/* * cocos2d for iPhone: http://www.cocos2d-iphone.org * * Copyright (c) 2008-2010 Ricardo Quesada * Copyright (c) 2011 Zynga Inc. * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal * in the Software without restriction, including without limitation the rights * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell * copies of the Software, and to permit persons to whom the Software is * furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice shall be included in * all copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN * THE SOFTWARE. * */ #import #import "CCParticleSystemPoint.h" #import "CCParticleSystemQuad.h" // build each architecture with the optimal particle system // ARMv7, Mac or Simulator use "Quad" particle #if defined(__ARM_NEON__) || defined(__MAC_OS_X_VERSION_MAX_ALLOWED) || TARGET_IPHONE_SIMULATOR #define ARCH_OPTIMAL_PARTICLE_SYSTEM CCParticleSystemQuad // ARMv6 use "Point" particle #elif __arm__ #define ARCH_OPTIMAL_PARTICLE_SYSTEM CCParticleSystemPoint #else #error(unknown architecture) #endif //! A fire particle system @interface CCParticleFire: ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! A fireworks particle system @interface CCParticleFireworks : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! A sun particle system @interface CCParticleSun : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! A galaxy particle system @interface CCParticleGalaxy : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! A flower particle system @interface CCParticleFlower : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! A meteor particle system @interface CCParticleMeteor : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! An spiral particle system @interface CCParticleSpiral : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! An explosion particle system @interface CCParticleExplosion : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! An smoke particle system @interface CCParticleSmoke : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! An snow particle system @interface CCParticleSnow : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end //! A rain particle system @interface CCParticleRain : ARCH_OPTIMAL_PARTICLE_SYSTEM { } @end dea97'>Archipelago/mypainting.gd
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extends Spatial

var orientation = ""  # north, south, east, west
var move = false
var move_to_x
var move_to_z
var target = null
var key


func _ready():
	var _connected = get_tree().get_root().get_node("Spatial/player").connect(
		"looked_at", self, "_looked_at"
	)
	if move:
		key.get_node("Viewport/GUI/Panel/TextEdit").connect(
			"answer_correct", self, "_answer_correct"
		)


func _answer_correct():
	var apclient = global.get_node("Archipelago")
	if not apclient._door_shuffle or apclient.paintingIsVanilla(self.get_parent().name):
		movePainting()


func movePainting():
	self.get_parent().translation.x = move_to_x
	self.get_parent().translation.z = move_to_z


func _looked_at(body, painting):
	if (
		target != null
		and body.is_in_group("player")
		and (painting.get_name() == self.get_parent().get_name())
	):
		var target_dir = _dir_to_int(target.orientation)
		var source_dir = _dir_to_int(orientation)
		var rotate = target_dir - source_dir
		if rotate < 0:
			rotate += 4
		rotate *= 90

		var target_painting = target.get_parent()

		# this is ACW
		if rotate == 0:
			body.translation.x = (
				target_painting.translation.x + (body.translation.x - painting.translation.x)
			)
			body.translation.y = (
				target_painting.translation.y + (body.translation.y - painting.translation.y)
			)
			body.translation.z = (
				target_painting.translation.z + (body.translation.z - painting.translation.z)
			)
		elif rotate == 180:
			body.translation.x = (
				target_painting.translation.x - (body.translation.x - painting.translation.x)
			)
			body.translation.y = (
				target_painting.translation.y + (body.translation.y - painting.translation.y)
			)
			body.translation.z = (
				target_painting.translation.z - (body.translation.z - painting.translation.z)
			)
			body.rotate_y(PI)
			body.velocity = body.velocity.rotated(Vector3(0, 1, 0), PI)
		elif rotate == 90:
			var diff_x = body.translation.x - painting.translation.x
			var diff_y = body.translation.y - painting.translation.y
			var diff_z = body.translation.z - painting.translation.z
			body.translation.x = target_painting.translation.x + diff_z
			body.translation.y = target_painting.translation.y + diff_y
			body.translation.z = target_painting.translation.z - diff_x
			body.rotate_y(PI / 2)
			body.velocity = body.velocity.rotated(Vector3(0, 1, 0), PI / 2)
		elif rotate == 270:
			var diff_x = body.translation.x - painting.translation.x
			var diff_y = body.translation.y - painting.translation.y
			var diff_z = body.translation.z - painting.translation.z
			body.translation.x = target_painting.translation.x - diff_z
			body.translation.y = target_painting.translation.y + diff_y
			body.translation.z = target_painting.translation.z + diff_x
			body.rotate_y(3 * PI / 2)
			body.velocity = body.velocity.rotated(Vector3(0, 1, 0), 3 * PI / 2)


func _dir_to_int(dir):
	if dir == "north":
		return 0
	elif dir == "west":
		return 1
	elif dir == "south":
		return 2
	elif dir == "east":
		return 3
	return 4