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bson.c
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bson.c
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/**
* Copyright 2009-2014 MongoDB, Inc.
*
* Licensed 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 <php.h>
#include <zend_exceptions.h>
#ifdef WIN32
# include <memory.h>
# ifndef int64_t
typedef __int64 int64_t;
# endif
#endif
#include "php_mongo.h"
#include "bson.h"
#include "types/date.h"
#include "types/id.h"
#include "cursor_shared.h"
#define CHECK_BUFFER_LEN(len) \
do { \
if (buf + (len) >= buf_end) { \
zval_ptr_dtor(&value); \
zend_throw_exception_ex(mongo_ce_CursorException, 21 TSRMLS_CC, "Reading data for type %02x would exceed buffer for key \"%s\"", (unsigned char) type, name); \
return 0; \
} \
} while (0)
extern zend_class_entry *mongo_ce_BinData,
*mongo_ce_Code,
*mongo_ce_Date,
*mongo_ce_Id,
*mongo_ce_Regex,
*mongo_ce_Timestamp,
*mongo_ce_MinKey,
*mongo_ce_MaxKey,
*mongo_ce_Exception,
*mongo_ce_CursorException,
*mongo_ce_Int32,
*mongo_ce_Int64;
ZEND_EXTERN_MODULE_GLOBALS(mongo)
static int prep_obj_for_db(mongo_buffer *buf, HashTable *array TSRMLS_DC);
#if PHP_VERSION_ID >= 50300
static int apply_func_args_wrapper(void **data TSRMLS_DC, int num_args, va_list args, zend_hash_key *key);
#else
static int apply_func_args_wrapper(void **data, int num_args, va_list args, zend_hash_key *key);
#endif
static int is_utf8(const char *s, int len);
static int insert_helper(mongo_buffer *buf, zval *doc, int max TSRMLS_DC);
/* The position is not increased, we are just filling in the first 4 bytes with
* the size. */
int php_mongo_serialize_size(char *start, mongo_buffer *buf, int max_size TSRMLS_DC)
{
int total = MONGO_32((buf->pos - start));
if (buf->pos - start > max_size) {
zend_throw_exception_ex(mongo_ce_Exception, 3 TSRMLS_CC, "document fragment is too large: %d, max: %d", buf->pos - start, max_size);
return FAILURE;
}
memcpy(start, &total, INT_32);
return SUCCESS;
}
static int prep_obj_for_db(mongo_buffer *buf, HashTable *array TSRMLS_DC)
{
zval **data, *newid;
/* if _id field doesn't exist, add it */
if (zend_hash_find(array, "_id", 4, (void**)&data) == FAILURE) {
/* create new MongoId */
MAKE_STD_ZVAL(newid);
object_init_ex(newid, mongo_ce_Id);
php_mongo_mongoid_populate(newid, NULL TSRMLS_CC);
/* add to obj */
zend_hash_add(array, "_id", 4, &newid, sizeof(zval*), NULL);
/* set to data */
data = &newid;
}
php_mongo_serialize_element("_id", 3, data, buf, 0 TSRMLS_CC);
if (EG(exception)) {
return FAILURE;
}
return SUCCESS;
}
/* serialize a zval */
int zval_to_bson(mongo_buffer *buf, HashTable *hash, int prep, int max_document_size TSRMLS_DC)
{
uint start;
int num = 0;
/* check buf size */
if (BUF_REMAINING <= 5) {
resize_buf(buf, 5);
}
/* keep a record of the starting position as an offset, in case the memory
* is resized */
start = buf->pos-buf->start;
/* skip first 4 bytes to leave room for size */
buf->pos += INT_32;
/* It doesn't matter if the document is empty if we need to prep it */
if (zend_hash_num_elements(hash) > 0 || prep) {
if (prep) {
prep_obj_for_db(buf, hash TSRMLS_CC);
num++;
}
#if PHP_VERSION_ID >= 50300
zend_hash_apply_with_arguments(hash TSRMLS_CC, (apply_func_args_t)apply_func_args_wrapper, 3, buf, prep, &num);
#else
zend_hash_apply_with_arguments(hash, (apply_func_args_t)apply_func_args_wrapper, 4, buf, prep, &num TSRMLS_CC);
#endif
}
php_mongo_serialize_null(buf);
php_mongo_serialize_size(buf->start + start, buf, max_document_size TSRMLS_CC);
return EG(exception) ? FAILURE : num;
}
#if PHP_VERSION_ID >= 50300
static int apply_func_args_wrapper(void **data TSRMLS_DC, int num_args, va_list args, zend_hash_key *key)
#else
static int apply_func_args_wrapper(void **data, int num_args, va_list args, zend_hash_key *key)
#endif
{
mongo_buffer *buf = va_arg(args, mongo_buffer*);
int prep = va_arg(args, int);
int *num = va_arg(args, int*);
#if ZTS && PHP_VERSION_ID < 50300
void ***tsrm_ls = va_arg(args, void***);
#endif
if (key->nKeyLength) {
return php_mongo_serialize_element(key->arKey, key->nKeyLength - 1, (zval**)data, buf, prep TSRMLS_CC);
} else {
long current = key->h;
int pos = 29, negative = 0;
char name[30];
/* If the key is a number in ascending order, we're still dealing with
* an array, not an object, so increase the count */
if (key->h == (unsigned int)*num) {
(*num)++;
}
name[pos--] = '\0';
/* take care of negative indexes */
if (current < 0) {
current *= -1;
negative = 1;
}
do {
int digit = current % 10;
digit += (int)'0';
name[pos--] = (char)digit;
current = current / 10;
} while (current > 0);
if (negative) {
name[pos--] = '-';
}
return php_mongo_serialize_element(name + pos + 1, strlen(name + pos + 1), (zval**)data, buf, prep TSRMLS_CC);
}
}
int php_mongo_serialize_element(const char *name, int name_len, zval **data, mongo_buffer *buf, int prep TSRMLS_DC)
{
if (prep && strcmp(name, "_id") == 0) {
return ZEND_HASH_APPLY_KEEP;
}
switch (Z_TYPE_PP(data)) {
case IS_NULL:
PHP_MONGO_SERIALIZE_KEY(BSON_NULL);
break;
case IS_LONG:
if (MonGlo(native_long)) {
#if SIZEOF_LONG == 4
PHP_MONGO_SERIALIZE_KEY(BSON_INT);
php_mongo_serialize_int(buf, Z_LVAL_PP(data));
#else
# if SIZEOF_LONG == 8
PHP_MONGO_SERIALIZE_KEY(BSON_LONG);
php_mongo_serialize_long(buf, Z_LVAL_PP(data));
# else
# error The PHP number size is neither 4 or 8 bytes; no clue what to do with that!
# endif
#endif
} else {
PHP_MONGO_SERIALIZE_KEY(BSON_INT);
php_mongo_serialize_int(buf, Z_LVAL_PP(data));
}
break;
case IS_DOUBLE:
PHP_MONGO_SERIALIZE_KEY(BSON_DOUBLE);
php_mongo_serialize_double(buf, Z_DVAL_PP(data));
break;
case IS_BOOL:
PHP_MONGO_SERIALIZE_KEY(BSON_BOOL);
php_mongo_serialize_bool(buf, Z_BVAL_PP(data));
break;
case IS_STRING: {
PHP_MONGO_SERIALIZE_KEY(BSON_STRING);
/* if this is not a valid string, stop */
if (!is_utf8(Z_STRVAL_PP(data), Z_STRLEN_PP(data))) {
zend_throw_exception_ex(mongo_ce_Exception, 12 TSRMLS_CC, "non-utf8 string: %s", Z_STRVAL_PP(data));
return ZEND_HASH_APPLY_STOP;
}
php_mongo_serialize_int(buf, Z_STRLEN_PP(data) + 1);
php_mongo_serialize_string(buf, Z_STRVAL_PP(data), Z_STRLEN_PP(data));
break;
}
case IS_ARRAY: {
int num;
/* if we realloc, we need an offset, not an abs pos (phew) */
int type_offset = buf->pos-buf->start;
/* serialize */
PHP_MONGO_SERIALIZE_KEY(BSON_ARRAY);
num = zval_to_bson(buf, Z_ARRVAL_PP(data), NO_PREP, MONGO_DEFAULT_MAX_DOCUMENT_SIZE TSRMLS_CC);
if (EG(exception)) {
return ZEND_HASH_APPLY_STOP;
}
/* now go back and set the type bit */
if (num == zend_hash_num_elements(Z_ARRVAL_PP(data))) {
buf->start[type_offset] = BSON_ARRAY;
} else {
buf->start[type_offset] = BSON_OBJECT;
}
break;
}
case IS_OBJECT: {
zend_class_entry *clazz = Z_OBJCE_PP(data);
/* check for defined classes */
/* MongoId */
if (clazz == mongo_ce_Id) {
mongo_id *id;
PHP_MONGO_SERIALIZE_KEY(BSON_OID);
id = (mongo_id*)zend_object_store_get_object(*data TSRMLS_CC);
if (!id->id) {
return ZEND_HASH_APPLY_KEEP;
}
php_mongo_serialize_bytes(buf, id->id, OID_SIZE);
}
/* MongoDate */
else if (clazz == mongo_ce_Date) {
PHP_MONGO_SERIALIZE_KEY(BSON_DATE);
php_mongo_serialize_date(buf, *data TSRMLS_CC);
}
/* MongoRegex */
else if (clazz == mongo_ce_Regex) {
PHP_MONGO_SERIALIZE_KEY(BSON_REGEX);
php_mongo_serialize_regex(buf, *data TSRMLS_CC);
}
/* MongoCode */
else if (clazz == mongo_ce_Code) {
PHP_MONGO_SERIALIZE_KEY(BSON_CODE);
php_mongo_serialize_code(buf, *data TSRMLS_CC);
if (EG(exception)) {
return ZEND_HASH_APPLY_STOP;
}
}
/* MongoBin */
else if (clazz == mongo_ce_BinData) {
PHP_MONGO_SERIALIZE_KEY(BSON_BINARY);
php_mongo_serialize_bin_data(buf, *data TSRMLS_CC);
}
/* MongoTimestamp */
else if (clazz == mongo_ce_Timestamp) {
PHP_MONGO_SERIALIZE_KEY(BSON_TIMESTAMP);
php_mongo_serialize_ts(buf, *data TSRMLS_CC);
}
/* MongoMinKey */
else if (clazz == mongo_ce_MinKey) {
PHP_MONGO_SERIALIZE_KEY(BSON_MINKEY);
}
/* MongoMaxKey */
else if (clazz == mongo_ce_MaxKey) {
PHP_MONGO_SERIALIZE_KEY(BSON_MAXKEY);
}
/* Integer types */
else if (clazz == mongo_ce_Int32) {
PHP_MONGO_SERIALIZE_KEY(BSON_INT);
php_mongo_serialize_int32(buf, *data TSRMLS_CC);
}
else if (clazz == mongo_ce_Int64) {
PHP_MONGO_SERIALIZE_KEY(BSON_LONG);
php_mongo_serialize_int64(buf, *data TSRMLS_CC);
}
/* serialize a normal object */
else {
HashTable *hash = Z_OBJPROP_PP(data);
/* go through the k/v pairs and serialize them */
PHP_MONGO_SERIALIZE_KEY(BSON_OBJECT);
zval_to_bson(buf, hash, NO_PREP, MONGO_DEFAULT_MAX_MESSAGE_SIZE TSRMLS_CC);
if (EG(exception)) {
return ZEND_HASH_APPLY_STOP;
}
}
break;
}
}
return ZEND_HASH_APPLY_KEEP;
}
int resize_buf(mongo_buffer *buf, int size)
{
int total = buf->end - buf->start;
int used = buf->pos - buf->start;
total = total < GROW_SLOWLY ? total*2 : total + INITIAL_BUF_SIZE;
while (total-used < size) {
total += size;
}
buf->start = (char*)erealloc(buf->start, total);
buf->pos = buf->start + used;
buf->end = buf->start + total;
return total;
}
/*
* create a bson date
*
* type: 9
* 8 bytes of ms since the epoch
*/
void php_mongo_serialize_date(mongo_buffer *buf, zval *date TSRMLS_DC)
{
int64_t ms;
zval *sec = zend_read_property(mongo_ce_Date, date, "sec", 3, 0 TSRMLS_CC);
zval *usec = zend_read_property(mongo_ce_Date, date, "usec", 4, 0 TSRMLS_CC);
ms = ((int64_t)Z_LVAL_P(sec) * 1000) + ((int64_t)Z_LVAL_P(usec) / 1000);
php_mongo_serialize_long(buf, ms);
}
/*
* create a bson int from an Int32 object
*/
void php_mongo_serialize_int32(mongo_buffer *buf, zval *data TSRMLS_DC)
{
int value;
zval *zvalue = zend_read_property(mongo_ce_Int32, data, "value", 5, 0 TSRMLS_CC);
value = strtol(Z_STRVAL_P(zvalue), NULL, 10);
php_mongo_serialize_int(buf, value);
}
/*
* create a bson long from an Int64 object
*/
void php_mongo_serialize_int64(mongo_buffer *buf, zval *data TSRMLS_DC)
{
int64_t value;
zval *zvalue = zend_read_property(mongo_ce_Int64, data, "value", 5, 0 TSRMLS_CC);
value = strtoll(Z_STRVAL_P(zvalue), NULL, 10);
php_mongo_serialize_long(buf, value);
}
/*
* create a bson regex
*
* type: 11
* cstring cstring
*/
void php_mongo_serialize_regex(mongo_buffer *buf, zval *regex TSRMLS_DC)
{
zval *z;
z = zend_read_property(mongo_ce_Regex, regex, "regex", 5, 0 TSRMLS_CC);
php_mongo_serialize_string(buf, Z_STRVAL_P(z), Z_STRLEN_P(z));
z = zend_read_property(mongo_ce_Regex, regex, "flags", 5, 0 TSRMLS_CC);
php_mongo_serialize_string(buf, Z_STRVAL_P(z), Z_STRLEN_P(z));
}
/*
* create a bson code with scope
*
* type: 15
* 4 bytes total size
* 4 bytes cstring size + NULL
* cstring
* bson object scope
*/
void php_mongo_serialize_code(mongo_buffer *buf, zval *code TSRMLS_DC)
{
uint start;
zval *zid;
/* save spot for size */
start = buf->pos-buf->start;
buf->pos += INT_32;
zid = zend_read_property(mongo_ce_Code, code, "code", 4, NOISY TSRMLS_CC);
/* string size */
php_mongo_serialize_int(buf, Z_STRLEN_P(zid) + 1);
/* string */
php_mongo_serialize_string(buf, Z_STRVAL_P(zid), Z_STRLEN_P(zid));
/* scope */
zid = zend_read_property(mongo_ce_Code, code, "scope", 5, NOISY TSRMLS_CC);
zval_to_bson(buf, HASH_P(zid), NO_PREP, MONGO_DEFAULT_MAX_MESSAGE_SIZE TSRMLS_CC);
if (EG(exception)) {
return;
}
/* get total size */
php_mongo_serialize_size(buf->start + start, buf, MONGO_DEFAULT_MAX_MESSAGE_SIZE TSRMLS_CC);
}
/*
* create bson binary data
*
* type: 5
* 4 bytes: length of bindata
* 1 byte: bindata type
* bindata
*/
void php_mongo_serialize_bin_data(mongo_buffer *buf, zval *bin TSRMLS_DC)
{
zval *zbin, *ztype;
zbin = zend_read_property(mongo_ce_BinData, bin, "bin", 3, 0 TSRMLS_CC);
ztype = zend_read_property(mongo_ce_BinData, bin, "type", 4, 0 TSRMLS_CC);
/*
* type 2 has the redundant structure:
*
* |------|--|-------==========|
* length 02 length bindata
*
* - 4 bytes: length of bindata (+4 for length below)
* - 1 byte type (0x02)
* - N bytes: 4 bytes of length of the following bindata + bindata
*
* All other types have:
*
* |------|--|==========|
* length bindata
* type
*/
if (Z_LVAL_P(ztype) == 2) {
/* length */
php_mongo_serialize_int(buf, Z_STRLEN_P(zbin) + 4);
/* 02 */
php_mongo_serialize_byte(buf, 2);
/* length */
php_mongo_serialize_int(buf, Z_STRLEN_P(zbin));
} else {
/* length */
php_mongo_serialize_int(buf, Z_STRLEN_P(zbin));
/* type */
php_mongo_serialize_byte(buf, (unsigned char)Z_LVAL_P(ztype));
}
/* bindata */
php_mongo_serialize_bytes(buf, Z_STRVAL_P(zbin), Z_STRLEN_P(zbin));
}
/*
* create bson timestamp
*
* type: 17
* 4 bytes seconds since epoch
* 4 bytes increment
*/
void php_mongo_serialize_ts(mongo_buffer *buf, zval *time TSRMLS_DC)
{
zval *ts, *inc;
ts = zend_read_property(mongo_ce_Timestamp, time, "sec", strlen("sec"), NOISY TSRMLS_CC);
inc = zend_read_property(mongo_ce_Timestamp, time, "inc", strlen("inc"), NOISY TSRMLS_CC);
php_mongo_serialize_int(buf, Z_LVAL_P(inc));
php_mongo_serialize_int(buf, Z_LVAL_P(ts));
}
void php_mongo_serialize_byte(mongo_buffer *buf, char b)
{
if (BUF_REMAINING <= 1) {
resize_buf(buf, 1);
}
*(buf->pos) = b;
buf->pos += 1;
}
void php_mongo_serialize_bytes(mongo_buffer *buf, char *str, int str_len)
{
if (BUF_REMAINING <= str_len) {
resize_buf(buf, str_len);
}
memcpy(buf->pos, str, str_len);
buf->pos += str_len;
}
void php_mongo_serialize_string(mongo_buffer *buf, char *str, int str_len)
{
if (BUF_REMAINING <= str_len + 1) {
resize_buf(buf, str_len + 1);
}
memcpy(buf->pos, str, str_len);
/* add \0 at the end of the string */
buf->pos[str_len] = 0;
buf->pos += str_len + 1;
}
void php_mongo_serialize_int(mongo_buffer *buf, int num)
{
int i = MONGO_32(num);
if (BUF_REMAINING <= INT_32) {
resize_buf(buf, INT_32);
}
memcpy(buf->pos, &i, INT_32);
buf->pos += INT_32;
}
void php_mongo_serialize_long(mongo_buffer *buf, int64_t num)
{
int64_t i = MONGO_64(num);
if (BUF_REMAINING <= INT_64) {
resize_buf(buf, INT_64);
}
memcpy(buf->pos, &i, INT_64);
buf->pos += INT_64;
}
void php_mongo_serialize_double(mongo_buffer *buf, double num)
{
int64_t dest, *dest_p;
dest_p = &dest;
memcpy(dest_p, &num, 8);
dest = MONGO_64(dest);
if (BUF_REMAINING <= INT_64) {
resize_buf(buf, INT_64);
}
memcpy(buf->pos, dest_p, DOUBLE_64);
buf->pos += DOUBLE_64;
}
/*
* prep == true
* we are inserting, so keys can't have .'s in them
*/
void php_mongo_serialize_key(mongo_buffer *buf, const char *str, int str_len, int prep TSRMLS_DC)
{
if (str[0] == '\0' && !MonGlo(allow_empty_keys)) {
zend_throw_exception_ex(mongo_ce_Exception, 1 TSRMLS_CC, "zero-length keys are not allowed, did you use $ with double quotes?");
return;
}
if (BUF_REMAINING <= str_len + 1) {
resize_buf(buf, str_len + 1);
}
if (memchr(str, '\0', str_len) != NULL) {
zend_throw_exception_ex(mongo_ce_Exception, 2 TSRMLS_CC, "'\\0' not allowed in key: %s\\0...", str);
return;
}
if (prep && (strchr(str, '.') != 0)) {
zend_throw_exception_ex(mongo_ce_Exception, 2 TSRMLS_CC, "'.' not allowed in key: %s", str);
return;
}
if (MonGlo(cmd_char) && strchr(str, MonGlo(cmd_char)[0]) == str) {
*(buf->pos) = '$';
memcpy(buf->pos + 1, str + 1, str_len-1);
} else {
memcpy(buf->pos, str, str_len);
}
/* add \0 at the end of the string */
buf->pos[str_len] = 0;
buf->pos += str_len + 1;
}
/*
* replaces collection names starting with MonGlo(cmd_char)
* with the '$' character.
*
* TODO: this doesn't handle main.$oplog-type situations (if
* MonGlo(cmd_char) is set)
*/
void php_mongo_serialize_ns(mongo_buffer *buf, char *str TSRMLS_DC)
{
char *collection = strchr(str, '.') + 1;
if (BUF_REMAINING <= (int)strlen(str) + 1) {
resize_buf(buf, strlen(str) + 1);
}
if (MonGlo(cmd_char) && strchr(collection, MonGlo(cmd_char)[0]) == collection) {
memcpy(buf->pos, str, collection-str);
buf->pos += collection-str;
*(buf->pos) = '$';
memcpy(buf->pos + 1, collection + 1, strlen(collection)-1);
buf->pos[strlen(collection)] = 0;
buf->pos += strlen(collection) + 1;
} else {
memcpy(buf->pos, str, strlen(str));
buf->pos[strlen(str)] = 0;
buf->pos += strlen(str) + 1;
}
}
/* Returns:
* 0 on success,
* -1 when an exception in zval_to_bson was thrown
* -3 when a fragment or document was too large
* An exception is also thrown when the return value is not 0 */
static int insert_helper(mongo_buffer *buf, zval *doc, int max_document_size TSRMLS_DC)
{
int start = buf->pos - buf->start;
int result = zval_to_bson(buf, HASH_P(doc), PREP, max_document_size TSRMLS_CC);
/* throw exception if serialization crapped out */
if (EG(exception) || FAILURE == result) {
return -1;
}
/* throw an exception if the doc was too big */
if (buf->pos - (buf->start + start) > max_document_size) {
zend_throw_exception_ex(mongo_ce_Exception, 5 TSRMLS_CC, "size of BSON doc is %d bytes, max is %d", buf->pos - (buf->start + start), max_document_size);
return -3;
}
return (php_mongo_serialize_size(buf->start + start, buf, max_document_size TSRMLS_CC) == SUCCESS) ? 0 : -3;
}
int php_mongo_write_insert(mongo_buffer *buf, char *ns, zval *doc, int max_document_size, int max_message_size TSRMLS_DC)
{
mongo_msg_header header;
int start = buf->pos - buf->start;
CREATE_HEADER(buf, ns, OP_INSERT);
if (insert_helper(buf, doc, max_document_size TSRMLS_CC) != 0) {
return FAILURE;
}
return php_mongo_serialize_size(buf->start + start, buf, max_message_size TSRMLS_CC);
}
int php_mongo_write_batch_insert(mongo_buffer *buf, char *ns, int flags, zval *docs, int max_document_size, int max_message_size TSRMLS_DC)
{
int start = buf->pos - buf->start, count = 0;
HashPosition pointer;
zval **doc;
mongo_msg_header header;
CREATE_HEADER_WITH_OPTS(buf, ns, OP_INSERT, flags);
for (
zend_hash_internal_pointer_reset_ex(HASH_P(docs), &pointer);
zend_hash_get_current_data_ex(HASH_P(docs), (void**)&doc, &pointer) == SUCCESS;
zend_hash_move_forward_ex(HASH_P(docs), &pointer)
) {
if (IS_SCALAR_PP(doc)) {
continue;
}
if (insert_helper(buf, *doc, max_document_size TSRMLS_CC) != 0) {
/* An exception has already been thrown */
return FAILURE;
}
if (buf->pos - buf->start >= max_message_size) {
zend_throw_exception_ex(mongo_ce_Exception, 5 TSRMLS_CC, "current batch size is too large: %d, max: %d", buf->pos - buf->start, max_message_size);
return FAILURE;
}
count++;
}
/* this is a hard limit in the db server (util/messages.cpp) */
if (buf->pos - (buf->start + start) > max_message_size) {
zend_throw_exception_ex(mongo_ce_Exception, 3 TSRMLS_CC, "insert too large: %d, max: %d", buf->pos - (buf->start + start), max_message_size);
return FAILURE;
}
if (php_mongo_serialize_size(buf->start + start, buf, max_message_size TSRMLS_CC) == FAILURE) {
return FAILURE;
}
return count;
}
int php_mongo_write_update(mongo_buffer *buf, char *ns, int flags, zval *criteria, zval *newobj, int max_document_size, int max_message_size TSRMLS_DC)
{
mongo_msg_header header;
int start = buf->pos - buf->start;
CREATE_HEADER(buf, ns, OP_UPDATE);
php_mongo_serialize_int(buf, flags);
if (
zval_to_bson(buf, HASH_P(criteria), NO_PREP, max_document_size TSRMLS_CC) == FAILURE ||
EG(exception) ||
zval_to_bson(buf, HASH_P(newobj), NO_PREP, max_document_size TSRMLS_CC) == FAILURE ||
EG(exception) /* Having this twice does make sense, as zval_to_bson can thrown an exception */
) {
return FAILURE;
}
return php_mongo_serialize_size(buf->start + start, buf, max_message_size TSRMLS_CC);
}
int php_mongo_write_delete(mongo_buffer *buf, char *ns, int flags, zval *criteria, int max_document_size, int max_message_size TSRMLS_DC)
{
mongo_msg_header header;
int start = buf->pos - buf->start;
CREATE_HEADER(buf, ns, OP_DELETE);
php_mongo_serialize_int(buf, flags);
if (zval_to_bson(buf, HASH_P(criteria), NO_PREP, max_document_size TSRMLS_CC) == FAILURE || EG(exception)) {
return FAILURE;
}
return php_mongo_serialize_size(buf->start + start, buf, max_message_size TSRMLS_CC);
}
/*
* Creates a query string in buf.
*
* The following fields of cursor are used:
* - ns
* - opts
* - skip
* - limit
* - query
* - fields
*
*/
int php_mongo_write_query(mongo_buffer *buf, mongo_cursor *cursor, int max_document_size, int max_message_size TSRMLS_DC)
{
mongo_msg_header header;
int start = buf->pos - buf->start;
CREATE_HEADER_WITH_OPTS(buf, cursor->ns, OP_QUERY, cursor->opts);
cursor->send.request_id = header.request_id;
php_mongo_serialize_int(buf, cursor->skip);
php_mongo_serialize_int(buf, php_mongo_calculate_next_request_limit(cursor));
if (zval_to_bson(buf, HASH_P(cursor->query), NO_PREP, max_document_size TSRMLS_CC) == FAILURE || EG(exception)) {
return FAILURE;
}
if (cursor->fields && zend_hash_num_elements(HASH_P(cursor->fields)) > 0) {
if (zval_to_bson(buf, HASH_P(cursor->fields), NO_PREP, max_document_size TSRMLS_CC) == FAILURE || EG(exception)) {
return FAILURE;
}
}
return php_mongo_serialize_size(buf->start + start, buf, max_message_size TSRMLS_CC);
}
int php_mongo_write_kill_cursors(mongo_buffer *buf, int64_t cursor_id, int max_message_size TSRMLS_DC)
{
mongo_msg_header header;
CREATE_MSG_HEADER(MonGlo(request_id)++, 0, OP_KILL_CURSORS);
APPEND_HEADER(buf, 0);
/* # of cursors */
php_mongo_serialize_int(buf, 1);
/* cursor ids */
php_mongo_serialize_long(buf, cursor_id);
return php_mongo_serialize_size(buf->start, buf, max_message_size TSRMLS_CC);
}
/*
* Creates a GET_MORE request
*
* The following fields of cursor are used:
* - ns
* - recv.request_id
* - limit
* - cursor_id
*/
int php_mongo_write_get_more(mongo_buffer *buf, mongo_cursor *cursor TSRMLS_DC)
{
mongo_msg_header header;
int start = buf->pos - buf->start;
CREATE_RESPONSE_HEADER(buf, cursor->ns, cursor->recv.request_id, OP_GET_MORE);
cursor->send.request_id = header.request_id;
php_mongo_serialize_int(buf, php_mongo_calculate_next_request_limit(cursor));
php_mongo_serialize_long(buf, cursor->cursor_id);
return php_mongo_serialize_size(buf->start + start, buf, cursor->connection->max_message_size TSRMLS_CC);
}
char* bson_to_zval(char *buf, HashTable *result, mongo_bson_conversion_options *options TSRMLS_DC)
{
/* buf_start is used for debugging
*
* If the deserializer runs into bson it can't parse, it will dump the
* bytes to that point.
*
* We lose buf's position as we iterate, so we need buf_start to save it. */
char *buf_start = buf, *buf_end;
unsigned char type;
if (buf == 0) {
return 0;
}
buf_end = buf + MONGO_32(*((int*)buf));
/* for size */
buf += INT_32;
while ((type = *buf++) != 0) {
char *name;
zval *value;
name = buf;
/* get past field name */
buf += strlen(buf) + 1;
MAKE_STD_ZVAL(value);
ZVAL_NULL(value);
/* get value */
switch (type) {
case BSON_OID: {
mongo_id *this_id;
char *tmp_id;
zval *str = 0;
CHECK_BUFFER_LEN(OID_SIZE);
object_init_ex(value, mongo_ce_Id);
this_id = (mongo_id*)zend_object_store_get_object(value TSRMLS_CC);
this_id->id = estrndup(buf, OID_SIZE);
MAKE_STD_ZVAL(str);
tmp_id = php_mongo_mongoid_to_hex(this_id->id);
ZVAL_STRING(str, tmp_id, 0);
zend_update_property(mongo_ce_Id, value, "$id", strlen("$id"), str TSRMLS_CC);
zval_ptr_dtor(&str);
buf += OID_SIZE;
break;
}
case BSON_DOUBLE: {
double d;
int64_t i, *i_p;
CHECK_BUFFER_LEN(DOUBLE_64);
d = *(double*)buf;
i_p = &i;
memcpy(i_p, &d, DOUBLE_64);
i = MONGO_64(i);
memcpy(&d, i_p, DOUBLE_64);
ZVAL_DOUBLE(value, d);
buf += DOUBLE_64;
break;
}
case BSON_SYMBOL:
case BSON_STRING: {
int len;
CHECK_BUFFER_LEN(INT_32);
len = MONGO_32(*((int*)buf));
buf += INT_32;
/* len includes \0 */
if (len < 1) {
zval_ptr_dtor(&value);
zend_throw_exception_ex(mongo_ce_CursorException, 21 TSRMLS_CC, "invalid string length for key \"%s\": %d", name, len);
return 0;
}
CHECK_BUFFER_LEN(len);
ZVAL_STRINGL(value, buf, len-1, 1);
buf += len;
break;
}
case BSON_OBJECT:
case BSON_ARRAY: {
array_init(value);
/* These two if statements make sure that the cmd_cursor_as_int64 flag only
* survives if previous conditions are also met. The check on level 0 is for
* command cursors (the "cursor" check) and for parallelCollectionScan (the
* "cursors" check). The check on level 2 is again only for
* parallelCollectionScan. The _id values as returned for command cursors and
* parallelCollectionScan have to be a MongoInt64() due to 32-bit platform
* wonkyness */
if (options && options->flag_cmd_cursor_as_int64 && options->level == 0 && strcmp(name, "cursor") != 0 && strcmp(name, "cursors") != 0) {
options->flag_cmd_cursor_as_int64 = 0;
}
if (options && options->flag_cmd_cursor_as_int64 && options->level == 2 && strcmp(name, "cursor") != 0) {
options->flag_cmd_cursor_as_int64 = 0;
}
if (options) {
options->level++;
}
buf = bson_to_zval(buf, Z_ARRVAL_P(value), options TSRMLS_CC);
if (options) {
options->level--;
}
if (EG(exception)) {
zval_ptr_dtor(&value);
return 0;
}
break;
}
case BSON_BINARY: {
unsigned char subtype;
int len;
CHECK_BUFFER_LEN(INT_32);
len = MONGO_32(*(int*)buf);
buf += INT_32;
CHECK_BUFFER_LEN(BYTE_8);
subtype = *buf++;
/* If the subtype is 2, check if the binary data is prefixed by
* its length.
*
* There is an infinitesimally small chance that the first four
* bytes will happen to be the length of the rest of the
* string. In this case, the data will be corrupted. */
if ((int)subtype == 2) {
int len2;