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path: root/advtrains/signals.lua
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--advtrains by orwell96
--signals.lua

--this code /should/ work but does not.
local mrules_wallsignal = advtrains.meseconrules

for r,f in pairs({on={as="off", ls="green", als="red"}, off={as="on", ls="red", als="green"}}) do

	advtrains.trackplacer.register_tracktype("advtrains:retrosignal", "")
	advtrains.trackplacer.register_tracktype("advtrains:signal", "")

	for rotid, rotation in ipairs({"", "_30", "_45", "_60"}) do
		local crea=1
		if rotid==1 and r=="off" then crea=0 end
		
		minetest.register_node("advtrains:retrosignal_"..r..rotation, {
			drawtype = "mesh",
			paramtype="light",
			paramtype2="facedir",
			walkable = false,
			selection_box = {
				type = "fixed",
				fixed = {-1/4, -1/2, -1/4, 1/4, 2, 1/4},
			},
			mesh = "advtrains_retrosignal_"..r..rotation..".b3d",
			tiles = {"advtrains_retrosignal.png"},
			inventory_image="advtrains_retrosignal_inv.png",
			drop="advtrains:retrosignal_off",
			description=attrans("Lampless Signal (@1)", attrans(r..rotation)),
			sunlight_propagates=true,
			groups = {
				cracky=3,
				not_blocking_trains=1,
				not_in_creative_inventory=crea,
				save_in_at_nodedb=1,
			},
			mesecons = {effector = {
				rules=advtrains.meseconrules,
				["action_"..f.as] = function (pos, node)
					advtrains.ndb.swap_node(pos, {name = "advtrains:retrosignal_"..f.as..rotation, param2 = node.param2}, true)
				end
			}},
			on_rightclick=function(pos, node, player)
				if advtrains.check_turnout_signal_protection(pos, player:get_player_name()) then
					advtrains.ndb.swap_node(pos, {name = "advtrains:retrosignal_"..f.as..rotation, param2 = node.param2}, true)
				end
			end,
		})
		advtrains.trackplacer.add_worked("advtrains:retrosignal", r, rotation, nil)
		minetest.register_node("advtrains:signal_"..r..rotation, {
			drawtype = "mesh",
			paramtype="light",
			paramtype2="facedir",
			walkable = false,
			selection_box = {
				type = "fixed",
				fixed = {-1/4, -1/2, -1/4, 1/4, 2, 1/4},
			},
			mesh = "advtrains_signal"..rotation..".b3d",
			tiles = {"advtrains_signal_"..r..".png"},
			inventory_image="advtrains_signal_inv.png",
			drop="advtrains:signal_off",
			description=attrans("Signal (@1)", attrans(r..rotation)),
			groups = {
				cracky=3,
				not_blocking_trains=1,
				not_in_creative_inventory=crea,
				save_in_at_nodedb=1,
			},
			light_source = 1,
			sunlight_propagates=true,
			mesecons = {effector = {
				rules=advtrains.meseconrules,
				["action_"..f.as] = function (pos, node)
					advtrains.ndb.swap_node(pos, {name = "advtrains:signal_"..f.as..rotation, param2 = node.param2}, true)
				end
			}},
			luaautomation = {
				getstate = f.ls,
				setstate = function(pos, node, newstate)
					if newstate == f.als then
						advtrains.ndb.swap_node(pos, {name = "advtrains:signal_"..f.as..rotation, param2 = node.param2}, true)
					end
				end,
			},
			on_rightclick=function(pos, node, player)
				if advtrains.check_turnout_signal_protection(pos, player:get_player_name()) then
					advtrains.ndb.swap_node(pos, {name = "advtrains:signal_"..f.as..rotation, param2 = node.param2}, true)
				end
			end,
		})
		advtrains.trackplacer.add_worked("advtrains:signal", r, rotation, nil)
	end
	
	local crea=1
	if r=="off" then crea=0 end
	
	--tunnel signals. no rotations.
	for loc, sbox in pairs({l={-1/2, -1/2, -1/4, 0, 1/2, 1/4}, r={0, -1/2, -1/4, 1/2, 1/2, 1/4}, t={-1/2, 0, -1/4, 1/2, 1/2, 1/4}}) do
		minetest.register_node("advtrains:signal_wall_"..loc.."_"..r, {
			drawtype = "mesh",
			paramtype="light",
			paramtype2="facedir",
			walkable = false,
			selection_box = {
				type = "fixed",
				fixed = sbox,
			},
			mesh = "advtrains_signal_wall_"..loc..".b3d",
			tiles = {"advtrains_signal_wall_"..r..".png"},
			drop="advtrains:signal_wall_"..loc.."_off",
			description=attrans("Wallmounted Signal ("..loc..")"),
			groups = {
				cracky=3,
				not_blocking_trains=1,
				not_in_creative_inventory=crea,
				save_in_at_nodedb=1,
			},
			light_source = 1,
			sunlight_propagates=true,
			mesecons = {effector = {
				rules = mrules_wallsignal,
				["action_"..f.as] = function (pos, node)
					advtrains.ndb.swap_node(pos, {name = "advtrains:signal_wall_"..loc.."_"..f.as, param2 = node.param2}, true)
				end
			}},
			luaautomation = {
				getstate = f.ls,
				setstate = function(pos, node, newstate)
					if newstate == f.als then
						advtrains.ndb.swap_node(pos, {name = "advtrains:signal_wall_"..loc.."_"..f.as, param2 = node.param2}, true)
					end
				end,
			},
			on_rightclick=function(pos, node, player)
				if advtrains.check_turnout_signal_protection(pos, player:get_player_name()) then
					advtrains.ndb.swap_node(pos, {name = "advtrains:signal_wall_"..loc.."_"..f.as, param2 = node.param2}, true)
				end
			end,
		})
	end
end

-- level crossing
-- german version (Andrew's Cross)
minetest.register_node("advtrains:across_off", {
	drawtype = "mesh",
	paramtype="light",
	paramtype2="facedir",
	walkable = false,
	selection_box = {
		type = "fixed",
		fixed = {-1/4, -1/2, -1/2, 1/4, 1.5, 0},
	},
	mesh = "advtrains_across.obj",
	tiles = {"advtrains_across.png"},
	drop="advtrains:across_off",
	description=attrans("Andrew's Cross"),
	groups = {
		cracky=3,
		not_blocking_trains=1,
		save_in_at_nodedb=1,
		not_in_creative_inventory=nil,
	},
	light_source = 1,
	sunlight_propagates=true,
	mesecons = {effector = {
		rules = advtrains.meseconrules,
		action_on = function (pos, node)
			advtrains.ndb.swap_node(pos, {name = "advtrains:across_on", param2 = node.param2}, true)
		end
	}},
	luaautomation = {
		getstate = "off",
		setstate = function(pos, node, newstate)
			if newstate == "on" then
				advtrains.ndb.swap_node(pos, {name = "advtrains:across_on", param2 = node.param2}, true)
			end
		end,
	},
	on_rightclick=function(pos, node, player)
		if advtrains.check_turnout_signal_protection(pos, player:get_player_name()) then
			advtrains.ndb.swap_node(pos, {name = "advtrains:across_on", param2 = node.param2}, true)
		end
	end,
})
minetest.register_node("advtrains:across_on", {
	drawtype = "mesh",
	paramtype="light",
	paramtype2="facedir",
	walkable = false,
	selection_box = {
		type = "fixed",
		fixed = {-1/4, -1/2, -1/2, 1/4, 1.5, 0},
	},
	mesh = "advtrains_across.obj",
	tiles = {{name="advtrains_across_anim.png", animation={type="vertical_frames", aspect_w=64, aspect_h=64, length=1.0}}},
	drop="advtrains:across_off",
	description=attrans("Andrew's Cross (on) (you hacker you)"),
	groups = {
		cracky=3,
		not_blocking_trains=1,
		save_in_at_nodedb=1,
		not_in_creative_inventory=1,
	},
	light_source = 1,
	sunlight_propagates=true,
	mesecons = {effector = {
		rules = advtrains.meseconrules,
		action_off = function (pos, node)
			advtrains.ndb.swap_node(pos, {name = "advtrains:across_off", param2 = node.param2}, true)
		end
	}},
	luaautomation = {
		getstate = "on",
		setstate = function(pos, node, newstate)
			if newstate == "off" then
				advtrains.ndb.swap_node(pos, {name = "advtrains:across_off", param2 = node.param2}, true)
			end
		end,
	},
	on_rightclick=function(pos, node, player)
		if advtrains.check_turnout_signal_protection(pos, player:get_player_name()) then
			advtrains.ndb.swap_node(pos, {name = "advtrains:across_off", param2 = node.param2}, true)
		end
	end,
})

minetest.register_abm(
	{
        label = "Sound for Level Crossing",
        nodenames = {"advtrains:across_on"},
        interval = 3,
        chance = 1,
        action = function(pos, node, active_object_count, active_object_count_wider)
			minetest.sound_play("advtrains_crossing_bell", {
				pos = pos,
				gain = 1.0, -- default
				max_hear_distance = 16, -- default, uses an euclidean metric
			})
        end,
    }
)
c">// Test basic string UASSERT(serializeJsonString("Hello world!") == "\"Hello world!\""); // MSVC fails when directly using "\\\\" std::string backslash = "\\"; UASSERT(serializeJsonString(teststring2) == mkstr("\"") + "\\u0000\\u0001\\u0002\\u0003\\u0004\\u0005\\u0006\\u0007" + "\\b\\t\\n\\u000b\\f\\r\\u000e\\u000f" + "\\u0010\\u0011\\u0012\\u0013\\u0014\\u0015\\u0016\\u0017" + "\\u0018\\u0019\\u001a\\u001b\\u001c\\u001d\\u001e\\u001f" + " !\\\"" + teststring2.substr(0x23, 0x2f-0x23) + "\\/" + teststring2.substr(0x30, 0x5c-0x30) + backslash + backslash + teststring2.substr(0x5d, 0x7f-0x5d) + "\\u007f" + "\\u0080\\u0081\\u0082\\u0083\\u0084\\u0085\\u0086\\u0087" + "\\u0088\\u0089\\u008a\\u008b\\u008c\\u008d\\u008e\\u008f" + "\\u0090\\u0091\\u0092\\u0093\\u0094\\u0095\\u0096\\u0097" + "\\u0098\\u0099\\u009a\\u009b\\u009c\\u009d\\u009e\\u009f" + "\\u00a0\\u00a1\\u00a2\\u00a3\\u00a4\\u00a5\\u00a6\\u00a7" + "\\u00a8\\u00a9\\u00aa\\u00ab\\u00ac\\u00ad\\u00ae\\u00af" + "\\u00b0\\u00b1\\u00b2\\u00b3\\u00b4\\u00b5\\u00b6\\u00b7" + "\\u00b8\\u00b9\\u00ba\\u00bb\\u00bc\\u00bd\\u00be\\u00bf" + "\\u00c0\\u00c1\\u00c2\\u00c3\\u00c4\\u00c5\\u00c6\\u00c7" + "\\u00c8\\u00c9\\u00ca\\u00cb\\u00cc\\u00cd\\u00ce\\u00cf" + "\\u00d0\\u00d1\\u00d2\\u00d3\\u00d4\\u00d5\\u00d6\\u00d7" + "\\u00d8\\u00d9\\u00da\\u00db\\u00dc\\u00dd\\u00de\\u00df" + "\\u00e0\\u00e1\\u00e2\\u00e3\\u00e4\\u00e5\\u00e6\\u00e7" + "\\u00e8\\u00e9\\u00ea\\u00eb\\u00ec\\u00ed\\u00ee\\u00ef" + "\\u00f0\\u00f1\\u00f2\\u00f3\\u00f4\\u00f5\\u00f6\\u00f7" + "\\u00f8\\u00f9\\u00fa\\u00fb\\u00fc\\u00fd\\u00fe\\u00ff" + "\""); // Test deserialize std::istringstream is(serializeJsonString(teststring2), std::ios::binary); UASSERT(deSerializeJsonString(is) == teststring2); UASSERT(!is.eof()); is.get(); UASSERT(is.eof()); } void TestSerialization::testSerializeHex() { // Test blank string UASSERT(serializeHexString("") == ""); UASSERT(serializeHexString("", true) == ""); // Test basic string UASSERT(serializeHexString("Hello world!") == "48656c6c6f20776f726c6421"); UASSERT(serializeHexString("Hello world!", true) == "48 65 6c 6c 6f 20 77 6f 72 6c 64 21"); // Test binary string UASSERT(serializeHexString(mkstr("\x00\x0a\xb0\x63\x1f\x00\xff")) == "000ab0631f00ff"); UASSERT(serializeHexString(mkstr("\x00\x0a\xb0\x63\x1f\x00\xff"), true) == "00 0a b0 63 1f 00 ff"); } void TestSerialization::testStreamRead() { std::string datastr( (const char *)test_serialized_data, sizeof(test_serialized_data)); std::istringstream is(datastr, std::ios_base::binary); UASSERT(readU8(is) == 0x11); UASSERT(readU16(is) == 0x2233); UASSERT(readU32(is) == 0x44556677); UASSERT(readU64(is) == 0x8899AABBCCDDEEFF); UASSERT(readS8(is) == -128); UASSERT(readS16(is) == 30000); UASSERT(readS32(is) == -6); UASSERT(readS64(is) == -43); UASSERT(readF1000(is) == 53.534f); UASSERT(readF1000(is) == -300000.32f); UASSERT(readF1000(is) == F1000_MIN); UASSERT(readF1000(is) == F1000_MAX); UASSERT(deSerializeString(is) == "foobar!"); UASSERT(readV2S16(is) == v2s16(500, 500)); UASSERT(readV3S16(is) == v3s16(4207, 604, -30)); UASSERT(readV2S32(is) == v2s32(1920, 1080)); UASSERT(readV3S32(is) == v3s32(-400, 6400054, 290549855)); UASSERT(readV2F1000(is) == v2f(500.656f, 350.345f)); UASSERT(deSerializeWideString(is) == L"\x02~woof~\x5455"); UASSERT(readV3F1000(is) == v3f(500, 10024.2f, -192.54f)); UASSERT(readARGB8(is) == video::SColor(255, 128, 50, 128)); UASSERT(deSerializeLongString(is) == "some longer string here"); UASSERT(is.rdbuf()->in_avail() == 2); UASSERT(readU16(is) == 0xF00D); UASSERT(is.rdbuf()->in_avail() == 0); } void TestSerialization::testStreamWrite() { std::ostringstream os(std::ios_base::binary); std::string data; writeU8(os, 0x11); writeU16(os, 0x2233); writeU32(os, 0x44556677); writeU64(os, 0x8899AABBCCDDEEFF); writeS8(os, -128); writeS16(os, 30000); writeS32(os, -6); writeS64(os, -43); writeF1000(os, 53.53467f); writeF1000(os, -300000.32f); writeF1000(os, F1000_MIN); writeF1000(os, F1000_MAX); os << serializeString("foobar!"); data = os.str(); UASSERT(data.size() < sizeof(test_serialized_data)); UASSERT(!memcmp(&data[0], test_serialized_data, data.size())); writeV2S16(os, v2s16(500, 500)); writeV3S16(os, v3s16(4207, 604, -30)); writeV2S32(os, v2s32(1920, 1080)); writeV3S32(os, v3s32(-400, 6400054, 290549855)); writeV2F1000(os, v2f(500.65661f, 350.34567f)); os << serializeWideString(L"\x02~woof~\x5455"); writeV3F1000(os, v3f(500, 10024.2f, -192.54f)); writeARGB8(os, video::SColor(255, 128, 50, 128)); os << serializeLongString("some longer string here"); writeU16(os, 0xF00D); data = os.str(); UASSERT(data.size() == sizeof(test_serialized_data)); UASSERT(!memcmp(&data[0], test_serialized_data, sizeof(test_serialized_data))); } void TestSerialization::testVecPut() { std::vector<u8> buf; putU8(&buf, 0x11); putU16(&buf, 0x2233); putU32(&buf, 0x44556677); putU64(&buf, 0x8899AABBCCDDEEFF); putS8(&buf, -128); putS16(&buf, 30000); putS32(&buf, -6); putS64(&buf, -43); putF1000(&buf, 53.53467f); putF1000(&buf, -300000.32f); putF1000(&buf, F1000_MIN); putF1000(&buf, F1000_MAX); putString(&buf, "foobar!"); putV2S16(&buf, v2s16(500, 500)); putV3S16(&buf, v3s16(4207, 604, -30)); putV2S32(&buf, v2s32(1920, 1080)); putV3S32(&buf, v3s32(-400, 6400054, 290549855)); putV2F1000(&buf, v2f(500.65661f, 350.34567f)); putWideString(&buf, L"\x02~woof~\x5455"); putV3F1000(&buf, v3f(500, 10024.2f, -192.54f)); putARGB8(&buf, video::SColor(255, 128, 50, 128)); putLongString(&buf, "some longer string here"); putU16(&buf, 0xF00D); UASSERT(buf.size() == sizeof(test_serialized_data)); UASSERT(!memcmp(&buf[0], test_serialized_data, sizeof(test_serialized_data))); } void TestSerialization::testStringLengthLimits() { std::vector<u8> buf; std::string too_long(STRING_MAX_LEN + 1, 'A'); std::string way_too_large(LONG_STRING_MAX_LEN + 1, 'B'); std::wstring too_long_wide(WIDE_STRING_MAX_LEN + 1, L'C'); EXCEPTION_CHECK(SerializationError, putString(&buf, too_long)); putLongString(&buf, too_long); too_long.resize(too_long.size() - 1); putString(&buf, too_long); EXCEPTION_CHECK(SerializationError, putWideString(&buf, too_long_wide)); too_long_wide.resize(too_long_wide.size() - 1); putWideString(&buf, too_long_wide); } void TestSerialization::testBufReader() { u8 u8_data; u16 u16_data; u32 u32_data; u64 u64_data; s8 s8_data; s16 s16_data; s32 s32_data; s64 s64_data; f32 f32_data, f32_data2, f32_data3, f32_data4; video::SColor scolor_data; v2s16 v2s16_data; v3s16 v3s16_data; v2s32 v2s32_data; v3s32 v3s32_data; v2f v2f_data; v3f v3f_data; std::string string_data; std::wstring widestring_data; std::string longstring_data; u8 raw_data[10] = {0}; BufReader buf(test_serialized_data, sizeof(test_serialized_data)); // Try reading data like normal UASSERT(buf.getU8() == 0x11); UASSERT(buf.getU16() == 0x2233); UASSERT(buf.getU32() == 0x44556677); UASSERT(buf.getU64() == 0x8899AABBCCDDEEFF); UASSERT(buf.getS8() == -128); UASSERT(buf.getS16() == 30000); UASSERT(buf.getS32() == -6); UASSERT(buf.getS64() == -43); UASSERT(buf.getF1000() == 53.534f); UASSERT(buf.getF1000() == -300000.32f); UASSERT(buf.getF1000() == F1000_MIN); UASSERT(buf.getF1000() == F1000_MAX); UASSERT(buf.getString() == "foobar!"); UASSERT(buf.getV2S16() == v2s16(500, 500)); UASSERT(buf.getV3S16() == v3s16(4207, 604, -30)); UASSERT(buf.getV2S32() == v2s32(1920, 1080)); UASSERT(buf.getV3S32() == v3s32(-400, 6400054, 290549855)); UASSERT(buf.getV2F1000() == v2f(500.656f, 350.345f)); UASSERT(buf.getWideString() == L"\x02~woof~\x5455"); UASSERT(buf.getV3F1000() == v3f(500, 10024.2f, -192.54f)); UASSERT(buf.getARGB8() == video::SColor(255, 128, 50, 128)); UASSERT(buf.getLongString() == "some longer string here"); // Verify the offset and data is unchanged after a failed read size_t orig_pos = buf.pos; u32_data = 0; UASSERT(buf.getU32NoEx(&u32_data) == false); UASSERT(buf.pos == orig_pos); UASSERT(u32_data == 0); // Now try the same for a failed string read UASSERT(buf.getStringNoEx(&string_data) == false); UASSERT(buf.pos == orig_pos); UASSERT(string_data == ""); // Now try the same for a failed string read UASSERT(buf.getWideStringNoEx(&widestring_data) == false); UASSERT(buf.pos == orig_pos); UASSERT(widestring_data == L""); UASSERT(buf.getU16() == 0xF00D); UASSERT(buf.remaining() == 0); // Check to make sure these each blow exceptions as they're supposed to EXCEPTION_CHECK(SerializationError, buf.getU8()); EXCEPTION_CHECK(SerializationError, buf.getU16()); EXCEPTION_CHECK(SerializationError, buf.getU32()); EXCEPTION_CHECK(SerializationError, buf.getU64()); EXCEPTION_CHECK(SerializationError, buf.getS8()); EXCEPTION_CHECK(SerializationError, buf.getS16()); EXCEPTION_CHECK(SerializationError, buf.getS32()); EXCEPTION_CHECK(SerializationError, buf.getS64()); EXCEPTION_CHECK(SerializationError, buf.getF1000()); EXCEPTION_CHECK(SerializationError, buf.getARGB8()); EXCEPTION_CHECK(SerializationError, buf.getV2S16()); EXCEPTION_CHECK(SerializationError, buf.getV3S16()); EXCEPTION_CHECK(SerializationError, buf.getV2S32()); EXCEPTION_CHECK(SerializationError, buf.getV3S32()); EXCEPTION_CHECK(SerializationError, buf.getV2F1000()); EXCEPTION_CHECK(SerializationError, buf.getV3F1000()); EXCEPTION_CHECK(SerializationError, buf.getString()); EXCEPTION_CHECK(SerializationError, buf.getWideString()); EXCEPTION_CHECK(SerializationError, buf.getLongString()); EXCEPTION_CHECK(SerializationError, buf.getRawData(raw_data, sizeof(raw_data))); // See if we can skip backwards buf.pos = 5; UASSERT(buf.getRawDataNoEx(raw_data, 3) == true); UASSERT(raw_data[0] == 0x66); UASSERT(raw_data[1] == 0x77); UASSERT(raw_data[2] == 0x88); UASSERT(buf.getU32() == 0x99AABBCC); UASSERT(buf.pos == 12); // Now let's try it all over again using the NoEx variants buf.pos = 0; UASSERT(buf.getU8NoEx(&u8_data)); UASSERT(buf.getU16NoEx(&u16_data)); UASSERT(buf.getU32NoEx(&u32_data)); UASSERT(buf.getU64NoEx(&u64_data)); UASSERT(buf.getS8NoEx(&s8_data)); UASSERT(buf.getS16NoEx(&s16_data));