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1 #include <assert.h>
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2 #include <algorithm>
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3 #include "xform_node.h"
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4 #include "anim/anim.h"
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5 #include "anim/track.h"
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6
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7 using namespace goatgfx;
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8
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9 static inline anm_interpolator track_interpolator(Interp in);
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10 static inline anm_extrapolator track_extrapolator(Extrap ex);
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11
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12 XFormNode::XFormNode()
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13 {
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14 anm = new anm_node;
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15 anm_init_node(anm);
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16 parent = 0;
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17
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18 // TODO read them from anm to get the correct initial values
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19 interp = INTERP_LINEAR;
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20 extrap = EXTRAP_EXTEND;
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21 }
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22
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23 XFormNode::~XFormNode()
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24 {
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25 anm_destroy_node(anm);
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26 delete anm;
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27 }
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28
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29 void XFormNode::set_name(const char *name)
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30 {
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31 anm_set_node_name(anm, name);
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32 }
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33
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34 const char *XFormNode::get_name() const
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35 {
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36 return anm_get_node_name(anm);
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37 }
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38
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39 void XFormNode::set_interpolator(Interp in)
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40 {
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41 anm_set_interpolator(anm, track_interpolator(in));
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42 interp = in;
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43 }
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44
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45 Interp XFormNode::get_interpolator() const
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46 {
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47 return interp;
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48 }
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49
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50 void XFormNode::set_extrapolator(Extrap ex)
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51 {
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52 anm_set_extrapolator(anm, track_extrapolator(ex));
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53 extrap = ex;
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54 }
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55
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56 Extrap XFormNode::get_extrapolator() const
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57 {
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58 return extrap;
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59 }
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60
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61 XFormNode *XFormNode::get_parent()
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62 {
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63 return parent;
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64 }
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65
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66 const XFormNode *XFormNode::get_parent() const
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67 {
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68 return parent;
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69 }
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70
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71 void XFormNode::add_child(XFormNode *child)
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72 {
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73 children.push_back(child);
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74 anm_link_node(anm, child->anm);
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75 child->parent = this;
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76 }
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77
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78 void XFormNode::remove_child(XFormNode *child)
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79 {
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80 std::vector<XFormNode*>::iterator it;
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81 it = std::find(children.begin(), children.end(), child);
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82 if(it != children.end()) {
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83 children.erase(it);
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84 anm_unlink_node(anm, child->anm);
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85
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86 if(child->parent == this) {
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87 child->parent = 0;
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88 }
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89 }
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90 }
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91
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92 int XFormNode::get_children_count() const
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93 {
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94 return (int)children.size();
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95 }
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96
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97 XFormNode *XFormNode::get_child(int idx)
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98 {
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99 if(idx >= 0 && idx < get_children_count()) {
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100 return children[idx];
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101 }
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102 return 0;
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103 }
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104
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105 const XFormNode *XFormNode::get_child(int idx) const
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106 {
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107 if(idx >= 0 && idx < get_children_count()) {
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108 return children[idx];
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109 }
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110 return 0;
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111 }
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112
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113
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114 void XFormNode::use_animation(int idx)
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115 {
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116 if(idx >= 0) {
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117 anm_use_animation(anm, idx);
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118 }
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119 }
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120
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121 void XFormNode::use_animation(const char *name)
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122 {
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123 anm_use_animation(anm, anm_find_animation(anm, name));
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124 }
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125
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126 void XFormNode::use_animation(int aidx, int bidx, float t)
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127 {
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128 anm_use_animations(anm, aidx, bidx, t);
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129 }
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130
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131 void XFormNode::use_animation(const char *aname, const char *bname, float t)
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132 {
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133 int aidx = anm_find_animation(anm, aname);
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134 int bidx = anm_find_animation(anm, bname);
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135
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136 if(aidx == -1) {
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137 use_animation(bidx);
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138 }
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139 if(bidx == -1) {
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140 use_animation(aidx);
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141 }
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142 anm_use_animations(anm, aidx, bidx, t);
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143 }
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144
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145 int XFormNode::get_active_animation_index(int which) const
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146 {
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147 return anm_get_active_animation_index(anm, which);
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148 }
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149
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150 float XFormNode::get_active_animation_mix() const
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151 {
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152 return anm_get_active_animation_mix(anm);
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153 }
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154
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155 int XFormNode::get_animation_count() const
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156 {
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157 return anm_get_animation_count(anm);
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158 }
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159
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160 void XFormNode::add_animation(const char *name)
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161 {
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162 int idx = get_animation_count();
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163
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164 anm_add_animation(anm);
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165 use_animation(idx);
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166
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167 if(name) {
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168 set_animation_name(name);
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169 }
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170 }
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171
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172 void XFormNode::set_animation_name(const char *name)
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173 {
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174 anm_set_active_animation_name(anm, name);
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175 }
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176
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177 const char *XFormNode::get_animation_name() const
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178 {
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179 return anm_get_active_animation_name(anm);
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180 }
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181
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182
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183
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184 void XFormNode::set_position(const Vector3 &pos, long tmsec)
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185 {
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186 anm_set_position(anm, v3_cons(pos.x, pos.y, pos.z), ANM_MSEC2TM(tmsec));
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187 }
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188
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189 Vector3 XFormNode::get_node_position(long tmsec) const
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190 {
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191 vec3_t p = anm_get_node_position(anm, ANM_MSEC2TM(tmsec));
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192 return Vector3(p.x, p.y, p.z);
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193 }
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194
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195 void XFormNode::set_rotation(const Quaternion &quat, long tmsec)
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196 {
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197 anm_set_rotation(anm, quat_cons(quat.s, quat.v.x, quat.v.y, quat.v.z), ANM_MSEC2TM(tmsec));
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198 }
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199
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200 Quaternion XFormNode::get_node_rotation(long tmsec) const
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201 {
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202 quat_t q = anm_get_node_rotation(anm, ANM_MSEC2TM(tmsec));
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203 return Quaternion(q.w, q.x, q.y, q.z);
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204 }
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205
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206 void XFormNode::set_scaling(const Vector3 &pos, long tmsec)
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207 {
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208 anm_set_scaling(anm, v3_cons(pos.x, pos.y, pos.z), ANM_MSEC2TM(tmsec));
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209 }
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210
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211 Vector3 XFormNode::get_node_scaling(long tmsec) const
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212 {
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213 vec3_t s = anm_get_node_scaling(anm, ANM_MSEC2TM(tmsec));
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214 return Vector3(s.x, s.y, s.z);
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215 }
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216
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217 // these take hierarchy into account
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218 Vector3 XFormNode::get_position(long tmsec) const
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219 {
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220 vec3_t v = anm_get_position(anm, ANM_MSEC2TM(tmsec));
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221 return Vector3(v.x, v.y, v.z);
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222 }
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223
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224 Quaternion XFormNode::get_rotation(long tmsec) const
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225 {
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226 quat_t q = anm_get_rotation(anm, tmsec);
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227 return Quaternion(q.w, q.x, q.y, q.z);
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228 }
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229
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230 Vector3 XFormNode::get_scaling(long tmsec) const
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231 {
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232 vec3_t v = anm_get_scaling(anm, ANM_MSEC2TM(tmsec));
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233 return Vector3(v.x, v.y, v.z);
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234 }
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235
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236 void XFormNode::set_pivot(const Vector3 &pivot)
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237 {
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238 anm_set_pivot(anm, v3_cons(pivot.x, pivot.y, pivot.z));
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239 }
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240
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241 Vector3 XFormNode::get_pivot() const
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242 {
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243 vec3_t p = anm_get_pivot(anm);
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244 return Vector3(p.x, p.y, p.z);
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245 }
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246
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247 void XFormNode::set_local_matrix(const Matrix4x4 &mat)
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248 {
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249 local_matrix = mat;
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250 }
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251
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252 const Matrix4x4 &XFormNode::get_local_matrix() const
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253 {
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254 return local_matrix;
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255 }
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256
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257 void XFormNode::set_bone_matrix(const Matrix4x4 &bmat)
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258 {
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259 bone_matrix = bmat;
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260 }
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261
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262 const Matrix4x4 &XFormNode::get_bone_matrix() const
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263 {
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264 return bone_matrix;
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265 }
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266
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267 #define FOO
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268
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269 void XFormNode::get_node_xform(long tmsec, Matrix4x4 *mat, Matrix4x4 *inv_mat) const
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270 {
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271 anm_time_t tm = ANM_MSEC2TM(tmsec);
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272
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273 if(mat) {
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274 anm_get_node_matrix(anm, (scalar_t(*)[4])mat, tm);
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275 #ifdef FOO
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276 *mat = local_matrix * *mat;
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277 #else
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278 *mat = *mat * local_matrix;
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279 #endif
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280 }
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281 if(inv_mat) {
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282 anm_get_inv_matrix(anm, (scalar_t(*)[4])inv_mat, tm);
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283 }
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284 }
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285
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286 void XFormNode::get_xform(long tmsec, Matrix4x4 *mat, Matrix4x4 *inv_mat) const
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287 {
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288 anm_time_t tm = ANM_MSEC2TM(tmsec);
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289
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290 if(mat) {
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291 anm_get_matrix(anm, (scalar_t(*)[4])mat, tm);
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292 #ifdef FOO
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293 *mat = local_matrix * *mat;
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294 #else
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295 *mat = *mat * local_matrix;
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296 #endif
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297 }
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298 if(inv_mat) {
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299 anm_get_inv_matrix(anm, (scalar_t(*)[4])inv_mat, tm);
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300 }
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301 }
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302
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303
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304 // ---- Track ----
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305
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306 Track::Track()
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307 {
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308 trk = new anm_track;
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309 anm_init_track(trk);
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310 }
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311
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312 Track::~Track()
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313 {
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314 anm_destroy_track(trk);
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315 delete trk;
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316 }
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317
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318 Track::Track(const Track &rhs)
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319 {
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320 trk = new anm_track;
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321 anm_init_track(trk);
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322 anm_copy_track(trk, rhs.trk);
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323 interp = rhs.interp;
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324 extrap = rhs.extrap;
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325 }
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326
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327 Track &Track::operator =(const Track &rhs)
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328 {
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329 if(&rhs == this) {
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330 return *this;
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331 }
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332
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333 anm_copy_track(trk, rhs.trk);
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334 interp = rhs.interp;
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335 extrap = rhs.extrap;
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336 return *this;
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337 }
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338
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339
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340 void Track::set_interpolator(Interp in)
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341 {
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342 anm_set_track_interpolator(trk, track_interpolator(in));
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343 interp = in;
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344 }
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345
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346 Interp Track::get_interpolator() const
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347 {
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348 return interp;
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349 }
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350
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351 void Track::set_extrapolator(Extrap ex)
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352 {
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353 anm_set_track_extrapolator(trk, track_extrapolator(ex));
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354 extrap = ex;
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355 }
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356
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357 Extrap Track::get_extrapolator() const
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358 {
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359 return extrap;
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360 }
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361
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362 void Track::set_default(double def)
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363 {
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364 anm_set_track_default(trk, def);
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365 }
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366
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367 void Track::set_value(float val, long tmsec)
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368 {
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369 anm_set_value(trk, ANM_MSEC2TM(tmsec), val);
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370 }
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371
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372 float Track::get_value(long tmsec) const
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373 {
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374 return anm_get_value(trk, ANM_MSEC2TM(tmsec));
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375 }
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376
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377 float Track::operator ()(long tmsec) const
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378 {
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379 return anm_get_value(trk, ANM_MSEC2TM(tmsec));
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380 }
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381
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382
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383 // ---- Track3 ----
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384
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385 void Track3::set_interpolator(Interp in)
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386 {
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387 for(int i=0; i<3; i++) {
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388 track[i].set_interpolator(in);
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389 }
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390 }
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391
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392 Interp Track3::get_interpolator() const
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393 {
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394 return track[0].get_interpolator();
|
nuclear@0
|
395 }
|
nuclear@0
|
396
|
nuclear@0
|
397 void Track3::set_extrapolator(Extrap ex)
|
nuclear@0
|
398 {
|
nuclear@0
|
399 for(int i=0; i<3; i++) {
|
nuclear@0
|
400 track[i].set_extrapolator(ex);
|
nuclear@0
|
401 }
|
nuclear@0
|
402 }
|
nuclear@0
|
403
|
nuclear@0
|
404 Extrap Track3::get_extrapolator() const
|
nuclear@0
|
405 {
|
nuclear@0
|
406 return track[0].get_extrapolator();
|
nuclear@0
|
407 }
|
nuclear@0
|
408
|
nuclear@0
|
409 void Track3::set_default(const Vector3 &def)
|
nuclear@0
|
410 {
|
nuclear@0
|
411 for(int i=0; i<3; i++) {
|
nuclear@0
|
412 track[i].set_default(def[i]);
|
nuclear@0
|
413 }
|
nuclear@0
|
414 }
|
nuclear@0
|
415
|
nuclear@0
|
416 void Track3::set_value(const Vector3 &val, long tmsec)
|
nuclear@0
|
417 {
|
nuclear@0
|
418 for(int i=0; i<3; i++) {
|
nuclear@0
|
419 track[i].set_value(val[i], tmsec);
|
nuclear@0
|
420 }
|
nuclear@0
|
421 }
|
nuclear@0
|
422
|
nuclear@0
|
423 Vector3 Track3::get_value(long tmsec) const
|
nuclear@0
|
424 {
|
nuclear@0
|
425 return Vector3(track[0](tmsec), track[1](tmsec), track[2](tmsec));
|
nuclear@0
|
426 }
|
nuclear@0
|
427
|
nuclear@0
|
428 Vector3 Track3::operator ()(long tmsec) const
|
nuclear@0
|
429 {
|
nuclear@0
|
430 return Vector3(track[0](tmsec), track[1](tmsec), track[2](tmsec));
|
nuclear@0
|
431 }
|
nuclear@0
|
432
|
nuclear@0
|
433
|
nuclear@0
|
434 static inline anm_interpolator track_interpolator(Interp in)
|
nuclear@0
|
435 {
|
nuclear@0
|
436 switch(in) {
|
nuclear@0
|
437 case INTERP_STEP:
|
nuclear@0
|
438 return ANM_INTERP_STEP;
|
nuclear@0
|
439 case INTERP_LINEAR:
|
nuclear@0
|
440 return ANM_INTERP_LINEAR;
|
nuclear@0
|
441 case INTERP_CUBIC:
|
nuclear@0
|
442 return ANM_INTERP_CUBIC;
|
nuclear@0
|
443 }
|
nuclear@0
|
444
|
nuclear@0
|
445 assert(0);
|
nuclear@0
|
446 return ANM_INTERP_STEP;
|
nuclear@0
|
447 }
|
nuclear@0
|
448
|
nuclear@0
|
449 static inline anm_extrapolator track_extrapolator(Extrap ex)
|
nuclear@0
|
450 {
|
nuclear@0
|
451 switch(ex) {
|
nuclear@0
|
452 case EXTRAP_EXTEND:
|
nuclear@0
|
453 return ANM_EXTRAP_EXTEND;
|
nuclear@0
|
454 case EXTRAP_CLAMP:
|
nuclear@0
|
455 return ANM_EXTRAP_CLAMP;
|
nuclear@0
|
456 case EXTRAP_REPEAT:
|
nuclear@0
|
457 return ANM_EXTRAP_REPEAT;
|
nuclear@0
|
458 }
|
nuclear@0
|
459
|
nuclear@0
|
460 assert(0);
|
nuclear@0
|
461 return ANM_EXTRAP_EXTEND;
|
nuclear@0
|
462 }
|
nuclear@0
|
463
|