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The `struct Curl_dns_entry *` used to established a connection do not have the connection's lifetime, but the transfer's lifetime (of the transfer that initiates the connect). `Curl_dns_entry *` is reference counted with the "dns cache". That cache might be owned by the multi or the transfer's share. In the share, the reference count needs updating under lock. Therefore, the dns entry can only be kept *and* released using the same transfer it was initially looked up from. But a connection is often discarded using another transfer. So far, the problem of this has been avoided in clearing the connection's dns entries in the "multi_don()" handling. So, connections had NULL dns entries after the initial transfers and its connect had been handled. Keeping the dns entries in data->state seems therefore a better choice. Also: remove the `struct Curl_dns_entry *` from the connect filters contexts. Use `data->state.dns` every time instead and fail correctly when not present and needed. Closes #17383
581 lines
16 KiB
C
581 lines
16 KiB
C
/***************************************************************************
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* _ _ ____ _
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* Project ___| | | | _ \| |
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* / __| | | | |_) | |
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* | (__| |_| | _ <| |___
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* \___|\___/|_| \_\_____|
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*
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* Copyright (C) Linus Nielsen Feltzing, <linus@haxx.se>
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* Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
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*
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* This software is licensed as described in the file COPYING, which
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* you should have received as part of this distribution. The terms
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* are also available at https://curl.se/docs/copyright.html.
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*
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* You may opt to use, copy, modify, merge, publish, distribute and/or sell
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* copies of the Software, and permit persons to whom the Software is
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* furnished to do so, under the terms of the COPYING file.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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* SPDX-License-Identifier: curl
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*
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***************************************************************************/
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#include "curl_setup.h"
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#include <curl/curl.h>
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#include "urldata.h"
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#include "url.h"
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#include "cfilters.h"
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#include "progress.h"
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#include "multiif.h"
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#include "multi_ev.h"
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#include "sendf.h"
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#include "cshutdn.h"
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#include "http_negotiate.h"
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#include "http_ntlm.h"
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#include "sigpipe.h"
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#include "connect.h"
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#include "select.h"
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#include "strcase.h"
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#include "curlx/strparse.h"
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/* The last 3 #include files should be in this order */
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#include "curl_printf.h"
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#include "curl_memory.h"
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#include "memdebug.h"
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static void cshutdn_run_conn_handler(struct Curl_easy *data,
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struct connectdata *conn)
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{
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if(!conn->bits.shutdown_handler) {
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/* Cleanup NTLM connection-related data */
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Curl_http_auth_cleanup_ntlm(conn);
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/* Cleanup NEGOTIATE connection-related data */
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Curl_http_auth_cleanup_negotiate(conn);
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if(conn->handler && conn->handler->disconnect) {
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/* Some disconnect handlers do a blocking wait on server responses.
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* FTP/IMAP/SMTP and SFTP are among them. When using the internal
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* handle, set an overall short timeout so we do not hang for the
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* default 120 seconds. */
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if(data->state.internal) {
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data->set.timeout = DEFAULT_SHUTDOWN_TIMEOUT_MS;
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(void)Curl_pgrsTime(data, TIMER_STARTOP);
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}
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/* This is set if protocol-specific cleanups should be made */
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DEBUGF(infof(data, "connection #%" FMT_OFF_T
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", shutdown protocol handler (aborted=%d)",
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conn->connection_id, conn->bits.aborted));
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/* There are protocol handlers that block on retrieving
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* server responses here (FTP). Set a short timeout. */
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conn->handler->disconnect(data, conn, conn->bits.aborted);
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}
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conn->bits.shutdown_handler = TRUE;
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}
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}
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static void cshutdn_run_once(struct Curl_easy *data,
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struct connectdata *conn,
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bool *done)
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{
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CURLcode r1, r2;
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bool done1, done2;
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/* We expect to be attached when called */
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DEBUGASSERT(data->conn == conn);
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cshutdn_run_conn_handler(data, conn);
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if(conn->bits.shutdown_filters) {
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*done = TRUE;
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return;
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}
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if(!conn->connect_only && Curl_conn_is_connected(conn, FIRSTSOCKET))
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r1 = Curl_conn_shutdown(data, FIRSTSOCKET, &done1);
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else {
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r1 = CURLE_OK;
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done1 = TRUE;
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}
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if(!conn->connect_only && Curl_conn_is_connected(conn, SECONDARYSOCKET))
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r2 = Curl_conn_shutdown(data, SECONDARYSOCKET, &done2);
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else {
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r2 = CURLE_OK;
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done2 = TRUE;
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}
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/* we are done when any failed or both report success */
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*done = (r1 || r2 || (done1 && done2));
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if(*done)
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conn->bits.shutdown_filters = TRUE;
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}
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void Curl_cshutdn_run_once(struct Curl_easy *data,
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struct connectdata *conn,
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bool *done)
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{
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DEBUGASSERT(!data->conn);
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Curl_attach_connection(data, conn);
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cshutdn_run_once(data, conn, done);
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CURL_TRC_M(data, "[SHUTDOWN] shutdown, done=%d", *done);
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Curl_detach_connection(data);
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}
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void Curl_cshutdn_terminate(struct Curl_easy *data,
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struct connectdata *conn,
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bool do_shutdown)
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{
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struct Curl_easy *admin = data;
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bool done;
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/* there must be a connection to close */
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DEBUGASSERT(conn);
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/* it must be removed from the connection pool */
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DEBUGASSERT(!conn->bits.in_cpool);
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/* the transfer must be detached from the connection */
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DEBUGASSERT(data && !data->conn);
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/* If we can obtain an internal admin handle, use that to attach
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* and terminate the connection. Some protocol will try to mess with
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* `data` during shutdown and we do not want that with a `data` from
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* the application. */
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if(data->multi && data->multi->admin)
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admin = data->multi->admin;
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Curl_attach_connection(admin, conn);
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cshutdn_run_conn_handler(admin, conn);
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if(do_shutdown) {
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/* Make a last attempt to shutdown handlers and filters, if
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* not done so already. */
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cshutdn_run_once(admin, conn, &done);
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}
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CURL_TRC_M(admin, "[SHUTDOWN] %sclosing connection #%" FMT_OFF_T,
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conn->bits.shutdown_filters ? "" : "force ",
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conn->connection_id);
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Curl_conn_close(admin, SECONDARYSOCKET);
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Curl_conn_close(admin, FIRSTSOCKET);
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Curl_detach_connection(admin);
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if(data->multi)
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Curl_multi_ev_conn_done(data->multi, data, conn);
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Curl_conn_free(admin, conn);
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if(data->multi) {
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CURL_TRC_M(data, "[SHUTDOWN] trigger multi connchanged");
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Curl_multi_connchanged(data->multi);
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}
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}
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static bool cshutdn_destroy_oldest(struct cshutdn *cshutdn,
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struct Curl_easy *data,
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const char *destination)
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{
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struct Curl_llist_node *e;
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struct connectdata *conn;
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e = Curl_llist_head(&cshutdn->list);
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while(e) {
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conn = Curl_node_elem(e);
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if(!destination || !strcmp(destination, conn->destination))
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break;
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e = Curl_node_next(e);
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}
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if(e) {
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SIGPIPE_VARIABLE(pipe_st);
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conn = Curl_node_elem(e);
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Curl_node_remove(e);
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sigpipe_init(&pipe_st);
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sigpipe_apply(data, &pipe_st);
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Curl_cshutdn_terminate(data, conn, FALSE);
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sigpipe_restore(&pipe_st);
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return TRUE;
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}
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return FALSE;
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}
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bool Curl_cshutdn_close_oldest(struct Curl_easy *data,
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const char *destination)
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{
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if(data && data->multi) {
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struct cshutdn *csd = &data->multi->cshutdn;
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return cshutdn_destroy_oldest(csd, data, destination);
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}
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return FALSE;
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}
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#define NUM_POLLS_ON_STACK 10
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static CURLcode cshutdn_wait(struct cshutdn *cshutdn,
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struct Curl_easy *data,
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int timeout_ms)
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{
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struct pollfd a_few_on_stack[NUM_POLLS_ON_STACK];
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struct curl_pollfds cpfds;
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CURLcode result;
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Curl_pollfds_init(&cpfds, a_few_on_stack, NUM_POLLS_ON_STACK);
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result = Curl_cshutdn_add_pollfds(cshutdn, data, &cpfds);
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if(result)
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goto out;
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Curl_poll(cpfds.pfds, cpfds.n, CURLMIN(timeout_ms, 1000));
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out:
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Curl_pollfds_cleanup(&cpfds);
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return result;
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}
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static void cshutdn_perform(struct cshutdn *cshutdn,
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struct Curl_easy *data)
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{
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struct Curl_llist_node *e = Curl_llist_head(&cshutdn->list);
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struct Curl_llist_node *enext;
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struct connectdata *conn;
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struct curltime *nowp = NULL;
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struct curltime now;
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timediff_t next_expire_ms = 0, ms;
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bool done;
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if(!e)
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return;
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CURL_TRC_M(data, "[SHUTDOWN] perform on %zu connections",
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Curl_llist_count(&cshutdn->list));
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while(e) {
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enext = Curl_node_next(e);
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conn = Curl_node_elem(e);
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Curl_cshutdn_run_once(data, conn, &done);
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if(done) {
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Curl_node_remove(e);
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Curl_cshutdn_terminate(data, conn, FALSE);
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}
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else {
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/* idata has one timer list, but maybe more than one connection.
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* Set EXPIRE_SHUTDOWN to the smallest time left for all. */
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if(!nowp) {
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now = curlx_now();
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nowp = &now;
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}
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ms = Curl_conn_shutdown_timeleft(conn, nowp);
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if(ms && ms < next_expire_ms)
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next_expire_ms = ms;
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}
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e = enext;
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}
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if(next_expire_ms)
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Curl_expire_ex(data, nowp, next_expire_ms, EXPIRE_SHUTDOWN);
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}
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static void cshutdn_terminate_all(struct cshutdn *cshutdn,
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struct Curl_easy *data,
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int timeout_ms)
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{
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struct curltime started = curlx_now();
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struct Curl_llist_node *e;
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SIGPIPE_VARIABLE(pipe_st);
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DEBUGASSERT(cshutdn);
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DEBUGASSERT(data);
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CURL_TRC_M(data, "[SHUTDOWN] shutdown all");
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sigpipe_init(&pipe_st);
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sigpipe_apply(data, &pipe_st);
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while(Curl_llist_head(&cshutdn->list)) {
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timediff_t timespent;
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int remain_ms;
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cshutdn_perform(cshutdn, data);
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if(!Curl_llist_head(&cshutdn->list)) {
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CURL_TRC_M(data, "[SHUTDOWN] shutdown finished cleanly");
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break;
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}
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/* wait for activity, timeout or "nothing" */
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timespent = curlx_timediff(curlx_now(), started);
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if(timespent >= (timediff_t)timeout_ms) {
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CURL_TRC_M(data, "[SHUTDOWN] shutdown finished, %s",
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(timeout_ms > 0) ? "timeout" : "best effort done");
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break;
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}
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remain_ms = timeout_ms - (int)timespent;
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if(cshutdn_wait(cshutdn, data, remain_ms)) {
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CURL_TRC_M(data, "[SHUTDOWN] shutdown finished, aborted");
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break;
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}
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}
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/* Terminate any remaining. */
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e = Curl_llist_head(&cshutdn->list);
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while(e) {
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struct connectdata *conn = Curl_node_elem(e);
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Curl_node_remove(e);
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Curl_cshutdn_terminate(data, conn, FALSE);
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e = Curl_llist_head(&cshutdn->list);
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}
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DEBUGASSERT(!Curl_llist_count(&cshutdn->list));
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sigpipe_restore(&pipe_st);
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}
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int Curl_cshutdn_init(struct cshutdn *cshutdn,
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struct Curl_multi *multi)
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{
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DEBUGASSERT(multi);
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cshutdn->multi = multi;
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Curl_llist_init(&cshutdn->list, NULL);
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cshutdn->initialised = TRUE;
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return 0; /* good */
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}
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void Curl_cshutdn_destroy(struct cshutdn *cshutdn,
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struct Curl_easy *data)
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{
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if(cshutdn->initialised && data) {
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int timeout_ms = 0;
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/* Just for testing, run graceful shutdown */
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#ifdef DEBUGBUILD
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{
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const char *p = getenv("CURL_GRACEFUL_SHUTDOWN");
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if(p) {
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curl_off_t l;
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if(!curlx_str_number(&p, &l, INT_MAX))
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timeout_ms = (int)l;
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}
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}
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#endif
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CURL_TRC_M(data, "[SHUTDOWN] destroy, %zu connections, timeout=%dms",
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Curl_llist_count(&cshutdn->list), timeout_ms);
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cshutdn_terminate_all(cshutdn, data, timeout_ms);
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}
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cshutdn->multi = NULL;
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}
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size_t Curl_cshutdn_count(struct Curl_easy *data)
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{
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if(data && data->multi) {
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struct cshutdn *csd = &data->multi->cshutdn;
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return Curl_llist_count(&csd->list);
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}
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return 0;
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}
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size_t Curl_cshutdn_dest_count(struct Curl_easy *data,
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const char *destination)
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{
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if(data && data->multi) {
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struct cshutdn *csd = &data->multi->cshutdn;
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size_t n = 0;
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struct Curl_llist_node *e = Curl_llist_head(&csd->list);
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while(e) {
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struct connectdata *conn = Curl_node_elem(e);
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if(!strcmp(destination, conn->destination))
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++n;
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e = Curl_node_next(e);
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}
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return n;
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}
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return 0;
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}
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|
|
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static CURLMcode cshutdn_update_ev(struct cshutdn *cshutdn,
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struct Curl_easy *data,
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struct connectdata *conn)
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{
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CURLMcode mresult;
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|
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DEBUGASSERT(cshutdn);
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DEBUGASSERT(cshutdn->multi->socket_cb);
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|
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Curl_attach_connection(data, conn);
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mresult = Curl_multi_ev_assess_conn(cshutdn->multi, data, conn);
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Curl_detach_connection(data);
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return mresult;
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}
|
|
|
|
|
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void Curl_cshutdn_add(struct cshutdn *cshutdn,
|
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struct connectdata *conn,
|
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size_t conns_in_pool)
|
|
{
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struct Curl_easy *data = cshutdn->multi->admin;
|
|
size_t max_total = (cshutdn->multi->max_total_connections > 0) ?
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(size_t)cshutdn->multi->max_total_connections : 0;
|
|
|
|
/* Add the connection to our shutdown list for non-blocking shutdown
|
|
* during multi processing. */
|
|
if(max_total > 0 && (max_total <=
|
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(conns_in_pool + Curl_llist_count(&cshutdn->list)))) {
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CURL_TRC_M(data, "[SHUTDOWN] discarding oldest shutdown connection "
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"due to connection limit of %zu", max_total);
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cshutdn_destroy_oldest(cshutdn, data, NULL);
|
|
}
|
|
|
|
if(cshutdn->multi->socket_cb) {
|
|
if(cshutdn_update_ev(cshutdn, data, conn)) {
|
|
CURL_TRC_M(data, "[SHUTDOWN] update events failed, discarding #%"
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|
FMT_OFF_T, conn->connection_id);
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Curl_cshutdn_terminate(data, conn, FALSE);
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|
return;
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}
|
|
}
|
|
|
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Curl_llist_append(&cshutdn->list, conn, &conn->cshutdn_node);
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CURL_TRC_M(data, "[SHUTDOWN] added #%" FMT_OFF_T
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|
" to shutdowns, now %zu conns in shutdown",
|
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conn->connection_id, Curl_llist_count(&cshutdn->list));
|
|
}
|
|
|
|
|
|
static void cshutdn_multi_socket(struct cshutdn *cshutdn,
|
|
struct Curl_easy *data,
|
|
curl_socket_t s)
|
|
{
|
|
struct Curl_llist_node *e;
|
|
struct connectdata *conn;
|
|
bool done;
|
|
|
|
DEBUGASSERT(cshutdn->multi->socket_cb);
|
|
e = Curl_llist_head(&cshutdn->list);
|
|
while(e) {
|
|
conn = Curl_node_elem(e);
|
|
if(s == conn->sock[FIRSTSOCKET] || s == conn->sock[SECONDARYSOCKET]) {
|
|
Curl_cshutdn_run_once(data, conn, &done);
|
|
if(done || cshutdn_update_ev(cshutdn, data, conn)) {
|
|
Curl_node_remove(e);
|
|
Curl_cshutdn_terminate(data, conn, FALSE);
|
|
}
|
|
break;
|
|
}
|
|
e = Curl_node_next(e);
|
|
}
|
|
}
|
|
|
|
|
|
void Curl_cshutdn_perform(struct cshutdn *cshutdn,
|
|
struct Curl_easy *data,
|
|
curl_socket_t s)
|
|
{
|
|
if((s == CURL_SOCKET_TIMEOUT) || (!cshutdn->multi->socket_cb))
|
|
cshutdn_perform(cshutdn, data);
|
|
else
|
|
cshutdn_multi_socket(cshutdn, data, s);
|
|
}
|
|
|
|
/* return fd_set info about the shutdown connections */
|
|
void Curl_cshutdn_setfds(struct cshutdn *cshutdn,
|
|
struct Curl_easy *data,
|
|
fd_set *read_fd_set, fd_set *write_fd_set,
|
|
int *maxfd)
|
|
{
|
|
if(Curl_llist_head(&cshutdn->list)) {
|
|
struct Curl_llist_node *e;
|
|
|
|
for(e = Curl_llist_head(&cshutdn->list); e;
|
|
e = Curl_node_next(e)) {
|
|
struct easy_pollset ps;
|
|
unsigned int i;
|
|
struct connectdata *conn = Curl_node_elem(e);
|
|
memset(&ps, 0, sizeof(ps));
|
|
Curl_attach_connection(data, conn);
|
|
Curl_conn_adjust_pollset(data, conn, &ps);
|
|
Curl_detach_connection(data);
|
|
|
|
for(i = 0; i < ps.num; i++) {
|
|
#if defined(__DJGPP__)
|
|
#pragma GCC diagnostic push
|
|
#pragma GCC diagnostic ignored "-Warith-conversion"
|
|
#endif
|
|
if(ps.actions[i] & CURL_POLL_IN)
|
|
FD_SET(ps.sockets[i], read_fd_set);
|
|
if(ps.actions[i] & CURL_POLL_OUT)
|
|
FD_SET(ps.sockets[i], write_fd_set);
|
|
#if defined(__DJGPP__)
|
|
#pragma GCC diagnostic pop
|
|
#endif
|
|
if((ps.actions[i] & (CURL_POLL_OUT | CURL_POLL_IN)) &&
|
|
((int)ps.sockets[i] > *maxfd))
|
|
*maxfd = (int)ps.sockets[i];
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
/* return information about the shutdown connections */
|
|
unsigned int Curl_cshutdn_add_waitfds(struct cshutdn *cshutdn,
|
|
struct Curl_easy *data,
|
|
struct Curl_waitfds *cwfds)
|
|
{
|
|
unsigned int need = 0;
|
|
|
|
if(Curl_llist_head(&cshutdn->list)) {
|
|
struct Curl_llist_node *e;
|
|
struct easy_pollset ps;
|
|
struct connectdata *conn;
|
|
|
|
for(e = Curl_llist_head(&cshutdn->list); e;
|
|
e = Curl_node_next(e)) {
|
|
conn = Curl_node_elem(e);
|
|
memset(&ps, 0, sizeof(ps));
|
|
Curl_attach_connection(data, conn);
|
|
Curl_conn_adjust_pollset(data, conn, &ps);
|
|
Curl_detach_connection(data);
|
|
|
|
need += Curl_waitfds_add_ps(cwfds, &ps);
|
|
}
|
|
}
|
|
return need;
|
|
}
|
|
|
|
CURLcode Curl_cshutdn_add_pollfds(struct cshutdn *cshutdn,
|
|
struct Curl_easy *data,
|
|
struct curl_pollfds *cpfds)
|
|
{
|
|
CURLcode result = CURLE_OK;
|
|
|
|
if(Curl_llist_head(&cshutdn->list)) {
|
|
struct Curl_llist_node *e;
|
|
struct easy_pollset ps;
|
|
struct connectdata *conn;
|
|
|
|
for(e = Curl_llist_head(&cshutdn->list); e;
|
|
e = Curl_node_next(e)) {
|
|
conn = Curl_node_elem(e);
|
|
memset(&ps, 0, sizeof(ps));
|
|
Curl_attach_connection(data, conn);
|
|
Curl_conn_adjust_pollset(data, conn, &ps);
|
|
Curl_detach_connection(data);
|
|
|
|
result = Curl_pollfds_add_ps(cpfds, &ps);
|
|
if(result) {
|
|
Curl_pollfds_cleanup(cpfds);
|
|
goto out;
|
|
}
|
|
}
|
|
}
|
|
out:
|
|
return result;
|
|
}
|