mirror of
https://github.com/klzgrad/naiveproxy.git
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434 lines
18 KiB
C++
434 lines
18 KiB
C++
// Copyright 2013 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "url/url_canon_internal.h"
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#include <errno.h>
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#include <stddef.h>
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#include <stdlib.h>
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#include <cstdio>
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#include <string>
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#include "base/strings/utf_string_conversion_utils.h"
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namespace url {
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namespace {
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template<typename CHAR, typename UCHAR>
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void DoAppendStringOfType(const CHAR* source, int length,
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SharedCharTypes type,
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CanonOutput* output) {
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for (int i = 0; i < length; i++) {
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if (static_cast<UCHAR>(source[i]) >= 0x80) {
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// ReadChar will fill the code point with kUnicodeReplacementCharacter
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// when the input is invalid, which is what we want.
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unsigned code_point;
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ReadUTFChar(source, &i, length, &code_point);
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AppendUTF8EscapedValue(code_point, output);
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} else {
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// Just append the 7-bit character, possibly escaping it.
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unsigned char uch = static_cast<unsigned char>(source[i]);
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if (!IsCharOfType(uch, type))
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AppendEscapedChar(uch, output);
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else
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output->push_back(uch);
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}
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}
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}
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// This function assumes the input values are all contained in 8-bit,
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// although it allows any type. Returns true if input is valid, false if not.
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template<typename CHAR, typename UCHAR>
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void DoAppendInvalidNarrowString(const CHAR* spec, int begin, int end,
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CanonOutput* output) {
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for (int i = begin; i < end; i++) {
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UCHAR uch = static_cast<UCHAR>(spec[i]);
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if (uch >= 0x80) {
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// Handle UTF-8/16 encodings. This call will correctly handle the error
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// case by appending the invalid character.
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AppendUTF8EscapedChar(spec, &i, end, output);
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} else if (uch <= ' ' || uch == 0x7f) {
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// This function is for error handling, so we escape all control
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// characters and spaces, but not anything else since we lack
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// context to do something more specific.
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AppendEscapedChar(static_cast<unsigned char>(uch), output);
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} else {
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output->push_back(static_cast<char>(uch));
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}
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}
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}
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// Overrides one component, see the Replacements structure for
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// what the various combionations of source pointer and component mean.
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void DoOverrideComponent(const char* override_source,
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const Component& override_component,
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const char** dest,
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Component* dest_component) {
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if (override_source) {
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*dest = override_source;
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*dest_component = override_component;
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}
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}
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// Similar to DoOverrideComponent except that it takes a UTF-16 input and does
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// not actually set the output character pointer.
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//
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// The input is converted to UTF-8 at the end of the given buffer as a temporary
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// holding place. The component identifying the portion of the buffer used in
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// the |utf8_buffer| will be specified in |*dest_component|.
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//
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// This will not actually set any |dest| pointer like DoOverrideComponent
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// does because all of the pointers will point into the |utf8_buffer|, which
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// may get resized while we're overriding a subsequent component. Instead, the
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// caller should use the beginning of the |utf8_buffer| as the string pointer
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// for all components once all overrides have been prepared.
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bool PrepareUTF16OverrideComponent(const base::char16* override_source,
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const Component& override_component,
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CanonOutput* utf8_buffer,
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Component* dest_component) {
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bool success = true;
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if (override_source) {
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if (!override_component.is_valid()) {
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// Non-"valid" component (means delete), so we need to preserve that.
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*dest_component = Component();
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} else {
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// Convert to UTF-8.
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dest_component->begin = utf8_buffer->length();
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success = ConvertUTF16ToUTF8(&override_source[override_component.begin],
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override_component.len, utf8_buffer);
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dest_component->len = utf8_buffer->length() - dest_component->begin;
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}
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}
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return success;
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}
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} // namespace
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// See the header file for this array's declaration.
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const unsigned char kSharedCharTypeTable[0x100] = {
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x00 - 0x0f
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x10 - 0x1f
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0, // 0x20 ' ' (escape spaces in queries)
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x21 !
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0, // 0x22 "
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0, // 0x23 # (invalid in query since it marks the ref)
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CHAR_QUERY | CHAR_USERINFO, // 0x24 $
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CHAR_QUERY | CHAR_USERINFO, // 0x25 %
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CHAR_QUERY | CHAR_USERINFO, // 0x26 &
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0, // 0x27 ' (Try to prevent XSS.)
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x28 (
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x29 )
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x2a *
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CHAR_QUERY | CHAR_USERINFO, // 0x2b +
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CHAR_QUERY | CHAR_USERINFO, // 0x2c ,
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x2d -
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_COMPONENT, // 0x2e .
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CHAR_QUERY, // 0x2f /
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_OCT | CHAR_COMPONENT, // 0x30 0
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_OCT | CHAR_COMPONENT, // 0x31 1
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_OCT | CHAR_COMPONENT, // 0x32 2
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_OCT | CHAR_COMPONENT, // 0x33 3
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_OCT | CHAR_COMPONENT, // 0x34 4
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_OCT | CHAR_COMPONENT, // 0x35 5
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_OCT | CHAR_COMPONENT, // 0x36 6
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_OCT | CHAR_COMPONENT, // 0x37 7
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_COMPONENT, // 0x38 8
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_DEC | CHAR_COMPONENT, // 0x39 9
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CHAR_QUERY, // 0x3a :
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CHAR_QUERY, // 0x3b ;
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0, // 0x3c < (Try to prevent certain types of XSS.)
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CHAR_QUERY, // 0x3d =
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0, // 0x3e > (Try to prevent certain types of XSS.)
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CHAR_QUERY, // 0x3f ?
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CHAR_QUERY, // 0x40 @
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x41 A
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x42 B
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x43 C
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x44 D
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x45 E
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x46 F
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x47 G
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x48 H
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x49 I
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x4a J
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x4b K
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x4c L
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x4d M
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x4e N
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x4f O
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x50 P
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x51 Q
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x52 R
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x53 S
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x54 T
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x55 U
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x56 V
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x57 W
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_COMPONENT, // 0x58 X
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x59 Y
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x5a Z
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CHAR_QUERY, // 0x5b [
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CHAR_QUERY, // 0x5c '\'
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CHAR_QUERY, // 0x5d ]
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CHAR_QUERY, // 0x5e ^
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x5f _
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CHAR_QUERY, // 0x60 `
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x61 a
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x62 b
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x63 c
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x64 d
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x65 e
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_HEX | CHAR_COMPONENT, // 0x66 f
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x67 g
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x68 h
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x69 i
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x6a j
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x6b k
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x6c l
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x6d m
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x6e n
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x6f o
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x70 p
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x71 q
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x72 r
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x73 s
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x74 t
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x75 u
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x76 v
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x77 w
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CHAR_QUERY | CHAR_USERINFO | CHAR_IPV4 | CHAR_COMPONENT, // 0x78 x
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x79 y
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x7a z
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CHAR_QUERY, // 0x7b {
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CHAR_QUERY, // 0x7c |
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CHAR_QUERY, // 0x7d }
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CHAR_QUERY | CHAR_USERINFO | CHAR_COMPONENT, // 0x7e ~
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0, // 0x7f
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x80 - 0x8f
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x90 - 0x9f
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xa0 - 0xaf
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xb0 - 0xbf
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xc0 - 0xcf
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xd0 - 0xdf
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xe0 - 0xef
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0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xf0 - 0xff
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};
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const char kHexCharLookup[0x10] = {
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'0', '1', '2', '3', '4', '5', '6', '7',
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'8', '9', 'A', 'B', 'C', 'D', 'E', 'F',
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};
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const char kCharToHexLookup[8] = {
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0, // 0x00 - 0x1f
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'0', // 0x20 - 0x3f: digits 0 - 9 are 0x30 - 0x39
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'A' - 10, // 0x40 - 0x5f: letters A - F are 0x41 - 0x46
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'a' - 10, // 0x60 - 0x7f: letters a - f are 0x61 - 0x66
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0, // 0x80 - 0x9F
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0, // 0xA0 - 0xBF
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0, // 0xC0 - 0xDF
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0, // 0xE0 - 0xFF
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};
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const base::char16 kUnicodeReplacementCharacter = 0xfffd;
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void AppendStringOfType(const char* source, int length,
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SharedCharTypes type,
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CanonOutput* output) {
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DoAppendStringOfType<char, unsigned char>(source, length, type, output);
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}
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void AppendStringOfType(const base::char16* source, int length,
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SharedCharTypes type,
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CanonOutput* output) {
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DoAppendStringOfType<base::char16, base::char16>(
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source, length, type, output);
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}
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bool ReadUTFChar(const char* str, int* begin, int length,
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unsigned* code_point_out) {
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// This depends on ints and int32s being the same thing. If they're not, it
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// will fail to compile.
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// TODO(mmenke): This should probably be fixed.
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if (!base::ReadUnicodeCharacter(str, length, begin, code_point_out) ||
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!base::IsValidCharacter(*code_point_out)) {
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*code_point_out = kUnicodeReplacementCharacter;
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return false;
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}
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return true;
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}
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bool ReadUTFChar(const base::char16* str, int* begin, int length,
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unsigned* code_point_out) {
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// This depends on ints and int32s being the same thing. If they're not, it
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// will fail to compile.
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// TODO(mmenke): This should probably be fixed.
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if (!base::ReadUnicodeCharacter(str, length, begin, code_point_out) ||
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!base::IsValidCharacter(*code_point_out)) {
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*code_point_out = kUnicodeReplacementCharacter;
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return false;
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}
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return true;
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}
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void AppendInvalidNarrowString(const char* spec, int begin, int end,
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CanonOutput* output) {
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DoAppendInvalidNarrowString<char, unsigned char>(spec, begin, end, output);
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}
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void AppendInvalidNarrowString(const base::char16* spec, int begin, int end,
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CanonOutput* output) {
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DoAppendInvalidNarrowString<base::char16, base::char16>(
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spec, begin, end, output);
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}
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bool ConvertUTF16ToUTF8(const base::char16* input, int input_len,
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CanonOutput* output) {
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bool success = true;
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for (int i = 0; i < input_len; i++) {
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unsigned code_point;
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success &= ReadUTFChar(input, &i, input_len, &code_point);
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AppendUTF8Value(code_point, output);
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}
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return success;
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}
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bool ConvertUTF8ToUTF16(const char* input, int input_len,
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CanonOutputT<base::char16>* output) {
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bool success = true;
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for (int i = 0; i < input_len; i++) {
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unsigned code_point;
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success &= ReadUTFChar(input, &i, input_len, &code_point);
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AppendUTF16Value(code_point, output);
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}
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return success;
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}
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void SetupOverrideComponents(const char* base,
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const Replacements<char>& repl,
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URLComponentSource<char>* source,
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Parsed* parsed) {
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// Get the source and parsed structures of the things we are replacing.
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const URLComponentSource<char>& repl_source = repl.sources();
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const Parsed& repl_parsed = repl.components();
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DoOverrideComponent(repl_source.scheme, repl_parsed.scheme,
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&source->scheme, &parsed->scheme);
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DoOverrideComponent(repl_source.username, repl_parsed.username,
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&source->username, &parsed->username);
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DoOverrideComponent(repl_source.password, repl_parsed.password,
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&source->password, &parsed->password);
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// Our host should be empty if not present, so override the default setup.
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DoOverrideComponent(repl_source.host, repl_parsed.host,
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&source->host, &parsed->host);
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if (parsed->host.len == -1)
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parsed->host.len = 0;
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DoOverrideComponent(repl_source.port, repl_parsed.port,
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&source->port, &parsed->port);
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DoOverrideComponent(repl_source.path, repl_parsed.path,
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&source->path, &parsed->path);
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DoOverrideComponent(repl_source.query, repl_parsed.query,
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&source->query, &parsed->query);
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DoOverrideComponent(repl_source.ref, repl_parsed.ref,
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&source->ref, &parsed->ref);
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}
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bool SetupUTF16OverrideComponents(const char* base,
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const Replacements<base::char16>& repl,
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CanonOutput* utf8_buffer,
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URLComponentSource<char>* source,
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Parsed* parsed) {
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bool success = true;
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// Get the source and parsed structures of the things we are replacing.
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const URLComponentSource<base::char16>& repl_source = repl.sources();
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const Parsed& repl_parsed = repl.components();
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success &= PrepareUTF16OverrideComponent(
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repl_source.scheme, repl_parsed.scheme,
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utf8_buffer, &parsed->scheme);
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success &= PrepareUTF16OverrideComponent(
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repl_source.username, repl_parsed.username,
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utf8_buffer, &parsed->username);
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success &= PrepareUTF16OverrideComponent(
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repl_source.password, repl_parsed.password,
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utf8_buffer, &parsed->password);
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success &= PrepareUTF16OverrideComponent(
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repl_source.host, repl_parsed.host,
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utf8_buffer, &parsed->host);
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success &= PrepareUTF16OverrideComponent(
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repl_source.port, repl_parsed.port,
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utf8_buffer, &parsed->port);
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success &= PrepareUTF16OverrideComponent(
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repl_source.path, repl_parsed.path,
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utf8_buffer, &parsed->path);
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success &= PrepareUTF16OverrideComponent(
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repl_source.query, repl_parsed.query,
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utf8_buffer, &parsed->query);
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success &= PrepareUTF16OverrideComponent(
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repl_source.ref, repl_parsed.ref,
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utf8_buffer, &parsed->ref);
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// PrepareUTF16OverrideComponent will not have set the data pointer since the
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// buffer could be resized, invalidating the pointers. We set the data
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// pointers for affected components now that the buffer is finalized.
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if (repl_source.scheme) source->scheme = utf8_buffer->data();
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if (repl_source.username) source->username = utf8_buffer->data();
|
|
if (repl_source.password) source->password = utf8_buffer->data();
|
|
if (repl_source.host) source->host = utf8_buffer->data();
|
|
if (repl_source.port) source->port = utf8_buffer->data();
|
|
if (repl_source.path) source->path = utf8_buffer->data();
|
|
if (repl_source.query) source->query = utf8_buffer->data();
|
|
if (repl_source.ref) source->ref = utf8_buffer->data();
|
|
|
|
return success;
|
|
}
|
|
|
|
#ifndef WIN32
|
|
|
|
int _itoa_s(int value, char* buffer, size_t size_in_chars, int radix) {
|
|
const char* format_str;
|
|
if (radix == 10)
|
|
format_str = "%d";
|
|
else if (radix == 16)
|
|
format_str = "%x";
|
|
else
|
|
return EINVAL;
|
|
|
|
int written = snprintf(buffer, size_in_chars, format_str, value);
|
|
if (static_cast<size_t>(written) >= size_in_chars) {
|
|
// Output was truncated, or written was negative.
|
|
return EINVAL;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
int _itow_s(int value, base::char16* buffer, size_t size_in_chars, int radix) {
|
|
if (radix != 10)
|
|
return EINVAL;
|
|
|
|
// No more than 12 characters will be required for a 32-bit integer.
|
|
// Add an extra byte for the terminating null.
|
|
char temp[13];
|
|
int written = snprintf(temp, sizeof(temp), "%d", value);
|
|
if (static_cast<size_t>(written) >= size_in_chars) {
|
|
// Output was truncated, or written was negative.
|
|
return EINVAL;
|
|
}
|
|
|
|
for (int i = 0; i < written; ++i) {
|
|
buffer[i] = static_cast<base::char16>(temp[i]);
|
|
}
|
|
buffer[written] = '\0';
|
|
return 0;
|
|
}
|
|
|
|
#endif // !WIN32
|
|
|
|
} // namespace url
|