#include "curl_setup.h"
#ifdef CURLDEBUG
#include <curl/curl.h>
#include "urldata.h"
#include "curlx/fopen.h"
#include "curl_memory.h"
#include "memdebug.h"
struct memdebug {
size_t size;
union {
curl_off_t o;
double d;
void *p;
} mem[1];
};
FILE *curl_dbg_logfile = NULL;
static bool registered_cleanup = FALSE;
static bool memlimit = FALSE;
static long memsize = 0;
static void curl_dbg_cleanup(void)
{
if(curl_dbg_logfile &&
curl_dbg_logfile != stderr &&
curl_dbg_logfile != stdout) {
fclose(curl_dbg_logfile);
}
curl_dbg_logfile = NULL;
}
void curl_dbg_memdebug(const char *logname)
{
if(!curl_dbg_logfile) {
if(logname && *logname)
curl_dbg_logfile = CURLX_FOPEN_LOW(logname, FOPEN_WRITETEXT);
else
curl_dbg_logfile = stderr;
#ifdef MEMDEBUG_LOG_SYNC
if(curl_dbg_logfile)
setbuf(curl_dbg_logfile, (char *)NULL);
#endif
}
if(!registered_cleanup)
registered_cleanup = !atexit(curl_dbg_cleanup);
}
void curl_dbg_memlimit(long limit)
{
if(!memlimit) {
memlimit = TRUE;
memsize = limit;
}
}
static bool countcheck(const char *func, int line, const char *source)
{
if(memlimit && source) {
if(!memsize) {
curl_dbg_log("LIMIT %s:%d %s reached memlimit\n",
source, line, func);
curl_mfprintf(stderr, "LIMIT %s:%d %s reached memlimit\n",
source, line, func);
fflush(curl_dbg_logfile);
CURL_SETERRNO(ENOMEM);
return TRUE;
}
else
memsize--;
}
return FALSE;
}
ALLOC_FUNC
void *curl_dbg_malloc(size_t wantedsize, int line, const char *source)
{
struct memdebug *mem;
size_t size;
DEBUGASSERT(wantedsize != 0);
if(countcheck("malloc", line, source))
return NULL;
size = sizeof(struct memdebug) + wantedsize;
mem = (Curl_cmalloc)(size);
if(mem) {
mem->size = wantedsize;
}
if(source)
curl_dbg_log("MEM %s:%d malloc(%zu) = %p\n",
source, line, wantedsize,
mem ? (void *)mem->mem : (void *)0);
return mem ? mem->mem : NULL;
}
ALLOC_FUNC
void *curl_dbg_calloc(size_t wanted_elements, size_t wanted_size,
int line, const char *source)
{
struct memdebug *mem;
size_t size, user_size;
DEBUGASSERT(wanted_elements != 0);
DEBUGASSERT(wanted_size != 0);
if(countcheck("calloc", line, source))
return NULL;
user_size = wanted_size * wanted_elements;
size = sizeof(struct memdebug) + user_size;
mem = (Curl_ccalloc)(1, size);
if(mem)
mem->size = user_size;
if(source)
curl_dbg_log("MEM %s:%d calloc(%zu,%zu) = %p\n",
source, line, wanted_elements, wanted_size,
mem ? (void *)mem->mem : (void *)0);
return mem ? mem->mem : NULL;
}
ALLOC_FUNC
char *curl_dbg_strdup(const char *str, int line, const char *source)
{
char *mem;
size_t len;
DEBUGASSERT(str != NULL);
if(countcheck("strdup", line, source))
return NULL;
len = strlen(str) + 1;
mem = curl_dbg_malloc(len, 0, NULL);
if(mem)
memcpy(mem, str, len);
if(source)
curl_dbg_log("MEM %s:%d strdup(%p) (%zu) = %p\n",
source, line, (const void *)str, len, (const void *)mem);
return mem;
}
#if defined(_WIN32) && defined(UNICODE)
ALLOC_FUNC
wchar_t *curl_dbg_wcsdup(const wchar_t *str, int line, const char *source)
{
wchar_t *mem;
size_t wsiz, bsiz;
DEBUGASSERT(str != NULL);
if(countcheck("wcsdup", line, source))
return NULL;
wsiz = wcslen(str) + 1;
bsiz = wsiz * sizeof(wchar_t);
mem = curl_dbg_malloc(bsiz, 0, NULL);
if(mem)
memcpy(mem, str, bsiz);
if(source)
curl_dbg_log("MEM %s:%d wcsdup(%p) (%zu) = %p\n",
source, line, (const void *)str, bsiz, (void *)mem);
return mem;
}
#endif
void *curl_dbg_realloc(void *ptr, size_t wantedsize,
int line, const char *source)
{
struct memdebug *mem = NULL;
size_t size = sizeof(struct memdebug) + wantedsize;
DEBUGASSERT(wantedsize != 0);
if(countcheck("realloc", line, source))
return NULL;
#ifdef __INTEL_COMPILER
# pragma warning(push)
# pragma warning(disable:1684)
#endif
if(ptr)
mem = (void *)((char *)ptr - offsetof(struct memdebug, mem));
#ifdef __INTEL_COMPILER
# pragma warning(pop)
#endif
mem = (Curl_crealloc)(mem, size);
if(source)
curl_dbg_log("MEM %s:%d realloc(%p, %zu) = %p\n",
source, line, (void *)ptr, wantedsize,
mem ? (void *)mem->mem : (void *)0);
if(mem) {
mem->size = wantedsize;
return mem->mem;
}
return NULL;
}
void curl_dbg_free(void *ptr, int line, const char *source)
{
if(ptr) {
struct memdebug *mem;
#ifdef __INTEL_COMPILER
# pragma warning(push)
# pragma warning(disable:1684)
#endif
mem = (void *)((char *)ptr - offsetof(struct memdebug, mem));
#ifdef __INTEL_COMPILER
# pragma warning(pop)
#endif
(Curl_cfree)(mem);
}
if(source && ptr)
curl_dbg_log("MEM %s:%d free(%p)\n", source, line, (void *)ptr);
}
curl_socket_t curl_dbg_socket(int domain, int type, int protocol,
int line, const char *source)
{
curl_socket_t sockfd;
if(countcheck("socket", line, source))
return CURL_SOCKET_BAD;
sockfd = socket(domain, type, protocol);
if(source && (sockfd != CURL_SOCKET_BAD))
curl_dbg_log("FD %s:%d socket() = %" FMT_SOCKET_T "\n",
source, line, sockfd);
return sockfd;
}
SEND_TYPE_RETV curl_dbg_send(SEND_TYPE_ARG1 sockfd,
SEND_QUAL_ARG2 SEND_TYPE_ARG2 buf,
SEND_TYPE_ARG3 len, SEND_TYPE_ARG4 flags,
int line, const char *source)
{
SEND_TYPE_RETV rc;
if(countcheck("send", line, source))
return -1;
rc = send(sockfd, buf, len, flags);
if(source)
curl_dbg_log("SEND %s:%d send(%lu) = %ld\n",
source, line, (unsigned long)len, (long)rc);
return rc;
}
RECV_TYPE_RETV curl_dbg_recv(RECV_TYPE_ARG1 sockfd, RECV_TYPE_ARG2 buf,
RECV_TYPE_ARG3 len, RECV_TYPE_ARG4 flags,
int line, const char *source)
{
RECV_TYPE_RETV rc;
if(countcheck("recv", line, source))
return -1;
rc = recv(sockfd, buf, len, flags);
if(source)
curl_dbg_log("RECV %s:%d recv(%lu) = %ld\n",
source, line, (unsigned long)len, (long)rc);
return rc;
}
#ifdef HAVE_SOCKETPAIR
int curl_dbg_socketpair(int domain, int type, int protocol,
curl_socket_t socket_vector[2],
int line, const char *source)
{
int res = socketpair(domain, type, protocol, socket_vector);
if(source && (res == 0))
curl_dbg_log("FD %s:%d socketpair() = "
"%" FMT_SOCKET_T " %" FMT_SOCKET_T "\n",
source, line, socket_vector[0], socket_vector[1]);
return res;
}
#endif
curl_socket_t curl_dbg_accept(curl_socket_t s, void *saddr, void *saddrlen,
int line, const char *source)
{
struct sockaddr *addr = (struct sockaddr *)saddr;
curl_socklen_t *addrlen = (curl_socklen_t *)saddrlen;
curl_socket_t sockfd = accept(s, addr, addrlen);
if(source && (sockfd != CURL_SOCKET_BAD))
curl_dbg_log("FD %s:%d accept() = %" FMT_SOCKET_T "\n",
source, line, sockfd);
return sockfd;
}
#ifdef HAVE_ACCEPT4
curl_socket_t curl_dbg_accept4(curl_socket_t s, void *saddr, void *saddrlen,
int flags,
int line, const char *source)
{
struct sockaddr *addr = (struct sockaddr *)saddr;
curl_socklen_t *addrlen = (curl_socklen_t *)saddrlen;
curl_socket_t sockfd = accept4(s, addr, addrlen, flags);
if(source && (sockfd != CURL_SOCKET_BAD))
curl_dbg_log("FD %s:%d accept() = %" FMT_SOCKET_T "\n",
source, line, sockfd);
return sockfd;
}
#endif
void curl_dbg_mark_sclose(curl_socket_t sockfd, int line, const char *source)
{
if(source)
curl_dbg_log("FD %s:%d sclose(%" FMT_SOCKET_T ")\n",
source, line, sockfd);
}
int curl_dbg_sclose(curl_socket_t sockfd, int line, const char *source)
{
int res = CURL_SCLOSE(sockfd);
curl_dbg_mark_sclose(sockfd, line, source);
return res;
}
ALLOC_FUNC
FILE *curl_dbg_fopen(const char *file, const char *mode,
int line, const char *source)
{
FILE *res = CURLX_FOPEN_LOW(file, mode);
if(source)
curl_dbg_log("FILE %s:%d fopen(\"%s\",\"%s\") = %p\n",
source, line, file, mode, (void *)res);
return res;
}
ALLOC_FUNC
FILE *curl_dbg_fdopen(int filedes, const char *mode,
int line, const char *source)
{
FILE *res = fdopen(filedes, mode);
if(source)
curl_dbg_log("FILE %s:%d fdopen(\"%d\",\"%s\") = %p\n",
source, line, filedes, mode, (void *)res);
return res;
}
int curl_dbg_fclose(FILE *file, int line, const char *source)
{
int res;
DEBUGASSERT(file != NULL);
if(source)
curl_dbg_log("FILE %s:%d fclose(%p)\n",
source, line, (void *)file);
res = fclose(file);
return res;
}
void curl_dbg_log(const char *format, ...)
{
char buf[1024];
int nchars;
va_list ap;
if(!curl_dbg_logfile)
return;
va_start(ap, format);
nchars = curl_mvsnprintf(buf, sizeof(buf), format, ap);
va_end(ap);
if(nchars > (int)sizeof(buf) - 1)
nchars = (int)sizeof(buf) - 1;
if(nchars > 0)
(fwrite)(buf, 1, (size_t)nchars, curl_dbg_logfile);
}
#endif