121347Sdist /* 225177Smckusick * Copyright (c) 1983 Regents of the University of California. 321347Sdist * All rights reserved. The Berkeley software License Agreement 421347Sdist * specifies the terms and conditions for redistribution. 521347Sdist */ 621347Sdist 713259Sroot #ifndef lint 8*26410Slepreau static char sccsid[] = "@(#)malloc.c 5.5 (Berkeley) 02/25/86"; 921347Sdist #endif not lint 1014953Skarels 1114953Skarels /* 1214953Skarels * malloc.c (Caltech) 2/21/82 1314953Skarels * Chris Kingsley, kingsley@cit-20. 1414953Skarels * 1514953Skarels * This is a very fast storage allocator. It allocates blocks of a small 1614953Skarels * number of different sizes, and keeps free lists of each size. Blocks that 1714953Skarels * don't exactly fit are passed up to the next larger size. In this 18*26410Slepreau * implementation, the available sizes are 2^n-4 (or 2^n-10) bytes long. 19*26410Slepreau * This is designed for use in a virtual memory environment. 2014953Skarels */ 2114953Skarels 2214953Skarels #include <sys/types.h> 2314953Skarels 2414953Skarels #define NULL 0 2514953Skarels 2614953Skarels /* 2714953Skarels * The overhead on a block is at least 4 bytes. When free, this space 2814953Skarels * contains a pointer to the next free block, and the bottom two bits must 2914953Skarels * be zero. When in use, the first byte is set to MAGIC, and the second 3014953Skarels * byte is the size index. The remaining bytes are for alignment. 31*26410Slepreau * If range checking is enabled then a second word holds the size of the 32*26410Slepreau * requested block, less 1, rounded up to a multiple of sizeof(RMAGIC). 33*26410Slepreau * The order of elements is critical: ov_magic must overlay the low order 34*26410Slepreau * bits of ov_next, and ov_magic can not be a valid ov_next bit pattern. 3514953Skarels */ 3614953Skarels union overhead { 3714953Skarels union overhead *ov_next; /* when free */ 3814953Skarels struct { 3914953Skarels u_char ovu_magic; /* magic number */ 4014953Skarels u_char ovu_index; /* bucket # */ 41*26410Slepreau #ifdef RCHECK 42*26410Slepreau u_short ovu_rmagic; /* range magic number */ 4317333Sralph u_int ovu_size; /* actual block size */ 4414953Skarels #endif 4514953Skarels } ovu; 4614953Skarels #define ov_magic ovu.ovu_magic 4714953Skarels #define ov_index ovu.ovu_index 4817333Sralph #define ov_rmagic ovu.ovu_rmagic 4914953Skarels #define ov_size ovu.ovu_size 5014953Skarels }; 5114953Skarels 5217333Sralph #define MAGIC 0xef /* magic # on accounting info */ 5317333Sralph #define RMAGIC 0x5555 /* magic # on range info */ 5417333Sralph 5514953Skarels #ifdef RCHECK 5617333Sralph #define RSLOP sizeof (u_short) 5714953Skarels #else 5814953Skarels #define RSLOP 0 5914953Skarels #endif 6014953Skarels 6114953Skarels /* 6214953Skarels * nextf[i] is the pointer to the next free block of size 2^(i+3). The 6314953Skarels * smallest allocatable block is 8 bytes. The overhead information 6414953Skarels * precedes the data area returned to the user. 6514953Skarels */ 6614953Skarels #define NBUCKETS 30 6714953Skarels static union overhead *nextf[NBUCKETS]; 6814953Skarels extern char *sbrk(); 6914953Skarels 7017333Sralph static int pagesz; /* page size */ 7117333Sralph static int pagebucket; /* page size bucket */ 7217333Sralph 7314953Skarels #ifdef MSTATS 7414953Skarels /* 7514953Skarels * nmalloc[i] is the difference between the number of mallocs and frees 7614953Skarels * for a given block size. 7714953Skarels */ 7814953Skarels static u_int nmalloc[NBUCKETS]; 7914953Skarels #include <stdio.h> 8014953Skarels #endif 8114953Skarels 8225799Slepreau #if defined(DEBUG) || defined(RCHECK) 8317333Sralph #define ASSERT(p) if (!(p)) botch("p") 8425799Slepreau #include <stdio.h> 8514953Skarels static 8613259Sroot botch(s) 8715003Ssam char *s; 8813259Sroot { 8925799Slepreau fprintf(stderr, "\r\nassertion botched: %s\r\n", s); 9025799Slepreau (void) fflush(stderr); /* just in case user buffered it */ 9113259Sroot abort(); 9213259Sroot } 9313259Sroot #else 9414953Skarels #define ASSERT(p) 9513259Sroot #endif 9613259Sroot 9713259Sroot char * 9813259Sroot malloc(nbytes) 9917333Sralph unsigned nbytes; 10013259Sroot { 10117333Sralph register union overhead *op; 10217333Sralph register int bucket; 10317333Sralph register unsigned amt, n; 10413259Sroot 10514953Skarels /* 10617333Sralph * First time malloc is called, setup page size and 10717333Sralph * align break pointer so all data will be page aligned. 10814953Skarels */ 10917333Sralph if (pagesz == 0) { 11017333Sralph pagesz = n = getpagesize(); 11117333Sralph op = (union overhead *)sbrk(0); 11217333Sralph n = n - sizeof (*op) - ((int)op & (n - 1)); 11317333Sralph if (n < 0) 11417333Sralph n += pagesz; 11517333Sralph if (n) { 11617333Sralph if (sbrk(n) == (char *)-1) 11717333Sralph return (NULL); 11817333Sralph } 11917333Sralph bucket = 0; 12017333Sralph amt = 8; 12117333Sralph while (pagesz > amt) { 12217333Sralph amt <<= 1; 12317333Sralph bucket++; 12417333Sralph } 12517333Sralph pagebucket = bucket; 12617333Sralph } 12714953Skarels /* 12817333Sralph * Convert amount of memory requested into closest block size 12917333Sralph * stored in hash buckets which satisfies request. 13017333Sralph * Account for space used per block for accounting. 13117333Sralph */ 13217333Sralph if (nbytes <= (n = pagesz - sizeof (*op) - RSLOP)) { 13317333Sralph #ifndef RCHECK 13417333Sralph amt = 8; /* size of first bucket */ 13517333Sralph bucket = 0; 13617333Sralph #else 13717333Sralph amt = 16; /* size of first bucket */ 13817333Sralph bucket = 1; 13917333Sralph #endif 14017333Sralph n = -(sizeof (*op) + RSLOP); 14117333Sralph } else { 14217333Sralph amt = pagesz; 14317333Sralph bucket = pagebucket; 14417333Sralph } 14517333Sralph while (nbytes > amt + n) { 14617333Sralph amt <<= 1; 14725793Smckusick if (amt == 0) 14825793Smckusick return (NULL); 14917333Sralph bucket++; 15017333Sralph } 15117333Sralph /* 15214953Skarels * If nothing in hash bucket right now, 15314953Skarels * request more memory from the system. 15414953Skarels */ 15517333Sralph if ((op = nextf[bucket]) == NULL) { 15614953Skarels morecore(bucket); 15717333Sralph if ((op = nextf[bucket]) == NULL) 15817333Sralph return (NULL); 15917333Sralph } 16014953Skarels /* remove from linked list */ 16117333Sralph nextf[bucket] = op->ov_next; 16217333Sralph op->ov_magic = MAGIC; 16317333Sralph op->ov_index = bucket; 16414953Skarels #ifdef MSTATS 16514953Skarels nmalloc[bucket]++; 16614953Skarels #endif 16714953Skarels #ifdef RCHECK 16814953Skarels /* 16914953Skarels * Record allocated size of block and 17014953Skarels * bound space with magic numbers. 17114953Skarels */ 17217438Sralph op->ov_size = (nbytes + RSLOP - 1) & ~(RSLOP - 1); 17317333Sralph op->ov_rmagic = RMAGIC; 17417438Sralph *(u_short *)((caddr_t)(op + 1) + op->ov_size) = RMAGIC; 17514953Skarels #endif 17617333Sralph return ((char *)(op + 1)); 17713259Sroot } 17813259Sroot 17914953Skarels /* 18014953Skarels * Allocate more memory to the indicated bucket. 18114953Skarels */ 18214953Skarels morecore(bucket) 18317333Sralph int bucket; 18413259Sroot { 18514953Skarels register union overhead *op; 18617333Sralph register int sz; /* size of desired block */ 18725793Smckusick int amt; /* amount to allocate */ 18825793Smckusick int nblks; /* how many blocks we get */ 18913259Sroot 19025793Smckusick /* 19125793Smckusick * sbrk_size <= 0 only for big, FLUFFY, requests (about 19225793Smckusick * 2^30 bytes on a VAX, I think) or for a negative arg. 19325793Smckusick */ 19417333Sralph sz = 1 << (bucket + 3); 195*26410Slepreau #ifdef DEBUG 196*26410Slepreau ASSERT(sz > 0); 197*26410Slepreau #else 19825793Smckusick if (sz <= 0) 19925793Smckusick return; 200*26410Slepreau #endif 20117333Sralph if (sz < pagesz) { 20217333Sralph amt = pagesz; 20317333Sralph nblks = amt / sz; 20417333Sralph } else { 20517333Sralph amt = sz + pagesz; 20617333Sralph nblks = 1; 20717333Sralph } 20817333Sralph op = (union overhead *)sbrk(amt); 20914953Skarels /* no more room! */ 21014953Skarels if ((int)op == -1) 21114953Skarels return; 21214953Skarels /* 21314953Skarels * Add new memory allocated to that on 21414953Skarels * free list for this hash bucket. 21514953Skarels */ 21614953Skarels nextf[bucket] = op; 21714953Skarels while (--nblks > 0) { 21817333Sralph op->ov_next = (union overhead *)((caddr_t)op + sz); 21917333Sralph op = (union overhead *)((caddr_t)op + sz); 22014953Skarels } 22113259Sroot } 22213259Sroot 22314953Skarels free(cp) 22414953Skarels char *cp; 22514953Skarels { 22614953Skarels register int size; 22714953Skarels register union overhead *op; 22813259Sroot 22914953Skarels if (cp == NULL) 23014953Skarels return; 23114953Skarels op = (union overhead *)((caddr_t)cp - sizeof (union overhead)); 23217333Sralph #ifdef DEBUG 23314953Skarels ASSERT(op->ov_magic == MAGIC); /* make sure it was in use */ 23414953Skarels #else 23514953Skarels if (op->ov_magic != MAGIC) 23614953Skarels return; /* sanity */ 23714953Skarels #endif 23814953Skarels #ifdef RCHECK 23914953Skarels ASSERT(op->ov_rmagic == RMAGIC); 24017333Sralph ASSERT(*(u_short *)((caddr_t)(op + 1) + op->ov_size) == RMAGIC); 24114953Skarels #endif 24214953Skarels size = op->ov_index; 24317333Sralph ASSERT(size < NBUCKETS); 244*26410Slepreau op->ov_next = nextf[size]; /* also clobbers ov_magic */ 24514953Skarels nextf[size] = op; 24614953Skarels #ifdef MSTATS 24714953Skarels nmalloc[size]--; 24814953Skarels #endif 24914953Skarels } 25014953Skarels 25114953Skarels /* 25214953Skarels * When a program attempts "storage compaction" as mentioned in the 25314953Skarels * old malloc man page, it realloc's an already freed block. Usually 25414953Skarels * this is the last block it freed; occasionally it might be farther 25514953Skarels * back. We have to search all the free lists for the block in order 25614953Skarels * to determine its bucket: 1st we make one pass thru the lists 25714953Skarels * checking only the first block in each; if that fails we search 25814953Skarels * ``realloc_srchlen'' blocks in each list for a match (the variable 25914953Skarels * is extern so the caller can modify it). If that fails we just copy 26014953Skarels * however many bytes was given to realloc() and hope it's not huge. 26114953Skarels */ 26215003Ssam int realloc_srchlen = 4; /* 4 should be plenty, -1 =>'s whole list */ 26314953Skarels 26413259Sroot char * 26514953Skarels realloc(cp, nbytes) 26614953Skarels char *cp; 26714953Skarels unsigned nbytes; 26814953Skarels { 26917333Sralph register u_int onb, i; 27014953Skarels union overhead *op; 27114953Skarels char *res; 27214953Skarels int was_alloced = 0; 27314953Skarels 27414953Skarels if (cp == NULL) 27514953Skarels return (malloc(nbytes)); 27614953Skarels op = (union overhead *)((caddr_t)cp - sizeof (union overhead)); 27714953Skarels if (op->ov_magic == MAGIC) { 27814953Skarels was_alloced++; 27914953Skarels i = op->ov_index; 28015003Ssam } else { 28115003Ssam /* 28215003Ssam * Already free, doing "compaction". 28315003Ssam * 28415003Ssam * Search for the old block of memory on the 28515003Ssam * free list. First, check the most common 28615003Ssam * case (last element free'd), then (this failing) 28715003Ssam * the last ``realloc_srchlen'' items free'd. 28815003Ssam * If all lookups fail, then assume the size of 28915003Ssam * the memory block being realloc'd is the 29025799Slepreau * largest possible (so that all "nbytes" of new 29125799Slepreau * memory are copied into). Note that this could cause 29225799Slepreau * a memory fault if the old area was tiny, and the moon 29325799Slepreau * is gibbous. However, that is very unlikely. 29415003Ssam */ 29514953Skarels if ((i = findbucket(op, 1)) < 0 && 29614953Skarels (i = findbucket(op, realloc_srchlen)) < 0) 29725799Slepreau i = NBUCKETS; 29814953Skarels } 29917333Sralph onb = 1 << (i + 3); 30017333Sralph if (onb < pagesz) 30117333Sralph onb -= sizeof (*op) + RSLOP; 30217333Sralph else 30317333Sralph onb += pagesz - sizeof (*op) - RSLOP; 30415003Ssam /* avoid the copy if same size block */ 30517333Sralph if (was_alloced) { 30617333Sralph if (i) { 30717333Sralph i = 1 << (i + 2); 30817333Sralph if (i < pagesz) 30917333Sralph i -= sizeof (*op) + RSLOP; 31017333Sralph else 31117333Sralph i += pagesz - sizeof (*op) - RSLOP; 31217333Sralph } 31317333Sralph if (nbytes <= onb && nbytes > i) { 31417332Sralph #ifdef RCHECK 31517438Sralph op->ov_size = (nbytes + RSLOP - 1) & ~(RSLOP - 1); 31617333Sralph *(u_short *)((caddr_t)(op + 1) + op->ov_size) = RMAGIC; 31717332Sralph #endif 31817333Sralph return(cp); 31917333Sralph } else 32017333Sralph free(cp); 32117332Sralph } 32214953Skarels if ((res = malloc(nbytes)) == NULL) 32314953Skarels return (NULL); 32425799Slepreau if (cp != res) /* common optimization if "compacting" */ 32514953Skarels bcopy(cp, res, (nbytes < onb) ? nbytes : onb); 32614953Skarels return (res); 32714953Skarels } 32814953Skarels 32914953Skarels /* 33014953Skarels * Search ``srchlen'' elements of each free list for a block whose 33114953Skarels * header starts at ``freep''. If srchlen is -1 search the whole list. 33214953Skarels * Return bucket number, or -1 if not found. 33314953Skarels */ 33414953Skarels static 33514953Skarels findbucket(freep, srchlen) 33615003Ssam union overhead *freep; 33715003Ssam int srchlen; 33813259Sroot { 33914953Skarels register union overhead *p; 34014953Skarels register int i, j; 34113259Sroot 34215003Ssam for (i = 0; i < NBUCKETS; i++) { 34315003Ssam j = 0; 34415003Ssam for (p = nextf[i]; p && j != srchlen; p = p->ov_next) { 34514953Skarels if (p == freep) 34614953Skarels return (i); 34715003Ssam j++; 34815003Ssam } 34915003Ssam } 35014953Skarels return (-1); 35113259Sroot } 35213259Sroot 35314953Skarels #ifdef MSTATS 35414953Skarels /* 35514953Skarels * mstats - print out statistics about malloc 35614953Skarels * 35714953Skarels * Prints two lines of numbers, one showing the length of the free list 35814953Skarels * for each size category, the second showing the number of mallocs - 35914953Skarels * frees for each size category. 36014953Skarels */ 36114953Skarels mstats(s) 36214953Skarels char *s; 36313259Sroot { 36414953Skarels register int i, j; 36514953Skarels register union overhead *p; 36614953Skarels int totfree = 0, 36714953Skarels totused = 0; 36814953Skarels 36914953Skarels fprintf(stderr, "Memory allocation statistics %s\nfree:\t", s); 37014953Skarels for (i = 0; i < NBUCKETS; i++) { 37114953Skarels for (j = 0, p = nextf[i]; p; p = p->ov_next, j++) 37214953Skarels ; 37314953Skarels fprintf(stderr, " %d", j); 37414953Skarels totfree += j * (1 << (i + 3)); 37514953Skarels } 37614953Skarels fprintf(stderr, "\nused:\t"); 37714953Skarels for (i = 0; i < NBUCKETS; i++) { 37814953Skarels fprintf(stderr, " %d", nmalloc[i]); 37914953Skarels totused += nmalloc[i] * (1 << (i + 3)); 38014953Skarels } 38115003Ssam fprintf(stderr, "\n\tTotal in use: %d, total free: %d\n", 38215003Ssam totused, totfree); 38313259Sroot } 38413259Sroot #endif 385