idx int64 | func_before string | Vulnerability Classification string | vul int64 | func_after string | patch string | CWE ID string | lines_before string | lines_after string |
|---|---|---|---|---|---|---|---|---|
40,100 | archive_read_set_seek_callback(struct archive *_a,
archive_seek_callback *client_seeker)
{
struct archive_read *a = (struct archive_read *)_a;
archive_check_magic(_a, ARCHIVE_READ_MAGIC, ARCHIVE_STATE_NEW,
"archive_read_set_seek_callback");
a->client.seeker = client_seeker;
return ARCHIVE_OK;
}
| DoS | 0 | archive_read_set_seek_callback(struct archive *_a,
archive_seek_callback *client_seeker)
{
struct archive_read *a = (struct archive_read *)_a;
archive_check_magic(_a, ARCHIVE_READ_MAGIC, ARCHIVE_STATE_NEW,
"archive_read_set_seek_callback");
a->client.seeker = client_seeker;
return ARCHIVE_OK;
}
| @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,101 | archive_read_set_skip_callback(struct archive *_a,
archive_skip_callback *client_skipper)
{
struct archive_read *a = (struct archive_read *)_a;
archive_check_magic(_a, ARCHIVE_READ_MAGIC, ARCHIVE_STATE_NEW,
"archive_read_set_skip_callback");
a->client.skipper = client_skipper;
return ARCHIVE_OK;
}
| DoS | 0 | archive_read_set_skip_callback(struct archive *_a,
archive_skip_callback *client_skipper)
{
struct archive_read *a = (struct archive_read *)_a;
archive_check_magic(_a, ARCHIVE_READ_MAGIC, ARCHIVE_STATE_NEW,
"archive_read_set_skip_callback");
a->client.skipper = client_skipper;
return ARCHIVE_OK;
}
| @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,102 | archive_read_set_switch_callback(struct archive *_a,
archive_switch_callback *client_switcher)
{
struct archive_read *a = (struct archive_read *)_a;
archive_check_magic(_a, ARCHIVE_READ_MAGIC, ARCHIVE_STATE_NEW,
"archive_read_set_switch_callback");
a->client.switcher = client_switcher;
return ARCHIVE_OK;
}... | DoS | 0 | archive_read_set_switch_callback(struct archive *_a,
archive_switch_callback *client_switcher)
{
struct archive_read *a = (struct archive_read *)_a;
archive_check_magic(_a, ARCHIVE_READ_MAGIC, ARCHIVE_STATE_NEW,
"archive_read_set_switch_callback");
a->client.switcher = client_switcher;
return ARCHIVE_OK;
}... | @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,103 | archive_read_vtable(void)
{
static struct archive_vtable av;
static int inited = 0;
if (!inited) {
av.archive_filter_bytes = _archive_filter_bytes;
av.archive_filter_code = _archive_filter_code;
av.archive_filter_name = _archive_filter_name;
av.archive_filter_count = _archive_filter_count;
av.archive_read... | DoS | 0 | archive_read_vtable(void)
{
static struct archive_vtable av;
static int inited = 0;
if (!inited) {
av.archive_filter_bytes = _archive_filter_bytes;
av.archive_filter_code = _archive_filter_code;
av.archive_filter_name = _archive_filter_name;
av.archive_filter_count = _archive_filter_count;
av.archive_read... | @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,104 | choose_format(struct archive_read *a)
{
int slots;
int i;
int bid, best_bid;
int best_bid_slot;
slots = sizeof(a->formats) / sizeof(a->formats[0]);
best_bid = -1;
best_bid_slot = -1;
/* Set up a->format for convenience of bidders. */
a->format = &(a->formats[0]);
for (i = 0; i < slots; i++, a->format++) {
... | DoS | 0 | choose_format(struct archive_read *a)
{
int slots;
int i;
int bid, best_bid;
int best_bid_slot;
slots = sizeof(a->formats) / sizeof(a->formats[0]);
best_bid = -1;
best_bid_slot = -1;
/* Set up a->format for convenience of bidders. */
a->format = &(a->formats[0]);
for (i = 0; i < slots; i++, a->format++) {
... | @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,105 | client_close_proxy(struct archive_read_filter *self)
{
int r = ARCHIVE_OK, r2;
unsigned int i;
if (self->archive->client.closer == NULL)
return (r);
for (i = 0; i < self->archive->client.nodes; i++)
{
r2 = (self->archive->client.closer)
((struct archive *)self->archive,
self->archive->client.dataset[i]... | DoS | 0 | client_close_proxy(struct archive_read_filter *self)
{
int r = ARCHIVE_OK, r2;
unsigned int i;
if (self->archive->client.closer == NULL)
return (r);
for (i = 0; i < self->archive->client.nodes; i++)
{
r2 = (self->archive->client.closer)
((struct archive *)self->archive,
self->archive->client.dataset[i]... | @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,106 | client_open_proxy(struct archive_read_filter *self)
{
int r = ARCHIVE_OK;
if (self->archive->client.opener != NULL)
r = (self->archive->client.opener)(
(struct archive *)self->archive, self->data);
return (r);
}
| DoS | 0 | client_open_proxy(struct archive_read_filter *self)
{
int r = ARCHIVE_OK;
if (self->archive->client.opener != NULL)
r = (self->archive->client.opener)(
(struct archive *)self->archive, self->data);
return (r);
}
| @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,107 | client_read_proxy(struct archive_read_filter *self, const void **buff)
{
ssize_t r;
r = (self->archive->client.reader)(&self->archive->archive,
self->data, buff);
return (r);
}
| DoS | 0 | client_read_proxy(struct archive_read_filter *self, const void **buff)
{
ssize_t r;
r = (self->archive->client.reader)(&self->archive->archive,
self->data, buff);
return (r);
}
| @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,108 | client_seek_proxy(struct archive_read_filter *self, int64_t offset, int whence)
{
/* DO NOT use the skipper here! If we transparently handled
* forward seek here by using the skipper, that will break
* other libarchive code that assumes a successful forward
* seek means it can also seek backwards.
*/
if (sel... | DoS | 0 | client_seek_proxy(struct archive_read_filter *self, int64_t offset, int whence)
{
/* DO NOT use the skipper here! If we transparently handled
* forward seek here by using the skipper, that will break
* other libarchive code that assumes a successful forward
* seek means it can also seek backwards.
*/
if (sel... | @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,109 | client_skip_proxy(struct archive_read_filter *self, int64_t request)
{
if (request < 0)
__archive_errx(1, "Negative skip requested.");
if (request == 0)
return 0;
if (self->archive->client.skipper != NULL) {
/* Seek requests over 1GiB are broken down into
* multiple seeks. This avoids overflows when the
... | DoS | 0 | client_skip_proxy(struct archive_read_filter *self, int64_t request)
{
if (request < 0)
__archive_errx(1, "Negative skip requested.");
if (request == 0)
return 0;
if (self->archive->client.skipper != NULL) {
/* Seek requests over 1GiB are broken down into
* multiple seeks. This avoids overflows when the
... | @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,110 | client_switch_proxy(struct archive_read_filter *self, unsigned int iindex)
{
int r1 = ARCHIVE_OK, r2 = ARCHIVE_OK;
void *data2 = NULL;
/* Don't do anything if already in the specified data node */
if (self->archive->client.cursor == iindex)
return (ARCHIVE_OK);
self->archive->client.cursor = iindex;
data2 = ... | DoS | 0 | client_switch_proxy(struct archive_read_filter *self, unsigned int iindex)
{
int r1 = ARCHIVE_OK, r2 = ARCHIVE_OK;
void *data2 = NULL;
/* Don't do anything if already in the specified data node */
if (self->archive->client.cursor == iindex)
return (ARCHIVE_OK);
self->archive->client.cursor = iindex;
data2 = ... | @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,111 | get_filter(struct archive *_a, int n)
{
struct archive_read *a = (struct archive_read *)_a;
struct archive_read_filter *f = a->filter;
/* We use n == -1 for 'the last filter', which is always the
* client proxy. */
if (n == -1 && f != NULL) {
struct archive_read_filter *last = f;
f = f->upstream;
while (f !... | DoS | 0 | get_filter(struct archive *_a, int n)
{
struct archive_read *a = (struct archive_read *)_a;
struct archive_read_filter *f = a->filter;
/* We use n == -1 for 'the last filter', which is always the
* client proxy. */
if (n == -1 && f != NULL) {
struct archive_read_filter *last = f;
f = f->upstream;
while (f !... | @@ -548,13 +548,13 @@ archive_read_open1(struct archive *_a)
static int
choose_filters(struct archive_read *a)
{
- int number_bidders, i, bid, best_bid;
+ int number_bidders, i, bid, best_bid, n;
struct archive_read_filter_bidder *bidder, *best_bidder;
struct archive_read_filter *filter;
ssize_t avail;
int r... | CWE-399 | null | null |
40,112 | static void opj_get_all_encoding_parameters( const opj_image_t *p_image,
const opj_cp_t *p_cp,
OPJ_UINT32 tileno,
OPJ_INT32 * p_tx0,
OPJ_INT32 * p_tx1,
... | Exec Code Overflow | 0 | static void opj_get_all_encoding_parameters( const opj_image_t *p_image,
const opj_cp_t *p_cp,
OPJ_UINT32 tileno,
OPJ_INT32 * p_tx0,
OPJ_INT32 * p_tx1,
... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,113 | static OPJ_BOOL opj_pi_check_next_level( OPJ_INT32 pos,
opj_cp_t *cp,
OPJ_UINT32 tileno,
OPJ_UINT32 pino,
const OPJ_CHAR *prog)
{
OPJ_INT32 i;
opj_tcp_t *tcps =&cp->tcps[tileno];
opj_poc_t *tcp = &tcps->pocs[pino];
if(pos>=0){
for(i=pos;pos>=0;i--){
switch(prog[i]){
case ... | Exec Code Overflow | 0 | static OPJ_BOOL opj_pi_check_next_level( OPJ_INT32 pos,
opj_cp_t *cp,
OPJ_UINT32 tileno,
OPJ_UINT32 pino,
const OPJ_CHAR *prog)
{
OPJ_INT32 i;
opj_tcp_t *tcps =&cp->tcps[tileno];
opj_poc_t *tcp = &tcps->pocs[pino];
if(pos>=0){
for(i=pos;pos>=0;i--){
switch(prog[i]){
case ... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,114 | static opj_pi_iterator_t * opj_pi_create( const opj_image_t *image,
const opj_cp_t *cp,
OPJ_UINT32 tileno )
{
/* loop*/
OPJ_UINT32 pino, compno;
/* number of poc in the p_pi*/
OPJ_UINT32 l_poc_bound;
/* pointers to tile coding parameters and ... | Exec Code Overflow | 0 | static opj_pi_iterator_t * opj_pi_create( const opj_image_t *image,
const opj_cp_t *cp,
OPJ_UINT32 tileno )
{
/* loop*/
OPJ_UINT32 pino, compno;
/* number of poc in the p_pi*/
OPJ_UINT32 l_poc_bound;
/* pointers to tile coding parameters and ... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,115 | void opj_pi_create_encode( opj_pi_iterator_t *pi,
opj_cp_t *cp,
OPJ_UINT32 tileno,
OPJ_UINT32 pino,
OPJ_UINT32 tpnum,
OPJ_INT32 tppos,
J2K_T2_MODE t2_mode)
{
const OPJ_CHAR *prog;
OPJ_INT32 i;
OPJ_UINT32 incr_top=1,resetX=0;
opj_tcp_t *tcps =&cp->tcps[tileno];
opj_poc_t *... | Exec Code Overflow | 0 | void opj_pi_create_encode( opj_pi_iterator_t *pi,
opj_cp_t *cp,
OPJ_UINT32 tileno,
OPJ_UINT32 pino,
OPJ_UINT32 tpnum,
OPJ_INT32 tppos,
J2K_T2_MODE t2_mode)
{
const OPJ_CHAR *prog;
OPJ_INT32 i;
OPJ_UINT32 incr_top=1,resetX=0;
opj_tcp_t *tcps =&cp->tcps[tileno];
opj_poc_t *... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,116 | void opj_pi_destroy(opj_pi_iterator_t *p_pi,
OPJ_UINT32 p_nb_elements)
{
OPJ_UINT32 compno, pino;
opj_pi_iterator_t *l_current_pi = p_pi;
if (p_pi) {
if (p_pi->include) {
opj_free(p_pi->include);
p_pi->include = 00;
}
for (pino = 0; pino < p_nb_elements; ++pino){
if(l_current_pi... | Exec Code Overflow | 0 | void opj_pi_destroy(opj_pi_iterator_t *p_pi,
OPJ_UINT32 p_nb_elements)
{
OPJ_UINT32 compno, pino;
opj_pi_iterator_t *l_current_pi = p_pi;
if (p_pi) {
if (p_pi->include) {
opj_free(p_pi->include);
p_pi->include = 00;
}
for (pino = 0; pino < p_nb_elements; ++pino){
if(l_current_pi... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,117 | opj_pi_iterator_t *opj_pi_initialise_encode(const opj_image_t *p_image,
opj_cp_t *p_cp,
OPJ_UINT32 p_tile_no,
J2K_T2_MODE p_t2_mode )
{
/* loop*/
OPJ_UINT32 pino;
OPJ_UINT32 compno, res... | Exec Code Overflow | 0 | opj_pi_iterator_t *opj_pi_initialise_encode(const opj_image_t *p_image,
opj_cp_t *p_cp,
OPJ_UINT32 p_tile_no,
J2K_T2_MODE p_t2_mode )
{
/* loop*/
OPJ_UINT32 pino;
OPJ_UINT32 compno, res... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,118 | OPJ_BOOL opj_pi_next(opj_pi_iterator_t * pi) {
switch (pi->poc.prg) {
case OPJ_LRCP:
return opj_pi_next_lrcp(pi);
case OPJ_RLCP:
return opj_pi_next_rlcp(pi);
case OPJ_RPCL:
return opj_pi_next_rpcl(pi);
case OPJ_PCRL:
return opj_pi_next_pcrl(pi);
case OPJ_CPRL:
return opj_pi_next_cprl(pi);
ca... | Exec Code Overflow | 0 | OPJ_BOOL opj_pi_next(opj_pi_iterator_t * pi) {
switch (pi->poc.prg) {
case OPJ_LRCP:
return opj_pi_next_lrcp(pi);
case OPJ_RLCP:
return opj_pi_next_rlcp(pi);
case OPJ_RPCL:
return opj_pi_next_rpcl(pi);
case OPJ_PCRL:
return opj_pi_next_pcrl(pi);
case OPJ_CPRL:
return opj_pi_next_cprl(pi);
ca... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,119 | static OPJ_BOOL opj_pi_next_lrcp(opj_pi_iterator_t * pi) {
opj_pi_comp_t *comp = NULL;
opj_pi_resolution_t *res = NULL;
OPJ_UINT32 index = 0;
if (!pi->first) {
comp = &pi->comps[pi->compno];
res = &comp->resolutions[pi->resno];
goto LABEL_SKIP;
} else {
pi->first = 0;
}
for (pi->layno = pi->poc.layno0... | Exec Code Overflow | 0 | static OPJ_BOOL opj_pi_next_lrcp(opj_pi_iterator_t * pi) {
opj_pi_comp_t *comp = NULL;
opj_pi_resolution_t *res = NULL;
OPJ_UINT32 index = 0;
if (!pi->first) {
comp = &pi->comps[pi->compno];
res = &comp->resolutions[pi->resno];
goto LABEL_SKIP;
} else {
pi->first = 0;
}
for (pi->layno = pi->poc.layno0... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,120 | static OPJ_BOOL opj_pi_next_pcrl(opj_pi_iterator_t * pi) {
opj_pi_comp_t *comp = NULL;
opj_pi_resolution_t *res = NULL;
OPJ_UINT32 index = 0;
if (!pi->first) {
comp = &pi->comps[pi->compno];
goto LABEL_SKIP;
} else {
OPJ_UINT32 compno, resno;
pi->first = 0;
pi->dx = 0;
pi->dy = 0;
for (compno = 0; c... | Exec Code Overflow | 0 | static OPJ_BOOL opj_pi_next_pcrl(opj_pi_iterator_t * pi) {
opj_pi_comp_t *comp = NULL;
opj_pi_resolution_t *res = NULL;
OPJ_UINT32 index = 0;
if (!pi->first) {
comp = &pi->comps[pi->compno];
goto LABEL_SKIP;
} else {
OPJ_UINT32 compno, resno;
pi->first = 0;
pi->dx = 0;
pi->dy = 0;
for (compno = 0; c... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,121 | static OPJ_BOOL opj_pi_next_rlcp(opj_pi_iterator_t * pi) {
opj_pi_comp_t *comp = NULL;
opj_pi_resolution_t *res = NULL;
OPJ_UINT32 index = 0;
if (!pi->first) {
comp = &pi->comps[pi->compno];
res = &comp->resolutions[pi->resno];
goto LABEL_SKIP;
} else {
pi->first = 0;
}
for (pi->resno = pi->poc.resno0;... | Exec Code Overflow | 0 | static OPJ_BOOL opj_pi_next_rlcp(opj_pi_iterator_t * pi) {
opj_pi_comp_t *comp = NULL;
opj_pi_resolution_t *res = NULL;
OPJ_UINT32 index = 0;
if (!pi->first) {
comp = &pi->comps[pi->compno];
res = &comp->resolutions[pi->resno];
goto LABEL_SKIP;
} else {
pi->first = 0;
}
for (pi->resno = pi->poc.resno0;... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,122 | static OPJ_BOOL opj_pi_next_rpcl(opj_pi_iterator_t * pi) {
opj_pi_comp_t *comp = NULL;
opj_pi_resolution_t *res = NULL;
OPJ_UINT32 index = 0;
if (!pi->first) {
goto LABEL_SKIP;
} else {
OPJ_UINT32 compno, resno;
pi->first = 0;
pi->dx = 0;
pi->dy = 0;
for (compno = 0; compno < pi->numcomps; compno++) {... | Exec Code Overflow | 0 | static OPJ_BOOL opj_pi_next_rpcl(opj_pi_iterator_t * pi) {
opj_pi_comp_t *comp = NULL;
opj_pi_resolution_t *res = NULL;
OPJ_UINT32 index = 0;
if (!pi->first) {
goto LABEL_SKIP;
} else {
OPJ_UINT32 compno, resno;
pi->first = 0;
pi->dx = 0;
pi->dy = 0;
for (compno = 0; compno < pi->numcomps; compno++) {... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,123 | static void opj_pi_update_decode_not_poc (opj_pi_iterator_t * p_pi,
opj_tcp_t * p_tcp,
OPJ_UINT32 p_max_precision,
OPJ_UINT32 p_max_res)
{
/* loop*/
OPJ_UINT32 pino;
/* encoding prameters to set*/
OPJ_UINT32 l_... | Exec Code Overflow | 0 | static void opj_pi_update_decode_not_poc (opj_pi_iterator_t * p_pi,
opj_tcp_t * p_tcp,
OPJ_UINT32 p_max_precision,
OPJ_UINT32 p_max_res)
{
/* loop*/
OPJ_UINT32 pino;
/* encoding prameters to set*/
OPJ_UINT32 l_... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,124 | static void opj_pi_update_decode_poc (opj_pi_iterator_t * p_pi,
opj_tcp_t * p_tcp,
OPJ_UINT32 p_max_precision,
OPJ_UINT32 p_max_res)
{
/* loop*/
OPJ_UINT32 pino;
/* encoding prameters to set*/
OPJ_UINT32 l_bound;
opj_pi_... | Exec Code Overflow | 0 | static void opj_pi_update_decode_poc (opj_pi_iterator_t * p_pi,
opj_tcp_t * p_tcp,
OPJ_UINT32 p_max_precision,
OPJ_UINT32 p_max_res)
{
/* loop*/
OPJ_UINT32 pino;
/* encoding prameters to set*/
OPJ_UINT32 l_bound;
opj_pi_... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,125 | static void opj_pi_update_encode_poc_and_final ( opj_cp_t *p_cp,
OPJ_UINT32 p_tileno,
OPJ_INT32 p_tx0,
OPJ_INT32 p_tx1,
OPJ_INT32 p_ty0,
... | Exec Code Overflow | 0 | static void opj_pi_update_encode_poc_and_final ( opj_cp_t *p_cp,
OPJ_UINT32 p_tileno,
OPJ_INT32 p_tx0,
OPJ_INT32 p_tx1,
OPJ_INT32 p_ty0,
... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,126 | void opj_pi_update_encoding_parameters( const opj_image_t *p_image,
opj_cp_t *p_cp,
OPJ_UINT32 p_tile_no )
{
/* encoding parameters to set */
OPJ_UINT32 l_max_res;
OPJ_UINT32 l_max_prec;
OPJ_INT32 l_tx0,l_tx1,l_ty0,l_ty1;
OPJ_UINT32 l_... | Exec Code Overflow | 0 | void opj_pi_update_encoding_parameters( const opj_image_t *p_image,
opj_cp_t *p_cp,
OPJ_UINT32 p_tile_no )
{
/* encoding parameters to set */
OPJ_UINT32 l_max_res;
OPJ_UINT32 l_max_prec;
OPJ_INT32 l_tx0,l_tx1,l_ty0,l_ty1;
OPJ_UINT32 l_... | @@ -1237,7 +1237,13 @@ opj_pi_iterator_t *opj_pi_create_decode(opj_image_t *p_image,
l_current_pi = l_pi;
/* memory allocation for include */
- l_current_pi->include = (OPJ_INT16*) opj_calloc((l_tcp->numlayers +1) * l_step_l, sizeof(OPJ_INT16));
+ /* prevent an integer overflow issue */
+ l_current_pi->include = ... | CWE-125 | null | null |
40,127 | advertise_sasl(struct Client *client_p)
{
if (!ConfigFileEntry.sasl_service)
return;
if (irccmp(client_p->name, ConfigFileEntry.sasl_service))
return;
sendto_local_clients_with_capability(CLICAP_CAP_NOTIFY, ":%s CAP * NEW :sasl", me.name);
}
| null | 0 | advertise_sasl(struct Client *client_p)
{
if (!ConfigFileEntry.sasl_service)
return;
if (irccmp(client_p->name, ConfigFileEntry.sasl_service))
return;
sendto_local_clients_with_capability(CLICAP_CAP_NOTIFY, ":%s CAP * NEW :sasl", me.name);
}
| @@ -91,6 +91,12 @@ m_authenticate(struct Client *client_p, struct Client *source_p,
return 0;
}
+ if (*parv[1] == ':' || strchr(parv[1], ' '))
+ {
+ exit_client(client_p, client_p, client_p, "Malformed AUTHENTICATE");
+ return 0;
+ }
+
saslserv_p = find_named_client(ConfigFileEntry.sasl_service);
if (sasls... | CWE-285 | null | null |
40,128 | advertise_sasl_exit(hook_data_client_exit *data)
{
if (!ConfigFileEntry.sasl_service)
return;
if (irccmp(data->target->name, ConfigFileEntry.sasl_service))
return;
sendto_local_clients_with_capability(CLICAP_CAP_NOTIFY, ":%s CAP * DEL :sasl", me.name);
}
| null | 0 | advertise_sasl_exit(hook_data_client_exit *data)
{
if (!ConfigFileEntry.sasl_service)
return;
if (irccmp(data->target->name, ConfigFileEntry.sasl_service))
return;
sendto_local_clients_with_capability(CLICAP_CAP_NOTIFY, ":%s CAP * DEL :sasl", me.name);
}
| @@ -91,6 +91,12 @@ m_authenticate(struct Client *client_p, struct Client *source_p,
return 0;
}
+ if (*parv[1] == ':' || strchr(parv[1], ' '))
+ {
+ exit_client(client_p, client_p, client_p, "Malformed AUTHENTICATE");
+ return 0;
+ }
+
saslserv_p = find_named_client(ConfigFileEntry.sasl_service);
if (sasls... | CWE-285 | null | null |
40,129 | me_sasl(struct Client *client_p, struct Client *source_p,
int parc, const char *parv[])
{
struct Client *target_p, *agent_p;
/* Let propagate if not addressed to us, or if broadcast.
* Only SASL agents can answer global requests.
*/
if(strncmp(parv[2], me.id, 3))
return 0;
if((target_p = find_id(parv[2])) ... | null | 0 | me_sasl(struct Client *client_p, struct Client *source_p,
int parc, const char *parv[])
{
struct Client *target_p, *agent_p;
/* Let propagate if not addressed to us, or if broadcast.
* Only SASL agents can answer global requests.
*/
if(strncmp(parv[2], me.id, 3))
return 0;
if((target_p = find_id(parv[2])) ... | @@ -91,6 +91,12 @@ m_authenticate(struct Client *client_p, struct Client *source_p,
return 0;
}
+ if (*parv[1] == ':' || strchr(parv[1], ' '))
+ {
+ exit_client(client_p, client_p, client_p, "Malformed AUTHENTICATE");
+ return 0;
+ }
+
saslserv_p = find_named_client(ConfigFileEntry.sasl_service);
if (sasls... | CWE-285 | null | null |
40,130 | static SECStatus BadCertHandler(void *arg, PRFileDesc *sock)
{
struct connectdata *conn = (struct connectdata *)arg;
struct Curl_easy *data = conn->data;
PRErrorCode err = PR_GetError();
CERTCertificate *cert;
/* remember the cert verification result */
data->set.ssl.certverifyresult = err;
if(err == SS... | null | 0 | static SECStatus BadCertHandler(void *arg, PRFileDesc *sock)
{
struct connectdata *conn = (struct connectdata *)arg;
struct Curl_easy *data = conn->data;
PRErrorCode err = PR_GetError();
CERTCertificate *cert;
/* remember the cert verification result */
data->set.ssl.certverifyresult = err;
if(err == SS... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,131 | static SECStatus CanFalseStartCallback(PRFileDesc *sock, void *client_data,
PRBool *canFalseStart)
{
struct connectdata *conn = client_data;
struct Curl_easy *data = conn->data;
SSLChannelInfo channelInfo;
SSLCipherSuiteInfo cipherInfo;
SECStatus rv;
PRBool negotiate... | null | 0 | static SECStatus CanFalseStartCallback(PRFileDesc *sock, void *client_data,
PRBool *canFalseStart)
{
struct connectdata *conn = client_data;
struct Curl_easy *data = conn->data;
SSLChannelInfo channelInfo;
SSLCipherSuiteInfo cipherInfo;
SECStatus rv;
PRBool negotiate... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,132 | bool Curl_nss_cert_status_request(void)
{
#ifdef SSL_ENABLE_OCSP_STAPLING
return TRUE;
#else
return FALSE;
#endif
}
| null | 0 | bool Curl_nss_cert_status_request(void)
{
#ifdef SSL_ENABLE_OCSP_STAPLING
return TRUE;
#else
return FALSE;
#endif
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,133 | Curl_nss_check_cxn(struct connectdata *conn)
{
int rc;
char buf;
rc =
PR_Recv(conn->ssl[FIRSTSOCKET].handle, (void *)&buf, 1, PR_MSG_PEEK,
PR_SecondsToInterval(1));
if(rc > 0)
return 1; /* connection still in place */
if(rc == 0)
return 0; /* connection has been closed */
return -... | null | 0 | Curl_nss_check_cxn(struct connectdata *conn)
{
int rc;
char buf;
rc =
PR_Recv(conn->ssl[FIRSTSOCKET].handle, (void *)&buf, 1, PR_MSG_PEEK,
PR_SecondsToInterval(1));
if(rc > 0)
return 1; /* connection still in place */
if(rc == 0)
return 0; /* connection has been closed */
return -... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,134 | void Curl_nss_close(struct connectdata *conn, int sockindex)
{
struct ssl_connect_data *connssl = &conn->ssl[sockindex];
if(connssl->handle) {
/* NSS closes the socket we previously handed to it, so we must mark it
as closed to avoid double close */
fake_sclose(conn->sock[sockindex]);
conn->sock... | null | 0 | void Curl_nss_close(struct connectdata *conn, int sockindex)
{
struct ssl_connect_data *connssl = &conn->ssl[sockindex];
if(connssl->handle) {
/* NSS closes the socket we previously handed to it, so we must mark it
as closed to avoid double close */
fake_sclose(conn->sock[sockindex]);
conn->sock... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,135 | CURLcode Curl_nss_connect(struct connectdata *conn, int sockindex)
{
return nss_connect_common(conn, sockindex, /* blocking */ NULL);
}
| null | 0 | CURLcode Curl_nss_connect(struct connectdata *conn, int sockindex)
{
return nss_connect_common(conn, sockindex, /* blocking */ NULL);
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,136 | CURLcode Curl_nss_connect_nonblocking(struct connectdata *conn,
int sockindex, bool *done)
{
return nss_connect_common(conn, sockindex, done);
}
| null | 0 | CURLcode Curl_nss_connect_nonblocking(struct connectdata *conn,
int sockindex, bool *done)
{
return nss_connect_common(conn, sockindex, done);
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,137 | bool Curl_nss_false_start(void) {
#if NSSVERNUM >= 0x030f04 /* 3.15.4 */
return TRUE;
#else
return FALSE;
#endif
}
| null | 0 | bool Curl_nss_false_start(void) {
#if NSSVERNUM >= 0x030f04 /* 3.15.4 */
return TRUE;
#else
return FALSE;
#endif
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,138 | CURLcode Curl_nss_force_init(struct Curl_easy *data)
{
CURLcode result;
if(!nss_initlock) {
if(data)
failf(data, "unable to initialize NSS, curl_global_init() should have "
"been called with CURL_GLOBAL_SSL or CURL_GLOBAL_ALL");
return CURLE_FAILED_INIT;
}
PR_Lock(nss_initlock);... | null | 0 | CURLcode Curl_nss_force_init(struct Curl_easy *data)
{
CURLcode result;
if(!nss_initlock) {
if(data)
failf(data, "unable to initialize NSS, curl_global_init() should have "
"been called with CURL_GLOBAL_SSL or CURL_GLOBAL_ALL");
return CURLE_FAILED_INIT;
}
PR_Lock(nss_initlock);... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,139 | void Curl_nss_md5sum(unsigned char *tmp, /* input */
size_t tmplen,
unsigned char *md5sum, /* output */
size_t md5len)
{
PK11Context *MD5pw = PK11_CreateDigestContext(SEC_OID_MD5);
unsigned int MD5out;
PK11_DigestOp(MD5pw, tmp, curlx_uztoui(tmplen));... | null | 0 | void Curl_nss_md5sum(unsigned char *tmp, /* input */
size_t tmplen,
unsigned char *md5sum, /* output */
size_t md5len)
{
PK11Context *MD5pw = PK11_CreateDigestContext(SEC_OID_MD5);
unsigned int MD5out;
PK11_DigestOp(MD5pw, tmp, curlx_uztoui(tmplen));... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,140 | int Curl_nss_random(struct Curl_easy *data,
unsigned char *entropy,
size_t length)
{
Curl_nss_seed(data); /* Initiate the seed if not already done */
if(SECSuccess != PK11_GenerateRandom(entropy, curlx_uztosi(length)))
/* signal a failure */
return -1;
return 0;
... | null | 0 | int Curl_nss_random(struct Curl_easy *data,
unsigned char *entropy,
size_t length)
{
Curl_nss_seed(data); /* Initiate the seed if not already done */
if(SECSuccess != PK11_GenerateRandom(entropy, curlx_uztosi(length)))
/* signal a failure */
return -1;
return 0;
... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,141 | int Curl_nss_seed(struct Curl_easy *data)
{
/* make sure that NSS is initialized */
return !!Curl_nss_force_init(data);
}
| null | 0 | int Curl_nss_seed(struct Curl_easy *data)
{
/* make sure that NSS is initialized */
return !!Curl_nss_force_init(data);
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,142 | void Curl_nss_sha256sum(const unsigned char *tmp, /* input */
size_t tmplen,
unsigned char *sha256sum, /* output */
size_t sha256len)
{
PK11Context *SHA256pw = PK11_CreateDigestContext(SEC_OID_SHA256);
unsigned int SHA256out;
PK11_DigestOp(SHA256pw, ... | null | 0 | void Curl_nss_sha256sum(const unsigned char *tmp, /* input */
size_t tmplen,
unsigned char *sha256sum, /* output */
size_t sha256len)
{
PK11Context *SHA256pw = PK11_CreateDigestContext(SEC_OID_SHA256);
unsigned int SHA256out;
PK11_DigestOp(SHA256pw, ... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,143 | size_t Curl_nss_version(char *buffer, size_t size)
{
return snprintf(buffer, size, "NSS/%s", NSS_VERSION);
}
| null | 0 | size_t Curl_nss_version(char *buffer, size_t size)
{
return snprintf(buffer, size, "NSS/%s", NSS_VERSION);
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,144 | static bool any_cipher_enabled(void)
{
unsigned int i;
for(i=0; i<NUM_OF_CIPHERS; i++) {
PRInt32 policy = 0;
SSL_CipherPolicyGet(cipherlist[i].num, &policy);
if(policy)
return TRUE;
}
return FALSE;
}
| null | 0 | static bool any_cipher_enabled(void)
{
unsigned int i;
for(i=0; i<NUM_OF_CIPHERS; i++) {
PRInt32 policy = 0;
SSL_CipherPolicyGet(cipherlist[i].num, &policy);
if(policy)
return TRUE;
}
return FALSE;
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,145 | static CURLcode cert_stuff(struct connectdata *conn, int sockindex,
char *cert_file, char *key_file)
{
struct Curl_easy *data = conn->data;
CURLcode result;
if(cert_file) {
result = nss_load_cert(&conn->ssl[sockindex], cert_file, PR_FALSE);
if(result) {
const PRErrorCode ... | null | 0 | static CURLcode cert_stuff(struct connectdata *conn, int sockindex,
char *cert_file, char *key_file)
{
struct Curl_easy *data = conn->data;
CURLcode result;
if(cert_file) {
result = nss_load_cert(&conn->ssl[sockindex], cert_file, PR_FALSE);
if(result) {
const PRErrorCode ... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,146 | static SECStatus check_issuer_cert(PRFileDesc *sock,
char *issuer_nickname)
{
CERTCertificate *cert, *cert_issuer, *issuer;
SECStatus res=SECSuccess;
void *proto_win = NULL;
cert = SSL_PeerCertificate(sock);
cert_issuer = CERT_FindCertIssuer(cert, PR_Now(), certUsageObjectS... | null | 0 | static SECStatus check_issuer_cert(PRFileDesc *sock,
char *issuer_nickname)
{
CERTCertificate *cert, *cert_issuer, *issuer;
SECStatus res=SECSuccess;
void *proto_win = NULL;
cert = SSL_PeerCertificate(sock);
cert_issuer = CERT_FindCertIssuer(cert, PR_Now(), certUsageObjectS... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,147 | static void display_cert_info(struct Curl_easy *data,
CERTCertificate *cert)
{
char *subject, *issuer, *common_name;
PRExplodedTime printableTime;
char timeString[256];
PRTime notBefore, notAfter;
subject = CERT_NameToAscii(&cert->subject);
issuer = CERT_NameToAscii(&cert->iss... | null | 0 | static void display_cert_info(struct Curl_easy *data,
CERTCertificate *cert)
{
char *subject, *issuer, *common_name;
PRExplodedTime printableTime;
char timeString[256];
PRTime notBefore, notAfter;
subject = CERT_NameToAscii(&cert->subject);
issuer = CERT_NameToAscii(&cert->iss... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,148 | static CURLcode display_conn_info(struct connectdata *conn, PRFileDesc *sock)
{
CURLcode result = CURLE_OK;
SSLChannelInfo channel;
SSLCipherSuiteInfo suite;
CERTCertificate *cert;
CERTCertificate *cert2;
CERTCertificate *cert3;
PRTime now;
int i;
if(SSL_GetChannelInfo(sock, &channel, sizeof channel)... | null | 0 | static CURLcode display_conn_info(struct connectdata *conn, PRFileDesc *sock)
{
CURLcode result = CURLE_OK;
SSLChannelInfo channel;
SSLCipherSuiteInfo suite;
CERTCertificate *cert;
CERTCertificate *cert2;
CERTCertificate *cert3;
PRTime now;
int i;
if(SSL_GetChannelInfo(sock, &channel, sizeof channel)... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,149 | static int display_error(struct connectdata *conn, PRInt32 err,
const char *filename)
{
switch(err) {
case SEC_ERROR_BAD_PASSWORD:
failf(conn->data, "Unable to load client key: Incorrect password");
return 1;
case SEC_ERROR_UNKNOWN_CERT:
failf(conn->data, "Unable to load certi... | null | 0 | static int display_error(struct connectdata *conn, PRInt32 err,
const char *filename)
{
switch(err) {
case SEC_ERROR_BAD_PASSWORD:
failf(conn->data, "Unable to load client key: Incorrect password");
return 1;
case SEC_ERROR_UNKNOWN_CERT:
failf(conn->data, "Unable to load certi... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,150 | static char* dup_nickname(struct Curl_easy *data, enum dupstring cert_kind)
{
const char *str = data->set.str[cert_kind];
const char *n;
if(!is_file(str))
/* no such file exists, use the string as nickname */
return strdup(str);
/* search the first slash; we require at least one slash in a file name *... | null | 0 | static char* dup_nickname(struct Curl_easy *data, enum dupstring cert_kind)
{
const char *str = data->set.str[cert_kind];
const char *n;
if(!is_file(str))
/* no such file exists, use the string as nickname */
return strdup(str);
/* search the first slash; we require at least one slash in a file name *... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,151 | static bool is_cc_error(PRInt32 err)
{
switch(err) {
case SSL_ERROR_BAD_CERT_ALERT:
case SSL_ERROR_EXPIRED_CERT_ALERT:
case SSL_ERROR_REVOKED_CERT_ALERT:
return true;
default:
return false;
}
}
| null | 0 | static bool is_cc_error(PRInt32 err)
{
switch(err) {
case SSL_ERROR_BAD_CERT_ALERT:
case SSL_ERROR_EXPIRED_CERT_ALERT:
case SSL_ERROR_REVOKED_CERT_ALERT:
return true;
default:
return false;
}
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,152 | static int is_file(const char *filename)
{
struct_stat st;
if(filename == NULL)
return 0;
if(stat(filename, &st) == 0)
if(S_ISREG(st.st_mode))
return 1;
return 0;
}
| null | 0 | static int is_file(const char *filename)
{
struct_stat st;
if(filename == NULL)
return 0;
if(stat(filename, &st) == 0)
if(S_ISREG(st.st_mode))
return 1;
return 0;
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,153 | static bool is_nss_error(CURLcode err)
{
switch(err) {
case CURLE_PEER_FAILED_VERIFICATION:
case CURLE_SSL_CACERT:
case CURLE_SSL_CERTPROBLEM:
case CURLE_SSL_CONNECT_ERROR:
case CURLE_SSL_ISSUER_ERROR:
return true;
default:
return false;
}
}
| null | 0 | static bool is_nss_error(CURLcode err)
{
switch(err) {
case CURLE_PEER_FAILED_VERIFICATION:
case CURLE_SSL_CACERT:
case CURLE_SSL_CERTPROBLEM:
case CURLE_SSL_CONNECT_ERROR:
case CURLE_SSL_ISSUER_ERROR:
return true;
default:
return false;
}
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,154 | static PRStatus nspr_io_close(PRFileDesc *fd)
{
const PRCloseFN close_fn = PR_GetDefaultIOMethods()->close;
fd->secret = NULL;
return close_fn(fd);
}
| null | 0 | static PRStatus nspr_io_close(PRFileDesc *fd)
{
const PRCloseFN close_fn = PR_GetDefaultIOMethods()->close;
fd->secret = NULL;
return close_fn(fd);
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,155 | static PRInt32 nspr_io_send(PRFileDesc *fd, const void *buf, PRInt32 amount,
PRIntn flags, PRIntervalTime timeout)
{
const PRSendFN send_fn = fd->lower->methods->send;
const PRInt32 rv = send_fn(fd->lower, buf, amount, flags, timeout);
if(rv < 0)
/* check for PR_WOULD_BLOCK_ERROR a... | null | 0 | static PRInt32 nspr_io_send(PRFileDesc *fd, const void *buf, PRInt32 amount,
PRIntn flags, PRIntervalTime timeout)
{
const PRSendFN send_fn = fd->lower->methods->send;
const PRInt32 rv = send_fn(fd->lower, buf, amount, flags, timeout);
if(rv < 0)
/* check for PR_WOULD_BLOCK_ERROR a... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,156 | static SECStatus nss_auth_cert_hook(void *arg, PRFileDesc *fd, PRBool checksig,
PRBool isServer)
{
struct connectdata *conn = (struct connectdata *)arg;
#ifdef SSL_ENABLE_OCSP_STAPLING
if(conn->data->set.ssl.verifystatus) {
SECStatus cacheResult;
const SECItemArray *csa... | null | 0 | static SECStatus nss_auth_cert_hook(void *arg, PRFileDesc *fd, PRBool checksig,
PRBool isServer)
{
struct connectdata *conn = (struct connectdata *)arg;
#ifdef SSL_ENABLE_OCSP_STAPLING
if(conn->data->set.ssl.verifystatus) {
SECStatus cacheResult;
const SECItemArray *csa... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,157 | static CURLcode nss_cache_crl(SECItem *crl_der)
{
CERTCertDBHandle *db = CERT_GetDefaultCertDB();
CERTSignedCrl *crl = SEC_FindCrlByDERCert(db, crl_der, 0);
if(crl) {
/* CRL already cached */
SEC_DestroyCrl(crl);
SECITEM_FreeItem(crl_der, PR_TRUE);
return CURLE_OK;
}
/* acquire lock before ca... | null | 0 | static CURLcode nss_cache_crl(SECItem *crl_der)
{
CERTCertDBHandle *db = CERT_GetDefaultCertDB();
CERTSignedCrl *crl = SEC_FindCrlByDERCert(db, crl_der, 0);
if(crl) {
/* CRL already cached */
SEC_DestroyCrl(crl);
SECITEM_FreeItem(crl_der, PR_TRUE);
return CURLE_OK;
}
/* acquire lock before ca... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,158 | static CURLcode nss_create_object(struct ssl_connect_data *ssl,
CK_OBJECT_CLASS obj_class,
const char *filename, bool cacert)
{
PK11SlotInfo *slot;
PK11GenericObject *obj;
CK_BBOOL cktrue = CK_TRUE;
CK_BBOOL ckfalse = CK_FALSE;
CK_ATTRIBUTE a... | null | 0 | static CURLcode nss_create_object(struct ssl_connect_data *ssl,
CK_OBJECT_CLASS obj_class,
const char *filename, bool cacert)
{
PK11SlotInfo *slot;
PK11GenericObject *obj;
CK_BBOOL cktrue = CK_TRUE;
CK_BBOOL ckfalse = CK_FALSE;
CK_ATTRIBUTE a... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,159 | static void nss_destroy_object(void *user, void *ptr)
{
PK11GenericObject *obj = (PK11GenericObject *)ptr;
(void) user;
PK11_DestroyGenericObject(obj);
}
| null | 0 | static void nss_destroy_object(void *user, void *ptr)
{
PK11GenericObject *obj = (PK11GenericObject *)ptr;
(void) user;
PK11_DestroyGenericObject(obj);
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,160 | static CURLcode nss_do_connect(struct connectdata *conn, int sockindex)
{
struct ssl_connect_data *connssl = &conn->ssl[sockindex];
struct Curl_easy *data = conn->data;
CURLcode result = CURLE_SSL_CONNECT_ERROR;
PRUint32 timeout;
/* check timeout situation */
const long time_left = Curl_timeleft(data, NULL... | null | 0 | static CURLcode nss_do_connect(struct connectdata *conn, int sockindex)
{
struct ssl_connect_data *connssl = &conn->ssl[sockindex];
struct Curl_easy *data = conn->data;
CURLcode result = CURLE_SSL_CONNECT_ERROR;
PRUint32 timeout;
/* check timeout situation */
const long time_left = Curl_timeleft(data, NULL... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,161 | static const char* nss_error_to_name(PRErrorCode code)
{
const char *name = PR_ErrorToName(code);
if(name)
return name;
return "unknown error";
}
| null | 0 | static const char* nss_error_to_name(PRErrorCode code)
{
const char *name = PR_ErrorToName(code);
if(name)
return name;
return "unknown error";
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,162 | static CURLcode nss_fail_connect(struct ssl_connect_data *connssl,
struct Curl_easy *data,
CURLcode curlerr)
{
PRErrorCode err = 0;
if(is_nss_error(curlerr)) {
/* read NSPR error code */
err = PR_GetError();
if(is_cc_error(err))
cu... | null | 0 | static CURLcode nss_fail_connect(struct ssl_connect_data *connssl,
struct Curl_easy *data,
CURLcode curlerr)
{
PRErrorCode err = 0;
if(is_nss_error(curlerr)) {
/* read NSPR error code */
err = PR_GetError();
if(is_cc_error(err))
cu... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,163 | static char * nss_get_password(PK11SlotInfo * slot, PRBool retry, void *arg)
{
(void)slot; /* unused */
if(retry || NULL == arg)
return NULL;
else
return (char *)PORT_Strdup((char *)arg);
}
| null | 0 | static char * nss_get_password(PK11SlotInfo * slot, PRBool retry, void *arg)
{
(void)slot; /* unused */
if(retry || NULL == arg)
return NULL;
else
return (char *)PORT_Strdup((char *)arg);
}
| @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,164 | static CURLcode nss_init_core(struct Curl_easy *data, const char *cert_dir)
{
NSSInitParameters initparams;
if(nss_context != NULL)
return CURLE_OK;
memset((void *) &initparams, '\0', sizeof(initparams));
initparams.length = sizeof(initparams);
if(cert_dir) {
char *certpath = aprintf("sql:%s", cert... | null | 0 | static CURLcode nss_init_core(struct Curl_easy *data, const char *cert_dir)
{
NSSInitParameters initparams;
if(nss_context != NULL)
return CURLE_OK;
memset((void *) &initparams, '\0', sizeof(initparams));
initparams.length = sizeof(initparams);
if(cert_dir) {
char *certpath = aprintf("sql:%s", cert... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,165 | static CURLcode nss_load_ca_certificates(struct connectdata *conn,
int sockindex)
{
struct Curl_easy *data = conn->data;
const char *cafile = data->set.ssl.CAfile;
const char *capath = data->set.ssl.CApath;
if(cafile) {
CURLcode result = nss_load_cert(&conn->ssl[soc... | null | 0 | static CURLcode nss_load_ca_certificates(struct connectdata *conn,
int sockindex)
{
struct Curl_easy *data = conn->data;
const char *cafile = data->set.ssl.CAfile;
const char *capath = data->set.ssl.CApath;
if(cafile) {
CURLcode result = nss_load_cert(&conn->ssl[soc... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,166 | static CURLcode nss_load_crl(const char* crlfilename)
{
PRFileDesc *infile;
PRFileInfo info;
SECItem filedata = { 0, NULL, 0 };
SECItem *crl_der = NULL;
char *body;
infile = PR_Open(crlfilename, PR_RDONLY, 0);
if(!infile)
return CURLE_SSL_CRL_BADFILE;
if(PR_SUCCESS != PR_GetOpenFileInfo(infile, &... | null | 0 | static CURLcode nss_load_crl(const char* crlfilename)
{
PRFileDesc *infile;
PRFileInfo info;
SECItem filedata = { 0, NULL, 0 };
SECItem *crl_der = NULL;
char *body;
infile = PR_Open(crlfilename, PR_RDONLY, 0);
if(!infile)
return CURLE_SSL_CRL_BADFILE;
if(PR_SUCCESS != PR_GetOpenFileInfo(infile, &... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,167 | static CURLcode nss_load_key(struct connectdata *conn, int sockindex,
char *key_file)
{
PK11SlotInfo *slot;
SECStatus status;
CURLcode result;
struct ssl_connect_data *ssl = conn->ssl;
(void)sockindex; /* unused */
result = nss_create_object(ssl, CKO_PRIVATE_KEY, key_file, FAL... | null | 0 | static CURLcode nss_load_key(struct connectdata *conn, int sockindex,
char *key_file)
{
PK11SlotInfo *slot;
SECStatus status;
CURLcode result;
struct ssl_connect_data *ssl = conn->ssl;
(void)sockindex; /* unused */
result = nss_create_object(ssl, CKO_PRIVATE_KEY, key_file, FAL... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,168 | static ssize_t nss_recv(struct connectdata * conn, /* connection data */
int num, /* socketindex */
char *buf, /* store read data here */
size_t buffersize, /* max amount to read */
... | null | 0 | static ssize_t nss_recv(struct connectdata * conn, /* connection data */
int num, /* socketindex */
char *buf, /* store read data here */
size_t buffersize, /* max amount to read */
... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,169 | static void nss_update_connecting_state(ssl_connect_state state, void *secret)
{
struct ssl_connect_data *connssl = (struct ssl_connect_data *)secret;
if(PR_GetError() != PR_WOULD_BLOCK_ERROR)
/* an unrelated error is passing by */
return;
switch(connssl->connecting_state) {
case ssl_connect_2:
case ... | null | 0 | static void nss_update_connecting_state(ssl_connect_state state, void *secret)
{
struct ssl_connect_data *connssl = (struct ssl_connect_data *)secret;
if(PR_GetError() != PR_WOULD_BLOCK_ERROR)
/* an unrelated error is passing by */
return;
switch(connssl->connecting_state) {
case ssl_connect_2:
case ... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,170 | static SECStatus set_ciphers(struct Curl_easy *data, PRFileDesc * model,
char *cipher_list)
{
unsigned int i;
PRBool cipher_state[NUM_OF_CIPHERS];
PRBool found;
char *cipher;
/* use accessors to avoid dynamic linking issues after an update of NSS */
const PRUint16 num_implement... | null | 0 | static SECStatus set_ciphers(struct Curl_easy *data, PRFileDesc * model,
char *cipher_list)
{
unsigned int i;
PRBool cipher_state[NUM_OF_CIPHERS];
PRBool found;
char *cipher;
/* use accessors to avoid dynamic linking issues after an update of NSS */
const PRUint16 num_implement... | @@ -1002,10 +1002,10 @@ static SECStatus SelectClientCert(void *arg, PRFileDesc *sock,
struct ssl_connect_data *connssl = (struct ssl_connect_data *)arg;
struct Curl_easy *data = connssl->data;
const char *nickname = connssl->client_nickname;
+ static const char pem_slotname[] = "PEM Token #1";
if(connss... | CWE-287 | null | null |
40,171 | PHP_FUNCTION(curl_init)
{
php_curl *ch;
CURL *cp;
char *url = NULL;
size_t url_len = 0;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "|s", &url, &url_len) == FAILURE) {
return;
}
cp = curl_easy_init();
if (!cp) {
php_error_docref(NULL, E_WARNING, "Could not initialize a new cURL handle");
RETURN_FA... | DoS Overflow | 0 | PHP_FUNCTION(curl_init)
{
php_curl *ch;
CURL *cp;
char *url = NULL;
size_t url_len = 0;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "|s", &url, &url_len) == FAILURE) {
return;
}
cp = curl_easy_init();
if (!cp) {
php_error_docref(NULL, E_WARNING, "Could not initialize a new cURL handle");
RETURN_FA... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,172 | PHP_FUNCTION(curl_copy_handle)
{
CURL *cp;
zval *zid;
php_curl *ch, *dupch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
cp = curl_easy_duphandle(ch->cp);
if (!cp)... | DoS Overflow | 0 | PHP_FUNCTION(curl_copy_handle)
{
CURL *cp;
zval *zid;
php_curl *ch, *dupch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
cp = curl_easy_duphandle(ch->cp);
if (!cp)... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,173 | PHP_FUNCTION(curl_setopt)
{
zval *zid, *zvalue;
zend_long options;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "rlz", &zid, &options, &zvalue) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
if (... | DoS Overflow | 0 | PHP_FUNCTION(curl_setopt)
{
zval *zid, *zvalue;
zend_long options;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "rlz", &zid, &options, &zvalue) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
if (... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,174 | PHP_FUNCTION(curl_setopt_array)
{
zval *zid, *arr, *entry;
php_curl *ch;
zend_ulong option;
zend_string *string_key;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "ra", &zid, &arr) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
... | DoS Overflow | 0 | PHP_FUNCTION(curl_setopt_array)
{
zval *zid, *arr, *entry;
php_curl *ch;
zend_ulong option;
zend_string *string_key;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "ra", &zid, &arr) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,175 | PHP_FUNCTION(curl_exec)
{
CURLcode error;
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
_php_curl_verify_handlers(ch, 1);
_php_curl_cleanup... | DoS Overflow | 0 | PHP_FUNCTION(curl_exec)
{
CURLcode error;
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
_php_curl_verify_handlers(ch, 1);
_php_curl_cleanup... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,176 | PHP_FUNCTION(curl_getinfo)
{
zval *zid;
php_curl *ch;
zend_long option = 0;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r|l", &zid, &option) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
if (ZEND_NUM_ARGS() < 2) {
char... | DoS Overflow | 0 | PHP_FUNCTION(curl_getinfo)
{
zval *zid;
php_curl *ch;
zend_long option = 0;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r|l", &zid, &option) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
if (ZEND_NUM_ARGS() < 2) {
char... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,177 | PHP_FUNCTION(curl_error)
{
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
ch->err.str[CURL_ERROR_SIZE] = 0;
RETURN_STRING(ch->err.str);
}
| DoS Overflow | 0 | PHP_FUNCTION(curl_error)
{
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
ch->err.str[CURL_ERROR_SIZE] = 0;
RETURN_STRING(ch->err.str);
}
| @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,178 | PHP_FUNCTION(curl_close)
{
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
if (ch->in_callback) {
php_error_docref(NULL, E_WARNING, "Attempt t... | DoS Overflow | 0 | PHP_FUNCTION(curl_close)
{
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
if (ch->in_callback) {
php_error_docref(NULL, E_WARNING, "Attempt t... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,179 | PHP_FUNCTION(curl_reset)
{
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
if (ch->in_callback) {
php_error_docref(NULL, E_WARNING, "At... | DoS Overflow | 0 | PHP_FUNCTION(curl_reset)
{
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "r", &zid) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
if (ch->in_callback) {
php_error_docref(NULL, E_WARNING, "At... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,180 | PHP_FUNCTION(curl_pause)
{
zend_long bitmask;
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "rl", &zid, &bitmask) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
RETURN_LONG(curl_easy_pau... | DoS Overflow | 0 | PHP_FUNCTION(curl_pause)
{
zend_long bitmask;
zval *zid;
php_curl *ch;
if (zend_parse_parameters(ZEND_NUM_ARGS(), "rl", &zid, &bitmask) == FAILURE) {
return;
}
if ((ch = (php_curl*)zend_fetch_resource(Z_RES_P(zid), le_curl_name, le_curl)) == NULL) {
RETURN_FALSE;
}
RETURN_LONG(curl_easy_pau... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,181 | PHP_MINIT_FUNCTION(curl)
{
le_curl = zend_register_list_destructors_ex(_php_curl_close, NULL, "curl", module_number);
le_curl_multi_handle = zend_register_list_destructors_ex(_php_curl_multi_close, NULL, "curl_multi", module_number);
le_curl_share_handle = zend_register_list_destructors_ex(_php_curl_share_close, NUL... | DoS Overflow | 0 | PHP_MINIT_FUNCTION(curl)
{
le_curl = zend_register_list_destructors_ex(_php_curl_close, NULL, "curl", module_number);
le_curl_multi_handle = zend_register_list_destructors_ex(_php_curl_multi_close, NULL, "curl_multi", module_number);
le_curl_share_handle = zend_register_list_destructors_ex(_php_curl_share_close, NUL... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,182 | ZEND_GET_MODULE (curl)
#endif
/* {{{ PHP_INI_BEGIN */
PHP_INI_BEGIN()
PHP_INI_ENTRY("curl.cainfo", "", PHP_INI_SYSTEM, NULL)
PHP_INI_END()
/* }}} */
| DoS Overflow | 0 | ZEND_GET_MODULE (curl)
#endif
/* {{{ PHP_INI_BEGIN */
PHP_INI_BEGIN()
PHP_INI_ENTRY("curl.cainfo", "", PHP_INI_SYSTEM, NULL)
PHP_INI_END()
/* }}} */
| @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,183 | static void _php_curl_close_ex(php_curl *ch)
{
#if PHP_CURL_DEBUG
fprintf(stderr, "DTOR CALLED, ch = %x\n", ch);
#endif
_php_curl_verify_handlers(ch, 0);
/*
* Libcurl is doing connection caching. When easy handle is cleaned up,
* if the handle was previously used by the curl_multi_api, the connection
* remai... | DoS Overflow | 0 | static void _php_curl_close_ex(php_curl *ch)
{
#if PHP_CURL_DEBUG
fprintf(stderr, "DTOR CALLED, ch = %x\n", ch);
#endif
_php_curl_verify_handlers(ch, 0);
/*
* Libcurl is doing connection caching. When easy handle is cleaned up,
* if the handle was previously used by the curl_multi_api, the connection
* remai... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,184 | static void _php_curl_set_default_options(php_curl *ch)
{
char *cainfo;
curl_easy_setopt(ch->cp, CURLOPT_NOPROGRESS, 1);
curl_easy_setopt(ch->cp, CURLOPT_VERBOSE, 0);
curl_easy_setopt(ch->cp, CURLOPT_ERRORBUFFER, ch->err.str);
curl_easy_setopt(ch->cp, CURLOPT_WRITEFUNCTION, curl_write);... | DoS Overflow | 0 | static void _php_curl_set_default_options(php_curl *ch)
{
char *cainfo;
curl_easy_setopt(ch->cp, CURLOPT_NOPROGRESS, 1);
curl_easy_setopt(ch->cp, CURLOPT_VERBOSE, 0);
curl_easy_setopt(ch->cp, CURLOPT_ERRORBUFFER, ch->err.str);
curl_easy_setopt(ch->cp, CURLOPT_WRITEFUNCTION, curl_write);... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,185 | static int _php_curl_setopt(php_curl *ch, zend_long option, zval *zvalue) /* {{{ */
{
CURLcode error = CURLE_OK;
zend_long lval;
ZVAL_DEREF(zvalue);
switch (option) {
/* Long options */
case CURLOPT_SSL_VERIFYHOST:
lval = zval_get_long(zvalue);
if (lval == 1) {
#if LIBCURL_VERSION_NUM <= 0x071c00 /* 7.28... | DoS Overflow | 0 | static int _php_curl_setopt(php_curl *ch, zend_long option, zval *zvalue) /* {{{ */
{
CURLcode error = CURLE_OK;
zend_long lval;
ZVAL_DEREF(zvalue);
switch (option) {
/* Long options */
case CURLOPT_SSL_VERIFYHOST:
lval = zval_get_long(zvalue);
if (lval == 1) {
#if LIBCURL_VERSION_NUM <= 0x071c00 /* 7.28... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,186 | static php_curl *alloc_curl_handle()
{
php_curl *ch = ecalloc(1, sizeof(php_curl));
ch->to_free = ecalloc(1, sizeof(struct _php_curl_free));
ch->handlers = ecalloc(1, sizeof(php_curl_handlers));
ch->handlers->write = ecalloc(1, sizeof(php_curl_write));
ch->handlers... | DoS Overflow | 0 | static php_curl *alloc_curl_handle()
{
php_curl *ch = ecalloc(1, sizeof(php_curl));
ch->to_free = ecalloc(1, sizeof(struct _php_curl_free));
ch->handlers = ecalloc(1, sizeof(php_curl_handlers));
ch->handlers->write = ecalloc(1, sizeof(php_curl_write));
ch->handlers... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,187 | static void create_certinfo(struct curl_certinfo *ci, zval *listcode)
{
int i;
if (ci) {
zval certhash;
for (i=0; i<ci->num_of_certs; i++) {
struct curl_slist *slist;
array_init(&certhash);
for (slist = ci->certinfo[i]; slist; slist = slist->next) {
int len;
char s[64];
char *tmp;
strn... | DoS Overflow | 0 | static void create_certinfo(struct curl_certinfo *ci, zval *listcode)
{
int i;
if (ci) {
zval certhash;
for (i=0; i<ci->num_of_certs; i++) {
struct curl_slist *slist;
array_init(&certhash);
for (slist = ci->certinfo[i]; slist; slist = slist->next) {
int len;
char s[64];
char *tmp;
strn... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,188 | static size_t curl_read(char *data, size_t size, size_t nmemb, void *ctx)
{
php_curl *ch = (php_curl *)ctx;
php_curl_read *t = ch->handlers->read;
int length = 0;
switch (t->method) {
case PHP_CURL_DIRECT:
if (t->fp) {
length = fread(data, size, nmemb, t->fp);
}
break;
case PHP_CURL_USER: {
zva... | DoS Overflow | 0 | static size_t curl_read(char *data, size_t size, size_t nmemb, void *ctx)
{
php_curl *ch = (php_curl *)ctx;
php_curl_read *t = ch->handlers->read;
int length = 0;
switch (t->method) {
case PHP_CURL_DIRECT:
if (t->fp) {
length = fread(data, size, nmemb, t->fp);
}
break;
case PHP_CURL_USER: {
zva... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,189 | static size_t curl_write_header(char *data, size_t size, size_t nmemb, void *ctx)
{
php_curl *ch = (php_curl *) ctx;
php_curl_write *t = ch->handlers->write_header;
size_t length = size * nmemb;
switch (t->method) {
case PHP_CURL_STDOUT:
/* Handle special case write when we're returning the entire transfer
... | DoS Overflow | 0 | static size_t curl_write_header(char *data, size_t size, size_t nmemb, void *ctx)
{
php_curl *ch = (php_curl *) ctx;
php_curl_write *t = ch->handlers->write_header;
size_t length = size * nmemb;
switch (t->method) {
case PHP_CURL_STDOUT:
/* Handle special case write when we're returning the entire transfer
... | @@ -3517,7 +3517,7 @@ PHP_FUNCTION(curl_reset)
PHP_FUNCTION(curl_escape)
{
char *str = NULL, *res = NULL;
- size_t str_len = 0;
+ size_t str_len = 0;
zval *zid;
php_curl *ch;
@@ -3529,6 +3529,10 @@ PHP_FUNCTION(curl_escape)
RETURN_FALSE;
}
+ if (ZEND_SIZE_T_INT_OVFL(str_len)) {... | CWE-119 | null | null |
40,190 | ZEND_MM_BINS_INFO(_ZEND_BIN_ALLOCATOR, x, y)
ZEND_API void* ZEND_FASTCALL _emalloc_large(size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
ZEND_MM_CUSTOM_ALLOCATOR(size);
return zend_mm_alloc_large(AG(mm_heap), size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
}
| DoS Overflow | 0 | ZEND_MM_BINS_INFO(_ZEND_BIN_ALLOCATOR, x, y)
ZEND_API void* ZEND_FASTCALL _emalloc_large(size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
ZEND_MM_CUSTOM_ALLOCATOR(size);
return zend_mm_alloc_large(AG(mm_heap), size ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LINE_ORIG_RELAY_CC);
}
| @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,191 | ZEND_MM_BINS_INFO(_ZEND_BIN_FREE, x, y)
ZEND_API void ZEND_FASTCALL _efree_large(void *ptr, size_t size)
{
ZEND_MM_CUSTOM_DEALLOCATOR(ptr);
{
size_t page_offset = ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE);
zend_mm_chunk *chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE);
int page_num... | DoS Overflow | 0 | ZEND_MM_BINS_INFO(_ZEND_BIN_FREE, x, y)
ZEND_API void ZEND_FASTCALL _efree_large(void *ptr, size_t size)
{
ZEND_MM_CUSTOM_DEALLOCATOR(ptr);
{
size_t page_offset = ZEND_MM_ALIGNED_OFFSET(ptr, ZEND_MM_CHUNK_SIZE);
zend_mm_chunk *chunk = (zend_mm_chunk*)ZEND_MM_ALIGNED_BASE(ptr, ZEND_MM_CHUNK_SIZE);
int page_num... | @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,192 | ZEND_API void * __zend_malloc(size_t len)
{
void *tmp = malloc(len);
if (EXPECTED(tmp)) {
return tmp;
}
zend_out_of_memory();
}
| DoS Overflow | 0 | ZEND_API void * __zend_malloc(size_t len)
{
void *tmp = malloc(len);
if (EXPECTED(tmp)) {
return tmp;
}
zend_out_of_memory();
}
| @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,193 | ZEND_API void * __zend_realloc(void *p, size_t len)
{
p = realloc(p, len);
if (EXPECTED(p)) {
return p;
}
zend_out_of_memory();
}
| DoS Overflow | 0 | ZEND_API void * __zend_realloc(void *p, size_t len)
{
p = realloc(p, len);
if (EXPECTED(p)) {
return p;
}
zend_out_of_memory();
}
| @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,194 | ZEND_API void ZEND_FASTCALL _efree(void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
#if ZEND_MM_CUSTOM
if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
if (ZEND_DEBUG && AG(mm_heap)->use_custom_heap == ZEND_MM_CUSTOM_HEAP_DEBUG) {
AG(mm_heap)->custom_heap.debug._free(ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LIN... | DoS Overflow | 0 | ZEND_API void ZEND_FASTCALL _efree(void *ptr ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
#if ZEND_MM_CUSTOM
if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
if (ZEND_DEBUG && AG(mm_heap)->use_custom_heap == ZEND_MM_CUSTOM_HEAP_DEBUG) {
AG(mm_heap)->custom_heap.debug._free(ptr ZEND_FILE_LINE_RELAY_CC ZEND_FILE_LIN... | @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,195 | ZEND_API void ZEND_FASTCALL _efree_huge(void *ptr, size_t size)
{
ZEND_MM_CUSTOM_DEALLOCATOR(ptr);
zend_mm_free_huge(AG(mm_heap), ptr);
}
| DoS Overflow | 0 | ZEND_API void ZEND_FASTCALL _efree_huge(void *ptr, size_t size)
{
ZEND_MM_CUSTOM_DEALLOCATOR(ptr);
zend_mm_free_huge(AG(mm_heap), ptr);
}
| @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,196 | ZEND_API void* ZEND_FASTCALL _emalloc_huge(size_t size)
{
ZEND_MM_CUSTOM_ALLOCATOR(size);
return zend_mm_alloc_huge(AG(mm_heap), size);
}
| DoS Overflow | 0 | ZEND_API void* ZEND_FASTCALL _emalloc_huge(size_t size)
{
ZEND_MM_CUSTOM_ALLOCATOR(size);
return zend_mm_alloc_huge(AG(mm_heap), size);
}
| @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,197 | ZEND_API void* ZEND_FASTCALL _erealloc(void *ptr, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
if (ZEND_DEBUG && AG(mm_heap)->use_custom_heap == ZEND_MM_CUSTOM_HEAP_DEBUG) {
return AG(mm_heap)->custom_heap.debug._realloc(ptr, size ZEND_FILE_LINE_RELAY_CC... | DoS Overflow | 0 | ZEND_API void* ZEND_FASTCALL _erealloc(void *ptr, size_t size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
if (ZEND_DEBUG && AG(mm_heap)->use_custom_heap == ZEND_MM_CUSTOM_HEAP_DEBUG) {
return AG(mm_heap)->custom_heap.debug._realloc(ptr, size ZEND_FILE_LINE_RELAY_CC... | @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,198 | ZEND_API void* ZEND_FASTCALL _erealloc2(void *ptr, size_t size, size_t copy_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
if (ZEND_DEBUG && AG(mm_heap)->use_custom_heap == ZEND_MM_CUSTOM_HEAP_DEBUG) {
return AG(mm_heap)->custom_heap.debug._realloc(ptr, size ZEND... | DoS Overflow | 0 | ZEND_API void* ZEND_FASTCALL _erealloc2(void *ptr, size_t size, size_t copy_size ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
if (UNEXPECTED(AG(mm_heap)->use_custom_heap)) {
if (ZEND_DEBUG && AG(mm_heap)->use_custom_heap == ZEND_MM_CUSTOM_HEAP_DEBUG) {
return AG(mm_heap)->custom_heap.debug._realloc(ptr, size ZEND... | @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
40,199 | ZEND_API char* ZEND_FASTCALL _estrdup(const char *s ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
size_t length;
char *p;
length = strlen(s);
if (UNEXPECTED(length + 1 == 0)) {
zend_error_noreturn(E_ERROR, "Possible integer overflow in memory allocation (%zu * %zu + %zu)", 1, length, 1);
}
p = (char *) _emalloc(... | DoS Overflow | 0 | ZEND_API char* ZEND_FASTCALL _estrdup(const char *s ZEND_FILE_LINE_DC ZEND_FILE_LINE_ORIG_DC)
{
size_t length;
char *p;
length = strlen(s);
if (UNEXPECTED(length + 1 == 0)) {
zend_error_noreturn(E_ERROR, "Possible integer overflow in memory allocation (%zu * %zu + %zu)", 1, length, 1);
}
p = (char *) _emalloc(... | @@ -1548,21 +1548,21 @@ static void *zend_mm_realloc_heap(zend_mm_heap *heap, void *ptr, size_t size, si
ZEND_MM_CHECK(chunk->heap == heap, "zend_mm_heap corrupted");
if (info & ZEND_MM_IS_SRUN) {
- int old_bin_num, bin_num;
-
- old_bin_num = ZEND_MM_SRUN_BIN_NUM(info);
+ int old_bin_num = ZEND_MM_SRUN_BI... | CWE-190 | null | null |
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