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96de4ef7e0
They are similar to their already existing decoder counterparts.
174 lines
5.6 KiB
C++
174 lines
5.6 KiB
C++
/*
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* Copyright (c) 2024, Ben Jilks <benjyjilks@gmail.com>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <LibTest/TestCase.h>
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#include <LibTextCodec/Encoder.h>
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TEST_CASE(test_utf8_encode)
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{
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TextCodec::UTF8Encoder encoder;
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// Unicode character U+1F600 GRINNING FACE
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auto test_string = "\U0001F600"sv;
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Vector<u8> processed_bytes;
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MUST(encoder.process(
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Utf8View(test_string),
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[&](u8 byte) { return processed_bytes.try_append(byte); },
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[&](u32) -> ErrorOr<void> { EXPECT(false); return {}; }));
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EXPECT(processed_bytes.size() == 4);
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EXPECT(processed_bytes[0] == 0xF0);
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EXPECT(processed_bytes[1] == 0x9F);
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EXPECT(processed_bytes[2] == 0x98);
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EXPECT(processed_bytes[3] == 0x80);
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}
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TEST_CASE(test_euc_jp_encoder)
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{
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TextCodec::EUCJPEncoder encoder;
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// U+A5 Yen Sign
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// U+3088 Hiragana Letter Yo
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// U+30C4 Katakana Letter Tu
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auto test_string = "\U000000A5\U00003088\U000030C4"sv;
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Vector<u8> processed_bytes;
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MUST(encoder.process(
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Utf8View(test_string),
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[&](u8 byte) { return processed_bytes.try_append(byte); },
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[&](u32) -> ErrorOr<void> { EXPECT(false); return {}; }));
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EXPECT(processed_bytes.size() == 5);
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EXPECT(processed_bytes[0] == 0x5C);
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EXPECT(processed_bytes[1] == 0xA4);
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EXPECT(processed_bytes[2] == 0xE8);
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EXPECT(processed_bytes[3] == 0xA5);
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EXPECT(processed_bytes[4] == 0xC4);
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}
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TEST_CASE(test_iso_2022_jp_encoder)
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{
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TextCodec::ISO2022JPEncoder encoder;
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// U+A5 Yen Sign
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// U+3088 Hiragana Letter Yo
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// U+30C4 Katakana Letter Tu
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auto test_string = "\U000000A5\U00003088\U000030C4"sv;
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Vector<u8> processed_bytes;
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MUST(encoder.process(
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Utf8View(test_string),
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[&](u8 byte) { return processed_bytes.try_append(byte); },
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[&](u32) -> ErrorOr<void> { EXPECT(false); return {}; }));
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EXPECT(processed_bytes.size() == 14);
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EXPECT(processed_bytes[0] == 0x1B);
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EXPECT(processed_bytes[1] == 0x28);
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EXPECT(processed_bytes[2] == 0x4A);
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EXPECT(processed_bytes[3] == 0x5C);
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EXPECT(processed_bytes[4] == 0x1B);
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EXPECT(processed_bytes[5] == 0x24);
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EXPECT(processed_bytes[6] == 0x42);
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EXPECT(processed_bytes[7] == 0x24);
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EXPECT(processed_bytes[8] == 0x68);
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EXPECT(processed_bytes[9] == 0x25);
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EXPECT(processed_bytes[10] == 0x44);
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EXPECT(processed_bytes[11] == 0x1B);
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EXPECT(processed_bytes[12] == 0x28);
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EXPECT(processed_bytes[13] == 0x42);
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}
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TEST_CASE(test_shift_jis_encoder)
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{
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TextCodec::ShiftJISEncoder encoder;
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// U+A5 Yen Sign
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// U+3088 Hiragana Letter Yo
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// U+30C4 Katakana Letter Tu
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auto test_string = "\U000000A5\U00003088\U000030C4"sv;
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Vector<u8> processed_bytes;
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MUST(encoder.process(
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Utf8View(test_string),
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[&](u8 byte) { return processed_bytes.try_append(byte); },
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[&](u32) -> ErrorOr<void> { EXPECT(false); return {}; }));
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EXPECT(processed_bytes.size() == 5);
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EXPECT(processed_bytes[0] == 0x5C);
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EXPECT(processed_bytes[1] == 0x82);
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EXPECT(processed_bytes[2] == 0xE6);
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EXPECT(processed_bytes[3] == 0x83);
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EXPECT(processed_bytes[4] == 0x63);
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}
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TEST_CASE(test_euc_kr_encoder)
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{
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TextCodec::EUCKREncoder encoder;
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// U+B29F Hangul Syllable Neulh
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// U+7C97 CJK Unified Ideograph-7C97
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auto test_string = "\U0000B29F\U00007C97"sv;
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Vector<u8> processed_bytes;
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MUST(encoder.process(
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Utf8View(test_string),
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[&](u8 byte) { return processed_bytes.try_append(byte); },
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[&](u32) -> ErrorOr<void> { EXPECT(false); return {}; }));
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EXPECT(processed_bytes.size() == 4);
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EXPECT(processed_bytes[0] == 0x88);
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EXPECT(processed_bytes[1] == 0x6B);
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EXPECT(processed_bytes[2] == 0xF0);
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EXPECT(processed_bytes[3] == 0xD8);
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}
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TEST_CASE(test_big5_encoder)
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{
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TextCodec::Big5Encoder encoder;
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// U+A7 Section Sign
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// U+70D7 CJK Unified Ideograph-70D7
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auto test_string = "\U000000A7\U000070D7"sv;
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Vector<u8> processed_bytes;
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MUST(encoder.process(
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Utf8View(test_string),
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[&](u8 byte) { return processed_bytes.try_append(byte); },
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[&](u32) -> ErrorOr<void> { EXPECT(false); return {}; }));
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EXPECT(processed_bytes.size() == 4);
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EXPECT(processed_bytes[0] == 0xA1);
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EXPECT(processed_bytes[1] == 0xB1);
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EXPECT(processed_bytes[2] == 0xD2);
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EXPECT(processed_bytes[3] == 0x71);
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}
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TEST_CASE(test_gb18030_encoder)
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{
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TextCodec::GB18030Encoder encoder;
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// U+20AC Euro Sign
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// U+E4C5 Private Use Area
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auto test_string = "\U000020AC\U0000E4C5"sv;
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Vector<u8> processed_bytes;
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MUST(encoder.process(
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Utf8View(test_string),
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[&](u8 byte) { return processed_bytes.try_append(byte); },
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[&](u32) -> ErrorOr<void> { EXPECT(false); return {}; }));
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EXPECT(processed_bytes.size() == 4);
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EXPECT(processed_bytes[0] == 0xA2);
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EXPECT(processed_bytes[1] == 0xE3);
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EXPECT(processed_bytes[2] == 0xFE);
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EXPECT(processed_bytes[3] == 0xFE);
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}
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TEST_CASE(test_windows1252_encoder)
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{
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auto encoder = TextCodec::encoder_for_exact_name("windows-1252"sv);
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auto test_string = "ÀÁÂÃÄÅÆÇÈÉÊËÌÍÎÏfoo€"sv;
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Vector<u8> processed_bytes;
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MUST(encoder.value().process(
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Utf8View(test_string),
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[&](u8 byte) { dbgln("{}", processed_bytes.size()); return processed_bytes.try_append(byte); },
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[&](u32) -> ErrorOr<void> { EXPECT(false); return {}; }));
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EXPECT(processed_bytes.size() == 20);
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for (u8 i = 0; i < 15; i++) {
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EXPECT(processed_bytes[i] == (0xC0 + i));
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}
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EXPECT(processed_bytes[16] == 0x66);
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EXPECT(processed_bytes[17] == 0x6F);
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EXPECT(processed_bytes[18] == 0x6F);
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EXPECT(processed_bytes[19] == 0x80);
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}
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