mirror of
https://github.com/microsoft/Microsoft-3D-Movie-Maker.git
synced 2024-11-22 02:12:33 +01:00
205 lines
5.1 KiB
C++
205 lines
5.1 KiB
C++
// Temporary brender code
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#include "frame.h"
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#include "bren.h"
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ASSERTNAME
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extern br_material test_materials[];
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extern int test_materials_count;
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br_camera camera_data = {
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NULL,
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BR_CAMERA_PERSPECTIVE,
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BR_ANGLE_DEG(45), /* 45 degree field of view */
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BR_SCALAR(1.0), /* Hither */
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BR_SCALAR(100.0), /* Yon */
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BR_SCALAR(16.0 / 9.0), /* Aspect ratio */
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};
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br_material texmap = {
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"texmap",
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BR_COLOUR_RGB(255,255,255), /* colour */
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{255}, /* opacity */
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BR_UFRACTION(0.05), /* ka */
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BR_UFRACTION(0.30), /* kd */
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BR_UFRACTION(0.99), /* ks */
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BR_SCALAR(20), /* power */
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BR_MATF_MAP_COLOUR|BR_MATF_LIGHT|BR_MATF_GOURAUD, /* flags */
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0,0, /* shift up/down */
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0,63, /* index base/range */
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};
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static bool FLoadModel(char *szFileName, br_model **pmdl)
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{
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*pmdl = BrModelLoad(szFileName);
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if (*pmdl == NULL)
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return fFalse;
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else
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BrModelAdd(*pmdl);
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return fTrue;
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}
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// create some objects
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void BREN::CreateFunStuff(void)
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{
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int i;
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br_pixelmap *pm;
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br_pixelmap *shade;
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// BrBegin();
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// BrZbBegin();
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obs_z = BR_SCALAR(5.0);
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/*
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* Add materials to system
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*/
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for(i = 0; i < test_materials_count; i++)
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BrMaterialAdd(test_materials+i);
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shade = BrPixelmapLoad("shade.tab");
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BrTableAdd(shade); /* Tell renderer about shading table */
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pm = BrPixelmapLoad("jupiter.pix");
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BrMapAdd(pm); /* Tell renderer about texture map */
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texmap.index_shade = shade;
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texmap.colour_map = pm;
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BrMaterialAdd(&texmap); /* Tell renderer about material */
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// Load all the models
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if (!FLoadModel("iceman.dat", &modlMain))
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MessageBox (NULL, "Could not load iceman.dat", "ERROR", MB_OK);
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if (!FLoadModel("torus.dat", &modlChild))
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MessageBox (NULL, "Could not load torus.dat", "ERROR", MB_OK);
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if (!FLoadModel("cube.dat", &modlCube))
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MessageBox (NULL, "Could not load cube.dat", "ERROR", MB_OK);
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/*
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* Create the world
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*/
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// actrWorld = BrActorAllocate(BR_ACTOR_NONE,NULL);
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_pbactWorld = BrActorAllocate(BR_ACTOR_NONE,NULL);
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_pbactCamera = BrActorAdd(_pbactWorld, BrActorAllocate(BR_ACTOR_CAMERA, &camera_data));
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// actrCamera->t.type = BR_TRANSFORM_MATRIX34;
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// BrMatrix34Translate(&actrCamera->t.t.mat, BR_SCALAR(0.0), BR_SCALAR(20.0),
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// BR_SCALAR(0.0));
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/*
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* Test shape and child
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*/
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actrMain = BrActorAdd(_pbactWorld,BrActorAllocate(BR_ACTOR_MODEL,NULL));
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actrMain->model = modlMain;
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// actrMain->material = BrMaterialFind("texmap");
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actrChild = BrActorAdd(actrMain,BrActorAllocate(BR_ACTOR_MODEL,NULL));
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actrChild->t.type = BR_TRANSFORM_MATRIX34;
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BrMatrix34Translate(&actrChild->t.t.mat,BR_SCALAR(1.5),BR_SCALAR(0.0),BR_SCALAR(0.0));
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actrChild->model = modlChild;
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/*
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* Spinning shape driven by a quaternion
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*/
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actrQuat = BrActorAdd(_pbactWorld,BrActorAllocate(BR_ACTOR_MODEL,NULL));
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actrQuat->model = modlCube;
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actrQuat->t.type = BR_TRANSFORM_QUAT;
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BrVector3SetInt(&actrQuat->t.t.quat.t,-2,0,0);
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/*
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* Spinning shape driven by euler angles
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*/
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actrEuler = BrActorAdd(_pbactWorld,BrActorAllocate(BR_ACTOR_MODEL,NULL));
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actrEuler->model = modlCube;
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actrEuler->t.type = BR_TRANSFORM_EULER;
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actrEuler->t.t.euler.e.order = BR_EULER_YXZ_R;
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BrVector3SetInt(&actrEuler->t.t.euler.t,-4,0,0);
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/*
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* Initialise angles
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*/
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actrEuler->t.t.euler.e.a = 0;
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actrEuler->t.t.euler.e.b = 0;
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actrEuler->t.t.euler.e.c = 0;
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/*
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* Some useful transforms for later
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*/
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BrMatrix34Identity(&Rotation);
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BrMatrix34Identity(&ObsRotation);
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}
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#define MSCALE BR_SCALAR(0.05)
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void BREN::ChangeScene (WPARAM mouseFlags, LPARAM coords)
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{
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static UINT old_mouse_x;
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static UINT old_mouse_y;
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WORD mouse_x = LOWORD(coords) - old_mouse_x;
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WORD mouse_y = HIWORD(coords) - old_mouse_y;
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br_matrix34 tmpmat;
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/*
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* Mouse control
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*/
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if(mouse_x !=0 || mouse_y != 0) {
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if(mouseFlags & MK_LBUTTON) {
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if(mouseFlags & MK_RBUTTON) {
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/*
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* Move actrCamera in/out
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*/
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obs_z += BR_MUL(BR_SCALAR(mouse_y),MSCALE);
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} else {
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/*
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* Drag object around
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*/
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pos_x += BR_MUL(BR_SCALAR(mouse_x),MSCALE);
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pos_y -= BR_MUL(BR_SCALAR(mouse_y),MSCALE);
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}
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} else if(mouseFlags & MK_RBUTTON) {
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/*
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* Rotate actrCamera via rolling ball interface
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*/
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BrMatrix34RollingBall(&tmpmat,(br_int_16)-mouse_x,mouse_y,800);
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BrMatrix34Pre(&ObsRotation,&tmpmat);
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} else {
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/*
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* Rotate object via rolling ball interface
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*/
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BrMatrix34RollingBall(&tmpmat,mouse_x,(br_int_16)-mouse_y,200);
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BrMatrix34Post(&Rotation,&tmpmat);
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}
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}
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old_mouse_x = LOWORD (coords);
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old_mouse_y = HIWORD (coords);
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/*
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* Modify scene according to controls
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*/
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BrMatrix34Translate(&_pbactCamera->t.t.mat,obs_x,obs_y,obs_z);
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BrMatrix34Post(&_pbactCamera->t.t.mat,&ObsRotation);
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/*
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* test shape spun with mouse
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*/
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BrMatrix34Translate(&actrMain->t.t.mat,pos_x,pos_y,pos_z);
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BrMatrix34Pre(&actrMain->t.t.mat,&Rotation);
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/*
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*
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Convert angles to a quaternion for second shape
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*/
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BrEulerToQuat(
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&actrQuat->t.t.quat.q,
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&actrEuler->t.t.euler.e);
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/*
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* Roll angles around
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*/
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actrEuler->t.t.euler.e.a += BR_ANGLE_DEG(3);
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actrEuler->t.t.euler.e.b += BR_ANGLE_DEG(5);
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actrEuler->t.t.euler.e.c += BR_ANGLE_DEG(7);
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}
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