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107 lines
3.8 KiB
Plaintext
107 lines
3.8 KiB
Plaintext
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*-
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "nsISupports.idl"
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interface nsIInterfaceRequestor;
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interface nsIX509Cert;
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%{C++
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template<class T> class nsTArray;
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class nsCString;
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%}
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[ref] native nsCStringTArrayRef(nsTArray<nsCString>);
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[scriptable, builtinclass, uuid(7836a872-e50c-4e43-8224-fd08a8d09699)]
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interface nsISSLSocketControl : nsISupports {
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attribute nsIInterfaceRequestor notificationCallbacks;
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void proxyStartSSL();
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void StartTLS();
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/* NPN (Next Protocol Negotiation) is a mechanism for
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negotiating the protocol to be spoken inside the SSL
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tunnel during the SSL handshake. The NPNList is the list
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of offered client side protocols. setNPNList() needs to
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be called before any data is read or written (including the
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handshake to be setup correctly. The server determines the
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priority when multiple matches occur, but if there is no overlap
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the first protocol in the list is used. */
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[noscript] void setNPNList(in nsCStringTArrayRef aNPNList);
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/* negotiatedNPN is '' if no NPN list was provided by the client,
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* or if the server did not select any protocol choice from that
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* list. That also includes the case where the server does not
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* implement NPN.
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*
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* If negotiatedNPN is read before NPN has progressed to the point
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* where this information is available NS_ERROR_NOT_CONNECTED is
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* raised.
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*/
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readonly attribute ACString negotiatedNPN;
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/* Determine if a potential SSL connection to hostname:port with
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* a desired NPN negotiated protocol of npnProtocol can use the socket
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* associated with this object instead of making a new one.
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*/
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boolean joinConnection(
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in ACString npnProtocol, /* e.g. "spdy/2" */
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in ACString hostname,
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in long port);
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/* The Key Exchange Algorithm is used when determining whether or
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not to do false start and whether or not HTTP/2 can be used.
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After a handshake is complete it can be read from KEAUsed,
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before a handshake is started it may be set through KEAExpected.
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The values correspond to the SSLKEAType enum in NSS or the
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KEY_EXCHANGE_UNKNOWN constant defined below.
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KEAKeyBits is the size/security-level used for the KEA.
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*/
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[infallible] readonly attribute short KEAUsed;
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[infallible] attribute short KEAExpected;
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[infallible] readonly attribute unsigned long KEAKeyBits;
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const short KEY_EXCHANGE_UNKNOWN = -1;
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/*
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* The original flags from the socket provider.
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*/
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readonly attribute uint32_t providerFlags;
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/* These values are defined by TLS. */
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const short SSL_VERSION_3 = 0x0300;
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const short TLS_VERSION_1 = 0x0301;
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const short TLS_VERSION_1_1 = 0x0302;
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const short TLS_VERSION_1_2 = 0x0303;
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const short SSL_VERSION_UNKNOWN = -1;
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[infallible] readonly attribute short SSLVersionUsed;
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/* These values match the NSS defined values in sslt.h */
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const short SSL_MAC_UNKNOWN = -1;
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const short SSL_MAC_NULL = 0;
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const short SSL_MAC_MD5 = 1;
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const short SSL_MAC_SHA = 2;
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const short SSL_HMAC_MD5 = 3;
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const short SSL_HMAC_SHA = 4;
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const short SSL_HMAC_SHA256 = 5;
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const short SSL_MAC_AEAD = 6;
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[infallible] readonly attribute short MACAlgorithmUsed;
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/**
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* If set before the server requests a client cert (assuming it does so at
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* all), then this cert will be presented to the server, instead of asking
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* the user or searching the set of rememebered user cert decisions.
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*/
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attribute nsIX509Cert clientCert;
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};
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