зеркало из https://github.com/mozilla/gecko-dev.git
363 строки
12 KiB
C++
363 строки
12 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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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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#ifndef nsURLHelper_h__
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#define nsURLHelper_h__
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#include "nsString.h"
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#include "nsTArray.h"
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#include "nsASCIIMask.h"
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class nsIFile;
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class nsIURLParser;
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enum netCoalesceFlags {
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NET_COALESCE_NORMAL = 0,
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/**
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* retains /../ that reach above dir root (useful for FTP
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* servers in which the root of the FTP URL is not necessarily
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* the root of the FTP filesystem).
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*/
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NET_COALESCE_ALLOW_RELATIVE_ROOT = 1 << 0,
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/**
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* recognizes /%2F and // as markers for the root directory
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* and handles them properly.
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*/
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NET_COALESCE_DOUBLE_SLASH_IS_ROOT = 1 << 1
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};
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//----------------------------------------------------------------------------
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// This module contains some private helper functions related to URL parsing.
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//----------------------------------------------------------------------------
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/* shutdown frees URL parser */
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void net_ShutdownURLHelper();
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#ifdef XP_MACOSX
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void net_ShutdownURLHelperOSX();
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#endif
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/* access URL parsers */
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nsIURLParser* net_GetAuthURLParser();
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nsIURLParser* net_GetNoAuthURLParser();
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nsIURLParser* net_GetStdURLParser();
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/* convert between nsIFile and file:// URL spec
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* net_GetURLSpecFromFile does an extra stat, so callers should
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* avoid it if possible in favor of net_GetURLSpecFromActualFile
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* and net_GetURLSpecFromDir */
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nsresult net_GetURLSpecFromFile(nsIFile*, nsACString&);
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nsresult net_GetURLSpecFromDir(nsIFile*, nsACString&);
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nsresult net_GetURLSpecFromActualFile(nsIFile*, nsACString&);
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nsresult net_GetFileFromURLSpec(const nsACString&, nsIFile**);
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/* extract file path components from file:// URL */
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nsresult net_ParseFileURL(const nsACString& inURL, nsACString& outDirectory,
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nsACString& outFileBaseName,
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nsACString& outFileExtension);
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/* handle .. in dirs while resolving URLs (path is UTF-8) */
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void net_CoalesceDirs(netCoalesceFlags flags, char* path);
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/**
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* Check if a URL is absolute
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*
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* @param inURL URL spec
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* @return true if the given spec represents an absolute URL
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*/
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bool net_IsAbsoluteURL(const nsACString& uri);
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/**
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* Extract URI-Scheme if possible
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*
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* @param inURI URI spec
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* @param scheme scheme copied to this buffer on return. Is lowercase.
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*/
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nsresult net_ExtractURLScheme(const nsACString& inURI, nsACString& scheme);
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/* check that the given scheme conforms to RFC 2396 */
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bool net_IsValidScheme(const nsACString& scheme);
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/**
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* This function strips out all C0 controls and space at the beginning and end
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* of the URL and filters out \r, \n, \t from the middle of the URL. This makes
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* it safe to call on things like javascript: urls or data: urls, where we may
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* in fact run into whitespace that is not properly encoded.
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*
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* @param input the URL spec we want to filter
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* @param result the out param to write to if filtering happens
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*/
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void net_FilterURIString(const nsACString& input, nsACString& result);
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/**
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* This function performs character stripping just like net_FilterURIString,
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* with the added benefit of also performing percent escaping of dissallowed
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* characters, all in one pass. Saving one pass is very important when operating
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* on really large strings.
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*
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* @param aInput the URL spec we want to filter
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* @param aFlags the flags which control which characters we escape
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* @param aFilterMask a mask of characters that should excluded from the result
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* @param aResult the out param to write to if filtering happens
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*/
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nsresult net_FilterAndEscapeURI(const nsACString& aInput, uint32_t aFlags,
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const ASCIIMaskArray& aFilterMask,
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nsACString& aResult);
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#if defined(XP_WIN)
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/**
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* On Win32 and OS/2 system's a back-slash in a file:// URL is equivalent to a
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* forward-slash. This function maps any back-slashes to forward-slashes.
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*
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* @param aURL
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* The URL string to normalize (UTF-8 encoded). This can be a
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* relative URL segment.
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* @param aResultBuf
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* The resulting string is appended to this string. If the input URL
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* is already normalized, then aResultBuf is unchanged.
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*
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* @returns false if aURL is already normalized. Otherwise, returns true.
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*/
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bool net_NormalizeFileURL(const nsACString& aURL, nsCString& aResultBuf);
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#endif
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/*****************************************************************************
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* generic string routines follow (XXX move to someplace more generic).
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*/
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/* convert to lower case */
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void net_ToLowerCase(char* str, uint32_t length);
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void net_ToLowerCase(char* str);
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/**
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* returns pointer to first character of |str| in the given set. if not found,
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* then |end| is returned. stops prematurely if a null byte is encountered,
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* and returns the address of the null byte.
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*/
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char* net_FindCharInSet(const char* iter, const char* stop, const char* set);
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/**
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* returns pointer to first character of |str| NOT in the given set. if all
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* characters are in the given set, then |end| is returned. if '\0' is not
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* included in |set|, then stops prematurely if a null byte is encountered,
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* and returns the address of the null byte.
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*/
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char* net_FindCharNotInSet(const char* iter, const char* stop, const char* set);
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/**
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* returns pointer to last character of |str| NOT in the given set. if all
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* characters are in the given set, then |str - 1| is returned.
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*/
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char* net_RFindCharNotInSet(const char* stop, const char* iter,
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const char* set);
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/**
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* Parses a content-type header and returns the content type and
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* charset (if any). aCharset is not modified if no charset is
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* specified in anywhere in aHeaderStr. In that case (no charset
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* specified), aHadCharset is set to false. Otherwise, it's set to
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* true. Note that aContentCharset can be empty even if aHadCharset
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* is true.
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*
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* This parsing is suitable for HTTP request. Use net_ParseContentType
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* for parsing this header in HTTP responses.
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*/
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void net_ParseRequestContentType(const nsACString& aHeaderStr,
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nsACString& aContentType,
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nsACString& aContentCharset,
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bool* aHadCharset);
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/**
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* Parses a content-type header and returns the content type and
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* charset (if any). aCharset is not modified if no charset is
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* specified in anywhere in aHeaderStr. In that case (no charset
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* specified), aHadCharset is set to false. Otherwise, it's set to
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* true. Note that aContentCharset can be empty even if aHadCharset
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* is true.
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*/
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void net_ParseContentType(const nsACString& aHeaderStr,
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nsACString& aContentType, nsACString& aContentCharset,
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bool* aHadCharset);
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/**
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* As above, but also returns the start and end indexes for the charset
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* parameter in aHeaderStr. These are indices for the entire parameter, NOT
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* just the value. If there is "effectively" no charset parameter (e.g. if an
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* earlier type with one is overridden by a later type without one),
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* *aHadCharset will be true but *aCharsetStart will be set to -1. Note that
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* it's possible to have aContentCharset empty and *aHadCharset true when
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* *aCharsetStart is nonnegative; this corresponds to charset="".
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*/
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void net_ParseContentType(const nsACString& aHeaderStr,
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nsACString& aContentType, nsACString& aContentCharset,
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bool* aHadCharset, int32_t* aCharsetStart,
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int32_t* aCharsetEnd);
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/* inline versions */
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/* remember the 64-bit platforms ;-) */
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#define NET_MAX_ADDRESS ((char*)UINTPTR_MAX)
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inline char* net_FindCharInSet(const char* str, const char* set) {
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return net_FindCharInSet(str, NET_MAX_ADDRESS, set);
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}
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inline char* net_FindCharNotInSet(const char* str, const char* set) {
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return net_FindCharNotInSet(str, NET_MAX_ADDRESS, set);
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}
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inline char* net_RFindCharNotInSet(const char* str, const char* set) {
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return net_RFindCharNotInSet(str, str + strlen(str), set);
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}
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/**
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* This function returns true if the given hostname does not include any
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* restricted characters. Otherwise, false is returned.
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*/
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bool net_IsValidHostName(const nsACString& host);
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/**
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* Checks whether the IPv4 address is valid according to RFC 3986 section 3.2.2.
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*/
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bool net_IsValidIPv4Addr(const nsACString& aAddr);
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/**
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* Checks whether the IPv6 address is valid according to RFC 3986 section 3.2.2.
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*/
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bool net_IsValidIPv6Addr(const nsACString& aAddr);
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namespace mozilla {
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/**
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* A class for handling form-urlencoded query strings.
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*
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* Manages an ordered list of name-value pairs, and allows conversion from and
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* to the string representation.
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*
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* In addition, there are static functions for handling one-shot use cases.
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*/
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class URLParams final {
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public:
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/**
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* \brief Parses a query string and calls a parameter handler for each
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* name/value pair. The parameter handler can stop processing early by
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* returning false.
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*
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* \param aInput the query string to parse
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* \param aParamHandler the parameter handler as desribed above
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* \tparam ParamHandler a function type compatible with signature
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* bool(nsString, nsString)
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*
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* \return false if the parameter handler returned false for any parameter,
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* true otherwise
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*/
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template <typename ParamHandler>
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static bool Parse(const nsACString& aInput, ParamHandler aParamHandler) {
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const char* start = aInput.BeginReading();
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const char* const end = aInput.EndReading();
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while (start != end) {
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nsAutoString decodedName;
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nsAutoString decodedValue;
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if (!ParseNextInternal(start, end, &decodedName, &decodedValue)) {
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continue;
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}
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if (!aParamHandler(std::move(decodedName), std::move(decodedValue))) {
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return false;
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}
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}
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return true;
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}
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/**
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* \brief Parses a query string and returns the value of a single parameter
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* specified by name.
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*
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* If there are multiple parameters with the same name, the value of the first
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* is returned.
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*
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* \param aInput the query string to parse
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* \param aName the name of the parameter to extract
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* \param[out] aValue will be assigned the parameter value, set to void if
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* there is no match \return true iff there was a parameter with with name
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* \paramref aName
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*/
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static bool Extract(const nsACString& aInput, const nsAString& aName,
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nsAString& aValue);
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/**
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* \brief Resets the state of this instance and parses a new query string.
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*
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* \param aInput the query string to parse
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*/
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void ParseInput(const nsACString& aInput);
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/**
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* Serializes the current state to a query string.
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*
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* \param[out] aValue will be assigned the result of the serialization
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* \param aEncode If this is true, the serialization will encode the string.
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*/
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void Serialize(nsAString& aValue, bool aEncode) const;
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void Get(const nsAString& aName, nsString& aRetval);
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void GetAll(const nsAString& aName, nsTArray<nsString>& aRetval);
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/**
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* \brief Sets the value of a given parameter.
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*
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* If one or more parameters of the name exist, the value of the first is
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* replaced, and all further parameters of the name are deleted. Otherwise,
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* the behaviour is the same as \ref Append.
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*/
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void Set(const nsAString& aName, const nsAString& aValue);
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void Append(const nsAString& aName, const nsAString& aValue);
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bool Has(const nsAString& aName);
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/**
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* \brief Deletes all parameters with the given name.
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*/
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void Delete(const nsAString& aName);
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void DeleteAll() { mParams.Clear(); }
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uint32_t Length() const { return mParams.Length(); }
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const nsAString& GetKeyAtIndex(uint32_t aIndex) const {
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MOZ_ASSERT(aIndex < mParams.Length());
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return mParams[aIndex].mKey;
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}
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const nsAString& GetValueAtIndex(uint32_t aIndex) const {
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MOZ_ASSERT(aIndex < mParams.Length());
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return mParams[aIndex].mValue;
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}
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/**
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* \brief Performs a stable sort of the parameters, maintaining the order of
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* multiple parameters with the same name.
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*/
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void Sort();
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private:
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static void DecodeString(const nsACString& aInput, nsAString& aOutput);
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static void ConvertString(const nsACString& aInput, nsAString& aOutput);
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static bool ParseNextInternal(const char*& aStart, const char* aEnd,
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nsAString* aOutDecodedName,
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nsAString* aOutDecodedValue);
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struct Param {
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nsString mKey;
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nsString mValue;
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};
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nsTArray<Param> mParams;
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};
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} // namespace mozilla
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#endif // !nsURLHelper_h__
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