Chagne prof_accum_t to counter_accum_t for general purpose.
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ea351a7b52
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d71a145ec1
@ -103,6 +103,7 @@ C_SRCS := $(srcroot)src/jemalloc.c \
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$(srcroot)src/bitmap.c \
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$(srcroot)src/buf_writer.c \
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$(srcroot)src/ckh.c \
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$(srcroot)src/counter.c \
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$(srcroot)src/ctl.c \
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$(srcroot)src/div.c \
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$(srcroot)src/ecache.c \
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@ -5,6 +5,7 @@
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#include "jemalloc/internal/atomic.h"
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#include "jemalloc/internal/bin.h"
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#include "jemalloc/internal/bitmap.h"
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#include "jemalloc/internal/counter.h"
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#include "jemalloc/internal/ecache.h"
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#include "jemalloc/internal/edata_cache.h"
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#include "jemalloc/internal/extent_dss.h"
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@ -117,7 +118,7 @@ struct arena_s {
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malloc_mutex_t tcache_ql_mtx;
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/* Synchronization: internal. */
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prof_accum_t prof_accum;
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counter_accum_t prof_accum;
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/*
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* Extent serial number generator state.
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83
include/jemalloc/internal/counter.h
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83
include/jemalloc/internal/counter.h
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@ -0,0 +1,83 @@
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#ifndef JEMALLOC_INTERNAL_COUNTER_H
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#define JEMALLOC_INTERNAL_COUNTER_H
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#include "jemalloc/internal/mutex.h"
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typedef struct counter_accum_s {
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#ifndef JEMALLOC_ATOMIC_U64
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malloc_mutex_t mtx;
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uint64_t accumbytes;
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#else
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atomic_u64_t accumbytes;
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#endif
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uint64_t interval;
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} counter_accum_t;
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JEMALLOC_ALWAYS_INLINE bool
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counter_accum(tsdn_t *tsdn, counter_accum_t *counter, uint64_t accumbytes) {
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bool overflow;
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uint64_t a0, a1;
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/*
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* If the event moves fast enough (and/or if the event handling is slow
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* enough), extreme overflow here (a1 >= interval * 2) can cause counter
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* trigger coalescing. This is an intentional mechanism that avoids
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* rate-limiting allocation.
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*/
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uint64_t interval = counter->interval;
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assert(interval > 0);
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#ifdef JEMALLOC_ATOMIC_U64
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a0 = atomic_load_u64(&counter->accumbytes, ATOMIC_RELAXED);
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do {
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a1 = a0 + accumbytes;
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assert(a1 >= a0);
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overflow = (a1 >= interval);
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if (overflow) {
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a1 %= interval;
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}
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} while (!atomic_compare_exchange_weak_u64(&counter->accumbytes, &a0, a1,
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ATOMIC_RELAXED, ATOMIC_RELAXED));
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#else
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malloc_mutex_lock(tsdn, &counter->mtx);
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a0 = counter->accumbytes;
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a1 = a0 + accumbytes;
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overflow = (a1 >= interval);
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if (overflow) {
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a1 %= interval;
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}
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counter->accumbytes = a1;
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malloc_mutex_unlock(tsdn, &counter->mtx);
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#endif
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return overflow;
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}
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JEMALLOC_ALWAYS_INLINE void
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counter_rollback(tsdn_t *tsdn, counter_accum_t *counter, size_t usize) {
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/*
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* Cancel out as much of the excessive accumbytes increase as possible
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* without underflowing. Interval-triggered events occur slightly more
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* often than intended as a result of incomplete canceling.
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*/
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uint64_t a0, a1;
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#ifdef JEMALLOC_ATOMIC_U64
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a0 = atomic_load_u64(&counter->accumbytes,
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ATOMIC_RELAXED);
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do {
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a1 = (a0 >= SC_LARGE_MINCLASS - usize)
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? a0 - (SC_LARGE_MINCLASS - usize) : 0;
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} while (!atomic_compare_exchange_weak_u64(
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&counter->accumbytes, &a0, a1, ATOMIC_RELAXED,
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ATOMIC_RELAXED));
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#else
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malloc_mutex_lock(tsdn, &counter->mtx);
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a0 = counter->accumbytes;
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a1 = (a0 >= SC_LARGE_MINCLASS - usize)
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? a0 - (SC_LARGE_MINCLASS - usize) : 0;
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counter->accumbytes = a1;
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malloc_mutex_unlock(tsdn, &counter->mtx);
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#endif
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}
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bool counter_accum_init(counter_accum_t *counter, uint64_t interval);
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#endif /* JEMALLOC_INTERNAL_COUNTER_H */
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@ -73,7 +73,7 @@ void prof_cnt_all(uint64_t *curobjs, uint64_t *curbytes, uint64_t *accumobjs,
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#endif
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int prof_getpid(void);
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void prof_get_default_filename(tsdn_t *tsdn, char *filename, uint64_t ind);
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bool prof_accum_init(tsdn_t *tsdn);
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bool prof_accum_init(void);
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void prof_idump(tsdn_t *tsdn);
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bool prof_mdump(tsd_t *tsd, const char *filename);
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void prof_gdump(tsdn_t *tsdn);
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@ -21,15 +21,6 @@ typedef struct {
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} prof_unwind_data_t;
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#endif
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struct prof_accum_s {
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#ifndef JEMALLOC_ATOMIC_U64
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malloc_mutex_t mtx;
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uint64_t accumbytes;
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#else
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atomic_u64_t accumbytes;
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#endif
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};
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struct prof_cnt_s {
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/* Profiling counters. */
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uint64_t curobjs;
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@ -2,7 +2,6 @@
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#define JEMALLOC_INTERNAL_PROF_TYPES_H
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typedef struct prof_bt_s prof_bt_t;
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typedef struct prof_accum_s prof_accum_t;
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typedef struct prof_cnt_s prof_cnt_t;
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typedef struct prof_tctx_s prof_tctx_t;
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typedef struct prof_info_s prof_info_t;
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@ -54,9 +54,9 @@
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#define WITNESS_RANK_LEAF 0xffffffffU
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#define WITNESS_RANK_BIN WITNESS_RANK_LEAF
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#define WITNESS_RANK_ARENA_STATS WITNESS_RANK_LEAF
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#define WITNESS_RANK_COUNTER_ACCUM WITNESS_RANK_LEAF
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#define WITNESS_RANK_DSS WITNESS_RANK_LEAF
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#define WITNESS_RANK_PROF_ACTIVE WITNESS_RANK_LEAF
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#define WITNESS_RANK_PROF_ACCUM WITNESS_RANK_LEAF
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#define WITNESS_RANK_PROF_DUMP_FILENAME WITNESS_RANK_LEAF
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#define WITNESS_RANK_PROF_GDUMP WITNESS_RANK_LEAF
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#define WITNESS_RANK_PROF_NEXT_THR_UID WITNESS_RANK_LEAF
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@ -43,6 +43,7 @@
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<ClCompile Include="..\..\..\..\src\bitmap.c" />
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<ClCompile Include="..\..\..\..\src\buf_writer.c" />
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<ClCompile Include="..\..\..\..\src\ckh.c" />
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<ClCompile Include="..\..\..\..\src\counter.c" />
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<ClCompile Include="..\..\..\..\src\ctl.c" />
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<ClCompile Include="..\..\..\..\src\div.c" />
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<ClCompile Include="..\..\..\..\src\ecache.c" />
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@ -28,6 +28,9 @@
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<ClCompile Include="..\..\..\..\src\ckh.c">
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<Filter>Source Files</Filter>
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</ClCompile>
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<ClCompile Include="..\..\..\..\src\counter.c">
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<Filter>Source Files</Filter>
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</ClCompile>
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<ClCompile Include="..\..\..\..\src\ctl.c">
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<Filter>Source Files</Filter>
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</ClCompile>
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@ -43,6 +43,7 @@
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<ClCompile Include="..\..\..\..\src\bitmap.c" />
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<ClCompile Include="..\..\..\..\src\buf_writer.c" />
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<ClCompile Include="..\..\..\..\src\ckh.c" />
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<ClCompile Include="..\..\..\..\src\counter.c" />
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<ClCompile Include="..\..\..\..\src\ctl.c" />
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<ClCompile Include="..\..\..\..\src\div.c" />
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<ClCompile Include="..\..\..\..\src\ecache.c" />
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@ -28,6 +28,9 @@
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<ClCompile Include="..\..\..\..\src\ckh.c">
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<Filter>Source Files</Filter>
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</ClCompile>
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<ClCompile Include="..\..\..\..\src\counter.c">
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<Filter>Source Files</Filter>
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</ClCompile>
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<ClCompile Include="..\..\..\..\src\ctl.c">
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<Filter>Source Files</Filter>
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</ClCompile>
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@ -1988,7 +1988,7 @@ arena_new(tsdn_t *tsdn, unsigned ind, extent_hooks_t *extent_hooks) {
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}
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if (config_prof) {
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if (prof_accum_init(tsdn)) {
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if (prof_accum_init()) {
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goto label_error;
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}
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}
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22
src/counter.c
Normal file
22
src/counter.c
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@ -0,0 +1,22 @@
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#define JEMALLOC_COUNTER_C_
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#include "jemalloc/internal/jemalloc_preamble.h"
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#include "jemalloc/internal/jemalloc_internal_includes.h"
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#include "jemalloc/internal/counter.h"
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bool
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counter_accum_init(counter_accum_t *counter, uint64_t interval) {
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#ifndef JEMALLOC_ATOMIC_U64
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if (malloc_mutex_init(&counter->mtx, "counter_accum",
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WITNESS_RANK_COUNTER_ACCUM, malloc_mutex_rank_exclusive)) {
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return true;
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}
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counter->accumbytes = 0;
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#else
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atomic_store_u64(&counter->accumbytes, 0,
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ATOMIC_RELAXED);
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#endif
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counter->interval = interval;
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return false;
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}
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76
src/prof.c
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src/prof.c
@ -5,6 +5,7 @@
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#include "jemalloc/internal/ctl.h"
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#include "jemalloc/internal/assert.h"
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#include "jemalloc/internal/mutex.h"
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#include "jemalloc/internal/counter.h"
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#include "jemalloc/internal/prof_data.h"
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#include "jemalloc/internal/prof_log.h"
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#include "jemalloc/internal/prof_recent.h"
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@ -49,7 +50,7 @@ bool opt_prof_accum = false;
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char opt_prof_prefix[PROF_DUMP_FILENAME_LEN];
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/* Accessed via prof_idump_[accum/rollback](). */
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static prof_accum_t prof_idump_accumulated;
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static counter_accum_t prof_idump_accumulated;
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/*
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* Initialized as opt_prof_active, and accessed via
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@ -553,89 +554,24 @@ prof_fdump(void) {
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}
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bool
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prof_accum_init(tsdn_t *tsdn) {
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prof_accum_init(void) {
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cassert(config_prof);
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#ifndef JEMALLOC_ATOMIC_U64
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if (malloc_mutex_init(&prof_idump_accumulated.mtx, "prof_accum",
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WITNESS_RANK_PROF_ACCUM, malloc_mutex_rank_exclusive)) {
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return true;
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}
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prof_idump_accumulated.accumbytes = 0;
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#else
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atomic_store_u64(&prof_idump_accumulated.accumbytes, 0,
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ATOMIC_RELAXED);
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#endif
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return false;
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return counter_accum_init(&prof_idump_accumulated, prof_interval);
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}
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bool
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prof_idump_accum_impl(tsdn_t *tsdn, uint64_t accumbytes) {
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cassert(config_prof);
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bool overflow;
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uint64_t a0, a1;
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/*
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* If the application allocates fast enough (and/or if idump is slow
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* enough), extreme overflow here (a1 >= prof_interval * 2) can cause
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* idump trigger coalescing. This is an intentional mechanism that
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* avoids rate-limiting allocation.
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*/
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#ifdef JEMALLOC_ATOMIC_U64
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a0 = atomic_load_u64(&prof_idump_accumulated.accumbytes,
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ATOMIC_RELAXED);
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do {
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a1 = a0 + accumbytes;
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assert(a1 >= a0);
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overflow = (a1 >= prof_interval);
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if (overflow) {
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a1 %= prof_interval;
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}
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} while (!atomic_compare_exchange_weak_u64(
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&prof_idump_accumulated.accumbytes, &a0, a1, ATOMIC_RELAXED,
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ATOMIC_RELAXED));
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#else
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malloc_mutex_lock(tsdn, &prof_idump_accumulated.mtx);
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a0 = prof_idump_accumulated.accumbytes;
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a1 = a0 + accumbytes;
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overflow = (a1 >= prof_interval);
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if (overflow) {
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a1 %= prof_interval;
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}
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prof_idump_accumulated.accumbytes = a1;
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malloc_mutex_unlock(tsdn, &prof_idump_accumulated.mtx);
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#endif
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return overflow;
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return counter_accum(tsdn, &prof_idump_accumulated, accumbytes);
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}
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void
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prof_idump_rollback_impl(tsdn_t *tsdn, size_t usize) {
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cassert(config_prof);
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/*
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* Cancel out as much of the excessive accumbytes increase as possible
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* without underflowing. Interval-triggered dumps occur slightly more
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* often than intended as a result of incomplete canceling.
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*/
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uint64_t a0, a1;
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#ifdef JEMALLOC_ATOMIC_U64
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a0 = atomic_load_u64(&prof_idump_accumulated.accumbytes,
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ATOMIC_RELAXED);
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do {
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a1 = (a0 >= SC_LARGE_MINCLASS - usize)
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? a0 - (SC_LARGE_MINCLASS - usize) : 0;
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} while (!atomic_compare_exchange_weak_u64(
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&prof_idump_accumulated.accumbytes, &a0, a1, ATOMIC_RELAXED,
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ATOMIC_RELAXED));
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#else
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malloc_mutex_lock(tsdn, &prof_idump_accumulated.mtx);
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a0 = prof_idump_accumulated.accumbytes;
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a1 = (a0 >= SC_LARGE_MINCLASS - usize)
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? a0 - (SC_LARGE_MINCLASS - usize) : 0;
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prof_idump_accumulated.accumbytes = a1;
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malloc_mutex_unlock(tsdn, &prof_idump_accumulated.mtx);
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#endif
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return counter_rollback(tsdn, &prof_idump_accumulated, usize);
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}
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bool
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