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83 lines
3.6 KiB
Groff
83 lines
3.6 KiB
Groff
.\" $Id$
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.\"
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.TH curl_multi_socket 3 "21 Dec 2005" "libcurl 7.16.0" "libcurl Manual"
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.SH NAME
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curl_multi_socket - reads/writes available data
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.SH SYNOPSIS
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#include <curl/curl.h>
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CURLMcode curl_multi_socket(CURLM * multi_handle,
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curl_socket_t sockfd,
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CURL *easy,
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curl_socket_callback callback,
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void *userp);
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CURLMcode curl_multi_socket_all(CURLM *multi_handle,
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curl_socket_callback callback,
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void *userp);
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.SH DESCRIPTION
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Alternative versions of \fIcurl_multi_perform()\fP that allows the application
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to pass in one of the file descriptors/sockets that have been detected to have
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\&"action" on them and let libcurl perform. This allows libcurl to not have to
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scan through all possible file descriptors to check for action. The
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application is recommended to pass in the \fBeasy\fP argument (or set it to
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CURL_EASY_NONE) to make libcurl figure out the internal structure even faster
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and easier. If the easy argument is set to something else than
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CURL_EASY_NONE, the \fBsockfd\fP argument will be ignored by libcurl.
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These functions inform the application about updates in the socket (file
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descriptor) status by doing none, one or multiple calls to the
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curl_socket_callback given in the \fBcallback\fP argument. They update the
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status with changes since the previous time this function was used. If
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\fBcallback\fP is NULL, no callback will be called. A status change may also
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be a new timeout only, having the same IN/OUT status as before.
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If a previous wait for socket action(s) timed out, you should call this
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function with the socket argument set to CURL_SOCKET_TIMEOUT. If you want to
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force libcurl to (re-)check all its internal sockets, and call the callback
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with status for all sockets no matter what the previous state is, you call
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curl_multi_socket_all() instead.
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curl_multi_perform() is the equivalent of calling
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curl_multi_socket_all(handle, NULL, NULL);
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Regarding the timeout argument in the callback: it is the timeout (in
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milliseconds) for waiting on action on this socket (and the given time period
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starts when the callback is called) until you should call curl_multi_socket()
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with the timeout stuff mentioned above. If "actions" happens on the socket
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before the timeout happens, remember that the timout timer keeps ticking until
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told otherwise.
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The "what" argument has one of five values:
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.RS
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.IP "CURL_POLL_NONE (0)"
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register, not interested in readiness (yet)
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.IP "CURL_POLL_IN (1)"
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register, interested in read readiness
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.IP "CURL_POLL_OUT (2)"
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register, interested in write readiness
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.IP "CURL_POLL_INOUT (3)"
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register, interested in both read and write readiness
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.IP "CURL_POLL_REMOVE (4)"
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deregister
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.RE
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.SH "RETURN VALUE"
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CURLMcode type, general libcurl multi interface error code.
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If you receive \fICURLM_CALL_MULTI_PERFORM\fP, this basically means that you
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should call \fIcurl_multi_perform\fP again, before you select() on more
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actions. You don't have to do it immediately, but the return code means that
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libcurl may have more data available to return or that there may be more data
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to send off before it is "satisfied".
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NOTE that this only returns errors etc regarding the whole multi stack. There
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might still have occurred problems on individual transfers even when this
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function returns OK.
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.SH "TYPICAL USAGE"
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Call curl_multi_socket_all() first. Setup a "collection" of sockets to
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supervise, then when action happens call curl_multi_socket() for the easy
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handle that got the action.
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.SH "SEE ALSO"
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.BR curl_multi_cleanup "(3), " curl_multi_init "(3), "
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.BR curl_multi_fdset "(3), " curl_multi_info_read "(3)"
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