Coverage Report

Created: 2026-07-20 07:04

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/icu/source/i18n/csrucode.cpp
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Source
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// © 2016 and later: Unicode, Inc. and others.
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// License & terms of use: http://www.unicode.org/copyright.html
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/*
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 **********************************************************************
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 *   Copyright (C) 2005-2013, International Business Machines
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 *   Corporation and others.  All Rights Reserved.
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 **********************************************************************
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 */
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#include "unicode/utypes.h"
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#if !UCONFIG_NO_CONVERSION
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#include "csrucode.h"
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#include "csmatch.h"
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U_NAMESPACE_BEGIN
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CharsetRecog_Unicode::~CharsetRecog_Unicode()
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0
{
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    // nothing to do
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0
}
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CharsetRecog_UTF_16_BE::~CharsetRecog_UTF_16_BE()
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{
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    // nothing to do
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}
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const char *CharsetRecog_UTF_16_BE::getName() const
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657k
{
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657k
    return "UTF-16BE";
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657k
}
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// UTF-16 confidence calculation. Very simple minded, but better than nothing.
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//   Any 8 bit non-control characters bump the confidence up. These have a zero high byte,
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//     and are very likely to be UTF-16, although they could also be part of a UTF-32 code.
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//   NULs are a contra-indication, they will appear commonly if the actual encoding is UTF-32.
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//   NULs should be rare in actual text. 
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40
1.67M
static int32_t adjustConfidence(char16_t codeUnit, int32_t confidence) {
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1.67M
    if (codeUnit == 0) {
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531k
        confidence -= 10;
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1.13M
    } else if ((codeUnit >= 0x20 && codeUnit <= 0xff) || codeUnit == 0x0a) {
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156k
        confidence += 10;
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156k
    }
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1.67M
    if (confidence < 0) {
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0
        confidence = 0;
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1.67M
    } else if (confidence > 100) {
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0
        confidence = 100;
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0
    }
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1.67M
    return confidence;
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1.67M
}
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UBool CharsetRecog_UTF_16_BE::match(InputText* textIn, CharsetMatch *results) const
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657k
{
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657k
    const uint8_t *input = textIn->fRawInput;
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657k
    int32_t confidence = 10;
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657k
    int32_t length = textIn->fRawLength;
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657k
    int32_t bytesToCheck = (length > 30) ? 30 : length;
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1.25M
    for (int32_t charIndex=0; charIndex<bytesToCheck-1; charIndex+=2) {
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835k
        char16_t codeUnit = (input[charIndex] << 8) | input[charIndex + 1];
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835k
        if (charIndex == 0 && codeUnit == 0xFEFF) {
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821
            confidence = 100;
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821
            break;
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821
        }
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834k
        confidence = adjustConfidence(codeUnit, confidence);
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834k
        if (confidence == 0 || confidence == 100) {
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239k
            break;
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239k
        }
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834k
    }
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657k
    if (bytesToCheck < 4 && confidence < 100) {
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421k
        confidence = 0;
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421k
    }
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657k
    results->set(textIn, this, confidence);
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657k
    return (confidence > 0);
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657k
}
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CharsetRecog_UTF_16_LE::~CharsetRecog_UTF_16_LE()
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{
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    // nothing to do
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}
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const char *CharsetRecog_UTF_16_LE::getName() const
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657k
{
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657k
    return "UTF-16LE";
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657k
}
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UBool CharsetRecog_UTF_16_LE::match(InputText* textIn, CharsetMatch *results) const
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657k
{
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657k
    const uint8_t *input = textIn->fRawInput;
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657k
    int32_t confidence = 10;
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657k
    int32_t length = textIn->fRawLength;
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657k
    int32_t bytesToCheck = (length > 30) ? 30 : length;
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1.25M
    for (int32_t charIndex=0; charIndex<bytesToCheck-1; charIndex+=2) {
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836k
        char16_t codeUnit = input[charIndex] | (input[charIndex + 1] << 8);
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836k
        if (charIndex == 0 && codeUnit == 0xFEFF) {
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1.48k
            confidence = 100;     // UTF-16 BOM
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1.48k
            if (length >= 4 && input[2] == 0 && input[3] == 0) {
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328
                confidence = 0;   // UTF-32 BOM
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328
            }
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1.48k
            break;
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1.48k
        }
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835k
        confidence = adjustConfidence(codeUnit, confidence);
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835k
        if (confidence == 0 || confidence == 100) {
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235k
            break;
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235k
        }
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835k
    }
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657k
    if (bytesToCheck < 4 && confidence < 100) {
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421k
        confidence = 0;
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421k
    }
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657k
    results->set(textIn, this, confidence);
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657k
    return (confidence > 0);
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657k
}
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118
CharsetRecog_UTF_32::~CharsetRecog_UTF_32()
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{
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    // nothing to do
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}
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123
UBool CharsetRecog_UTF_32::match(InputText* textIn, CharsetMatch *results) const
124
1.31M
{
125
1.31M
    const uint8_t *input = textIn->fRawInput;
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1.31M
    int32_t limit = (textIn->fRawLength / 4) * 4;
127
1.31M
    int32_t numValid = 0;
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1.31M
    int32_t numInvalid = 0;
129
1.31M
    bool hasBOM = false;
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1.31M
    int32_t confidence = 0;
131
132
1.31M
    if (limit > 0 && getChar(input, 0) == 0x0000FEFFUL) {
133
679
        hasBOM = true;
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679
    }
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136
440M
    for(int32_t i = 0; i < limit; i += 4) {
137
439M
        int32_t ch = getChar(input, i);
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139
439M
        if (ch < 0 || ch >= 0x10FFFF || (ch >= 0xD800 && ch <= 0xDFFF)) {
140
254M
            numInvalid += 1;
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254M
        } else {
142
185M
            numValid += 1;
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185M
        }
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439M
    }
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146
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    // Cook up some sort of confidence score, based on presence of a BOM
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    //    and the existence of valid and/or invalid multi-byte sequences.
149
1.31M
    if (hasBOM && numInvalid==0) {
150
100
        confidence = 100;
151
1.31M
    } else if (hasBOM && numValid > numInvalid*10) {
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235
        confidence = 80;
153
1.31M
    } else if (numValid > 3 && numInvalid == 0) {
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7.58k
        confidence = 100;            
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1.30M
    } else if (numValid > 0 && numInvalid == 0) {
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160k
        confidence = 80;
157
1.14M
    } else if (numValid > numInvalid*10) {
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        // Probably corrupt UTF-32BE data.  Valid sequences aren't likely by chance.
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2.72k
        confidence = 25;
160
2.72k
    }
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162
1.31M
    results->set(textIn, this, confidence);
163
1.31M
    return (confidence > 0);
164
1.31M
}
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166
CharsetRecog_UTF_32_BE::~CharsetRecog_UTF_32_BE()
167
{
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    // nothing to do
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}
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171
const char *CharsetRecog_UTF_32_BE::getName() const
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657k
{
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657k
    return "UTF-32BE";
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657k
}
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176
int32_t CharsetRecog_UTF_32_BE::getChar(const uint8_t *input, int32_t index) const
177
220M
{
178
220M
    return input[index + 0] << 24 | input[index + 1] << 16 |
179
220M
           input[index + 2] <<  8 | input[index + 3];
180
220M
} 
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182
CharsetRecog_UTF_32_LE::~CharsetRecog_UTF_32_LE()
183
{
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    // nothing to do
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}
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187
const char *CharsetRecog_UTF_32_LE::getName() const
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657k
{
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657k
    return "UTF-32LE";
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657k
}
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192
int32_t CharsetRecog_UTF_32_LE::getChar(const uint8_t *input, int32_t index) const
193
220M
{
194
220M
    return input[index + 3] << 24 | input[index + 2] << 16 |
195
220M
           input[index + 1] <<  8 | input[index + 0];
196
220M
}
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198
U_NAMESPACE_END
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#endif
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