[4570] | 1 | /* |
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[3246] | 2 | orxonox - the future of 3D-vertical-scrollers |
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| 3 | |
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| 4 | Copyright (C) 2004 orx |
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| 5 | |
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| 6 | This program is free software; you can redistribute it and/or modify |
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| 7 | it under the terms of the GNU General Public License as published by |
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| 8 | the Free Software Foundation; either version 2, or (at your option) |
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| 9 | any later version. |
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| 10 | |
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| 11 | ### File Specific: |
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| 12 | main-programmer: Patrick Boenzli |
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[5419] | 13 | co-programmer: Benjamin Grauer |
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[3246] | 14 | */ |
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| 15 | |
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[3590] | 16 | #define DEBUG_SPECIAL_MODULE DEBUG_MODULE_PNODE |
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[3246] | 17 | |
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| 18 | #include "p_node.h" |
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[4761] | 19 | |
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| 20 | #include "load_param.h" |
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| 21 | #include "class_list.h" |
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| 22 | |
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[6078] | 23 | #include <algorithm> |
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[3860] | 24 | #include "compiler.h" |
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[3608] | 25 | #include "debug.h" |
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| 26 | |
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[6054] | 27 | #include "glincl.h" |
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[5406] | 28 | #include "color.h" |
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[3246] | 29 | |
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[6341] | 30 | #include "synchronizeable.h" |
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| 31 | |
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[6424] | 32 | #include "shell_command.h" |
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| 33 | SHELL_COMMAND(debugNode, PNode, debugNodeSC); |
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| 34 | |
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[3246] | 35 | using namespace std; |
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| 36 | |
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| 37 | |
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| 38 | /** |
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[6048] | 39 | * @brief standard constructor |
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[6078] | 40 | * @param parent the Parent of this Node. __NULL__ if __No Parent__ requested, PNode::getNullParent(), if connected to NullParent directly (default) |
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[6299] | 41 | * @param nodeFlags all flags to set. THIS_WILL_OVERWRITE Default_Values. |
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[5420] | 42 | */ |
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[6078] | 43 | PNode::PNode (PNode* parent, long nodeFlags) |
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[6695] | 44 | : Synchronizeable(), BaseObject() |
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[3365] | 45 | { |
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[6074] | 46 | this->setClassID(CL_PARENT_NODE, "PNode"); |
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[3365] | 47 | |
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[6074] | 48 | this->bRelCoorChanged = true; |
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| 49 | this->bRelDirChanged = true; |
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| 50 | this->parent = NULL; |
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[6078] | 51 | this->parentMode = nodeFlags; |
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[6074] | 52 | this->bActive = true; |
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[4993] | 53 | |
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[6074] | 54 | // smooth-movers |
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| 55 | this->toCoordinate = NULL; |
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| 56 | this->toDirection = NULL; |
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| 57 | this->bias = 1.0; |
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[6078] | 58 | |
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| 59 | if (parent != NULL) |
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| 60 | parent->addChild(this); |
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[3365] | 61 | } |
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| 62 | |
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[6074] | 63 | // NullParent Reference |
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| 64 | PNode* PNode::nullParent = NULL; |
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[6073] | 65 | |
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[3365] | 66 | /** |
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[6048] | 67 | * @brief standard deconstructor |
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[5296] | 68 | * |
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| 69 | * There are two general ways to delete a PNode |
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| 70 | * 1. delete instance; |
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| 71 | * -> result |
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| 72 | * delete this Node and all its children and children's children... |
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| 73 | * (danger if you still need the children's instance somewhere else!!) |
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| 74 | * |
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[6073] | 75 | * 2. instance->removeNode(); delete instance; |
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[5296] | 76 | * -> result: |
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| 77 | * moves its children to the NullParent |
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| 78 | * then deletes the Element. |
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| 79 | */ |
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[4570] | 80 | PNode::~PNode () |
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[3365] | 81 | { |
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[6073] | 82 | // remove the Node, delete it's children (if required). |
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| 83 | std::list<PNode*>::iterator tmp = this->children.begin(); |
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| 84 | std::list<PNode*>::iterator deleteNode; |
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| 85 | while(!this->children.empty()) |
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| 86 | while (tmp != this->children.end()) |
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| 87 | { |
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| 88 | deleteNode = tmp; |
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[6142] | 89 | tmp++; |
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[6078] | 90 | // printf("TEST::%s(%s) %s\n", (*deleteNode)->getName(), (*deleteNode)->getClassName(), this->getName()); |
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[6073] | 91 | if ((this->parentMode & PNODE_PROHIBIT_CHILD_DELETE) || |
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| 92 | ((*deleteNode)->parentMode & PNODE_PROHIBIT_DELETE_WITH_PARENT)) |
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| 93 | { |
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[6078] | 94 | if (this == PNode::nullParent && (*deleteNode)->parentMode & PNODE_REPARENT_TO_NULL) |
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[6073] | 95 | delete (*deleteNode); |
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| 96 | else |
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| 97 | (*deleteNode)->reparent(); |
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| 98 | } |
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| 99 | else |
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| 100 | delete (*deleteNode); |
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| 101 | } |
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| 102 | |
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[6071] | 103 | if (this->parent != NULL) |
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| 104 | { |
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[6078] | 105 | this->parent->eraseChild(this); |
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[6071] | 106 | this->parent = NULL; |
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| 107 | } |
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| 108 | |
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[5296] | 109 | // remove all other allocated memory. |
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[5088] | 110 | if (this->toCoordinate != NULL) |
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| 111 | delete this->toCoordinate; |
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| 112 | if (this->toDirection != NULL) |
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| 113 | delete this->toDirection; |
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[6075] | 114 | |
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| 115 | if (this == PNode::nullParent) |
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| 116 | PNode::nullParent = NULL; |
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[3365] | 117 | } |
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[3246] | 118 | |
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[5296] | 119 | |
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[4448] | 120 | /** |
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[6048] | 121 | * @brief loads parameters of the PNode |
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[4836] | 122 | * @param root the XML-element to load the properties of |
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[5420] | 123 | */ |
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[4436] | 124 | void PNode::loadParams(const TiXmlElement* root) |
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| 125 | { |
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[6512] | 126 | BaseObject::loadParams(root); |
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[4610] | 127 | |
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[5671] | 128 | LoadParam(root, "rel-coor", this, PNode, setRelCoor) |
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[4771] | 129 | .describe("Sets The relative position of the Node to its parent."); |
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| 130 | |
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[5671] | 131 | LoadParam(root, "abs-coor", this, PNode, setAbsCoor) |
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[4610] | 132 | .describe("Sets The absolute Position of the Node."); |
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| 133 | |
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[5671] | 134 | LoadParam(root, "rel-dir", this, PNode, setRelDir) |
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[4771] | 135 | .describe("Sets The relative rotation of the Node to its parent."); |
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[4761] | 136 | |
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[5671] | 137 | LoadParam(root, "abs-dir", this, PNode, setAbsDir) |
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[4771] | 138 | .describe("Sets The absolute rotation of the Node."); |
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| 139 | |
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[5671] | 140 | LoadParam(root, "parent", this, PNode, setParent) |
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[4761] | 141 | .describe("the Name of the Parent of this PNode"); |
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[4765] | 142 | |
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[5671] | 143 | LoadParam(root, "parent-mode", this, PNode, setParentMode) |
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[4765] | 144 | .describe("the mode to connect this node to its parent ()"); |
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| 145 | |
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| 146 | // cycling properties |
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[4785] | 147 | if (root != NULL) |
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[4765] | 148 | { |
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[5654] | 149 | LOAD_PARAM_START_CYCLE(root, element); |
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[4785] | 150 | { |
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[6074] | 151 | LoadParam_CYCLE(element, "child", this, PNode, addChild) |
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[4785] | 152 | .describe("adds a new Child to the current Node."); |
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[4765] | 153 | |
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[4785] | 154 | } |
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[5654] | 155 | LOAD_PARAM_END_CYCLE(element); |
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[4765] | 156 | } |
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[4436] | 157 | } |
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[3365] | 158 | |
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[6424] | 159 | |
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[3365] | 160 | /** |
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[6424] | 161 | * init the pnode to a well definied state |
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| 162 | * |
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| 163 | * this function actualy only updates the PNode tree |
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| 164 | */ |
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| 165 | void PNode::init() |
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| 166 | { |
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| 167 | /* just update all aboslute positions via timestep 0.001ms */ |
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| 168 | this->updateNode(0.001f); |
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| 169 | this->updateNode(0.001f); |
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| 170 | } |
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| 171 | |
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| 172 | |
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| 173 | /** |
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[6048] | 174 | * @brief set relative coordinates |
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[4836] | 175 | * @param relCoord relative coordinates to its parent |
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[5420] | 176 | * |
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| 177 | * |
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| 178 | * it is very importand, that you use this function, if you want to update the |
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| 179 | * relCoordinates. If you don't use this, the PNode won't recognize, that something |
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| 180 | * has changed and won't update the children Nodes. |
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| 181 | */ |
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[3810] | 182 | void PNode::setRelCoor (const Vector& relCoord) |
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[3675] | 183 | { |
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[5113] | 184 | if (this->toCoordinate!= NULL) |
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| 185 | { |
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| 186 | delete this->toCoordinate; |
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| 187 | this->toCoordinate = NULL; |
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| 188 | } |
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| 189 | |
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[4993] | 190 | this->relCoordinate = relCoord; |
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[3675] | 191 | this->bRelCoorChanged = true; |
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| 192 | } |
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| 193 | |
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| 194 | /** |
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[6048] | 195 | * @brief set relative coordinates |
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[4836] | 196 | * @param x x-relative coordinates to its parent |
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| 197 | * @param y y-relative coordinates to its parent |
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| 198 | * @param z z-relative coordinates to its parent |
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[4993] | 199 | * @see void PNode::setRelCoor (const Vector& relCoord) |
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[5420] | 200 | */ |
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[4610] | 201 | void PNode::setRelCoor (float x, float y, float z) |
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| 202 | { |
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| 203 | this->setRelCoor(Vector(x, y, z)); |
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| 204 | } |
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| 205 | |
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[4992] | 206 | /** |
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[6048] | 207 | * @brief sets a new relative position smoothely |
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[4992] | 208 | * @param relCoordSoft the new Position to iterate to |
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| 209 | * @param bias how fast to iterate to this position |
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| 210 | */ |
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| 211 | void PNode::setRelCoorSoft(const Vector& relCoordSoft, float bias) |
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[4987] | 212 | { |
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[4993] | 213 | if (likely(this->toCoordinate == NULL)) |
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| 214 | this->toCoordinate = new Vector(); |
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[4987] | 215 | |
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[4993] | 216 | *this->toCoordinate = relCoordSoft; |
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[6616] | 217 | this->toStep = 0.0f; |
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[4992] | 218 | this->bias = bias; |
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[4987] | 219 | } |
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| 220 | |
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[4990] | 221 | |
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[4610] | 222 | /** |
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[6048] | 223 | * @brief set relative coordinates smoothely |
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[4990] | 224 | * @param x x-relative coordinates to its parent |
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| 225 | * @param y y-relative coordinates to its parent |
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| 226 | * @param z z-relative coordinates to its parent |
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[4993] | 227 | * @see void PNode::setRelCoorSoft (const Vector&, float) |
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[4990] | 228 | */ |
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[4992] | 229 | void PNode::setRelCoorSoft (float x, float y, float z, float bias) |
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[4990] | 230 | { |
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[4992] | 231 | this->setRelCoorSoft(Vector(x, y, z), bias); |
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[4990] | 232 | } |
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| 233 | |
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[5382] | 234 | |
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[4990] | 235 | /** |
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[4836] | 236 | * @param absCoord set absolute coordinate |
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[5091] | 237 | */ |
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[3809] | 238 | void PNode::setAbsCoor (const Vector& absCoord) |
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[3675] | 239 | { |
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[5113] | 240 | if (this->toCoordinate!= NULL) |
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| 241 | { |
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| 242 | delete this->toCoordinate; |
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| 243 | this->toCoordinate = NULL; |
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| 244 | } |
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| 245 | |
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[4993] | 246 | if( likely(this->parentMode & PNODE_MOVEMENT)) |
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| 247 | { |
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| 248 | /* if you have set the absolute coordinates this overrides all other changes */ |
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| 249 | if (likely(this->parent != NULL)) |
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| 250 | this->relCoordinate = absCoord - parent->getAbsCoor (); |
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| 251 | else |
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| 252 | this->relCoordinate = absCoord; |
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| 253 | } |
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| 254 | if( this->parentMode & PNODE_ROTATE_MOVEMENT) |
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| 255 | { |
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| 256 | if (likely(this->parent != NULL)) |
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| 257 | this->relCoordinate = absCoord - parent->getAbsCoor (); |
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| 258 | else |
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| 259 | this->relCoordinate = absCoord; |
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| 260 | } |
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| 261 | |
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| 262 | this->bRelCoorChanged = true; |
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| 263 | // this->absCoordinate = absCoord; |
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[3675] | 264 | } |
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| 265 | |
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[5382] | 266 | |
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[3675] | 267 | /** |
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[4836] | 268 | * @param x x-coordinate. |
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| 269 | * @param y y-coordinate. |
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| 270 | * @param z z-coordinate. |
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[4987] | 271 | * @see void PNode::setAbsCoor (const Vector& absCoord) |
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[4610] | 272 | */ |
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| 273 | void PNode::setAbsCoor(float x, float y, float z) |
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| 274 | { |
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| 275 | this->setAbsCoor(Vector(x, y, z)); |
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| 276 | } |
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| 277 | |
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[6054] | 278 | |
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[4610] | 279 | /** |
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[5406] | 280 | * @param absCoord set absolute coordinate |
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| 281 | * @todo check off |
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| 282 | */ |
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| 283 | void PNode::setAbsCoorSoft (const Vector& absCoordSoft, float bias) |
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| 284 | { |
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| 285 | if (this->toCoordinate == NULL) |
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| 286 | this->toCoordinate = new Vector; |
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| 287 | |
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| 288 | if( likely(this->parentMode & PNODE_MOVEMENT)) |
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| 289 | { |
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| 290 | /* if you have set the absolute coordinates this overrides all other changes */ |
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| 291 | if (likely(this->parent != NULL)) |
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| 292 | *this->toCoordinate = absCoordSoft - parent->getAbsCoor (); |
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| 293 | else |
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| 294 | *this->toCoordinate = absCoordSoft; |
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| 295 | } |
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| 296 | if( this->parentMode & PNODE_ROTATE_MOVEMENT) |
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| 297 | { |
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| 298 | if (likely(this->parent != NULL)) |
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| 299 | *this->toCoordinate = absCoordSoft - parent->getAbsCoor (); |
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| 300 | else |
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| 301 | *this->toCoordinate = absCoordSoft; |
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| 302 | } |
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[6616] | 303 | this->toStep = 0.0f; |
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[5406] | 304 | } |
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| 305 | |
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| 306 | |
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| 307 | /** |
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[6048] | 308 | * @brief shift coordinate relative |
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[4836] | 309 | * @param shift shift vector |
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[4987] | 310 | * |
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[5420] | 311 | * this function shifts the current coordinates about the vector shift. this is |
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| 312 | * usefull because from some place else you can: |
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| 313 | * PNode* someNode = ...; |
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| 314 | * Vector objectMovement = calculateShift(); |
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| 315 | * someNode->shiftCoor(objectMovement); |
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| 316 | * |
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| 317 | * this is the internal method of: |
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| 318 | * PNode* someNode = ...; |
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| 319 | * Vector objectMovement = calculateShift(); |
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| 320 | * Vector currentCoor = someNode->getRelCoor(); |
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| 321 | * Vector newCoor = currentCoor + objectMovement; |
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| 322 | * someNode->setRelCoor(newCoor); |
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| 323 | * |
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[5382] | 324 | */ |
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[3809] | 325 | void PNode::shiftCoor (const Vector& shift) |
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[3683] | 326 | { |
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[4993] | 327 | this->relCoordinate += shift; |
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| 328 | this->bRelCoorChanged = true; |
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[3683] | 329 | } |
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| 330 | |
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[6054] | 331 | |
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[3683] | 332 | /** |
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[6048] | 333 | * @brief set relative direction |
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[4836] | 334 | * @param relDir to its parent |
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[5091] | 335 | */ |
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[3810] | 336 | void PNode::setRelDir (const Quaternion& relDir) |
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[3675] | 337 | { |
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[5113] | 338 | if (this->toDirection!= NULL) |
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| 339 | { |
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| 340 | delete this->toDirection; |
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| 341 | this->toDirection = NULL; |
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| 342 | } |
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[4993] | 343 | this->relDirection = relDir; |
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[5819] | 344 | |
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[3675] | 345 | this->bRelCoorChanged = true; |
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| 346 | } |
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| 347 | |
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[6054] | 348 | |
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[3365] | 349 | /** |
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[4771] | 350 | * @see void PNode::setRelDir (const Quaternion& relDir) |
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| 351 | * @param x the x direction |
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| 352 | * @param y the y direction |
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| 353 | * @param z the z direction |
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| 354 | * |
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| 355 | * main difference is, that here you give a directional vector, that will be translated into a Quaternion |
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| 356 | */ |
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| 357 | void PNode::setRelDir (float x, float y, float z) |
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| 358 | { |
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| 359 | this->setRelDir(Quaternion(Vector(x,y,z), Vector(0,1,0))); |
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| 360 | } |
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| 361 | |
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[4990] | 362 | |
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[4771] | 363 | /** |
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[6048] | 364 | * @brief sets the Relative Direction of this node to its parent in a Smoothed way |
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[4990] | 365 | * @param relDirSoft the direction to iterate to smoothely. |
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[4992] | 366 | * @param bias how fast to iterate to the new Direction |
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[4990] | 367 | */ |
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[4992] | 368 | void PNode::setRelDirSoft(const Quaternion& relDirSoft, float bias) |
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[4990] | 369 | { |
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| 370 | if (likely(this->toDirection == NULL)) |
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| 371 | this->toDirection = new Quaternion(); |
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| 372 | |
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| 373 | *this->toDirection = relDirSoft; |
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[4992] | 374 | this->bias = bias; |
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[6616] | 375 | this->toStep = 0.0f; |
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[5819] | 376 | this->bRelDirChanged = true; |
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[4990] | 377 | } |
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| 378 | |
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[6054] | 379 | |
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[4990] | 380 | /** |
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| 381 | * @see void PNode::setRelDirSoft (const Quaternion& relDir) |
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| 382 | * @param x the x direction |
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| 383 | * @param y the y direction |
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| 384 | * @param z the z direction |
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| 385 | * |
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| 386 | * main difference is, that here you give a directional vector, that will be translated into a Quaternion |
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| 387 | */ |
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[4992] | 388 | void PNode::setRelDirSoft(float x, float y, float z, float bias) |
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[4990] | 389 | { |
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[4992] | 390 | this->setRelDirSoft(Quaternion(Vector(x,y,z), Vector(0,1,0)), bias); |
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[4990] | 391 | } |
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| 392 | |
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[6054] | 393 | |
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[4990] | 394 | /** |
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[6048] | 395 | * @brief sets the absolute direction |
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[4836] | 396 | * @param absDir absolute coordinates |
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[5091] | 397 | */ |
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[3810] | 398 | void PNode::setAbsDir (const Quaternion& absDir) |
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[3675] | 399 | { |
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[5113] | 400 | if (this->toDirection!= NULL) |
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| 401 | { |
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| 402 | delete this->toDirection; |
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| 403 | this->toDirection = NULL; |
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| 404 | } |
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| 405 | |
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[5001] | 406 | if (likely(this->parent != NULL)) |
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| 407 | this->relDirection = absDir / this->parent->getAbsDir(); |
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[4996] | 408 | else |
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[5001] | 409 | this->relDirection = absDir; |
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[4993] | 410 | |
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| 411 | this->bRelDirChanged = true; |
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[3675] | 412 | } |
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| 413 | |
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[6054] | 414 | |
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[3675] | 415 | /** |
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[4771] | 416 | * @see void PNode::setAbsDir (const Quaternion& relDir) |
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| 417 | * @param x the x direction |
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| 418 | * @param y the y direction |
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| 419 | * @param z the z direction |
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| 420 | * |
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| 421 | * main difference is, that here you give a directional vector, that will be translated into a Quaternion |
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| 422 | */ |
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| 423 | void PNode::setAbsDir (float x, float y, float z) |
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| 424 | { |
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| 425 | this->setAbsDir(Quaternion(Vector(x,y,z), Vector(0,1,0))); |
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| 426 | } |
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| 427 | |
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[6054] | 428 | |
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[4771] | 429 | /** |
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[6048] | 430 | * @brief sets the absolute direction |
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[5414] | 431 | * @param absDir absolute coordinates |
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[6048] | 432 | * @param bias how fast to iterator to the new Position |
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[5414] | 433 | */ |
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| 434 | void PNode::setAbsDirSoft (const Quaternion& absDirSoft, float bias) |
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| 435 | { |
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| 436 | if (this->toDirection == NULL) |
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| 437 | this->toDirection = new Quaternion(); |
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| 438 | |
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| 439 | if (likely(this->parent != NULL)) |
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| 440 | *this->toDirection = absDirSoft / this->parent->getAbsDir(); |
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| 441 | else |
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| 442 | *this->toDirection = absDirSoft; |
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| 443 | |
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| 444 | this->bias = bias; |
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[6616] | 445 | this->toStep = 0.0f; |
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[5915] | 446 | this->bRelDirChanged = true; |
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[5414] | 447 | } |
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| 448 | |
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[6054] | 449 | |
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[5414] | 450 | /** |
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| 451 | * @see void PNode::setAbsDir (const Quaternion& relDir) |
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| 452 | * @param x the x direction |
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| 453 | * @param y the y direction |
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| 454 | * @param z the z direction |
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| 455 | * |
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| 456 | * main difference is, that here you give a directional vector, that will be translated into a Quaternion |
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| 457 | */ |
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| 458 | void PNode::setAbsDirSoft (float x, float y, float z, float bias) |
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| 459 | { |
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| 460 | this->setAbsDirSoft(Quaternion(Vector(x,y,z), Vector(0,1,0)), bias); |
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| 461 | } |
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| 462 | |
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| 463 | |
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| 464 | /** |
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[6048] | 465 | * @brief shift Direction |
---|
[5091] | 466 | * @param shift the direction around which to shift. |
---|
| 467 | */ |
---|
[3802] | 468 | void PNode::shiftDir (const Quaternion& shift) |
---|
| 469 | { |
---|
[4993] | 470 | this->relDirection = this->relDirection * shift; |
---|
[3802] | 471 | this->bRelDirChanged = true; |
---|
| 472 | } |
---|
[3365] | 473 | |
---|
[6048] | 474 | |
---|
[3683] | 475 | /** |
---|
[6048] | 476 | * @brief adds a child and makes this node to a parent |
---|
[5091] | 477 | * @param child child reference |
---|
[4993] | 478 | * use this to add a child to this node. |
---|
[5420] | 479 | */ |
---|
[5382] | 480 | void PNode::addChild (PNode* child) |
---|
[3365] | 481 | { |
---|
[4993] | 482 | if( likely(child->parent != NULL)) |
---|
[6078] | 483 | child->parent->eraseChild(child); |
---|
[6075] | 484 | if (this->checkIntegrity(child)) |
---|
| 485 | { |
---|
| 486 | child->parent = this; |
---|
| 487 | if (unlikely(this != NULL)) |
---|
| 488 | this->children.push_back(child); |
---|
| 489 | child->parentCoorChanged(); |
---|
[6695] | 490 | |
---|
| 491 | // if(this->getUniqueID() == NET_UID_UNASSIGNED) |
---|
| 492 | // { |
---|
| 493 | // PRINTF(1)("Adding to an UNASSIGNED PNode - looking for next assigned Node\n"); |
---|
| 494 | // PNode* node = this->seekNextAssignedPNode(this); |
---|
| 495 | // if( node == NULL) |
---|
| 496 | // PRINTF(1)(" Got NULL - Is this the NULLParent - uid %i\n", this->getUniqueID()); |
---|
| 497 | // else |
---|
| 498 | // PRINTF(1)(" Found next assigned node: %i\n", node->getUniqueID()); |
---|
| 499 | // } |
---|
[6075] | 500 | } |
---|
| 501 | else |
---|
| 502 | { |
---|
| 503 | PRINTF(1)("Tried to reparent to own child '%s::%s' to '%s::%s'.\n", |
---|
| 504 | this->getClassName(), this->getName(), child->getClassName(), child->getName()); |
---|
| 505 | child->parent = NULL; |
---|
[6142] | 506 | child->parentCoorChanged(); |
---|
[6075] | 507 | } |
---|
[3365] | 508 | } |
---|
| 509 | |
---|
[6048] | 510 | |
---|
[6695] | 511 | PNode* PNode::seekNextAssignedPNode(PNode* node) const |
---|
| 512 | { |
---|
| 513 | PNode* tmpNode = node->parent; |
---|
| 514 | printf("entering seek PNode loop for name: %s, uid: %i\n", node->getName(), node->getUniqueID()); |
---|
| 515 | if(tmpNode) |
---|
| 516 | printf(" @node name: %s, uid: %d\n", tmpNode->getName(), tmpNode->getUniqueID()); |
---|
| 517 | while( tmpNode != NULL && tmpNode->getUniqueID() == NET_UID_UNASSIGNED) |
---|
| 518 | { |
---|
| 519 | printf(" @node name: %s, uid: %d\n", tmpNode->getName(), tmpNode->getUniqueID()); |
---|
| 520 | tmpNode = tmpNode->parent; |
---|
| 521 | } |
---|
| 522 | printf("leaving PNode loop\n\n"); |
---|
| 523 | |
---|
| 524 | return tmpNode; |
---|
| 525 | } |
---|
| 526 | |
---|
| 527 | |
---|
[3365] | 528 | /** |
---|
[5091] | 529 | * @see PNode::addChild(PNode* child); |
---|
[4765] | 530 | * @param childName the name of the child to add to this PNode |
---|
| 531 | */ |
---|
| 532 | void PNode::addChild (const char* childName) |
---|
| 533 | { |
---|
| 534 | PNode* childNode = dynamic_cast<PNode*>(ClassList::getObject(childName, CL_PARENT_NODE)); |
---|
[6634] | 535 | // PRINTF(0)("Adding the Child: %s to: %s\n", childName, this->getName()); |
---|
| 536 | // assert( childNode != NULL ); |
---|
[4765] | 537 | if (childNode != NULL) |
---|
[6634] | 538 | { |
---|
[4765] | 539 | this->addChild(childNode); |
---|
[6634] | 540 | } |
---|
[4765] | 541 | } |
---|
| 542 | |
---|
[6048] | 543 | |
---|
[4765] | 544 | /** |
---|
[6048] | 545 | * @brief removes a child from the node |
---|
[5091] | 546 | * @param child the child to remove from this pNode. |
---|
[4993] | 547 | * |
---|
[6054] | 548 | * Children from pNode will not be lost, they are Reparented by the rules of the ParentMode |
---|
[5420] | 549 | */ |
---|
[4993] | 550 | void PNode::removeChild (PNode* child) |
---|
[3365] | 551 | { |
---|
[5214] | 552 | if (child != NULL) |
---|
[5769] | 553 | child->removeNode(); |
---|
[3365] | 554 | } |
---|
| 555 | |
---|
[6054] | 556 | |
---|
[3365] | 557 | /** |
---|
[6075] | 558 | * !! PRIVATE FUNCTION |
---|
[6299] | 559 | * @brief reparents a node (happens on Parents Node delete or remove and Flags are set.) |
---|
[6075] | 560 | */ |
---|
| 561 | void PNode::reparent() |
---|
| 562 | { |
---|
[6078] | 563 | if (this->parentMode & PNODE_REPARENT_TO_NULL) |
---|
| 564 | this->setParent((PNode*)NULL); |
---|
[6075] | 565 | else if (this->parentMode & PNODE_REPARENT_TO_PARENTS_PARENT && this->parent != NULL) |
---|
| 566 | this->setParent(this->parent->getParent()); |
---|
[6078] | 567 | else |
---|
| 568 | this->setParent(PNode::getNullParent()); |
---|
[6075] | 569 | } |
---|
| 570 | |
---|
[6299] | 571 | /** |
---|
| 572 | * ereases child from the nodes children |
---|
| 573 | * @param chuld the child to remove |
---|
| 574 | */ |
---|
[6078] | 575 | void PNode::eraseChild(PNode* child) |
---|
| 576 | { |
---|
| 577 | std::list<PNode*>::iterator childRemover = std::find(this->children.begin(), this->children.end(), child); |
---|
| 578 | if(childRemover != this->children.end()) |
---|
| 579 | this->children.erase(childRemover); |
---|
| 580 | } |
---|
[6075] | 581 | |
---|
[6078] | 582 | |
---|
[6075] | 583 | /** |
---|
[6048] | 584 | * @brief remove this pnode from the tree and adds all following to NullParent |
---|
[5420] | 585 | * |
---|
| 586 | * this can be the case, if an entity in the world is being destroyed. |
---|
| 587 | */ |
---|
[5769] | 588 | void PNode::removeNode() |
---|
[3537] | 589 | { |
---|
[6078] | 590 | list<PNode*>::iterator child = this->children.begin(); |
---|
| 591 | list<PNode*>::iterator reparenter; |
---|
| 592 | while (child != this->children.end()) |
---|
[6054] | 593 | { |
---|
[6078] | 594 | reparenter = child; |
---|
| 595 | child++; |
---|
| 596 | if (this->parentMode & PNODE_REPARENT_CHILDREN_ON_REMOVE || |
---|
| 597 | (*reparenter)->parentMode & PNODE_REPARENT_ON_PARENTS_REMOVE) |
---|
[6142] | 598 | { |
---|
| 599 | printf("TEST----------------%s ---- %s\n", this->getClassName(), (*reparenter)->getClassName()); |
---|
[6054] | 600 | (*reparenter)->reparent(); |
---|
[6078] | 601 | printf("REPARENTED TO: %s::%s\n",(*reparenter)->getParent()->getClassName(),(*reparenter)->getParent()->getName()); |
---|
[6054] | 602 | } |
---|
| 603 | } |
---|
[5214] | 604 | if (this->parent != NULL) |
---|
[6142] | 605 | { |
---|
[6078] | 606 | this->parent->eraseChild(this); |
---|
[6142] | 607 | this->parent = NULL; |
---|
| 608 | } |
---|
[3537] | 609 | } |
---|
| 610 | |
---|
[3365] | 611 | |
---|
[4761] | 612 | /** |
---|
| 613 | * @see PNode::setParent(PNode* parent); |
---|
| 614 | * @param parentName the name of the Parent to set to this PNode |
---|
| 615 | */ |
---|
| 616 | void PNode::setParent (const char* parentName) |
---|
| 617 | { |
---|
| 618 | PNode* parentNode = dynamic_cast<PNode*>(ClassList::getObject(parentName, CL_PARENT_NODE)); |
---|
| 619 | if (parentNode != NULL) |
---|
| 620 | parentNode->addChild(this); |
---|
[6075] | 621 | else |
---|
| 622 | PRINTF(2)("Not Found PNode's (%s::%s) new Parent by Name: %s\n", |
---|
| 623 | this->getClassName(), this->getName(), parentName); |
---|
[4761] | 624 | } |
---|
| 625 | |
---|
[6054] | 626 | |
---|
[4990] | 627 | /** |
---|
[6048] | 628 | * @brief does the reparenting in a very smooth way |
---|
[4990] | 629 | * @param parentNode the new Node to connect this node to. |
---|
[4993] | 630 | * @param bias the speed to iterate to this new Positions |
---|
[4990] | 631 | */ |
---|
[5382] | 632 | void PNode::setParentSoft(PNode* parentNode, float bias) |
---|
[4987] | 633 | { |
---|
[5382] | 634 | // return if the new parent and the old one match |
---|
[6075] | 635 | if (this->parent == parentNode ) |
---|
[4992] | 636 | return; |
---|
[6075] | 637 | if (parentNode == NULL) |
---|
| 638 | parentNode = PNode::getNullParent(); |
---|
[4992] | 639 | |
---|
[5382] | 640 | // store the Valures to iterate to. |
---|
[4993] | 641 | if (likely(this->toCoordinate == NULL)) |
---|
[4989] | 642 | { |
---|
[4993] | 643 | this->toCoordinate = new Vector(); |
---|
| 644 | *this->toCoordinate = this->getRelCoor(); |
---|
[4989] | 645 | } |
---|
[4990] | 646 | if (likely(this->toDirection == NULL)) |
---|
| 647 | { |
---|
| 648 | this->toDirection = new Quaternion(); |
---|
| 649 | *this->toDirection = this->getRelDir(); |
---|
| 650 | } |
---|
[4992] | 651 | this->bias = bias; |
---|
[6616] | 652 | this->toStep = 0.0f; |
---|
[4987] | 653 | |
---|
[4990] | 654 | Vector tmpV = this->getAbsCoor(); |
---|
| 655 | Quaternion tmpQ = this->getAbsDir(); |
---|
[4987] | 656 | |
---|
| 657 | parentNode->addChild(this); |
---|
| 658 | |
---|
[5382] | 659 | if (this->parentMode & PNODE_ROTATE_MOVEMENT && this->parent != NULL) |
---|
| 660 | this->relCoordinate = this->parent->getAbsDir().inverse().apply(tmpV - this->parent->getAbsCoor()); |
---|
[5000] | 661 | else |
---|
[5382] | 662 | this->relCoordinate = tmpV - parentNode->getAbsCoor(); |
---|
[4991] | 663 | |
---|
[5382] | 664 | this->relDirection = tmpQ / parentNode->getAbsDir(); |
---|
[4987] | 665 | } |
---|
| 666 | |
---|
[6054] | 667 | |
---|
[4993] | 668 | /** |
---|
[6048] | 669 | * @brief does the reparenting in a very smooth way |
---|
[4993] | 670 | * @param parentName the name of the Parent to reconnect to |
---|
| 671 | * @param bias the speed to iterate to this new Positions |
---|
| 672 | */ |
---|
[5382] | 673 | void PNode::setParentSoft(const char* parentName, float bias) |
---|
[4987] | 674 | { |
---|
| 675 | PNode* parentNode = dynamic_cast<PNode*>(ClassList::getObject(parentName, CL_PARENT_NODE)); |
---|
| 676 | if (parentNode != NULL) |
---|
[5382] | 677 | this->setParentSoft(parentNode, bias); |
---|
[4987] | 678 | } |
---|
| 679 | |
---|
[6054] | 680 | /** |
---|
| 681 | * @param parentMode sets the parentingMode of this Node |
---|
| 682 | */ |
---|
| 683 | void PNode::setParentMode(PARENT_MODE parentMode) |
---|
| 684 | { |
---|
[6307] | 685 | this->parentMode = ((this->parentMode & 0xfff0) | parentMode); |
---|
[6054] | 686 | } |
---|
[6048] | 687 | |
---|
[3365] | 688 | /** |
---|
[6048] | 689 | * @brief sets the mode of this parent manually |
---|
[4765] | 690 | * @param parentMode a String representing this parentingMode |
---|
| 691 | */ |
---|
| 692 | void PNode::setParentMode (const char* parentingMode) |
---|
| 693 | { |
---|
[4993] | 694 | this->setParentMode(PNode::charToParentingMode(parentingMode)); |
---|
[4765] | 695 | } |
---|
[3537] | 696 | |
---|
[3365] | 697 | /** |
---|
[6075] | 698 | * @brief adds special mode Flags to this PNode |
---|
| 699 | * @see PARENT_MODE |
---|
| 700 | * @param nodeFlags a compsition of PARENT_MODE-flags, split by the '|' (or) operator. |
---|
[6054] | 701 | */ |
---|
[6078] | 702 | void PNode::addNodeFlags(unsigned short nodeFlags) |
---|
[6054] | 703 | { |
---|
| 704 | this->parentMode |= nodeFlags; |
---|
| 705 | } |
---|
| 706 | |
---|
[6075] | 707 | /** |
---|
| 708 | * @brief removes special mode Flags to this PNode |
---|
| 709 | * @see PARENT_MODE |
---|
| 710 | * @param nodeFlags a compsition of PARENT_MODE-flags, split by the '|' (or) operator. |
---|
| 711 | */ |
---|
[6078] | 712 | void PNode::removeNodeFlags(unsigned short nodeFlags) |
---|
[6054] | 713 | { |
---|
| 714 | this->parentMode &= !nodeFlags; |
---|
| 715 | } |
---|
| 716 | |
---|
[6078] | 717 | /** |
---|
| 718 | * @returns the NullParent (and if needed creates it) |
---|
| 719 | */ |
---|
| 720 | PNode* PNode::createNullParent() |
---|
| 721 | { |
---|
| 722 | if (likely(PNode::nullParent == NULL)) |
---|
| 723 | { |
---|
| 724 | PNode::nullParent = new PNode(NULL, PNODE_PARENT_MODE_DEFAULT | PNODE_REPARENT_TO_NULL); |
---|
[6695] | 725 | PNode::nullParent->setClassID(CL_NULL_PARENT, "NullParent"); |
---|
[6078] | 726 | PNode::nullParent->setName("NullParent"); |
---|
[6695] | 727 | PNode::nullParent->setSynchronized(true); |
---|
[6078] | 728 | } |
---|
| 729 | return PNode::nullParent; |
---|
| 730 | } |
---|
[6054] | 731 | |
---|
[6078] | 732 | |
---|
[6054] | 733 | /** |
---|
[6075] | 734 | * !! PRIVATE FUNCTION |
---|
| 735 | * @brief checks the upward integrity (e.g if PNode is somewhere up the Node tree.) |
---|
| 736 | * @param checkParent the Parent to check. |
---|
| 737 | * @returns true if the integrity-check succeeds, false otherwise. |
---|
| 738 | * |
---|
| 739 | * If there is a second occurence of checkParent before NULL, then a loop could get |
---|
| 740 | * into the Tree, and we do not want this. |
---|
| 741 | */ |
---|
| 742 | bool PNode::checkIntegrity(const PNode* checkParent) const |
---|
| 743 | { |
---|
| 744 | const PNode* parent = this; |
---|
| 745 | while ( (parent = parent->getParent()) != NULL) |
---|
| 746 | if (unlikely(parent == checkParent)) |
---|
| 747 | return false; |
---|
| 748 | return true; |
---|
| 749 | } |
---|
| 750 | |
---|
| 751 | |
---|
| 752 | /** |
---|
[6048] | 753 | * @brief updates the absCoordinate/absDirection |
---|
[4836] | 754 | * @param dt The time passed since the last update |
---|
[5420] | 755 | * |
---|
| 756 | * this is used to go through the parent-tree to update all the absolute coordinates |
---|
| 757 | * and directions. this update should be done by the engine, so you don't have to |
---|
| 758 | * worry, normaly... |
---|
| 759 | */ |
---|
[5769] | 760 | void PNode::updateNode (float dt) |
---|
[3365] | 761 | { |
---|
[6075] | 762 | if (!(this->parentMode & PNODE_STATIC_NODE)) |
---|
| 763 | { |
---|
| 764 | if( likely(this->parent != NULL)) |
---|
[4440] | 765 | { |
---|
[6054] | 766 | // movement for nodes with smoothMove enabled |
---|
| 767 | if (unlikely(this->toCoordinate != NULL)) |
---|
[4987] | 768 | { |
---|
[6054] | 769 | Vector moveVect = (*this->toCoordinate - this->relCoordinate) *fabsf(dt)*bias; |
---|
| 770 | if (likely(moveVect.len() >= PNODE_ITERATION_DELTA)) |
---|
| 771 | { |
---|
| 772 | this->shiftCoor(moveVect); |
---|
| 773 | } |
---|
| 774 | else |
---|
| 775 | { |
---|
| 776 | delete this->toCoordinate; |
---|
| 777 | this->toCoordinate = NULL; |
---|
| 778 | PRINTF(5)("SmoothMove of %s finished\n", this->getName()); |
---|
| 779 | } |
---|
[4987] | 780 | } |
---|
[6054] | 781 | if (unlikely(this->toDirection != NULL)) |
---|
[4987] | 782 | { |
---|
[6616] | 783 | this->toStep += fabs(dt) * bias; |
---|
[6624] | 784 | //printf("%s::%s %f\n", this->getClassName(), this->getName(), this->toStep ); |
---|
[6616] | 785 | Quaternion rotQuat = Quaternion::quatSlerp(this->relDirection,*this->toDirection, toStep); |
---|
[6054] | 786 | if (this->relDirection.distance(rotQuat) >PNODE_ITERATION_DELTA) |
---|
| 787 | { |
---|
| 788 | this->relDirection = rotQuat; |
---|
| 789 | this->bRelDirChanged; |
---|
| 790 | } |
---|
| 791 | else |
---|
| 792 | { |
---|
| 793 | delete this->toDirection; |
---|
| 794 | this->toDirection = NULL; |
---|
[6075] | 795 | PRINTF(5)("SmoothRotate of %s finished\n", this->getName()); |
---|
[6054] | 796 | } |
---|
[4987] | 797 | } |
---|
[4990] | 798 | |
---|
[6054] | 799 | // MAIN UPDATE ///////////////////////////////////// |
---|
| 800 | this->lastAbsCoordinate = this->absCoordinate; |
---|
[4145] | 801 | |
---|
[6075] | 802 | PRINTF(5)("PNode::update - '%s::%s' - (%f, %f, %f)\n", this->getClassName(), this->getName(), |
---|
| 803 | this->absCoordinate.x, this->absCoordinate.y, this->absCoordinate.z); |
---|
[3800] | 804 | |
---|
[4570] | 805 | |
---|
[6307] | 806 | if(this->bRelDirChanged && this->parentMode & PNODE_LOCAL_ROTATE ) |
---|
[6054] | 807 | { |
---|
| 808 | /* update the current absDirection - remember * means rotation around sth.*/ |
---|
| 809 | this->prevRelCoordinate = this->relCoordinate; |
---|
[6253] | 810 | this->absDirection = parent->getAbsDir() * this->relDirection; |
---|
[6054] | 811 | } |
---|
[4570] | 812 | |
---|
[6307] | 813 | if(likely(this->bRelCoorChanged && this->parentMode & PNODE_MOVEMENT)) |
---|
[6054] | 814 | { |
---|
[6075] | 815 | /* update the current absCoordinate */ |
---|
[6307] | 816 | this->prevRelCoordinate = this->relCoordinate; |
---|
| 817 | this->absCoordinate = this->parent->getAbsCoor() + this->relCoordinate; |
---|
[6054] | 818 | } |
---|
| 819 | else if( this->parentMode & PNODE_ROTATE_MOVEMENT && this->bRelCoorChanged) |
---|
| 820 | { |
---|
| 821 | /* update the current absCoordinate */ |
---|
[6307] | 822 | this->prevRelCoordinate = this->relCoordinate; |
---|
| 823 | this->absCoordinate = this->parent->getAbsCoor() + parent->getAbsDir().apply(this->relCoordinate); |
---|
[6054] | 824 | } |
---|
| 825 | ///////////////////////////////////////////////// |
---|
[5007] | 826 | } |
---|
[6075] | 827 | |
---|
| 828 | else // Nodes without a Parent are handled faster :: MOST LIKELY THE NULLPARENT |
---|
[4440] | 829 | { |
---|
[6075] | 830 | PRINTF(4)("update ParentLess Node (%s::%s) - (%f, %f, %f)\n", this->getClassName(), this->getName(), |
---|
| 831 | this->absCoordinate.x, this->absCoordinate.y, this->absCoordinate.z); |
---|
[6054] | 832 | if (this->bRelCoorChanged) |
---|
| 833 | { |
---|
| 834 | this->prevRelCoordinate = this->relCoordinate; |
---|
| 835 | this->absCoordinate = this->relCoordinate; |
---|
| 836 | } |
---|
| 837 | if (this->bRelDirChanged) |
---|
| 838 | { |
---|
| 839 | this->prevRelDirection = this->relDirection; |
---|
| 840 | this->absDirection = this->getAbsDir () * this->relDirection; |
---|
| 841 | } |
---|
[5118] | 842 | } |
---|
[4993] | 843 | } |
---|
[3365] | 844 | |
---|
[6054] | 845 | if(!this->children.empty() && (this->bActive || this->parentMode & PNODE_UPDATE_CHILDREN_IF_INACTIVE )) |
---|
[4993] | 846 | { |
---|
[5770] | 847 | list<PNode*>::iterator child; |
---|
| 848 | for (child = this->children.begin(); child != this->children.end(); child ++) |
---|
[4574] | 849 | { |
---|
| 850 | /* if this node has changed, make sure, that all children are updated also */ |
---|
[4993] | 851 | if( likely(this->bRelCoorChanged)) |
---|
[5770] | 852 | (*child)->parentCoorChanged (); |
---|
[4993] | 853 | if( likely(this->bRelDirChanged)) |
---|
[5770] | 854 | (*child)->parentDirChanged (); |
---|
[4993] | 855 | |
---|
[5770] | 856 | (*child)->updateNode(dt); |
---|
[4993] | 857 | } |
---|
[4440] | 858 | } |
---|
[4993] | 859 | this->velocity = (this->absCoordinate - this->lastAbsCoordinate) / dt; |
---|
| 860 | this->bRelCoorChanged = false; |
---|
| 861 | this->bRelDirChanged = false; |
---|
[3365] | 862 | } |
---|
| 863 | |
---|
[5769] | 864 | |
---|
[6075] | 865 | |
---|
| 866 | |
---|
| 867 | |
---|
| 868 | /************* |
---|
| 869 | * DEBUGGING * |
---|
| 870 | *************/ |
---|
[6048] | 871 | /** |
---|
| 872 | * @brief counts total amount the children walking through the entire tree. |
---|
| 873 | * @param nodes the counter |
---|
| 874 | */ |
---|
[5769] | 875 | void PNode::countChildNodes(int& nodes) const |
---|
| 876 | { |
---|
| 877 | nodes++; |
---|
[5770] | 878 | list<PNode*>::const_iterator child; |
---|
| 879 | for (child = this->children.begin(); child != this->children.end(); child ++) |
---|
| 880 | (*child)->countChildNodes(nodes); |
---|
[5769] | 881 | } |
---|
| 882 | |
---|
| 883 | |
---|
[3450] | 884 | /** |
---|
[6048] | 885 | * @brief displays some information about this pNode |
---|
[4836] | 886 | * @param depth The deph into which to debug the children of this PNode to. |
---|
[5383] | 887 | * (0: all children will be debugged, 1: only this PNode, 2: this and direct children, ...) |
---|
| 888 | * @param level !! INTERNAL !! The n-th level of the Node we draw (this is internal and only for nice output). |
---|
[5420] | 889 | */ |
---|
[5769] | 890 | void PNode::debugNode(unsigned int depth, unsigned int level) const |
---|
[3365] | 891 | { |
---|
[4574] | 892 | for (unsigned int i = 0; i < level; i++) |
---|
[4575] | 893 | PRINT(0)(" |"); |
---|
[5770] | 894 | if (this->children.size() > 0) |
---|
[4575] | 895 | PRINT(0)(" +"); |
---|
| 896 | else |
---|
| 897 | PRINT(0)(" -"); |
---|
[5769] | 898 | |
---|
| 899 | int childNodeCount = 0; |
---|
| 900 | this->countChildNodes(childNodeCount); |
---|
| 901 | |
---|
| 902 | PRINT(0)("PNode(%s::%s) - absCoord: (%0.2f, %0.2f, %0.2f), relCoord(%0.2f, %0.2f, %0.2f), direction(%0.2f, %0.2f, %0.2f) - %s - %d childs\n", |
---|
[4574] | 903 | this->getClassName(), |
---|
| 904 | this->getName(), |
---|
| 905 | this->absCoordinate.x, |
---|
| 906 | this->absCoordinate.y, |
---|
| 907 | this->absCoordinate.z, |
---|
| 908 | this->relCoordinate.x, |
---|
| 909 | this->relCoordinate.y, |
---|
[4993] | 910 | this->relCoordinate.z, |
---|
[4996] | 911 | this->getAbsDirV().x, |
---|
| 912 | this->getAbsDirV().y, |
---|
| 913 | this->getAbsDirV().z, |
---|
[5769] | 914 | this->parentingModeToChar(parentMode), |
---|
| 915 | childNodeCount); |
---|
[4574] | 916 | if (depth >= 2 || depth == 0) |
---|
| 917 | { |
---|
[5770] | 918 | list<PNode*>::const_iterator child; |
---|
| 919 | for (child = this->children.begin(); child != this->children.end(); child ++) |
---|
[4574] | 920 | { |
---|
| 921 | if (depth == 0) |
---|
[5770] | 922 | (*child)->debugNode(0, level + 1); |
---|
[4574] | 923 | else |
---|
[5770] | 924 | (*child)->debugNode(depth - 1, level +1); |
---|
[4574] | 925 | } |
---|
| 926 | } |
---|
[3365] | 927 | } |
---|
| 928 | |
---|
[4570] | 929 | /** |
---|
[6048] | 930 | * @brief displays the PNode at its position with its rotation as a cube. |
---|
[5383] | 931 | * @param depth The deph into which to debug the children of this PNode to. |
---|
| 932 | * (0: all children will be displayed, 1: only this PNode, 2: this and direct children, ...) |
---|
| 933 | * @param size the Size of the Box to draw. |
---|
| 934 | * @param color the color of the Box to display. |
---|
| 935 | * @param level !! INTERNAL !! The n-th level of the Node we draw (this is internal and only for nice output). |
---|
| 936 | */ |
---|
| 937 | void PNode::debugDraw(unsigned int depth, float size, const Vector& color, unsigned int level) const |
---|
[4570] | 938 | { |
---|
[5432] | 939 | // if this is the first Element we draw |
---|
[5383] | 940 | if (level == 0) |
---|
| 941 | { |
---|
[5432] | 942 | glPushAttrib(GL_ENABLE_BIT); // save the Enable-attributes |
---|
| 943 | glMatrixMode(GL_MODELVIEW); // goto the ModelView Matrix |
---|
[5383] | 944 | |
---|
[5432] | 945 | glDisable(GL_LIGHTING); // disable lighting (we do not need them for just lighting) |
---|
| 946 | glDisable(GL_BLEND); // '' |
---|
| 947 | glDisable(GL_TEXTURE_2D); // '' |
---|
[5438] | 948 | glDisable(GL_DEPTH_TEST); // '' |
---|
[5383] | 949 | } |
---|
| 950 | |
---|
[5432] | 951 | glPushMatrix(); // repush the Matrix-stack |
---|
[4570] | 952 | /* translate */ |
---|
| 953 | glTranslatef (this->getAbsCoor ().x, |
---|
| 954 | this->getAbsCoor ().y, |
---|
| 955 | this->getAbsCoor ().z); |
---|
[4998] | 956 | // this->getAbsDir ().matrix (matrix); |
---|
| 957 | |
---|
[5432] | 958 | /* rotate */ |
---|
[4998] | 959 | Vector tmpRot = this->getAbsDir().getSpacialAxis(); |
---|
[5432] | 960 | glRotatef (this->getAbsDir().getSpacialAxisAngle(), tmpRot.x, tmpRot.y, tmpRot.z ); |
---|
| 961 | /* set the new Color */ |
---|
[5008] | 962 | glColor3f(color.x, color.y, color.z); |
---|
[5432] | 963 | { /* draw a cube of size size */ |
---|
[4570] | 964 | glBegin(GL_LINE_STRIP); |
---|
[4995] | 965 | glVertex3f(-.5*size, -.5*size, -.5*size); |
---|
| 966 | glVertex3f(+.5*size, -.5*size, -.5*size); |
---|
| 967 | glVertex3f(+.5*size, -.5*size, +.5*size); |
---|
| 968 | glVertex3f(-.5*size, -.5*size, +.5*size); |
---|
| 969 | glVertex3f(-.5*size, -.5*size, -.5*size); |
---|
[4570] | 970 | glEnd(); |
---|
| 971 | glBegin(GL_LINE_STRIP); |
---|
[4995] | 972 | glVertex3f(-.5*size, +.5*size, -.5*size); |
---|
| 973 | glVertex3f(+.5*size, +.5*size, -.5*size); |
---|
| 974 | glVertex3f(+.5*size, +.5*size, +.5*size); |
---|
| 975 | glVertex3f(-.5*size, +.5*size, +.5*size); |
---|
| 976 | glVertex3f(-.5*size, +.5*size, -.5*size); |
---|
[4570] | 977 | glEnd(); |
---|
[4995] | 978 | |
---|
[4570] | 979 | glBegin(GL_LINES); |
---|
[4995] | 980 | glVertex3f(-.5*size, -.5*size, -.5*size); |
---|
| 981 | glVertex3f(-.5*size, +.5*size, -.5*size); |
---|
| 982 | glVertex3f(+.5*size, -.5*size, -.5*size); |
---|
| 983 | glVertex3f(+.5*size, +.5*size, -.5*size); |
---|
| 984 | glVertex3f(+.5*size, -.5*size, +.5*size); |
---|
| 985 | glVertex3f(+.5*size, +.5*size, +.5*size); |
---|
| 986 | glVertex3f(-.5*size, -.5*size, +.5*size); |
---|
| 987 | glVertex3f(-.5*size, +.5*size, +.5*size); |
---|
[4570] | 988 | glEnd(); |
---|
| 989 | } |
---|
| 990 | |
---|
| 991 | glPopMatrix(); |
---|
[5007] | 992 | if (depth >= 2 || depth == 0) |
---|
| 993 | { |
---|
[5432] | 994 | /* rotate the current color in HSV space around 20 degree */ |
---|
[5115] | 995 | Vector childColor = Color::HSVtoRGB(Color::RGBtoHSV(color)+Vector(20,0,.0)); |
---|
[5770] | 996 | list<PNode*>::const_iterator child; |
---|
| 997 | for (child = this->children.begin(); child != this->children.end(); child ++) |
---|
[5007] | 998 | { |
---|
[5394] | 999 | // drawing the Dependency graph |
---|
[6074] | 1000 | if (this != PNode::getNullParent()) |
---|
[5394] | 1001 | { |
---|
| 1002 | glBegin(GL_LINES); |
---|
| 1003 | glColor3f(color.x, color.y, color.z); |
---|
| 1004 | glVertex3f(this->getAbsCoor ().x, |
---|
| 1005 | this->getAbsCoor ().y, |
---|
| 1006 | this->getAbsCoor ().z); |
---|
| 1007 | glColor3f(childColor.x, childColor.y, childColor.z); |
---|
[5770] | 1008 | glVertex3f((*child)->getAbsCoor ().x, |
---|
| 1009 | (*child)->getAbsCoor ().y, |
---|
| 1010 | (*child)->getAbsCoor ().z); |
---|
[5394] | 1011 | glEnd(); |
---|
| 1012 | } |
---|
[5915] | 1013 | |
---|
[5432] | 1014 | /* if we want to draw the children too */ |
---|
| 1015 | if (depth == 0) /* -> all of them */ |
---|
[5770] | 1016 | (*child)->debugDraw(0, size, childColor, level+1); |
---|
[5432] | 1017 | else /* -> only the Next one */ |
---|
[5770] | 1018 | (*child)->debugDraw(depth - 1, size, childColor, level +1); |
---|
[5007] | 1019 | } |
---|
| 1020 | } |
---|
[5383] | 1021 | if (level == 0) |
---|
[5432] | 1022 | glPopAttrib(); /* pop the saved attributes back out */ |
---|
[4570] | 1023 | } |
---|
[4993] | 1024 | |
---|
| 1025 | |
---|
| 1026 | |
---|
| 1027 | ///////////////////// |
---|
| 1028 | // HELPER_FUCTIONS // |
---|
| 1029 | ///////////////////// |
---|
| 1030 | |
---|
| 1031 | /** |
---|
[6048] | 1032 | * @brief converts a parentingMode into a string that is the name of it |
---|
[4993] | 1033 | * @param parentingMode the ParentingMode to convert |
---|
| 1034 | * @return the converted string |
---|
| 1035 | */ |
---|
| 1036 | const char* PNode::parentingModeToChar(int parentingMode) |
---|
| 1037 | { |
---|
| 1038 | if (parentingMode == PNODE_LOCAL_ROTATE) |
---|
| 1039 | return "local-rotate"; |
---|
| 1040 | else if (parentingMode == PNODE_ROTATE_MOVEMENT) |
---|
| 1041 | return "rotate-movement"; |
---|
| 1042 | else if (parentingMode == PNODE_MOVEMENT) |
---|
| 1043 | return "movement"; |
---|
| 1044 | else if (parentingMode == PNODE_ALL) |
---|
| 1045 | return "all"; |
---|
| 1046 | else if (parentingMode == PNODE_ROTATE_AND_MOVE) |
---|
| 1047 | return "rotate-and-move"; |
---|
| 1048 | } |
---|
| 1049 | |
---|
| 1050 | /** |
---|
[6048] | 1051 | * @brief converts a parenting-mode-string into a int |
---|
[4993] | 1052 | * @param parentingMode the string naming the parentingMode |
---|
| 1053 | * @return the int corresponding to the named parentingMode |
---|
| 1054 | */ |
---|
| 1055 | PARENT_MODE PNode::charToParentingMode(const char* parentingMode) |
---|
| 1056 | { |
---|
| 1057 | if (!strcmp(parentingMode, "local-rotate")) |
---|
| 1058 | return (PNODE_LOCAL_ROTATE); |
---|
| 1059 | else if (!strcmp(parentingMode, "rotate-movement")) |
---|
| 1060 | return (PNODE_ROTATE_MOVEMENT); |
---|
| 1061 | else if (!strcmp(parentingMode, "movement")) |
---|
| 1062 | return (PNODE_MOVEMENT); |
---|
| 1063 | else if (!strcmp(parentingMode, "all")) |
---|
| 1064 | return (PNODE_ALL); |
---|
| 1065 | else if (!strcmp(parentingMode, "rotate-and-move")) |
---|
| 1066 | return (PNODE_ROTATE_AND_MOVE); |
---|
| 1067 | } |
---|
[6341] | 1068 | |
---|
| 1069 | /** |
---|
| 1070 | * Writes data from network containing information about the state |
---|
| 1071 | * @param data pointer to data |
---|
| 1072 | * @param length length of data |
---|
| 1073 | * @param sender hostID of sender |
---|
| 1074 | */ |
---|
| 1075 | int PNode::writeState( const byte * data, int length, int sender ) |
---|
| 1076 | { |
---|
| 1077 | SYNCHELP_READ_BEGIN(); |
---|
| 1078 | |
---|
| 1079 | SYNCHELP_READ_FKT( BaseObject::writeState ); |
---|
| 1080 | |
---|
[6695] | 1081 | // char * parentName = NULL; |
---|
| 1082 | // SYNCHELP_READ_STRINGM( parentName ); |
---|
| 1083 | // |
---|
| 1084 | // if ( strcmp(parentName, "")==0 ) |
---|
| 1085 | // { |
---|
| 1086 | // setParent( (char*)NULL ); |
---|
| 1087 | // } |
---|
| 1088 | // else |
---|
| 1089 | // { |
---|
| 1090 | // setParent( parentName ); |
---|
| 1091 | // } |
---|
| 1092 | // |
---|
| 1093 | // delete[] parentName; |
---|
[6341] | 1094 | |
---|
| 1095 | int parentMode; |
---|
| 1096 | SYNCHELP_READ_INT( parentMode ); |
---|
| 1097 | this->setParentMode((PARENT_MODE)parentMode); |
---|
| 1098 | |
---|
| 1099 | float f1, f2, f3, f4; |
---|
| 1100 | |
---|
| 1101 | SYNCHELP_READ_FLOAT( f1 ); |
---|
| 1102 | SYNCHELP_READ_FLOAT( f2 ); |
---|
| 1103 | SYNCHELP_READ_FLOAT( f3 ); |
---|
| 1104 | this->setRelCoor( f1, f2, f3 ); |
---|
| 1105 | |
---|
| 1106 | |
---|
| 1107 | SYNCHELP_READ_FLOAT( f1 ); |
---|
| 1108 | SYNCHELP_READ_FLOAT( f2 ); |
---|
| 1109 | SYNCHELP_READ_FLOAT( f3 ); |
---|
| 1110 | SYNCHELP_READ_FLOAT( f4 ); |
---|
| 1111 | this->setRelDir( Quaternion( Vector(f2, f3, f4), f1 ) ); |
---|
| 1112 | |
---|
[6695] | 1113 | // int n; |
---|
| 1114 | // char * childName; |
---|
| 1115 | // |
---|
| 1116 | // PRINTF(0)("JKLO %d %d %d %d\n", data[__synchelp_read_i], data[__synchelp_read_i+1], data[__synchelp_read_i+2], data[__synchelp_read_i+3]); |
---|
| 1117 | // SYNCHELP_READ_INT( n ); |
---|
| 1118 | // PRINTF(0)("read %s:n=%d\n", this->getName(), n); |
---|
| 1119 | // |
---|
| 1120 | // for (int i = 0; i<n; i++) |
---|
| 1121 | // { |
---|
| 1122 | // SYNCHELP_READ_STRINGM( childName ); |
---|
| 1123 | // PRINTF(0)("RCVD CHILD = %s\n", childName); |
---|
| 1124 | // addChild( childName ); |
---|
| 1125 | // delete childName; |
---|
| 1126 | // childName = NULL; |
---|
| 1127 | // } |
---|
[6341] | 1128 | |
---|
| 1129 | return SYNCHELP_READ_N; |
---|
| 1130 | } |
---|
| 1131 | |
---|
| 1132 | /** |
---|
| 1133 | * data copied in data will bee sent to another host |
---|
| 1134 | * @param data pointer to data |
---|
| 1135 | * @param maxLength max length of data |
---|
| 1136 | * @return the number of bytes writen |
---|
| 1137 | */ |
---|
| 1138 | int PNode::readState( byte * data, int maxLength ) |
---|
| 1139 | { |
---|
| 1140 | SYNCHELP_WRITE_BEGIN(); |
---|
| 1141 | |
---|
| 1142 | SYNCHELP_WRITE_FKT( BaseObject::readState ); |
---|
| 1143 | |
---|
[6695] | 1144 | // if ( this->parent ) |
---|
| 1145 | // { |
---|
| 1146 | // SYNCHELP_WRITE_STRING( parent->getName() ); |
---|
| 1147 | // } |
---|
| 1148 | // else |
---|
| 1149 | // { |
---|
| 1150 | // SYNCHELP_WRITE_STRING( "" ); |
---|
| 1151 | // } |
---|
[6341] | 1152 | |
---|
| 1153 | SYNCHELP_WRITE_INT( this->parentMode ); |
---|
| 1154 | |
---|
| 1155 | SYNCHELP_WRITE_FLOAT( this->relCoordinate.x ); |
---|
| 1156 | SYNCHELP_WRITE_FLOAT( this->relCoordinate.y ); |
---|
| 1157 | SYNCHELP_WRITE_FLOAT( this->relCoordinate.z ); |
---|
| 1158 | |
---|
| 1159 | SYNCHELP_WRITE_FLOAT( this->relDirection.w ); |
---|
| 1160 | SYNCHELP_WRITE_FLOAT( this->relDirection.v.x ); |
---|
| 1161 | SYNCHELP_WRITE_FLOAT( this->relDirection.v.y ); |
---|
| 1162 | SYNCHELP_WRITE_FLOAT( this->relDirection.v.z ); |
---|
| 1163 | |
---|
[6695] | 1164 | // int n = children.size(); |
---|
| 1165 | // //check if camera is in children |
---|
| 1166 | // for (std::list<PNode*>::const_iterator it = children.begin(); it!=children.end(); it++) |
---|
| 1167 | // { |
---|
| 1168 | // if ( (*it)->isA(CL_CAMERA) ) |
---|
| 1169 | // n--; |
---|
| 1170 | // } |
---|
| 1171 | // PRINTF(0)("write %s:n=%d\n", this->getName(), n); |
---|
| 1172 | // SYNCHELP_WRITE_INT( n ); |
---|
| 1173 | // PRINTF(0)("ASDF %d %d %d %d\n", data[__synchelp_write_i-4], data[__synchelp_write_i-3], data[__synchelp_write_i-2], data[__synchelp_write_i-1]); |
---|
| 1174 | // |
---|
| 1175 | // |
---|
| 1176 | // for (std::list<PNode*>::const_iterator it = children.begin(); it!=children.end(); it++) |
---|
| 1177 | // { |
---|
| 1178 | // //dont add camera because there is only one camera attached to local player |
---|
| 1179 | // if ( !(*it)->isA(CL_CAMERA) ) |
---|
| 1180 | // { |
---|
| 1181 | // PRINTF(0)("SENDING CHILD: %s\n", (*it)->getName()); |
---|
| 1182 | // SYNCHELP_WRITE_STRING( (*it)->getName() ); |
---|
| 1183 | // } |
---|
| 1184 | // } |
---|
[6341] | 1185 | |
---|
| 1186 | return SYNCHELP_WRITE_N; |
---|
| 1187 | } |
---|
[6634] | 1188 | |
---|
| 1189 | #define __FLAG_COOR 1 |
---|
| 1190 | #define __FLAG_ROT 2 |
---|
| 1191 | |
---|
| 1192 | #define __OFFSET_POS 1 |
---|
| 1193 | #define __OFFSET_ROT 0.05 |
---|
| 1194 | |
---|
| 1195 | /** |
---|
| 1196 | * Writes data from network containing information about the state which has changed |
---|
| 1197 | * @param data pointer to data |
---|
| 1198 | * @param length length of data |
---|
| 1199 | * @param sender hostID of sender |
---|
| 1200 | */ |
---|
| 1201 | int PNode::writeSync( const byte * data, int length, int sender ) |
---|
| 1202 | { |
---|
| 1203 | SYNCHELP_READ_BEGIN(); |
---|
| 1204 | |
---|
| 1205 | if ( this->getHostID()==this->getOwner() ) |
---|
| 1206 | { |
---|
| 1207 | return SYNCHELP_READ_N; |
---|
| 1208 | } |
---|
| 1209 | |
---|
| 1210 | byte flags = 0; |
---|
| 1211 | SYNCHELP_READ_BYTE( flags ); |
---|
| 1212 | //PRINTF(0)("%s::FLAGS = %d\n", this->getName(), flags); |
---|
| 1213 | |
---|
| 1214 | float f1, f2, f3, f4; |
---|
| 1215 | |
---|
| 1216 | if ( flags & __FLAG_COOR ) |
---|
| 1217 | { |
---|
| 1218 | SYNCHELP_READ_FLOAT( f1 ); |
---|
| 1219 | SYNCHELP_READ_FLOAT( f2 ); |
---|
| 1220 | SYNCHELP_READ_FLOAT( f3 ); |
---|
| 1221 | PRINTF(0)("RCVD COOR: %f %f %f\n", f1, f2, f3); |
---|
| 1222 | this->setRelCoor( f1, f2, f3 ); |
---|
| 1223 | } |
---|
| 1224 | |
---|
| 1225 | if ( flags & __FLAG_ROT ) |
---|
| 1226 | { |
---|
| 1227 | SYNCHELP_READ_FLOAT( f1 ); |
---|
| 1228 | SYNCHELP_READ_FLOAT( f2 ); |
---|
| 1229 | SYNCHELP_READ_FLOAT( f3 ); |
---|
| 1230 | SYNCHELP_READ_FLOAT( f4 ); |
---|
| 1231 | PRINTF(0)("RCVD QUAT: %f %f %f %f\n", f1, f2, f3, f4); |
---|
| 1232 | //this->setRelDir( Quaternion( Vector(f2, f3, f4), f1 ) ); |
---|
| 1233 | Quaternion q; |
---|
| 1234 | q.w = f1; |
---|
| 1235 | q.v.x = f2; |
---|
| 1236 | q.v.y = f3; |
---|
| 1237 | q.v.z = f4; |
---|
| 1238 | this->setAbsDir( q ); |
---|
| 1239 | } |
---|
| 1240 | |
---|
| 1241 | return SYNCHELP_READ_N; |
---|
| 1242 | } |
---|
| 1243 | |
---|
| 1244 | /** |
---|
| 1245 | * data copied in data will bee sent to another host |
---|
| 1246 | * @param data pointer to data |
---|
| 1247 | * @param maxLength max length of data |
---|
| 1248 | * @return the number of bytes writen |
---|
| 1249 | */ |
---|
| 1250 | int PNode::readSync( byte * data, int maxLength ) |
---|
| 1251 | { |
---|
| 1252 | SYNCHELP_WRITE_BEGIN(); |
---|
| 1253 | |
---|
| 1254 | if ( this->getHostID()!=this->getOwner() ) |
---|
| 1255 | { |
---|
| 1256 | return SYNCHELP_WRITE_N; |
---|
| 1257 | } |
---|
| 1258 | |
---|
| 1259 | byte flags = 0; |
---|
| 1260 | if ( fabs( coorx - relCoordinate.x ) > __OFFSET_POS || |
---|
| 1261 | fabs( coory - relCoordinate.y ) > __OFFSET_POS || |
---|
| 1262 | fabs( coorz - relCoordinate.z ) > __OFFSET_POS ) |
---|
| 1263 | flags |= __FLAG_COOR; |
---|
| 1264 | |
---|
| 1265 | if ( fabs( rotw - absDirection.w ) > __OFFSET_ROT || |
---|
| 1266 | fabs( rotx - absDirection.v.x ) > __OFFSET_ROT || |
---|
| 1267 | fabs( roty - absDirection.v.y ) > __OFFSET_ROT || |
---|
| 1268 | fabs( rotz - absDirection.v.z ) > __OFFSET_ROT ) |
---|
| 1269 | flags |= __FLAG_ROT; |
---|
| 1270 | |
---|
| 1271 | |
---|
| 1272 | SYNCHELP_WRITE_BYTE( flags ); |
---|
| 1273 | //PRINTF(0)("FLAGS = %d\n", flags); |
---|
| 1274 | |
---|
| 1275 | if ( flags & __FLAG_COOR ) |
---|
| 1276 | { |
---|
| 1277 | |
---|
| 1278 | PRINTF(0)("SEND COOR: %f %f %f\n", this->relCoordinate.x, this->relCoordinate.y, this->relCoordinate.z); |
---|
| 1279 | |
---|
| 1280 | SYNCHELP_WRITE_FLOAT( this->relCoordinate.x ); |
---|
| 1281 | SYNCHELP_WRITE_FLOAT( this->relCoordinate.y ); |
---|
| 1282 | SYNCHELP_WRITE_FLOAT( this->relCoordinate.z ); |
---|
| 1283 | |
---|
| 1284 | coorx = relCoordinate.x; |
---|
| 1285 | coory = relCoordinate.y; |
---|
| 1286 | coorz = relCoordinate.z; |
---|
| 1287 | } |
---|
| 1288 | |
---|
| 1289 | if ( flags & __FLAG_ROT ) |
---|
| 1290 | { |
---|
| 1291 | |
---|
| 1292 | PRINTF(0)("SEND QUAT: %f %f %f %f\n", this->absDirection.w, this->absDirection.v.x, this->absDirection.v.y, this->absDirection.v.z); |
---|
| 1293 | |
---|
| 1294 | SYNCHELP_WRITE_FLOAT( this->absDirection.w ); |
---|
| 1295 | SYNCHELP_WRITE_FLOAT( this->absDirection.v.x ); |
---|
| 1296 | SYNCHELP_WRITE_FLOAT( this->absDirection.v.y ); |
---|
| 1297 | SYNCHELP_WRITE_FLOAT( this->absDirection.v.z ); |
---|
| 1298 | |
---|
| 1299 | rotw = absDirection.w; |
---|
| 1300 | rotx = absDirection.v.x; |
---|
| 1301 | roty = absDirection.v.y; |
---|
| 1302 | rotz = absDirection.v.z; |
---|
| 1303 | } |
---|
| 1304 | |
---|
| 1305 | return SYNCHELP_WRITE_N; |
---|
| 1306 | } |
---|