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39131219e8
This is a mix of more automated and manual migration. It should remove all applicable extension_loaded() checks outside of skipif.inc files.
207 lines
7.3 KiB
PHP
207 lines
7.3 KiB
PHP
--TEST--
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Exhaustive test of ISO-2022-JP-MS text encoding
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--EXTENSIONS--
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mbstring
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--SKIPIF--
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<?php
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if (getenv("SKIP_SLOW_TESTS")) die("skip slow test");
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?>
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--FILE--
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<?php
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srand(444); /* Make results consistent */
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include('encoding_tests.inc');
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mb_substitute_character(0x25); // '%'
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function shiftJISDecode($bytes) {
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/* Convert CP932's default Shift-JIS representation to kuten code */
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$first = ($bytes >> 8) & 0xFF;
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$second = $bytes & 0xFF;
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$hi_bits = $first - (($first > 0x9F) ? 0xE0 - 31 : 0x81);
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if ($second > 0x9E) {
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$kuten = ((($hi_bits << 1) + 0x22) << 8) + ($second - 0x9F + 0x21);
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} else if ($second > 0x7F) {
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$kuten = ((($hi_bits << 1) + 0x21) << 8) + ($second - 0x80 + 63 + 0x21);
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} else {
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$kuten = ((($hi_bits << 1) + 0x21) << 8) + ($second - 0x40 + 0x21);
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}
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return $kuten;
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}
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/* Read in the table of all characters in CP932 */
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$cp932Chars = array(); /* CP932 string -> UTF-32BE string */
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$fp = fopen(realpath(__DIR__ . '/data/CP932.txt'), 'r+');
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while ($line = fgets($fp, 256)) {
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if ($line[0] == '#')
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continue;
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if (sscanf($line, "0x%x\t0x%x", $bytes, $codepoint) == 2) {
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if ($bytes < 256)
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continue;
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/* ISO-2022-JP-MS only uses the first two ranges of MS vendor extensions */
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if ($bytes >= 0xFA00)
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continue;
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$cp932Chars[pack('n', shiftJISDecode($bytes))] = pack('N', $codepoint);
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}
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}
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/* Windows-932 has many cases where two different kuten codes map to the same
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* Unicode codepoints */
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foreach ([0x8790, 0x8791, 0x8792, 0x8795, 0x8796, 0x8797, 0x879A, 0x879B, 0x879C, 0xEEF9] as $i) {
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$bytes = pack('n', shiftJISDecode($i));
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$nonInvertible[$bytes] = $cp932Chars[$bytes];
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}
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/* Add User Defined codes (which use ESC $ ( ? escape sequence)) */
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$udcChars = array();
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for ($cp = 0xE000; $cp < (0xE000 + (20 * 94)); $cp++) {
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$i = $cp - 0xE000;
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$bytes = (( (int)($i / 94) + 0x7F - 0x5E) << 8) + (($i % 94) + 0x21);
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$udcChars[pack('n', $bytes)] = pack('N', $cp);
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}
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/* Read in table of all characters in JISX-0201 charset */
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$jisx0201Chars = array(); /* JISX0201 -> UTF-32BE */
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$fp = fopen(realpath(__DIR__ . '/data/JISX0201.txt'), 'r+');
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while ($line = fgets($fp, 256)) {
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if ($line[0] == '#')
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continue;
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if (sscanf($line, "0x%x\t0x%x", $byte, $codepoint) == 2)
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$jisx0201Chars[chr($byte)] = pack('N', $codepoint);
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}
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function testValid($from, $to, $encoding, $bothWays = true) {
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identifyValidString($from, $encoding);
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convertValidString($from, $to, $encoding, 'UTF-32BE', false);
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if ($bothWays) {
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/* ESC ( B at the beginning is redundant, since ASCII mode is the default */
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if (substr($from, 0, 3) == "\x1B(B")
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$from = substr($from, 3, strlen($from) - 3);
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/* If the string switches to a different charset, it should switch back to
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* ASCII at the end */
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if (strpos($from, "\x1B\$B") !== false || strpos($from, "\x1B(I") !== false || strpos($from, "\x1B\$@") !== false || strpos($from, "\x1B\$(B") !== false || strpos($from, "\x1B\$(@") !== false || strpos($from, "\x1B\$(?") !== false)
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$from .= "\x1B(B";
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convertValidString($to, $from, 'UTF-32BE', $encoding, false);
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}
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}
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function testInvalid($from, $to, $encoding) {
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testInvalidString($from, $to, $encoding, 'UTF-32BE');
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}
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for ($i = 0; $i < 0x80; $i++) {
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if ($i == 0x1B)
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continue;
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testValid(chr($i), "\x00\x00\x00" . chr($i), 'ISO-2022-JP-MS');
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testValid("\x1B(B" . chr($i), "\x00\x00\x00" . chr($i), 'ISO-2022-JP-MS', false);
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testValid("\x1B(J" . chr($i), "\x00\x00\x00" . chr($i), 'ISO-2022-JP-MS', false);
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}
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for ($i = 0x80; $i < 256; $i++) {
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if ($i >= 0xA1 && $i <= 0xDF) // We convert single bytes from 0xA1-0xDF as JIS X 0201 kana
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continue;
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testInvalid(chr($i), "\x00\x00\x00%", 'ISO-2022-JP-MS');
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testInvalid("\x1B(B" . chr($i), "\x00\x00\x00%", 'ISO-2022-JP-MS');
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testInvalid("\x1B(J" . chr($i), "\x00\x00\x00%", 'ISO-2022-JP-MS');
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}
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echo "ASCII support OK\n";
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/* All valid JIS X 0201 characters
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* Those with a 1 in the high bit are JIS X 0201 kana */
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foreach ($jisx0201Chars as $jisx0201 => $utf32BE) {
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if (ord($jisx0201) >= 128) {
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$kana = chr(ord($jisx0201) - 128);
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testValid("\x1B(I" . $kana, $utf32BE, 'ISO-2022-JP-MS', false);
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testValid($jisx0201, $utf32BE, 'ISO-2022-JP-MS', false);
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}
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}
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for ($i = 0x80; $i < 256; $i++) {
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if ($i >= 0xA1 && $i <= 0xDF)
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continue;
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testInvalid("\x1B(I" . chr($i), "\x00\x00\x00%", 'ISO-2022-JP-MS');
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testInvalid("\x1B(J" . chr($i), "\x00\x00\x00%", 'ISO-2022-JP-MS');
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}
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echo "JIS X 0201 support OK\n";
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function testAllValidCharsWithPrefix($validChars, $prefix, $bothWays) {
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$good = array_keys($validChars);
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shuffle($good);
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while (!empty($good)) {
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$length = min(rand(5,10), count($good));
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$from = $to = '';
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while ($length--) {
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$goodChar = array_pop($good);
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$from .= $goodChar;
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$to .= $validChars[$goodChar];
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}
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testValid($prefix . $from, $to, 'ISO-2022-JP-MS', $bothWays);
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}
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}
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$validChars = $cp932Chars;
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/* We allow ASCII/JIS X 0201 characters to appear even in JIS X 0208 mode */
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for ($i = 0; $i <= 0x7F; $i++)
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$validChars[chr($i)] = chr($i);
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for ($i = 0xA1; $i <= 0xDF; $i++)
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$validChars[chr($i)] = $jisx0201Chars[chr($i)];
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$lenTable = array_fill_keys(range(0xE0, 0xFC), 2) + array_fill_keys(range(0x81, 0x9F), 2);
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findInvalidChars($validChars, $invalidChars, $truncatedChars, $lenTable);
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foreach ($nonInvertible as $bytes => $char)
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unset($cp932Chars[$bytes]);
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testAllValidCharsWithPrefix($cp932Chars, "\x1B\$B", true);
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testAllValidCharsWithPrefix($nonInvertible, "\x1B\$B", false);
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foreach (array_keys($invalidChars) as $invalid) {
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$firstByte = ord($invalid[0]);
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if (($firstByte > 0x80 && $firstByte < 0xA0) || $firstByte >= 0xE0) {
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/* The first byte of this 2-byte character will be rejected and result in % being sent
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* to the output. Then the second byte will do something else. It is easier to write the
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* test if we only check with the 1st byte. */
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testInvalidString("\x1B\$B" . $invalid[0], "\x00\x00\x00%", 'ISO-2022-JP-MS', 'UTF-32BE');
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} else {
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testInvalidString("\x1B\$B" . $invalid, "\x00\x00\x00%", 'ISO-2022-JP-MS', 'UTF-32BE');
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}
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}
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foreach (array_keys($truncatedChars) as $truncated)
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testInvalidString("\x1B\$B" . $truncated, "\x00\x00\x00%", 'ISO-2022-JP-MS', 'UTF-32BE');
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echo "JIS X 0208 (with MS extensions) support OK\n";
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$validChars = $udcChars;
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/* We allow ASCII/JIS X 0201 characters to appear even in JIS X 0208 mode */
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for ($i = 0; $i <= 0x7F; $i++)
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$validChars[chr($i)] = chr($i);
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for ($i = 0xA1; $i <= 0xDF; $i++)
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$validChars[chr($i)] = $jisx0201Chars[chr($i)];
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$lenTable = array_fill_keys(range(0xE0, 0xFC), 2) + array_fill_keys(range(0x81, 0x9F), 2);
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findInvalidChars($validChars, $invalidChars, $truncatedChars, $lenTable);
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testAllValidCharsWithPrefix($udcChars, "\x1B\$(?", true);
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foreach (array_keys($invalidChars) as $invalid) {
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$firstByte = ord($invalid[0]);
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if (($firstByte > 0x80 && $firstByte < 0xA0) || $firstByte >= 0xE0) {
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testInvalidString("\x1B\$(?" . $invalid[0], "\x00\x00\x00%", 'ISO-2022-JP-MS', 'UTF-32BE');
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} else {
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testInvalidString("\x1B\$(?" . $invalid, "\x00\x00\x00%", 'ISO-2022-JP-MS', 'UTF-32BE');
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}
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}
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foreach (array_keys($truncatedChars) as $truncated)
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testInvalidString("\x1B\$(?" . $truncated, "\x00\x00\x00%", 'ISO-2022-JP-MS', 'UTF-32BE');
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echo "UDC support OK\n";
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?>
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--EXPECT--
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ASCII support OK
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JIS X 0201 support OK
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JIS X 0208 (with MS extensions) support OK
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UDC support OK
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