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 /*
Minetest
Copyright (C) 2010-2014 kwolekr, Ryan Kwolek <kwolekr@minetest.net>

This program is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 2.1 of the License, or
(at your option) any later version.

This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
GNU Lesser General Public License for more details.

You should have received a copy of the GNU Lesser General Public License along
with this program; if not, write to the Free Software Foundation, Inc.,
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/

#include "test.h"

#include <cmath>
#include "util/numeric.h"
#include "exceptions.h"
#include "noise.h"

class TestRandom : public TestBase {
public:
	TestRandom() { TestManager::registerTestModule(this); }
	const char *getName() { return "TestRandom"; }

	void runTests(IGameDef *gamedef);

	void testPseudoRandom();
	void testPseudoRandomRange();
	void testPcgRandom();
	void testPcgRandomRange();
	void testPcgRandomBytes();
	void testPcgRandomNormalDist();

	static const int expected_pseudorandom_results[256];
	static const u32 expected_pcgrandom_results[256];
	static const u8 expected_pcgrandom_bytes_result[24];
	static const u8 expected_pcgrandom_bytes_result2[24];
};

static TestRandom g_test_instance;

void TestRandom::runTests(IGameDef *gamedef)
{
	TEST(testPseudoRandom);
	TEST(testPseudoRandomRange);
	TEST(testPcgRandom);
	TEST(testPcgRandomRange);
	TEST(testPcgRandomBytes);
	TEST(testPcgRandomNormalDist);
}

////////////////////////////////////////////////////////////////////////////////

void TestRandom::testPseudoRandom()
{
	PseudoRandom pr(814538);

	for (u32 i = 0; i != 256; i++)
		UASSERTEQ(int, pr.next(), expected_pseudorandom_results[i]);
}


void TestRandom::testPseudoRandomRange()
{
	PseudoRandom pr((int)time(NULL));

	EXCEPTION_CHECK(PrngException, pr.range(2000, 6000));
	EXCEPTION_CHECK(PrngException, pr.range(5, 1));

	for (u32 i = 0; i != 32768; i++) {
		int min = (pr.next() % 3000) - 500;
		int max = (pr.next() % 3000) - 500;
		if (min > max)
			SWAP(int, min, max);

		int randval = pr.range(min, max);
		UASSERT(randval >= min);
		UASSERT(randval <= max);
	}
}


void TestRandom::testPcgRandom()
{
	PcgRandom pr(814538, 998877);

	for (u32 i = 0; i != 256; i++)
		UASSERTEQ(u32, pr.next(), expected_pcgrandom_results[i]);
}


void TestRandom::testPcgRandomRange()
{
	PcgRandom pr((int)time(NULL));

	EXCEPTION_CHECK(PrngException, pr.range(5, 1));

	// Regression test for bug 3027
	pr.range(pr.RANDOM_MIN, pr.RANDOM_MAX);

	for (u32 i = 0; i != 32768; i++) {
		int min = (pr.next() % 3000) - 500;
		int max = (pr.next() % 3000) - 500;
		if (min > max)
			SWAP(int, min, max);

		int randval = pr.range(min, max);
		UASSERT(randval >= min);
		UASSERT(randval <= max);
	}
}


void TestRandom::testPcgRandomBytes()
{
	char buf[32];
	PcgRandom r(1538, 877);

	memset(buf, 0, sizeof(buf));
	r.bytes(buf + 5, 23);
	UASSERT(memcmp(buf + 5, expected_pcgrandom_bytes_result,
		sizeof(expected_pcgrandom_bytes_result)) == 0);

	memset(buf, 0, sizeof(buf));
	r.bytes(buf, 17);
	UASSERT(memcmp(buf, expected_pcgrandom_bytes_result2,
		sizeof(expected_pcgrandom_bytes_result2)) == 0);
}


void TestRandom::testPcgRandomNormalDist()
{
	static const int max = 120;
	static const int min = -120;
	static const int num_trials = 20;
	static const u32 num_samples = 61000;
	s32 bins[max - min + 1];
	memset(bins, 0, sizeof(bins));

	PcgRandom r(486179 + (int)time(NULL));

	for (u32 i = 0; i != num_samples; i++) {
		s32 randval = r.randNormalDist(min, max, num_trials);
		UASSERT(randval <= max);
		UASSERT(randval >= min);
		bins[randval - min]++;
	}

	// Note that here we divide variance by the number of trials;
	// this is because variance is a biased estimator.
	int range      = (max - min + 1);
	float mean     = (max + min) / 2;
	float variance = ((range * range - 1) / 12) / num_trials;
	float stddev   = std::sqrt(variance);

	static const float prediction_intervals[] = {
		0.68269f, // 1.0
		0.86639f, // 1.5
		0.95450f, // 2.0
		0.98758f, // 2.5
		0.99730f, // 3.0
	};

	//// Simple normality test using the 68-95-99.7% rule
	for (u32 i = 0; i != ARRLEN(prediction_intervals); i++) {
		float deviations = i / 2.f + 1.f;
		int lbound = myround(mean - deviations * stddev);
		int ubound = myround(mean + deviations * stddev);
		UASSERT(lbound >= min);
		UASSERT(ubound <= max);

		int accum = 0;
		for (int j = lbound; j != ubound; j++)
			accum += bins[j - min];

		float actual = (float)accum / num_samples;
		UASSERT(std::fabs(actual - prediction_intervals[i]) < 0.02f);
	}
}


const int TestRandom::expected_pseudorandom_results[256] = {
	0x02fa, 0x60d5, 0x6c10, 0x606b, 0x098b, 0x5f1e, 0x4f56, 0x3fbd, 0x77af,
	0x4fe9, 0x419a, 0x6fe1, 0x177b, 0x6858, 0x36f8, 0x6d83, 0x14fc, 0x2d62,
	0x1077, 0x23e2, 0x041b, 0x7a7e, 0x5b52, 0x215d, 0x682b, 0x4716, 0x47e3,
	0x08c0, 0x1952, 0x56ae, 0x146d, 0x4b4f, 0x239f, 0x3fd0, 0x6794, 0x7796,
	0x7be2, 0x75b7, 0x5691, 0x28ee, 0x2656, 0x40c0, 0x133c, 0x63cd, 0x2aeb,
	0x518f, 0x7dbc, 0x6ad8, 0x736e, 0x5b05, 0x160b, 0x589f, 0x6f64, 0x5edc,
	0x092c, 0x0a39, 0x199e, 0x1927, 0x562b, 0x2689, 0x3ba3, 0x366f, 0x46da,
	0x4e49, 0x0abb, 0x40a1, 0x3846, 0x40db, 0x7adb, 0x6ec1, 0x6efa, 0x01cc,
	0x6335, 0x4352, 0x72fb, 0x4b2d, 0x509a, 0x257e, 0x2f7d, 0x5891, 0x2195,
	0x6107, 0x5269, 0x56e3, 0x4849, 0x38f7, 0x2791, 0x04f2, 0x4e05, 0x78ff,
	0x6bae, 0x50b3, 0x74ad, 0x31af, 0x531e, 0x7d56, 0x11c9, 0x0b5e, 0x405e,
	0x1e15, 0x7f6a, 0x5bd3, 0x6649, 0x71b4, 0x3ec2, 0x6ab4, 0x520e, 0x6ad6,
	0x287e, 0x10b8, 0x18f2, 0x7107, 0x46ea, 0x1d85, 0x25cc, 0x2689, 0x35c1,
	0x3065, 0x6237, 0x3edd, 0x23d9, 0x6fb5, 0x37a1, 0x3211, 0x526a, 0x4b09,
	0x23f1, 0x58cc, 0x2e42, 0x341f, 0x5e16, 0x3d1a, 0x5e8c, 0x7a82, 0x4635,
	0x2bf8, 0x6577, 0x3603, 0x1daf, 0x539f, 0x2e91, 0x6bd8, 0x42d3, 0x7a93,
	0x26e3, 0x5a91, 0x6c67, 0x1b66, 0x3ac7, 0x18bf, 0x20d8, 0x7153, 0x558d,
	0x7262, 0x653d, 0x417d, 0x3ed3, 0x3117, 0x600d, 0x6d04, 0x719c, 0x3afd,
	0x6ba5, 0x17c5, 0x4935, 0x346c, 0x5479, 0x6ff6, 0x1fcc, 0x1054, 0x3f14,
	0x6266, 0x3acc, 0x3b77, 0x71d8, 0x478b, 0x20fa, 0x4e46, 0x7e77, 0x5554,
	0x3652, 0x719c, 0x072b, 0x61ad, 0x399f, 0x621d, 0x1bba, 0x41d0, 0x7fdc,
	0x3e6c, 0x6a2a, 0x5253, 0x094e, 0x0c10, 0x3f43, 0x73eb, 0x4c5f, 0x1f23,
	0x12c9, 0x0902, 0x5238, 0x50c0, 0x1b77, 0x3ffd, 0x0124, 0x302a, 0x26b9,
	0x3648, 0x30a6, 0x1abc, 0x3031, 0x4029, 0x6358, 0x6696, 0x74e8, 0x6142,
	0x4284, 0x0c00, 0x7e50, 0x41e3, 0x3782, 0x79a5, 0x60fe, 0x2d15, 0x3ed2,
	0x7f70, 0x2b27, 0x6366, 0x5100, 0x7c44, 0x3ee0, 0x4e76, 0x7d34, 0x3a60,
	0x140e, 0x613d, 0x1193, 0x268d, 0x1e2f, 0x3123, 0x6d61, 0x4e0b, 0x51ce,
	0x13bf, 0x58d4, 0x4f43, 0x05c6, 0x4d6a, 0x7eb5, 0x2921, 0x2c36, 0x1c89,
	0x63b9, 0x1555, 0x1f41, 0x2d9f,
};

const u32 TestRandom::expected_pcgrandom_results[256] = {
	0x48c593f8, 0x054f59f5, 0x0d062dc1, 0x23852a23, 0x7fbbc97b, 0x1f9f141e,
	0x364e6ed8, 0x995bba58, 0xc9307dc0, 0x73fb34c4, 0xcd8de88d, 0x52e8ce08,
	0x1c4a78e4, 0x25c0882e, 0x8a82e2e0, 0xe3bc3311, 0xb8068d42, 0x73186110,
	0x19988df4, 0x69bd970b, 0x7214728c, 0x0aee320c, 0x2a5a536c, 0xaf48d715,
	0x00bce504, 0xd2b8f548, 0x520df366, 0x96d8fff5, 0xa1bb510b, 0x63477049,
	0xb85990b7, 0x7e090689, 0x275fb468, 0x50206257, 0x8bab4f8a, 0x0d6823db,
	0x63faeaac, 0x2d92deeb, 0x2ba78024, 0x0d30f631, 0x338923a0, 0xd07248d8,
	0xa5db62d3, 0xddba8af6, 0x0ad454e9, 0x6f0fd13a, 0xbbfde2bf, 0x91188009,
	0x966b394d, 0xbb9d2012, 0x7e6926cb, 0x95183860, 0x5ff4c59b, 0x035f628a,
	0xb67085ef, 0x33867e23, 0x68d1b887, 0x2e3298d7, 0x84fd0650, 0x8bc91141,
	0x6fcb0452, 0x2836fee9, 0x2e83c0a3, 0xf1bafdc5, 0x9ff77777, 0xfdfbba87,
	0x527aebeb, 0x423e5248, 0xd1756490, 0xe41148fa, 0x3361f7b4, 0xa2824f23,
	0xf4e08072, 0xc50442be, 0x35adcc21, 0x36be153c, 0xc7709012, 0xf0eeb9f2,
	0x3d73114e, 0x1c1574ee, 0x92095b9c, 0x1503d01c, 0xd6ce0677, 0x026a8ec1,
	0x76d0084d, 0x86c23633, 0x36f75ce6, 0x08fa7bbe, 0x35f6ff2a, 0x31cc9525,
	0x2c1a35e6, 0x8effcd62, 0xc782fa07, 0x8a86e248, 0x8fdb7a9b, 0x77246626,
	0x5767723f, 0x3a78b699, 0xe548ce1c, 0x5820f37d, 0x148ed9b8, 0xf6796254,
	0x32232c20, 0x392bf3a2, 0xe9af6625, 0xd40b0d88, 0x636cfa23, 0x6a5de514,
	0xc4a69183, 0xc785c853, 0xab0de901, 0x16ae7e44, 0x376f13b5, 0x070f7f31,
	0x34cbc93b, 0xe6184345, 0x1b7f911f, 0x631fbe4b, 0x86d6e023, 0xc689b518,
	0x88ef4f7c, 0xddf06b45, 0xc97f18d4, 0x2aaee94b, 0x45694723, 0x6db111d2,
	0x91974fce, 0xe33e29e2, 0xc5e99494, 0x8017e02b, 0x3ebd8143, 0x471ffb80,
	0xc0d7ca1b, 0x4954c860, 0x48935d6a, 0xf2d27999, 0xb93d608d, 0x40696e90,
	0x60b18162, 0x1a156998, 0x09b8bbab, 0xc80a79b6, 0x8adbcfbc, 0xc375248c,
	0xa584e2ea, 0x5b46fe11, 0x58e84680, 0x8a8bc456, 0xd668b94f, 0x8b9035be,
	0x278509d4, 0x6663a140, 0x81a9817a, 0xd4f9d3cf, 0x6dc5f607, 0x6ae04450,
	0x694f22a4, 0x1d061788, 0x2e39ad8b, 0x748f4db2, 0xee569b52, 0xd157166d,
	0xdabc161e, 0xc8d50176, 0x7e3110e5, 0x9f7d033b, 0x128df67f, 0xb0078583,
	0xa3a75d26, 0xc1ad8011, 0x07dd89ec, 0xef04f456, 0x91bf866c, 0x6aac5306,
	0xdd5a1573, 0xf73ff97a, 0x4e1186ad, 0xb9680680, 0xc8894515, 0xdc95a08e,
	0xc894fd8e, 0xf84ade15, 0xd787f8c1, 0x40dcecca, 0x1b24743e, 0x1ce6ab23,
	0x72321653, 0xb80fbaf7, 0x1bcf099b, 0x1ff26805, 0x78f66c8e, 0xf93bf51a,
	0xfb0c06fe, 0xe50d48cf, 0x310947e0, 0x1b78804a, 0xe73e2c14, 0x8deb8381,
	0xe576122a, 0xe5a8df39, 0x42397c5e, 0xf5503f3c, 0xbe3dbf8d, 0x1b360e5c,
	0x9254caaf, 0x7a9f6744, 0x6d4144fa, 0xd77c65fe, 0x44ca7b12, 0xf58a4c00,
	0x159500d0, 0x92769857, 0x7134fdd4, 0xa3fea693, 0xbd044831, 0xeded39a1,
	0xe4570204, 0xaea37f2f, 0x9a302971, 0x620f8402, 0x1d2f3e5e, 0xf9c2f49c,
	0x738e813a, 0xb3c92251, 0x7ecba63b, 0xbe7eebc7, 0xf800267c, 0x3fdeb760,
	0xf12d5e7d, 0x5a18dce1, 0xb35a539c, 0xe565f057, 0x2babf38c, 0xae5800ad,
	0x421004dd, 0x6715acb6, 0xff529b64, 0xd520d207, 0x7cb193e7, 0xe9b18e4c,
	0xfd2a8a59, 0x47826ae3, 0x56ba43f8, 0x453b3d99, 0x8ae1675f, 0xf66f5c34,
	0x057a6ac1, 0x010769e4, 0xa8324158, 0x410379a5, 0x5dfc8c97, 0x72848afe,
	0x59f169e5, 0xe32acb78, 0x5dfaa9c4, 0x51bb956a,
};

const u8 TestRandom::expected_pcgrandom_bytes_result[24] = {
	0xf3, 0x79, 0x8f, 0x31, 0xac, 0xd9, 0x34, 0xf8, 0x3c, 0x6e, 0x82, 0x37,
	0x6b, 0x4b, 0x77, 0xe3, 0xbd, 0x0a, 0xee, 0x22, 0x79, 0x6e, 0x40, 0x00,
};

const u8 TestRandom::expected_pcgrandom_bytes_result2[24] = {
	0x47, 0x9e, 0x08, 0x3e, 0xd4, 0x21, 0x2d, 0xf6, 0xb4, 0xb1, 0x9d, 0x7a,
	0x60, 0x02, 0x5a, 0xb2, 0x11, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
};
n> else { u8 d1, d2; if (!hex_digit_decode(value[pos], d1) || !hex_digit_decode(value[pos+1], d2)) return false; components[cc] = (d1 & 0xf) << 4 | (d2 & 0xf); pos++; // skip the second digit -- it's already used } } color.setRed(components[0]); color.setGreen(components[1]); color.setBlue(components[2]); color.setAlpha(components[3]); return true; } const static std::unordered_map<std::string, u32> s_named_colors = { {"aliceblue", 0xf0f8ff}, {"antiquewhite", 0xfaebd7}, {"aqua", 0x00ffff}, {"aquamarine", 0x7fffd4}, {"azure", 0xf0ffff}, {"beige", 0xf5f5dc}, {"bisque", 0xffe4c4}, {"black", 00000000}, {"blanchedalmond", 0xffebcd}, {"blue", 0x0000ff}, {"blueviolet", 0x8a2be2}, {"brown", 0xa52a2a}, {"burlywood", 0xdeb887}, {"cadetblue", 0x5f9ea0}, {"chartreuse", 0x7fff00}, {"chocolate", 0xd2691e}, {"coral", 0xff7f50}, {"cornflowerblue", 0x6495ed}, {"cornsilk", 0xfff8dc}, {"crimson", 0xdc143c}, {"cyan", 0x00ffff}, {"darkblue", 0x00008b}, {"darkcyan", 0x008b8b}, {"darkgoldenrod", 0xb8860b}, {"darkgray", 0xa9a9a9}, {"darkgreen", 0x006400}, {"darkgrey", 0xa9a9a9}, {"darkkhaki", 0xbdb76b}, {"darkmagenta", 0x8b008b}, {"darkolivegreen", 0x556b2f}, {"darkorange", 0xff8c00}, {"darkorchid", 0x9932cc}, {"darkred", 0x8b0000}, {"darksalmon", 0xe9967a}, {"darkseagreen", 0x8fbc8f}, {"darkslateblue", 0x483d8b}, {"darkslategray", 0x2f4f4f}, {"darkslategrey", 0x2f4f4f}, {"darkturquoise", 0x00ced1}, {"darkviolet", 0x9400d3}, {"deeppink", 0xff1493}, {"deepskyblue", 0x00bfff}, {"dimgray", 0x696969}, {"dimgrey", 0x696969}, {"dodgerblue", 0x1e90ff}, {"firebrick", 0xb22222}, {"floralwhite", 0xfffaf0}, {"forestgreen", 0x228b22}, {"fuchsia", 0xff00ff}, {"gainsboro", 0xdcdcdc}, {"ghostwhite", 0xf8f8ff}, {"gold", 0xffd700}, {"goldenrod", 0xdaa520}, {"gray", 0x808080}, {"green", 0x008000}, {"greenyellow", 0xadff2f}, {"grey", 0x808080}, {"honeydew", 0xf0fff0}, {"hotpink", 0xff69b4}, {"indianred", 0xcd5c5c}, {"indigo", 0x4b0082}, {"ivory", 0xfffff0}, {"khaki", 0xf0e68c}, {"lavender", 0xe6e6fa}, {"lavenderblush", 0xfff0f5}, {"lawngreen", 0x7cfc00}, {"lemonchiffon", 0xfffacd}, {"lightblue", 0xadd8e6}, {"lightcoral", 0xf08080}, {"lightcyan", 0xe0ffff}, {"lightgoldenrodyellow", 0xfafad2}, {"lightgray", 0xd3d3d3}, {"lightgreen", 0x90ee90}, {"lightgrey", 0xd3d3d3}, {"lightpink", 0xffb6c1}, {"lightsalmon", 0xffa07a}, {"lightseagreen", 0x20b2aa}, {"lightskyblue", 0x87cefa}, {"lightslategray", 0x778899}, {"lightslategrey", 0x778899}, {"lightsteelblue", 0xb0c4de}, {"lightyellow", 0xffffe0}, {"lime", 0x00ff00}, {"limegreen", 0x32cd32}, {"linen", 0xfaf0e6}, {"magenta", 0xff00ff}, {"maroon", 0x800000}, {"mediumaquamarine", 0x66cdaa}, {"mediumblue", 0x0000cd}, {"mediumorchid", 0xba55d3}, {"mediumpurple", 0x9370db}, {"mediumseagreen", 0x3cb371}, {"mediumslateblue", 0x7b68ee}, {"mediumspringgreen", 0x00fa9a}, {"mediumturquoise", 0x48d1cc}, {"mediumvioletred", 0xc71585}, {"midnightblue", 0x191970}, {"mintcream", 0xf5fffa}, {"mistyrose", 0xffe4e1}, {"moccasin", 0xffe4b5}, {"navajowhite", 0xffdead}, {"navy", 0x000080}, {"oldlace", 0xfdf5e6}, {"olive", 0x808000}, {"olivedrab", 0x6b8e23}, {"orange", 0xffa500}, {"orangered", 0xff4500}, {"orchid", 0xda70d6}, {"palegoldenrod", 0xeee8aa}, {"palegreen", 0x98fb98}, {"paleturquoise", 0xafeeee}, {"palevioletred", 0xdb7093}, {"papayawhip", 0xffefd5}, {"peachpuff", 0xffdab9}, {"peru", 0xcd853f}, {"pink", 0xffc0cb}, {"plum", 0xdda0dd}, {"powderblue", 0xb0e0e6}, {"purple", 0x800080}, {"red", 0xff0000}, {"rosybrown", 0xbc8f8f}, {"royalblue", 0x4169e1}, {"saddlebrown", 0x8b4513}, {"salmon", 0xfa8072}, {"sandybrown", 0xf4a460}, {"seagreen", 0x2e8b57}, {"seashell", 0xfff5ee}, {"sienna", 0xa0522d}, {"silver", 0xc0c0c0}, {"skyblue", 0x87ceeb}, {"slateblue", 0x6a5acd}, {"slategray", 0x708090}, {"slategrey", 0x708090}, {"snow", 0xfffafa}, {"springgreen", 0x00ff7f}, {"steelblue", 0x4682b4}, {"tan", 0xd2b48c}, {"teal", 0x008080}, {"thistle", 0xd8bfd8}, {"tomato", 0xff6347}, {"turquoise", 0x40e0d0}, {"violet", 0xee82ee}, {"wheat", 0xf5deb3}, {"white", 0xffffff}, {"whitesmoke", 0xf5f5f5}, {"yellow", 0xffff00}, {"yellowgreen", 0x9acd32} }; static bool parseNamedColorString(const std::string &value, video::SColor &color) { std::string color_name; std::string alpha_string; /* If the string has a # in it, assume this is the start of a specified * alpha value (if it isn't the string is invalid and the error will be * caught later on, either because the color name won't be found or the * alpha value will fail conversion) */ size_t alpha_pos = value.find('#'); if (alpha_pos != std::string::npos) { color_name = value.substr(0, alpha_pos); alpha_string = value.substr(alpha_pos + 1); } else { color_name = value; } color_name = lowercase(color_name); auto it = s_named_colors.find(color_name); if (it == s_named_colors.end()) return false; u32 color_temp = it->second; /* An empty string for alpha is ok (none of the color table entries * have an alpha value either). Color strings without an alpha specified * are interpreted as fully opaque */ if (!alpha_string.empty()) { if (alpha_string.size() == 1) { u8 d; if (!hex_digit_decode(alpha_string[0], d)) return false; color_temp |= ((d & 0xf) << 4 | (d & 0xf)) << 24; } else if (alpha_string.size() == 2) { u8 d1, d2; if (!hex_digit_decode(alpha_string[0], d1) || !hex_digit_decode(alpha_string[1], d2)) return false; color_temp |= ((d1 & 0xf) << 4 | (d2 & 0xf)) << 24; } else { return false; } } else { color_temp |= 0xff << 24; // Fully opaque } color = video::SColor(color_temp); return true; } bool parseColorString(const std::string &value, video::SColor &color, bool quiet, unsigned char default_alpha) { bool success; if (value[0] == '#') success = parseHexColorString(value, color, default_alpha); else success = parseNamedColorString(value, color); if (!success && !quiet) errorstream << "Invalid color: \"" << value << "\"" << std::endl; return success; } void str_replace(std::string &str, char from, char to) { std::replace(str.begin(), str.end(), from, to); } /* Translated strings have the following format: * \x1bT marks the beginning of a translated string * \x1bE marks its end * * \x1bF marks the beginning of an argument, and \x1bE its end. * * Arguments are *not* translated, as they may contain escape codes. * Thus, if you want a translated argument, it should be inside \x1bT/\x1bE tags as well. * * This representation is chosen so that clients ignoring escape codes will * see untranslated strings. * * For instance, suppose we have a string such as "@1 Wool" with the argument "White" * The string will be sent as "\x1bT\x1bF\x1bTWhite\x1bE\x1bE Wool\x1bE" * To translate this string, we extract what is inside \x1bT/\x1bE tags. * When we notice the \x1bF tag, we recursively extract what is there up to the \x1bE end tag, * translating it as well. * We get the argument "White", translated, and create a template string with "@1" instead of it. * We finally get the template "@1 Wool" that was used in the beginning, which we translate * before filling it again. */ void translate_all(const std::wstring &s, size_t &i, Translations *translations, std::wstring &res); void translate_string(const std::wstring &s, Translations *translations, const std::wstring &textdomain, size_t &i, std::wstring &res) { std::wostringstream output; std::vector<std::wstring> args; int arg_number = 1; while (i < s.length()) { // Not an escape sequence: just add the character. if (s[i] != '\x1b') { output.put(s[i]); // The character is a literal '@'; add it twice // so that it is not mistaken for an argument. if (s[i] == L'@') output.put(L'@'); ++i; continue; } // We have an escape sequence: locate it and its data // It is either a single character, or it begins with '(' // and extends up to the following ')', with '\' as an escape character. ++i; size_t start_index = i; size_t length; if (i == s.length()) { length = 0; } else if (s[i] == L'(') { ++i; ++start_index; while (i < s.length() && s[i] != L')') { if (s[i] == L'\\') ++i; ++i; } length = i - start_index; ++i; if (i > s.length()) i = s.length(); } else { ++i; length = 1; } std::wstring escape_sequence(s, start_index, length); // The escape sequence is now reconstructed. std::vector<std::wstring> parts = split(escape_sequence, L'@'); if (parts[0] == L"E") { // "End of translation" escape sequence. We are done locating the string to translate. break; } else if (parts[0] == L"F") { // "Start of argument" escape sequence. // Recursively translate the argument, and add it to the argument list. // Add an "@n" instead of the argument to the template to translate. if (arg_number >= 10) { errorstream << "Ignoring too many arguments to translation" << std::endl; std::wstring arg; translate_all(s, i, translations, arg); args.push_back(arg); continue; } output.put(L'@'); output << arg_number; ++arg_number; std::wstring arg; translate_all(s, i, translations, arg); args.push_back(arg); } else { // This is an escape sequence *inside* the template string to translate itself. // This should not happen, show an error message. errorstream << "Ignoring escape sequence '" << wide_to_utf8(escape_sequence) << "' in translation" << std::endl; } } std::wstring toutput; // Translate the template. if (translations != nullptr) toutput = translations->getTranslation( textdomain, output.str()); else toutput = output.str(); // Put back the arguments in the translated template. std::wostringstream result; size_t j = 0; while (j < toutput.length()) { // Normal character, add it to output and continue. if (toutput[j] != L'@' || j == toutput.length() - 1) { result.put(toutput[j]); ++j; continue; } ++j; // Literal escape for '@'. if (toutput[j] == L'@') { result.put(L'@'); ++j; continue; } // Here we have an argument; get its index and add the translated argument to the output. int arg_index = toutput[j] - L'1'; ++j; if (0 <= arg_index && (size_t)arg_index < args.size()) { result << args[arg_index]; } else { // This is not allowed: show an error message errorstream << "Ignoring out-of-bounds argument escape sequence in translation" << std::endl; } } res = result.str(); } void translate_all(const std::wstring &s, size_t &i, Translations *translations, std::wstring &res) { std::wostringstream output; while (i < s.length()) { // Not an escape sequence: just add the character. if (s[i] != '\x1b') { output.put(s[i]); ++i; continue; } // We have an escape sequence: locate it and its data // It is either a single character, or it begins with '(' // and extends up to the following ')', with '\' as an escape character. size_t escape_start = i; ++i; size_t start_index = i; size_t length; if (i == s.length()) { length = 0; } else if (s[i] == L'(') { ++i; ++start_index; while (i < s.length() && s[i] != L')') { if (s[i] == L'\\') { ++i; } ++i; } length = i - start_index; ++i; if (i > s.length()) i = s.length(); } else { ++i; length = 1; } std::wstring escape_sequence(s, start_index, length); // The escape sequence is now reconstructed. std::vector<std::wstring> parts = split(escape_sequence, L'@'); if (parts[0] == L"E") { // "End of argument" escape sequence. Exit. break; } else if (parts[0] == L"T") { // Beginning of translated string. std::wstring textdomain; if (parts.size() > 1) textdomain = parts[1]; std::wstring translated; translate_string(s, translations, textdomain, i, translated); output << translated; } else { // Another escape sequence, such as colors. Preserve it. output << std::wstring(s, escape_start, i - escape_start); } } res = output.str(); } // Translate string server side std::wstring translate_string(const std::wstring &s, Translations *translations) { size_t i = 0; std::wstring res; translate_all(s, i, translations, res); return res; } // Translate string client side std::wstring translate_string(const std::wstring &s) { #ifdef SERVER return translate_string(s, nullptr); #else return translate_string(s, g_client_translations); #endif } static const std::array<std::wstring, 22> disallowed_dir_names = { // Problematic filenames from here: // https://docs.microsoft.com/en-us/windows/win32/fileio/naming-a-file#file-and-directory-names L"CON", L"PRN", L"AUX", L"NUL", L"COM1", L"COM2", L"COM3", L"COM4", L"COM5", L"COM6", L"COM7", L"COM8", L"COM9", L"LPT1", L"LPT2", L"LPT3", L"LPT4", L"LPT5", L"LPT6", L"LPT7", L"LPT8", L"LPT9", }; /** * List of characters that are blacklisted from created directories */ static const std::wstring disallowed_path_chars = L"<>:\"/\\|?*."; /** * Sanitize the name of a new directory. This consists of two stages: * 1. Check for 'reserved filenames' that can't be used on some filesystems * and add a prefix to them * 2. Remove 'unsafe' characters from the name by replacing them with '_' */ std::string sanitizeDirName(const std::string &str, const std::string &optional_prefix) { std::wstring safe_name = utf8_to_wide(str); for (std::wstring disallowed_name : disallowed_dir_names) { if (str_equal(safe_name, disallowed_name, true)) { safe_name = utf8_to_wide(optional_prefix) + safe_name; break; } } for (unsigned long i = 0; i < safe_name.length(); i++) { bool is_valid = true; // Unlikely, but control characters should always be blacklisted if (safe_name[i] < 32) { is_valid = false; } else if (safe_name[i] < 128) { is_valid = disallowed_path_chars.find_first_of(safe_name[i]) == std::wstring::npos; } if (!is_valid) safe_name[i] = '_'; } return wide_to_utf8(safe_name); }