737087cbc8
From-SVN: r181772
297 lines
6.4 KiB
Plaintext
297 lines
6.4 KiB
Plaintext
// Copyright 2009 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// Malloc profiling.
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// Patterned after tcmalloc's algorithms; shorter code.
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package runtime
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#include "runtime.h"
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#include "arch.h"
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#include "malloc.h"
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#include "defs.h"
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#include "go-type.h"
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typedef struct __go_open_array Slice;
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// NOTE(rsc): Everything here could use cas if contention became an issue.
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static Lock proflock;
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// Per-call-stack allocation information.
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// Lookup by hashing call stack into a linked-list hash table.
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typedef struct Bucket Bucket;
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struct Bucket
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{
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Bucket *next; // next in hash list
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Bucket *allnext; // next in list of all buckets
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uintptr allocs;
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uintptr frees;
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uintptr alloc_bytes;
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uintptr free_bytes;
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uintptr hash;
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uintptr nstk;
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uintptr stk[1];
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};
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enum {
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BuckHashSize = 179999,
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};
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static Bucket **buckhash;
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static Bucket *buckets;
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static uintptr bucketmem;
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// Return the bucket for stk[0:nstk], allocating new bucket if needed.
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static Bucket*
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stkbucket(uintptr *stk, int32 nstk)
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{
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int32 i;
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uintptr h;
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Bucket *b;
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if(buckhash == nil) {
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buckhash = runtime_SysAlloc(BuckHashSize*sizeof buckhash[0]);
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mstats.buckhash_sys += BuckHashSize*sizeof buckhash[0];
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}
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// Hash stack.
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h = 0;
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for(i=0; i<nstk; i++) {
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h += stk[i];
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h += h<<10;
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h ^= h>>6;
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}
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h += h<<3;
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h ^= h>>11;
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i = h%BuckHashSize;
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for(b = buckhash[i]; b; b=b->next)
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if(b->hash == h && b->nstk == (uintptr)nstk &&
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runtime_mcmp((byte*)b->stk, (byte*)stk, nstk*sizeof stk[0]) == 0)
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return b;
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b = runtime_mallocgc(sizeof *b + nstk*sizeof stk[0], FlagNoProfiling, 0, 1);
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bucketmem += sizeof *b + nstk*sizeof stk[0];
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runtime_memmove(b->stk, stk, nstk*sizeof stk[0]);
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b->hash = h;
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b->nstk = nstk;
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b->next = buckhash[i];
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buckhash[i] = b;
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b->allnext = buckets;
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buckets = b;
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return b;
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}
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// Map from pointer to Bucket* that allocated it.
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// Three levels:
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// Linked-list hash table for top N-20 bits.
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// Array index for next 13 bits.
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// Linked list for next 7 bits.
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// This is more efficient than using a general map,
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// because of the typical clustering of the pointer keys.
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typedef struct AddrHash AddrHash;
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typedef struct AddrEntry AddrEntry;
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struct AddrHash
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{
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AddrHash *next; // next in top-level hash table linked list
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uintptr addr; // addr>>20
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AddrEntry *dense[1<<13];
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};
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struct AddrEntry
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{
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AddrEntry *next; // next in bottom-level linked list
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uint32 addr;
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Bucket *b;
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};
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enum {
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AddrHashBits = 12 // 1MB per entry, so good for 4GB of used address space
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};
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static AddrHash *addrhash[1<<AddrHashBits];
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static AddrEntry *addrfree;
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static uintptr addrmem;
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// Multiplicative hash function:
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// hashMultiplier is the bottom 32 bits of int((sqrt(5)-1)/2 * (1<<32)).
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// This is a good multiplier as suggested in CLR, Knuth. The hash
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// value is taken to be the top AddrHashBits bits of the bottom 32 bits
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// of the multiplied value.
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enum {
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HashMultiplier = 2654435769U
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};
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// Set the bucket associated with addr to b.
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static void
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setaddrbucket(uintptr addr, Bucket *b)
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{
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int32 i;
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uint32 h;
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AddrHash *ah;
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AddrEntry *e;
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h = (uint32)((addr>>20)*HashMultiplier) >> (32-AddrHashBits);
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for(ah=addrhash[h]; ah; ah=ah->next)
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if(ah->addr == (addr>>20))
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goto found;
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ah = runtime_mallocgc(sizeof *ah, FlagNoProfiling, 0, 1);
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addrmem += sizeof *ah;
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ah->next = addrhash[h];
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ah->addr = addr>>20;
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addrhash[h] = ah;
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found:
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if((e = addrfree) == nil) {
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e = runtime_mallocgc(64*sizeof *e, FlagNoProfiling, 0, 0);
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addrmem += 64*sizeof *e;
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for(i=0; i+1<64; i++)
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e[i].next = &e[i+1];
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e[63].next = nil;
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}
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addrfree = e->next;
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e->addr = (uint32)~(addr & ((1<<20)-1));
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e->b = b;
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h = (addr>>7)&(nelem(ah->dense)-1); // entry in dense is top 13 bits of low 20.
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e->next = ah->dense[h];
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ah->dense[h] = e;
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}
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// Get the bucket associated with addr and clear the association.
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static Bucket*
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getaddrbucket(uintptr addr)
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{
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uint32 h;
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AddrHash *ah;
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AddrEntry *e, **l;
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Bucket *b;
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h = (uint32)((addr>>20)*HashMultiplier) >> (32-AddrHashBits);
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for(ah=addrhash[h]; ah; ah=ah->next)
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if(ah->addr == (addr>>20))
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goto found;
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return nil;
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found:
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h = (addr>>7)&(nelem(ah->dense)-1); // entry in dense is top 13 bits of low 20.
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for(l=&ah->dense[h]; (e=*l) != nil; l=&e->next) {
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if(e->addr == (uint32)~(addr & ((1<<20)-1))) {
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*l = e->next;
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b = e->b;
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e->next = addrfree;
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addrfree = e;
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return b;
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}
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}
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return nil;
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}
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// Called by malloc to record a profiled block.
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void
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runtime_MProf_Malloc(void *p, uintptr size)
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{
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M *m;
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int32 nstk;
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uintptr stk[32];
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Bucket *b;
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m = runtime_m();
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if(m->nomemprof > 0)
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return;
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m->nomemprof++;
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#if 0
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nstk = runtime_callers(1, stk, 32);
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#else
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nstk = 0;
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#endif
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runtime_lock(&proflock);
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b = stkbucket(stk, nstk);
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b->allocs++;
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b->alloc_bytes += size;
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setaddrbucket((uintptr)p, b);
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runtime_unlock(&proflock);
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m = runtime_m();
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m->nomemprof--;
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}
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// Called when freeing a profiled block.
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void
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runtime_MProf_Free(void *p, uintptr size)
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{
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M *m;
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Bucket *b;
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m = runtime_m();
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if(m->nomemprof > 0)
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return;
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m->nomemprof++;
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runtime_lock(&proflock);
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b = getaddrbucket((uintptr)p);
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if(b != nil) {
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b->frees++;
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b->free_bytes += size;
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}
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runtime_unlock(&proflock);
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m = runtime_m();
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m->nomemprof--;
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}
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// Go interface to profile data. (Declared in extern.go)
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// Assumes Go sizeof(int) == sizeof(int32)
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// Must match MemProfileRecord in extern.go.
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typedef struct Record Record;
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struct Record {
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int64 alloc_bytes, free_bytes;
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int64 alloc_objects, free_objects;
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uintptr stk[32];
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};
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// Write b's data to r.
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static void
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record(Record *r, Bucket *b)
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{
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uint32 i;
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r->alloc_bytes = b->alloc_bytes;
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r->free_bytes = b->free_bytes;
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r->alloc_objects = b->allocs;
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r->free_objects = b->frees;
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for(i=0; i<b->nstk && i<nelem(r->stk); i++)
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r->stk[i] = b->stk[i];
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for(; i<nelem(r->stk); i++)
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r->stk[i] = 0;
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}
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func MemProfile(p Slice, include_inuse_zero bool) (n int32, ok bool) {
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Bucket *b;
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Record *r;
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runtime_lock(&proflock);
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n = 0;
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for(b=buckets; b; b=b->allnext)
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if(include_inuse_zero || b->alloc_bytes != b->free_bytes)
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n++;
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ok = false;
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if(n <= p.__count) {
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ok = true;
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r = (Record*)p.__values;
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for(b=buckets; b; b=b->allnext)
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if(include_inuse_zero || b->alloc_bytes != b->free_bytes)
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record(r++, b);
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}
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runtime_unlock(&proflock);
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}
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void
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runtime_MProf_Mark(void (*scan)(byte *, int64))
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{
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// buckhash is not allocated via mallocgc.
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scan((byte*)&buckets, sizeof buckets);
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scan((byte*)&addrhash, sizeof addrhash);
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scan((byte*)&addrfree, sizeof addrfree);
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}
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