#define XC_SHM_IMPL _xc_malloc_shm_t #define XC_MEM_IMPL _xc_malloc_mem_t #include #include #include #ifdef HAVE_CONFIG_H #include #endif #include "xc_shm.h" #include "php.h" #include "xc_utils.h" #include "util/xc_align.h" struct _xc_malloc_mem_t { const xc_mem_handlers_t *handlers; xc_shm_t *shm; xc_memsize_t size; xc_memsize_t avail; /* total free */ }; /* {{{ _xc_malloc_shm_t */ struct _xc_malloc_shm_t { xc_shm_handlers_t *handlers; xc_shmsize_t size; xc_shmsize_t memoffset; #ifdef HAVE_XCACHE_TEST HashTable blocks; #endif }; /* }}} */ #define CHECK(x, e) do { if ((x) == NULL) { zend_error(E_ERROR, "XCache: " e); goto err; } } while (0) static void *xc_add_to_blocks(xc_mem_t *mem, void *p, size_t size) /* {{{ */ { #ifdef HAVE_XCACHE_TEST if (p) { zend_hash_add(&mem->shm->blocks, (void *) &p, sizeof(p), (void *) &size, sizeof(size), NULL); } #endif return p; } /* }}} */ static void xc_del_from_blocks(xc_mem_t *mem, void *p) /* {{{ */ { #ifdef HAVE_XCACHE_TEST zend_hash_del(&mem->shm->blocks, (void *) &p, sizeof(p)); #endif } /* }}} */ static XC_MEM_MALLOC(xc_malloc_malloc) /* {{{ */ { return xc_add_to_blocks(mem, malloc(size), size); } /* }}} */ static XC_MEM_FREE(xc_malloc_free) /* {{{ return block size freed */ { xc_del_from_blocks(mem, (void *) p); free((void *) p); return 0; } /* }}} */ static XC_MEM_CALLOC(xc_malloc_calloc) /* {{{ */ { return xc_add_to_blocks(mem, calloc(memb, size), size); } /* }}} */ static XC_MEM_REALLOC(xc_malloc_realloc) /* {{{ */ { return xc_add_to_blocks(mem, realloc((void *) p, size), size); } /* }}} */ static XC_MEM_STRNDUP(xc_malloc_strndup) /* {{{ */ { char *p = xc_add_to_blocks(mem, malloc(len), len); if (!p) { return NULL; } return memcpy(p, str, len); } /* }}} */ static XC_MEM_STRDUP(xc_malloc_strdup) /* {{{ */ { return xc_malloc_strndup(mem, str, strlen(str) + 1); } /* }}} */ static XC_MEM_AVAIL(xc_malloc_avail) /* {{{ */ { return mem->avail; } /* }}} */ static XC_MEM_SIZE(xc_malloc_size) /* {{{ */ { return mem->size; } /* }}} */ static XC_MEM_FREEBLOCK_FIRST(xc_malloc_freeblock_first) /* {{{ */ { return (void *) -1; } /* }}} */ XC_MEM_FREEBLOCK_NEXT(xc_malloc_freeblock_next) /* {{{ */ { return NULL; } /* }}} */ XC_MEM_BLOCK_SIZE(xc_malloc_block_size) /* {{{ */ { return 0; } /* }}} */ XC_MEM_BLOCK_OFFSET(xc_malloc_block_offset) /* {{{ */ { return 0; } /* }}} */ static XC_MEM_INIT(xc_mem_malloc_init) /* {{{ */ { #define MINSIZE (ALIGN(sizeof(xc_mem_t))) /* requires at least the header and 1 tail block */ if (size < MINSIZE) { fprintf(stderr, "xc_mem_malloc_init requires %lu bytes at least\n", (unsigned long) MINSIZE); return NULL; } mem->shm = shm; mem->size = size; mem->avail = size - MINSIZE; #undef MINSIZE return mem; } /* }}} */ static XC_MEM_DESTROY(xc_mem_malloc_destroy) /* {{{ */ { } /* }}} */ static XC_SHM_CAN_READONLY(xc_malloc_can_readonly) /* {{{ */ { return 0; } /* }}} */ static XC_SHM_IS_READWRITE(xc_malloc_is_readwrite) /* {{{ */ { #ifdef HAVE_XCACHE_TEST HashPosition pos; size_t *psize; char **ptr; zend_hash_internal_pointer_reset_ex(&shm->blocks, &pos); while (zend_hash_get_current_data_ex(&shm->blocks, (void **) &psize, &pos) == SUCCESS) { zend_hash_get_current_key_ex(&shm->blocks, (void *) &ptr, NULL, NULL, 0, &pos); if ((char *) p >= *ptr && (char *) p < *ptr + *psize) { return 1; } zend_hash_move_forward_ex(&shm->blocks, &pos); } #endif return 0; } /* }}} */ static XC_SHM_IS_READONLY(xc_malloc_is_readonly) /* {{{ */ { return 0; } /* }}} */ static XC_SHM_TO_READWRITE(xc_malloc_to_readwrite) /* {{{ */ { return p; } /* }}} */ static XC_SHM_TO_READONLY(xc_malloc_to_readonly) /* {{{ */ { return p; } /* }}} */ static XC_SHM_DESTROY(xc_malloc_destroy) /* {{{ */ { #ifdef HAVE_XCACHE_TEST zend_hash_destroy(&shm->blocks); #endif free(shm); return; } /* }}} */ static XC_SHM_INIT(xc_malloc_init) /* {{{ */ { xc_shm_t *shm; CHECK(shm = calloc(1, sizeof(xc_shm_t)), "shm OOM"); shm->size = size; #ifdef HAVE_XCACHE_TEST zend_hash_init(&shm->blocks, 64, NULL, NULL, 1); #endif return shm; err: return NULL; } /* }}} */ static XC_SHM_MEMINIT(xc_malloc_meminit) /* {{{ */ { xc_mem_t *mem; if (shm->memoffset + size > shm->size) { zend_error(E_ERROR, "XCache: internal error at %s#%d", __FILE__, __LINE__); return NULL; } shm->memoffset += size; CHECK(mem = calloc(1, sizeof(xc_mem_t)), "mem OOM"); mem->handlers = shm->handlers->memhandlers; mem->handlers->init(shm, mem, size); return mem; err: return NULL; } /* }}} */ static XC_SHM_MEMDESTROY(xc_malloc_memdestroy) /* {{{ */ { mem->handlers->destroy(mem); free(mem); } /* }}} */ #define xc_malloc_destroy xc_mem_malloc_destroy #define xc_malloc_init xc_mem_malloc_init static xc_mem_handlers_t xc_mem_malloc_handlers = XC_MEM_HANDLERS(malloc); #undef xc_malloc_init #undef xc_malloc_destroy static xc_shm_handlers_t xc_shm_malloc_handlers = XC_SHM_HANDLERS(malloc); void xc_shm_malloc_register() /* {{{ */ { if (xc_mem_scheme_register("malloc", &xc_mem_malloc_handlers) == 0) { zend_error(E_ERROR, "XCache: failed to register malloc mem_scheme"); } CHECK(xc_shm_malloc_handlers.memhandlers = xc_mem_scheme_find("malloc"), "cannot find malloc handlers"); if (xc_shm_scheme_register("malloc", &xc_shm_malloc_handlers) == 0) { zend_error(E_ERROR, "XCache: failed to register malloc shm_scheme"); } err: return; } /* }}} */