mirror of
https://github.com/mozilla/gecko-dev.git
synced 2024-11-06 09:05:45 +00:00
1b83407ce9
This patch was automatically generated by the following script: #!/bin/bash # Command to convert PRUnichar to char16_t function convert() { echo "Converting $1 to $2..." find . ! -wholename "*nsprpub*" \ ! -wholename "*security/nss*" \ ! -wholename "*modules/libmar*" \ ! -wholename "*/.hg*" \ ! -wholename "obj-ff-dbg*" \ ! -name prtypes.h \ ! -name Char16.h \ -type f \ \( -iname "*.cpp" \ -o -iname "*.h" \ -o -iname "*.c" \ -o -iname "*.cc" \ -o -iname "*.idl" \ -o -iname "*.ipdl" \ -o -iname "*.ipdlh" \ -o -iname "*.mm" \) | \ xargs -n 1 sed -i -e "s/\b$1\b/$2/g" } convert PRUnichar char16_t
723 lines
19 KiB
C++
723 lines
19 KiB
C++
/* -*- Mode: C++; tab-width: 2; 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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#include <stdio.h>
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#include "nsXPCOM.h"
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#include "nsIEntityConverter.h"
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#include "nsISaveAsCharset.h"
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#include "nsCOMPtr.h"
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#include "nsIUnicodeNormalizer.h"
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#include "nsStringAPI.h"
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#include "nsUnicharUtils.h"
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#include "nsMemory.h"
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#include "nsComponentManagerUtils.h"
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#include "nsServiceManagerUtils.h"
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NS_DEFINE_CID(kEntityConverterCID, NS_ENTITYCONVERTER_CID);
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NS_DEFINE_CID(kSaveAsCharsetCID, NS_SAVEASCHARSET_CID);
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NS_DEFINE_CID(kUnicodeNormalizerCID, NS_UNICODE_NORMALIZER_CID);
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#define TESTLEN 32
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#define T2LEN TESTLEN
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#define T3LEN TESTLEN
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#define T4LEN TESTLEN
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// test data for ToUpper
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static char16_t t2data [T2LEN+1] = {
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0x0031 , // 0
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0x0019 , // 1
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0x0043 , // 2
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0x0067 , // 3
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0x00C8 , // 4
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0x00E9 , // 5
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0x0147 , // 6
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0x01C4 , // 7
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0x01C6 , // 8
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0x01C5 , // 9
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0x03C0 , // 10
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0x03B2 , // 11
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0x0438 , // 12
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0x04A5 , // 13
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0x05D0 , // 14
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0x0A20 , // 15
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0x30B0 , // 16
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0x5185 , // 17
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0xC021 , // 18
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0xFF48 , // 19
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0x01C7 , // 20
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0x01C8 , // 21
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0x01C9 , // 22
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0x01CA , // 23
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0x01CB , // 24
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0x01CC , // 25
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0x01F1 , // 26
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0x01F2 , // 27
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0x01F3 , // 28
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0x0250 , // 29
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0x0271 , // 30
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0xA641 , // 31
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0x00
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};
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// expected result for ToUpper
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static char16_t t2result[T2LEN+1] = {
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0x0031 , // 0
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0x0019 , // 1
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0x0043 , // 2
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0x0047 , // 3
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0x00C8 , // 4
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0x00C9 , // 5
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0x0147 , // 6
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0x01C4 , // 7
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0x01C4 , // 8
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0x01C4 , // 9
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0x03A0 , // 10
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0x0392 , // 11
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0x0418 , // 12
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0x04A4 , // 13
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0x05D0 , // 14
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0x0A20 , // 15
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0x30B0 , // 16
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0x5185 , // 17
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0xC021 , // 18
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0xFF28 , // 19
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0x01C7 , // 20
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0x01C7 , // 21
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0x01C7 , // 22
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0x01CA , // 23
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0x01CA , // 24
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0x01CA , // 25
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0x01F1 , // 26
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0x01F1 , // 27
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0x01F1 , // 28
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0x2C6F , // 29
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0x2C6E , // 30
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0xA640 , // 31
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0x00
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};
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// test data for ToLower
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static char16_t t3data [T3LEN+1] = {
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0x0031 , // 0
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0x0019 , // 1
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0x0043 , // 2
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0x0067 , // 3
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0x00C8 , // 4
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0x00E9 , // 5
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0x0147 , // 6
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0x01C4 , // 7
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0x01C6 , // 8
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0x01C5 , // 9
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0x03A0 , // 10
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0x0392 , // 11
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0x0418 , // 12
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0x04A4 , // 13
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0x05D0 , // 14
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0x0A20 , // 15
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0x30B0 , // 16
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0x5187 , // 17
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0xC023 , // 18
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0xFF28 , // 19
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0x01C7 , // 20
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0x01C8 , // 21
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0x01C9 , // 22
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0x01CA , // 23
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0x01CB , // 24
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0x01CC , // 25
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0x01F1 , // 26
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0x01F2 , // 27
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0x01F3 , // 28
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0x2C6F , // 29
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0x2C6E , // 30
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0xA640 , // 31
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0x00
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};
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// expected result for ToLower
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static char16_t t3result[T3LEN+1] = {
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0x0031 , // 0
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0x0019 , // 1
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0x0063 , // 2
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0x0067 , // 3
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0x00E8 , // 4
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0x00E9 , // 5
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0x0148 , // 6
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0x01C6 , // 7
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0x01C6 , // 8
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0x01C6 , // 9
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0x03C0 , // 10
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0x03B2 , // 11
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0x0438 , // 12
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0x04A5 , // 13
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0x05D0 , // 14
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0x0A20 , // 15
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0x30B0 , // 16
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0x5187 , // 17
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0xC023 , // 18
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0xFF48 , // 19
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0x01C9 , // 20
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0x01C9 , // 21
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0x01C9 , // 22
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0x01CC , // 23
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0x01CC , // 24
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0x01CC , // 25
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0x01F3 , // 26
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0x01F3 , // 27
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0x01F3 , // 28
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0x0250 , // 29
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0x0271 , // 30
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0xA641 , // 31
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0x00
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};
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// test data for ToTitle
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static char16_t t4data [T4LEN+2] = {
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0x0031 , // 0
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0x0019 , // 1
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0x0043 , // 2
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0x0067 , // 3
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0x00C8 , // 4
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0x00E9 , // 5
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0x0147 , // 6
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0x01C4 , // 7
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0x01C6 , // 8
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0x01C5 , // 9
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0x03C0 , // 10
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0x03B2 , // 11
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0x0438 , // 12
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0x04A5 , // 13
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0x05D0 , // 14
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0x0A20 , // 15
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0x30B0 , // 16
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0x5189 , // 17
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0xC013 , // 18
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0xFF52 , // 19
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0x01C7 , // 20
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0x01C8 , // 21
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0x01C9 , // 22
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0x01CA , // 23
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0x01CB , // 24
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0x01CC , // 25
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0x01F1 , // 26
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0x01F2 , // 27
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0x01F3 , // 28
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0x0250 , // 29
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0x0271 , // 30
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0xA641 , // 31
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0x0041 , // Dummy entry to prevent overflow
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0x00
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};
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// expected result for ToTitle
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static char16_t t4result[T4LEN+2] = {
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0x0031 , // 0
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0x0019 , // 1
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0x0043 , // 2
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0x0047 , // 3
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0x00C8 , // 4
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0x00C9 , // 5
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0x0147 , // 6
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0x01C4 , // 7
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0x01C5 , // 8
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0x01C5 , // 9
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0x03A0 , // 10
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0x0392 , // 11
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0x0418 , // 12
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0x04A4 , // 13
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0x05D0 , // 14
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0x0A20 , // 15
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0x30B0 , // 16
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0x5189 , // 17
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0xC013 , // 18
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0xFF32 , // 19
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0x01C7 , // 20
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0x01C8 , // 21
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0x01C8 , // 22
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0x01CA , // 23
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0x01CB , // 24
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0x01CB , // 25
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0x01F1 , // 26
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0x01F2 , // 27
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0x01F2 , // 28
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0x2C6F , // 29
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0x2C6E , // 30
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0xA640 , // 31
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0x0041 , // Dummy entry to prevent overflow
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0x00
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};
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static unsigned char t6lhs[] = {
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0x31 , // 0
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0x19 , // 1
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0x43 , // 2
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0x67 , // 3
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0xC3, 0x88 , // 4
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0xC3, 0xA9 , // 5
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0xC5, 0x87 , // 6
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0xC7, 0x84 , // 7
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0xC7, 0x86 , // 8
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0xC7, 0x85 , // 9
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0xCF, 0x80 , // 10
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0xCE, 0xB2 , // 11
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0xD0, 0xB8 , // 12
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0xD2, 0xA5 , // 13
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0xD7, 0x90 , // 14
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0xE0, 0xA8, 0xA0 , // 15
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0xE3, 0x82, 0xB0 , // 16
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0xE5, 0x86, 0x85 , // 17
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0xEC, 0x80, 0xA1 , // 18
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0xEF, 0xBD, 0x88 , // 19
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0xC7, 0x87 , // 20
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0xC7, 0x88 , // 21
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0xC7, 0x89 , // 22
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0xC7, 0x8A , // 23
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0xC7, 0x8B , // 24
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0xC7, 0x8C , // 25
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0xC7, 0xB1 , // 26
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0xC7, 0xB2 , // 27
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0xC7, 0xB3 , // 28
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0xC9, 0x90 , // 29
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0xC9, 0xB1 , // 30
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0xEA, 0x99, 0x81 , // 31
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0x00
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};
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static unsigned char t6rhs[] = {
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0x31 , // 0
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0x19 , // 1
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0x43 , // 2
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0x47 , // 3
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0xC3, 0x88 , // 4
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0xC3, 0x89 , // 5
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0xC5, 0x87 , // 6
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0xC7, 0x84 , // 7
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0xC7, 0x84 , // 8
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0xC7, 0x84 , // 9
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0xCE, 0xA0 , // 10
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0xCE, 0x92 , // 11
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0xD0, 0x98 , // 12
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0xD2, 0xA4 , // 13
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0xD7, 0x90 , // 14
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0xE0, 0xA8, 0xA0 , // 15
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0xE3, 0x82, 0xB0 , // 16
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0xE5, 0x86, 0x85 , // 17
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0xEC, 0x80, 0xA1 , // 18
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0xEF, 0xBC, 0xA8 , // 19
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0xC7, 0x87 , // 20
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0xC7, 0x87 , // 21
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0xC7, 0x87 , // 22
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0xC7, 0x8a , // 23
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0xC7, 0x8a , // 24
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0xC7, 0x8a , // 25
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0xC7, 0xB1 , // 26
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0xC7, 0xB1 , // 27
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0xC7, 0xB1 , // 28
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0xE2, 0xB1, 0xAF , // 29
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0xE2, 0xB1, 0xAE , // 30
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0xEA, 0x99, 0x80 , // 31
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0x00
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};
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static const char *t7lhs = "aBcDeFGHIJKL1!!2!!a!uuuu";
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static const char *t7rhs = "AbCdEFghijkL1!!2!!A!UUuU";
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static const char *t8lhs = "aazzz";
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static const char *t8rhs = "aBa";
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static const char *t9lhs = "@a";
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static const char *t9rhs = "`a";
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bool CharByCharCompareEqual(const char *a, const char *b,
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uint32_t aLen, uint32_t bLen)
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{
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// Do basically a CaseInsensitiveCompare(), but using
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// CaseInsensitiveUTF8CharsEqual().
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const char *aEnd = a + aLen;
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const char *bEnd = b + bLen;
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while (a < aEnd && b < bEnd) {
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bool err;
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if (!CaseInsensitiveUTF8CharsEqual(a, b, aEnd, bEnd, &a, &b, &err) || err)
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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 TestCaseConversion()
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{
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printf("==========================\n");
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printf("Start case conversion test\n");
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printf("==========================\n");
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int i;
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char16_t buf[256];
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printf("Test 1 - ToUpper(char16_t, char16_t*):\n");
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for(i=0;i < T2LEN ; i++)
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{
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char16_t ch = ToUpperCase(t2data[i]);
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if(ch != t2result[i])
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printf("\tFailed!! result unexpected %d\n", i);
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}
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printf("Test 2 - ToLower(char16_t, char16_t*):\n");
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for(i=0;i < T3LEN; i++)
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{
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char16_t ch = ToLowerCase(t3data[i]);
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if(ch != t3result[i])
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printf("\tFailed!! result unexpected %d\n", i);
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}
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printf("Test 3 - ToTitle(char16_t, char16_t*):\n");
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for(i=0;i < T4LEN; i++)
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{
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char16_t ch = ToTitleCase(t4data[i]);
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if(ch != t4result[i])
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printf("\tFailed!! result unexpected %d\n", i);
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}
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printf("Test 4 - ToUpper(char16_t*, char16_t*, uint32_t):\n");
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ToUpperCase(t2data, buf, T2LEN);
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for(i = 0; i < T2LEN; i++)
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{
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if(buf[i] != t2result[i])
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{
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printf("\tFailed!! result unexpected %d\n", i);
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break;
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}
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}
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printf("Test 5 - ToLower(char16_t*, char16_t*, uint32_t):\n");
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ToLowerCase(t3data, buf, T3LEN);
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for(i = 0; i < T3LEN; i++)
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{
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if(buf[i] != t3result[i])
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{
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printf("\tFailed!! result unexpected %d\n", i);
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break;
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}
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}
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printf("Test 6 - CaseInsensitiveCompare UTF-8 (1):\n");
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if (CaseInsensitiveCompare((char*)t6lhs, (char*)t6rhs, sizeof(t6lhs), sizeof(t6rhs)))
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printf("\tFailed!\n");
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if (!CharByCharCompareEqual((char*)t6lhs, (char*)t6rhs, sizeof(t6lhs), sizeof(t6rhs)))
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printf("\tFailed character-by-character comparison!\n");
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printf("Test 7 - CaseInsensitiveCompare UTF-8 (2):\n");
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if (CaseInsensitiveCompare(t7lhs, t7rhs, strlen(t7lhs), strlen(t7rhs)))
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printf("\tFailed!\n");
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if (!CharByCharCompareEqual(t7lhs, t7rhs, sizeof(t7lhs), sizeof(t7rhs)))
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printf("\tFailed character-by-character comparison!\n");
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printf("Test 8a - CaseInsensitiveCompare UTF-8 (3):\n");
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if (CaseInsensitiveCompare(t8lhs, t8rhs, strlen(t8lhs), strlen(t8rhs)) != -1)
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printf("\tFailed!\n");
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if (CharByCharCompareEqual(t8lhs, t8rhs, strlen(t8lhs), strlen(t8rhs)))
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printf("\tFailed character-by-character comparison!\n");
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printf("Test 8b - CaseInsensitiveCompare UTF-8 (4):\n");
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if (CaseInsensitiveCompare(t8rhs, t8lhs, strlen(t8rhs), strlen(t8lhs)) != 1)
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printf("\tFailed!\n");
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// This test may seem a bit strange. But it's actually an easy bug to make
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// if we tried to be clever and say that two ASCII characters x and y are
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// case-insensitively equal if (x & ~0x20) == (y & ~0x20).
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printf("Test 9 - CaseInsensitiveCompare UTF-8 (5):\n");
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if (CaseInsensitiveCompare(t9rhs, t9lhs, strlen(t9lhs), strlen(t9rhs)) != 1)
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printf("\tFailed!\n");
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if (CharByCharCompareEqual(t9lhs, t9rhs, strlen(t9lhs), strlen(t9rhs)))
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printf("\tFailed character-by-character comparison!\n");
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printf("===========================\n");
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printf("Finish case conversion test\n");
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printf("===========================\n");
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}
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static void FuzzOneInvalidCaseConversion()
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{
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uint32_t aLen = rand() % 32;
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uint32_t bLen = rand() % 32;
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// We could use a static length-32 buffer for these, but then Valgrind
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// wouldn't be able to detect errors.
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unsigned char *aBuf = (unsigned char*)malloc(aLen * sizeof(unsigned char));
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unsigned char *bBuf = (unsigned char*)malloc(bLen * sizeof(unsigned char));
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for (uint32_t i = 0; i < aLen; i++) {
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aBuf[i] = rand() & 0xff;
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}
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for (uint32_t i = 0; i < bLen; i++) {
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bBuf[i] = rand() & 0xff;
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}
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if (!CaseInsensitiveCompare((char*)aBuf, (char*)bBuf, aLen, bLen))
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printf("\tSurprise, two random strings compared insensitively as equal!\n");
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if (CharByCharCompareEqual((char*)aBuf, (char*)bBuf, aLen, bLen))
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printf("\tSurprise, two random strings compared as exactly equal!\n");
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free(aBuf);
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free(bBuf);
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}
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static void FuzzCaseConversion()
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{
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printf("==========================\n");
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printf("Start fuzz case conversion\n");
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printf("==========================\n");
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srand(0);
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printf("Fuzzing invalid UTF8 data...\n");
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|
for (uint32_t i = 0; i < 100000; i++) {
|
|
FuzzOneInvalidCaseConversion();
|
|
}
|
|
|
|
printf("===========================\n");
|
|
printf("Finish fuzz case conversion\n");
|
|
printf("===========================\n");
|
|
}
|
|
|
|
static void TestEntityConversion(uint32_t version)
|
|
{
|
|
printf("==============================\n");
|
|
printf("Start nsIEntityConverter Test \n");
|
|
printf("==============================\n");
|
|
|
|
uint32_t i;
|
|
nsString inString;
|
|
char16_t uChar;
|
|
nsresult res;
|
|
|
|
|
|
inString.Assign(NS_ConvertASCIItoUTF16("\xA0\xA1\xA2\xA3"));
|
|
uChar = (char16_t) 8364; //euro
|
|
inString.Append(&uChar, 1);
|
|
uChar = (char16_t) 9830; //
|
|
inString.Append(&uChar, 1);
|
|
|
|
nsCOMPtr <nsIEntityConverter> entityConv = do_CreateInstance(kEntityConverterCID, &res);;
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n"); return;}
|
|
|
|
const char16_t *data;
|
|
uint32_t length = NS_StringGetData(inString, &data);
|
|
|
|
// convert char by char
|
|
for (i = 0; i < length; i++) {
|
|
char *entity = nullptr;
|
|
res = entityConv->ConvertToEntity(data[i], version, &entity);
|
|
if (NS_SUCCEEDED(res) && entity) {
|
|
printf("%c %s\n", data[i], entity);
|
|
nsMemory::Free(entity);
|
|
}
|
|
}
|
|
|
|
// convert at once as a string
|
|
char16_t *entities;
|
|
res = entityConv->ConvertToEntities(inString.get(), version, &entities);
|
|
if (NS_SUCCEEDED(res) && entities) {
|
|
for (char16_t *centity = entities; *centity; ++centity) {
|
|
printf("%c", (char) *centity);
|
|
if (';' == (char) *centity)
|
|
printf("\n");
|
|
}
|
|
nsMemory::Free(entities);
|
|
}
|
|
|
|
printf("==============================\n");
|
|
printf("Finish nsIEntityConverter Test \n");
|
|
printf("==============================\n\n");
|
|
}
|
|
|
|
static void TestSaveAsCharset()
|
|
{
|
|
printf("==============================\n");
|
|
printf("Start nsISaveAsCharset Test \n");
|
|
printf("==============================\n");
|
|
|
|
nsresult res;
|
|
|
|
nsString inString;
|
|
inString.Assign(NS_ConvertASCIItoUTF16("\x61\x62\x80\xA0\x63"));
|
|
char *outString;
|
|
|
|
const char16_t *data;
|
|
uint32_t length = NS_StringGetData(inString, &data);
|
|
|
|
// first, dump input string
|
|
for (uint32_t i = 0; i < length; i++) {
|
|
printf("%c ", data[i]);
|
|
}
|
|
printf("\n");
|
|
|
|
nsCOMPtr <nsISaveAsCharset> saveAsCharset = do_CreateInstance(kSaveAsCharsetCID, &res);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
|
|
printf("ISO-8859-1 attr_plainTextDefault entityNone\n");
|
|
res = saveAsCharset->Init("ISO-8859-1",
|
|
nsISaveAsCharset::attr_plainTextDefault,
|
|
nsIEntityConverter::entityNone);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
res = saveAsCharset->Convert(inString.get(), &outString);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
if (!outString) {printf("\tFailed!! output null\n");}
|
|
else {printf("%s\n", outString); nsMemory::Free(outString);}
|
|
|
|
printf("ISO-2022-JP attr_plainTextDefault entityNone\n");
|
|
res = saveAsCharset->Init("ISO-2022-JP",
|
|
nsISaveAsCharset::attr_plainTextDefault,
|
|
nsIEntityConverter::entityNone);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
res = saveAsCharset->Convert(inString.get(), &outString);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
if (!outString) {printf("\tFailed!! output null\n");}
|
|
else {printf("%s\n", outString); nsMemory::Free(outString);}
|
|
if (NS_ERROR_UENC_NOMAPPING == res) {
|
|
outString = ToNewUTF8String(inString);
|
|
if (!outString) {printf("\tFailed!! output null\n");}
|
|
else {printf("Fall back to UTF-8: %s\n", outString); nsMemory::Free(outString);}
|
|
}
|
|
|
|
printf("ISO-2022-JP attr_FallbackQuestionMark entityNone\n");
|
|
res = saveAsCharset->Init("ISO-2022-JP",
|
|
nsISaveAsCharset::attr_FallbackQuestionMark,
|
|
nsIEntityConverter::entityNone);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
res = saveAsCharset->Convert(inString.get(), &outString);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
if (!outString) {printf("\tFailed!! output null\n");}
|
|
else {printf("%s\n", outString); nsMemory::Free(outString);}
|
|
|
|
printf("ISO-2022-JP attr_FallbackEscapeU entityNone\n");
|
|
res = saveAsCharset->Init("ISO-2022-JP",
|
|
nsISaveAsCharset::attr_FallbackEscapeU,
|
|
nsIEntityConverter::entityNone);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
res = saveAsCharset->Convert(inString.get(), &outString);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
if (!outString) {printf("\tFailed!! output null\n");}
|
|
else {printf("%s\n", outString); nsMemory::Free(outString);}
|
|
|
|
printf("ISO-8859-1 attr_htmlTextDefault html40Latin1\n");
|
|
res = saveAsCharset->Init("ISO-8859-1",
|
|
nsISaveAsCharset::attr_htmlTextDefault,
|
|
nsIEntityConverter::html40Latin1);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
res = saveAsCharset->Convert(inString.get(), &outString);
|
|
if (NS_ERROR_UENC_NOMAPPING != res && NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
if (!outString) {printf("\tFailed!! output null\n");}
|
|
else {printf("%s\n", outString); nsMemory::Free(outString);}
|
|
|
|
printf("ISO-8859-1 attr_FallbackHexNCR+attr_EntityAfterCharsetConv html40Latin1 \n");
|
|
res = saveAsCharset->Init("ISO-8859-1",
|
|
nsISaveAsCharset::attr_FallbackHexNCR +
|
|
nsISaveAsCharset::attr_EntityAfterCharsetConv,
|
|
nsIEntityConverter::html40Latin1);
|
|
if (NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
res = saveAsCharset->Convert(inString.get(), &outString);
|
|
if (NS_ERROR_UENC_NOMAPPING != res && NS_FAILED(res)) {printf("\tFailed!! return value != NS_OK\n");}
|
|
if (!outString) {printf("\tFailed!! output null\n");}
|
|
else {printf("%s\n", outString); nsMemory::Free(outString);}
|
|
|
|
|
|
printf("==============================\n");
|
|
printf("Finish nsISaveAsCharset Test \n");
|
|
printf("==============================\n\n");
|
|
}
|
|
|
|
static char16_t normStr[] =
|
|
{
|
|
0x00E1,
|
|
0x0061,
|
|
0x0301,
|
|
0x0107,
|
|
0x0063,
|
|
0x0301,
|
|
0x0000
|
|
};
|
|
|
|
static char16_t nfdForm[] =
|
|
{
|
|
0x0061,
|
|
0x0301,
|
|
0x0061,
|
|
0x0301,
|
|
0x0063,
|
|
0x0301,
|
|
0x0063,
|
|
0x0301,
|
|
0x0000
|
|
};
|
|
|
|
void TestNormalization()
|
|
{
|
|
printf("==============================\n");
|
|
printf("Start nsIUnicodeNormalizer Test \n");
|
|
printf("==============================\n");
|
|
nsIUnicodeNormalizer *t = nullptr;
|
|
nsresult res;
|
|
res = CallGetService(kUnicodeNormalizerCID, &t);
|
|
|
|
printf("Test 1 - GetService():\n");
|
|
if(NS_FAILED(res) || !t) {
|
|
printf("\t1st Norm GetService failed\n");
|
|
} else {
|
|
NS_RELEASE(t);
|
|
}
|
|
|
|
res = CallGetService(kUnicodeNormalizerCID, &t);
|
|
|
|
if(NS_FAILED(res) || !t) {
|
|
printf("\t2nd GetService failed\n");
|
|
} else {
|
|
printf("Test 2 - NormalizeUnicode(uint32_t, const nsAString&, nsAString&):\n");
|
|
nsAutoString resultStr;
|
|
res = t->NormalizeUnicodeNFD(nsDependentString(normStr), resultStr);
|
|
if (resultStr.Equals(nsDependentString(nfdForm))) {
|
|
printf(" Succeeded in NFD UnicodeNormalizer test. \n");
|
|
} else {
|
|
printf(" Failed in NFD UnicodeNormalizer test. \n");
|
|
}
|
|
|
|
NS_RELEASE(t);
|
|
}
|
|
printf("==============================\n");
|
|
printf("Finish nsIUnicodeNormalizer Test \n");
|
|
printf("==============================\n");
|
|
|
|
}
|
|
|
|
|
|
int main(int argc, char** argv) {
|
|
|
|
nsresult rv = NS_InitXPCOM2(nullptr, nullptr, nullptr);
|
|
if (NS_FAILED(rv)) {
|
|
printf("NS_InitXPCOM2 failed\n");
|
|
return 1;
|
|
}
|
|
|
|
// --------------------------------------------
|
|
|
|
TestCaseConversion();
|
|
|
|
// --------------------------------------------
|
|
|
|
FuzzCaseConversion();
|
|
|
|
// --------------------------------------------
|
|
|
|
TestEntityConversion(nsIEntityConverter::html40);
|
|
|
|
// --------------------------------------------
|
|
|
|
TestSaveAsCharset();
|
|
|
|
// --------------------------------------------
|
|
|
|
TestNormalization();
|
|
|
|
// --------------------------------------------
|
|
printf("Finish All The Test Cases\n");
|
|
|
|
return 0;
|
|
}
|