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374 lines
12 KiB
C
374 lines
12 KiB
C
/*
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+----------------------------------------------------------------------+
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| Zend OPcache |
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+----------------------------------------------------------------------+
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| Copyright (c) 1998-2018 The PHP Group |
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+----------------------------------------------------------------------+
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| This source file is subject to version 3.01 of the PHP license, |
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| that is bundled with this package in the file LICENSE, and is |
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| available through the world-wide-web at the following url: |
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| http://www.php.net/license/3_01.txt |
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| If you did not receive a copy of the PHP license and are unable to |
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| obtain it through the world-wide-web, please send a note to |
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| license@php.net so we can mail you a copy immediately. |
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+----------------------------------------------------------------------+
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| Authors: Andi Gutmans <andi@php.net> |
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| Zeev Suraski <zeev@php.net> |
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| Stanislav Malyshev <stas@zend.com> |
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| Dmitry Stogov <dmitry@php.net> |
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+----------------------------------------------------------------------+
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*/
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#include "ZendAccelerator.h"
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#include "zend_shared_alloc.h"
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#include "zend_accelerator_util_funcs.h"
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#include "tsrm_win32.h"
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#include <winbase.h>
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#include <process.h>
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#include <LMCONS.H>
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#define ACCEL_FILEMAP_NAME "ZendOPcache.SharedMemoryArea"
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#define ACCEL_MUTEX_NAME "ZendOPcache.SharedMemoryMutex"
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#define ACCEL_FILEMAP_BASE_DEFAULT 0x01000000
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#define ACCEL_FILEMAP_BASE "ZendOPcache.MemoryBase"
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#define ACCEL_EVENT_SOURCE "Zend OPcache"
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static HANDLE memfile = NULL, memory_mutex = NULL;
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static void *mapping_base;
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#define MAX_MAP_RETRIES 25
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static void zend_win_error_message(int type, char *msg, int err)
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{
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LPVOID lpMsgBuf;
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HANDLE h;
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char *ev_msgs[2];
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FormatMessage(
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FORMAT_MESSAGE_ALLOCATE_BUFFER |
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FORMAT_MESSAGE_FROM_SYSTEM |
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FORMAT_MESSAGE_IGNORE_INSERTS,
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NULL,
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err,
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MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), // Default language
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(LPTSTR) &lpMsgBuf,
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0,
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NULL
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);
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h = RegisterEventSource(NULL, TEXT(ACCEL_EVENT_SOURCE));
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ev_msgs[0] = msg;
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ev_msgs[1] = lpMsgBuf;
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ReportEvent(h, // event log handle
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EVENTLOG_ERROR_TYPE, // event type
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0, // category zero
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err, // event identifier
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NULL, // no user security identifier
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2, // one substitution string
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0, // no data
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ev_msgs, // pointer to string array
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NULL); // pointer to data
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DeregisterEventSource(h);
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LocalFree( lpMsgBuf );
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zend_accel_error(type, "%s", msg);
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}
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static char *create_name_with_username(char *name)
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{
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static char newname[MAXPATHLEN + UNLEN + 4 + 1 + 32];
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char *uname;
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uname = php_win32_get_username();
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if (!uname) {
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return NULL;
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}
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snprintf(newname, sizeof(newname) - 1, "%s@%s@%.32s", name, uname, ZCG(system_id));
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free(uname);
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return newname;
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}
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static char *get_mmap_base_file(void)
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{
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static char windir[MAXPATHLEN+UNLEN + 3 + sizeof("\\\\@") + 1 + 32];
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char *uname;
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int l;
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uname = php_win32_get_username();
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if (!uname) {
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return NULL;
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}
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GetTempPath(MAXPATHLEN, windir);
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l = strlen(windir);
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if ('\\' == windir[l-1]) {
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l--;
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}
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snprintf(windir + l, sizeof(windir) - l - 1, "\\%s@%s@%.32s", ACCEL_FILEMAP_BASE, uname, ZCG(system_id));
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free(uname);
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return windir;
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}
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void zend_shared_alloc_create_lock(void)
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{
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memory_mutex = CreateMutex(NULL, FALSE, create_name_with_username(ACCEL_MUTEX_NAME));
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if (!memory_mutex) {
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zend_accel_error(ACCEL_LOG_FATAL, "Cannot create mutex");
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return;
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}
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ReleaseMutex(memory_mutex);
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}
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void zend_shared_alloc_lock_win32(void)
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{
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DWORD waitRes = WaitForSingleObject(memory_mutex, INFINITE);
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if (waitRes == WAIT_FAILED) {
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zend_accel_error(ACCEL_LOG_ERROR, "Cannot lock mutex");
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}
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}
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void zend_shared_alloc_unlock_win32(void)
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{
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ReleaseMutex(memory_mutex);
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}
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static int zend_shared_alloc_reattach(size_t requested_size, char **error_in)
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{
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int err;
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void *wanted_mapping_base;
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char *mmap_base_file = get_mmap_base_file();
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FILE *fp = fopen(mmap_base_file, "r");
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MEMORY_BASIC_INFORMATION info;
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if (!fp) {
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err = GetLastError();
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zend_win_error_message(ACCEL_LOG_WARNING, mmap_base_file, err);
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zend_win_error_message(ACCEL_LOG_FATAL, "Unable to open base address file", err);
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*error_in="fopen";
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return ALLOC_FAILURE;
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}
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if (!fscanf(fp, "%p", &wanted_mapping_base)) {
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err = GetLastError();
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zend_win_error_message(ACCEL_LOG_FATAL, "Unable to read base address", err);
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*error_in="read mapping base";
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fclose(fp);
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return ALLOC_FAILURE;
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}
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fclose(fp);
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if (0 > win32_utime(mmap_base_file, NULL)) {
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err = GetLastError();
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zend_win_error_message(ACCEL_LOG_WARNING, mmap_base_file, err);
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}
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/* Check if the requested address space is free */
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if (VirtualQuery(wanted_mapping_base, &info, sizeof(info)) == 0 ||
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info.State != MEM_FREE ||
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info.RegionSize < requested_size) {
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#if ENABLE_FILE_CACHE_FALLBACK
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if (ZCG(accel_directives).file_cache && ZCG(accel_directives).file_cache_fallback) {
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size_t pre_size, wanted_mb_save;
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wanted_mb_save = (size_t)wanted_mapping_base;
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err = ERROR_INVALID_ADDRESS;
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zend_win_error_message(ACCEL_LOG_WARNING, "Base address marks unusable memory region (fall-back to file cache)", err);
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pre_size = ZEND_ALIGNED_SIZE(sizeof(zend_smm_shared_globals)) + ZEND_ALIGNED_SIZE(sizeof(zend_shared_segment)) + ZEND_ALIGNED_SIZE(sizeof(void *)) + ZEND_ALIGNED_SIZE(sizeof(int));
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/* Map only part of SHM to have access opcache shared globals */
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mapping_base = MapViewOfFileEx(memfile, FILE_MAP_ALL_ACCESS, 0, 0, pre_size + ZEND_ALIGNED_SIZE(sizeof(zend_accel_shared_globals)), NULL);
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if (mapping_base == NULL) {
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err = GetLastError();
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zend_win_error_message(ACCEL_LOG_FATAL, "Unable to reattach to opcache shared globals", err);
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return ALLOC_FAILURE;
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}
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accel_shared_globals = (zend_accel_shared_globals *)((char *)((zend_smm_shared_globals *)mapping_base)->app_shared_globals + ((char *)mapping_base - (char *)wanted_mb_save));
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return ALLOC_FALLBACK;
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}
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#endif
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err = ERROR_INVALID_ADDRESS;
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zend_win_error_message(ACCEL_LOG_FATAL, "Base address marks unusable memory region. Please setup opcache.file_cache and opcache.file_cache_fallback directives for more convenient Opcache usage", err);
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return ALLOC_FAILURE;
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}
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mapping_base = MapViewOfFileEx(memfile, FILE_MAP_ALL_ACCESS, 0, 0, 0, wanted_mapping_base);
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if (mapping_base == NULL) {
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err = GetLastError();
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if (err == ERROR_INVALID_ADDRESS) {
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zend_win_error_message(ACCEL_LOG_FATAL, "Unable to reattach to base address", err);
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return ALLOC_FAILURE;
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}
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return ALLOC_FAIL_MAPPING;
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}
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smm_shared_globals = (zend_smm_shared_globals *) mapping_base;
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return SUCCESSFULLY_REATTACHED;
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}
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static int create_segments(size_t requested_size, zend_shared_segment ***shared_segments_p, int *shared_segments_count, char **error_in)
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{
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int err = 0, ret;
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zend_shared_segment *shared_segment;
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int map_retries = 0;
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void *default_mapping_base_set[] = { 0, 0 };
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/* TODO:
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improve fixed addresses on x64. It still makes no sense to do it as Windows addresses are virtual per se and can or should be randomized anyway
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through Address Space Layout Radomization (ASLR). We can still let the OS do its job and be sure that each process gets the same address if
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desired. Not done yet, @zend refused but did not remember the exact reason, pls add info here if one of you know why :)
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*/
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#if defined(_WIN64)
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void *vista_mapping_base_set[] = { (void *) 0x0000100000000000, (void *) 0x0000200000000000, (void *) 0x0000300000000000, (void *) 0x0000700000000000, 0 };
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DWORD size_high = (requested_size >> 32), size_low = (requested_size & 0xffffffff);
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#else
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void *vista_mapping_base_set[] = { (void *) 0x20000000, (void *) 0x21000000, (void *) 0x30000000, (void *) 0x31000000, (void *) 0x50000000, 0 };
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DWORD size_high = 0, size_low = requested_size;
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#endif
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void **wanted_mapping_base = default_mapping_base_set;
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zend_shared_alloc_lock_win32();
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/* Mapping retries: When Apache2 restarts, the parent process startup routine
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can be called before the child process is killed. In this case, the map will fail
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and we have to sleep some time (until the child releases the mapping object) and retry.*/
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do {
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memfile = OpenFileMapping(FILE_MAP_WRITE, 0, create_name_with_username(ACCEL_FILEMAP_NAME));
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if (memfile == NULL) {
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err = GetLastError();
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break;
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}
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ret = zend_shared_alloc_reattach(requested_size, error_in);
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if (ret == ALLOC_FAIL_MAPPING) {
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err = GetLastError();
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/* Mapping failed, wait for mapping object to get freed and retry */
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CloseHandle(memfile);
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memfile = NULL;
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if (++map_retries >= MAX_MAP_RETRIES) {
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break;
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}
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zend_shared_alloc_unlock_win32();
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Sleep(1000 * (map_retries + 1));
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zend_shared_alloc_lock_win32();
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} else {
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zend_shared_alloc_unlock_win32();
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return ret;
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}
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} while (1);
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if (map_retries == MAX_MAP_RETRIES) {
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zend_shared_alloc_unlock_win32();
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zend_win_error_message(ACCEL_LOG_FATAL, "Unable to open file mapping", err);
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*error_in = "OpenFileMapping";
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return ALLOC_FAILURE;
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}
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/* creating segment here */
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*shared_segments_count = 1;
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*shared_segments_p = (zend_shared_segment **) calloc(1, sizeof(zend_shared_segment)+sizeof(void *));
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if (!*shared_segments_p) {
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err = GetLastError();
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zend_shared_alloc_unlock_win32();
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zend_win_error_message(ACCEL_LOG_FATAL, "calloc() failed", err);
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*error_in = "calloc";
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return ALLOC_FAILURE;
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}
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shared_segment = (zend_shared_segment *)((char *)(*shared_segments_p) + sizeof(void *));
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(*shared_segments_p)[0] = shared_segment;
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memfile = CreateFileMapping(INVALID_HANDLE_VALUE, NULL, PAGE_READWRITE, size_high, size_low,
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create_name_with_username(ACCEL_FILEMAP_NAME));
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if (memfile == NULL) {
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err = GetLastError();
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zend_shared_alloc_unlock_win32();
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zend_win_error_message(ACCEL_LOG_FATAL, "Unable to create file mapping", err);
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*error_in = "CreateFileMapping";
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return ALLOC_FAILURE;
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}
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/* Starting from windows Vista, heap randomization occurs which might cause our mapping base to
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be taken (fail to map). So under Vista, we try to map into a hard coded predefined addresses
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in high memory. */
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if (!ZCG(accel_directives).mmap_base || !*ZCG(accel_directives).mmap_base) {
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wanted_mapping_base = vista_mapping_base_set;
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} else {
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char *s = ZCG(accel_directives).mmap_base;
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/* skip leading 0x, %p assumes hexdeciaml format anyway */
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if (*s == '0' && *(s + 1) == 'x') {
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s += 2;
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}
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if (sscanf(s, "%p", &default_mapping_base_set[0]) != 1) {
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zend_shared_alloc_unlock_win32();
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zend_win_error_message(ACCEL_LOG_FATAL, "Bad mapping address specified in opcache.mmap_base", err);
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return ALLOC_FAILURE;
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}
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}
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do {
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shared_segment->p = mapping_base = MapViewOfFileEx(memfile, FILE_MAP_ALL_ACCESS, 0, 0, 0, *wanted_mapping_base);
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if (*wanted_mapping_base == NULL) { /* Auto address (NULL) is the last option on the array */
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break;
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}
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wanted_mapping_base++;
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} while (!mapping_base);
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if (mapping_base == NULL) {
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err = GetLastError();
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zend_shared_alloc_unlock_win32();
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zend_win_error_message(ACCEL_LOG_FATAL, "Unable to create view for file mapping", err);
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*error_in = "MapViewOfFile";
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return ALLOC_FAILURE;
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} else {
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char *mmap_base_file = get_mmap_base_file();
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FILE *fp = fopen(mmap_base_file, "w");
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if (!fp) {
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err = GetLastError();
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zend_shared_alloc_unlock_win32();
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zend_win_error_message(ACCEL_LOG_WARNING, mmap_base_file, err);
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zend_win_error_message(ACCEL_LOG_FATAL, "Unable to write base address", err);
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return ALLOC_FAILURE;
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}
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fprintf(fp, "%p\n", mapping_base);
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fclose(fp);
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}
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shared_segment->pos = 0;
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shared_segment->size = requested_size;
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zend_shared_alloc_unlock_win32();
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return ALLOC_SUCCESS;
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}
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static int detach_segment(zend_shared_segment *shared_segment)
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{
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zend_shared_alloc_lock_win32();
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if (mapping_base) {
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UnmapViewOfFile(mapping_base);
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mapping_base = NULL;
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}
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CloseHandle(memfile);
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memfile = NULL;
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zend_shared_alloc_unlock_win32();
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CloseHandle(memory_mutex);
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memory_mutex = NULL;
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return 0;
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}
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static size_t segment_type_size(void)
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{
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return sizeof(zend_shared_segment);
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}
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zend_shared_memory_handlers zend_alloc_win32_handlers = {
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create_segments,
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detach_segment,
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segment_type_size
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};
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