feat:replace boost library with C++11 std library

This commit is contained in:
Livox-SDK
2020-04-01 20:53:55 +08:00
parent 559ffbf712
commit 47389056be
1936 changed files with 241862 additions and 60153 deletions
+195
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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_general.h"
#include "apr_shm.h"
#include "apr_errno.h"
#include "apr_lib.h"
#include "apr_strings.h"
#include <stdio.h>
#include <stdlib.h>
#include <kernel/OS.h>
#include "apr_portable.h"
struct apr_shm_t {
apr_pool_t *pool;
void *memblock;
void *ptr;
apr_size_t reqsize;
apr_size_t avail;
area_id aid;
};
APR_DECLARE(apr_status_t) apr_shm_create(apr_shm_t **m,
apr_size_t reqsize,
const char *filename,
apr_pool_t *p)
{
apr_size_t pagesize;
area_id newid;
char *addr;
char shname[B_OS_NAME_LENGTH];
(*m) = (apr_shm_t *)apr_pcalloc(p, sizeof(apr_shm_t));
/* we MUST allocate in pages, so calculate how big an area we need... */
pagesize = ((reqsize + B_PAGE_SIZE - 1) / B_PAGE_SIZE) * B_PAGE_SIZE;
if (!filename) {
int num = 0;
snprintf(shname, B_OS_NAME_LENGTH, "apr_shmem_%ld", find_thread(NULL));
while (find_area(shname) >= 0)
snprintf(shname, B_OS_NAME_LENGTH, "apr_shmem_%ld_%d",
find_thread(NULL), num++);
}
newid = create_area(filename ? filename : shname,
(void*)&addr, B_ANY_ADDRESS,
pagesize, B_LAZY_LOCK, B_READ_AREA|B_WRITE_AREA);
if (newid < 0)
return errno;
(*m)->pool = p;
(*m)->aid = newid;
(*m)->memblock = addr;
(*m)->ptr = (void*)addr;
(*m)->avail = pagesize; /* record how big an area we actually created... */
(*m)->reqsize = reqsize;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_create_ex(apr_shm_t **m,
apr_size_t reqsize,
const char *filename,
apr_pool_t *p,
apr_int32_t flags)
{
return apr_shm_create(m, reqsize, filename, p);
}
APR_DECLARE(apr_status_t) apr_shm_destroy(apr_shm_t *m)
{
delete_area(m->aid);
m->avail = 0;
m->memblock = NULL;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_remove(const char *filename,
apr_pool_t *pool)
{
area_id deleteme = find_area(filename);
if (deleteme == B_NAME_NOT_FOUND)
return APR_EINVAL;
delete_area(deleteme);
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_delete(apr_shm_t *m)
{
if (m->filename) {
return apr_shm_remove(m->filename, m->pool);
}
else {
return APR_ENOTIMPL;
}
}
APR_DECLARE(apr_status_t) apr_shm_attach(apr_shm_t **m,
const char *filename,
apr_pool_t *pool)
{
area_info ai;
thread_info ti;
apr_shm_t *new_m;
area_id deleteme = find_area(filename);
if (deleteme == B_NAME_NOT_FOUND)
return APR_EINVAL;
new_m = (apr_shm_t*)apr_palloc(pool, sizeof(apr_shm_t*));
if (new_m == NULL)
return APR_ENOMEM;
new_m->pool = pool;
get_area_info(deleteme, &ai);
get_thread_info(find_thread(NULL), &ti);
if (ti.team != ai.team) {
area_id narea;
narea = clone_area(ai.name, &(ai.address), B_CLONE_ADDRESS,
B_READ_AREA|B_WRITE_AREA, ai.area);
if (narea < B_OK)
return narea;
get_area_info(narea, &ai);
new_m->aid = narea;
new_m->memblock = ai.address;
new_m->ptr = (void*)ai.address;
new_m->avail = ai.size;
new_m->reqsize = ai.size;
}
(*m) = new_m;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_attach_ex(apr_shm_t **m,
const char *filename,
apr_pool_t *pool,
apr_int32_t flags)
{
return apr_shm_attach(m, filename, pool);
}
APR_DECLARE(apr_status_t) apr_shm_detach(apr_shm_t *m)
{
delete_area(m->aid);
return APR_SUCCESS;
}
APR_DECLARE(void *) apr_shm_baseaddr_get(const apr_shm_t *m)
{
return m->memblock;
}
APR_DECLARE(apr_size_t) apr_shm_size_get(const apr_shm_t *m)
{
return m->reqsize;
}
APR_PERMS_SET_ENOTIMPL(shm)
APR_POOL_IMPLEMENT_ACCESSOR(shm)
APR_DECLARE(apr_status_t) apr_os_shm_get(apr_os_shm_t *osshm,
apr_shm_t *shm)
{
return APR_ENOTIMPL;
}
APR_DECLARE(apr_status_t) apr_os_shm_put(apr_shm_t **m,
apr_os_shm_t *osshm,
apr_pool_t *pool)
{
return APR_ENOTIMPL;
}
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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_general.h"
#include "apr_shm.h"
#include "apr_errno.h"
#include "apr_lib.h"
#include "apr_strings.h"
#include "apr_portable.h"
struct apr_shm_t {
apr_pool_t *pool;
void *memblock;
};
APR_DECLARE(apr_status_t) apr_shm_create(apr_shm_t **m,
apr_size_t reqsize,
const char *filename,
apr_pool_t *pool)
{
int rc;
apr_shm_t *newm = (apr_shm_t *)apr_palloc(pool, sizeof(apr_shm_t));
char *name = NULL;
ULONG flags = PAG_COMMIT|PAG_READ|PAG_WRITE;
newm->pool = pool;
if (filename) {
name = apr_pstrcat(pool, "\\SHAREMEM\\", filename, NULL);
}
if (name == NULL) {
flags |= OBJ_GETTABLE;
}
rc = DosAllocSharedMem(&(newm->memblock), name, reqsize, flags);
if (rc) {
return APR_OS2_STATUS(rc);
}
*m = newm;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_create_ex(apr_shm_t **m,
apr_size_t reqsize,
const char *filename,
apr_pool_t *p,
apr_int32_t flags)
{
return apr_shm_create(m, reqsize, filename, p);
}
APR_DECLARE(apr_status_t) apr_shm_destroy(apr_shm_t *m)
{
DosFreeMem(m->memblock);
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_remove(const char *filename,
apr_pool_t *pool)
{
return APR_ENOTIMPL;
}
APR_DECLARE(apr_status_t) apr_shm_delete(apr_shm_t *m)
{
return APR_ENOTIMPL;
}
APR_DECLARE(apr_status_t) apr_shm_attach(apr_shm_t **m,
const char *filename,
apr_pool_t *pool)
{
int rc;
apr_shm_t *newm = (apr_shm_t *)apr_palloc(pool, sizeof(apr_shm_t));
char *name = NULL;
ULONG flags = PAG_READ|PAG_WRITE;
newm->pool = pool;
name = apr_pstrcat(pool, "\\SHAREMEM\\", filename, NULL);
rc = DosGetNamedSharedMem(&(newm->memblock), name, flags);
if (rc) {
return APR_FROM_OS_ERROR(rc);
}
*m = newm;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_attach_ex(apr_shm_t **m,
const char *filename,
apr_pool_t *pool,
apr_int32_t flags)
{
return apr_shm_attach(m, filename, pool);
}
APR_DECLARE(apr_status_t) apr_shm_detach(apr_shm_t *m)
{
int rc = 0;
if (m->memblock) {
rc = DosFreeMem(m->memblock);
}
return APR_FROM_OS_ERROR(rc);
}
APR_DECLARE(void *) apr_shm_baseaddr_get(const apr_shm_t *m)
{
return m->memblock;
}
APR_DECLARE(apr_size_t) apr_shm_size_get(const apr_shm_t *m)
{
ULONG flags, size = 0x1000000;
DosQueryMem(m->memblock, &size, &flags);
return size;
}
APR_PERMS_SET_ENOTIMPL(shm)
APR_POOL_IMPLEMENT_ACCESSOR(shm)
APR_DECLARE(apr_status_t) apr_os_shm_get(apr_os_shm_t *osshm,
apr_shm_t *shm)
{
*osshm = shm->memblock;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_os_shm_put(apr_shm_t **m,
apr_os_shm_t *osshm,
apr_pool_t *pool)
{
int rc;
apr_shm_t *newm = (apr_shm_t *)apr_palloc(pool, sizeof(apr_shm_t));
ULONG flags = PAG_COMMIT|PAG_READ|PAG_WRITE;
newm->pool = pool;
rc = DosGetSharedMem(&(newm->memblock), flags);
if (rc) {
return APR_FROM_OS_ERROR(rc);
}
*m = newm;
return APR_SUCCESS;
}
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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_arch_shm.h"
#include "apr_arch_file_io.h"
#include "apr_general.h"
#include "apr_errno.h"
#include "apr_user.h"
#include "apr_strings.h"
#include "apr_hash.h"
#if APR_USE_SHMEM_MMAP_SHM
/*
* For portable use, a shared memory object should be identified by a name of
* the form /somename; that is, a null-terminated string of up to NAME_MAX
* (i.e., 255) characters consisting of an initial slash, followed by one or
* more characters, none of which are slashes.
*/
#ifndef NAME_MAX
#define NAME_MAX 255
#endif
/* See proc_mutex.c and sem_open for the reason for all this! */
static unsigned int rshash (const char *p) {
/* hash function from Robert Sedgwicks 'Algorithms in C' book */
unsigned int b = 378551;
unsigned int a = 63689;
unsigned int retval = 0;
for( ; *p; p++) {
retval = retval * a + (*p);
a *= b;
}
return retval;
}
static const char *make_shm_open_safe_name(const char *filename,
apr_pool_t *pool)
{
apr_ssize_t flen;
unsigned int h1, h2;
if (filename == NULL) {
return NULL;
}
flen = strlen(filename);
h1 = (apr_hashfunc_default(filename, &flen) & 0xffffffff);
h2 = (rshash(filename) & 0xffffffff);
return apr_psprintf(pool, "/ShM.%xH%x", h1, h2);
}
#endif
#if APR_USE_SHMEM_SHMGET
static key_t our_ftok(const char *filename)
{
/* to help avoid collisions while still using
* an easily recreated proj_id */
apr_ssize_t slen = strlen(filename);
return ftok(filename,
(int)apr_hashfunc_default(filename, &slen));
}
#endif
static apr_status_t shm_cleanup_owner(void *m_)
{
apr_shm_t *m = (apr_shm_t *)m_;
/* anonymous shared memory */
if (m->filename == NULL) {
#if APR_USE_SHMEM_MMAP_ZERO || APR_USE_SHMEM_MMAP_ANON
if (munmap(m->base, m->realsize) == -1) {
return errno;
}
return APR_SUCCESS;
#elif APR_USE_SHMEM_SHMGET_ANON
if (shmdt(m->base) == -1) {
return errno;
}
/* This segment will automatically remove itself after all
* references have detached. */
return APR_SUCCESS;
#endif
}
/* name-based shared memory */
else {
#if APR_USE_SHMEM_MMAP_TMP
if (munmap(m->base, m->realsize) == -1) {
return errno;
}
if (access(m->filename, F_OK)) {
return APR_SUCCESS;
}
else {
return apr_file_remove(m->filename, m->pool);
}
#elif APR_USE_SHMEM_MMAP_SHM
if (munmap(m->base, m->realsize) == -1) {
return errno;
}
if (shm_unlink(make_shm_open_safe_name(m->filename, m->pool)) == -1 && errno != ENOENT) {
return errno;
}
return APR_SUCCESS;
#elif APR_USE_SHMEM_SHMGET
/* Indicate that the segment is to be destroyed as soon
* as all processes have detached. This also disallows any
* new attachments to the segment. */
if (shmctl(m->shmid, IPC_RMID, NULL) == -1 && errno != EINVAL) {
return errno;
}
if (shmdt(m->base) == -1) {
return errno;
}
if (access(m->filename, F_OK)) {
return APR_SUCCESS;
}
else {
return apr_file_remove(m->filename, m->pool);
}
#else
return APR_ENOTIMPL;
#endif
}
}
APR_DECLARE(apr_status_t) apr_shm_create(apr_shm_t **m,
apr_size_t reqsize,
const char *filename,
apr_pool_t *pool)
{
apr_shm_t *new_m;
apr_status_t status;
#if APR_USE_SHMEM_SHMGET || APR_USE_SHMEM_SHMGET_ANON
struct shmid_ds shmbuf;
apr_uid_t uid;
apr_gid_t gid;
#endif
#if APR_USE_SHMEM_MMAP_TMP || APR_USE_SHMEM_MMAP_SHM || \
APR_USE_SHMEM_MMAP_ZERO
int tmpfd;
#endif
#if APR_USE_SHMEM_SHMGET
apr_size_t nbytes;
#endif
#if APR_USE_SHMEM_MMAP_ZERO || APR_USE_SHMEM_SHMGET || \
APR_USE_SHMEM_MMAP_TMP || APR_USE_SHMEM_MMAP_SHM
apr_file_t *file; /* file where metadata is stored */
#endif
/* Check if they want anonymous or name-based shared memory */
if (filename == NULL) {
#if APR_USE_SHMEM_MMAP_ZERO || APR_USE_SHMEM_MMAP_ANON
new_m = apr_palloc(pool, sizeof(apr_shm_t));
new_m->pool = pool;
new_m->reqsize = reqsize;
new_m->realsize = reqsize +
APR_ALIGN_DEFAULT(sizeof(apr_size_t)); /* room for metadata */
new_m->filename = NULL;
#if APR_USE_SHMEM_MMAP_ZERO
status = apr_file_open(&file, "/dev/zero", APR_READ | APR_WRITE,
APR_OS_DEFAULT, pool);
if (status != APR_SUCCESS) {
return status;
}
status = apr_os_file_get(&tmpfd, file);
if (status != APR_SUCCESS) {
return status;
}
new_m->base = mmap(NULL, new_m->realsize, PROT_READ|PROT_WRITE,
MAP_SHARED, tmpfd, 0);
if (new_m->base == (void *)MAP_FAILED) {
return errno;
}
status = apr_file_close(file);
if (status != APR_SUCCESS) {
return status;
}
/* store the real size in the metadata */
*(apr_size_t*)(new_m->base) = new_m->realsize;
/* metadata isn't usable */
new_m->usable = (char *)new_m->base + APR_ALIGN_DEFAULT(sizeof(apr_size_t));
apr_pool_cleanup_register(new_m->pool, new_m, shm_cleanup_owner,
apr_pool_cleanup_null);
*m = new_m;
return APR_SUCCESS;
#elif APR_USE_SHMEM_MMAP_ANON
new_m->base = mmap(NULL, new_m->realsize, PROT_READ|PROT_WRITE,
MAP_ANON|MAP_SHARED, -1, 0);
if (new_m->base == (void *)MAP_FAILED) {
return errno;
}
/* store the real size in the metadata */
*(apr_size_t*)(new_m->base) = new_m->realsize;
/* metadata isn't usable */
new_m->usable = (char *)new_m->base + APR_ALIGN_DEFAULT(sizeof(apr_size_t));
apr_pool_cleanup_register(new_m->pool, new_m, shm_cleanup_owner,
apr_pool_cleanup_null);
*m = new_m;
return APR_SUCCESS;
#endif /* APR_USE_SHMEM_MMAP_ZERO */
#elif APR_USE_SHMEM_SHMGET_ANON
new_m = apr_palloc(pool, sizeof(apr_shm_t));
new_m->pool = pool;
new_m->reqsize = reqsize;
new_m->realsize = reqsize;
new_m->filename = NULL;
new_m->shmkey = IPC_PRIVATE;
if ((new_m->shmid = shmget(new_m->shmkey, new_m->realsize,
SHM_R | SHM_W | IPC_CREAT)) < 0) {
return errno;
}
if ((new_m->base = shmat(new_m->shmid, NULL, 0)) == (void *)-1) {
return errno;
}
new_m->usable = new_m->base;
if (shmctl(new_m->shmid, IPC_STAT, &shmbuf) == -1) {
return errno;
}
apr_uid_current(&uid, &gid, pool);
shmbuf.shm_perm.uid = uid;
shmbuf.shm_perm.gid = gid;
if (shmctl(new_m->shmid, IPC_SET, &shmbuf) == -1) {
return errno;
}
/* Remove the segment once use count hits zero.
* We will not attach to this segment again, since it is
* anonymous memory, so it is ok to mark it for deletion.
*/
if (shmctl(new_m->shmid, IPC_RMID, NULL) == -1) {
return errno;
}
apr_pool_cleanup_register(new_m->pool, new_m, shm_cleanup_owner,
apr_pool_cleanup_null);
*m = new_m;
return APR_SUCCESS;
#else
/* It is an error if they want anonymous memory but we don't have it. */
return APR_ENOTIMPL; /* requested anonymous but we don't have it */
#endif
}
/* Name-based shared memory */
else {
new_m = apr_palloc(pool, sizeof(apr_shm_t));
new_m->pool = pool;
new_m->reqsize = reqsize;
new_m->filename = apr_pstrdup(pool, filename);
#if APR_USE_SHMEM_MMAP_SHM
const char *shm_name = make_shm_open_safe_name(filename, pool);
#endif
#if APR_USE_SHMEM_MMAP_TMP || APR_USE_SHMEM_MMAP_SHM
new_m->realsize = reqsize +
APR_ALIGN_DEFAULT(sizeof(apr_size_t)); /* room for metadata */
/* FIXME: Ignore error for now. *
* status = apr_file_remove(file, pool);*/
status = APR_SUCCESS;
#if APR_USE_SHMEM_MMAP_TMP
/* FIXME: Is APR_OS_DEFAULT sufficient? */
status = apr_file_open(&file, filename,
APR_READ | APR_WRITE | APR_CREATE | APR_EXCL,
APR_OS_DEFAULT, pool);
if (status != APR_SUCCESS) {
return status;
}
status = apr_os_file_get(&tmpfd, file);
if (status != APR_SUCCESS) {
apr_file_close(file); /* ignore errors, we're failing */
apr_file_remove(new_m->filename, new_m->pool);
return status;
}
status = apr_file_trunc(file, new_m->realsize);
if (status != APR_SUCCESS && status != APR_ESPIPE) {
apr_file_close(file); /* ignore errors, we're failing */
apr_file_remove(new_m->filename, new_m->pool);
return status;
}
new_m->base = mmap(NULL, new_m->realsize, PROT_READ | PROT_WRITE,
MAP_SHARED, tmpfd, 0);
/* FIXME: check for errors */
status = apr_file_close(file);
if (status != APR_SUCCESS) {
return status;
}
#endif /* APR_USE_SHMEM_MMAP_TMP */
#if APR_USE_SHMEM_MMAP_SHM
/* FIXME: SysV uses 0600... should we? */
tmpfd = shm_open(shm_name, O_RDWR | O_CREAT | O_EXCL, 0644);
if (tmpfd == -1) {
return errno;
}
status = apr_os_file_put(&file, &tmpfd,
APR_READ | APR_WRITE | APR_CREATE | APR_EXCL,
pool);
if (status != APR_SUCCESS) {
return status;
}
status = apr_file_trunc(file, new_m->realsize);
if (status != APR_SUCCESS && status != APR_ESPIPE) {
shm_unlink(shm_name); /* we're failing, remove the object */
return status;
}
new_m->base = mmap(NULL, new_m->realsize, PROT_READ | PROT_WRITE,
MAP_SHARED, tmpfd, 0);
/* FIXME: check for errors */
status = apr_file_close(file);
if (status != APR_SUCCESS) {
return status;
}
#endif /* APR_USE_SHMEM_MMAP_SHM */
/* store the real size in the metadata */
*(apr_size_t*)(new_m->base) = new_m->realsize;
/* metadata isn't usable */
new_m->usable = (char *)new_m->base + APR_ALIGN_DEFAULT(sizeof(apr_size_t));
apr_pool_cleanup_register(new_m->pool, new_m, shm_cleanup_owner,
apr_pool_cleanup_null);
*m = new_m;
return APR_SUCCESS;
#elif APR_USE_SHMEM_SHMGET
new_m->realsize = reqsize;
/* FIXME: APR_OS_DEFAULT is too permissive, switch to 600 I think. */
status = apr_file_open(&file, filename,
APR_FOPEN_WRITE | APR_FOPEN_CREATE | APR_FOPEN_EXCL,
APR_OS_DEFAULT, pool);
if (status != APR_SUCCESS) {
return status;
}
/* ftok() (on solaris at least) requires that the file actually
* exist before calling ftok(). */
new_m->shmkey = our_ftok(filename);
if (new_m->shmkey == (key_t)-1) {
apr_file_close(file);
return errno;
}
if ((new_m->shmid = shmget(new_m->shmkey, new_m->realsize,
SHM_R | SHM_W | IPC_CREAT | IPC_EXCL)) < 0) {
apr_file_close(file);
return errno;
}
if ((new_m->base = shmat(new_m->shmid, NULL, 0)) == (void *)-1) {
apr_file_close(file);
return errno;
}
new_m->usable = new_m->base;
if (shmctl(new_m->shmid, IPC_STAT, &shmbuf) == -1) {
apr_file_close(file);
return errno;
}
apr_uid_current(&uid, &gid, pool);
shmbuf.shm_perm.uid = uid;
shmbuf.shm_perm.gid = gid;
if (shmctl(new_m->shmid, IPC_SET, &shmbuf) == -1) {
apr_file_close(file);
return errno;
}
nbytes = sizeof(reqsize);
status = apr_file_write(file, (const void *)&reqsize,
&nbytes);
if (status != APR_SUCCESS) {
apr_file_close(file);
return status;
}
status = apr_file_close(file);
if (status != APR_SUCCESS) {
return status;
}
apr_pool_cleanup_register(new_m->pool, new_m, shm_cleanup_owner,
apr_pool_cleanup_null);
*m = new_m;
return APR_SUCCESS;
#else
return APR_ENOTIMPL;
#endif
}
}
APR_DECLARE(apr_status_t) apr_shm_create_ex(apr_shm_t **m,
apr_size_t reqsize,
const char *filename,
apr_pool_t *p,
apr_int32_t flags)
{
return apr_shm_create(m, reqsize, filename, p);
}
APR_DECLARE(apr_status_t) apr_shm_remove(const char *filename,
apr_pool_t *pool)
{
#if APR_USE_SHMEM_SHMGET
apr_status_t status;
apr_file_t *file;
key_t shmkey;
int shmid;
#endif
#if APR_USE_SHMEM_MMAP_TMP
return apr_file_remove(filename, pool);
#elif APR_USE_SHMEM_MMAP_SHM
const char *shm_name = make_shm_open_safe_name(filename, pool);
if (shm_unlink(shm_name) == -1) {
return errno;
}
return APR_SUCCESS;
#elif APR_USE_SHMEM_SHMGET
/* Presume that the file already exists; just open for writing */
status = apr_file_open(&file, filename, APR_FOPEN_WRITE,
APR_OS_DEFAULT, pool);
if (status) {
return status;
}
/* ftok() (on solaris at least) requires that the file actually
* exist before calling ftok(). */
shmkey = our_ftok(filename);
if (shmkey == (key_t)-1) {
goto shm_remove_failed;
}
apr_file_close(file);
if ((shmid = shmget(shmkey, 0, SHM_R | SHM_W)) < 0) {
goto shm_remove_failed;
}
/* Indicate that the segment is to be destroyed as soon
* as all processes have detached. This also disallows any
* new attachments to the segment. */
if (shmctl(shmid, IPC_RMID, NULL) == -1) {
goto shm_remove_failed;
}
return apr_file_remove(filename, pool);
shm_remove_failed:
status = errno;
/* ensure the file has been removed anyway. */
apr_file_remove(filename, pool);
return status;
#else
/* No support for anonymous shm */
return APR_ENOTIMPL;
#endif
}
APR_DECLARE(apr_status_t) apr_shm_delete(apr_shm_t *m)
{
if (m->filename) {
return apr_shm_remove(m->filename, m->pool);
}
else {
return APR_ENOTIMPL;
}
}
APR_DECLARE(apr_status_t) apr_shm_destroy(apr_shm_t *m)
{
return apr_pool_cleanup_run(m->pool, m, shm_cleanup_owner);
}
static apr_status_t shm_cleanup_attach(void *m_)
{
apr_shm_t *m = (apr_shm_t *)m_;
if (m->filename == NULL) {
/* It doesn't make sense to detach from an anonymous memory segment. */
return APR_EINVAL;
}
else {
#if APR_USE_SHMEM_MMAP_TMP || APR_USE_SHMEM_MMAP_SHM
if (munmap(m->base, m->realsize) == -1) {
return errno;
}
return APR_SUCCESS;
#elif APR_USE_SHMEM_SHMGET
if (shmdt(m->base) == -1) {
return errno;
}
return APR_SUCCESS;
#else
return APR_ENOTIMPL;
#endif
}
}
APR_DECLARE(apr_status_t) apr_shm_attach(apr_shm_t **m,
const char *filename,
apr_pool_t *pool)
{
if (filename == NULL) {
/* It doesn't make sense to attach to a segment if you don't know
* the filename. */
return APR_EINVAL;
}
else {
#if APR_USE_SHMEM_MMAP_TMP || APR_USE_SHMEM_MMAP_SHM
apr_shm_t *new_m;
apr_status_t status;
int tmpfd;
apr_file_t *file; /* file where metadata is stored */
apr_size_t nbytes;
new_m = apr_palloc(pool, sizeof(apr_shm_t));
new_m->pool = pool;
new_m->filename = apr_pstrdup(pool, filename);
#if APR_USE_SHMEM_MMAP_SHM
const char *shm_name = make_shm_open_safe_name(filename, pool);
/* FIXME: SysV uses 0600... should we? */
tmpfd = shm_open(shm_name, O_RDWR, 0644);
if (tmpfd == -1) {
return errno;
}
status = apr_os_file_put(&file, &tmpfd,
APR_READ | APR_WRITE,
pool);
if (status != APR_SUCCESS) {
return status;
}
#elif APR_USE_SHMEM_MMAP_TMP
status = apr_file_open(&file, filename,
APR_READ | APR_WRITE,
APR_OS_DEFAULT, pool);
if (status != APR_SUCCESS) {
return status;
}
status = apr_os_file_get(&tmpfd, file);
if (status != APR_SUCCESS) {
return status;
}
#else
return APR_ENOTIMPL;
#endif
nbytes = sizeof(new_m->realsize);
status = apr_file_read(file, (void *)&(new_m->realsize),
&nbytes);
if (status != APR_SUCCESS) {
return status;
}
status = apr_os_file_get(&tmpfd, file);
if (status != APR_SUCCESS) {
apr_file_close(file); /* ignore errors, we're failing */
apr_file_remove(new_m->filename, new_m->pool);
return status;
}
new_m->reqsize = new_m->realsize - sizeof(apr_size_t);
new_m->base = mmap(NULL, new_m->realsize, PROT_READ | PROT_WRITE,
MAP_SHARED, tmpfd, 0);
/* FIXME: check for errors */
status = apr_file_close(file);
if (status != APR_SUCCESS) {
return status;
}
/* metadata isn't part of the usable segment */
new_m->usable = (char *)new_m->base + APR_ALIGN_DEFAULT(sizeof(apr_size_t));
apr_pool_cleanup_register(new_m->pool, new_m, shm_cleanup_attach,
apr_pool_cleanup_null);
*m = new_m;
return APR_SUCCESS;
#elif APR_USE_SHMEM_SHMGET
apr_shm_t *new_m;
apr_status_t status;
apr_file_t *file; /* file where metadata is stored */
apr_size_t nbytes;
new_m = apr_palloc(pool, sizeof(apr_shm_t));
status = apr_file_open(&file, filename,
APR_FOPEN_READ, APR_OS_DEFAULT, pool);
if (status != APR_SUCCESS) {
return status;
}
nbytes = sizeof(new_m->reqsize);
status = apr_file_read(file, (void *)&(new_m->reqsize),
&nbytes);
if (status != APR_SUCCESS) {
return status;
}
status = apr_file_close(file);
if (status != APR_SUCCESS) {
return status;
}
new_m->filename = apr_pstrdup(pool, filename);
new_m->pool = pool;
new_m->shmkey = our_ftok(filename);
if (new_m->shmkey == (key_t)-1) {
return errno;
}
if ((new_m->shmid = shmget(new_m->shmkey, 0, SHM_R | SHM_W)) == -1) {
return errno;
}
if ((new_m->base = shmat(new_m->shmid, NULL, 0)) == (void *)-1) {
return errno;
}
new_m->usable = new_m->base;
new_m->realsize = new_m->reqsize;
apr_pool_cleanup_register(new_m->pool, new_m, shm_cleanup_attach,
apr_pool_cleanup_null);
*m = new_m;
return APR_SUCCESS;
#else
return APR_ENOTIMPL;
#endif
}
}
APR_DECLARE(apr_status_t) apr_shm_attach_ex(apr_shm_t **m,
const char *filename,
apr_pool_t *pool,
apr_int32_t flags)
{
return apr_shm_attach(m, filename, pool);
}
APR_DECLARE(apr_status_t) apr_shm_detach(apr_shm_t *m)
{
apr_status_t rv = shm_cleanup_attach(m);
apr_pool_cleanup_kill(m->pool, m, shm_cleanup_attach);
return rv;
}
APR_DECLARE(void *) apr_shm_baseaddr_get(const apr_shm_t *m)
{
return m->usable;
}
APR_DECLARE(apr_size_t) apr_shm_size_get(const apr_shm_t *m)
{
return m->reqsize;
}
APR_PERMS_SET_IMPLEMENT(shm)
{
#if APR_USE_SHMEM_SHMGET || APR_USE_SHMEM_SHMGET_ANON
struct shmid_ds shmbuf;
int shmid;
apr_shm_t *m = (apr_shm_t *)theshm;
if ((shmid = shmget(m->shmkey, 0, SHM_R | SHM_W)) == -1) {
return errno;
}
shmbuf.shm_perm.uid = uid;
shmbuf.shm_perm.gid = gid;
shmbuf.shm_perm.mode = apr_unix_perms2mode(perms);
if (shmctl(shmid, IPC_SET, &shmbuf) == -1) {
return errno;
}
return APR_SUCCESS;
#else
return APR_ENOTIMPL;
#endif
}
APR_POOL_IMPLEMENT_ACCESSOR(shm)
APR_DECLARE(apr_status_t) apr_os_shm_get(apr_os_shm_t *osshm,
apr_shm_t *shm)
{
return APR_ENOTIMPL;
}
APR_DECLARE(apr_status_t) apr_os_shm_put(apr_shm_t **m,
apr_os_shm_t *osshm,
apr_pool_t *pool)
{
return APR_ENOTIMPL;
}
+452
View File
@@ -0,0 +1,452 @@
/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_general.h"
#include "apr_errno.h"
#include "apr_file_io.h"
#include "apr_shm.h"
#include "apr_strings.h"
#include "apr_arch_file_io.h"
#include "limits.h"
typedef struct memblock_t {
apr_size_t size;
apr_size_t length;
} memblock_t;
struct apr_shm_t {
apr_pool_t *pool;
memblock_t *memblk;
void *usrmem;
apr_size_t size;
apr_size_t length;
HANDLE hMap;
const char *filename;
};
static apr_status_t shm_cleanup(void* shm)
{
apr_status_t rv = APR_SUCCESS;
apr_shm_t *m = shm;
if (!UnmapViewOfFile(m->memblk)) {
rv = apr_get_os_error();
}
if (!CloseHandle(m->hMap)) {
rv = rv != APR_SUCCESS ? rv : apr_get_os_error();
}
if (m->filename) {
/* Remove file if file backed */
apr_status_t rc = apr_file_remove(m->filename, m->pool);
rv = rv != APR_SUCCESS ? rv : rc;
}
return rv;
}
/* See if the caller is able to create a map in the global namespace by
* checking if the SE_CREATE_GLOBAL_NAME privilege is enabled.
*
* Prior to APR 1.5.0, named shared memory segments were always created
* in the global segment. However, with recent versions of Windows this
* fails for unprivileged processes. Thus, with older APR, named shared
* memory segments can't be created by unprivileged processes on newer
* Windows.
*
* By checking if the caller has the privilege, shm APIs can decide
* whether to use the Global or Local namespace.
*
* If running on an SDK without the required API definitions *OR*
* some processing failure occurs trying to check the privilege, fall
* back to earlier behavior -- always try to use the Global namespace.
*/
#ifdef SE_CREATE_GLOBAL_NAME
static int can_create_global_maps(void)
{
BOOL ok, has_priv;
LUID priv_id;
PRIVILEGE_SET privs;
HANDLE hToken;
ok = OpenThreadToken(GetCurrentThread(), TOKEN_QUERY, TRUE, &hToken);
if (!ok && GetLastError() == ERROR_NO_TOKEN) {
/* no thread-specific access token, so try to get process access token
*/
ok = OpenProcessToken(GetCurrentProcess(), TOKEN_QUERY, &hToken);
}
if (ok) {
ok = LookupPrivilegeValue(NULL, SE_CREATE_GLOBAL_NAME, &priv_id);
}
if (ok) {
privs.PrivilegeCount = 1;
privs.Control = PRIVILEGE_SET_ALL_NECESSARY;
privs.Privilege[0].Luid = priv_id;
privs.Privilege[0].Attributes = SE_PRIVILEGE_ENABLED;
ok = PrivilegeCheck(hToken, &privs, &has_priv);
}
if (ok && !has_priv) {
return 0;
}
else {
return 1;
}
}
#else /* SE_CREATE_GLOBAL_NAME */
/* SDK definitions missing */
static int can_create_global_maps(void)
{
return 1;
}
#endif /* SE_CREATE_GLOBAL_NAME */
APR_DECLARE(apr_status_t) apr_shm_create_ex(apr_shm_t **m,
apr_size_t reqsize,
const char *file,
apr_pool_t *pool,
apr_int32_t flags)
{
static apr_size_t memblock = 0;
HANDLE hMap, hFile;
apr_status_t rv;
apr_size_t size;
apr_file_t *f;
void *base;
void *mapkey;
DWORD err, sizelo, sizehi;
reqsize += sizeof(memblock_t);
if (!memblock)
{
SYSTEM_INFO si;
GetSystemInfo(&si);
memblock = si.dwAllocationGranularity;
}
/* Compute the granualar multiple of the pagesize */
size = memblock * (1 + (reqsize - 1) / memblock);
sizelo = (DWORD)size;
#ifdef _WIN64
sizehi = (DWORD)(size >> 32);
#else
sizehi = 0;
#endif
if (!file) {
/* Do Anonymous, which must be passed as a duplicated handle */
#ifndef _WIN32_WCE
hFile = INVALID_HANDLE_VALUE;
#endif
mapkey = NULL;
}
else {
int global;
/* Do file backed, which is not an inherited handle
* While we could open APR_EXCL, it doesn't seem that Unix
* ever did. Ignore that error here, but fail later when
* we discover we aren't the creator of the file map object.
*/
rv = apr_file_open(&f, file,
APR_READ | APR_WRITE | APR_BINARY | APR_CREATE,
APR_UREAD | APR_UWRITE, pool);
if ((rv != APR_SUCCESS)
|| ((rv = apr_os_file_get(&hFile, f)) != APR_SUCCESS)) {
return rv;
}
rv = apr_file_trunc(f, size);
/* res_name_from_filename turns file into a pseudo-name
* without slashes or backslashes, and prepends the \global
* or \local prefix on Win2K and later
*/
if (flags & APR_SHM_NS_GLOBAL) {
global = 1;
}
else if (flags & APR_SHM_NS_LOCAL) {
global = 0;
}
else {
global = can_create_global_maps();
}
mapkey = res_name_from_filename(file, global, pool);
}
#if APR_HAS_UNICODE_FS
IF_WIN_OS_IS_UNICODE
{
hMap = CreateFileMappingW(hFile, NULL, PAGE_READWRITE,
sizehi, sizelo, mapkey);
}
#endif
#if APR_HAS_ANSI_FS
ELSE_WIN_OS_IS_ANSI
{
hMap = CreateFileMappingA(hFile, NULL, PAGE_READWRITE,
sizehi, sizelo, mapkey);
}
#endif
err = apr_get_os_error();
if (file) {
apr_file_close(f);
}
if (hMap && APR_STATUS_IS_EEXIST(err)) {
CloseHandle(hMap);
return APR_EEXIST;
}
if (!hMap) {
return err;
}
base = MapViewOfFile(hMap, FILE_MAP_READ | FILE_MAP_WRITE,
0, 0, size);
if (!base) {
CloseHandle(hMap);
return apr_get_os_error();
}
*m = (apr_shm_t *) apr_palloc(pool, sizeof(apr_shm_t));
(*m)->pool = pool;
(*m)->hMap = hMap;
(*m)->memblk = base;
(*m)->size = size;
(*m)->usrmem = (char*)base + sizeof(memblock_t);
(*m)->length = reqsize - sizeof(memblock_t);;
(*m)->memblk->length = (*m)->length;
(*m)->memblk->size = (*m)->size;
(*m)->filename = file ? apr_pstrdup(pool, file) : NULL;
apr_pool_cleanup_register((*m)->pool, *m,
shm_cleanup, apr_pool_cleanup_null);
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_create(apr_shm_t **m,
apr_size_t reqsize,
const char *file,
apr_pool_t *pool)
{
return apr_shm_create_ex(m, reqsize, file, pool, 0);
}
APR_DECLARE(apr_status_t) apr_shm_destroy(apr_shm_t *m)
{
apr_status_t rv = shm_cleanup(m);
apr_pool_cleanup_kill(m->pool, m, shm_cleanup);
return rv;
}
APR_DECLARE(apr_status_t) apr_shm_remove(const char *filename,
apr_pool_t *pool)
{
return apr_file_remove(filename, pool);
}
APR_DECLARE(apr_status_t) apr_shm_delete(apr_shm_t *m)
{
if (m->filename) {
return apr_shm_remove(m->filename, m->pool);
}
else {
return APR_ENOTIMPL;
}
}
static apr_status_t shm_attach_internal(apr_shm_t **m,
const char *file,
apr_pool_t *pool,
int global)
{
HANDLE hMap;
void *mapkey;
void *base;
/* res_name_from_filename turns file into a pseudo-name
* without slashes or backslashes, and prepends the \global
* or local prefix on Win2K and later
*/
mapkey = res_name_from_filename(file, global, pool);
#if APR_HAS_UNICODE_FS
IF_WIN_OS_IS_UNICODE
{
#ifndef _WIN32_WCE
hMap = OpenFileMappingW(FILE_MAP_READ | FILE_MAP_WRITE, FALSE, mapkey);
#else
/* The WCE 3.0 lacks OpenFileMapping. So we emulate one with
* opening the existing shmem and reading its size from the header
*/
hMap = CreateFileMappingW(INVALID_HANDLE_VALUE, NULL,
PAGE_READWRITE, 0, sizeof(apr_shm_t), mapkey);
#endif
}
#endif
#if APR_HAS_ANSI_FS
ELSE_WIN_OS_IS_ANSI
{
hMap = OpenFileMappingA(FILE_MAP_READ | FILE_MAP_WRITE, FALSE, mapkey);
}
#endif
if (!hMap) {
return apr_get_os_error();
}
base = MapViewOfFile(hMap, FILE_MAP_READ | FILE_MAP_WRITE, 0, 0, 0);
if (!base) {
CloseHandle(hMap);
return apr_get_os_error();
}
*m = (apr_shm_t *) apr_palloc(pool, sizeof(apr_shm_t));
(*m)->pool = pool;
(*m)->memblk = base;
/* Real (*m)->mem->size could be recovered with VirtualQuery */
(*m)->size = (*m)->memblk->size;
#if _WIN32_WCE
/* Reopen with real size */
UnmapViewOfFile(base);
CloseHandle(hMap);
hMap = CreateFileMappingW(INVALID_HANDLE_VALUE, NULL,
PAGE_READWRITE, 0, (*m)->size, mapkey);
if (!hMap) {
return apr_get_os_error();
}
base = MapViewOfFile(hMap, FILE_MAP_READ | FILE_MAP_WRITE, 0, 0, 0);
if (!base) {
CloseHandle(hMap);
return apr_get_os_error();
}
#endif
(*m)->hMap = hMap;
(*m)->length = (*m)->memblk->length;
(*m)->usrmem = (char*)base + sizeof(memblock_t);
(*m)->filename = NULL;
apr_pool_cleanup_register((*m)->pool, *m,
shm_cleanup, apr_pool_cleanup_null);
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_shm_attach_ex(apr_shm_t **m,
const char *file,
apr_pool_t *pool,
apr_int32_t flags)
{
apr_status_t rv;
int can_create_global;
int try_global_local[3] = {-1, -1, -1};
int cur;
if (!file) {
return APR_EINVAL;
}
if (flags & APR_SHM_NS_LOCAL) {
try_global_local[0] = 0; /* only search local */
}
else if (flags & APR_SHM_NS_GLOBAL) {
try_global_local[0] = 1; /* only search global */
}
else {
can_create_global = can_create_global_maps();
if (!can_create_global) { /* unprivileged process */
try_global_local[0] = 0; /* search local before global */
try_global_local[1] = 1;
}
else {
try_global_local[0] = 1; /* search global before local */
try_global_local[1] = 0;
}
}
for (cur = 0; try_global_local[cur] != -1; cur++) {
rv = shm_attach_internal(m, file, pool, try_global_local[cur]);
if (!APR_STATUS_IS_ENOENT(rv)) {
break;
}
}
return rv;
}
APR_DECLARE(apr_status_t) apr_shm_attach(apr_shm_t **m,
const char *file,
apr_pool_t *pool)
{
return apr_shm_attach_ex(m, file, pool, 0);
}
APR_DECLARE(apr_status_t) apr_shm_detach(apr_shm_t *m)
{
apr_status_t rv = shm_cleanup(m);
apr_pool_cleanup_kill(m->pool, m, shm_cleanup);
return rv;
}
APR_DECLARE(void *) apr_shm_baseaddr_get(const apr_shm_t *m)
{
return m->usrmem;
}
APR_DECLARE(apr_size_t) apr_shm_size_get(const apr_shm_t *m)
{
return m->length;
}
APR_PERMS_SET_ENOTIMPL(shm)
APR_POOL_IMPLEMENT_ACCESSOR(shm)
APR_DECLARE(apr_status_t) apr_os_shm_get(apr_os_shm_t *osshm,
apr_shm_t *shm)
{
*osshm = shm->hMap;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_os_shm_put(apr_shm_t **m,
apr_os_shm_t *osshm,
apr_pool_t *pool)
{
void* base;
base = MapViewOfFile(*osshm, FILE_MAP_READ | FILE_MAP_WRITE, 0, 0, 0);
if (!base) {
return apr_get_os_error();
}
*m = (apr_shm_t *) apr_palloc(pool, sizeof(apr_shm_t));
(*m)->pool = pool;
(*m)->hMap = *osshm;
(*m)->memblk = base;
(*m)->usrmem = (char*)base + sizeof(memblock_t);
/* Real (*m)->mem->size could be recovered with VirtualQuery */
(*m)->size = (*m)->memblk->size;
(*m)->length = (*m)->memblk->length;
(*m)->filename = NULL;
apr_pool_cleanup_register((*m)->pool, *m,
shm_cleanup, apr_pool_cleanup_null);
return APR_SUCCESS;
}