>
#include <linux/compiler.h>
#include <linux/types.h>
#include <linux/zalloc.h>
#include "pmu.h"
#include "pmus.h"
#include "evsel.h"
#include "parse-events.h"
#include "parse-events-bison.h"
void parse_events_error(YYLTYPE *loc, void *parse_state, void *scanner, char const *msg);
#define ABORT_ON(val) \
do { \
if (val) \
YYABORT; \
} while (0)
static struct list_head* alloc_list(void)
{
struct list_head *list;
list = malloc(sizeof(*list));
if (!list)
return NULL;
INIT_LIST_HEAD(list);
return list;
}
static void free_list_evsel(struct list_head* list_evsel)
{
struct evsel *evsel, *tmp;
list_for_each_entry_safe(evsel, tmp, list_evsel, core.node) {
list_del_init(&evsel->core.node);
evsel__delete(evsel);
}
free(list_evsel);
}
%}
%token PE_START_EVENTS PE_START_TERMS
%token PE_VALUE PE_VALUE_SYM_HW PE_VALUE_SYM_SW PE_TERM
%token PE_VALUE_SYM_TOOL
%token PE_EVENT_NAME
%token PE_RAW PE_NAME
%token PE_BPF_OBJECT PE_BPF_SOURCE
%token PE_MODIFIER_EVENT PE_MODIFIER_BP
%token PE_LEGACY_CACHE
%token PE_PREFIX_MEM PE_PREFIX_RAW PE_PREFIX_GROUP
%token PE_ERROR
%token PE_KERNEL_PMU_EVENT PE_PMU_EVENT_FAKE
%token PE_ARRAY_ALL PE_ARRAY_RANGE
%token PE_DRV_CFG_TERM
%token PE_TERM_HW
%type <num> PE_VALUE
%type <num> PE_VALUE_SYM_HW
%type <num> PE_VALUE_SYM_SW
%type <num> PE_VALUE_SYM_TOOL
%type <num> PE_TERM
%type <num> value_sym
%type <str> PE_RAW
%type <str> PE_NAME
%type <str> PE_BPF_OBJECT
%type <str> PE_BPF_SOURCE
%type <str> PE_LEGACY_CACHE
%type <str> PE_MODIFIER_EVENT
%type <str> PE_MODIFIER_BP
%type <str> PE_EVENT_NAME
%type <str> PE_KERNEL_PMU_EVENT PE_PMU_EVENT_FAKE
%type <str> PE_DRV_CFG_TERM
%type <str> name_or_raw name_or_legacy
%destructor { free ($$); } <str>
%type <term> event_term
%destructor { parse_events_term__delete ($$); } <term>
%type <list_terms> event_config
%type <list_terms> opt_event_config
%type <list_terms> opt_pmu_config
%destructor { parse_events_terms__delete ($$); } <list_terms>
%type <list_evsel> event_pmu
%type <list_evsel> event_legacy_symbol
%type <list_evsel> event_legacy_cache
%type <list_evsel> event_legacy_mem
%type <list_evsel> event_legacy_tracepoint
%type <list_evsel> event_legacy_numeric
%type <list_evsel> event_legacy_raw
%type <list_evsel> event_bpf_file
%type <list_evsel> event_def
%type <list_evsel> event_mod
%type <list_evsel> event_name
%type <list_evsel> event
%type <list_evsel> events
%type <list_evsel> group_def
%type <list_evsel> group
%type <list_evsel> groups
%destructor { free_list_evsel ($$); } <list_evsel>
%type <tracepoint_name> tracepoint_name
%destructor { free ($$.sys); free ($$.event); } <tracepoint_name>
%type <array> array
%type <array> array_term
%type <array> array_terms
%destructor { free ($$.ranges); } <array>
%type <hardware_term> PE_TERM_HW
%destructor { free ($$.str); } <hardware_term>
%union
{
char *str;
u64 num;
struct list_head *list_evsel;
struct list_head *list_terms;
struct parse_events_term *term;
struct tracepoint_name {
char *sys;
char *event;
} tracepoint_name;
struct parse_events_array array;
struct hardware_term {
char *str;
u64 num;
} hardware_term;
}
%%
start:
PE_START_EVENTS start_events
|
PE_START_TERMS start_terms
start_events: groups
{
struct parse_events_state *parse_state = _parse_state;
/* frees $1 */
parse_events_update_lists($1, &parse_state->list);
}
groups:
groups ',' group
{
struct list_head *list = $1;
struct list_head *group = $3;
/* frees $3 */
parse_events_update_lists(group, list);
$$ = list;
}
|
groups ',' event
{
struct list_head *list = $1;
struct list_head *event = $3;
/* frees $3 */
parse_events_update_lists(event, list);
$$ = list;
}
|
group
|
event
group:
group_def ':' PE_MODIFIER_EVENT
{
struct list_head *list = $1;
int err;
err = parse_events__modifier_group(list, $3);
free($3);
if (err) {
struct parse_events_state *parse_state = _parse_state;
struct parse_events_error *error = parse_state->error;
parse_events_error__handle(error, @3.first_column,
strdup("Bad modifier"), NULL);
free_list_evsel(list);
YYABORT;
}
$$ = list;
}
|
group_def
group_def:
PE_NAME '{' events '}'
{
struct list_head *list = $3;
/* Takes ownership of $1. */
parse_events__set_leader($1, list);
$$ = list;
}
|
'{' events '}'
{
struct list_head *list = $2;
parse_events__set_leader(NULL, list);
$$ = list;
}
events:
events ',' event
{
struct list_head *event = $3;
struct list_head *list = $1;
/* frees $3 */
parse_events_update_lists(event, list);
$$ = list;
}
|
event
event: event_mod
event_mod:
event_name PE_MODIFIER_EVENT
{
struct list_head *list = $1;
int err;
/*
* Apply modifier on all events added by single event definition
* (there could be more events added for multiple tracepoint
* definitions via '*?'.
*/
err = parse_events__modifier_event(list, $2, false);
free($2);
if (err) {
struct parse_events_state *parse_state = _parse_state;
struct parse_events_error *error = parse_state->error;
parse_events_error__handle(error, @2.first_column,
strdup("Bad modifier"), NULL);
free_list_evsel(list);
YYABORT;
}
$$ = list;
}
|
event_name
event_name:
PE_EVENT_NAME event_def
{
int err;
err = parse_events_name($2, $1);
free($1);
if (err) {
free_list_evsel($2);
YYABORT;
}
$$ = $2;
}
|
event_def
event_def: event_pmu |
event_legacy_symbol |
event_legacy_cache sep_dc |
event_legacy_mem |
event_legacy_tracepoint sep_dc |
event_legacy_numeric sep_dc |
event_legacy_raw sep_dc |
event_bpf_file
event_pmu:
PE_NAME opt_pmu_config
{
struct parse_events_state *parse_state = _parse_state;
struct parse_events_error *error = parse_state->error;
struct list_head *list = NULL, *orig_terms = NULL, *terms= NULL;
char *pattern = NULL;
#define CLEANUP_YYABORT \
do { \
parse_events_terms__delete($2); \
parse_events_terms__delete(orig_terms); \
free(list); \
free($1); \
free(pattern); \
YYABORT; \
} while(0)
if (parse_events_copy_term_list($2, &orig_terms))
CLEANUP_YYABORT;
if (error)
error->idx = @1.first_column;
list = alloc_list();
if (!list)
CLEANUP_YYABORT;
/* Attempt to add to list assuming $1 is a PMU name. */
if (parse_events_add_pmu(parse_state, list, $1, $2, /*auto_merge_stats=*/false)) {
struct perf_pmu *pmu = NULL;
int ok = 0;
/* Failure to add, try wildcard expansion of $1 as a PMU name. */
if (asprintf(&pattern, "%s*", $1) < 0)
CLEANUP_YYABORT;
while ((pmu = perf_pmus__scan(pmu)) != NULL) {
char *name = pmu->name;
if (parse_events__filter_pmu(parse_state, pmu))
continue;
if (!strncmp(name, "uncore_", 7) &&
strncmp($1, "uncore_", 7))
name += 7;
if (!perf_pmu__match(pattern, name, $1) ||
!perf_pmu__match(pattern, pmu->alias_name, $1)) {
bool auto_merge_stats = perf_pmu__auto_merge_stats(pmu);
if (parse_events_copy_term_list(orig_terms, &terms))
CLEANUP_YYABORT;
if (!parse_events_add_pmu(parse_state, list, pmu->name, terms,
auto_merge_stats)) {
ok++;
parse_state->wild_card_pmus = true;
}
parse_events_terms__delete(terms);
}
}
if (!ok) {
/* Failure to add, assume $1 is an event name. */
zfree(&list);
ok = !parse_events_multi_pmu_add(parse_state, $1, $2, &list);
$2 = NULL;
}
if (!ok)
CLEANUP_YYABORT;
}
parse_events_terms__delete($2);
parse_events_terms__delete(orig_terms);
free(pattern);
free($1);
$$ = list;
#undef CLEANUP_YYABORT
}
|
PE_KERNEL_PMU_EVENT sep_dc
{
struct list_head *list;
int err;
err = parse_events_multi_pmu_add(_parse_state, $1, NULL, &list);
free($1);
if (err < 0)
YYABORT;
$$ = list;
}
|
PE_NAME sep_dc
{
struct list_head *list;
int err;
err = parse_events_multi_pmu_add(_parse_state, $1, NULL, &list);
free($1);
if (err < 0)
YYABORT;
$$ = list;
}
|
PE_KERNEL_PMU_EVENT opt_pmu_config
{
struct list_head *list;
int err;
/* frees $2 */
err = parse_events_multi_pmu_add(_parse_state, $1, $2, &list);
free($1);
if (err < 0)
YYABORT;
$$ = list;
}
|
PE_PMU_EVENT_FAKE sep_dc
{
struct list_head *list;
int err;
list = alloc_list();
if (!list)
YYABORT;
err = parse_events_add_pmu(_parse_state, list, $1, /*head_config=*/NULL,
/*auto_merge_stats=*/false);
free($1);
if (err < 0) {
free(list);
YYABORT;
}
$$ = list;
}
|
PE_PMU_EVENT_FAKE opt_pmu_config
{
struct list_head *list;
int err;
list = alloc_list();
if (!list)
YYABORT;
err = parse_events_add_pmu(_parse_state, list, $1, $2, /*auto_merge_stats=*/false);
free($1);
parse_events_terms__delete($2);
if (err < 0) {
free(list);
YYABORT;
}
$$ = list;
}
value_sym:
PE_VALUE_SYM_HW
|
PE_VALUE_SYM_SW
event_legacy_symbol:
value_sym '/' event_config '/'
{
struct list_head *list;
int type = $1 >> 16;
int config = $1 & 255;
int err;
bool wildcard = (type == PERF_TYPE_HARDWARE || type == PERF_TYPE_HW_CACHE);
list = alloc_list();
ABORT_ON(!list);
err = parse_events_add_numeric(_parse_state, list, type, config, $3, wildcard);
parse_events_terms__delete($3);
if (err) {
free_list_evsel(list);
YYABORT;
}
$$ = list;
}
|
value_sym sep_slash_slash_dc
{
struct list_head *list;
int type = $1 >> 16;
int config = $1 & 255;
bool wildcard = (type == PERF_TYPE_HARDWARE || type == PERF_TYPE_HW_CACHE);
list = alloc_list();
ABORT_ON(!list);
ABORT_ON(parse_events_add_numeric(_parse_state, list, type, config,
/*head_config=*/NULL, wildcard));
$$ = list;
}
|
PE_VALUE_SYM_TOOL sep_slash_slash_dc
{
struct list_head *list;
list = alloc_list();
ABORT_ON(!list);
ABORT_ON(parse_events_add_tool(_parse_state, list, $1));
$$ = list;
}
event_legacy_cache:
PE_LEGACY_CACHE opt_event_config
{
struct parse_events_state *parse_state = _parse_state;
struct list_head *list;
int err;
list = alloc_list();
ABORT_ON(!list);
err = parse_events_add_cache(list, &parse_state->idx, $1, parse_state, $2);
parse_events_terms__delete($2);
free($1);
if (err) {
free_list_evsel(list);
YYABORT;
}
$$ = list;
}
event_legacy_mem:
PE_PREFIX_MEM PE_VALUE '/' PE_VALUE ':' PE_MODIFIER_BP sep_dc
{
struct parse_events_state *parse_state = _parse_state;
struct list_head *list;
int err;
list = alloc_list();
ABORT_ON(!list);
err = parse_events_add_breakpoint(list, &parse_state->idx,
$2, $6, $4);
free($6);
if (err) {
free(list);
YYABORT;
}
$$ = list;
}
|
PE_PREFIX_MEM PE_VALUE '/' PE_VALUE sep_dc
{
struct parse_events_state *parse_state = _parse_state;
struct list_head *list;
list = alloc_list();
ABORT_ON(!list);
if (parse_events_add_breakpoint(list, &parse_state->idx,
$2, NULL, $4)) {
free(list);
YYABORT;
}
$$ = list;
}
|
PE_PREFIX_MEM PE_VALUE ':' PE_MODIFIER_BP sep_dc
{
struct parse_events_state *parse_state = _parse_state;
struct list_head *list;
int err;
list = alloc_list();
ABORT_ON(!list);
err = parse_events_add_breakpoint(list, &parse_state->idx,
$2, $4, 0);
free($4);
if (err) {
free(list);
YYABORT;
}
$$ = list;
}
|
PE_PREFIX_MEM PE_VALUE sep_dc
{
struct parse_events_state *parse_state = _parse_state;
struct list_head *list;
list = alloc_list();
ABORT_ON(!list);
if (parse_events_add_breakpoint(list, &parse_state->idx,
$2, NULL, 0)) {
free(list);
YYABORT;
}
$$ = list;
}
event_legacy_tracepoint:
tracepoint_name opt_event_config
{
struct parse_events_state *parse_state = _parse_state;
struct parse_events_error *error = parse_state->error;
struct list_head *list;
int err;
list = alloc_list();
ABORT_ON(!list);
if (error)
error->idx = @1.first_column;
err = parse_events_add_tracepoint(list, &parse_state->idx, $1.sys, $1.event,
error, $2);
parse_events_terms__delete($2);
free($1.sys);
free($1.event);
if (err) {
free(list);
YYABORT;
}
$$ = list;
}
tracepoint_name:
PE_NAME ':' PE_NAME
{
struct tracepoint_name tracepoint = {$1, $3};
$$ = tracepoint;
}
event_legacy_numeric:
PE_VALUE ':' PE_VALUE opt_event_config
{
struct list_head *list;
int err;
list = alloc_list();
ABORT_ON(!list);
err = parse_events_add_numeric(_parse_state, list, (u32)$1, $3, $4,
/*wildcard=*/false);
parse_events_terms__delete($4);
if (err) {
free(list);
YYABORT;
}
$$ = list;
}
event_legacy_raw:
PE_RAW opt_event_config
{
struct list_head *list;
int err;
u64 num;
list = alloc_list();
ABORT_ON(!list);
errno = 0;
num = strtoull($1 + 1, NULL, 16);
ABORT_ON(errno);
free($1);
err = parse_events_add_numeric(_parse_state, list, PERF_TYPE_RAW, num, $2,
/*wildcard=*/false);
parse_events_terms__delete($2);
if (err) {
free(list);
YYABORT;
}
$$ = list;
}
event_bpf_file:
PE_BPF_OBJECT opt_event_config
{
struct parse_events_state *parse_state = _parse_state;
struct list_head *list;
int err;
list = alloc_list();
ABORT_ON(!list);
err = parse_events_load_bpf(parse_state, list, $1, false, $2);
parse_events_terms__delete($2);
free($1);
if (err) {
free(list);
YYABORT;
}
$$ = list;
}
|
PE_BPF_SOURCE opt_event_config
{
struct list_head *list;
int err;
list = alloc_list();
ABORT_ON(!list);
err = parse_events_load_bpf(_parse_state, list, $1, true, $2);
parse_events_terms__delete($2);
if (err) {
free(list);
YYABORT;
}
$$ = list;
}
opt_event_config:
'/' event_config '/'
{
$$ = $2;
}
|
'/' '/'
{
$$ = NULL;
}
|
{
$$ = NULL;
}
opt_pmu_config:
'/' event_config '/'
{
$$ = $2;
}
|
'/' '/'
{
$$ = NULL;
}
start_terms: event_config
{
struct parse_events_state *parse_state = _parse_state;
if (parse_state->terms) {
parse_events_terms__delete ($1);
YYABORT;
}
parse_state->terms = $1;
}
event_config:
event_config ',' event_term
{
struct list_head *head = $1;
struct parse_events_term *term = $3;
if (!head) {
parse_events_term__delete(term);
YYABORT;
}
list_add_tail(&term->list, head);
$$ = $1;
}
|
event_term
{
struct list_head *head = malloc(sizeof(*head));
struct parse_events_term *term = $1;
ABORT_ON(!head);
INIT_LIST_HEAD(head);
list_add_tail(&term->list, head);
$$ = head;
}
name_or_raw: PE_RAW | PE_NAME | PE_LEGACY_CACHE
name_or_legacy: PE_NAME | PE_LEGACY_CACHE
event_term:
PE_RAW
{
struct parse_events_term *term;
if (parse_events_term__str(&term, PARSE_EVENTS__TERM_TYPE_RAW,
strdup("raw"), $1, &@1, &@1)) {
free($1);
YYABORT;
}
$$ = term;
}
|
name_or_raw '=' name_or_legacy
{
struct parse_events_term *term;
if (parse_events_term__str(&term, PARSE_EVENTS__TERM_TYPE_USER,
$1, $3, &@1, &@3)) {
free($1);
free($3);
YYABORT;
}
$$ = term;
}
|
name_or_raw '=' PE_VALUE
{
struct parse_events_term *term;
if (parse_events_term__num(&term, PARSE_EVENTS__TERM_TYPE_USER,
$1, $3, false, &@1, &@3)) {
free($1);
YYABORT;
}
$$ = term;
}
|
name_or_raw '=' PE_TERM_HW
{
struct parse_events_term *term;
if (parse_events_term__str(&term, PARSE_EVENTS__TERM_TYPE_USER,
$1, $3.str, &@1, &@3)) {
free($1);
free($3.str);
YYABORT;
}
$$ = term;
}
|
PE_LEGACY_CACHE
{
struct parse_events_term *term;
if (parse_events_term__num(&term, PARSE_EVENTS__TERM_TYPE_LEGACY_CACHE,
$1, 1, true, &@1, NULL)) {
free($1);
YYABORT;
}
$$ = term;
}
|
PE_NAME
{
struct parse_events_term *term;
if (parse_events_term__num(&term, PARSE_EVENTS__TERM_TYPE_USER,
$1, 1, true, &@1, NULL)) {
free($1);
YYABORT;
}
$$ = term;
}
|
PE_TERM_HW
{
struct parse_events_term *term;
if (parse_events_term__num(&term, PARSE_EVENTS__TERM_TYPE_HARDWARE,
$1.str, $1.num & 255, false, &@1, NULL)) {
free($1.str);
YYABORT;
}
$$ = term;
}
|
PE_TERM '=' name_or_legacy
{
struct parse_events_term *term;
if (parse_events_term__str(&term, (int)$1, NULL, $3, &@1, &@3)) {
free($3);
YYABORT;
}
$$ = term;
}
|
PE_TERM '=' PE_TERM_HW
{
struct parse_events_term *term;
if (parse_events_term__str(&term, (int)$1, NULL, $3.str, &@1, &@3)) {
free($3.str);
YYABORT;
}
$$ = term;
}
|
PE_TERM '=' PE_TERM
{
struct parse_events_term *term;
ABORT_ON(parse_events_term__term(&term, (int)$1, (int)$3, &@1, &@3));
$$ = term;
}
|
PE_TERM '=' PE_VALUE
{
struct parse_events_term *term;
ABORT_ON(parse_events_term__num(&term, (int)$1, NULL, $3, false, &@1, &@3));
$$ = term;
}
|
PE_TERM
{
struct parse_events_term *term;
ABORT_ON(parse_events_term__num(&term, (int)$1, NULL, 1, true, &@1, NULL));
$$ = term;
}
|
name_or_raw array '=' name_or_legacy
{
struct parse_events_term *term;
if (parse_events_term__str(&term, PARSE_EVENTS__TERM_TYPE_USER,
$1, $4, &@1, &@4)) {
free($1);
free($4);
free($2.ranges);
YYABORT;
}
term->array = $2;
$$ = term;
}
|
name_or_raw array '=' PE_VALUE
{
struct parse_events_term *term;
if (parse_events_term__num(&term, PARSE_EVENTS__TERM_TYPE_USER,
$1, $4, false, &@1, &@4)) {
free($1);
free($2.ranges);
YYABORT;
}
term->array = $2;
$$ = term;
}
|
PE_DRV_CFG_TERM
{
struct parse_events_term *term;
char *config = strdup($1);
ABORT_ON(!config);
if (parse_events_term__str(&term, PARSE_EVENTS__TERM_TYPE_DRV_CFG,
config, $1, &@1, NULL)) {
free($1);
free(config);
YYABORT;
}
$$ = term;
}
array:
'[' array_terms ']'
{
$$ = $2;
}
|
PE_ARRAY_ALL
{
$$.nr_ranges = 0;
$$.ranges = NULL;
}
array_terms:
array_terms ',' array_term
{
struct parse_events_array new_array;
new_array.nr_ranges = $1.nr_ranges + $3.nr_ranges;
new_array.ranges = realloc($1.ranges,
sizeof(new_array.ranges[0]) *
new_array.nr_ranges);
ABORT_ON(!new_array.ranges);
memcpy(&new_array.ranges[$1.nr_ranges], $3.ranges,
$3.nr_ranges * sizeof(new_array.ranges[0]));
free($3.ranges);
$$ = new_array;
}
|
array_term
array_term:
PE_VALUE
{
struct parse_events_array array;
array.nr_ranges = 1;
array.ranges = malloc(sizeof(array.ranges[0]));
ABORT_ON(!array.ranges);
array.ranges[0].start = $1;
array.ranges[0].length = 1;
$$ = array;
}
|
PE_VALUE PE_ARRAY_RANGE PE_VALUE
{
struct parse_events_array array;
ABORT_ON($3 < $1);
array.nr_ranges = 1;
array.ranges = malloc(sizeof(array.ranges[0]));
ABORT_ON(!array.ranges);
array.ranges[0].start = $1;
array.ranges[0].length = $3 - $1 + 1;
$$ = array;
}
sep_dc: ':' |
sep_slash_slash_dc: '/' '/' | ':' |
%%
void parse_events_error(YYLTYPE *loc, void *parse_state,
void *scanner __maybe_unused,
char const *msg __maybe_unused)
{
parse_events_evlist_error(parse_state, loc->last_column, "parser error");
}