THTTPD integration
git-svn-id: svn://svn.code.sf.net/p/nuttx/code/trunk@2027 42af7a65-404d-4744-a932-0658087f49c3
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@ -43,15 +43,8 @@
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#include <stdlib.h>
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#include <debug.h>
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#if 0
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#include <sys/time.h>
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#include <unistd.h>
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#include <string.h>
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#include <fcntl.h>
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#endif
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#include <poll.h>
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#include <debug.h>
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#include "config.h"
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#include "fdwatch.h"
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@ -82,6 +75,29 @@ static long nwatches = 0;
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* Private Functions
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****************************************************************************/
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#ifdef CONFIG_THTTPD_FDWATCH_DEBUG
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static void fdwatch_dump(const char *msg, FAR struct fdwatch_s *fw)
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{
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int i;
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nvdbg("%s\n", msg);
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nvdbg("nwatched: %d nfds: %d\n", fw->nwatched, fw->nfds);
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for (i = 0; i < fw->nwatched; i++)
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{
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nvdbg("%2d. pollfds: {fd: %d events: %02x revents: %02x} client: %p\n",
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i+1, fw->pollfds[i].fd, fw->pollfds[i].events,
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fw->pollfds[i].revents, fw->client[i]);
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}
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nvdbg("nactive: %d next: %d\n", fw->nactive, fw->next);
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for (i = 0; i < fw->nactive; i++)
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{
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nvdbg("%2d. %d active\n", i, fw->ready[i]);
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}
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}
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#else
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# define fdwatch_dump(m,f)
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#endif
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static int fdwatch_pollndx(FAR struct fdwatch_s *fw, int fd)
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{
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int pollndx;
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@ -141,6 +157,8 @@ struct fdwatch_s *fdwatch_initialize(int nfds)
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{
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goto errout_with_allocations;
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}
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fdwatch_dump("Initial state:", fw);
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return fw;
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errout_with_allocations:
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@ -154,6 +172,7 @@ void fdwatch_uninitialize(struct fdwatch_s *fw)
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{
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if (fw)
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{
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fdwatch_dump("Uninitializing:", fw);
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if (fw->client)
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{
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free(fw->client);
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@ -178,15 +197,7 @@ void fdwatch_uninitialize(struct fdwatch_s *fw)
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void fdwatch_add_fd(struct fdwatch_s *fw, int fd, void *client_data)
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{
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nvdbg("fd: %d client_data: %p\n", fd, client_data);
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#ifdef CONFIG_DEBUG
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if (fd < CONFIG_NFILE_DESCRIPTORS ||
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fd >= CONFIG_NFILE_DESCRIPTORS+fw->nfds)
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{
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ndbg("Received bad fd (%d)\n", fd);
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return;
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}
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#endif
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fdwatch_dump("Before adding:", fw);
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if (fw->nwatched >= fw->nfds)
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{
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@ -203,6 +214,7 @@ void fdwatch_add_fd(struct fdwatch_s *fw, int fd, void *client_data)
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/* Increment the count of watched descriptors */
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fw->nwatched++;
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fdwatch_dump("After adding:", fw);
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}
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/* Remove a descriptor from the watch list. */
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@ -212,15 +224,7 @@ void fdwatch_del_fd(struct fdwatch_s *fw, int fd)
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int pollndx;
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nvdbg("fd: %d\n", fd);
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#ifdef CONFIG_DEBUG
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if (fd < CONFIG_NFILE_DESCRIPTORS ||
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fd >= CONFIG_NFILE_DESCRIPTORS+fw->nfds)
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{
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ndbg("Received bad fd: %d\n", fd);
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return;
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}
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#endif
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fdwatch_dump("Before deleting:", fw);
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/* Get the index associated with the fd */
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@ -241,6 +245,7 @@ void fdwatch_del_fd(struct fdwatch_s *fw, int fd)
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fw->client[pollndx] = fw->client[fw->nwatched];
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}
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}
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fdwatch_dump("After deleting:", fw);
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}
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/* Do the watch. Return value is the number of descriptors that are ready,
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@ -262,10 +267,11 @@ int fdwatch(struct fdwatch_s *fw, long timeout_msecs)
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* or <0 on an error.
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*/
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nvdbg("Waiting...\n");
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fdwatch_dump("Before waiting:", fw);
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nvdbg("Waiting... (timeout %d)\n", timeout_msecs);
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fw->nactive = 0;
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fw->next = 0;
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ret = poll(fw->pollfds, fw->nwatched, (int)timeout_msecs);
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ret = poll(fw->pollfds, fw->nwatched, (int)timeout_msecs);
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nvdbg("Awakened: %d\n", ret);
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/* Look through all of the descriptors and make a list of all of them than
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@ -296,6 +302,7 @@ int fdwatch(struct fdwatch_s *fw, long timeout_msecs)
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/* Return the number of descriptors with activity */
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nvdbg("nactive: %d\n", fw->nactive);
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fdwatch_dump("After wakeup:", fw);
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return ret;
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}
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@ -306,15 +313,7 @@ int fdwatch_check_fd(struct fdwatch_s *fw, int fd)
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int pollndx;
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nvdbg("fd: %d\n", fd);
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#ifdef CONFIG_DEBUG
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if (fd < CONFIG_NFILE_DESCRIPTORS ||
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fd >= CONFIG_NFILE_DESCRIPTORS + fw->nfds)
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{
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ndbg("Bad fd: %d\n", fd);
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return 0;
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}
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#endif
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fdwatch_dump("Checking:", fw);
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/* Get the index associated with the fd */
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@ -330,6 +329,7 @@ int fdwatch_check_fd(struct fdwatch_s *fw, int fd)
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void *fdwatch_get_next_client_data(struct fdwatch_s *fw)
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{
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fdwatch_dump("Before getting client data:", fw);
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if (fw->next >= fw->nwatched)
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{
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nvdbg("All client data returned: %d\n", fw->next);
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@ -345,6 +345,7 @@ void *fdwatch_get_next_client_data(struct fdwatch_s *fw)
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#if defined(CONFIG_DEBUG) && defined(CONFIG_DEBUG_NET)
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void fdwatch_logstats(struct fdwatch_s *fw, long secs)
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{
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fdwatch_dump("LOG stats:", fw);
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if (secs > 0)
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{
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ndbg("fdwatch - %ld polls (%g/sec)\n", nwatches, (float)nwatches / secs);
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@ -47,8 +47,9 @@
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* Pre-Processor Definitions
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****************************************************************************/
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#define FDW_READ 0
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#define FDW_WRITE 1
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/* Define to enable detailed FDWATCH debug output */
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#undef CONFIG_THTTPD_FDWATCH_DEBUG
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#ifndef INFTIM
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# define INFTIM -1
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@ -60,9 +61,9 @@
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struct fdwatch_s
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{
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struct pollfd *pollfds; /* Poll data */
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void **client; /* Client data */
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uint8 *ready; /* The list of fds with activity */
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struct pollfd *pollfds; /* Poll data (allocated) */
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void **client; /* Client data (allocated) */
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uint8 *ready; /* The list of fds with activity (allocated) */
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uint8 nfds; /* The configured maximum number of fds */
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uint8 nwatched; /* The number of fds currently watched */
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uint8 nactive; /* The number of fds with activity */
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@ -76,8 +76,7 @@
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#define CNST_FREE 0
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#define CNST_READING 1
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#define CNST_SENDING 2
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#define CNST_PAUSING 3
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#define CNST_LINGERING 4
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#define CNST_LINGERING 3
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#define SPARE_FDS 2
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#define AVAILABLE_FDS (CONFIG_NSOCKET_DESCRIPTORS - SPARE_FDS)
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@ -528,7 +527,7 @@ static void handle_linger(struct connect_s *conn, struct timeval *tv)
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char buf[4096];
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int ret;
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/* In lingering-close mode we just read and ignore bytes. An error or EOF
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/* In lingering-close mode we just read and ignore bytes. An error or EOF
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* ends things, otherwise we go until a timeout
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*/
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@ -582,39 +581,29 @@ static void clear_connection(struct connect_s *conn, struct timeval *tv)
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/* If we were already lingering, shut down for real */
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tmr_cancel(conn->linger_timer);
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conn->linger_timer = NULL;
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conn->linger_timer = NULL;
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conn->hc->should_linger = FALSE;
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}
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if (conn->hc->should_linger)
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{
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if (conn->conn_state != CNST_PAUSING)
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{
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fdwatch_del_fd(fw, conn->hc->conn_fd);
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}
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fdwatch_del_fd(fw, conn->hc->conn_fd);
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conn->conn_state = CNST_LINGERING;
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close(conn->hc->conn_fd);
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fdwatch_add_fd(fw, conn->hc->conn_fd, conn);
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client_data.p = conn;
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conn->linger_timer = tmr_create(tv, linger_clear_connection, client_data,
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CONFIG_THTTPD_LINGER_MSEC, 0);
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if (conn->linger_timer != NULL)
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{
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ndbg("replacing non-null linger_timer!\n");
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return;
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}
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ndbg("tmr_create(linger_clear_connection) failed\n");
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}
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conn->linger_timer =
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tmr_create(tv, linger_clear_connection, client_data, CONFIG_THTTPD_LINGER_MSEC, 0);
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if (conn->linger_timer == NULL)
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{
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ndbg("tmr_create(linger_clear_connection) failed\n");
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exit(1);
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}
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}
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else
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{
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really_clear_connection(conn, tv);
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}
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/* Either we are done lingering, we shouldn't linger, or we failed to setup the linger */
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really_clear_connection(conn, tv);
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}
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static void really_clear_connection(struct connect_s *conn, struct timeval *tv)
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@ -622,11 +611,8 @@ static void really_clear_connection(struct connect_s *conn, struct timeval *tv)
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#if defined(CONFIG_DEBUG) && defined(CONFIG_DEBUG_NET)
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stats_bytes += conn->hc->bytes_sent;
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#endif
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if (conn->conn_state != CNST_PAUSING)
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{
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fdwatch_del_fd(fw, conn->hc->conn_fd);
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}
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fdwatch_del_fd(fw, conn->hc->conn_fd);
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httpd_close_conn(conn->hc, tv);
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if (conn->linger_timer != NULL)
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{
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@ -634,7 +620,7 @@ static void really_clear_connection(struct connect_s *conn, struct timeval *tv)
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conn->linger_timer = 0;
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}
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conn->conn_state = CNST_FREE;
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conn->conn_state = CNST_FREE;
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conn->next_free_connect = first_free_connect;
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first_free_connect = conn - connects; /* division by sizeof is implied */
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num_connects--;
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@ -661,7 +647,6 @@ static void idle(ClientData client_data, struct timeval *nowP)
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break;
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case CNST_SENDING:
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case CNST_PAUSING:
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if (nowP->tv_sec - conn->active_at >= CONFIG_THTTPD_IDLE_SEND_LIMIT_SEC)
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{
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ndbg("%s connection timed out sending\n", httpd_ntoa(&conn->hc->client_addr));
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@ -676,6 +661,7 @@ static void linger_clear_connection(ClientData client_data, struct timeval *nowP
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{
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struct connect_s *conn;
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nvdbg("Clear connection\n");
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conn = (struct connect_s *) client_data.p;
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conn->linger_timer = NULL;
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really_clear_connection(conn, nowP);
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@ -894,7 +880,7 @@ int thttpd_main(int argc, char **argv)
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continue;
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}
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ndbg("fdwatch: %d\n", errno);
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ndbg("fdwatch failed: %d\n", errno);
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exit(1);
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}
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@ -202,33 +202,33 @@ Timer *tmr_create(struct timeval *nowP, TimerProc * timer_proc,
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}
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else
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{
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t = (Timer *) malloc(sizeof(Timer));
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t = (Timer*)malloc(sizeof(Timer));
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if (!t)
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{
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return NULL;
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}
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++alloc_count;
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alloc_count++;
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}
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t->timer_proc = timer_proc;
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t->timer_proc = timer_proc;
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t->client_data = client_data;
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t->msecs = msecs;
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t->periodic = periodic;
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t->msecs = msecs;
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t->periodic = periodic;
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if (nowP != (struct timeval *)0)
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if (nowP != NULL)
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{
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t->time = *nowP;
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}
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else
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{
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(void)gettimeofday(&t->time, (struct timezone *)0);
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(void)gettimeofday(&t->time, NULL);
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}
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t->time.tv_sec += msecs / 1000L;
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t->time.tv_sec += msecs / 1000L;
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t->time.tv_usec += (msecs % 1000L) * 1000L;
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if (t->time.tv_usec >= 1000000L)
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{
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t->time.tv_sec += t->time.tv_usec / 1000000L;
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t->time.tv_sec += t->time.tv_usec / 1000000L;
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t->time.tv_usec %= 1000000L;
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}
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t->hash = hash(t);
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@ -248,7 +248,7 @@ long tmr_mstimeout(struct timeval *nowP)
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register Timer *t;
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gotone = 0;
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msecs = 0; /* make lint happy */
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msecs = 0;
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/* Since the lists are sorted, we only need to look at the * first timer on
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* each one.
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@ -272,6 +272,7 @@ long tmr_mstimeout(struct timeval *nowP)
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}
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}
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}
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if (!gotone)
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{
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return INFTIM;
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@ -306,7 +307,7 @@ void tmr_run(struct timeval *nowP)
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break;
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}
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(t->timer_proc) (t->client_data, nowP);
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(t->timer_proc)(t->client_data, nowP);
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if (t->periodic)
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{
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/* Reschedule. */
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@ -332,14 +333,14 @@ void tmr_cancel(Timer * t)
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/* Remove it from its active list. */
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l_remove(t);
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--active_count;
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active_count--;
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/* And put it on the free list. */
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t->next = free_timers;
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t->next = free_timers;
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free_timers = t;
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++free_count;
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t->prev = NULL;
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free_count++;
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t->prev = NULL;
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}
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void tmr_cleanup(void)
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@ -350,9 +351,9 @@ void tmr_cleanup(void)
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{
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t = free_timers;
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free_timers = t->next;
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--free_count;
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free((void *)t);
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--alloc_count;
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free_count--;
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free((void*)t);
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alloc_count--;
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}
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}
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