mirror of
https://github.com/openssl/openssl.git
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b317583f4a
Reviewed-by: Tim Hudson <tjh@openssl.org> Reviewed-by: Neil Horman <nhorman@openssl.org> (Merged from https://github.com/openssl/openssl/pull/23584)
354 lines
14 KiB
Plaintext
354 lines
14 KiB
Plaintext
=pod
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=head1 NAME
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SSL_get_value_uint, SSL_set_value_uint, SSL_get_generic_value_uint,
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SSL_set_generic_value_uint, SSL_get_feature_request_uint,
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SSL_set_feature_request_uint, SSL_get_feature_peer_request_uint,
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SSL_get_feature_negotiated_uint, SSL_get_quic_stream_bidi_local_avail,
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SSL_get_quic_stream_bidi_remote_avail, SSL_get_quic_stream_uni_local_avail,
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SSL_get_quic_stream_uni_remote_avail, SSL_VALUE_CLASS_GENERIC,
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SSL_VALUE_CLASS_FEATURE_REQUEST, SSL_VALUE_CLASS_FEATURE_PEER_REQUEST,
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SSL_VALUE_CLASS_FEATURE_NEGOTIATED, SSL_VALUE_QUIC_STREAM_BIDI_LOCAL_AVAIL,
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SSL_VALUE_QUIC_STREAM_BIDI_REMOTE_AVAIL, SSL_VALUE_QUIC_STREAM_UNI_LOCAL_AVAIL,
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SSL_VALUE_QUIC_STREAM_UNI_REMOTE_AVAIL, SSL_VALUE_QUIC_IDLE_TIMEOUT,
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SSL_VALUE_EVENT_HANDLING_MODE,
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SSL_VALUE_EVENT_HANDLING_MODE_INHERIT,
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SSL_VALUE_EVENT_HANDLING_MODE_EXPLICIT,
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SSL_VALUE_EVENT_HANDLING_MODE_IMPLICIT,
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SSL_get_event_handling_mode,
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SSL_set_event_handling_mode,
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SSL_VALUE_STREAM_WRITE_BUF_SIZE,
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SSL_get_stream_write_buf_size,
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SSL_VALUE_STREAM_WRITE_BUF_USED,
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SSL_get_stream_write_buf_used,
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SSL_VALUE_STREAM_WRITE_BUF_AVAIL,
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SSL_get_stream_write_buf_avail -
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manage negotiable features and configuration values for a SSL object
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=head1 SYNOPSIS
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#include <openssl/ssl.h>
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int SSL_get_value_uint(SSL *ssl, uint32_t class_, uint32_t id,
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uint64_t *value);
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int SSL_set_value_uint(SSL *ssl, uint32_t class_, uint32_t id,
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uint64_t value);
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#define SSL_VALUE_CLASS_GENERIC
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#define SSL_VALUE_CLASS_FEATURE_REQUEST
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#define SSL_VALUE_CLASS_FEATURE_PEER_REQUEST
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#define SSL_VALUE_CLASS_FEATURE_NEGOTIATED
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#define SSL_VALUE_QUIC_STREAM_BIDI_LOCAL_AVAIL
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#define SSL_VALUE_QUIC_STREAM_BIDI_REMOTE_AVAIL
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#define SSL_VALUE_QUIC_STREAM_UNI_LOCAL_AVAIL
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#define SSL_VALUE_QUIC_STREAM_UNI_REMOTE_AVAIL
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#define SSL_VALUE_QUIC_IDLE_TIMEOUT
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#define SSL_VALUE_EVENT_HANDLING_MODE
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#define SSL_VALUE_EVENT_HANDLING_MODE_INHERIT
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#define SSL_VALUE_EVENT_HANDLING_MODE_EXPLICIT
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#define SSL_VALUE_EVENT_HANDLING_MODE_IMPLICIT
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#define SSL_VALUE_STREAM_WRITE_BUF_SIZE
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#define SSL_VALUE_STREAM_WRITE_BUF_USED
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#define SSL_VALUE_STREAM_WRITE_BUF_AVAIL
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The following convenience macros can also be used:
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int SSL_get_generic_value_uint(SSL *ssl, uint32_t id, uint64_t *value);
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int SSL_set_generic_value_uint(SSL *ssl, uint32_t id, uint64_t value);
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int SSL_get_feature_request_uint(SSL *ssl, uint32_t id, uint64_t *value);
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int SSL_set_feature_request_uint(SSL *ssl, uint32_t id, uint64_t value);
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int SSL_get_feature_peer_request_uint(SSL *ssl, uint32_t id, uint64_t *value);
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int SSL_get_feature_negotiated_uint(SSL *ssl, uint32_t id, uint64_t *value);
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int SSL_get_quic_stream_bidi_local_avail(SSL *ssl, uint64_t *value);
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int SSL_get_quic_stream_bidi_remote_avail(SSL *ssl, uint64_t *value);
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int SSL_get_quic_stream_uni_local_avail(SSL *ssl, uint64_t *value);
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int SSL_get_quic_stream_uni_remote_avail(SSL *ssl, uint64_t *value);
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int SSL_get_event_handling_mode(SSL *ssl, uint64_t *value);
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int SSL_set_event_handling_mode(SSL *ssl, uint64_t value);
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int SSL_get_stream_write_buf_size(SSL *ssl, uint64_t *value);
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int SSL_get_stream_write_buf_avail(SSL *ssl, uint64_t *value);
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int SSL_get_stream_write_buf_used(SSL *ssl, uint64_t *value);
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=head1 DESCRIPTION
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SSL_get_value_uint() and SSL_set_value_uint() provide access to configurable
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parameters for a given SSL object. Amongst other things, they are used to
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provide control over the feature negotiation process during establishment of a
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connection, and access to statistics about that connection.
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SSL_get_value_uint() and SSL_set_value_uint() get and set configurable values
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within a given value class. The value classes are enumerated by
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B<SSL_VALUE_CLASS> and are as follows:
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=over 4
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=item B<SSL_VALUE_CLASS_GENERIC>
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Values in this class do not participate in the feature negotiation process. They
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may represent connection parameters which do not participate in explicit
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negotiation or provide connection statistics. Values in this class might be
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read-write or read-only.
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You can access values in this class using the convenience macros
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SSL_get_generic_value_uint() and SSL_set_generic_value_uint() for brevity.
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=item B<SSL_VALUE_CLASS_FEATURE_REQUEST>
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Values in this class are read-write, and represent what the local party is
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requesting during feature negotiation. Such a request will not necessarily be
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honoured; see B<SSL_VALUE_CLASS_FEATURE_NEGOTIATED>.
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A value in this class may become read-only in certain circumstances; for
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example, after a connection has been established, for a value which cannot be
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renegotiated after connection establishment. Setting a value in this class after
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connection establishment represents a request for online renegotiation of the
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specified feature.
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You can access values in this class using the convenience macros
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SSL_get_feature_request_uint() and SSL_set_feature_request_uint() for brevity.
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=item B<SSL_VALUE_CLASS_FEATURE_PEER_REQUEST>
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Values in this value class are read-only, and represent what was requested by a
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peer during feature negotiation. Such a request has not necessarily been
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honoured; see B<SSL_VALUE_CLASS_FEATURE_NEGOTIATED>.
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You can access values in this class using the convenience macro
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SSL_get_feature_peer_request_uint() for brevity.
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=item B<SSL_VALUE_CLASS_FEATURE_NEGOTIATED>
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Values in this value class are read-only, and represent the value which was
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actually negotiated based on both local and peer input during feature
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negotiation. This is the effective value in actual use.
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Attempting to read a value in this class will generally fail if the feature
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negotiation process has not yet completed and the value is therefore currently
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unknown, unless the nature of the feature in question causes a provisional value
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to be used prior to completion of feature negotiation, in which case that value
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may be returned. If an online (post-handshake) renegotiation of a feature is
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in progress, retrieving the negotiated value will continue to retrieve the
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previous negotiated value until that process is completed. See the documentation
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of specific values for full details of its behaviour.
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You can access values in this class using the convenience macro
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SSL_get_feature_negotiated_uint() for brevity.
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=back
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=head1 CONFIGURABLE VALUES FOR QUIC OBJECTS
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The following configurable values are supported for QUIC SSL objects. Whether a
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value is supported for a QUIC connection SSL object or a QUIC stream SSL object
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is indicated in the heading for each value. Values supported for QUIC stream SSL
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objects are also supported on QUIC connection SSL objects if they have a default
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stream attached.
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SSL_get_value() does not cause internal event processing to occur unless the
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documentation for a specific value specifies otherwise.
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=over 4
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=item B<SSL_VALUE_QUIC_IDLE_TIMEOUT> (connection object)
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Negotiated feature value. This configures the desired QUIC idle timeout in
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milliseconds, where 0 represents a lack of an idle timeout. This feature can
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only be configured prior to connection establishment and cannot be subsequently
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changed.
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This release of OpenSSL uses a default value of 30 seconds. This default value
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may change between releases of OpenSSL.
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=item B<SSL_VALUE_QUIC_STREAM_BIDI_LOCAL_AVAIL> (connection object)
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Generic read-only statistical value. The number of bidirectional,
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locally-initiated streams available to be created (but not yet created). For
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example, a value of 100 would mean that L<SSL_new_stream(3)> could be called 100
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times to create 100 bidirectional streams before L<SSL_new_stream(3)> would
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block or fail due to backpressure.
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Can be queried using the convenience macro
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SSL_get_quic_stream_bidi_local_avail().
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=item B<SSL_VALUE_QUIC_STREAM_UNI_LOCAL_AVAIL> (connection object)
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As above, but provides the number of unidirectional, locally-initiated streams
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available to be created (but not yet created).
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Can be queried using the convenience macro
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SSL_get_quic_stream_uni_local_avail().
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=item B<SSL_VALUE_QUIC_STREAM_BIDI_REMOTE_AVAIL> (connection object)
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As above, but provides the number of bidirectional, remotely-initiated streams
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available to be created (but not yet created) by the peer. This represents the
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number of streams the local endpoint has authorised the peer to create in terms
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of QUIC stream creation flow control.
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Can be queried using the convenience macro
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SSL_get_quic_stream_bidi_remote_avail().
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=item B<SSL_VALUE_QUIC_STREAM_UNI_REMOTE_AVAIL> (connection object)
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As above, but provides the number of unidirectional, remotely-initiated streams
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available to be created (but not yet created).
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Can be queried using the convenience macro
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SSL_get_quic_stream_uni_remote_avail().
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=item B<SSL_VALUE_EVENT_HANDLING_MODE> (connection or stream object)
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Generic value. This is an integer value which takes one of the following values,
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and determines the event handling mode in use:
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=over 4
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=item B<SSL_VALUE_EVENT_HANDLING_MODE_INHERIT>
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When set, the event handling mode used is inherited from the value set on the
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parent connection (for a stream), or, for a connection, defaults to the implicit
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event handling model.
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When a new connection is created, or a new stream is created or accepted, it
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defaults to this setting.
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=item B<SSL_VALUE_EVENT_HANDLING_MODE_IMPLICIT> (Implicit event handling)
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If set to this value, the implicit event handling model is used. Under this
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model, QUIC objects will automatically perform background event processing
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(equivalent to a call to L<SSL_handle_events(3)>) when calls to I/O functions
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such as L<SSL_read_ex(3)> or L<SSL_write_ex(3)> are made on a QUIC SSL object.
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This helps to maintain the health of the QUIC connection and ensures that
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incoming datagrams and timeout events are processed.
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=item B<SSL_VALUE_EVENT_HANDLING_MODE_EXPLICIT> (Explicit event handling)
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If set to this value, the explicit event handling model is used. Under this
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model, B<nonblocking> calls to I/O functions such as L<SSL_read_ex(3)> or
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L<SSL_write_ex(3)> do not result in the automatic processing of QUIC events. Any
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new incoming network traffic is not handled; no new outgoing network traffic is
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generated, and pending timeout events are not processed. This allows an
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application to obtain greater control over the circumstances in which QUIC event
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processing occurs. If this event handling model is used, it is the application's
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responsibility to call L<SSL_handle_events(3)> as and when called for by the
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QUIC implementation; see the L<SSL_get_rpoll_descriptor(3)> man page for more
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information.
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Selecting this model does not affect the operation of blocking I/O calls, which
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will continue to use the implicit event handling model. Therefore, applications
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using this model will generally want to disable blocking operation using
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L<SSL_set_blocking_mode(3)>.
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=back
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Can be configured using the convenience macros SSL_get_event_handling_mode() and
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SSL_set_event_handling_mode().
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A call to SSL_set_value_uint() which causes this value to switch back to the
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implicit event handling model does not in itself cause implicit event handling
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to occur; such handling will occur on the next I/O API call. Equally, a call to
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SSL_set_value_uint() which causes this value to switch to the explicit event
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handling model will not cause event handling to occur before making that
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transition.
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This value controls whether implicit event handling occurs when making an I/O
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API call on the SSL object it is set on. However, event processing is not
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confined to state which relates to only that object. For example, if you
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configure explicit event handling on QUIC stream SSL object "A" and configure
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implicit event handling on QUIC stream SSL object "B", a call to an I/O function
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on "B" may result in state changes to "A". In other words, if event handling
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does happen as a result of an API call to an object related to a connection,
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processing of background events (for example, received QUIC network traffic) may
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also affect the state of any other object related to a connection.
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=item B<SSL_VALUE_STREAM_WRITE_BUF_SIZE> (stream object)
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Generic read-only statistical value. The size of the write buffer allocated to
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hold data written to a stream with L<SSL_write_ex(3)> until it is transmitted
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and subsequently acknowledged by the peer. This value may change at any time, as
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buffer sizes are optimised in response to network conditions to optimise
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throughput.
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Can be queried using the convenience macro SSL_get_stream_write_buf_size().
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=item B<SSL_VALUE_STREAM_WRITE_BUF_USED> (stream object)
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Generic read-only statistical value. The number of bytes currently consumed
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in the write buffer which have yet to be acknowledged by the peer. Successful
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calls to L<SSL_write_ex(3)> which accept data cause this number to increase.
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This number will then decrease as data is acknowledged by the peer.
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Can be queried using the convenience macro SSL_get_stream_write_buf_used().
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=item B<SSL_VALUE_STREAM_WRITE_BUF_AVAIL> (stream object)
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Generic read-only statistical value. The number of bytes available in the write
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buffer which have yet to be consumed by calls to L<SSL_write_ex(3)>. Successful
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calls to L<SSL_write_ex(3)> which accept data cause this number to decrease.
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This number will increase as data is acknowledged by the peer. It may also
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change if the buffer is resized automatically to optimise throughput.
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Can be queried using the convenience macro SSL_get_stream_write_buf_avail().
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=back
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No configurable values are currently defined for non-QUIC SSL objects.
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=head1 RETURN VALUES
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Returns 1 on success or 0 on failure. This function can fail for a number of
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reasons:
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=over 4
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=item
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An argument is invalid (e.g. NULL pointer or invalid class).
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=item
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The given value is not supported by the SSL object on which it was called.
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=item
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The given operation (get or set) is not supported by the specified
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configurable value.
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=item
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You are trying to modify the given value and the value is not modifiable at this
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time.
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=back
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=head1 SEE ALSO
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L<SSL_ctrl(3)>, L<SSL_get_accept_stream_queue_len(3)>,
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L<SSL_get_stream_read_state(3)>, L<SSL_get_stream_write_state(3)>,
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L<SSL_get_stream_read_error_code(3)>, L<SSL_get_stream_write_error_code(3)>,
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L<SSL_set_default_stream_mode(3)>, L<SSL_set_incoming_stream_policy(3)>
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=head1 HISTORY
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These functions were added in OpenSSL 3.3.
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=head1 COPYRIGHT
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Copyright 2002-2024 The OpenSSL Project Authors. All Rights Reserved.
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Licensed under the Apache License 2.0 (the "License"). You may not use
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this file except in compliance with the License. You can obtain a copy
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in the file LICENSE in the source distribution or at
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L<https://www.openssl.org/source/license.html>.
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=cut
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