id int64 0 1.96k | source stringlengths 142 121k | target stringlengths 21 3.18k | func_before stringlengths 132 227k | func_after stringlengths 94 227k | num_hunks int64 1 55 | project stringlengths 2 29 | commit_id stringlengths 14 44 | cve_id stringclasses 1
value | cwe_id stringclasses 1
value |
|---|---|---|---|---|---|---|---|---|---|
0 | long ssl_get_algorithm2(SSL *s) { long alg2 = s->s3->tmp.new_cipher->algorithm2; <vul_start> if (s->method->version == TLS1_2_VERSION && <vul_end> alg2 == (SSL_HANDSHAKE_MAC_DEFAULT|TLS1_PRF)) return SSL_HANDSHAKE_MAC_SHA256 | TLS1_PRF_SHA256; return alg2; } | <vul_start> if (TLS1_get_version(s) >= TLS1_2_VERSION && <vul_end> | long ssl_get_algorithm2(SSL *s)
{
long alg2 = s->s3->tmp.new_cipher->algorithm2;
if (s->method->version == TLS1_2_VERSION &&
alg2 == (SSL_HANDSHAKE_MAC_DEFAULT|TLS1_PRF))
return SSL_HANDSHAKE_MAC_SHA256 | TLS1_PRF_SHA256;
return alg2;
}
| long ssl_get_algorithm2(SSL *s)
{
long alg2 = s->s3->tmp.new_cipher->algorithm2;
if (TLS1_get_version(s) >= TLS1_2_VERSION &&
alg2 == (SSL_HANDSHAKE_MAC_DEFAULT|TLS1_PRF))
return SSL_HANDSHAKE_MAC_SHA256 | TLS1_PRF_SHA256;
return alg2;
}
| 1 | openssl | ca989269a2876bae79393bd54c3e72d49975fc75 | ||
1 | gnutls_session_get_data (gnutls_session_t session, void *session_data, size_t * session_data_size) { gnutls_datum_t psession; int ret; if (session->internals.resumable == RESUME_FALSE) return GNUTLS_E_INVALID_SESSION; psession.data = session_data; ret = _gnutls_session_pack (session, &psession); if (ret < 0) { gnutls_a... | <vul_start> *session_data_size = psession.size; <vul_end> <vul_start> <vul_end> | gnutls_session_get_data (gnutls_session_t session,
void *session_data, size_t * session_data_size)
{
gnutls_datum_t psession;
int ret;
if (session->internals.resumable == RESUME_FALSE)
return GNUTLS_E_INVALID_SESSION;
psession.data = session_data;
ret = _gnutls_session_pack (s... | gnutls_session_get_data (gnutls_session_t session,
void *session_data, size_t * session_data_size)
{
gnutls_datum_t psession;
int ret;
if (session->internals.resumable == RESUME_FALSE)
return GNUTLS_E_INVALID_SESSION;
psession.data = session_data;
ret = _gnutls_session_pack (s... | 2 | savannah | 190cef6eed37d0e73a73c1e205eb31d45ab60a3c | ||
2 | gnutls_session_get_data (gnutls_session_t session, void *session_data, size_t * session_data_size) { gnutls_datum_t psession; int ret; if (session->internals.resumable == RESUME_FALSE) return GNUTLS_E_INVALID_SESSION; psession.data = session_data; ret = _gnutls_session_pack (session, &psession); if (ret < 0) { gnutls_a... | <vul_start> <vul_end> | gnutls_session_get_data (gnutls_session_t session,
void *session_data, size_t * session_data_size)
{
gnutls_datum_t psession;
int ret;
if (session->internals.resumable == RESUME_FALSE)
return GNUTLS_E_INVALID_SESSION;
psession.data = session_data;
ret = _gnutls_session_pack (s... | gnutls_session_get_data (gnutls_session_t session,
void *session_data, size_t * session_data_size)
{
gnutls_datum_t psession;
int ret;
if (session->internals.resumable == RESUME_FALSE)
return GNUTLS_E_INVALID_SESSION;
psession.data = session_data;
ret = _gnutls_session_pack (s... | 1 | savannah | e82ef4545e9e98cbcb032f55d7c750b81e3a0450 | ||
3 | add_range(fz_context *ctx, pdf_cmap *cmap, unsigned int low, unsigned int high, unsigned int out, int check_for_overlap, int many) { int current; cmap_splay *tree; if (low > high) { fz_warn(ctx, "range limits out of range in cmap %s", cmap->cmap_name); return; } tree = cmap->tree; if (cmap->tlen) { unsigned int move = ... | <vul_start> <vul_end> | add_range(fz_context *ctx, pdf_cmap *cmap, unsigned int low, unsigned int high, unsigned int out, int check_for_overlap, int many)
{
int current;
cmap_splay *tree;
if (low > high)
{
fz_warn(ctx, "range limits out of range in cmap %s", cmap->cmap_name);
return;
}
tree = cmap->tree;
if (cmap->tlen)
{
uns... | add_range(fz_context *ctx, pdf_cmap *cmap, unsigned int low, unsigned int high, unsigned int out, int check_for_overlap, int many)
{
int current;
cmap_splay *tree;
if (low > high)
{
fz_warn(ctx, "range limits out of range in cmap %s", cmap->cmap_name);
return;
}
tree = cmap->tree;
if (cmap->tlen)
{
uns... | 1 | ghostscript | f597300439e62f5e921f0d7b1e880b5c1a1f1607 | ||
4 | add_range(fz_context *ctx, pdf_cmap *cmap, unsigned int low, unsigned int high, unsigned int out, int check_for_overlap, int many) { int current; cmap_splay *tree; if (low > high) { fz_warn(ctx, "range limits out of range in cmap %s", cmap->cmap_name); return; } tree = cmap->tree; if (cmap->tlen) { unsigned int move = ... | <vul_start> add_range(ctx, cmap, high+1, new_high, tree[current].out + high + 1 - tree[current].low, 0, many); <vul_end> | add_range(fz_context *ctx, pdf_cmap *cmap, unsigned int low, unsigned int high, unsigned int out, int check_for_overlap, int many)
{
int current;
cmap_splay *tree;
if (low > high)
{
fz_warn(ctx, "range limits out of range in cmap %s", cmap->cmap_name);
return;
}
tree = cmap->tree;
if (cmap->tlen)
{
uns... | add_range(fz_context *ctx, pdf_cmap *cmap, unsigned int low, unsigned int high, unsigned int out, int check_for_overlap, int many)
{
int current;
cmap_splay *tree;
if (low > high)
{
fz_warn(ctx, "range limits out of range in cmap %s", cmap->cmap_name);
return;
}
tree = cmap->tree;
if (cmap->tlen)
{
uns... | 1 | ghostscript | 71ceebcf56e682504da22c4035b39a2d451e8ffd | ||
5 | int read_ndx_and_attrs(int f_in, int f_out, int *iflag_ptr, uchar *type_ptr, char *buf, int *len_ptr) { int len, iflags = 0; struct file_list *flist; uchar fnamecmp_type = FNAMECMP_FNAME; int ndx; read_loop: while (1) { ndx = read_ndx(f_in); if (ndx >= 0) break; if (ndx == NDX_DONE) return ndx; if (ndx == NDX_DEL_STATS... | <vul_start> <vul_end> | int read_ndx_and_attrs(int f_in, int f_out, int *iflag_ptr, uchar *type_ptr,
char *buf, int *len_ptr)
{
int len, iflags = 0;
struct file_list *flist;
uchar fnamecmp_type = FNAMECMP_FNAME;
int ndx;
read_loop:
while (1) {
ndx = read_ndx(f_in);
if (ndx >= 0)
break;
if (ndx == NDX_DONE)
return... | int read_ndx_and_attrs(int f_in, int f_out, int *iflag_ptr, uchar *type_ptr,
char *buf, int *len_ptr)
{
int len, iflags = 0;
struct file_list *flist;
uchar fnamecmp_type = FNAMECMP_FNAME;
int ndx;
read_loop:
while (1) {
ndx = read_ndx(f_in);
if (ndx >= 0)
break;
if (ndx == NDX_DONE)
return... | 1 | samba | 70aeb5fddd1b2f8e143276f8d5a085db16c593b9 | ||
6 | int read_ndx_and_attrs(int f_in, int f_out, int *iflag_ptr, uchar *type_ptr, char *buf, int *len_ptr) { int len, iflags = 0; struct file_list *flist; uchar fnamecmp_type = FNAMECMP_FNAME; int ndx; read_loop: while (1) { ndx = read_ndx(f_in); if (ndx >= 0) break; if (ndx == NDX_DONE) return ndx; if (ndx == NDX_DEL_STATS... | <vul_start> <vul_end> | int read_ndx_and_attrs(int f_in, int f_out, int *iflag_ptr, uchar *type_ptr,
char *buf, int *len_ptr)
{
int len, iflags = 0;
struct file_list *flist;
uchar fnamecmp_type = FNAMECMP_FNAME;
int ndx;
read_loop:
while (1) {
ndx = read_ndx(f_in);
if (ndx >= 0)
break;
if (ndx == NDX_DONE)
return... | int read_ndx_and_attrs(int f_in, int f_out, int *iflag_ptr, uchar *type_ptr,
char *buf, int *len_ptr)
{
int len, iflags = 0;
struct file_list *flist;
uchar fnamecmp_type = FNAMECMP_FNAME;
int ndx;
read_loop:
while (1) {
ndx = read_ndx(f_in);
if (ndx >= 0)
break;
if (ndx == NDX_DONE)
return... | 1 | rsync | 70aeb5fddd1b2f8e143276f8d5a085db16c593b9 | ||
7 | int dns_read_name(unsigned char *buffer, unsigned char *bufend, unsigned char *name, char *destination, int dest_len, <vul_start> int *offset, unsigned int depth) <vul_end> { int nb_bytes = 0, n = 0; int label_len; unsigned char *reader = name; char *dest = destination; while (1) { /* Name compression is in use */ if (... | <vul_start> int *offset) <vul_end> <vul_start> <vul_end> <vul_start> dest, dest_len - nb_bytes, offset); <vul_end> | int dns_read_name(unsigned char *buffer, unsigned char *bufend,
unsigned char *name, char *destination, int dest_len,
int *offset, unsigned int depth)
{
int nb_bytes = 0, n = 0;
int label_len;
unsigned char *reader = name;
char *dest = destination;
while (1) {
... | int dns_read_name(unsigned char *buffer, unsigned char *bufend,
unsigned char *name, char *destination, int dest_len,
int *offset)
{
int nb_bytes = 0, n = 0;
int label_len;
unsigned char *reader = name;
char *dest = destination;
while (1) {
/* Name compression ... | 3 | haproxy | 58df5aea0a0c926b2238f65908f5e9f83d1cca25 | ||
8 | void SplashOutputDev::drawImage(GfxState *state, Object *ref, Stream *str, int width, int height, GfxImageColorMap *colorMap, int *maskColors, GBool inlineImg) { double *ctm; SplashCoord mat[6]; SplashOutImageData imgData; SplashColorMode srcMode; SplashImageSource src; GfxGray gray; GfxRGB rgb; #if SPLASH_CMYK GfxCMYK... | <vul_start> imgData.lookup = (SplashColorPtr)gmallocn(n, 3); <vul_end> | void SplashOutputDev::drawImage(GfxState *state, Object *ref, Stream *str,
int width, int height,
GfxImageColorMap *colorMap,
int *maskColors, GBool inlineImg) {
double *ctm;
SplashCoord mat[6];
SplashOutImageData imgData;
SplashColorMode srcMode;
SplashImageSource src;
GfxGray gray;
GfxRGB rg... | void SplashOutputDev::drawImage(GfxState *state, Object *ref, Stream *str,
int width, int height,
GfxImageColorMap *colorMap,
int *maskColors, GBool inlineImg) {
double *ctm;
SplashCoord mat[6];
SplashOutImageData imgData;
SplashColorMode srcMode;
SplashImageSource src;
GfxGray gray;
GfxRGB rg... | 1 | poppler | 284a92899602daa4a7f429e61849e794569310b5 | ||
9 | void ArthurOutputDev::drawImage(GfxState *state, Object *ref, Stream *str, int width, int height, GfxImageColorMap *colorMap, int *maskColors, GBool inlineImg) { unsigned char *buffer; unsigned int *dest; int x, y; ImageStream *imgStr; Guchar *pix; int i; double *ctm; QMatrix matrix; int is_identity_transform; <vul_sta... | <vul_start> buffer = (unsigned char *)gmalloc (width * height * 4); <vul_end> | void ArthurOutputDev::drawImage(GfxState *state, Object *ref, Stream *str,
int width, int height,
GfxImageColorMap *colorMap,
int *maskColors, GBool inlineImg)
{
unsigned char *buffer;
unsigned int *dest;
int x, y;
ImageStream *imgStr;
Guchar *pix;
int i;
double *ctm;
QMatrix matrix;
int... | void ArthurOutputDev::drawImage(GfxState *state, Object *ref, Stream *str,
int width, int height,
GfxImageColorMap *colorMap,
int *maskColors, GBool inlineImg)
{
unsigned char *buffer;
unsigned int *dest;
int x, y;
ImageStream *imgStr;
Guchar *pix;
int i;
double *ctm;
QMatrix matrix;
int... | 1 | poppler | 7b2d314a61fd0e12f47c62996cb49ec0d1ba747a | ||
10 | DynamicMetadataProvider::DynamicMetadataProvider(const DOMElement* e) <vul_start> : saml2md::DynamicMetadataProvider(e), MetadataProvider(e), <vul_end> m_verifyHost(XMLHelper::getAttrBool(e, true, verifyHost)), m_ignoreTransport(XMLHelper::getAttrBool(e, false, ignoreTransport)), m_encoded(true), m_trust(nullptr) { con... | <vul_start> : saml2md::DynamicMetadataProvider(e), <vul_end> | DynamicMetadataProvider::DynamicMetadataProvider(const DOMElement* e)
: saml2md::DynamicMetadataProvider(e), MetadataProvider(e),
m_verifyHost(XMLHelper::getAttrBool(e, true, verifyHost)),
m_ignoreTransport(XMLHelper::getAttrBool(e, false, ignoreTransport)),
m_encoded(true), m_trust(null... | DynamicMetadataProvider::DynamicMetadataProvider(const DOMElement* e)
: saml2md::DynamicMetadataProvider(e),
m_verifyHost(XMLHelper::getAttrBool(e, true, verifyHost)),
m_ignoreTransport(XMLHelper::getAttrBool(e, false, ignoreTransport)),
m_encoded(true), m_trust(nullptr)
{
const DOME... | 1 | shibboleth | b66cceb0e992c351ad5e2c665229ede82f261b16 | ||
11 | static int nfs_readlink_req(struct nfs_priv *npriv, struct nfs_fh *fh, char **target) { uint32_t data[1024]; uint32_t *p; uint32_t len; struct packet *nfs_packet; /* * struct READLINK3args { * nfs_fh3 symlink; * }; * * struct READLINK3resok { * post_op_attr symlink_attributes; * nfspath3 data; * }; * * struct READLI... | <vul_start> <vul_end> | static int nfs_readlink_req(struct nfs_priv *npriv, struct nfs_fh *fh,
char **target)
{
uint32_t data[1024];
uint32_t *p;
uint32_t len;
struct packet *nfs_packet;
/*
* struct READLINK3args {
* nfs_fh3 symlink;
* };
*
* struct READLINK3resok {
* post_op_attr symlink_attributes;
* nfspath3 d... | static int nfs_readlink_req(struct nfs_priv *npriv, struct nfs_fh *fh,
char **target)
{
uint32_t data[1024];
uint32_t *p;
uint32_t len;
struct packet *nfs_packet;
/*
* struct READLINK3args {
* nfs_fh3 symlink;
* };
*
* struct READLINK3resok {
* post_op_attr symlink_attributes;
* nfspath3 d... | 1 | pengutronix | 574ce994016107ad8ab0f845a785f28d7eaa5208 | ||
12 | static int nfs_readlink_reply(unsigned char *pkt, unsigned len) { uint32_t *data; char *path; <vul_start> unsigned int rlen; <vul_end> int ret; ret = rpc_check_reply(pkt, 1); if (ret) return ret; data = (uint32_t *)(pkt + sizeof(struct rpc_reply)); data++; rlen = ntohl(net_read_uint32(data)); /* new path length */ <vul... | <vul_start> int rlen; <vul_end> <vul_start> <vul_end> | static int nfs_readlink_reply(unsigned char *pkt, unsigned len)
{
uint32_t *data;
char *path;
unsigned int rlen;
int ret;
ret = rpc_check_reply(pkt, 1);
if (ret)
return ret;
data = (uint32_t *)(pkt + sizeof(struct rpc_reply));
data++;
rlen = ntohl(net_read_uint32(data)); /* new path length */
... | static int nfs_readlink_reply(unsigned char *pkt, unsigned len)
{
uint32_t *data;
char *path;
int rlen;
int ret;
ret = rpc_check_reply(pkt, 1);
if (ret)
return ret;
data = (uint32_t *)(pkt + sizeof(struct rpc_reply));
data++;
rlen = ntohl(net_read_uint32(data)); /* new path length */
data++;
... | 2 | pengutronix | 84986ca024462058574432b5483f4bf9136c538d | ||
13 | void sum_update(const char *p, int32 len) { switch (cursum_type) { case CSUM_MD5: md5_update(&md, (uchar *)p, len); break; case CSUM_MD4: case CSUM_MD4_OLD: case CSUM_MD4_BUSTED: <vul_start> case CSUM_MD4_ARCHAIC: <vul_end> if (len + sumresidue < CSUM_CHUNK) { memcpy(md.buffer + sumresidue, p, len); sumresidue += len; ... | <vul_start> <vul_end> | void sum_update(const char *p, int32 len)
{
switch (cursum_type) {
case CSUM_MD5:
md5_update(&md, (uchar *)p, len);
break;
case CSUM_MD4:
case CSUM_MD4_OLD:
case CSUM_MD4_BUSTED:
case CSUM_MD4_ARCHAIC:
if (len + sumresidue < CSUM_CHUNK) {
... | void sum_update(const char *p, int32 len)
{
switch (cursum_type) {
case CSUM_MD5:
md5_update(&md, (uchar *)p, len);
break;
case CSUM_MD4:
case CSUM_MD4_OLD:
case CSUM_MD4_BUSTED:
if (len + sumresidue < CSUM_CHUNK) {
memcpy(md.buffer + sumresi... | 1 | samba | c252546ceeb0925eb8a4061315e3ff0a8c55b48b | ||
14 | char *auth_server(int f_in, int f_out, int module, const char *host, const char *addr, const char *leader) { char *users = lp_auth_users(module); char challenge[MAX_DIGEST_LEN*2]; char line[BIGPATHBUFLEN]; char **auth_uid_groups = NULL; int auth_uid_groups_cnt = -1; const char *err = NULL; int group_match = -1; char *t... | <vul_start> <vul_end> | char *auth_server(int f_in, int f_out, int module, const char *host,
const char *addr, const char *leader)
{
char *users = lp_auth_users(module);
char challenge[MAX_DIGEST_LEN*2];
char line[BIGPATHBUFLEN];
char **auth_uid_groups = NULL;
int auth_uid_groups_cnt = -1;
const char *err = NULL;
int group_match = ... | char *auth_server(int f_in, int f_out, int module, const char *host,
const char *addr, const char *leader)
{
char *users = lp_auth_users(module);
char challenge[MAX_DIGEST_LEN*2];
char line[BIGPATHBUFLEN];
char **auth_uid_groups = NULL;
int auth_uid_groups_cnt = -1;
const char *err = NULL;
int group_match = ... | 1 | samba | 9a480deec4d20277d8e20bc55515ef0640ca1e55 | ||
15 | char *auth_server(int f_in, int f_out, int module, const char *host, const char *addr, const char *leader) { char *users = lp_auth_users(module); char challenge[MAX_DIGEST_LEN*2]; char line[BIGPATHBUFLEN]; char **auth_uid_groups = NULL; int auth_uid_groups_cnt = -1; const char *err = NULL; int group_match = -1; char *t... | <vul_start> <vul_end> | char *auth_server(int f_in, int f_out, int module, const char *host,
const char *addr, const char *leader)
{
char *users = lp_auth_users(module);
char challenge[MAX_DIGEST_LEN*2];
char line[BIGPATHBUFLEN];
char **auth_uid_groups = NULL;
int auth_uid_groups_cnt = -1;
const char *err = NULL;
int group_match = ... | char *auth_server(int f_in, int f_out, int module, const char *host,
const char *addr, const char *leader)
{
char *users = lp_auth_users(module);
char challenge[MAX_DIGEST_LEN*2];
char line[BIGPATHBUFLEN];
char **auth_uid_groups = NULL;
int auth_uid_groups_cnt = -1;
const char *err = NULL;
int group_match = ... | 1 | rsync | 9a480deec4d20277d8e20bc55515ef0640ca1e55 | ||
16 | static int dns_parse_callback(void *c, int rr, const void *data, int len, const void *packet) { char tmp[256]; struct dpc_ctx *ctx = c; <vul_start> if (ctx->cnt >= MAXADDRS) return -1; <vul_end> switch (rr) { case RR_A: if (len != 4) return -1; ctx->addrs[ctx->cnt].scopeid = 0; memcpy(ctx->addrs[ctx->cnt++].addr, data,... | <vul_start> <vul_end> | static int dns_parse_callback(void *c, int rr, const void *data, int len, const void *packet)
{
char tmp[256];
struct dpc_ctx *ctx = c;
if (ctx->cnt >= MAXADDRS) return -1;
switch (rr) {
case RR_A:
if (len != 4) return -1;
ctx->addrs[ctx->cnt].scopeid = 0;
memcpy(ctx->addrs[ctx->cnt++].addr, data, 4);
... | static int dns_parse_callback(void *c, int rr, const void *data, int len, const void *packet)
{
char tmp[256];
struct dpc_ctx *ctx = c;
switch (rr) {
case RR_A:
if (len != 4) return -1;
ctx->addrs[ctx->cnt].scopeid = 0;
memcpy(ctx->addrs[ctx->cnt++].addr, data, 4);
break;
case RR_AAAA:
if (len != 1... | 1 | musl | 45ca5d3fcb6f874bf5ba55d0e9651cef68515395 | ||
17 | bool extractPages (const char *srcFileName, const char *destFileName) { <vul_start> char pathName[4096]; <vul_end> GooString *gfileName = new GooString (srcFileName); PDFDoc *doc = new PDFDoc (gfileName, NULL, NULL, NULL); if (!doc->isOk()) { error(errSyntaxError, -1, "Could not extract page(s) from damaged file ('{0:s... | <vul_start> char pathName[1024]; <vul_end> <vul_start> sprintf (pathName, destFileName, pageNo); <vul_end> | bool extractPages (const char *srcFileName, const char *destFileName) {
char pathName[4096];
GooString *gfileName = new GooString (srcFileName);
PDFDoc *doc = new PDFDoc (gfileName, NULL, NULL, NULL);
if (!doc->isOk()) {
error(errSyntaxError, -1, "Could not extract page(s) from damaged file ('{0:s}')",... | bool extractPages (const char *srcFileName, const char *destFileName) {
char pathName[1024];
GooString *gfileName = new GooString (srcFileName);
PDFDoc *doc = new PDFDoc (gfileName, NULL, NULL, NULL);
if (!doc->isOk()) {
error(errSyntaxError, -1, "Could not extract page(s) from damaged file ('{0:s}')",... | 2 | poppler | b8682d868ddf7f741e93b791588af0932893f95c | ||
18 | walk_string(fz_context *ctx, int uni, int remove, editable_str *str) { int rune; <vul_start> if (str->utf8 == NULL || str->pos == -1) <vul_end> return; do { char *s = &str->utf8[str->pos]; size_t len; int n = fz_chartorune(&rune, s); if (rune == uni) { /* Match. Skip over that one. */ str->pos += n; } else if (uni == 3... | <vul_start> if (str->utf8 == NULL) <vul_end> | walk_string(fz_context *ctx, int uni, int remove, editable_str *str)
{
int rune;
if (str->utf8 == NULL || str->pos == -1)
return;
do
{
char *s = &str->utf8[str->pos];
size_t len;
int n = fz_chartorune(&rune, s);
if (rune == uni)
{
/* Match. Skip over that one. *... | walk_string(fz_context *ctx, int uni, int remove, editable_str *str)
{
int rune;
if (str->utf8 == NULL)
return;
do
{
char *s = &str->utf8[str->pos];
size_t len;
int n = fz_chartorune(&rune, s);
if (rune == uni)
{
/* Match. Skip over that one. */
str->pos += n... | 1 | ghostscript | 97096297d409ec6f206298444ba00719607e8ba8 | ||
19 | void red_channel_pipes_add_empty_msg(RedChannel *channel, int msg_type) { <vul_start> RingItem *link, *next; RING_FOREACH_SAFE(link, next, &channel->clients) { <vul_end> red_channel_client_pipe_add_empty_msg( SPICE_CONTAINEROF(link, RedChannelClient, channel_link), msg_type); } } | <vul_start> RingItem *link; RING_FOREACH(link, &channel->clients) { <vul_end> | void red_channel_pipes_add_empty_msg(RedChannel *channel, int msg_type)
{
RingItem *link, *next;
RING_FOREACH_SAFE(link, next, &channel->clients) {
red_channel_client_pipe_add_empty_msg(
SPICE_CONTAINEROF(link, RedChannelClient, channel_link),
msg_type);
}
}
| void red_channel_pipes_add_empty_msg(RedChannel *channel, int msg_type)
{
RingItem *link;
RING_FOREACH(link, &channel->clients) {
red_channel_client_pipe_add_empty_msg(
SPICE_CONTAINEROF(link, RedChannelClient, channel_link),
msg_type);
}
}
| 1 | spice | 53488f0275d6c8a121af49f7ac817d09ce68090d | ||
20 | void red_channel_pipes_add_type(RedChannel *channel, int pipe_item_type) { <vul_start> RingItem *link, *next; RING_FOREACH_SAFE(link, next, &channel->clients) { <vul_end> red_channel_client_pipe_add_type( SPICE_CONTAINEROF(link, RedChannelClient, channel_link), pipe_item_type); } } | <vul_start> RingItem *link; RING_FOREACH(link, &channel->clients) { <vul_end> | void red_channel_pipes_add_type(RedChannel *channel, int pipe_item_type)
{
RingItem *link, *next;
RING_FOREACH_SAFE(link, next, &channel->clients) {
red_channel_client_pipe_add_type(
SPICE_CONTAINEROF(link, RedChannelClient, channel_link),
pipe_item_type);
}
}
| void red_channel_pipes_add_type(RedChannel *channel, int pipe_item_type)
{
RingItem *link;
RING_FOREACH(link, &channel->clients) {
red_channel_client_pipe_add_type(
SPICE_CONTAINEROF(link, RedChannelClient, channel_link),
pipe_item_type);
}
}
| 1 | spice | 53488f0275d6c8a121af49f7ac817d09ce68090d | ||
21 | _PUBLIC_ codepoint_t next_codepoint_handle_ext( struct smb_iconv_handle *ic, const char *str, size_t len, charset_t src_charset, size_t *bytes_consumed) { /* it cannot occupy more than 4 bytes in UTF16 format */ uint8_t buf[4]; smb_iconv_t descriptor; size_t ilen_orig; size_t ilen; size_t olen; char *outbuf; <vul_start... | <vul_start> if ((str[0] & 0x80) == 0) { <vul_end> | _PUBLIC_ codepoint_t next_codepoint_handle_ext(
struct smb_iconv_handle *ic,
const char *str, size_t len,
charset_t src_charset,
size_t *bytes_consumed)
{
/* it cannot occupy more than 4 bytes in UTF16 format */
uint8_t buf[4];
smb_iconv_t descriptor;
size_t ilen_orig;
size_t ilen;
size_t olen;... | _PUBLIC_ codepoint_t next_codepoint_handle_ext(
struct smb_iconv_handle *ic,
const char *str, size_t len,
charset_t src_charset,
size_t *bytes_consumed)
{
/* it cannot occupy more than 4 bytes in UTF16 format */
uint8_t buf[4];
smb_iconv_t descriptor;
size_t ilen_orig;
size_t ilen;
size_t olen;... | 1 | samba | 538d305de91e34a2938f5f219f18bf0e1918763f | ||
22 | _PUBLIC_ char *strupper_talloc_n_handle(struct smb_iconv_handle *iconv_handle, TALLOC_CTX *ctx, const char *src, size_t n) { size_t size=0; char *dest; if (!src) { return NULL; } /* this takes advantage of the fact that upper/lower can't change the length of a character by more than 1 byte */ dest = talloc_array(ctx, c... | <vul_start> while (n-- && *src) { <vul_end> <vul_start> <vul_end> | _PUBLIC_ char *strupper_talloc_n_handle(struct smb_iconv_handle *iconv_handle,
TALLOC_CTX *ctx, const char *src, size_t n)
{
size_t size=0;
char *dest;
if (!src) {
return NULL;
}
/* this takes advantage of the fact that upper/lower can't
change the length of a character by more than 1 byte */
dest = ... | _PUBLIC_ char *strupper_talloc_n_handle(struct smb_iconv_handle *iconv_handle,
TALLOC_CTX *ctx, const char *src, size_t n)
{
size_t size=0;
char *dest;
if (!src) {
return NULL;
}
/* this takes advantage of the fact that upper/lower can't
change the length of a character by more than 1 byte */
dest = ... | 2 | samba | a118d4220ed85749c07fb43c1229d9e2fecbea6b | ||
23 | static bool ldb_dn_explode(struct ldb_dn *dn) { char *p, *ex_name = NULL, *ex_value = NULL, *data, *d, *dt, *t; bool trim = true; bool in_extended = true; bool in_ex_name = false; bool in_ex_value = false; bool in_attr = false; bool in_value = false; bool in_quote = false; bool is_oid = false; bool escape = false; unsi... | <vul_start> dn->components[dn->comp_num].value.data = (uint8_t *)talloc_strdup(dn->components, dt); <vul_end> <vul_start> <vul_end> | static bool ldb_dn_explode(struct ldb_dn *dn)
{
char *p, *ex_name = NULL, *ex_value = NULL, *data, *d, *dt, *t;
bool trim = true;
bool in_extended = true;
bool in_ex_name = false;
bool in_ex_value = false;
bool in_attr = false;
bool in_value = false;
bool in_quote = false;
bool is_oid = false;
bool escape = f... | static bool ldb_dn_explode(struct ldb_dn *dn)
{
char *p, *ex_name = NULL, *ex_value = NULL, *data, *d, *dt, *t;
bool trim = true;
bool in_extended = true;
bool in_ex_name = false;
bool in_ex_value = false;
bool in_attr = false;
bool in_value = false;
bool in_quote = false;
bool is_oid = false;
bool escape = f... | 2 | samba | f36cb71c330a52106e36028b3029d952257baf15 | ||
24 | NTSTATUS check_reduced_name_with_privilege(connection_struct *conn, const char *fname, struct smb_request *smbreq) { NTSTATUS status; TALLOC_CTX *ctx = talloc_tos(); const char *conn_rootdir; size_t rootdir_len; char *dir_name = NULL; const char *last_component = NULL; char *resolved_name = NULL; char *saved_dir = NULL... | <vul_start> <vul_end> | NTSTATUS check_reduced_name_with_privilege(connection_struct *conn,
const char *fname,
struct smb_request *smbreq)
{
NTSTATUS status;
TALLOC_CTX *ctx = talloc_tos();
const char *conn_rootdir;
size_t rootdir_len;
char *dir_name = NULL;
const char *last_component = NULL;
char *resolved_name = NULL;
char *sa... | NTSTATUS check_reduced_name_with_privilege(connection_struct *conn,
const char *fname,
struct smb_request *smbreq)
{
NTSTATUS status;
TALLOC_CTX *ctx = talloc_tos();
const char *conn_rootdir;
size_t rootdir_len;
char *dir_name = NULL;
const char *last_component = NULL;
char *resolved_name = NULL;
char *sa... | 1 | samba | 4278ef25f64d5fdbf432ff1534e275416ec9561e | ||
25 | plan_a (char const *filename) { char const *s; char const *lim; char const **ptr; char *buffer; lin iline; size_t size = instat.st_size; /* Fail if the file size doesn't fit in a size_t, or if storage isn't available. */ if (! (size == instat.st_size && (buffer = malloc (size ? size : (size_t) 1)))) return false; /* R... | <vul_start> int ifd = safe_open (filename, O_RDONLY|binary_transput, 0); <vul_end> <vul_start> <vul_end> | plan_a (char const *filename)
{
char const *s;
char const *lim;
char const **ptr;
char *buffer;
lin iline;
size_t size = instat.st_size;
/* Fail if the file size doesn't fit in a size_t,
or if storage isn't available. */
if (! (size == instat.st_size
&& (buffer = malloc (size ? size : (size_t) ... | plan_a (char const *filename)
{
char const *s;
char const *lim;
char const **ptr;
char *buffer;
lin iline;
size_t size = instat.st_size;
/* Fail if the file size doesn't fit in a size_t,
or if storage isn't available. */
if (! (size == instat.st_size
&& (buffer = malloc (size ? size : (size_t) ... | 2 | savannah | dce4683cbbe107a95f1f0d45fabc304acfb5d71a | ||
26 | destroy_one_secret (gpointer data) { char *secret = (char *) data; /* Don't leave the secret lying around in memory */ <vul_start> <vul_end> memset (secret, 0, strlen (secret)); g_free (secret); } | <vul_start> g_message ("%s: destroying %s", __func__, secret); <vul_end> | destroy_one_secret (gpointer data)
{
char *secret = (char *) data;
/* Don't leave the secret lying around in memory */
memset (secret, 0, strlen (secret));
g_free (secret);
}
| destroy_one_secret (gpointer data)
{
char *secret = (char *) data;
/* Don't leave the secret lying around in memory */
g_message ("%s: destroying %s", __func__, secret);
memset (secret, 0, strlen (secret));
g_free (secret);
}
| 1 | NetworkManager | 78ce088843d59d4494965bfc40b30a2e63d065f6 | ||
27 | zsetcolor(i_ctx_t * i_ctx_p) { os_ptr op = osp; es_ptr ep; const gs_color_space * pcs = gs_currentcolorspace(igs); gs_client_color cc; int n_comps, n_numeric_comps, num_offset = 0, code, depth; PS_colour_space_t *space; /* initialize the client color pattern pointer for GC ... | <vul_start> code = dict_find_string(op, "Implementation", &pImpl); if (code != 0) { <vul_end> | zsetcolor(i_ctx_t * i_ctx_p)
{
os_ptr op = osp;
es_ptr ep;
const gs_color_space * pcs = gs_currentcolorspace(igs);
gs_client_color cc;
int n_comps, n_numeric_comps, num_offset = 0, code, depth;
PS_colour_space_t *space;
/* initialize the client ... | zsetcolor(i_ctx_t * i_ctx_p)
{
os_ptr op = osp;
es_ptr ep;
const gs_color_space * pcs = gs_currentcolorspace(igs);
gs_client_color cc;
int n_comps, n_numeric_comps, num_offset = 0, code, depth;
PS_colour_space_t *space;
/* initialize the client ... | 1 | ghostscript | b326a71659b7837d3acde954b18bda1a6f5e9498 | ||
28 | fd_read_body (const char *downloaded_filename, int fd, FILE *out, wgint toread, wgint startpos, wgint *qtyread, wgint *qtywritten, double *elapsed, int flags, FILE *out2) { int ret = 0; #undef max #define max(a,b) ((a) > (b) ? (a) : (b)) int dlbufsize = max (BUFSIZ, 8 * 1024); char *dlbuf = xmalloc (dlbufsize); struct ... | <vul_start> <vul_end> | fd_read_body (const char *downloaded_filename, int fd, FILE *out, wgint toread, wgint startpos,
wgint *qtyread, wgint *qtywritten, double *elapsed, int flags,
FILE *out2)
{
int ret = 0;
#undef max
#define max(a,b) ((a) > (b) ? (a) : (b))
int dlbufsize = max (BUFSIZ, 8 * 1024);
char *d... | fd_read_body (const char *downloaded_filename, int fd, FILE *out, wgint toread, wgint startpos,
wgint *qtyread, wgint *qtywritten, double *elapsed, int flags,
FILE *out2)
{
int ret = 0;
#undef max
#define max(a,b) ((a) > (b) ? (a) : (b))
int dlbufsize = max (BUFSIZ, 8 * 1024);
char *d... | 1 | savannah | ba6b44f6745b14dce414761a8e4b35d31b176bba | ||
29 | fd_read_body (const char *downloaded_filename, int fd, FILE *out, wgint toread, wgint startpos, wgint *qtyread, wgint *qtywritten, double *elapsed, int flags, FILE *out2) { int ret = 0; #undef max #define max(a,b) ((a) > (b) ? (a) : (b)) int dlbufsize = max (BUFSIZ, 8 * 1024); char *dlbuf = xmalloc (dlbufsize); struct ... | <vul_start> <vul_end> | fd_read_body (const char *downloaded_filename, int fd, FILE *out, wgint toread, wgint startpos,
wgint *qtyread, wgint *qtywritten, double *elapsed, int flags,
FILE *out2)
{
int ret = 0;
#undef max
#define max(a,b) ((a) > (b) ? (a) : (b))
int dlbufsize = max (BUFSIZ, 8 * 1024);
char *d... | fd_read_body (const char *downloaded_filename, int fd, FILE *out, wgint toread, wgint startpos,
wgint *qtyread, wgint *qtywritten, double *elapsed, int flags,
FILE *out2)
{
int ret = 0;
#undef max
#define max(a,b) ((a) > (b) ? (a) : (b))
int dlbufsize = max (BUFSIZ, 8 * 1024);
char *d... | 1 | wget | ba6b44f6745b14dce414761a8e4b35d31b176bba | ||
30 | check_file_permissions_reduced(i_ctx_t *i_ctx_p, const char *fname, int len, gx_io_device *iodev, const char *permitgroup) { long i; ref *permitlist = NULL; /* an empty string (first character == 0) if '\' character is */ /* recognized as a file name separator as on DOS & Windows */ const char *win_sep2 = "\\"; bool... | <vul_start> if (iodev != iodev_default(imemory)) { <vul_end> | check_file_permissions_reduced(i_ctx_t *i_ctx_p, const char *fname, int len,
gx_io_device *iodev, const char *permitgroup)
{
long i;
ref *permitlist = NULL;
/* an empty string (first character == 0) if '\' character is */
/* recognized as a file name separator as on DOS & Windows... | check_file_permissions_reduced(i_ctx_t *i_ctx_p, const char *fname, int len,
gx_io_device *iodev, const char *permitgroup)
{
long i;
ref *permitlist = NULL;
/* an empty string (first character == 0) if '\' character is */
/* recognized as a file name separator as on DOS & Windows... | 1 | ghostscript | 0d3901189f245232f0161addf215d7268c4d05a3 | ||
31 | struct edid *drm_load_edid_firmware(struct drm_connector *connector) { const char *connector_name = connector->name; char *edidname, *last, *colon, *fwstr, *edidstr, *fallback = NULL; struct edid *edid; if (edid_firmware[0] == '\0') return ERR_PTR(-ENOENT); /* * If there are multiple edid files specified and separated ... | <vul_start> <vul_end> | struct edid *drm_load_edid_firmware(struct drm_connector *connector)
{
const char *connector_name = connector->name;
char *edidname, *last, *colon, *fwstr, *edidstr, *fallback = NULL;
struct edid *edid;
if (edid_firmware[0] == '\0')
return ERR_PTR(-ENOENT);
/*
* If there are multiple edid files specified and... | struct edid *drm_load_edid_firmware(struct drm_connector *connector)
{
const char *connector_name = connector->name;
char *edidname, *last, *colon, *fwstr, *edidstr, *fallback = NULL;
struct edid *edid;
if (edid_firmware[0] == '\0')
return ERR_PTR(-ENOENT);
/*
* If there are multiple edid files specified and... | 1 | drm | 9f1f1a2dab38d4ce87a13565cf4dc1b73bef3a5f | ||
32 | new_msg_register_event (u_int32_t seqnum, struct lsa_filter_type *filter) { u_char buf[OSPF_API_MAX_MSG_SIZE]; struct msg_register_event *emsg; int len; emsg = (struct msg_register_event *) buf; len = sizeof (struct msg_register_event) + filter->num_areas * sizeof (struct in_addr); emsg->filter.typemask = htons (filter... | <vul_start> <vul_end> | new_msg_register_event (u_int32_t seqnum, struct lsa_filter_type *filter)
{
u_char buf[OSPF_API_MAX_MSG_SIZE];
struct msg_register_event *emsg;
int len;
emsg = (struct msg_register_event *) buf;
len = sizeof (struct msg_register_event) +
filter->num_areas * sizeof (struct in_addr);
emsg->filter.typema... | new_msg_register_event (u_int32_t seqnum, struct lsa_filter_type *filter)
{
u_char buf[OSPF_API_MAX_MSG_SIZE];
struct msg_register_event *emsg;
int len;
emsg = (struct msg_register_event *) buf;
len = sizeof (struct msg_register_event) +
filter->num_areas * sizeof (struct in_addr);
emsg->filter.typema... | 1 | savannah | 3f872fe60463a931c5c766dbf8c36870c0023e88 | ||
33 | new_msg_lsa_change_notify (u_char msgtype, u_int32_t seqnum, struct in_addr ifaddr, struct in_addr area_id, u_char is_self_originated, struct lsa_header *data) { u_char buf[OSPF_API_MAX_MSG_SIZE]; struct msg_lsa_change_notify *nmsg; int len; assert (data); nmsg = (struct msg_lsa_change_notify *) buf; <vul_start> <vul_e... | <vul_start> len = ntohs (data->length) + sizeof (struct msg_lsa_change_notify) - sizeof (struct lsa_header); <vul_end> <vul_start> memcpy (&nmsg->data, data, ntohs (data->length)); <vul_end> | new_msg_lsa_change_notify (u_char msgtype,
u_int32_t seqnum,
struct in_addr ifaddr,
struct in_addr area_id,
u_char is_self_originated, struct lsa_header *data)
{
u_char buf[OSPF_API_MAX_MSG_SIZE];
struct msg_lsa_change_notify *nmsg;
int len;
assert (data);
nmsg = (struct msg_lsa_chan... | new_msg_lsa_change_notify (u_char msgtype,
u_int32_t seqnum,
struct in_addr ifaddr,
struct in_addr area_id,
u_char is_self_originated, struct lsa_header *data)
{
u_char buf[OSPF_API_MAX_MSG_SIZE];
struct msg_lsa_change_notify *nmsg;
int len;
assert (data);
nmsg = (struct msg_lsa_chan... | 2 | quagga | 3f872fe60463a931c5c766dbf8c36870c0023e88 | ||
34 | int ASN1_item_ex_d2i(ASN1_VALUE **pval, const unsigned char **in, long len, const ASN1_ITEM *it, int tag, int aclass, char opt, ASN1_TLC *ctx) { const ASN1_TEMPLATE *tt, *errtt = NULL; const ASN1_COMPAT_FUNCS *cf; const ASN1_EXTERN_FUNCS *ef; const ASN1_AUX *aux = it->funcs; ASN1_aux_cb *asn1_cb; const unsigned char *p... | <vul_start> <vul_end> <vul_start> <vul_end> | int ASN1_item_ex_d2i(ASN1_VALUE **pval, const unsigned char **in, long len,
const ASN1_ITEM *it,
int tag, int aclass, char opt, ASN1_TLC *ctx)
{
const ASN1_TEMPLATE *tt, *errtt = NULL;
const ASN1_COMPAT_FUNCS *cf;
const ASN1_EXTERN_FUNCS *ef;
const ASN1_AUX *aux... | int ASN1_item_ex_d2i(ASN1_VALUE **pval, const unsigned char **in, long len,
const ASN1_ITEM *it,
int tag, int aclass, char opt, ASN1_TLC *ctx)
{
const ASN1_TEMPLATE *tt, *errtt = NULL;
const ASN1_COMPAT_FUNCS *cf;
const ASN1_EXTERN_FUNCS *ef;
const ASN1_AUX *aux... | 2 | openssl | cc598f321fbac9c04da5766243ed55d55948637d | ||
35 | static RSA_PSS_PARAMS *rsa_pss_decode(const X509_ALGOR *alg, X509_ALGOR **pmaskHash) { const unsigned char *p; int plen; RSA_PSS_PARAMS *pss; *pmaskHash = NULL; if (!alg->parameter || alg->parameter->type != V_ASN1_SEQUENCE) return NULL; p = alg->parameter->value.sequence->data; plen = alg->parameter->value.sequence->l... | <vul_start> && param->type == V_ASN1_SEQUENCE) { <vul_end> | static RSA_PSS_PARAMS *rsa_pss_decode(const X509_ALGOR *alg,
X509_ALGOR **pmaskHash)
{
const unsigned char *p;
int plen;
RSA_PSS_PARAMS *pss;
*pmaskHash = NULL;
if (!alg->parameter || alg->parameter->type != V_ASN1_SEQUENCE)
return NULL;
p = alg->p... | static RSA_PSS_PARAMS *rsa_pss_decode(const X509_ALGOR *alg,
X509_ALGOR **pmaskHash)
{
const unsigned char *p;
int plen;
RSA_PSS_PARAMS *pss;
*pmaskHash = NULL;
if (!alg->parameter || alg->parameter->type != V_ASN1_SEQUENCE)
return NULL;
p = alg->p... | 1 | openssl | d8541d7e9e63bf5f343af24644046c8d96498c17 | ||
36 | static X509_ALGOR *rsa_mgf1_decode(X509_ALGOR *alg) { const unsigned char *p; int plen; <vul_start> if (alg == NULL || alg->parameter == NULL) <vul_end> return NULL; if (OBJ_obj2nid(alg->algorithm) != NID_mgf1) return NULL; if (alg->parameter->type != V_ASN1_SEQUENCE) return NULL; p = alg->parameter->value.sequence->da... | <vul_start> if (alg == NULL) <vul_end> | static X509_ALGOR *rsa_mgf1_decode(X509_ALGOR *alg)
{
const unsigned char *p;
int plen;
if (alg == NULL || alg->parameter == NULL)
return NULL;
if (OBJ_obj2nid(alg->algorithm) != NID_mgf1)
return NULL;
if (alg->parameter->type != V_ASN1_SEQUENCE)
return NULL;
p = a... | static X509_ALGOR *rsa_mgf1_decode(X509_ALGOR *alg)
{
const unsigned char *p;
int plen;
if (alg == NULL)
return NULL;
if (OBJ_obj2nid(alg->algorithm) != NID_mgf1)
return NULL;
if (alg->parameter->type != V_ASN1_SEQUENCE)
return NULL;
p = alg->parameter->value.seque... | 1 | openssl | c394a488942387246653833359a5c94b5832674e | ||
37 | void Splash::blitMask(SplashBitmap *src, int xDest, int yDest, SplashClipResult clipRes) { SplashPipe pipe; Guchar *p; int w, h, x, y; w = src->getWidth(); h = src->getHeight(); <vul_start> p = src->getDataPtr(); if (p == NULL) { error(errInternal, -1, "src->getDataPtr() is NULL in Splash::blitMask"); return; } <vul_en... | <vul_start> <vul_end> <vul_start> p = src->getDataPtr(); <vul_end> <vul_start> p = src->getDataPtr(); <vul_end> | void Splash::blitMask(SplashBitmap *src, int xDest, int yDest,
SplashClipResult clipRes) {
SplashPipe pipe;
Guchar *p;
int w, h, x, y;
w = src->getWidth();
h = src->getHeight();
p = src->getDataPtr();
if (p == NULL) {
error(errInternal, -1, "src->getDataPtr() is NULL in Splash::blitMask");... | void Splash::blitMask(SplashBitmap *src, int xDest, int yDest,
SplashClipResult clipRes) {
SplashPipe pipe;
Guchar *p;
int w, h, x, y;
w = src->getWidth();
h = src->getHeight();
if (vectorAntialias && clipRes != splashClipAllInside) {
pipeInit(&pipe, xDest, yDest, state->fillPattern, NULL,... | 3 | poppler | a9b8ab4657dec65b8b86c225d12c533ad7e984e2 | ||
38 | void Splash::arbitraryTransformMask(SplashImageMaskSource src, void *srcData, int srcWidth, int srcHeight, SplashCoord *mat, GBool glyphMode) { SplashBitmap *scaledMask; SplashClipResult clipRes, clipRes2; SplashPipe pipe; int scaledWidth, scaledHeight, t0, t1; SplashCoord r00, r01, r10, r11, det, ir00, ir01, ir10, ir1... | <vul_start> <vul_end> | void Splash::arbitraryTransformMask(SplashImageMaskSource src, void *srcData,
int srcWidth, int srcHeight,
SplashCoord *mat, GBool glyphMode) {
SplashBitmap *scaledMask;
SplashClipResult clipRes, clipRes2;
SplashPipe pipe;
int scaledWidth, scaledHeight, t0, t1;
SplashCoord r00, r01, r10, r11, ... | void Splash::arbitraryTransformMask(SplashImageMaskSource src, void *srcData,
int srcWidth, int srcHeight,
SplashCoord *mat, GBool glyphMode) {
SplashBitmap *scaledMask;
SplashClipResult clipRes, clipRes2;
SplashPipe pipe;
int scaledWidth, scaledHeight, t0, t1;
SplashCoord r00, r01, r10, r11, ... | 1 | poppler | a205e71a2dbe0c8d4f4905a76a3f79ec522eacec | ||
39 | token_continue(i_ctx_t *i_ctx_p, scanner_state * pstate, bool save) { os_ptr op = osp; int code; ref token; <vul_start> /* Since we might free pstate below, and we're dealing with * gc memory referenced by the stack, we need to explicitly * remove the reference to pstate from the stack, otherwise * the garbager will fa... | <vul_start> <vul_end> | token_continue(i_ctx_t *i_ctx_p, scanner_state * pstate, bool save)
{
os_ptr op = osp;
int code;
ref token;
/* Since we might free pstate below, and we're dealing with
* gc memory referenced by the stack, we need to explicitly
* remove the reference to pstate from the stack, otherwise
... | token_continue(i_ctx_t *i_ctx_p, scanner_state * pstate, bool save)
{
os_ptr op = osp;
int code;
ref token;
/* Note that gs_scan_token may change osp! */
pop(1); /* remove the file or scanner state */
again:
gs_scanner_error_object(i_ctx_p, pstate, &i_ctx_p->er... | 1 | ghostscript | 671fd59eb657743aa86fbc1895cb15872a317caa | ||
40 | ft_smooth_render_generic( FT_Renderer render, FT_GlyphSlot slot, FT_Render_Mode mode, const FT_Vector* origin, FT_Render_Mode required_mode ) { FT_Error error; FT_Outline* outline = NULL; FT_BBox cbox; FT_UInt width, height, height_org, width_org, pitch; FT_Bitmap* bitmap; FT_Memory ... | <vul_start> /* allocate new one, depends on pixel format */ <vul_end> <vul_start> <vul_end> | ft_smooth_render_generic( FT_Renderer render,
FT_GlyphSlot slot,
FT_Render_Mode mode,
const FT_Vector* origin,
FT_Render_Mode required_mode )
{
FT_Error error;
FT_Outline* o... | ft_smooth_render_generic( FT_Renderer render,
FT_GlyphSlot slot,
FT_Render_Mode mode,
const FT_Vector* origin,
FT_Render_Mode required_mode )
{
FT_Error error;
FT_Outline* o... | 2 | savannah | 79972af4f0485a11dcb19551356c45245749fc5b | ||
41 | ProcSendEvent(ClientPtr client) { WindowPtr pWin; WindowPtr effectiveFocus = NullWindow; /* only set if dest==InputFocus */ DeviceIntPtr dev = PickPointer(client); DeviceIntPtr keybd = GetMaster(dev, MASTER_KEYBOARD); SpritePtr pSprite = dev->spriteInfo->sprite; REQUEST(xSendEventReq); REQUEST_SIZE_MATCH(xSendEven... | <vul_start> <vul_end> | ProcSendEvent(ClientPtr client)
{
WindowPtr pWin;
WindowPtr effectiveFocus = NullWindow; /* only set if dest==InputFocus */
DeviceIntPtr dev = PickPointer(client);
DeviceIntPtr keybd = GetMaster(dev, MASTER_KEYBOARD);
SpritePtr pSprite = dev->spriteInfo->sprite;
REQUEST(xSendEventReq);
... | ProcSendEvent(ClientPtr client)
{
WindowPtr pWin;
WindowPtr effectiveFocus = NullWindow; /* only set if dest==InputFocus */
DeviceIntPtr dev = PickPointer(client);
DeviceIntPtr keybd = GetMaster(dev, MASTER_KEYBOARD);
SpritePtr pSprite = dev->spriteInfo->sprite;
REQUEST(xSendEventReq);
... | 1 | xserver | 215f894965df5fb0bb45b107d84524e700d2073c | ||
42 | int X509_verify_cert(X509_STORE_CTX *ctx) { X509 *x, *xtmp, *xtmp2, *chain_ss = NULL; int bad_chain = 0; X509_VERIFY_PARAM *param = ctx->param; int depth, i, ok = 0; int num, j, retry; int (*cb) (int xok, X509_STORE_CTX *xctx); STACK_OF(X509) *sktmp = NULL; if (ctx->cert == NULL) { X509err(X509_F_X509_VERIFY_CERT, X509... | <vul_start> ctx->last_untrusted--; <vul_end> <vul_start> <vul_end> | int X509_verify_cert(X509_STORE_CTX *ctx)
{
X509 *x, *xtmp, *xtmp2, *chain_ss = NULL;
int bad_chain = 0;
X509_VERIFY_PARAM *param = ctx->param;
int depth, i, ok = 0;
int num, j, retry;
int (*cb) (int xok, X509_STORE_CTX *xctx);
STACK_OF(X509) *sktmp = NULL;
if (ctx->cert == NULL) {
... | int X509_verify_cert(X509_STORE_CTX *ctx)
{
X509 *x, *xtmp, *xtmp2, *chain_ss = NULL;
int bad_chain = 0;
X509_VERIFY_PARAM *param = ctx->param;
int depth, i, ok = 0;
int num, j, retry;
int (*cb) (int xok, X509_STORE_CTX *xctx);
STACK_OF(X509) *sktmp = NULL;
if (ctx->cert == NULL) {
... | 2 | openssl | 9a0db453ba017ebcaccbee933ee6511a9ae4d1c8 | ||
43 | pax_decode_header (struct tar_sparse_file *file) { if (file->stat_info->sparse_major > 0) { uintmax_t u; char nbuf[UINTMAX_STRSIZE_BOUND]; union block *blk; char *p; size_t i; off_t start; #define COPY_BUF(b,buf,src) do \ { ... | <vul_start> <vul_end> <vul_start> <vul_end> | pax_decode_header (struct tar_sparse_file *file)
{
if (file->stat_info->sparse_major > 0)
{
uintmax_t u;
char nbuf[UINTMAX_STRSIZE_BOUND];
union block *blk;
char *p;
size_t i;
off_t start;
#define COPY_BUF(b,buf,src) do \
{ ... | pax_decode_header (struct tar_sparse_file *file)
{
if (file->stat_info->sparse_major > 0)
{
uintmax_t u;
char nbuf[UINTMAX_STRSIZE_BOUND];
union block *blk;
char *p;
size_t i;
off_t start;
#define COPY_BUF(b,buf,src) do \
{ ... | 2 | savannah | cb07844454d8cc9fb21f53ace75975f91185a120 | ||
44 | pax_decode_header (struct tar_sparse_file *file) { if (file->stat_info->sparse_major > 0) { uintmax_t u; char nbuf[UINTMAX_STRSIZE_BOUND]; union block *blk; char *p; size_t i; off_t start; #define COPY_BUF(b,buf,src) do \ { ... | <vul_start> <vul_end> <vul_start> <vul_end> | pax_decode_header (struct tar_sparse_file *file)
{
if (file->stat_info->sparse_major > 0)
{
uintmax_t u;
char nbuf[UINTMAX_STRSIZE_BOUND];
union block *blk;
char *p;
size_t i;
off_t start;
#define COPY_BUF(b,buf,src) do \
{ ... | pax_decode_header (struct tar_sparse_file *file)
{
if (file->stat_info->sparse_major > 0)
{
uintmax_t u;
char nbuf[UINTMAX_STRSIZE_BOUND];
union block *blk;
char *p;
size_t i;
off_t start;
#define COPY_BUF(b,buf,src) do \
{ ... | 2 | tar | cb07844454d8cc9fb21f53ace75975f91185a120 | ||
45 | static void gx_ttfReader__Read(ttfReader *self, void *p, int n) { gx_ttfReader *r = (gx_ttfReader *)self; const byte *q; if (!r->error) { if (r->extra_glyph_index != -1) { q = r->glyph_data.bits.data + r->pos; <vul_start> r->error = ((r->pos >= r->glyph_data.bits.size || r->glyph_data.bits.size - r->pos < n) ? <vul_end... | <vul_start> r->error = (r->glyph_data.bits.size - r->pos < n ? <vul_end> | static void gx_ttfReader__Read(ttfReader *self, void *p, int n)
{
gx_ttfReader *r = (gx_ttfReader *)self;
const byte *q;
if (!r->error) {
if (r->extra_glyph_index != -1) {
q = r->glyph_data.bits.data + r->pos;
r->error = ((r->pos >= r->glyph_data.bits.size ||
... | static void gx_ttfReader__Read(ttfReader *self, void *p, int n)
{
gx_ttfReader *r = (gx_ttfReader *)self;
const byte *q;
if (!r->error) {
if (r->extra_glyph_index != -1) {
q = r->glyph_data.bits.data + r->pos;
r->error = (r->glyph_data.bits.size - r->pos < n ?
... | 1 | ghostscript | 937ccd17ac65935633b2ebc06cb7089b91e17e6b | ||
46 | static void gx_ttfReader__Read(ttfReader *self, void *p, int n) { gx_ttfReader *r = (gx_ttfReader *)self; const byte *q; if (!r->error) { if (r->extra_glyph_index != -1) { q = r->glyph_data.bits.data + r->pos; <vul_start> r->error = ((r->pos >= r->glyph_data.bits.size || r->glyph_data.bits.size - r->pos < n) ? <vul_end... | <vul_start> r->error = (r->glyph_data.bits.size - r->pos < n ? <vul_end> | static void gx_ttfReader__Read(ttfReader *self, void *p, int n)
{
gx_ttfReader *r = (gx_ttfReader *)self;
const byte *q;
if (!r->error) {
if (r->extra_glyph_index != -1) {
q = r->glyph_data.bits.data + r->pos;
r->error = ((r->pos >= r->glyph_data.bits.size ||
... | static void gx_ttfReader__Read(ttfReader *self, void *p, int n)
{
gx_ttfReader *r = (gx_ttfReader *)self;
const byte *q;
if (!r->error) {
if (r->extra_glyph_index != -1) {
q = r->glyph_data.bits.data + r->pos;
r->error = (r->glyph_data.bits.size - r->pos < n ?
... | 1 | ghostpdl | 937ccd17ac65935633b2ebc06cb7089b91e17e6b | ||
47 | static void Ins_MDRP( INS_ARG ) { Int point; TT_F26Dot6 distance, org_dist; point = (Int)args[0]; <vul_start> if ( BOUNDS( args[0], CUR.zp1.n_points ) || BOUNDS( CUR.GS.rp0, CUR.zp0.n_points) ) <vul_end> { /* Current version of FreeType silently ignores this out of bounds error * and drops the instruction, se... | <vul_start> if ( BOUNDS( args[0], CUR.zp1.n_points ) ) <vul_end> | static void Ins_MDRP( INS_ARG )
{
Int point;
TT_F26Dot6 distance,
org_dist;
point = (Int)args[0];
if ( BOUNDS( args[0], CUR.zp1.n_points ) ||
BOUNDS( CUR.GS.rp0, CUR.zp0.n_points) )
{
/* Current version of FreeType silently ignores this out of bo... | static void Ins_MDRP( INS_ARG )
{
Int point;
TT_F26Dot6 distance,
org_dist;
point = (Int)args[0];
if ( BOUNDS( args[0], CUR.zp1.n_points ) )
{
/* Current version of FreeType silently ignores this out of bounds error
* and drops the instruction, ... | 1 | ghostscript | 7755e67116e8973ee0e3b22d653df026a84fa01b | ||
48 | xps_true_callback_glyph_name(gs_font *pfont, gs_glyph glyph, gs_const_string *pstr) { /* This function is copied verbatim from plfont.c */ int table_length; int table_offset; ulong format; <vul_start> int numGlyphs; <vul_end> uint glyph_name_index; const byte *postp; /* post table pointer */ <vul_start> if (glyph >= GS... | <vul_start> uint numGlyphs; <vul_end> <vul_start> <vul_end> | xps_true_callback_glyph_name(gs_font *pfont, gs_glyph glyph, gs_const_string *pstr)
{
/* This function is copied verbatim from plfont.c */
int table_length;
int table_offset;
ulong format;
int numGlyphs;
uint glyph_name_index;
const byte *postp; /* post table pointer */
if (glyp... | xps_true_callback_glyph_name(gs_font *pfont, gs_glyph glyph, gs_const_string *pstr)
{
/* This function is copied verbatim from plfont.c */
int table_length;
int table_offset;
ulong format;
uint numGlyphs;
uint glyph_name_index;
const byte *postp; /* post table pointer */
/* gue... | 2 | ghostscript | c53183d4e7103e87368b7cfa15367a47d559e323 | ||
49 | xps_load_sfnt_name(xps_font_t *font, char *namep) <vul_start> xps_load_sfnt_name(xps_font_t *font, char *namep, const int buflen) <vul_end> { byte *namedata; int offset, length; /*int format;*/ int count, stringoffset; int found; int i, k; found = 0; strcpy(namep, "Unknown"); offset = xps_find_sfnt_table(font, "name", ... | <vul_start> <vul_end> <vul_start> <vul_end> | xps_load_sfnt_name(xps_font_t *font, char *namep)
xps_load_sfnt_name(xps_font_t *font, char *namep, const int buflen)
{
byte *namedata;
int offset, length;
/*int format;*/
int count, stringoffset;
int found;
int i, k;
found = 0;
strcpy(namep, "Unknown");
offset = xps_find_sfnt_t... | xps_load_sfnt_name(xps_font_t *font, char *namep)
{
byte *namedata;
int offset, length;
/*int format;*/
int count, stringoffset;
int found;
int i, k;
found = 0;
strcpy(namep, "Unknown");
offset = xps_find_sfnt_table(font, "name", &length);
if (offset < 0 || length < 6)
{... | 2 | ghostscript | 3c2aebbedd37fab054e80f2e315de07d7e9b5bdb | ||
50 | <vul_start> xps_load_sfnt_name(xps_font_t *font, char *namep, const int buflen) <vul_end> { byte *namedata; int offset, length; /*int format;*/ int count, stringoffset; int found; int i, k; found = 0; strcpy(namep, "Unknown"); offset = xps_find_sfnt_table(font, "name", &length); if (offset < 0 || length < 6) { gs_warn(... | <vul_start> xps_load_sfnt_name(xps_font_t *font, char *namep) <vul_end> <vul_start> <vul_end> | xps_load_sfnt_name(xps_font_t *font, char *namep, const int buflen)
{
byte *namedata;
int offset, length;
/*int format;*/
int count, stringoffset;
int found;
int i, k;
found = 0;
strcpy(namep, "Unknown");
offset = xps_find_sfnt_table(font, "name", &length);
if (offset < 0 || le... | xps_load_sfnt_name(xps_font_t *font, char *namep)
{
byte *namedata;
int offset, length;
/*int format;*/
int count, stringoffset;
int found;
int i, k;
found = 0;
strcpy(namep, "Unknown");
offset = xps_find_sfnt_table(font, "name", &length);
if (offset < 0 || length < 6)
{
... | 2 | ghostpdl | 3c2aebbedd37fab054e80f2e315de07d7e9b5bdb | ||
51 | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a, ASN1_BIT_STRING *signature, void *asn, EVP_PKEY *pkey) { EVP_MD_CTX ctx; unsigned char *buf_in=NULL; int ret= -1,inl; int mdnid, pknid; <vul_start> if (!pkey) { ASN1err(ASN1_F_ASN1_ITEM_VERIFY, ERR_R_PASSED_NULL_PARAMETER); return -1; } <vul_end> EVP_MD_CTX_init(... | <vul_start> <vul_end> | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a,
ASN1_BIT_STRING *signature, void *asn, EVP_PKEY *pkey)
{
EVP_MD_CTX ctx;
unsigned char *buf_in=NULL;
int ret= -1,inl;
int mdnid, pknid;
if (!pkey)
{
ASN1err(ASN1_F_ASN1_ITEM_VERIFY, ERR_R_PASSED_NULL_PARAMETE... | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a,
ASN1_BIT_STRING *signature, void *asn, EVP_PKEY *pkey)
{
EVP_MD_CTX ctx;
unsigned char *buf_in=NULL;
int ret= -1,inl;
int mdnid, pknid;
EVP_MD_CTX_init(&ctx);
/* Convert signature OID into digest and public key OIDs */
{
if... | 1 | openssl | 62e4506a7d4cec1c8e1ff687f6b220f6a62a57c7 | ||
52 | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a, ASN1_BIT_STRING *signature, void *asn, EVP_PKEY *pkey) { EVP_MD_CTX ctx; const EVP_MD *type; unsigned char *buf_in=NULL; int ret= -1,i,inl; <vul_start> if (!pkey) { ASN1err(ASN1_F_ASN1_ITEM_VERIFY, ERR_R_PASSED_NULL_PARAMETER); return -1; } <vul_end> EVP_MD_CTX_i... | <vul_start> <vul_end> | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a, ASN1_BIT_STRING *signature,
void *asn, EVP_PKEY *pkey)
{
EVP_MD_CTX ctx;
const EVP_MD *type;
unsigned char *buf_in=NULL;
int ret= -1,i,inl;
if (!pkey)
{
ASN1err(ASN1_F_ASN1_ITEM_VERIFY, ERR_R_PASSED_... | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a, ASN1_BIT_STRING *signature,
void *asn, EVP_PKEY *pkey)
{
EVP_MD_CTX ctx;
const EVP_MD *type;
unsigned char *buf_in=NULL;
int ret= -1,i,inl;
EVP_MD_CTX_init(&ctx);
i=OBJ_obj2nid(a->algorithm);
type=EVP_get_digestb... | 1 | openssl | 66e8211c0b1347970096e04b18aa52567c325200 | ||
53 | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a, ASN1_BIT_STRING *signature, void *asn, EVP_PKEY *pkey) { EVP_MD_CTX ctx; const EVP_MD *type = NULL; unsigned char *buf_in=NULL; int ret= -1,inl; int mdnid, pknid; <vul_start> if (!pkey) { ASN1err(ASN1_F_ASN1_ITEM_VERIFY, ERR_R_PASSED_NULL_PARAMETER); return -1; }... | <vul_start> <vul_end> | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a, ASN1_BIT_STRING *signature,
void *asn, EVP_PKEY *pkey)
{
EVP_MD_CTX ctx;
const EVP_MD *type = NULL;
unsigned char *buf_in=NULL;
int ret= -1,inl;
int mdnid, pknid;
if (!pkey)
{
ASN1err(ASN1_F_ASN1_ITEM_VE... | int ASN1_item_verify(const ASN1_ITEM *it, X509_ALGOR *a, ASN1_BIT_STRING *signature,
void *asn, EVP_PKEY *pkey)
{
EVP_MD_CTX ctx;
const EVP_MD *type = NULL;
unsigned char *buf_in=NULL;
int ret= -1,inl;
int mdnid, pknid;
EVP_MD_CTX_init(&ctx);
/* Convert signature OID into digest... | 1 | openssl | ebc71865f0506a293242bd4aec97cdc7a8ef24b0 | ||
54 | static NTSTATUS fd_open_atomic(struct connection_struct *conn, files_struct *fsp, int flags, mode_t mode, bool *file_created) { NTSTATUS status = NT_STATUS_UNSUCCESSFUL; <vul_start> NTSTATUS retry_status; <vul_end> bool file_existed = VALID_STAT(fsp->fsp_name->st); <vul_start> int curr_flags; <vul_end> *file_created = ... | <vul_start> <vul_end> <vul_start> <vul_end> | static NTSTATUS fd_open_atomic(struct connection_struct *conn,
files_struct *fsp,
int flags,
mode_t mode,
bool *file_created)
{
NTSTATUS status = NT_STATUS_UNSUCCESSFUL;
NTSTATUS retry_status;
bool file_existed = VALID_STAT(fsp->fsp_name->st);
int curr_fla... | static NTSTATUS fd_open_atomic(struct connection_struct *conn,
files_struct *fsp,
int flags,
mode_t mode,
bool *file_created)
{
NTSTATUS status = NT_STATUS_UNSUCCESSFUL;
bool file_existed = VALID_STAT(fsp->fsp_name->st);
*file_created = false;
* We're not... | 2 | samba | 10c3e3923022485c720f322ca4f0aca5d7501310 | ||
55 | int EVP_DecodeUpdate(EVP_ENCODE_CTX *ctx, unsigned char *out, int *outl, const unsigned char *in, int inl) { int seof= -1,eof=0,rv= -1,ret=0,i,v,tmp,n,ln,exp_nl; unsigned char *d; n=ctx->num; d=ctx->enc_data; ln=ctx->line_num; exp_nl=ctx->expect_nl; /* last line of input. */ if ((inl == 0) || ((n == 0) && (conv_ascii2b... | <vul_start> <vul_end> | int EVP_DecodeUpdate(EVP_ENCODE_CTX *ctx, unsigned char *out, int *outl,
const unsigned char *in, int inl)
{
int seof= -1,eof=0,rv= -1,ret=0,i,v,tmp,n,ln,exp_nl;
unsigned char *d;
n=ctx->num;
d=ctx->enc_data;
ln=ctx->line_num;
exp_nl=ctx->expect_nl;
/* last line of input. */
if ((inl == 0) || ((n == 0)... | int EVP_DecodeUpdate(EVP_ENCODE_CTX *ctx, unsigned char *out, int *outl,
const unsigned char *in, int inl)
{
int seof= -1,eof=0,rv= -1,ret=0,i,v,tmp,n,ln,exp_nl;
unsigned char *d;
n=ctx->num;
d=ctx->enc_data;
ln=ctx->line_num;
exp_nl=ctx->expect_nl;
/* last line of input. */
if ((inl == 0) || ((n == 0)... | 1 | openssl | d0666f289ac013094bbbf547bfbcd616199b7d2d | ||
56 | int ssl3_write_bytes(SSL *s, int type, const void *buf_, int len) { const unsigned char *buf = buf_; int tot; unsigned int n, nw; #if !defined(OPENSSL_NO_MULTIBLOCK) && EVP_CIPH_FLAG_TLS1_1_MULTIBLOCK unsigned int max_send_fragment; #endif SSL3_BUFFER *wb = &(s->s3->wbuf); int i; s->rwstate = SSL_NOTHING; OPENSSL_asser... | <vul_start> if (i < 0) { <vul_end> | int ssl3_write_bytes(SSL *s, int type, const void *buf_, int len)
{
const unsigned char *buf = buf_;
int tot;
unsigned int n, nw;
#if !defined(OPENSSL_NO_MULTIBLOCK) && EVP_CIPH_FLAG_TLS1_1_MULTIBLOCK
unsigned int max_send_fragment;
#endif
SSL3_BUFFER *wb = &(s->s3->wbuf);
int i;
s->rwstate... | int ssl3_write_bytes(SSL *s, int type, const void *buf_, int len)
{
const unsigned char *buf = buf_;
int tot;
unsigned int n, nw;
#if !defined(OPENSSL_NO_MULTIBLOCK) && EVP_CIPH_FLAG_TLS1_1_MULTIBLOCK
unsigned int max_send_fragment;
#endif
SSL3_BUFFER *wb = &(s->s3->wbuf);
int i;
s->rwstate... | 1 | openssl | 77c77f0a1b9f15b869ca3342186dfbedd1119d0e | ||
57 | X509_REQ *X509_to_X509_REQ(X509 *x, EVP_PKEY *pkey, const EVP_MD *md) { X509_REQ *ret; X509_REQ_INFO *ri; int i; EVP_PKEY *pktmp; ret = X509_REQ_new(); if (ret == NULL) { X509err(X509_F_X509_TO_X509_REQ, ERR_R_MALLOC_FAILURE); goto err; } ri = ret->req_info; ri->version->length = 1; ri->version->data = (unsigned char *... | <vul_start> <vul_end> | X509_REQ *X509_to_X509_REQ(X509 *x, EVP_PKEY *pkey, const EVP_MD *md)
{
X509_REQ *ret;
X509_REQ_INFO *ri;
int i;
EVP_PKEY *pktmp;
ret = X509_REQ_new();
if (ret == NULL) {
X509err(X509_F_X509_TO_X509_REQ, ERR_R_MALLOC_FAILURE);
goto err;
}
ri = ret->req_info;
ri->ve... | X509_REQ *X509_to_X509_REQ(X509 *x, EVP_PKEY *pkey, const EVP_MD *md)
{
X509_REQ *ret;
X509_REQ_INFO *ri;
int i;
EVP_PKEY *pktmp;
ret = X509_REQ_new();
if (ret == NULL) {
X509err(X509_F_X509_TO_X509_REQ, ERR_R_MALLOC_FAILURE);
goto err;
}
ri = ret->req_info;
ri->ve... | 1 | openssl | 28a00bcd8e318da18031b2ac8778c64147cd54f9 | ||
58 | int ASN1_TYPE_cmp(const ASN1_TYPE *a, const ASN1_TYPE *b) { int result = -1; if (!a || !b || a->type != b->type) return -1; switch (a->type) { case V_ASN1_OBJECT: result = OBJ_cmp(a->value.object, b->value.object); <vul_start> break; case V_ASN1_BOOLEAN: result = a->value.boolean - b->value.boolean; <vul_end> break; ca... | <vul_start> <vul_end> | int ASN1_TYPE_cmp(const ASN1_TYPE *a, const ASN1_TYPE *b)
{
int result = -1;
if (!a || !b || a->type != b->type)
return -1;
switch (a->type) {
case V_ASN1_OBJECT:
result = OBJ_cmp(a->value.object, b->value.object);
break;
case V_ASN1_BOOLEAN:
result = a->value.bo... | int ASN1_TYPE_cmp(const ASN1_TYPE *a, const ASN1_TYPE *b)
{
int result = -1;
if (!a || !b || a->type != b->type)
return -1;
switch (a->type) {
case V_ASN1_OBJECT:
result = OBJ_cmp(a->value.object, b->value.object);
break;
case V_ASN1_NULL:
result = 0; ... | 1 | openssl | c3c7fb07dc975dc3c9de0eddb7d8fd79fc9c67c1 | ||
59 | int ssl3_client_hello(SSL *s) { unsigned char *buf; unsigned char *p, *d; int i; unsigned long l; int al = 0; #ifndef OPENSSL_NO_COMP int j; SSL_COMP *comp; #endif buf = (unsigned char *)s->init_buf->data; if (s->state == SSL3_ST_CW_CLNT_HELLO_A) { SSL_SESSION *sess = s->session; if ((sess == NULL) || (sess->ssl_versio... | <vul_start> if (i) ssl_fill_hello_random(s, 0, p, sizeof(s->s3->client_random)); <vul_end> | int ssl3_client_hello(SSL *s)
{
unsigned char *buf;
unsigned char *p, *d;
int i;
unsigned long l;
int al = 0;
#ifndef OPENSSL_NO_COMP
int j;
SSL_COMP *comp;
#endif
buf = (unsigned char *)s->init_buf->data;
if (s->state == SSL3_ST_CW_CLNT_HELLO_A) {
SSL_SESSION *sess = s->ses... | int ssl3_client_hello(SSL *s)
{
unsigned char *buf;
unsigned char *p, *d;
int i;
unsigned long l;
int al = 0;
#ifndef OPENSSL_NO_COMP
int j;
SSL_COMP *comp;
#endif
buf = (unsigned char *)s->init_buf->data;
if (s->state == SSL3_ST_CW_CLNT_HELLO_A) {
SSL_SESSION *sess = s->ses... | 1 | openssl | e1b568dd2462f7cacf98f3d117936c34e2849a6b | ||
60 | static void get_socket_name(SingleInstData* data, char* buf, int len) { const char* dpy = g_getenv("DISPLAY"); char* host = NULL; int dpynum; if(dpy) { const char* p = strrchr(dpy, ':'); host = g_strndup(dpy, (p - dpy)); dpynum = atoi(p + 1); } else dpynum = 0; <vul_start> #if GLIB_CHECK_VERSION(2, 28, 0) g_snprintf(bu... | <vul_start> <vul_end> <vul_start> <vul_end> | static void get_socket_name(SingleInstData* data, char* buf, int len)
{
const char* dpy = g_getenv("DISPLAY");
char* host = NULL;
int dpynum;
if(dpy)
{
const char* p = strrchr(dpy, ':');
host = g_strndup(dpy, (p - dpy));
dpynum = atoi(p + 1);
}
else
dpynum ... | static void get_socket_name(SingleInstData* data, char* buf, int len)
{
const char* dpy = g_getenv("DISPLAY");
char* host = NULL;
int dpynum;
if(dpy)
{
const char* p = strrchr(dpy, ':');
host = g_strndup(dpy, (p - dpy));
dpynum = atoi(p + 1);
}
else
dpynum ... | 2 | lxde | bc8c3d871e9ecc67c47ff002b68cf049793faf08 | ||
61 | check_acl(pam_handle_t *pamh, const char *sense, const char *this_user, const char *other_user, int noent_code, int debug) { struct passwd *pwd; FILE *fp = NULL; int i, fd = -1, save_errno; <vul_start> <vul_end> struct stat st; <vul_start> PAM_MODUTIL_DEF_PRIVS(privs); <vul_end> /* Check this user's <sense> file. */ pw... | <vul_start> uid_t fsuid; <vul_end> <vul_start> <vul_end> <vul_start> fsuid = setfsuid(pwd->pw_uid); <vul_end> <vul_start> setfsuid(fsuid); <vul_end> | check_acl(pam_handle_t *pamh,
const char *sense, const char *this_user, const char *other_user,
int noent_code, int debug)
{
struct passwd *pwd;
FILE *fp = NULL;
int i, fd = -1, save_errno;
struct stat st;
PAM_MODUTIL_DEF_PRIVS(privs);
/* Check this user's <sense> f... | check_acl(pam_handle_t *pamh,
const char *sense, const char *this_user, const char *other_user,
int noent_code, int debug)
{
struct passwd *pwd;
FILE *fp = NULL;
int i, fd = -1, save_errno;
uid_t fsuid;
struct stat st;
/* Check this user's <sense> file. */
pw... | 4 | altlinux | 843807a3a90f52e7538be756616510730a24739a | ||
62 | EC_KEY *d2i_ECPrivateKey(EC_KEY **a, const unsigned char **in, long len) { int ok = 0; EC_KEY *ret = NULL; EC_PRIVATEKEY *priv_key = NULL; if ((priv_key = EC_PRIVATEKEY_new()) == NULL) { ECerr(EC_F_D2I_ECPRIVATEKEY, ERR_R_MALLOC_FAILURE); return NULL; } if ((priv_key = d2i_EC_PRIVATEKEY(&priv_key, in, len)) == NULL) { ... | <vul_start> if (a) *a = ret; <vul_end> <vul_start> <vul_end> <vul_start> if (ret) <vul_end> | EC_KEY *d2i_ECPrivateKey(EC_KEY **a, const unsigned char **in, long len)
{
int ok = 0;
EC_KEY *ret = NULL;
EC_PRIVATEKEY *priv_key = NULL;
if ((priv_key = EC_PRIVATEKEY_new()) == NULL) {
ECerr(EC_F_D2I_ECPRIVATEKEY, ERR_R_MALLOC_FAILURE);
return NULL;
}
if ((priv_key = d2i_EC_P... | EC_KEY *d2i_ECPrivateKey(EC_KEY **a, const unsigned char **in, long len)
{
int ok = 0;
EC_KEY *ret = NULL;
EC_PRIVATEKEY *priv_key = NULL;
if ((priv_key = EC_PRIVATEKEY_new()) == NULL) {
ECerr(EC_F_D2I_ECPRIVATEKEY, ERR_R_MALLOC_FAILURE);
return NULL;
}
if ((priv_key = d2i_EC_P... | 3 | openssl | 1b4a8df38fc9ab3c089ca5765075ee53ec5bd66a | ||
63 | int dtls1_listen(SSL *s, struct sockaddr *client) { int ret; <vul_start> /* Ensure there is no state left over from a previous invocation */ SSL_clear(s); <vul_end> SSL_set_options(s, SSL_OP_COOKIE_EXCHANGE); s->d1->listen = 1; (void)BIO_dgram_get_peer(SSL_get_rbio(s), client); return 1; } | <vul_start> <vul_end> | int dtls1_listen(SSL *s, struct sockaddr *client)
{
int ret;
/* Ensure there is no state left over from a previous invocation */
SSL_clear(s);
SSL_set_options(s, SSL_OP_COOKIE_EXCHANGE);
s->d1->listen = 1;
(void)BIO_dgram_get_peer(SSL_get_rbio(s), client);
return 1;
}
| int dtls1_listen(SSL *s, struct sockaddr *client)
{
int ret;
SSL_set_options(s, SSL_OP_COOKIE_EXCHANGE);
s->d1->listen = 1;
(void)BIO_dgram_get_peer(SSL_get_rbio(s), client);
return 1;
}
| 1 | openssl | 819418110b6fff4a7b96f01a5d68f71df3e3b736 | ||
64 | _bdf_parse_glyphs( char* line, unsigned long linelen, unsigned long lineno, void* call_data, void* client_data ) { int c, mask_index; char* s; unsigned char* bp; unsigned long i, slen, nibbles; _bdf_parse_t* p; bdf_glyph_t* glyph; bdf_font_t* ... | <vul_start> <vul_end> | _bdf_parse_glyphs( char* line,
unsigned long linelen,
unsigned long lineno,
void* call_data,
void* client_data )
{
int c, mask_index;
char* s;
unsigned char* b... | _bdf_parse_glyphs( char* line,
unsigned long linelen,
unsigned long lineno,
void* call_data,
void* client_data )
{
int c, mask_index;
char* s;
unsigned char* b... | 1 | savannah | 7f2e4f4f553f6836be7683f66226afac3fa979b8 | ||
65 | _bdf_parse_glyphs( char* line, unsigned long linelen, unsigned long lineno, void* call_data, void* client_data ) { int c, mask_index; char* s; unsigned char* bp; unsigned long i, slen, nibbles; _bdf_parse_t* p; bdf_glyph_t* glyph; bdf_font_t* ... | <vul_start> if ( p->glyph_enc > 0 && (size_t)p->glyph_enc >= sizeof ( p->have ) * 8 ) <vul_end> | _bdf_parse_glyphs( char* line,
unsigned long linelen,
unsigned long lineno,
void* call_data,
void* client_data )
{
int c, mask_index;
char* s;
unsigned char* b... | _bdf_parse_glyphs( char* line,
unsigned long linelen,
unsigned long lineno,
void* call_data,
void* client_data )
{
int c, mask_index;
char* s;
unsigned char* b... | 1 | savannah | 07bdb6e289c7954e2a533039dc93c1c136099d2d | ||
66 | grep (int fd, char const *file, struct stats *stats) { <vul_start> intmax_t nlines, i; <vul_end> int not_text; size_t residue, save; char oldc; char *beg; char *lim; char eol = eolbyte; if (!reset (fd, file, stats)) return 0; if (file && directories == RECURSE_DIRECTORIES && S_ISDIR (stats->stat.st_mode)) { /* Close fd... | <vul_start> int nlines, i; <vul_end> | grep (int fd, char const *file, struct stats *stats)
{
intmax_t nlines, i;
int not_text;
size_t residue, save;
char oldc;
char *beg;
char *lim;
char eol = eolbyte;
if (!reset (fd, file, stats))
return 0;
if (file && directories == RECURSE_DIRECTORIES
&& S_ISDIR (stats->stat.st_mode))
{... | grep (int fd, char const *file, struct stats *stats)
{
int nlines, i;
int not_text;
size_t residue, save;
char oldc;
char *beg;
char *lim;
char eol = eolbyte;
if (!reset (fd, file, stats))
return 0;
if (file && directories == RECURSE_DIRECTORIES
&& S_ISDIR (stats->stat.st_mode))
{
... | 1 | grep | 8fcf61523644df42e1905c81bed26838e0b04f91 | ||
67 | parse_fond( char* fond_data, short* have_sfnt, ResID* sfnt_id, Str255 lwfn_file_name, short face_index ) { AsscEntry* assoc; AsscEntry* base_assoc; FamRec* fond; *sfnt_id = 0; *have_sfnt = 0; lwfn_file_name[0] = 0; fond = (FamRec*)fond_data; assoc = (AsscEntry*)( fond_data + size... | <vul_start> <vul_end> <vul_start> for ( i = 0; i < string_count && i < 64; i++ ) <vul_end> <vul_start> style->indexes[face_index] <= FT_MIN( string_count, 64 ) ) <vul_end> | parse_fond( char* fond_data,
short* have_sfnt,
ResID* sfnt_id,
Str255 lwfn_file_name,
short face_index )
{
AsscEntry* assoc;
AsscEntry* base_assoc;
FamRec* fond;
*sfnt_id = 0;
*have_sfnt = 0;
lwfn_file_nam... | parse_fond( char* fond_data,
short* have_sfnt,
ResID* sfnt_id,
Str255 lwfn_file_name,
short face_index )
{
AsscEntry* assoc;
AsscEntry* base_assoc;
FamRec* fond;
*sfnt_id = 0;
*have_sfnt = 0;
lwfn_file_nam... | 3 | savannah | 18a8f0d9943369449bc4de92d411c78fb08d616c | ||
68 | T42_Face_Init( FT_Stream stream, FT_Face t42face, /* T42_Face */ FT_Int face_index, FT_Int num_params, FT_Parameter* params ) { T42_Face face = (T42_Face)t42face; FT_Error error; FT_Service_PsCMaps psnames; PSAux_Service psaux; FT_Face root =... | <vul_start> args.flags = FT_OPEN_MEMORY; <vul_end> | T42_Face_Init( FT_Stream stream,
FT_Face t42face, /* T42_Face */
FT_Int face_index,
FT_Int num_params,
FT_Parameter* params )
{
T42_Face face = (T42_Face)t42face;
FT_Error error;
... | T42_Face_Init( FT_Stream stream,
FT_Face t42face, /* T42_Face */
FT_Int face_index,
FT_Int num_params,
FT_Parameter* params )
{
T42_Face face = (T42_Face)t42face;
FT_Error error;
... | 1 | savannah | 42fcd6693ec7bd6ffc65ddc63e74287a65dda669 | ||
69 | tt_face_load_kern( TT_Face face, FT_Stream stream ) { FT_Error error; FT_ULong table_size; FT_Byte* p; FT_Byte* p_limit; FT_UInt nn, num_tables; FT_UInt32 avail = 0, ordered = 0; /* the kern table is optional; exit silently if it is missing */ error = face->goto_table( face, TTAG_kern, stream, &table_si... | <vul_start> if ( length <= 6 ) <vul_end> | tt_face_load_kern( TT_Face face,
FT_Stream stream )
{
FT_Error error;
FT_ULong table_size;
FT_Byte* p;
FT_Byte* p_limit;
FT_UInt nn, num_tables;
FT_UInt32 avail = 0, ordered = 0;
/* the kern table is optional; exit silently if it is missing */
e... | tt_face_load_kern( TT_Face face,
FT_Stream stream )
{
FT_Error error;
FT_ULong table_size;
FT_Byte* p;
FT_Byte* p_limit;
FT_UInt nn, num_tables;
FT_UInt32 avail = 0, ordered = 0;
/* the kern table is optional; exit silently if it is missing */
e... | 1 | savannah | f70d9342e65cd2cb44e9f26b6d7edeedf191fc6c | ||
70 | tt_sbit_decoder_load_image( TT_SBitDecoder decoder, FT_UInt glyph_index, FT_Int x_pos, FT_Int y_pos ) { /* * First, we find the correct strike range that applies to this * glyph index. */ FT_Byte* p = decoder->eblc_base + decoder->strike_index_array; FT_Byte* p_limit = decoder... | <vul_start> if ( num_glyphs > (FT_ULong)( ( ( p_limit - p ) >> 2 ) - 1 ) ) <vul_end> | tt_sbit_decoder_load_image( TT_SBitDecoder decoder,
FT_UInt glyph_index,
FT_Int x_pos,
FT_Int y_pos )
{
/*
* First, we find the correct strike range that applies to this
* glyph index... | tt_sbit_decoder_load_image( TT_SBitDecoder decoder,
FT_UInt glyph_index,
FT_Int x_pos,
FT_Int y_pos )
{
/*
* First, we find the correct strike range that applies to this
* glyph index... | 1 | savannah | f0292bb9920aa1dbfed5f53861e7c7a89b35833a | ||
71 | t1_decoder_parse_charstrings( T1_Decoder decoder, FT_Byte* charstring_base, FT_UInt charstring_len ) { FT_Error error; T1_Decoder_Zone zone; FT_Byte* ip; FT_Byte* limit; T1_Builder builder = &decoder->builder; FT_Pos x, y, orig_x, orig_y; FT_Int known_othersubr... | <vul_start> <vul_end> <vul_start> <vul_end> | t1_decoder_parse_charstrings( T1_Decoder decoder,
FT_Byte* charstring_base,
FT_UInt charstring_len )
{
FT_Error error;
T1_Decoder_Zone zone;
FT_Byte* ip;
FT_Byte* limit;
T1_Builder builder = &d... | t1_decoder_parse_charstrings( T1_Decoder decoder,
FT_Byte* charstring_base,
FT_UInt charstring_len )
{
FT_Error error;
T1_Decoder_Zone zone;
FT_Byte* ip;
FT_Byte* limit;
T1_Builder builder = &d... | 2 | savannah | f958c48ee431bef8d4d466b40c9cb2d4dbcb7791 | ||
72 | tt_size_reset( TT_Size size, FT_Bool only_height ) { TT_Face face; FT_Size_Metrics* metrics; <vul_start> <vul_end> face = (TT_Face)size->root.face; <vul_start> /* nothing to do for CFF2 */ if ( face->isCFF2 ) return FT_Err_Ok; size->ttmetrics.valid = FALSE; <vul_end> metrics = &size->metrics; /* copy the r... | <vul_start> size->ttmetrics.valid = FALSE; <vul_end> <vul_start> <vul_end> | tt_size_reset( TT_Size size,
FT_Bool only_height )
{
TT_Face face;
FT_Size_Metrics* metrics;
face = (TT_Face)size->root.face;
/* nothing to do for CFF2 */
if ( face->isCFF2 )
return FT_Err_Ok;
size->ttmetrics.valid = FALSE;
metrics = &size->... | tt_size_reset( TT_Size size,
FT_Bool only_height )
{
TT_Face face;
FT_Size_Metrics* metrics;
size->ttmetrics.valid = FALSE;
face = (TT_Face)size->root.face;
metrics = &size->metrics;
/* copy the result from base layer */
/* This bit flag, if set... | 2 | savannah | e6699596af5c5d6f0ae0ea06e19df87dce088df8 | ||
73 | sfnt_init_face( FT_Stream stream, TT_Face face, FT_Int face_instance_index, FT_Int num_params, FT_Parameter* params ) { FT_Error error; FT_Memory memory = face->root.memory; FT_Library library = face->root.driver->root.library; SFNT_Service sfnt; FT_Int face_index; /* fo... | <vul_start> /* we don't support Multiple Master CFFs yet */ <vul_end> <vul_start> <vul_end> | sfnt_init_face( FT_Stream stream,
TT_Face face,
FT_Int face_instance_index,
FT_Int num_params,
FT_Parameter* params )
{
FT_Error error;
FT_Memory memory = face->root.memory;
FT_Library librar... | sfnt_init_face( FT_Stream stream,
TT_Face face,
FT_Int face_instance_index,
FT_Int num_params,
FT_Parameter* params )
{
FT_Error error;
FT_Memory memory = face->root.memory;
FT_Library librar... | 2 | savannah | 7bbb91fbf47fc0775cc9705673caf0c47a81f94b | ||
74 | int main (int argc, char *argv[]) { int objectsCount = 0; Guint numOffset = 0; std::vector<Object> pages; std::vector<Guint> offsets; XRef *yRef, *countRef; FILE *f; OutStream *outStr; int i; int j, rootNum; std::vector<PDFDoc *>docs; int majorVersion = 0; int minorVersion = 0; char *fileName = argv[argc - 1]; int exit... | <vul_start> if (!afObj.isNull()) { <vul_end> <vul_start> if (!ocObj.isNull() && ocObj.isDict()) { <vul_end> <vul_start> if (!names.isNull() && names.isDict()) { <vul_end> <vul_start> <vul_end> | int main (int argc, char *argv[])
{
int objectsCount = 0;
Guint numOffset = 0;
std::vector<Object> pages;
std::vector<Guint> offsets;
XRef *yRef, *countRef;
FILE *f;
OutStream *outStr;
int i;
int j, rootNum;
std::vector<PDFDoc *>docs;
int majorVersion = 0;
int minorVersion = 0;
char *fileName ... | int main (int argc, char *argv[])
{
int objectsCount = 0;
Guint numOffset = 0;
std::vector<Object> pages;
std::vector<Guint> offsets;
XRef *yRef, *countRef;
FILE *f;
OutStream *outStr;
int i;
int j, rootNum;
std::vector<PDFDoc *>docs;
int majorVersion = 0;
int minorVersion = 0;
char *fileName ... | 4 | poppler | 5c9b08a875b07853be6c44e43ff5f7f059df666a | ||
75 | ft_var_readpackedpoints( FT_Stream stream, FT_UInt *point_cnt ) { FT_UShort *points; FT_Int n; FT_Int runcnt; FT_Int i; FT_Int j; FT_Int first; FT_Memory memory = stream->memory; FT_Error error = TT_Err_Ok; FT_UNUSED( error ); *point_cnt = n = FT_GET_BYTE(); if ( n == 0 ) return ALL_POINTS; i... | <vul_start> if ( runcnt < 1 ) <vul_end> <vul_start> if ( runcnt < 1 ) <vul_end> | ft_var_readpackedpoints( FT_Stream stream,
FT_UInt *point_cnt )
{
FT_UShort *points;
FT_Int n;
FT_Int runcnt;
FT_Int i;
FT_Int j;
FT_Int first;
FT_Memory memory = stream->memory;
FT_Error error = TT_Err_Ok;
FT_UNUSED( er... | ft_var_readpackedpoints( FT_Stream stream,
FT_UInt *point_cnt )
{
FT_UShort *points;
FT_Int n;
FT_Int runcnt;
FT_Int i;
FT_Int j;
FT_Int first;
FT_Memory memory = stream->memory;
FT_Error error = TT_Err_Ok;
FT_UNUSED( err... | 2 | savannah | 59eb9f8cfe7d1df379a2318316d1f04f80fba54a | ||
76 | set_text_distance(gs_point *pdist, double dx, double dy, const gs_matrix *pmat) { <vul_start> int code; <vul_end> double rounded; <vul_start> if (dx > 1e38 || dy > 1e38) code = gs_error_undefinedresult; else code = gs_distance_transform_inverse(dx, dy, pmat, pdist); <vul_end> if (code == gs_error_undefinedresult) { /* ... | <vul_start> int code = gs_distance_transform_inverse(dx, dy, pmat, pdist); <vul_end> <vul_start> <vul_end> | set_text_distance(gs_point *pdist, double dx, double dy, const gs_matrix *pmat)
{
int code;
double rounded;
if (dx > 1e38 || dy > 1e38)
code = gs_error_undefinedresult;
else
code = gs_distance_transform_inverse(dx, dy, pmat, pdist);
if (code == gs_error_undefinedresult) {
... | set_text_distance(gs_point *pdist, double dx, double dy, const gs_matrix *pmat)
{
int code = gs_distance_transform_inverse(dx, dy, pmat, pdist);
double rounded;
if (code == gs_error_undefinedresult) {
/* The CTM is degenerate.
Can't know the distance in user space.
} else if (... | 2 | ghostscript | 39b1e54b2968620723bf32e96764c88797714879 | ||
77 | set_text_distance(gs_point *pdist, double dx, double dy, const gs_matrix *pmat) { <vul_start> int code; <vul_end> double rounded; <vul_start> if (dx > 1e38 || dy > 1e38) code = gs_error_undefinedresult; else code = gs_distance_transform_inverse(dx, dy, pmat, pdist); <vul_end> if (code == gs_error_undefinedresult) { /* ... | <vul_start> int code = gs_distance_transform_inverse(dx, dy, pmat, pdist); <vul_end> <vul_start> <vul_end> | set_text_distance(gs_point *pdist, double dx, double dy, const gs_matrix *pmat)
{
int code;
double rounded;
if (dx > 1e38 || dy > 1e38)
code = gs_error_undefinedresult;
else
code = gs_distance_transform_inverse(dx, dy, pmat, pdist);
if (code == gs_error_undefinedresult) {
/... | set_text_distance(gs_point *pdist, double dx, double dy, const gs_matrix *pmat)
{
int code = gs_distance_transform_inverse(dx, dy, pmat, pdist);
double rounded;
if (code == gs_error_undefinedresult) {
/* The CTM is degenerate.
Can't know the distance in user space.
Set zero be... | 2 | ghostpdl | 39b1e54b2968620723bf32e96764c88797714879 | ||
78 | static void h2_process_demux(struct h2c *h2c) { struct h2s *h2s; if (h2c->st0 >= H2_CS_ERROR) return; if (unlikely(h2c->st0 < H2_CS_FRAME_H)) { if (h2c->st0 == H2_CS_PREFACE) { if (unlikely(h2c_frt_recv_preface(h2c) <= 0)) { /* RFC7540#3.5: a GOAWAY frame MAY be omitted */ if (h2c->st0 == H2_CS_ERROR) h2c->st0 = H2_CS_... | <vul_start> if ((int)hdr.len < 0 || (int)hdr.len > h2c->mfs) { <vul_end> <vul_start> if ((int)hdr.len < 0 || (int)hdr.len > h2c->mfs) { <vul_end> | static void h2_process_demux(struct h2c *h2c)
{
struct h2s *h2s;
if (h2c->st0 >= H2_CS_ERROR)
return;
if (unlikely(h2c->st0 < H2_CS_FRAME_H)) {
if (h2c->st0 == H2_CS_PREFACE) {
if (unlikely(h2c_frt_recv_preface(h2c) <= 0)) {
/* RFC7540#3.5: a GOAWAY frame MAY be omitted */
if (h2c->st0 == H2_CS_ERRO... | static void h2_process_demux(struct h2c *h2c)
{
struct h2s *h2s;
if (h2c->st0 >= H2_CS_ERROR)
return;
if (unlikely(h2c->st0 < H2_CS_FRAME_H)) {
if (h2c->st0 == H2_CS_PREFACE) {
if (unlikely(h2c_frt_recv_preface(h2c) <= 0)) {
/* RFC7540#3.5: a GOAWAY frame MAY be omitted */
if (h2c->st0 == H2_CS_ERRO... | 2 | haproxy | 3f0e1ec70173593f4c2b3681b26c04a4ed5fc588 | ||
79 | Status XvMCGetDRInfo(Display *dpy, XvPortID port, char **name, char **busID, int *major, int *minor, int *patchLevel, int *isLocal) { XExtDisplayInfo *info = xvmc_find_display(dpy); xvmcGetDRInfoReply rep; xvmcGetDRInfoReq *req; CARD32 magic; #ifdef HAVE_SHMAT volatile CARD32 *shMem; struct timezone here; struct timev... | <vul_start> (*name)[rep.nameLen - 1] = '\0'; <vul_end> <vul_start> (*busID)[rep.busIDLen - 1] = '\0'; <vul_end> | Status XvMCGetDRInfo(Display *dpy, XvPortID port,
char **name, char **busID,
int *major, int *minor,
int *patchLevel,
int *isLocal)
{
XExtDisplayInfo *info = xvmc_find_display(dpy);
xvmcGetDRInfoReply rep;
xvmcGetDRInfoReq *req;
CARD32 magic;
#ifdef HAVE_SHMAT
volatile ... | Status XvMCGetDRInfo(Display *dpy, XvPortID port,
char **name, char **busID,
int *major, int *minor,
int *patchLevel,
int *isLocal)
{
XExtDisplayInfo *info = xvmc_find_display(dpy);
xvmcGetDRInfoReply rep;
xvmcGetDRInfoReq *req;
CARD32 magic;
#ifdef HAVE_SHMAT
volatile ... | 2 | libXvMC | 2cd95e7da8367cccdcdd5c9b160012d1dec5cbdb | ||
80 | static int get_crl_sk(X509_STORE_CTX *ctx, X509_CRL **pcrl, X509_CRL **pdcrl, X509 **pissuer, int *pscore, unsigned int *preasons, STACK_OF(X509_CRL) *crls) { int i, crl_score, best_score = *pscore; unsigned int reasons, best_reasons = 0; X509 *x = ctx->current_cert; X509_CRL *crl, *best_crl = NULL; X509 *crl_issuer = ... | <vul_start> if (crl_score < best_score) <vul_end> <vul_start> if (crl_score == best_score) { <vul_end> | static int get_crl_sk(X509_STORE_CTX *ctx, X509_CRL **pcrl, X509_CRL **pdcrl,
X509 **pissuer, int *pscore, unsigned int *preasons,
STACK_OF(X509_CRL) *crls)
{
int i, crl_score, best_score = *pscore;
unsigned int reasons, best_reasons = 0;
X509 *x = ctx->current_ce... | static int get_crl_sk(X509_STORE_CTX *ctx, X509_CRL **pcrl, X509_CRL **pdcrl,
X509 **pissuer, int *pscore, unsigned int *preasons,
STACK_OF(X509_CRL) *crls)
{
int i, crl_score, best_score = *pscore;
unsigned int reasons, best_reasons = 0;
X509 *x = ctx->current_ce... | 2 | openssl | 6e629b5be45face20b4ca71c4fcbfed78b864a2e | ||
81 | vcard_apdu_new(unsigned char *raw_apdu, int len, vcard_7816_status_t *status) { VCardAPDU *new_apdu; *status = VCARD7816_STATUS_EXC_ERROR_MEMORY_FAILURE; if (len < 4) { *status = VCARD7816_STATUS_ERROR_WRONG_LENGTH; return NULL; } new_apdu = g_new(VCardAPDU, 1); new_apdu->a_data = g_memdup(raw_apdu, len); new_apdu->a_l... | <vul_start> g_free(new_apdu); <vul_end> <vul_start> g_free(new_apdu); <vul_end> | vcard_apdu_new(unsigned char *raw_apdu, int len, vcard_7816_status_t *status)
{
VCardAPDU *new_apdu;
*status = VCARD7816_STATUS_EXC_ERROR_MEMORY_FAILURE;
if (len < 4) {
*status = VCARD7816_STATUS_ERROR_WRONG_LENGTH;
return NULL;
}
new_apdu = g_new(VCardAPDU, 1);
new_apdu->a_dat... | vcard_apdu_new(unsigned char *raw_apdu, int len, vcard_7816_status_t *status)
{
VCardAPDU *new_apdu;
*status = VCARD7816_STATUS_EXC_ERROR_MEMORY_FAILURE;
if (len < 4) {
*status = VCARD7816_STATUS_ERROR_WRONG_LENGTH;
return NULL;
}
new_apdu = g_new(VCardAPDU, 1);
new_apdu->a_dat... | 2 | spice | 9113dc6a303604a2d9812ac70c17d076ef11886c | ||
82 | static struct vrend_linked_shader_program *add_shader_program(struct vrend_context *ctx, struct vrend_shader *vs, struct vrend_shader *fs, struct vrend_shader *gs) { struct vrend_linked_shader_program *sprog = CALLOC_STRUCT(vrend_linked_shader_program); char name[16]; int i; GLuint prog_id; GLint lret; int id; int last... | <vul_start> <vul_end> | static struct vrend_linked_shader_program *add_shader_program(struct vrend_context *ctx,
struct vrend_shader *vs,
struct vrend_shader *fs,
... | static struct vrend_linked_shader_program *add_shader_program(struct vrend_context *ctx,
struct vrend_shader *vs,
struct vrend_shader *fs,
... | 1 | virglrenderer | a2f12a1b0f95b13b6f8dc3d05d7b74b4386394e4 | ||
83 | void vrend_renderer_context_destroy(uint32_t handle) { struct vrend_decode_ctx *ctx; bool ret; if (handle >= VREND_MAX_CTX) return; <vul_start> /* never destroy context 0 here, it will be destroyed in vrend_decode_reset()*/ if (handle == 0) { return; } <vul_end> ctx = dec_ctx[handle]; if (!ctx) return; vrend_hw_switch_... | <vul_start> <vul_end> | void vrend_renderer_context_destroy(uint32_t handle)
{
struct vrend_decode_ctx *ctx;
bool ret;
if (handle >= VREND_MAX_CTX)
return;
/* never destroy context 0 here, it will be destroyed in vrend_decode_reset()*/
if (handle == 0) {
return;
}
ctx = dec_ctx[handle];
if (!ctx)
... | void vrend_renderer_context_destroy(uint32_t handle)
{
struct vrend_decode_ctx *ctx;
bool ret;
if (handle >= VREND_MAX_CTX)
return;
ctx = dec_ctx[handle];
if (!ctx)
return;
vrend_hw_switch_context(dec_ctx[0]->grctx, true);
}
| 1 | virglrenderer | 0a5dff15912207b83018485f83e067474e818bab | ||
84 | static boolean parse_identifier( const char **pcur, char *ret ) <vul_start> static boolean parse_identifier( const char **pcur, char *ret, size_t len ) <vul_end> { const char *cur = *pcur; int i = 0; if (is_alpha_underscore( cur )) { ret[i++] = *cur++; <vul_start> while (is_alpha_underscore( cur ) || is_digit( cur )) {... | <vul_start> <vul_end> <vul_start> while (is_alpha_underscore( cur ) || is_digit( cur )) <vul_end> <vul_start> <vul_end> <vul_start> if (!parse_identifier( &ctx->cur, id )) { <vul_end> | static boolean parse_identifier( const char **pcur, char *ret )
static boolean parse_identifier( const char **pcur, char *ret, size_t len )
{
const char *cur = *pcur;
int i = 0;
if (is_alpha_underscore( cur )) {
ret[i++] = *cur++;
while (is_alpha_underscore( cur ) || is_digit( cur )) {
... | static boolean parse_identifier( const char **pcur, char *ret )
{
const char *cur = *pcur;
int i = 0;
if (is_alpha_underscore( cur )) {
ret[i++] = *cur++;
while (is_alpha_underscore( cur ) || is_digit( cur ))
ret[i++] = *cur++;
ret[i++] = '\0';
*pcur = cur;
retur... | 4 | virglrenderer | e534b51ca3c3cd25f3990589932a9ed711c59b27 | ||
85 | int vrend_create_vertex_elements_state(struct vrend_context *ctx, uint32_t handle, unsigned num_elements, const struct pipe_vertex_element *elements) { struct vrend_vertex_element_array *v = CALLOC_STRUCT(vrend_vertex_element_array); const struct util_format_description *desc; GLenum type; int i; uint32_t ret_handle; i... | <vul_start> <vul_end> | int vrend_create_vertex_elements_state(struct vrend_context *ctx,
uint32_t handle,
unsigned num_elements,
const struct pipe_vertex_element *elements)
{
struct vrend_vertex_element_array *v = CALLOC_ST... | int vrend_create_vertex_elements_state(struct vrend_context *ctx,
uint32_t handle,
unsigned num_elements,
const struct pipe_vertex_element *elements)
{
struct vrend_vertex_element_array *v = CALLOC_ST... | 1 | virglrenderer | 114688c526fe45f341d75ccd1d85473c3b08f7a7 | ||
86 | static int vrend_decode_create_ve(struct vrend_decode_ctx *ctx, uint32_t handle, uint16_t length) { struct pipe_vertex_element *ve = NULL; int num_elements; int i; int ret; if (length < 1) return EINVAL; if ((length - 1) % 4) return EINVAL; num_elements = (length - 1) / 4; if (num_elements) { ve = calloc(num_elements, ... | <vul_start> <vul_end> | static int vrend_decode_create_ve(struct vrend_decode_ctx *ctx, uint32_t handle, uint16_t length)
{
struct pipe_vertex_element *ve = NULL;
int num_elements;
int i;
int ret;
if (length < 1)
return EINVAL;
if ((length - 1) % 4)
return EINVAL;
num_elements = (length - 1) / 4;
if (nu... | static int vrend_decode_create_ve(struct vrend_decode_ctx *ctx, uint32_t handle, uint16_t length)
{
struct pipe_vertex_element *ve = NULL;
int num_elements;
int i;
int ret;
if (length < 1)
return EINVAL;
if ((length - 1) % 4)
return EINVAL;
num_elements = (length - 1) / 4;
if (nu... | 1 | virglrenderer | a5ac49940c40ae415eac0cf912eac7070b4ba95d | ||
87 | main (int argc, char *argv[]) { struct gengetopt_args_info args_info; char *line = NULL; size_t linelen = 0; char *p, *r; uint32_t *q; unsigned cmdn = 0; int rc; setlocale (LC_ALL, ""); set_program_name (argv[0]); bindtextdomain (PACKAGE, LOCALEDIR); textdomain (PACKAGE); if (cmdline_parser (argc, argv, &args_info) != ... | <vul_start> <vul_end> | main (int argc, char *argv[])
{
struct gengetopt_args_info args_info;
char *line = NULL;
size_t linelen = 0;
char *p, *r;
uint32_t *q;
unsigned cmdn = 0;
int rc;
setlocale (LC_ALL, "");
set_program_name (argv[0]);
bindtextdomain (PACKAGE, LOCALEDIR);
textdomain (PACKAGE);
if (cmdline_parser (a... | main (int argc, char *argv[])
{
struct gengetopt_args_info args_info;
char *line = NULL;
size_t linelen = 0;
char *p, *r;
uint32_t *q;
unsigned cmdn = 0;
int rc;
setlocale (LC_ALL, "");
set_program_name (argv[0]);
bindtextdomain (PACKAGE, LOCALEDIR);
textdomain (PACKAGE);
if (cmdline_parser (a... | 1 | savannah | 5e3cb9c7b5bf0ce665b9d68f5ddf095af5c9ba60 | ||
88 | main (int argc, char *argv[]) { struct gengetopt_args_info args_info; char *line = NULL; size_t linelen = 0; char *p, *r; uint32_t *q; unsigned cmdn = 0; int rc; setlocale (LC_ALL, ""); set_program_name (argv[0]); bindtextdomain (PACKAGE, LOCALEDIR); textdomain (PACKAGE); if (cmdline_parser (argc, argv, &args_info) != ... | <vul_start> <vul_end> | main (int argc, char *argv[])
{
struct gengetopt_args_info args_info;
char *line = NULL;
size_t linelen = 0;
char *p, *r;
uint32_t *q;
unsigned cmdn = 0;
int rc;
setlocale (LC_ALL, "");
set_program_name (argv[0]);
bindtextdomain (PACKAGE, LOCALEDIR);
textdomain (PACKAGE);
if (cmdline_parser (a... | main (int argc, char *argv[])
{
struct gengetopt_args_info args_info;
char *line = NULL;
size_t linelen = 0;
char *p, *r;
uint32_t *q;
unsigned cmdn = 0;
int rc;
setlocale (LC_ALL, "");
set_program_name (argv[0]);
bindtextdomain (PACKAGE, LOCALEDIR);
textdomain (PACKAGE);
if (cmdline_parser (a... | 1 | libidn | 5e3cb9c7b5bf0ce665b9d68f5ddf095af5c9ba60 | ||
89 | FT_Stream_EnterFrame( FT_Stream stream, FT_ULong count ) { FT_Error error = FT_Err_Ok; FT_ULong read_bytes; /* check for nested frame access */ FT_ASSERT( stream && stream->cursor == 0 ); if ( stream->read ) { /* allocate the frame in memory */ FT_Memory memory = stream->memory; /* simple sanity check */ if ( cou... | <vul_start> stream->pos + count > stream->size ) <vul_end> | FT_Stream_EnterFrame( FT_Stream stream,
FT_ULong count )
{
FT_Error error = FT_Err_Ok;
FT_ULong read_bytes;
/* check for nested frame access */
FT_ASSERT( stream && stream->cursor == 0 );
if ( stream->read )
{
/* allocate the frame in memory */
FT_... | FT_Stream_EnterFrame( FT_Stream stream,
FT_ULong count )
{
FT_Error error = FT_Err_Ok;
FT_ULong read_bytes;
/* check for nested frame access */
FT_ASSERT( stream && stream->cursor == 0 );
if ( stream->read )
{
/* allocate the frame in memory */
FT_... | 1 | savannah | 45a3c76b547511fa9d97aca34b150a0663257375 | ||
90 | parse_instruction( struct translate_ctx *ctx, boolean has_label ) { uint i; uint saturate = 0; const struct tgsi_opcode_info *info; struct tgsi_full_instruction inst; const char *cur; uint advance; inst = tgsi_default_full_instruction(); /* Parse predicate. */ eat_opt_white( &ctx->cur ); if (*ctx->cur == '(') { uint fi... | <vul_start> for (i = 0; inst.Instruction.Texture && *cur == ','; i++) { <vul_end> | parse_instruction(
struct translate_ctx *ctx,
boolean has_label )
{
uint i;
uint saturate = 0;
const struct tgsi_opcode_info *info;
struct tgsi_full_instruction inst;
const char *cur;
uint advance;
inst = tgsi_default_full_instruction();
/* Parse predicate.
*/
eat_opt_white( &ctx-... | parse_instruction(
struct translate_ctx *ctx,
boolean has_label )
{
uint i;
uint saturate = 0;
const struct tgsi_opcode_info *info;
struct tgsi_full_instruction inst;
const char *cur;
uint advance;
inst = tgsi_default_full_instruction();
/* Parse predicate.
*/
eat_opt_white( &ctx-... | 1 | virglrenderer | 28894a30a17a84529be102b21118e55d6c9f23fa | ||
91 | int http_request_forward_body(struct session *s, struct channel *req, int an_bit) { struct http_txn *txn = &s->txn; struct http_msg *msg = &s->txn.req; if (unlikely(msg->msg_state < HTTP_MSG_BODY)) return 0; if ((req->flags & (CF_READ_ERROR|CF_READ_TIMEOUT|CF_WRITE_ERROR|CF_WRITE_TIMEOUT)) || ((req->flags & CF_SHUTW) &... | <vul_start> if (unlikely(!(s->rep->flags & CF_READ_ATTACHED))) <vul_end> <vul_start> if (unlikely(!(s->rep->flags & CF_READ_ATTACHED))) <vul_end> | int http_request_forward_body(struct session *s, struct channel *req, int an_bit)
{
struct http_txn *txn = &s->txn;
struct http_msg *msg = &s->txn.req;
if (unlikely(msg->msg_state < HTTP_MSG_BODY))
return 0;
if ((req->flags & (CF_READ_ERROR|CF_READ_TIMEOUT|CF_WRITE_ERROR|CF_WRITE_TIMEOUT)) ||
((req->flags ... | int http_request_forward_body(struct session *s, struct channel *req, int an_bit)
{
struct http_txn *txn = &s->txn;
struct http_msg *msg = &s->txn.req;
if (unlikely(msg->msg_state < HTTP_MSG_BODY))
return 0;
if ((req->flags & (CF_READ_ERROR|CF_READ_TIMEOUT|CF_WRITE_ERROR|CF_WRITE_TIMEOUT)) ||
((req->flags ... | 2 | haproxy | b4d05093bc89f71377230228007e69a1434c1a0c | ||
92 | void Part::slotOpenExtractedEntry(KJob *job) { if (!job->error()) { OpenJob *openJob = qobject_cast<OpenJob*>(job); Q_ASSERT(openJob); m_tmpExtractDirList << openJob->tempDir(); const QString fullName = openJob->validatedFilePath(); bool isWritable = m_model->archive() && !m_model->archive()->isReadOnly(); if (!isWrita... | <vul_start> widget()); <vul_end> | void Part::slotOpenExtractedEntry(KJob *job)
{
if (!job->error()) {
OpenJob *openJob = qobject_cast<OpenJob*>(job);
Q_ASSERT(openJob);
m_tmpExtractDirList << openJob->tempDir();
const QString fullName = openJob->validatedFilePath();
bool isWritable = m_model->archive() &&... | void Part::slotOpenExtractedEntry(KJob *job)
{
if (!job->error()) {
OpenJob *openJob = qobject_cast<OpenJob*>(job);
Q_ASSERT(openJob);
m_tmpExtractDirList << openJob->tempDir();
const QString fullName = openJob->validatedFilePath();
bool isWritable = m_model->archive() &&... | 1 | kde | 82fdfd24d46966a117fa625b68784735a40f9065 | ||
93 | Ins_IUP( INS_ARG ) { IUP_WorkerRec V; FT_Byte mask; FT_UInt first_point; /* first point of contour */ FT_UInt end_point; /* end point (last+1) of contour */ FT_UInt first_touched; /* first touched point in contour */ FT_UInt cur_touched; /* current touched point in contour */ FT_UInt ... | <vul_start> if ( CUR.pts.n_points <= end_point ) end_point = CUR.pts.n_points; <vul_end> | Ins_IUP( INS_ARG )
{
IUP_WorkerRec V;
FT_Byte mask;
FT_UInt first_point; /* first point of contour */
FT_UInt end_point; /* end point (last+1) of contour */
FT_UInt first_touched; /* first touched point in contour */
FT_UInt cur_touched; /* current touched ... | Ins_IUP( INS_ARG )
{
IUP_WorkerRec V;
FT_Byte mask;
FT_UInt first_point; /* first point of contour */
FT_UInt end_point; /* end point (last+1) of contour */
FT_UInt first_touched; /* first touched point in contour */
FT_UInt cur_touched; /* current touched ... | 1 | savannah | 888cd1843e935fe675cf2ac303116d4ed5b9d54b | ||
94 | Mac_Read_POST_Resource( FT_Library library, FT_Stream stream, FT_Long *offsets, FT_Long resource_cnt, FT_Long face_index, FT_Face *aface ) { FT_Error error = FT_Err_Cannot_Open_Resource; FT_Memory memory = library->memory; FT_Byte* pfb_data; int i, type, flags; FT_Long len; FT_Long p... | <vul_start> <vul_end> | Mac_Read_POST_Resource( FT_Library library,
FT_Stream stream,
FT_Long *offsets,
FT_Long resource_cnt,
FT_Long face_index,
FT_Face *aface )
{
FT_Error error = FT_E... | Mac_Read_POST_Resource( FT_Library library,
FT_Stream stream,
FT_Long *offsets,
FT_Long resource_cnt,
FT_Long face_index,
FT_Face *aface )
{
FT_Error error = FT_E... | 1 | savannah | b2ea64bcc6c385a8e8318f9c759450a07df58b6d | ||
95 | gray_render_span( int y, int count, const FT_Span* spans, PWorker worker ) { unsigned char* p; FT_Bitmap* map = &worker->target; /* first of all, compute the scanline offset */ p = (unsigned char*)map->buffer - y * map->pitch; if ( map->pitch >= 0 ) <vul_start> p += (unsigned)( ( ... | <vul_start> p += ( map->rows - 1 ) * map->pitch; <vul_end> | gray_render_span( int y,
int count,
const FT_Span* spans,
PWorker worker )
{
unsigned char* p;
FT_Bitmap* map = &worker->target;
/* first of all, compute the scanline offset */
p = (unsigned char*)... | gray_render_span( int y,
int count,
const FT_Span* spans,
PWorker worker )
{
unsigned char* p;
FT_Bitmap* map = &worker->target;
/* first of all, compute the scanline offset */
p = (unsigned char*)... | 1 | savannah | 6305b869d86ff415a33576df6d43729673c66eee | ||
96 | Mac_Read_POST_Resource( FT_Library library, FT_Stream stream, FT_Long *offsets, FT_Long resource_cnt, FT_Long face_index, FT_Face *aface ) { FT_Error error = FT_Err_Cannot_Open_Resource; FT_Memory memory = library->memory; FT_Byte* pfb_data; int i, type, flags; FT_Long len; FT_Long p... | <vul_start> <vul_end> | Mac_Read_POST_Resource( FT_Library library,
FT_Stream stream,
FT_Long *offsets,
FT_Long resource_cnt,
FT_Long face_index,
FT_Face *aface )
{
FT_Error error = FT_E... | Mac_Read_POST_Resource( FT_Library library,
FT_Stream stream,
FT_Long *offsets,
FT_Long resource_cnt,
FT_Long face_index,
FT_Face *aface )
{
FT_Error error = FT_E... | 1 | savannah | c69891a1345640096fbf396e8dd567fe879ce233 | ||
97 | psh_glyph_find_strong_points( PSH_Glyph glyph, FT_Int dimension ) { /* a point is `strong' if it is located on a stem edge and */ /* has an `in' or `out' tangent parallel to the hint's direction */ PSH_Hint_Table table = &glyph->hint_tables[dimension]; PS_Mask mask = table->hint_masks->mask... | <vul_start> first = mask->end_point; <vul_end> <vul_start> next = mask->end_point; <vul_end> | psh_glyph_find_strong_points( PSH_Glyph glyph,
FT_Int dimension )
{
/* a point is `strong' if it is located on a stem edge and */
/* has an `in' or `out' tangent parallel to the hint's direction */
PSH_Hint_Table table = &glyph->hint_tables[dimension];
... | psh_glyph_find_strong_points( PSH_Glyph glyph,
FT_Int dimension )
{
/* a point is `strong' if it is located on a stem edge and */
/* has an `in' or `out' tangent parallel to the hint's direction */
PSH_Hint_Table table = &glyph->hint_tables[dimension];
... | 2 | savannah | 8d22746c9e5af80ff4304aef440986403a5072e2 | ||
98 | cff_decoder_parse_charstrings( CFF_Decoder* decoder, FT_Byte* charstring_base, FT_ULong charstring_len ) { FT_Error error; CFF_Decoder_Zone* zone; FT_Byte* ip; FT_Byte* limit; CFF_Builder* builder = &decoder->builder; FT_Pos x, y; FT_Fixed seed; FT_F... | <vul_start> <vul_end> | cff_decoder_parse_charstrings( CFF_Decoder* decoder,
FT_Byte* charstring_base,
FT_ULong charstring_len )
{
FT_Error error;
CFF_Decoder_Zone* zone;
FT_Byte* ip;
FT_Byte* limit;
CFF_Builder*... | cff_decoder_parse_charstrings( CFF_Decoder* decoder,
FT_Byte* charstring_base,
FT_ULong charstring_len )
{
FT_Error error;
CFF_Decoder_Zone* zone;
FT_Byte* ip;
FT_Byte* limit;
CFF_Builder*... | 1 | savannah | 7d3d2cc4fef72c6be9c454b3809c387e12b44cfc | ||
99 | XvQueryAdaptors( Display *dpy, Window window, unsigned int *p_nAdaptors, XvAdaptorInfo **p_pAdaptors) { XExtDisplayInfo *info = xv_find_display(dpy); xvQueryAdaptorsReq *req; xvQueryAdaptorsReply rep; size_t size; unsigned int ii, jj; char *name; <vul_start> char *end; <vul_end> XvAdaptorInfo *pas = NULL, *pa; XvFormat... | <vul_start> <vul_end> | XvQueryAdaptors(
Display *dpy,
Window window,
unsigned int *p_nAdaptors,
XvAdaptorInfo **p_pAdaptors)
{
XExtDisplayInfo *info = xv_find_display(dpy);
xvQueryAdaptorsReq *req;
xvQueryAdaptorsReply rep;
size_t size;
unsigned int ii, jj;
char *name;
char *end;
XvAdaptorI... | XvQueryAdaptors(
Display *dpy,
Window window,
unsigned int *p_nAdaptors,
XvAdaptorInfo **p_pAdaptors)
{
XExtDisplayInfo *info = xv_find_display(dpy);
xvQueryAdaptorsReq *req;
xvQueryAdaptorsReply rep;
size_t size;
unsigned int ii, jj;
char *name;
XvAdaptorInfo *pas = NULL... | 1 | libXv | d9da580b46a28ab497de2e94fdc7b9ff953dab17 |
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