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xcache/processor/head.m4

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dnl {{{ === program start ========================================
divert(0)
#include <string.h>
#include <stdio.h>
#include "php.h"
#include "zend_extensions.h"
#include "zend_compile.h"
#include "zend_API.h"
#include "zend_ini.h"
#include "xcache.h"
#include "align.h"
#include "const_string.h"
#include "processor.h"
#include "stack.h"
#include "xcache_globals.h"
#if defined(HARDENING_PATCH_HASH_PROTECT) && HARDENING_PATCH_HASH_PROTECT
extern unsigned int zend_hash_canary;
#endif
define(`SIZEOF_zend_uint', `sizeof(zend_uint)')
define(`COUNTOF_zend_uint', `1')
define(`SIZEOF_int', `sizeof(int)')
define(`COUNTOF_int', `1')
define(`SIZEOF_zend_function', `sizeof(zend_function)')
define(`COUNTOF_zend_function', `1')
define(`SIZEOF_zval_ptr', `sizeof(zval_ptr)')
define(`COUNTOF_zval_ptr', `1')
define(`SIZEOF_xc_entry_name_t', `sizeof(xc_entry_name_t)')
define(`COUNTOF_xc_entry_name_t', `1')
ifdef(`XCACHE_ENABLE_TEST', `
#undef NDEBUG
#include <assert.h>
m4_errprint(`AUTOCHECK INFO: runtime autocheck Enabled (debug build)')
', `
m4_errprint(`AUTOCHECK INFO: runtime autocheck Disabled (optimized build)')
')
ifdef(`DEBUG_SIZE', `static int xc_totalsize = 0;')
sinclude(builddir`/structinfo.m4')
#ifndef NDEBUG
# undef inline
#define inline
#endif
typedef zval *zval_ptr;
typedef zend_uchar zval_data_type;
#ifdef IS_UNICODE
typedef UChar zstr_uchar;
#endif
typedef char zstr_char;
#define MAX_DUP_STR_LEN 256
dnl }}}
/* export: typedef struct _xc_processor_t xc_processor_t; :export {{{ */
struct _xc_processor_t {
char *p;
zend_uint size;
HashTable strings;
HashTable zvalptrs;
zend_bool reference; /* enable if to deal with reference */
zend_bool have_references;
const xc_entry_data_php_t *php_src;
const xc_entry_data_php_t *php_dst;
const xc_cache_t *cache;
const zend_class_entry *cache_ce;
zend_uint cache_class_num;
const zend_op *active_opcodes_src;
zend_op *active_opcodes_dst;
const zend_class_entry *active_class_entry_src;
zend_class_entry *active_class_entry_dst;
zend_uint active_class_num;
zend_bool readonly_protection; /* wheather it's present */
IFASSERT(xc_stack_t allocsizes;)
};
/* }}} */
#ifdef HAVE_XCACHE_DPRINT
static void xc_dprint_indent(int indent) /* {{{ */
{
int i;
for (i = 0; i < indent; i ++) {
fprintf(stderr, " ");
}
}
/* }}} */
static void xc_dprint_str_len(const char *str, int len) /* {{{ */
{
const unsigned char *p = (const unsigned char *) str;
int i;
for (i = 0; i < len; i ++) {
if (p[i] < 32 || p[i] == 127) {
fprintf(stderr, "\\%03o", (unsigned int) p[i]);
}
else {
fputc(p[i], stderr);
}
}
}
/* }}} */
#endif
/* {{{ xc_zstrlen_char */
static inline int xc_zstrlen_char(zstr s)
{
return strlen(ZSTR_S(s));
}
/* }}} */
#ifdef IS_UNICODE
/* {{{ xc_zstrlen_uchar */
static inline int xc_zstrlen_uchar(zstr s)
{
int i;
UChar *p = ZSTR_U(s);
for (i = 0; *p; i ++, p++) {
/* empty */
}
return i;
}
/* }}} */
/* {{{ xc_zstrlen */
static inline int xc_zstrlen(int type, zstr s)
{
return type == IS_UNICODE ? xc_zstrlen_uchar(s) : xc_zstrlen_char(s);
}
/* }}} */
#else
/* {{{ xc_zstrlen */
#define xc_zstrlen(dummy, s) xc_zstrlen_char(s)
/* }}} */
#endif
/* {{{ xc_calc_string_n */
REDEF(`KIND', `calc')
static inline void xc_calc_string_n(xc_processor_t *processor, zend_uchar type, zstr str, long size IFASSERT(`, int relayline')) {
pushdef(`__LINE__', `relayline')
int realsize = UNISW(size, (type == IS_UNICODE) ? UBYTES(size) : size);
long dummy = 1;
if (realsize > MAX_DUP_STR_LEN) {
ALLOC(, char, realsize)
}
else if (zend_u_hash_add(&processor->strings, type, str, size, (void *) &dummy, sizeof(dummy), NULL) == SUCCESS) {
/* new string */
ALLOC(, char, realsize)
}
IFASSERT(`
else {
dnl fprintf(stderr, "dupstr %s\n", ZSTR_S(str));
}
')
popdef(`__LINE__')
}
/* }}} */
/* {{{ xc_store_string_n */
REDEF(`KIND', `store')
static inline zstr xc_store_string_n(xc_processor_t *processor, zend_uchar type, zstr str, long size IFASSERT(`, int relayline')) {
pushdef(`__LINE__', `relayline')
int realsize = UNISW(size, (type == IS_UNICODE) ? UBYTES(size) : size);
zstr ret, *pret;
if (realsize > MAX_DUP_STR_LEN) {
ALLOC(ZSTR_V(ret), char, realsize)
memcpy(ZSTR_V(ret), ZSTR_V(str), realsize);
return ret;
}
if (zend_u_hash_find(&processor->strings, type, str, size, (void **) &pret) == SUCCESS) {
return *pret;
}
/* new string */
ALLOC(ZSTR_V(ret), char, realsize)
memcpy(ZSTR_V(ret), ZSTR_V(str), realsize);
zend_u_hash_add(&processor->strings, type, str, size, (void *) &ret, sizeof(zstr), NULL);
return ret;
popdef(`__LINE__')
}
/* }}} */
/* {{{ xc_get_class_num
* return class_index + 1
*/
static zend_ulong xc_get_class_num(xc_processor_t *processor, zend_class_entry *ce) {
zend_ulong i;
const xc_entry_data_php_t *php = processor->php_src;
zend_class_entry *ceptr;
if (processor->cache_ce == ce) {
return processor->cache_class_num;
}
for (i = 0; i < php->classinfo_cnt; i ++) {
ceptr = CestToCePtr(php->classinfos[i].cest);
if (ZCEP_REFCOUNT_PTR(ceptr) == ZCEP_REFCOUNT_PTR(ce)) {
processor->cache_ce = ceptr;
processor->cache_class_num = i + 1;
return i + 1;
}
}
assert(0);
return (zend_ulong) -1;
}
/* }}} */
/* {{{ xc_get_class */
#ifdef ZEND_ENGINE_2
static zend_class_entry *xc_get_class(xc_processor_t *processor, zend_ulong class_num) {
/* must be parent or currrent class */
assert(class_num <= processor->active_class_num);
return CestToCePtr(processor->php_dst->classinfos[class_num - 1].cest);
}
#endif
/* }}} */
#ifdef ZEND_ENGINE_2
/* fix method on store */
static void xc_fix_method(xc_processor_t *processor, zend_op_array *dst) /* {{{ */
{
zend_function *zf = (zend_function *) dst;
zend_class_entry *ce = processor->active_class_entry_dst;
/* Fixing up the default functions for objects here since
* we need to compare with the newly allocated functions
*
* caveat: a sub-class method can have the same name as the
* parent~s constructor and create problems.
*/
if (zf->common.fn_flags & ZEND_ACC_CTOR) {
if (!ce->constructor) {
ce->constructor = zf;
}
}
else if (zf->common.fn_flags & ZEND_ACC_DTOR) {
ce->destructor = zf;
}
else if (zf->common.fn_flags & ZEND_ACC_CLONE) {
ce->clone = zf;
}
else {
dnl FIXME: handle common.function_name here
#define SET_IF_SAME_NAME(member) \
do { \
if (!strcasecmp(ZSTR_S(zf->common.function_name), #member)) { \
ce->member = zf; \
} \
} \
while(0)
/* if(ce->member && !strcmp(zf->common.function_name, ce->member->common.function_name)) { \ */
SET_IF_SAME_NAME(__get);
SET_IF_SAME_NAME(__set);
#ifdef ZEND_ENGINE_2_1
SET_IF_SAME_NAME(__unset);
SET_IF_SAME_NAME(__isset);
#endif
SET_IF_SAME_NAME(__call);
#if defined(ZEND_ENGINE_2_2) || PHP_MAJOR_VERSION >= 6
SET_IF_SAME_NAME(__tostring);
#endif
#undef SET_IF_SAME_NAME
}
}
/* }}} */
#endif
/* {{{ call op_array ctor handler */
extern zend_bool xc_have_op_array_ctor;
static void xc_zend_extension_op_array_ctor_handler(zend_extension *extension, zend_op_array *op_array TSRMLS_DC)
{
if (extension->op_array_ctor) {
extension->op_array_ctor(op_array);
}
}
/* }}} */
dnl ================ export API
define(`DEFINE_STORE_API', `
/* export: $1 *xc_processor_store_$1($1 *src TSRMLS_DC); :export {{{ */
$1 *xc_processor_store_$1($1 *src TSRMLS_DC) {
$1 *dst;
xc_processor_t processor;
memset(&processor, 0, sizeof(processor));
processor.reference = 1;
processor.cache = src->cache;
IFASSERT(`xc_stack_init(&processor.allocsizes);')
/* calc size */ {
zend_hash_init(&processor.strings, 0, NULL, NULL, 0);
if (processor.reference) {
zend_hash_init(&processor.zvalptrs, 0, NULL, NULL, 0);
}
processor.size = 0;
/* allocate */
processor.size = ALIGN(processor.size + sizeof(src[0]));
xc_calc_$1(&processor, src TSRMLS_CC);
if (processor.reference) {
zend_hash_destroy(&processor.zvalptrs);
}
zend_hash_destroy(&processor.strings);
}
src->size = processor.size;
ifelse(`$1', `xc_entry_t', `
src->data.var->have_references = processor.have_references;
', `
src->have_references = processor.have_references;
')
IFASSERT(`xc_stack_reverse(&processor.allocsizes);')
/* store {{{ */
{
IFASSERT(`char *oldp;')
zend_hash_init(&processor.strings, 0, NULL, NULL, 0);
if (processor.reference) {
zend_hash_init(&processor.zvalptrs, 0, NULL, NULL, 0);
}
/* mem :) */
processor.p = (char *) processor.cache->mem->handlers->malloc(processor.cache->mem, processor.size);
if (processor.p == NULL) {
dst = NULL;
goto err_alloc;
}
IFASSERT(`oldp = processor.p;')
assert(processor.p == (char *) ALIGN(processor.p));
/* allocate */
dst = ($1 *) processor.p;
processor.p = (char *) ALIGN(processor.p + sizeof(dst[0]));
xc_store_$1(&processor, dst, src TSRMLS_CC);
IFASSERT(` {
int real = processor.p - oldp;
int should = processor.size;
if (real != processor.size) {
fprintf(stderr, "real %d - should %d = %d\n", real, should, real - should);
abort();
}
}')
err_alloc:
if (processor.reference) {
zend_hash_destroy(&processor.zvalptrs);
}
zend_hash_destroy(&processor.strings);
}
/* }}} */
IFASSERT(`xc_stack_destroy(&processor.allocsizes);')
return dst;
}
/* }}} */
')
DEFINE_STORE_API(`xc_entry_t')
DEFINE_STORE_API(`xc_entry_data_php_t')
/* export: xc_entry_t *xc_processor_restore_xc_entry_t(xc_entry_t *dst, const xc_entry_t *src TSRMLS_DC); :export {{{ */
xc_entry_t *xc_processor_restore_xc_entry_t(xc_entry_t *dst, const xc_entry_t *src TSRMLS_DC) {
xc_processor_t processor;
memset(&processor, 0, sizeof(processor));
xc_restore_xc_entry_t(&processor, dst, src TSRMLS_CC);
return dst;
}
/* }}} */
/* export: xc_entry_data_php_t *xc_processor_restore_xc_entry_data_php_t(xc_entry_data_php_t *dst, const xc_entry_data_php_t *src, zend_bool readonly_protection TSRMLS_DC); :export {{{ */
xc_entry_data_php_t *xc_processor_restore_xc_entry_data_php_t(xc_entry_data_php_t *dst, const xc_entry_data_php_t *src, zend_bool readonly_protection TSRMLS_DC) {
xc_processor_t processor;
memset(&processor, 0, sizeof(processor));
processor.readonly_protection = readonly_protection;
/* this function is used for php data only */
if (src->have_references) {
processor.reference = 1;
}
if (processor.reference) {
zend_hash_init(&processor.zvalptrs, 0, NULL, NULL, 0);
}
xc_restore_xc_entry_data_php_t(&processor, dst, src TSRMLS_CC);
if (processor.reference) {
zend_hash_destroy(&processor.zvalptrs);
}
return dst;
}
/* }}} */
/* export: zval *xc_processor_restore_zval(zval *dst, const zval *src, zend_bool have_references TSRMLS_DC); :export {{{ */
zval *xc_processor_restore_zval(zval *dst, const zval *src, zend_bool have_references TSRMLS_DC) {
xc_processor_t processor;
memset(&processor, 0, sizeof(processor));
processor.reference = have_references;
if (processor.reference) {
zend_hash_init(&processor.zvalptrs, 0, NULL, NULL, 0);
dnl fprintf(stderr, "mark[%p] = %p\n", src, dst);
zend_hash_add(&processor.zvalptrs, (char *)src, sizeof(src), (void*)&dst, sizeof(dst), NULL);
}
xc_restore_zval(&processor, dst, src TSRMLS_CC);
if (processor.reference) {
zend_hash_destroy(&processor.zvalptrs);
}
return dst;
}
/* }}} */
/* export: void xc_dprint(xc_entry_t *src, int indent TSRMLS_DC); :export {{{ */
#ifdef HAVE_XCACHE_DPRINT
void xc_dprint(xc_entry_t *src, int indent TSRMLS_DC) {
IFDPRINT(`INDENT()`'fprintf(stderr, "xc_entry_t:src");')
xc_dprint_xc_entry_t(src, indent TSRMLS_CC);
}
#endif
/* }}} */