227 lines
6.1 KiB
JavaScript
227 lines
6.1 KiB
JavaScript
// NOTE: Requires testharness.js
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// http://www.w3.org/2008/webapps/wiki/Harness
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// Extension to testharness.js API which avoids logging enormous strings
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// on a coding failure.
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function assert_string_equals(actual, expected, description) {
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// short circuit success case
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if (actual === expected) {
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assert_true(true, description + ": <actual> === <expected>");
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return;
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}
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// length check
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assert_equals(
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actual.length,
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expected.length,
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description + ": string lengths"
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);
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var i, a, b;
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for (i = 0; i < actual.length; i++) {
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a = actual.charCodeAt(i);
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b = expected.charCodeAt(i);
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if (a !== b) {
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assert_true(
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false,
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description +
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": code unit " +
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i.toString() +
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" unequal: " +
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cpname(a) +
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" != " +
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cpname(b)
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);
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} // doesn't return
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}
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// It should be impossible to get here, because the initial
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// comparison failed, so either the length comparison or the
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// codeunit-by-codeunit comparison should also fail.
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assert_true(false, description + ": failed to detect string difference");
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}
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// Inspired by:
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// http://ecmanaut.blogspot.com/2006/07/encoding-decoding-utf8-in-javascript.html
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function encode_utf8(string) {
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var utf8 = unescape(encodeURIComponent(string));
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var octets = new Uint8Array(utf8.length),
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i;
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for (i = 0; i < utf8.length; i += 1) {
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octets[i] = utf8.charCodeAt(i);
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}
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return octets;
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}
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function encode_utf16le(string) {
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var octets = new Uint8Array(string.length * 2);
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var di = 0;
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for (var i = 0; i < string.length; i++) {
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var code = string.charCodeAt(i);
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octets[di++] = code & 0xff;
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octets[di++] = code >> 8;
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}
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return octets;
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}
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function encode_utf16be(string) {
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var octets = new Uint8Array(string.length * 2);
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var di = 0;
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for (var i = 0; i < string.length; i++) {
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var code = string.charCodeAt(i);
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octets[di++] = code >> 8;
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octets[di++] = code & 0xff;
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}
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return octets;
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}
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function decode_utf8(octets) {
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var utf8 = String.fromCharCode.apply(null, octets);
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return decodeURIComponent(escape(utf8));
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}
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// Helpers for test_utf_roundtrip.
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function cpname(n) {
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if (n + 0 !== n) {
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return n.toString();
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}
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var w = n <= 0xffff ? 4 : 6;
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return "U+" + ("000000" + n.toString(16).toUpperCase()).slice(-w);
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}
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function genblock(from, len) {
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var i, j, point, offset;
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var size, block;
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// determine size required:
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// 1 unit for each point from U+000000 through U+00D7FF
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// 0 units U+00D800 through U+00DFFF
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// 1 unit U+00E000 through U+00FFFF
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// 2 units U+010000 through U+10FFFF
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function overlap(min1, max1, min2, max2) {
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return Math.max(0, Math.min(max1, max2) - Math.max(min1, min2));
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}
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size =
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overlap(from, from + len, 0x000000, 0x00d800) +
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overlap(from, from + len, 0x00e000, 0x010000) +
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overlap(from, from + len, 0x010000, 0x110000) * 2;
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block = new Uint16Array(size);
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for (i = 0, j = 0; i < len; i++) {
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point = from + i;
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if (0xd800 <= point && point <= 0xdfff) {
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continue;
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} else if (point <= 0xffff) {
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block[j++] = point;
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} else {
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offset = point - 0x10000;
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block[j++] = 0xd800 + (offset >> 10);
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block[j++] = 0xdc00 + (offset & 0x3ff);
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}
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}
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return String.fromCharCode.apply(null, block);
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}
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function test_utf_roundtrip() {
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var MIN_CODEPOINT = 0;
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var MAX_CODEPOINT = 0x10ffff;
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var BLOCK_SIZE = 0x1000;
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var block, block_tag, i, encoded, decoded, exp_encoded, exp_decoded;
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var TD_U16LE = new TextDecoder("UTF-16LE");
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var TD_U16BE = new TextDecoder("UTF-16BE");
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var TE_U8 = new TextEncoder();
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var TD_U8 = new TextDecoder("UTF-8");
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for (i = MIN_CODEPOINT; i < MAX_CODEPOINT; i += BLOCK_SIZE) {
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block_tag = cpname(i) + " - " + cpname(i + BLOCK_SIZE - 1);
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block = genblock(i, BLOCK_SIZE);
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// test UTF-16LE, UTF-16BE, and UTF-8 encodings against themselves
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encoded = encode_utf16le(block);
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decoded = TD_U16LE.decode(encoded);
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assert_string_equals(block, decoded, "UTF-16LE round trip " + block_tag);
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encoded = encode_utf16be(block);
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decoded = TD_U16BE.decode(encoded);
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assert_string_equals(block, decoded, "UTF-16BE round trip " + block_tag);
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encoded = TE_U8.encode(block);
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decoded = TD_U8.decode(encoded);
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assert_string_equals(block, decoded, "UTF-8 round trip " + block_tag);
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// test TextEncoder(UTF-8) against the older idiom
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exp_encoded = encode_utf8(block);
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assert_array_equals(
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encoded,
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exp_encoded,
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"UTF-8 reference encoding " + block_tag
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);
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exp_decoded = decode_utf8(exp_encoded);
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assert_string_equals(
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decoded,
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exp_decoded,
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"UTF-8 reference decoding " + block_tag
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);
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}
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}
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function test_utf_samples() {
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// z, cent, CJK water, G-Clef, Private-use character
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var sample = "z\xA2\u6C34\uD834\uDD1E\uDBFF\uDFFD";
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var cases = [
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{
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encoding: "utf-8",
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expected: [
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0x7a, 0xc2, 0xa2, 0xe6, 0xb0, 0xb4, 0xf0, 0x9d, 0x84, 0x9e, 0xf4, 0x8f,
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0xbf, 0xbd,
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],
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},
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{
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encoding: "utf-16le",
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expected: [
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0x7a, 0x00, 0xa2, 0x00, 0x34, 0x6c, 0x34, 0xd8, 0x1e, 0xdd, 0xff, 0xdb,
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0xfd, 0xdf,
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],
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},
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{
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encoding: "utf-16",
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expected: [
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0x7a, 0x00, 0xa2, 0x00, 0x34, 0x6c, 0x34, 0xd8, 0x1e, 0xdd, 0xff, 0xdb,
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0xfd, 0xdf,
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],
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},
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{
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encoding: "utf-16be",
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expected: [
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0x00, 0x7a, 0x00, 0xa2, 0x6c, 0x34, 0xd8, 0x34, 0xdd, 0x1e, 0xdb, 0xff,
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0xdf, 0xfd,
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],
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},
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];
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var encoded = new TextEncoder().encode(sample);
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assert_array_equals(encoded, cases[0].expected, "expected equal encodings");
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cases.forEach(function (t) {
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var decoded = new TextDecoder(t.encoding).decode(
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new Uint8Array(t.expected)
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);
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assert_equals(decoded, sample, "expected equal decodings - " + t.encoding);
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});
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}
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test(
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test_utf_samples,
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"UTF-8, UTF-16LE, UTF-16BE - Encode/Decode - reference sample"
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);
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test(
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test_utf_roundtrip,
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"UTF-8, UTF-16LE, UTF-16BE - Encode/Decode - full roundtrip and " +
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"agreement with encode/decodeURIComponent"
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);
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