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| Rev | Author | Line No. | Line |
|---|---|---|---|
| 1 | pmbaty | 1 | #include "finteray.h" |
| 18 | pmbaty | 2 | #include "brender.h" |
| 1 | pmbaty | 3 | #include "brucetrk.h" |
| 4 | #include "car.h" |
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| 18 | pmbaty | 5 | #include "formats.h" |
| 1 | pmbaty | 6 | #include "globvars.h" |
| 7 | #include "harness/trace.h" |
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| 8 | #include "raycast.h" |
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| 9 | #include "world.h" |
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| 10 | #include <math.h> |
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| 11 | #include <stdlib.h> |
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| 12 | |||
| 13 | int gPling_materials = 1; |
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| 14 | br_material* gSub_material; |
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| 15 | br_material* gReal_material; |
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| 16 | int gNfaces; |
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| 17 | br_matrix34 gPick_model_to_view__finteray; // suffix added to avoid duplicate symbol |
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| 18 | int gTemp_group; |
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| 19 | br_model* gNearest_model; |
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| 20 | br_model* gSelected_model; |
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| 21 | int gNearest_face_group; |
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| 22 | int gNearest_face; |
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| 23 | br_scalar gNearest_T; |
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| 24 | tFace_ref* gPling_face; |
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| 25 | |||
| 26 | // IDA: int __cdecl BadDiv(br_scalar a, br_scalar b) |
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| 27 | // Suffix added to avoid duplicate symbol |
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| 28 | int BadDiv__finteray(br_scalar a, br_scalar b) { |
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| 29 | // LOG_TRACE("(%f, %f)", a, b); |
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| 30 | |||
| 31 | return fabsf(b) < 1.0f && fabsf(a) > fabsf(b) * BR_SCALAR_MAX; |
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| 32 | } |
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| 33 | |||
| 34 | // IDA: void __usercall DRVector2AccumulateScale(br_vector2 *a@<EAX>, br_vector2 *b@<EDX>, br_scalar s) |
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| 35 | // Suffix added to avoid duplicate symbol |
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| 36 | void DRVector2AccumulateScale__finteray(br_vector2* a, br_vector2* b, br_scalar s) { |
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| 37 | LOG_TRACE("(%p, %p, %f)", a, b, s); |
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| 38 | |||
| 39 | a->v[0] = b->v[0] * s + a->v[0]; |
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| 40 | a->v[1] = b->v[1] * s + a->v[1]; |
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| 41 | } |
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| 42 | |||
| 43 | // IDA: int __usercall PickBoundsTestRay@<EAX>(br_bounds *b@<EAX>, br_vector3 *rp@<EDX>, br_vector3 *rd@<EBX>, br_scalar t_near, br_scalar t_far, br_scalar *new_t_near, br_scalar *new_t_far) |
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| 44 | // Suffix added to avoid duplicate symbol |
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| 45 | int PickBoundsTestRay__finteray(br_bounds* b, br_vector3* rp, br_vector3* rd, br_scalar t_near, br_scalar t_far, br_scalar* new_t_near, br_scalar* new_t_far) { |
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| 46 | int i; |
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| 47 | float s; |
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| 48 | float t; |
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| 49 | LOG_TRACE("(%p, %p, %p, %f, %f, %p, %p)", b, rp, rd, t_near, t_far, new_t_near, new_t_far); |
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| 50 | |||
| 51 | for (i = 0; i < 3; i++) { |
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| 52 | if (rd->v[i] >= -0.00000023841858) { |
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| 53 | if (rd->v[i] <= 0.00000023841858) { |
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| 54 | if (b->max.v[i] < rp->v[i] || rp->v[i] < b->min.v[i]) { |
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| 55 | return 0; |
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| 56 | } |
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| 57 | } else { |
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| 58 | s = (-1.0f / rd->v[i]) * (rp->v[i] - b->max.v[i]); |
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| 59 | if (s >= BR_SCALAR_MIN) { |
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| 60 | if (s < t_far) { |
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| 61 | t_far = (-1.0f / rd->v[i]) * (rp->v[i] - b->max.v[i]); |
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| 62 | } |
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| 63 | } else { |
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| 64 | t_far = BR_SCALAR_MIN; |
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| 65 | } |
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| 66 | t = (-1.0f / rd->v[i]) * (rp->v[i] - b->min.v[i]); |
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| 67 | if (t <= BR_SCALAR_MAX) { |
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| 68 | if (t > t_near) { |
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| 69 | t_near = (-1.0f / rd->v[i]) * (rp->v[i] - b->min.v[i]); |
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| 70 | } |
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| 71 | } else { |
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| 72 | t_near = BR_SCALAR_MAX; |
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| 73 | } |
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| 74 | } |
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| 75 | } else { |
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| 76 | s = (-1.0f / rd->v[i]) * (rp->v[i] - b->max.v[i]); |
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| 77 | if (s <= BR_SCALAR_MAX) { |
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| 78 | if (s > t_near) { |
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| 79 | t_near = (-1.0f / rd->v[i]) * (rp->v[i] - b->max.v[i]); |
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| 80 | } |
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| 81 | } else { |
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| 82 | t_near = BR_SCALAR_MAX; |
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| 83 | } |
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| 84 | t = (-1.0f / rd->v[i]) * (rp->v[i] - b->min.v[i]); |
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| 85 | if (t >= BR_SCALAR_MIN) { |
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| 86 | if (t < t_far) { |
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| 87 | t_far = (-1.0f / rd->v[i]) * (rp->v[i] - b->min.v[i]); |
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| 88 | } |
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| 89 | } else { |
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| 90 | t_far = BR_SCALAR_MIN; |
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| 91 | } |
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| 92 | } |
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| 93 | } |
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| 94 | if (t_far < t_near) { |
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| 95 | return 0; |
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| 96 | } |
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| 97 | *new_t_near = t_near; |
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| 98 | *new_t_far = t_far; |
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| 99 | return 1; |
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| 100 | } |
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| 101 | |||
| 102 | // IDA: int __usercall ActorRayPick2D@<EAX>(br_actor *ap@<EAX>, br_vector3 *pPosition@<EDX>, br_vector3 *pDir@<EBX>, br_model *model@<ECX>, br_material *material, dr_pick2d_cbfn *callback) |
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| 103 | int ActorRayPick2D(br_actor* ap, br_vector3* pPosition, br_vector3* pDir, br_model* model, br_material* material, dr_pick2d_cbfn* callback) { |
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| 104 | br_actor* a; |
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| 105 | br_model* this_model; |
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| 106 | br_material* this_material; |
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| 107 | br_scalar t_near; |
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| 108 | br_scalar t_far; |
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| 109 | int r; |
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| 110 | br_matrix34 mat; |
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| 111 | br_matrix34 invmat; |
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| 112 | br_vector3 pos; |
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| 113 | br_vector3 dir; |
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| 114 | void* arg; |
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| 115 | LOG_TRACE("(%p, %p, %p, %p, %p, %p)", ap, pPosition, pDir, model, material, callback); |
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| 116 | |||
| 117 | t_near = 0.0; |
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| 118 | t_far = 1.0; |
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| 119 | r = 0; |
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| 120 | arg = NULL; |
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| 121 | if (ap->model != NULL) { |
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| 122 | this_model = ap->model; |
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| 123 | } else { |
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| 124 | this_model = model; |
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| 125 | } |
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| 126 | if (ap->material != NULL) { |
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| 127 | this_material = ap->material; |
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| 128 | } else { |
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| 129 | this_material = material; |
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| 130 | } |
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| 131 | if (ap->render_style == BR_RSTYLE_NONE) { |
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| 132 | return 0; |
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| 133 | } |
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| 134 | if (ap->identifier != NULL && ap->identifier[0] == '&') { |
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| 135 | BrTransformToMatrix34(&mat, &ap->t); |
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| 136 | BrMatrix34Inverse(&invmat, &mat); |
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| 137 | BrMatrix34ApplyP(&pos, pPosition, &invmat); |
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| 138 | BrMatrix34ApplyV(&dir, pDir, &invmat); |
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| 139 | pPosition = &pos; |
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| 140 | pDir = &dir; |
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| 141 | } |
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| 142 | if (ap->type == BR_ACTOR_MODEL) { |
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| 143 | if (PickBoundsTestRay__finteray(&this_model->bounds, pPosition, pDir, t_near, t_far, &t_near, &t_far)) { |
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| 144 | t_near = 0.0; |
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| 145 | t_far = MIN(1.f, gNearest_T); |
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| 146 | r = callback(ap, this_model, this_material, pPosition, pDir, t_near, t_far, arg); |
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| 147 | if (r) { |
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| 148 | return r; |
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| 149 | } |
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| 150 | } |
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| 151 | if (r) { |
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| 152 | return r; |
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| 153 | } |
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| 154 | } else if (ap->type >= BR_ACTOR_BOUNDS && ap->type <= BR_ACTOR_BOUNDS_CORRECT) { |
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| 155 | if (PickBoundsTestRay__finteray((br_bounds*)ap->type_data, pPosition, pDir, t_near, t_far, &t_near, &t_far)) { |
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| 156 | for (a = ap->children; a != NULL; a = a->next) { |
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| 157 | r = ActorRayPick2D(a, pPosition, pDir, this_model, this_material, callback); |
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| 158 | if (r) { |
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| 159 | break; |
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| 160 | } |
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| 161 | } |
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| 162 | } |
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| 163 | return r; |
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| 164 | } |
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| 165 | for (a = ap->children; a != NULL; a = a->next) { |
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| 166 | r = ActorRayPick2D(a, pPosition, pDir, this_model, this_material, callback); |
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| 167 | if (r) { |
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| 168 | break; |
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| 169 | } |
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| 170 | } |
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| 171 | return r; |
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| 172 | } |
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| 173 | |||
| 174 | // IDA: int __usercall DRSceneRayPick2D@<EAX>(br_actor *world@<EAX>, br_vector3 *pPosition@<EDX>, br_vector3 *pDir@<EBX>, dr_pick2d_cbfn *callback@<ECX>) |
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| 175 | int DRSceneRayPick2D(br_actor* world, br_vector3* pPosition, br_vector3* pDir, dr_pick2d_cbfn* callback) { |
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| 176 | LOG_TRACE("(%p, %p, %p, %p)", world, pPosition, pDir, callback); |
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| 177 | |||
| 178 | BrMatrix34Inverse(&gPick_model_to_view__finteray, &world->t.t.mat); |
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| 179 | LOG_WARN_ONCE("Missing material and model pointers to ActorRayPick2D"); |
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| 180 | return ActorRayPick2D(world, pPosition, pDir, NULL, NULL, callback); |
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| 181 | } |
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| 182 | |||
| 183 | // IDA: int __usercall DRModelPick2D@<EAX>(br_model *model@<EAX>, br_material *material@<EDX>, br_vector3 *ray_pos@<EBX>, br_vector3 *ray_dir@<ECX>, br_scalar t_near, br_scalar t_far, dr_modelpick2d_cbfn *callback, void *arg) |
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| 184 | // Suffix added to avoid duplicate symbol |
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| 185 | int DRModelPick2D__finteray(br_model* model, br_material* material, br_vector3* ray_pos, br_vector3* ray_dir, br_scalar t_near, br_scalar t_far, dr_modelpick2d_cbfn* callback, void* arg) { |
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| 18 | pmbaty | 186 | // DR_FACE* fp; |
| 1 | pmbaty | 187 | int f; |
| 188 | int axis_m; |
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| 189 | int axis_0; |
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| 190 | int axis_1; |
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| 191 | br_scalar t; |
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| 18 | pmbaty | 192 | br_scalar n; |
| 1 | pmbaty | 193 | br_scalar d; |
| 194 | br_vector3 p; |
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| 195 | float u0; |
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| 196 | float u1; |
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| 197 | float u2; |
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| 198 | float v0; |
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| 199 | float v1; |
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| 200 | float v2; |
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| 201 | br_scalar v0i1; |
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| 202 | br_scalar v0i2; |
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| 203 | float alpha; |
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| 204 | float beta; |
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| 205 | float f_d; |
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| 206 | float f_n; |
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| 207 | br_scalar s_alpha; |
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| 208 | br_scalar s_beta; |
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| 209 | br_vector2 map; |
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| 210 | int v; |
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| 211 | int e; |
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| 212 | int r; |
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| 213 | br_material* this_material; |
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| 214 | br_scalar numerator; |
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| 18 | pmbaty | 215 | float f_numerator; |
| 1 | pmbaty | 216 | int group; |
| 217 | LOG_TRACE("(%p, %p, %p, %p, %f, %f, %p, %p)", model, material, ray_pos, ray_dir, t_near, t_far, callback, arg); |
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| 218 | |||
| 18 | pmbaty | 219 | struct v11group* grp_ptr; |
| 220 | br_vector4* eqn; |
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| 221 | |||
| 1 | pmbaty | 222 | t_near -= 0.00001f; |
| 223 | t_far += 0.00001f; |
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| 224 | for (group = 0; group < V11MODEL(model)->ngroups; group++) { |
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| 18 | pmbaty | 225 | grp_ptr = &V11MODEL(model)->groups[group]; |
| 1 | pmbaty | 226 | for (f = 0; f < V11MODEL(model)->groups[group].nfaces; f++) { |
| 18 | pmbaty | 227 | eqn = &V11MODEL(model)->groups[group].eqn[f]; |
| 228 | if (V11MODEL(model)->groups[group].user) { |
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| 229 | this_material = V11MODEL(model)->groups[group].user; |
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| 1 | pmbaty | 230 | } else { |
| 231 | this_material = material; |
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| 232 | } |
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| 18 | pmbaty | 233 | d = BrVector3Dot(eqn, ray_dir); |
| 1 | pmbaty | 234 | if (fabs(d) >= 0.00000023841858 && (!this_material || !this_material->identifier || *this_material->identifier != '!' || !gPling_materials) |
| 235 | && (!this_material || (this_material->flags & 0x1800) != 0 || d <= 0.0)) { |
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| 18 | pmbaty | 236 | numerator = eqn->v[1] * ray_pos->v[1] |
| 237 | + eqn->v[2] * ray_pos->v[2] |
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| 238 | + eqn->v[0] * ray_pos->v[0] |
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| 239 | - eqn->v[3]; |
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| 1 | pmbaty | 240 | if (!BadDiv__finteray(numerator, d)) { |
| 241 | t = -(numerator / d); |
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| 242 | if (t >= t_near && t <= t_far) { |
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| 243 | BrVector3Scale(&p, ray_dir, t); |
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| 244 | BrVector3Accumulate(&p, ray_pos); |
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| 18 | pmbaty | 245 | axis_m = fabsf(eqn->v[0]) < fabsf(eqn->v[1]); |
| 246 | if (fabsf(eqn->v[2]) > fabsf(eqn->v[axis_m])) { |
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| 1 | pmbaty | 247 | axis_m = 2; |
| 248 | } |
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| 249 | if (axis_m) { |
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| 250 | axis_0 = 0; |
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| 251 | if (axis_m == 1) { |
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| 252 | axis_1 = 2; |
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| 253 | } else { |
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| 254 | axis_1 = 1; |
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| 255 | } |
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| 256 | } else { |
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| 257 | axis_0 = 1; |
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| 258 | axis_1 = 2; |
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| 259 | } |
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| 260 | |||
| 18 | pmbaty | 261 | v0 = grp_ptr->position[grp_ptr->vertex_numbers[f].v[0]].v[axis_0]; |
| 262 | u0 = grp_ptr->position[grp_ptr->vertex_numbers[f].v[0]].v[axis_1]; |
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| 263 | v1 = grp_ptr->position[grp_ptr->vertex_numbers[f].v[1]].v[axis_0] - v0; |
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| 264 | u1 = grp_ptr->position[grp_ptr->vertex_numbers[f].v[1]].v[axis_1] - u0; |
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| 265 | v2 = grp_ptr->position[grp_ptr->vertex_numbers[f].v[2]].v[axis_0] - v0; |
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| 266 | u2 = grp_ptr->position[grp_ptr->vertex_numbers[f].v[2]].v[axis_1] - u0; |
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| 1 | pmbaty | 267 | |
| 268 | v0i1 = p.v[axis_0] - v0; |
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| 269 | v0i2 = p.v[axis_1] - u0; |
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| 270 | if (fabs(v1) > 0.0000002384185791015625) { |
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| 271 | f_n = u2 * v1 - u1 * v2; |
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| 272 | f_d = v0i2 * v1 - u1 * v0i1; |
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| 273 | if (fabs(f_n) < fabs(f_d)) { |
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| 274 | continue; |
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| 275 | } |
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| 276 | if (f_n == 0) { |
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| 277 | continue; |
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| 278 | } |
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| 279 | beta = f_d / f_n; |
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| 280 | if (beta < 0.0 || beta > 1.0 || v1 == 0.0) { |
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| 281 | continue; |
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| 282 | } |
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| 283 | alpha = (v0i1 - beta * v2) / v1; |
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| 284 | } else { |
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| 285 | if (fabsf(v2) < fabsf(v0i1)) { |
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| 286 | continue; |
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| 287 | } |
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| 288 | if (v2 == 0) { |
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| 289 | continue; |
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| 290 | } |
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| 291 | |||
| 292 | beta = v0i1 / v2; |
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| 293 | if (beta < 0.0 || beta > 1.0 || u1 == 0.0) { |
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| 294 | continue; |
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| 295 | } |
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| 296 | alpha = (v0i2 - beta * u2) / u1; |
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| 297 | } |
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| 298 | |||
| 299 | if (alpha >= 0.0 && beta + alpha <= 1.0) { |
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| 300 | s_alpha = alpha; |
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| 301 | s_beta = beta; |
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| 18 | pmbaty | 302 | BrVector2Scale(&map, &grp_ptr->map[grp_ptr->vertex_numbers[f].v[1]], s_alpha); |
| 1 | pmbaty | 303 | DRVector2AccumulateScale__finteray( |
| 304 | &map, |
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| 18 | pmbaty | 305 | &grp_ptr->map[grp_ptr->vertex_numbers[f].v[2]], |
| 1 | pmbaty | 306 | s_beta); |
| 307 | DRVector2AccumulateScale__finteray( |
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| 308 | &map, |
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| 18 | pmbaty | 309 | &grp_ptr->map[grp_ptr->vertex_numbers[f].v[0]], |
| 1 | pmbaty | 310 | 1.0 - (s_alpha + s_beta)); |
| 311 | v = 0; |
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| 312 | e = 1; |
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| 313 | if (s_alpha <= s_beta) { |
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| 314 | if (0.5 - s_beta / 2.0 > s_alpha) { |
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| 315 | e = 0; |
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| 316 | } |
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| 317 | if (1.0 - s_beta * 2.0 < s_alpha) { |
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| 318 | v = 1; |
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| 319 | } |
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| 320 | } else { |
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| 321 | if (1.0 - s_beta * 2.0 > s_alpha) { |
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| 322 | e = 2; |
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| 323 | } |
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| 324 | if (0.5 - s_beta / 2.0 < s_alpha) { |
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| 325 | v = 2; |
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| 326 | } |
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| 327 | } |
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| 328 | gTemp_group = group; |
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| 329 | r = callback(model, this_material, ray_pos, ray_dir, t, f, e, v, &p, &map, arg); |
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| 330 | if (r) { |
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| 331 | return r; |
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| 332 | } |
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| 333 | } |
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| 334 | } |
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| 335 | } |
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| 336 | } |
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| 337 | } |
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| 338 | } |
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| 339 | return 0; |
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| 340 | } |
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| 341 | |||
| 342 | // IDA: int __cdecl FindHighestPolyCallBack(br_model *pModel, br_material *pMaterial, br_vector3 *pRay_pos, br_vector3 *pRay_dir, br_scalar pT, int pF, int pE, int pV, br_vector3 *pPoint, br_vector2 *pMap, void *pArg) |
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| 343 | // Suffix added to avoid duplicate symbol |
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| 344 | int FindHighestPolyCallBack__finteray(br_model* pModel, br_material* pMaterial, br_vector3* pRay_pos, br_vector3* pRay_dir, br_scalar pT, int pF, int pE, int pV, br_vector3* pPoint, br_vector2* pMap, void* pArg) { |
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| 345 | LOG_TRACE("(%p, %p, %p, %p, %f, %d, %d, %d, %p, %p, %p)", pModel, pMaterial, pRay_pos, pRay_dir, pT, pF, pE, pV, pPoint, pMap, pArg); |
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| 346 | |||
| 347 | if (pT < (double)gNearest_T) { |
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| 348 | gNearest_T = pT; |
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| 349 | gNearest_model = pModel; |
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| 350 | gNearest_face = pF; |
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| 351 | gNearest_face_group = gTemp_group; |
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| 352 | } |
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| 353 | return 0; |
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| 354 | } |
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| 355 | |||
| 356 | // IDA: int __cdecl FindHighestCallBack(br_actor *pActor, br_model *pModel, br_material *pMaterial, br_vector3 *pRay_pos, br_vector3 *pRay_dir, br_scalar pT_near, br_scalar pT_far, void *pArg) |
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| 357 | // Suffix added to avoid duplicate symbol |
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| 358 | int FindHighestCallBack__finteray(br_actor* pActor, br_model* pModel, br_material* pMaterial, br_vector3* pRay_pos, br_vector3* pRay_dir, br_scalar pT_near, br_scalar pT_far, void* pArg) { |
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| 359 | LOG_TRACE("(%p, %p, %p, %p, %p, %f, %f, %p)", pActor, pModel, pMaterial, pRay_pos, pRay_dir, pT_near, pT_far, pArg); |
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| 360 | |||
| 361 | if (gProgram_state.current_car.current_car_actor < 0 |
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| 362 | || gProgram_state.current_car.car_model_actors[gProgram_state.current_car.current_car_actor].actor != pActor) { |
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| 363 | DRModelPick2D__finteray(pModel, pMaterial, pRay_pos, pRay_dir, pT_near, pT_far, FindHighestPolyCallBack__finteray, pArg); |
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| 364 | } |
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| 365 | return 0; |
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| 366 | } |
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| 367 | |||
| 368 | // IDA: void __usercall FindFace(br_vector3 *pPosition@<EAX>, br_vector3 *pDir@<EDX>, br_vector3 *nor@<EBX>, br_scalar *t@<ECX>, br_material **material) |
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| 369 | void FindFace(br_vector3* pPosition, br_vector3* pDir, br_vector3* nor, br_scalar* t, br_material** material) { |
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| 370 | int group; |
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| 371 | LOG_TRACE("(%p, %p, %p, %p, %p)", pPosition, pDir, nor, t, material); |
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| 372 | |||
| 18 | pmbaty | 373 | br_vector4* eqn; |
| 374 | |||
| 1 | pmbaty | 375 | gNearest_T = 100.0f; |
| 376 | DRSceneRayPick2D(gTrack_actor, pPosition, pDir, FindHighestCallBack__finteray); |
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| 377 | *t = gNearest_T; |
||
| 378 | if (*t < 100.0f) { |
||
| 379 | group = gNearest_face_group; |
||
| 18 | pmbaty | 380 | eqn = &V11MODEL(gNearest_model)->groups[group].eqn[gNearest_face]; |
| 381 | nor->v[0] = eqn->v[0]; |
||
| 382 | nor->v[1] = eqn->v[1]; |
||
| 383 | nor->v[2] = eqn->v[2]; |
||
| 384 | *material = V11MODEL(gNearest_model)->groups[group].user; |
||
| 1 | pmbaty | 385 | } |
| 386 | } |
||
| 387 | |||
| 388 | // IDA: void __cdecl EnablePlingMaterials() |
||
| 389 | void EnablePlingMaterials(void) { |
||
| 390 | LOG_TRACE("()"); |
||
| 391 | |||
| 392 | gPling_materials = 1; |
||
| 393 | } |
||
| 394 | |||
| 395 | // IDA: void __cdecl DisablePlingMaterials() |
||
| 396 | void DisablePlingMaterials(void) { |
||
| 397 | LOG_TRACE("()"); |
||
| 398 | |||
| 399 | gPling_materials = 0; |
||
| 400 | } |
||
| 401 | |||
| 402 | // IDA: void __usercall CheckSingleFace(tFace_ref *pFace@<EAX>, br_vector3 *ray_pos@<EDX>, br_vector3 *ray_dir@<EBX>, br_vector3 *normal@<ECX>, br_scalar *rt) |
||
| 403 | void CheckSingleFace(tFace_ref* pFace, br_vector3* ray_pos, br_vector3* ray_dir, br_vector3* normal, br_scalar* rt) { |
||
| 404 | br_scalar t; |
||
| 405 | br_scalar numerator; |
||
| 406 | br_scalar d; |
||
| 407 | br_vector3 p; |
||
| 408 | br_vector3 tv; |
||
| 409 | int axis_m; |
||
| 410 | int axis_0; |
||
| 411 | int axis_1; |
||
| 412 | double u0; |
||
| 413 | double u1; |
||
| 414 | double u2; |
||
| 415 | double v0; |
||
| 416 | double v1; |
||
| 417 | double v2; |
||
| 418 | br_scalar v0i1; |
||
| 419 | br_scalar v0i2; |
||
| 420 | double alpha; |
||
| 421 | double beta; |
||
| 422 | double f_d; |
||
| 423 | //double f_n; // Pierre-Marie Baty -- unused variable |
||
| 424 | //double f_numerator; // Pierre-Marie Baty -- unused variable |
||
| 425 | br_material* this_material; |
||
| 426 | LOG_TRACE("(%p, %p, %p, %p, %p)", pFace, ray_pos, ray_dir, normal, rt); |
||
| 427 | |||
| 428 | this_material = pFace->material; |
||
| 429 | *rt = 100.0; |
||
| 430 | |||
| 431 | d = pFace->normal.v[1] * ray_dir->v[1] + ray_dir->v[2] * pFace->normal.v[2] + ray_dir->v[0] * pFace->normal.v[0]; |
||
| 18 | pmbaty | 432 | if ((this_material == NULL || (this_material->flags & (BR_MATF_TWO_SIDED | BR_MATF_ALWAYS_VISIBLE)) != 0 || d <= 0.0) |
| 1 | pmbaty | 433 | && (!this_material || !this_material->identifier || *this_material->identifier != '!' || !gPling_materials) |
| 434 | && fabs(d) >= 0.00000023841858) { |
||
| 435 | BrVector3Sub(&p, ray_pos, &pFace->v[0]); |
||
| 436 | numerator = BrVector3Dot(&pFace->normal, &p); |
||
| 437 | if (!BadDiv__finteray(numerator, d)) { |
||
| 438 | if (d > 0.0) { |
||
| 439 | if (-numerator < -0.001 || -numerator > d + 0.003) { |
||
| 440 | return; |
||
| 441 | } |
||
| 442 | } else if (numerator < -0.001 || 0.003 - d < numerator) { |
||
| 443 | return; |
||
| 444 | } |
||
| 445 | t = -(numerator / d); |
||
| 446 | if (t > 1.0) { |
||
| 447 | t = 1.0; |
||
| 448 | } |
||
| 449 | BrVector3Scale(&tv, ray_dir, t); |
||
| 450 | BrVector3Accumulate(&tv, ray_pos); |
||
| 451 | axis_m = fabs(pFace->normal.v[0]) < fabs(pFace->normal.v[1]); |
||
| 452 | if (fabs(pFace->normal.v[2]) > fabs(pFace->normal.v[axis_m])) { |
||
| 453 | axis_m = 2; |
||
| 454 | } |
||
| 455 | if (axis_m) { |
||
| 456 | axis_0 = 0; |
||
| 457 | if (axis_m == 1) { |
||
| 458 | axis_1 = 2; |
||
| 459 | } else { |
||
| 460 | axis_1 = 1; |
||
| 461 | } |
||
| 462 | } else { |
||
| 463 | axis_0 = 1; |
||
| 464 | axis_1 = 2; |
||
| 465 | } |
||
| 466 | v0i1 = pFace->v[0].v[axis_0]; |
||
| 467 | v0i2 = pFace->v[0].v[axis_1]; |
||
| 468 | u0 = pFace->v[1].v[axis_0] - v0i1; |
||
| 469 | u1 = pFace->v[1].v[axis_1] - v0i2; |
||
| 470 | v0 = pFace->v[2].v[axis_0] - v0i1; |
||
| 471 | v1 = pFace->v[2].v[axis_1] - v0i2; |
||
| 472 | u2 = tv.v[axis_0] - v0i1; |
||
| 473 | v2 = tv.v[axis_1] - v0i2; |
||
| 474 | if (fabs(u0) > 0.0000002384185791015625) { |
||
| 475 | f_d = v1 * u0 - u1 * v0; |
||
| 476 | if (f_d == 0) { |
||
| 477 | return; |
||
| 478 | } |
||
| 479 | alpha = (v2 * u0 - u1 * u2) / f_d; |
||
| 480 | beta = (u2 - alpha * v0) / u0; |
||
| 481 | } else { |
||
| 482 | alpha = u2 / v0; |
||
| 483 | beta = (v2 - alpha * v1) / u1; |
||
| 484 | } |
||
| 485 | if (beta >= -0.0001 && alpha >= -0.0001 && alpha + beta <= 1.0001) { |
||
| 486 | *rt = t; |
||
| 487 | *normal = pFace->normal; |
||
| 488 | if (d > 0.0) { |
||
| 489 | BrVector3Negate(normal, normal); |
||
| 490 | } |
||
| 491 | } |
||
| 492 | } |
||
| 493 | } |
||
| 494 | } |
||
| 495 | |||
| 496 | // IDA: void __usercall MultiRayCheckSingleFace(int pNum_rays@<EAX>, tFace_ref *pFace@<EDX>, br_vector3 *ray_pos@<EBX>, br_vector3 *ray_dir@<ECX>, br_vector3 *normal, br_scalar *rt) |
||
| 497 | void MultiRayCheckSingleFace(int pNum_rays, tFace_ref* pFace, br_vector3* ray_pos, br_vector3* ray_dir, br_vector3* normal, br_scalar* rt) { |
||
| 498 | int i; |
||
| 499 | br_scalar t[4]; |
||
| 500 | br_scalar numerator; |
||
| 501 | br_scalar d; |
||
| 502 | br_vector3 p[4]; |
||
| 503 | br_vector3 tv; |
||
| 504 | int axis_m; |
||
| 505 | int axis_0; |
||
| 506 | int axis_1; |
||
| 507 | double u0[4]; |
||
| 508 | double u1; |
||
| 509 | double u2; |
||
| 510 | double v0[4]; |
||
| 511 | double v1; |
||
| 512 | double v2; |
||
| 513 | br_scalar v0i1; |
||
| 514 | br_scalar v0i2; |
||
| 515 | double alpha; |
||
| 516 | double beta; |
||
| 517 | double f_d; |
||
| 518 | double f_n; |
||
| 519 | double f_numerator; |
||
| 520 | br_material* this_material; |
||
| 521 | LOG_TRACE("(%d, %p, %p, %p, %p, %p)", pNum_rays, pFace, ray_pos, ray_dir, normal, rt); |
||
| 522 | |||
| 523 | this_material = pFace->material; |
||
| 524 | d = ray_dir->v[2] * pFace->normal.v[2] + ray_dir->v[1] * pFace->normal.v[1] + ray_dir->v[0] * pFace->normal.v[0]; |
||
| 525 | for (i = 0; i < pNum_rays; ++i) { |
||
| 526 | rt[i] = 100.0; |
||
| 527 | } |
||
| 528 | if ((!this_material || (this_material->flags & 0x1800) != 0 || d <= 0.0) |
||
| 529 | && (!this_material || !this_material->identifier || *this_material->identifier != '!' || !gPling_materials) |
||
| 530 | && fabs(d) >= 0.00000023841858) { |
||
| 531 | for (i = 0;; ++i) { |
||
| 532 | if (i >= pNum_rays) { |
||
| 533 | axis_m = fabs(pFace->normal.v[0]) < fabs(pFace->normal.v[1]); |
||
| 534 | if (fabs(pFace->normal.v[2]) > fabs(pFace->normal.v[axis_m])) { |
||
| 535 | axis_m = 2; |
||
| 536 | } |
||
| 537 | if (axis_m) { |
||
| 538 | axis_0 = 0; |
||
| 539 | if (axis_m == 1) { |
||
| 540 | axis_1 = 2; |
||
| 541 | } else { |
||
| 542 | axis_1 = 1; |
||
| 543 | } |
||
| 544 | } else { |
||
| 545 | axis_0 = 1; |
||
| 546 | axis_1 = 2; |
||
| 547 | } |
||
| 548 | v0i1 = pFace->v[0].v[axis_0]; |
||
| 549 | v0i2 = pFace->v[0].v[axis_1]; |
||
| 550 | u1 = pFace->v[1].v[axis_0] - v0i1; |
||
| 551 | v1 = pFace->v[1].v[axis_1] - v0i2; |
||
| 552 | u2 = pFace->v[2].v[axis_0] - v0i1; |
||
| 553 | v2 = pFace->v[2].v[axis_1] - v0i2; |
||
| 554 | i = 0; |
||
| 555 | while (1) { |
||
| 556 | if (i >= pNum_rays) { |
||
| 557 | return; |
||
| 558 | } |
||
| 559 | if (t[i] != 100.0) { |
||
| 560 | u0[i] = p[i].v[axis_0] - v0i1; |
||
| 561 | v0[i] = p[i].v[axis_1] - v0i2; |
||
| 562 | if (fabs(u1) <= 0.0000002384185791015625) { |
||
| 563 | alpha = u0[i] / u2; |
||
| 564 | beta = v0[i] - alpha * v2; |
||
| 565 | f_d = beta / v1; |
||
| 566 | goto LABEL_43; |
||
| 567 | } |
||
| 568 | f_numerator = v0[i] * u1 - u0[i] * v1; |
||
| 569 | f_n = v2 * u1 - v1 * u2; |
||
| 570 | if (f_n != 0) { |
||
| 571 | alpha = f_numerator / f_n; |
||
| 572 | beta = u0[i] - alpha * u2; |
||
| 573 | f_d = beta / u1; |
||
| 574 | LABEL_43: |
||
| 575 | if (f_d >= -0.0001 && alpha >= -0.0001 && alpha + f_d <= 1.0001) { |
||
| 576 | rt[i] = t[i]; |
||
| 577 | *normal = pFace->normal; |
||
| 578 | if (d > 0.0) { |
||
| 579 | normal->v[0] = -pFace->normal.v[0]; |
||
| 580 | normal->v[1] = -pFace->normal.v[1]; |
||
| 581 | normal->v[2] = -pFace->normal.v[2]; |
||
| 582 | } |
||
| 583 | } |
||
| 584 | } |
||
| 585 | } |
||
| 586 | ++i; |
||
| 587 | continue; |
||
| 588 | } |
||
| 589 | } |
||
| 590 | tv.v[0] = ray_pos[i].v[0] - pFace->v[0].v[0]; |
||
| 591 | tv.v[1] = ray_pos[i].v[1] - pFace->v[0].v[1]; |
||
| 592 | tv.v[2] = ray_pos[i].v[2] - pFace->v[0].v[2]; |
||
| 593 | numerator = pFace->normal.v[2] * tv.v[2] + pFace->normal.v[1] * tv.v[1] + pFace->normal.v[0] * tv.v[0]; |
||
| 594 | if (BadDiv__finteray(numerator, d)) { |
||
| 595 | return; |
||
| 596 | } |
||
| 597 | if (d > 0.0) { |
||
| 598 | if (-numerator < -0.001 || -numerator > d + 0.003) { |
||
| 599 | t[i] = 100.0; |
||
| 600 | continue; |
||
| 601 | } |
||
| 602 | } else if (numerator < -0.001 || 0.003 - d < numerator) { |
||
| 603 | t[i] = 100.0; |
||
| 604 | continue; |
||
| 605 | } |
||
| 606 | t[i] = -(numerator / d); |
||
| 607 | if (t[i] > 1.0) { |
||
| 608 | t[i] = 1.0; |
||
| 609 | } |
||
| 610 | p[i].v[0] = t[i] * ray_dir->v[0]; |
||
| 611 | p[i].v[1] = t[i] * ray_dir->v[1]; |
||
| 612 | p[i].v[2] = t[i] * ray_dir->v[2]; |
||
| 613 | p[i].v[0] = ray_pos[i].v[0] + p[i].v[0]; |
||
| 614 | p[i].v[1] = ray_pos[i].v[1] + p[i].v[1]; |
||
| 615 | p[i].v[2] = ray_pos[i].v[2] + p[i].v[2]; |
||
| 616 | } |
||
| 617 | } |
||
| 618 | } |
||
| 619 | |||
| 620 | // IDA: void __usercall GetNewBoundingBox(br_bounds *b2@<EAX>, br_bounds *b1@<EDX>, br_matrix34 *m@<EBX>) |
||
| 621 | void GetNewBoundingBox(br_bounds* b2, br_bounds* b1, br_matrix34* m) { |
||
| 622 | br_vector3 a; |
||
| 623 | br_vector3 c[3]; |
||
| 624 | int j; |
||
| 625 | LOG_TRACE("(%p, %p, %p)", b2, b1, m); |
||
| 626 | |||
| 627 | BrMatrix34ApplyP(&b2->min, &b1->min, m); |
||
| 628 | BrVector3Copy(&b2->max, &b2->min); |
||
| 629 | BrVector3Sub(&a, &b1->max, &b1->min); |
||
| 630 | for (j = 0; j < 3; j++) { |
||
| 631 | BrVector3Scale(&c[j], (br_vector3*)m->m[j], a.v[j]); |
||
| 632 | } |
||
| 633 | for (j = 0; j < 3; ++j) { |
||
| 634 | b2->min.v[j] = (float)(c[2].v[j] < 0.f) * c[2].v[j] |
||
| 635 | + (float)(c[1].v[j] < 0.f) * c[1].v[j] |
||
| 636 | + (float)(c[0].v[j] < 0.f) * c[0].v[j] |
||
| 637 | + b2->min.v[j]; |
||
| 638 | b2->max.v[j] = (float)(c[0].v[j] > 0.f) * c[0].v[j] |
||
| 639 | + (float)(c[2].v[j] > 0.f) * c[2].v[j] |
||
| 640 | + (float)(c[1].v[j] > 0.f) * c[1].v[j] |
||
| 641 | + b2->max.v[j]; |
||
| 642 | } |
||
| 643 | } |
||
| 644 | |||
| 645 | // IDA: int __usercall FindFacesInBox@<EAX>(tBounds *bnds@<EAX>, tFace_ref *face_list@<EDX>, int max_face@<EBX>) |
||
| 646 | int FindFacesInBox(tBounds* bnds, tFace_ref* face_list, int max_face) { |
||
| 647 | br_vector3 a; |
||
| 648 | br_vector3 b; |
||
| 649 | br_vector3 c[3]; |
||
| 650 | int i; |
||
| 651 | int j; |
||
| 652 | int x; |
||
| 653 | int z; |
||
| 654 | tU8 cx_min; |
||
| 655 | tU8 cx_max; |
||
| 656 | tU8 cz_min; |
||
| 657 | tU8 cz_max; |
||
| 658 | tTrack_spec* track_spec; |
||
| 659 | LOG_TRACE("(%p, %p, %d)", bnds, face_list, max_face); |
||
| 660 | |||
| 661 | j = 0; |
||
| 662 | track_spec = &gProgram_state.track_spec; |
||
| 663 | BrVector3Add(&a, &bnds->original_bounds.min, &bnds->original_bounds.max); |
||
| 664 | BrVector3Scale(&a, &a, 0.5f); |
||
| 665 | BrMatrix34ApplyP(&bnds->box_centre, &a, bnds->mat); |
||
| 666 | BrVector3Sub(&b, &bnds->original_bounds.max, &bnds->original_bounds.min); |
||
| 667 | bnds->radius = BrVector3Length(&b) / 2.f; |
||
| 668 | BrMatrix34ApplyP(&bnds->real_bounds.min, &bnds->original_bounds.min, bnds->mat); |
||
| 669 | BrVector3Copy(&bnds->real_bounds.max, &bnds->real_bounds.min); |
||
| 670 | for (i = 0; i < 3; ++i) { |
||
| 671 | c[i].v[0] = bnds->mat->m[i][0] * b.v[i]; |
||
| 672 | c[i].v[1] = bnds->mat->m[i][1] * b.v[i]; |
||
| 673 | c[i].v[2] = bnds->mat->m[i][2] * b.v[i]; |
||
| 674 | } |
||
| 675 | for (i = 0; i < 3; ++i) { |
||
| 676 | bnds->real_bounds.min.v[i] += MIN(c[0].v[i], 0.f) |
||
| 677 | + MIN(c[1].v[i], 0.f) |
||
| 678 | + MIN(c[2].v[i], 0.f); |
||
| 679 | bnds->real_bounds.max.v[i] += MAX(c[0].v[i], 0.f) |
||
| 680 | + MAX(c[1].v[i], 0.f) |
||
| 681 | + MAX(c[2].v[i], 0.f); |
||
| 682 | } |
||
| 683 | XZToColumnXZ(&cx_min, &cz_min, bnds->real_bounds.min.v[0], bnds->real_bounds.min.v[2], track_spec); |
||
| 684 | XZToColumnXZ(&cx_max, &cz_max, bnds->real_bounds.max.v[0], bnds->real_bounds.max.v[2], track_spec); |
||
| 685 | if (cx_min != 0) { |
||
| 686 | cx_min--; |
||
| 687 | } |
||
| 688 | if (cz_min != 0) { |
||
| 689 | cz_min--; |
||
| 690 | } |
||
| 691 | if (cx_max + 1 < track_spec->ncolumns_x) { |
||
| 692 | cx_max++; |
||
| 693 | } |
||
| 694 | if (cz_max + 1 < track_spec->ncolumns_z) { |
||
| 695 | cz_max++; |
||
| 696 | } |
||
| 697 | for (x = cx_min; x <= cx_max; x++) { |
||
| 698 | for (z = cz_min; z <= cz_max; z++) { |
||
| 699 | if (track_spec->columns[z][x] != NULL) { |
||
| 700 | if (track_spec->blends[z][x] != NULL) { |
||
| 701 | track_spec->blends[z][x]->render_style = BR_RSTYLE_FACES; |
||
| 702 | } |
||
| 703 | j = max_face - ActorBoxPick(bnds, track_spec->columns[z][x], model_unk1, material_unk1, &face_list[j], max_face - j, NULL); |
||
| 704 | if (track_spec->blends[z][x] != NULL) { |
||
| 705 | track_spec->blends[z][x]->render_style = BR_RSTYLE_NONE; |
||
| 706 | } |
||
| 707 | } |
||
| 708 | if (track_spec->lollipops[z][x] != NULL) { |
||
| 709 | j = max_face - ActorBoxPick(bnds, track_spec->lollipops[z][x], model_unk1, material_unk1, &face_list[j], max_face - j, NULL); |
||
| 710 | } |
||
| 711 | } |
||
| 712 | } |
||
| 713 | return j; |
||
| 714 | } |
||
| 715 | |||
| 716 | // IDA: int __usercall FindFacesInBox2@<EAX>(tBounds *bnds@<EAX>, tFace_ref *face_list@<EDX>, int max_face@<EBX>) |
||
| 717 | int FindFacesInBox2(tBounds* bnds, tFace_ref* face_list, int max_face) { |
||
| 18 | pmbaty | 718 | br_vector3 a; |
| 719 | br_vector3 b; |
||
| 720 | br_vector3 c[3]; |
||
| 721 | int i; |
||
| 722 | int j; |
||
| 1 | pmbaty | 723 | LOG_TRACE("(%p, %p, %d)", bnds, face_list, max_face); |
| 18 | pmbaty | 724 | |
| 725 | a.v[0] = (bnds->original_bounds.min.v[0] + bnds->original_bounds.max.v[0]) * .5f; |
||
| 726 | a.v[1] = (bnds->original_bounds.min.v[1] + bnds->original_bounds.max.v[1]) * .5f; |
||
| 727 | a.v[2] = (bnds->original_bounds.min.v[2] + bnds->original_bounds.max.v[2]) * .5f; |
||
| 728 | BrMatrix34ApplyP(&bnds->box_centre, &a, bnds->mat); |
||
| 729 | BrVector3Sub(&b, &bnds->original_bounds.max, &bnds->original_bounds.min); |
||
| 730 | bnds->radius = BrVector3Length(&b) / 2.f; |
||
| 731 | BrMatrix34ApplyP(&bnds->real_bounds.min, &bnds->original_bounds.min, bnds->mat); |
||
| 732 | BrVector3Copy(&bnds->real_bounds.max, &bnds->real_bounds.min); |
||
| 733 | for (i = 0; i < 3; i++) { |
||
| 734 | BrVector3Scale(&c[i], (br_vector3*)bnds->mat->m[i], b.v[i]); |
||
| 735 | } |
||
| 736 | for (i = 0; i < 3; i++) { |
||
| 737 | bnds->real_bounds.min.v[i] += MIN(0.f, c[0].v[i]) + MIN(0.f, c[1].v[i]) + MIN(0.f, c[2].v[i]); |
||
| 738 | bnds->real_bounds.max.v[i] += MAX(0.f, c[0].v[i]) + MAX(0.f, c[1].v[i]) + MAX(0.f, c[2].v[i]); |
||
| 739 | } |
||
| 740 | return max_face - ActorBoxPick(bnds, gTrack_actor, model_unk1, material_unk1, face_list, max_face, NULL); |
||
| 1 | pmbaty | 741 | } |
| 742 | |||
| 743 | // IDA: int __usercall ActorBoxPick@<EAX>(tBounds *bnds@<EAX>, br_actor *ap@<EDX>, br_model *model@<EBX>, br_material *material@<ECX>, tFace_ref *face_list, int max_face, br_matrix34 *pMat) |
||
| 744 | int ActorBoxPick(tBounds* bnds, br_actor* ap, br_model* model, br_material* material, tFace_ref* face_list, int max_face, br_matrix34* pMat) { |
||
| 745 | br_model* this_model; |
||
| 746 | br_material* this_material; |
||
| 747 | int i; |
||
| 748 | int n; |
||
| 749 | int test_children; |
||
| 750 | br_actor* a; |
||
| 751 | br_actor* next_a; |
||
| 752 | br_matrix34 mat; |
||
| 753 | br_matrix34 mat2; |
||
| 754 | br_matrix34 invmat; |
||
| 755 | br_matrix34 box_to_actor; |
||
| 756 | tBounds new_bounds; |
||
| 757 | br_bounds br_bnds; |
||
| 758 | LOG_TRACE("(%p, %p, %p, %p, %p, %d, %p)", bnds, ap, model, material, face_list, max_face, pMat); |
||
| 759 | |||
| 760 | i = 0; |
||
| 761 | test_children = 1; |
||
| 762 | if (ap->model != NULL) { |
||
| 763 | this_model = ap->model; |
||
| 764 | } else { |
||
| 765 | this_model = model; |
||
| 766 | } |
||
| 767 | if (ap->material != NULL) { |
||
| 768 | this_material = ap->material; |
||
| 769 | } else { |
||
| 770 | this_material = material; |
||
| 771 | } |
||
| 772 | if (ap->render_style == BR_RSTYLE_NONE) { |
||
| 773 | return max_face; |
||
| 774 | } |
||
| 775 | if (ap->identifier != NULL && ap->identifier[0] == '&') { |
||
| 776 | if (ap->children == NULL) { |
||
| 777 | if (ap->type != BR_ACTOR_MODEL) { |
||
| 778 | return max_face; |
||
| 779 | } |
||
| 780 | if (!BoundsTransformTest(&this_model->bounds, &bnds->real_bounds, &ap->t.t.mat)) { |
||
| 781 | return max_face; |
||
| 782 | } |
||
| 783 | } |
||
| 784 | if (pMat != NULL) { |
||
| 785 | BrMatrix34Mul(&mat, &ap->t.t.mat, pMat); |
||
| 786 | pMat = &mat; |
||
| 787 | } else { |
||
| 788 | pMat = &ap->t.t.mat; |
||
| 789 | } |
||
| 790 | BrMatrix34LPInverse(&invmat, &ap->t.t.mat); |
||
| 791 | BrMatrix34Mul(&mat2, bnds->mat, &invmat); |
||
| 792 | new_bounds.mat = &mat2; |
||
| 793 | BrVector3Copy(&new_bounds.original_bounds.min, &bnds->original_bounds.min); |
||
| 794 | BrVector3Copy(&new_bounds.original_bounds.max, &bnds->original_bounds.max); |
||
| 795 | BrMatrix34ApplyP(&new_bounds.box_centre, &bnds->box_centre, &invmat); |
||
| 796 | new_bounds.radius = bnds->radius; |
||
| 797 | GetNewBoundingBox(&new_bounds.real_bounds, &new_bounds.original_bounds, new_bounds.mat); |
||
| 798 | if (ap->identifier[1] >= '0' && ap->identifier[1] <= '9') { |
||
| 799 | if (!BoundsOverlapTest__finteray(&new_bounds.real_bounds, &this_model->bounds)) { |
||
| 800 | return max_face; |
||
| 801 | } |
||
| 802 | BrMatrix34LPInverse(&invmat, bnds->mat); |
||
| 803 | BrMatrix34Mul(&box_to_actor, &ap->t.t.mat, &invmat); |
||
| 804 | GetNewBoundingBox(&br_bnds, &ap->model->bounds, &box_to_actor); |
||
| 805 | if (!BoundsOverlapTest__finteray(&br_bnds, &bnds->original_bounds)) { |
||
| 806 | return max_face; |
||
| 807 | } |
||
| 808 | if (PullActorFromWorld(ap)) { |
||
| 809 | return max_face; |
||
| 810 | } |
||
| 811 | } |
||
| 812 | bnds = &new_bounds; |
||
| 813 | } |
||
| 814 | if (ap->type == BR_ACTOR_MODEL) { |
||
| 815 | if (BoundsOverlapTest__finteray(&bnds->real_bounds, &this_model->bounds)) { |
||
| 816 | n = ModelPickBox(ap, bnds, this_model, this_material, &face_list[i], max_face, pMat); |
||
| 817 | if (pMat && max_face != n) { |
||
| 818 | StopGroovidelic(ap); |
||
| 819 | } |
||
| 820 | i += max_face - n; |
||
| 821 | max_face = n; |
||
| 822 | } |
||
| 823 | } else if (ap->type == BR_ACTOR_BOUNDS || ap->type == BR_ACTOR_BOUNDS_CORRECT) { |
||
| 824 | test_children = BoundsOverlapTest__finteray(&bnds->real_bounds, (br_bounds*)ap->type_data); |
||
| 825 | } |
||
| 826 | if (test_children) { |
||
| 827 | for (a = ap->children; a != NULL; a = next_a) { |
||
| 828 | next_a = a->next; |
||
| 829 | n = ActorBoxPick(bnds, a, this_model, this_material, &face_list[i], max_face, pMat); |
||
| 830 | i += max_face - n; |
||
| 831 | max_face = n; |
||
| 832 | } |
||
| 833 | } |
||
| 834 | return max_face; |
||
| 835 | } |
||
| 836 | |||
| 837 | // IDA: int __usercall ModelPickBox@<EAX>(br_actor *actor@<EAX>, tBounds *bnds@<EDX>, br_model *model@<EBX>, br_material *model_material@<ECX>, tFace_ref *face_list, int max_face, br_matrix34 *pMat) |
||
| 838 | int ModelPickBox(br_actor* actor, tBounds* bnds, br_model* model, br_material* model_material, tFace_ref* face_list, int max_face, br_matrix34* pMat) { |
||
| 839 | int f; |
||
| 840 | int i; |
||
| 841 | int n; |
||
| 842 | int group; |
||
| 18 | pmbaty | 843 | // DR_FACE* fp; |
| 1 | pmbaty | 844 | int v1; |
| 845 | int v2; |
||
| 846 | int v3; |
||
| 847 | br_vector3 polygon[12]; |
||
| 848 | br_vector3 a; |
||
| 849 | br_vector3 tv; |
||
| 850 | br_scalar t; |
||
| 18 | pmbaty | 851 | struct v11model* prepared; |
| 1 | pmbaty | 852 | LOG_TRACE("(%p, %p, %p, %p, %p, %d, %p)", actor, bnds, model, model_material, face_list, max_face, pMat); |
| 853 | |||
| 18 | pmbaty | 854 | struct v11group* grp_ptr; |
| 855 | |||
| 1 | pmbaty | 856 | prepared = model->prepared; |
| 857 | if (max_face <= 0) { |
||
| 858 | return 0; |
||
| 859 | } |
||
| 860 | for (group = 0; prepared->ngroups > group; group++) { |
||
| 18 | pmbaty | 861 | grp_ptr = &prepared->groups[group]; |
| 1 | pmbaty | 862 | for (f = 0; f < prepared->groups[group].nfaces; f++) { |
| 18 | pmbaty | 863 | // fp = &prepared->groups[group].faces[f]; |
| 864 | v1 = grp_ptr->vertex_numbers[f].v[0]; // fp->vertices[0]; |
||
| 865 | // BrVector3Sub(&a, &prepared->groups[group].vertices[v1].p, &bnds->box_centre); |
||
| 866 | BrVector3Sub(&a, &grp_ptr->position[v1], &bnds->box_centre); |
||
| 867 | // t = BrVector3Dot((br_vector3*)&fp->eqn, &a); |
||
| 868 | t = BrVector3Dot((br_vector3*)&grp_ptr->eqn[f], &a); |
||
| 1 | pmbaty | 869 | if (fabsf(t) > bnds->radius) { |
| 870 | continue; |
||
| 871 | } |
||
| 18 | pmbaty | 872 | // v2 = fp->vertices[1]; |
| 873 | // v3 = fp->vertices[2]; |
||
| 874 | v2 = grp_ptr->vertex_numbers[f].v[1]; |
||
| 875 | v3 = grp_ptr->vertex_numbers[f].v[2]; |
||
| 1 | pmbaty | 876 | |
| 877 | t = bnds->real_bounds.min.v[0]; |
||
| 18 | pmbaty | 878 | if (t > grp_ptr->position[v1].v[0] |
| 879 | && t > grp_ptr->position[v2].v[0] |
||
| 880 | && t > grp_ptr->position[v3].v[0]) { |
||
| 1 | pmbaty | 881 | continue; |
| 882 | } |
||
| 883 | t = bnds->real_bounds.max.v[0]; |
||
| 18 | pmbaty | 884 | if (t < grp_ptr->position[v1].v[0] |
| 885 | && t < grp_ptr->position[v2].v[0] |
||
| 886 | && t < grp_ptr->position[v3].v[0]) { |
||
| 1 | pmbaty | 887 | continue; |
| 888 | } |
||
| 889 | t = bnds->real_bounds.min.v[1]; |
||
| 18 | pmbaty | 890 | if (t > grp_ptr->position[v1].v[1] |
| 891 | && t > grp_ptr->position[v2].v[1] |
||
| 892 | && t > grp_ptr->position[v3].v[1]) { |
||
| 1 | pmbaty | 893 | continue; |
| 894 | } |
||
| 895 | t = bnds->real_bounds.max.v[1]; |
||
| 18 | pmbaty | 896 | if (t < grp_ptr->position[v1].v[1] |
| 897 | && t < grp_ptr->position[v2].v[1] |
||
| 898 | && t < grp_ptr->position[v3].v[1]) { |
||
| 1 | pmbaty | 899 | continue; |
| 900 | } |
||
| 901 | t = bnds->real_bounds.min.v[2]; |
||
| 18 | pmbaty | 902 | if (t > grp_ptr->position[v1].v[2] |
| 903 | && t > grp_ptr->position[v2].v[2] |
||
| 904 | && t > grp_ptr->position[v3].v[2]) { |
||
| 1 | pmbaty | 905 | continue; |
| 906 | } |
||
| 907 | t = bnds->real_bounds.max.v[2]; |
||
| 18 | pmbaty | 908 | if (t < grp_ptr->position[v1].v[2] |
| 909 | && t < grp_ptr->position[v2].v[2] |
||
| 910 | && t < grp_ptr->position[v3].v[2]) { |
||
| 1 | pmbaty | 911 | continue; |
| 912 | } |
||
| 18 | pmbaty | 913 | BrVector3Sub(&polygon[1], &grp_ptr->position[v1], (br_vector3*)bnds->mat->m[3]); |
| 914 | BrVector3Sub(&polygon[2], &grp_ptr->position[v2], (br_vector3*)bnds->mat->m[3]); |
||
| 915 | BrVector3Sub(&polygon[3], &grp_ptr->position[v3], (br_vector3*)bnds->mat->m[3]); |
||
| 1 | pmbaty | 916 | BrMatrix34TApplyV(&polygon[0], &polygon[1], bnds->mat); |
| 917 | BrMatrix34TApplyV(&polygon[1], &polygon[2], bnds->mat); |
||
| 918 | BrMatrix34TApplyV(&polygon[2], &polygon[3], bnds->mat); |
||
| 919 | n = 3; |
||
| 920 | for (i = 0; i < 3; i++) { |
||
| 921 | ClipToPlaneGE(&polygon[0], &n, i, bnds->original_bounds.min.v[i]); |
||
| 922 | if (n < 3) { |
||
| 923 | break; |
||
| 924 | } |
||
| 925 | ClipToPlaneLE(&polygon[0], &n, i, bnds->original_bounds.max.v[i]); |
||
| 926 | if (n < 3) { |
||
| 927 | break; |
||
| 928 | } |
||
| 929 | } |
||
| 930 | if (n >= 3) { |
||
| 931 | if (pMat != NULL) { |
||
| 18 | pmbaty | 932 | BrMatrix34ApplyP(&face_list->v[0], &grp_ptr->position[v1], pMat); |
| 933 | BrMatrix34ApplyP(&face_list->v[1], &grp_ptr->position[v2], pMat); |
||
| 934 | BrMatrix34ApplyP(&face_list->v[2], &grp_ptr->position[v3], pMat); |
||
| 935 | BrVector3Copy(&tv, (br_vector3*)&grp_ptr->eqn[f]); |
||
| 1 | pmbaty | 936 | BrMatrix34ApplyV(&face_list->normal, &tv, pMat); |
| 937 | } else { |
||
| 18 | pmbaty | 938 | BrVector3Copy(&face_list->v[0], &grp_ptr->position[v1]); |
| 939 | BrVector3Copy(&face_list->v[1], &grp_ptr->position[v2]); |
||
| 940 | BrVector3Copy(&face_list->v[2], &grp_ptr->position[v3]); |
||
| 941 | BrVector3Copy(&face_list->normal, (br_vector3*)&grp_ptr->eqn[f]); |
||
| 1 | pmbaty | 942 | } |
| 18 | pmbaty | 943 | if (prepared->groups[group].user != NULL) { |
| 944 | face_list->material = prepared->groups[group].user; |
||
| 1 | pmbaty | 945 | } else { |
| 946 | face_list->material = model_material; |
||
| 947 | } |
||
| 948 | face_list->flags = 0; |
||
| 949 | if (face_list->material != NULL && (face_list->material->flags & (BR_MATF_TWO_SIDED | BR_MATF_ALWAYS_VISIBLE)) == 0) { |
||
| 950 | face_list->flags |= (v1 < v2) | (v2 < v3) << 1 | (v3 < v1) << 2; |
||
| 951 | } |
||
| 952 | if (pMat != NULL) { |
||
| 953 | face_list->d = BrVector3LengthSquared(&face_list->v[0]); |
||
| 954 | } else { |
||
| 18 | pmbaty | 955 | face_list->d = grp_ptr->eqn[f].v[3]; |
| 1 | pmbaty | 956 | } |
| 18 | pmbaty | 957 | face_list->map[0] = &grp_ptr->map[v1]; |
| 958 | face_list->map[1] = &grp_ptr->map[v2]; |
||
| 959 | face_list->map[2] = &grp_ptr->map[v3]; |
||
| 960 | if (face_list->material != NULL |
||
| 1 | pmbaty | 961 | && face_list->material->identifier != NULL |
| 962 | && face_list->material->identifier[0] == '!') { |
||
| 963 | gPling_face = face_list; |
||
| 964 | } |
||
| 965 | face_list++; |
||
| 966 | max_face--; |
||
| 967 | if (max_face == 0) { |
||
| 968 | break; |
||
| 969 | } |
||
| 970 | } |
||
| 971 | } |
||
| 972 | if (max_face == 0) { |
||
| 973 | break; |
||
| 974 | } |
||
| 975 | } |
||
| 976 | return max_face; |
||
| 977 | } |
||
| 978 | |||
| 979 | // IDA: void __usercall ClipToPlaneGE(br_vector3 *p@<EAX>, int *nv@<EDX>, int i@<EBX>, br_scalar limit) |
||
| 980 | void ClipToPlaneGE(br_vector3* p, int* nv, int i, br_scalar limit) { |
||
| 981 | int last_vertex; |
||
| 982 | int j; |
||
| 983 | int vertex; |
||
| 984 | int k; |
||
| 985 | br_vector3 p2[12]; |
||
| 986 | LOG_TRACE("(%p, %p, %d, %f)", p, nv, i, limit); |
||
| 987 | |||
| 988 | last_vertex = *nv - 1; |
||
| 989 | j = 0; |
||
| 990 | for (vertex = 0; *nv > vertex; ++vertex) { |
||
| 991 | if ((p[last_vertex].v[i] > limit) != (p[vertex].v[i] > limit)) { |
||
| 992 | for (k = 0; k < 3; ++k) { |
||
| 993 | if (i != k) { |
||
| 994 | p2[j].v[k] = (p[vertex].v[k] - p[last_vertex].v[k]) |
||
| 995 | * (limit - p[last_vertex].v[i]) |
||
| 996 | / (p[vertex].v[i] - p[last_vertex].v[i]) |
||
| 997 | + p[last_vertex].v[k]; |
||
| 998 | } |
||
| 999 | } |
||
| 1000 | p2[j++].v[i] = limit; |
||
| 1001 | } |
||
| 1002 | if (p[vertex].v[i] >= limit) { |
||
| 1003 | BrVector3Copy(&p2[j], &p[vertex]); |
||
| 1004 | j++; |
||
| 1005 | } |
||
| 1006 | last_vertex = vertex; |
||
| 1007 | } |
||
| 1008 | *nv = j; |
||
| 1009 | for (k = 0; k < j; k++) { |
||
| 1010 | BrVector3Copy(&p[k], &p2[k]); |
||
| 1011 | } |
||
| 1012 | } |
||
| 1013 | |||
| 1014 | // IDA: void __usercall ClipToPlaneLE(br_vector3 *p@<EAX>, int *nv@<EDX>, int i@<EBX>, br_scalar limit) |
||
| 1015 | void ClipToPlaneLE(br_vector3* p, int* nv, int i, br_scalar limit) { |
||
| 1016 | int last_vertex; |
||
| 1017 | int j; |
||
| 1018 | int vertex; |
||
| 1019 | int k; |
||
| 1020 | br_vector3 p2[12]; |
||
| 1021 | LOG_TRACE("(%p, %p, %d, %f)", p, nv, i, limit); |
||
| 1022 | |||
| 1023 | last_vertex = *nv - 1; |
||
| 1024 | j = 0; |
||
| 1025 | for (vertex = 0; *nv > vertex; ++vertex) { |
||
| 1026 | if ((p[vertex].v[i] > limit) != (p[last_vertex].v[i] > limit)) { |
||
| 1027 | for (k = 0; k < 3; ++k) { |
||
| 1028 | if (k != i) { |
||
| 1029 | p2[j].v[k] = (p[vertex].v[k] - p[last_vertex].v[k]) |
||
| 1030 | * (limit - p[last_vertex].v[i]) |
||
| 1031 | / (p[vertex].v[i] - p[last_vertex].v[i]) |
||
| 1032 | + p[last_vertex].v[k]; |
||
| 1033 | } |
||
| 1034 | } |
||
| 1035 | p2[j++].v[i] = limit; |
||
| 1036 | } |
||
| 1037 | if (p[vertex].v[i] <= (double)limit) { |
||
| 1038 | BrVector3Copy(&p2[j], &p[vertex]); |
||
| 1039 | j++; |
||
| 1040 | } |
||
| 1041 | last_vertex = vertex; |
||
| 1042 | } |
||
| 1043 | *nv = j; |
||
| 1044 | for (k = 0; k < j; k++) { |
||
| 1045 | BrVector3Copy(&p[k], &p2[k]); |
||
| 1046 | } |
||
| 1047 | } |
||
| 1048 | |||
| 1049 | // IDA: int __usercall BoundsOverlapTest@<EAX>(br_bounds *b1@<EAX>, br_bounds *b2@<EDX>) |
||
| 1050 | // Suffix added to avoid duplicate symbol |
||
| 1051 | int BoundsOverlapTest__finteray(br_bounds* b1, br_bounds* b2) { |
||
| 1052 | LOG_TRACE("(%p, %p)", b1, b2); |
||
| 1053 | |||
| 1054 | return b1->min.v[0] <= b2->max.v[0] |
||
| 1055 | && b2->min.v[0] <= b1->max.v[0] |
||
| 1056 | && b1->min.v[1] <= b2->max.v[1] |
||
| 1057 | && b2->min.v[1] <= b1->max.v[1] |
||
| 1058 | && b1->min.v[2] <= b2->max.v[2] |
||
| 1059 | && b2->min.v[2] <= b1->max.v[2]; |
||
| 1060 | } |
||
| 1061 | |||
| 1062 | // IDA: int __usercall BoundsTransformTest@<EAX>(br_bounds *b1@<EAX>, br_bounds *b2@<EDX>, br_matrix34 *M@<EBX>) |
||
| 1063 | int BoundsTransformTest(br_bounds* b1, br_bounds* b2, br_matrix34* M) { |
||
| 1064 | br_scalar val; |
||
| 1065 | br_vector3 o; |
||
| 1066 | LOG_TRACE("(%p, %p, %p)", b1, b2, M); |
||
| 1067 | |||
| 1068 | BrVector3Sub(&o, &b1->max, &b1->min); |
||
| 1069 | val = M->m[0][0] * b1->min.v[0] + M->m[1][0] * b1->min.v[1] + M->m[2][0] * b1->min.v[2] + M->m[3][0]; |
||
| 1070 | |||
| 1071 | if ((M->m[0][0] <= 0.0f ? 0.0f : M->m[0][0] * o.v[0]) |
||
| 1072 | + (M->m[1][0] <= 0.0f ? 0.0f : M->m[1][0] * o.v[1]) |
||
| 1073 | + (M->m[2][0] <= 0.0f ? 0.0f : M->m[2][0] * o.v[2]) |
||
| 1074 | + val |
||
| 1075 | < b2->min.v[0]) { |
||
| 1076 | return 0; |
||
| 1077 | } |
||
| 1078 | if ((M->m[0][0] < 0.0f ? M->m[0][0] * o.v[0] : 0.0f) |
||
| 1079 | + (M->m[1][0] < 0.0f ? M->m[1][0] * o.v[1] : 0.0f) |
||
| 1080 | + (M->m[2][0] < 0.0f ? M->m[2][0] * o.v[2] : 0.0f) |
||
| 1081 | + val |
||
| 1082 | > b2->max.v[0]) { |
||
| 1083 | return 0; |
||
| 1084 | } |
||
| 1085 | |||
| 1086 | val = M->m[0][2] * b1->min.v[0] + M->m[1][2] * b1->min.v[1] + M->m[2][2] * b1->min.v[2] + M->m[3][2]; |
||
| 1087 | if ((M->m[0][2] <= 0.0f ? 0.0f : M->m[0][2] * o.v[0]) |
||
| 1088 | + (M->m[1][2] <= 0.0f ? 0.0f : M->m[1][2] * o.v[1]) |
||
| 1089 | + (M->m[2][2] <= 0.0f ? 0.0f : M->m[2][2] * o.v[2]) |
||
| 1090 | + val |
||
| 1091 | < b2->min.v[2]) { |
||
| 1092 | return 0; |
||
| 1093 | } |
||
| 1094 | if ((M->m[0][2] < 0.0f ? M->m[0][2] * o.v[0] : 0.0f) |
||
| 1095 | + (M->m[1][2] < 0.0f ? M->m[1][2] * o.v[1] : 0.0f) |
||
| 1096 | + (M->m[2][2] < 0.0f ? M->m[2][2] * o.v[2] : 0.0f) |
||
| 1097 | + val |
||
| 1098 | > b2->max.v[2]) { |
||
| 1099 | return 0; |
||
| 1100 | } |
||
| 1101 | |||
| 1102 | val = M->m[0][1] * b1->min.v[0] + M->m[1][1] * b1->min.v[1] + M->m[2][1] * b1->min.v[2] + M->m[3][1]; |
||
| 1103 | if ((M->m[0][1] <= 0.0f ? 0.0f : M->m[0][1] * o.v[0]) |
||
| 1104 | + (M->m[1][1] <= 0.0f ? 0.0f : M->m[1][1] * o.v[1]) |
||
| 1105 | + (M->m[2][1] <= 0.0f ? 0.0f : M->m[2][1] * o.v[2]) |
||
| 1106 | + val |
||
| 1107 | < b2->min.v[1]) { |
||
| 1108 | return 0; |
||
| 1109 | } |
||
| 1110 | if ((M->m[0][1] < 0.0 ? M->m[0][1] * o.v[0] : 0.0) |
||
| 1111 | + (M->m[1][1] < 0.0 ? M->m[1][1] * o.v[1] : 0.0) |
||
| 1112 | + (M->m[2][1] < 0.0 ? M->m[2][1] * o.v[2] : 0.0) |
||
| 1113 | + val |
||
| 1114 | > b2->max.v[1]) { |
||
| 1115 | return 0; |
||
| 1116 | } |
||
| 1117 | |||
| 1118 | return 1; |
||
| 1119 | } |
||
| 1120 | |||
| 1121 | // IDA: int __usercall LineBoxColl@<EAX>(br_vector3 *o@<EAX>, br_vector3 *p@<EDX>, br_bounds *pB@<EBX>, br_vector3 *pHit_point@<ECX>) |
||
| 1122 | int LineBoxColl(br_vector3* o, br_vector3* p, br_bounds* pB, br_vector3* pHit_point) { |
||
| 1123 | br_vector3 dir; |
||
| 1124 | int inside; |
||
| 1125 | int quad[3]; |
||
| 1126 | int i; |
||
| 1127 | int which_plane; |
||
| 1128 | br_scalar max_t[3]; |
||
| 1129 | br_scalar cp[3]; |
||
| 1130 | LOG_TRACE("(%p, %p, %p, %p)", o, p, pB, pHit_point); |
||
| 1131 | |||
| 1132 | inside = 1; |
||
| 1133 | BrVector3Sub(&dir, p, o); |
||
| 1134 | for (i = 0; i < 3; ++i) { |
||
| 1135 | if (pB->min.v[i] <= o->v[i]) { |
||
| 1136 | if (pB->max.v[i] >= o->v[i]) { |
||
| 1137 | quad[i] = 2; |
||
| 1138 | } else { |
||
| 1139 | quad[i] = 0; |
||
| 1140 | max_t[i] = pB->max.v[i]; |
||
| 1141 | inside = 0; |
||
| 1142 | } |
||
| 1143 | } else { |
||
| 1144 | quad[i] = 1; |
||
| 1145 | max_t[i] = pB->min.v[i]; |
||
| 1146 | inside = 0; |
||
| 1147 | } |
||
| 1148 | } |
||
| 1149 | if (inside) { |
||
| 1150 | BrVector3Copy(pHit_point, o); |
||
| 1151 | return 8; |
||
| 1152 | } else { |
||
| 1153 | for (i = 0; i < 3; ++i) { |
||
| 1154 | if (quad[i] == 2 || dir.v[i] == 0.0) { |
||
| 1155 | cp[i] = -1.0; |
||
| 1156 | } else { |
||
| 1157 | cp[i] = (max_t[i] - o->v[i]) / dir.v[i]; |
||
| 1158 | } |
||
| 1159 | } |
||
| 1160 | which_plane = 0; |
||
| 1161 | for (i = 1; i < 3; ++i) { |
||
| 1162 | if (cp[which_plane] < cp[i]) { |
||
| 1163 | which_plane = i; |
||
| 1164 | } |
||
| 1165 | } |
||
| 1166 | if (cp[which_plane] >= 0.0 && cp[which_plane] <= 1.0) { |
||
| 1167 | for (i = 0; i < 3; ++i) { |
||
| 1168 | if (which_plane == i) { |
||
| 1169 | pHit_point->v[i] = max_t[i]; |
||
| 1170 | } else { |
||
| 1171 | pHit_point->v[i] = dir.v[i] * cp[which_plane] + o->v[i]; |
||
| 1172 | if (pHit_point->v[i] < pB->min.v[i] || pB->max.v[i] < pHit_point->v[i]) { |
||
| 1173 | return 0; |
||
| 1174 | } |
||
| 1175 | } |
||
| 1176 | } |
||
| 1177 | return which_plane + 4 * quad[which_plane] + 1; |
||
| 1178 | } else { |
||
| 1179 | return 0; |
||
| 1180 | } |
||
| 1181 | } |
||
| 1182 | } |
||
| 1183 | |||
| 1184 | // IDA: int __usercall SphereBoxIntersection@<EAX>(br_bounds *pB@<EAX>, br_vector3 *pC@<EDX>, br_scalar pR_squared, br_vector3 *pHit_point) |
||
| 1185 | int SphereBoxIntersection(br_bounds* pB, br_vector3* pC, br_scalar pR_squared, br_vector3* pHit_point) { |
||
| 1186 | int i; |
||
| 1187 | br_scalar d; |
||
| 1188 | LOG_TRACE("(%p, %p, %f, %p)", pB, pC, pR_squared, pHit_point); |
||
| 1189 | |||
| 1190 | d = 0.f; |
||
| 1191 | for (i = 0; i < 3; i++) { |
||
| 1192 | if (pC->v[i] <= pB->min.v[i]) { |
||
| 1193 | pHit_point->v[i] = pB->min.v[i]; |
||
| 1194 | } else if (pC->v[i] > pB->max.v[i]) { |
||
| 1195 | pHit_point->v[i] = pB->max.v[i]; |
||
| 1196 | } else { |
||
| 1197 | pHit_point->v[i] = pC->v[i]; |
||
| 1198 | } |
||
| 1199 | d += (pC->v[i] - pHit_point->v[i]) * (pC->v[i] - pHit_point->v[i]); |
||
| 1200 | } |
||
| 1201 | return d <= pR_squared; |
||
| 1202 | } |
||
| 1203 | |||
| 1204 | // IDA: int __usercall LineBoxCollWithSphere@<EAX>(br_vector3 *o@<EAX>, br_vector3 *p@<EDX>, br_bounds *pB@<EBX>, br_vector3 *pHit_point@<ECX>) |
||
| 1205 | int LineBoxCollWithSphere(br_vector3* o, br_vector3* p, br_bounds* pB, br_vector3* pHit_point) { |
||
| 1206 | int i; |
||
| 1207 | int plane; |
||
| 1208 | LOG_TRACE("(%p, %p, %p, %p)", o, p, pB, pHit_point); |
||
| 1209 | |||
| 1210 | plane = LineBoxColl(o, p, pB, pHit_point); |
||
| 1211 | |||
| 1212 | if (plane != 0) { |
||
| 1213 | return plane; |
||
| 1214 | } |
||
| 1215 | if (!SphereBoxIntersection(pB, p, 2.5e-5f, pHit_point)) { |
||
| 1216 | return 0; |
||
| 1217 | } |
||
| 1218 | for (i = 0; i < 3; i++) { |
||
| 1219 | if (pB->max.v[i] == pHit_point->v[i] && p->v[i] <= o->v[i]) { |
||
| 1220 | return i + 1; |
||
| 1221 | } |
||
| 1222 | if (pHit_point->v[i] == pB->min.v[i] && p->v[i] >= o->v[i]) { |
||
| 1223 | return i + 5; |
||
| 1224 | } |
||
| 1225 | } |
||
| 1226 | return 0; |
||
| 1227 | } |
||
| 1228 | |||
| 1229 | // IDA: int __usercall CompVert@<EAX>(int v1@<EAX>, int v2@<EDX>) |
||
| 1230 | int CompVert(int v1, int v2) { |
||
| 18 | pmbaty | 1231 | br_vertex* vl; |
| 1232 | br_vector3 tv; |
||
| 1233 | br_vector2 tv2; |
||
| 1 | pmbaty | 1234 | LOG_TRACE("(%d, %d)", v1, v2); |
| 18 | pmbaty | 1235 | |
| 1236 | if (v1 == v2) { |
||
| 1237 | return 1; |
||
| 1238 | } |
||
| 1239 | vl = gSelected_model->vertices; |
||
| 1240 | BrVector3Sub(&tv, &vl[v1].p, &vl[v2].p); |
||
| 1241 | if (BrVector3LengthSquared(&tv) > 1e-5f) { |
||
| 1242 | return 0; |
||
| 1243 | } |
||
| 1244 | BrVector2Sub(&tv2, &vl[v1].map, &vl[v2].map); |
||
| 1245 | if (BrVector2LengthSquared(&tv2) > 1e-5f) { |
||
| 1246 | return 0; |
||
| 1247 | } |
||
| 1248 | return 1; |
||
| 1 | pmbaty | 1249 | } |
| 1250 | |||
| 1251 | // IDA: void __usercall SetFacesGroup(int pFace@<EAX>) |
||
| 1252 | void SetFacesGroup(int pFace) { |
||
| 1253 | //int f; // Pierre-Marie Baty -- unused variable |
||
| 1254 | //int v; // Pierre-Marie Baty -- unused variable |
||
| 1255 | //int i; // Pierre-Marie Baty -- unused variable |
||
| 1256 | LOG_TRACE("(%d)", pFace); |
||
| 1257 | NOT_IMPLEMENTED(); |
||
| 1258 | } |
||
| 1259 | |||
| 1260 | // IDA: void __usercall SelectFace(br_vector3 *pDir@<EAX>) |
||
| 1261 | void SelectFace(br_vector3* pDir) { |
||
| 1262 | //tCar_spec* c; // Pierre-Marie Baty -- unused variable |
||
| 1263 | //br_vector3 dir; // Pierre-Marie Baty -- unused variable |
||
| 1264 | //br_vector3 normal; // Pierre-Marie Baty -- unused variable |
||
| 1265 | //br_scalar t; // Pierre-Marie Baty -- unused variable |
||
| 1266 | //br_model* old_model; // Pierre-Marie Baty -- unused variable |
||
| 1267 | //int i; // Pierre-Marie Baty -- unused variable |
||
| 1268 | LOG_TRACE("(%p)", pDir); |
||
| 1269 | NOT_IMPLEMENTED(); |
||
| 1270 | } |
||
| 1271 | |||
| 1272 | // IDA: void __usercall GetTilingLimits(br_vector2 *min@<EAX>, br_vector2 *max@<EDX>) |
||
| 1273 | void GetTilingLimits(br_vector2* min, br_vector2* max) { |
||
| 18 | pmbaty | 1274 | int f; |
| 1275 | int i; |
||
| 1276 | int j; |
||
| 1277 | br_vertex* verts; |
||
| 1278 | br_face* faces; |
||
| 1 | pmbaty | 1279 | LOG_TRACE("(%p, %p)", min, max); |
| 18 | pmbaty | 1280 | |
| 1281 | verts = gSelected_model->vertices; |
||
| 1282 | faces = gSelected_model->faces; |
||
| 1283 | BrVector2Set(min, 32000.f, 32000.f); |
||
| 1284 | BrVector2Set(max, -32000.f, -32000.f); |
||
| 1285 | for (f = 0; f < gSelected_model->nfaces; f++) { |
||
| 1286 | if (faces[f].material == gSub_material) { |
||
| 1287 | for (i = 0; i < 3; i++) { |
||
| 1288 | for (j = 0; j < 3; j++) { |
||
| 1289 | if (verts[faces[f].vertices[i]].map.v[j] < min->v[j]) { |
||
| 1290 | min->v[j] = verts[faces[f].vertices[i]].map.v[j]; |
||
| 1291 | } |
||
| 1292 | if (verts[faces[f].vertices[i]].map.v[j] > max->v[j]) { |
||
| 1293 | max->v[j] = verts[faces[f].vertices[i]].map.v[j]; |
||
| 1294 | } |
||
| 1295 | } |
||
| 1296 | } |
||
| 1297 | } |
||
| 1298 | } |
||
| 1 | pmbaty | 1299 | } |
| 1300 | |||
| 1301 | // IDA: void __usercall Scale(int pD@<EAX>, int factor@<EDX>) |
||
| 1302 | void Scale(int pD, int factor) { |
||
| 18 | pmbaty | 1303 | br_vector2 min; |
| 1304 | br_vector2 max; |
||
| 1305 | int f; |
||
| 1306 | int v; |
||
| 1307 | br_scalar d; |
||
| 1308 | br_vertex* verts; |
||
| 1309 | br_face* faces; |
||
| 1 | pmbaty | 1310 | LOG_TRACE("(%d, %d)", pD, factor); |
| 18 | pmbaty | 1311 | |
| 1312 | if (gSelected_model == NULL) { |
||
| 1313 | return; |
||
| 1314 | } |
||
| 1315 | if (gSelected_model->nfaces != gNfaces) { |
||
| 1316 | return; |
||
| 1317 | } |
||
| 1318 | verts = gSelected_model->vertices; |
||
| 1319 | faces = gSelected_model->faces; |
||
| 1320 | GetTilingLimits(&min, &max); |
||
| 1321 | d = max.v[pD] - min.v[pD]; |
||
| 1322 | if (d <= 0.f || factor + d <= 0.f) { |
||
| 1323 | return; |
||
| 1324 | } |
||
| 1325 | for (v = 0; v < gSelected_model->nvertices; v++) { |
||
| 1326 | for (f = 0; f < gSelected_model->nfaces; f++) { |
||
| 1327 | if (faces[f].material == gSub_material |
||
| 1328 | && (faces[f].vertices[0] == v || faces[f].vertices[1] == v || faces[f].vertices[2] == v)) { |
||
| 1329 | verts[v].map.v[pD] = (factor + d) / d * verts[v].map.v[pD]; |
||
| 1330 | break; |
||
| 1331 | } |
||
| 1332 | } |
||
| 1333 | } |
||
| 1334 | BrModelUpdate(gSelected_model, BR_MODU_ALL); |
||
| 1 | pmbaty | 1335 | } |
| 1336 | |||
| 1337 | // IDA: void __cdecl ScaleUpX() |
||
| 1338 | void ScaleUpX(void) { |
||
| 1339 | LOG_TRACE("()"); |
||
| 18 | pmbaty | 1340 | |
| 1341 | Scale(0, 1); |
||
| 1 | pmbaty | 1342 | } |
| 1343 | |||
| 1344 | // IDA: void __cdecl ScaleDnX() |
||
| 1345 | void ScaleDnX(void) { |
||
| 1346 | LOG_TRACE("()"); |
||
| 18 | pmbaty | 1347 | |
| 1348 | Scale(0, -1); |
||
| 1 | pmbaty | 1349 | } |
| 1350 | |||
| 1351 | // IDA: void __cdecl ScaleUpY() |
||
| 1352 | void ScaleUpY(void) { |
||
| 1353 | LOG_TRACE("()"); |
||
| 18 | pmbaty | 1354 | |
| 1355 | Scale(1, 1); |
||
| 1 | pmbaty | 1356 | } |
| 1357 | |||
| 1358 | // IDA: void __cdecl ScaleDnY() |
||
| 1359 | void ScaleDnY(void) { |
||
| 1360 | LOG_TRACE("()"); |
||
| 18 | pmbaty | 1361 | |
| 1362 | Scale(1, -1); |
||
| 1 | pmbaty | 1363 | } |
| 1364 | |||
| 1365 | // IDA: void __cdecl SelectFaceForward() |
||
| 1366 | void SelectFaceForward(void) { |
||
| 18 | pmbaty | 1367 | br_vector3 dir; |
| 1 | pmbaty | 1368 | LOG_TRACE("()"); |
| 18 | pmbaty | 1369 | |
| 1370 | BrVector3Scale(&dir, (br_vector3*)&gProgram_state.current_car.car_master_actor->t.t.mat.m[2], -2.f); |
||
| 1371 | SelectFace(&dir); |
||
| 1 | pmbaty | 1372 | } |
| 1373 | |||
| 1374 | // IDA: void __cdecl SelectFaceDown() |
||
| 1375 | void SelectFaceDown(void) { |
||
| 18 | pmbaty | 1376 | br_vector3 dir; |
| 1 | pmbaty | 1377 | LOG_TRACE("()"); |
| 18 | pmbaty | 1378 | |
| 1379 | BrVector3Scale(&dir, (br_vector3*)&gProgram_state.current_car.car_master_actor->t.t.look_up.up, -2.f); |
||
| 1380 | SelectFace(&dir); |
||
| 1 | pmbaty | 1381 | } |