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Add more settings
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1 changed files with 45 additions and 15 deletions
60
raycastlib.h
60
raycastlib.h
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@ -70,6 +70,17 @@
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2: octagonal approximation (LQ) */
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#endif
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#ifndef RCL_COMPUTE_FLOOR_DEPTH
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#define RCL_COMPUTE_FLOOR_DEPTH 1 /**< Whether depth should be computed for
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floor pixels - turns this off if not
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needed. */
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#endif
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#ifndef RCL_COMPUTE_CEILING_DEPTH
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#define RCL_COMPUTE_CEILING_DEPTH 1 /**< AS RCL_COMPUTE_FLOOR_DEPTH but for
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ceiling. */
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#endif
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#ifndef RCL_ROLL_TEXTURE_COORDS
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#define RCL_ROLL_TEXTURE_COORDS 1 /**< Says whether rolling doors should also
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roll the texture coordinates along (mostly
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@ -308,7 +319,8 @@ void RCL_castRaysMultiHit(RCL_Camera cam, RCL_ArrayFunction arrayFunc,
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RCL_RayConstraints constraints);
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/**
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Using provided functions, renders a complete complex camera view.
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Using provided functions, renders a complete complex (multilevel) camera
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view.
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This function should render each screen pixel exactly once.
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@ -333,16 +345,14 @@ void RCL_castRaysMultiHit(RCL_Camera cam, RCL_ArrayFunction arrayFunc,
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@param pixelFunc callback function to draw a single pixel on screen
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@param constraints constraints for each cast ray
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*/
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void RCL_render(RCL_Camera cam, RCL_ArrayFunction floorHeightFunc,
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void RCL_renderComplex(RCL_Camera cam, RCL_ArrayFunction floorHeightFunc,
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RCL_ArrayFunction ceilingHeightFunc, RCL_ArrayFunction typeFunction,
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RCL_RayConstraints constraints);
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/**
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Renders given camera view, with help of provided functions. This function is
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simpler and faster than RCL_render(...) and is meant to be rendering scenes
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with simple 1-intersection raycasting. The RCL_render(...) function can give
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more accurate results than this function, so it's to be considered even for
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simple scenes.
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simpler and faster than RCL_renderComplex(...) and is meant to be rendering
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flat levels.
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function rendering summary:
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- performance: faster
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@ -949,7 +959,7 @@ RCL_Unit RCL_adjustDistance(RCL_Unit distance, RCL_Camera *camera,
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// ^ prevent division by zero
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}
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void _columnFunction(RCL_HitResult *hits, uint16_t hitCount, uint16_t x,
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void _columnFunctionComplex(RCL_HitResult *hits, uint16_t hitCount, uint16_t x,
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RCL_Ray ray)
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{
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// last written Y position, can never go backwards
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@ -1016,13 +1026,15 @@ void _columnFunction(RCL_HitResult *hits, uint16_t hitCount, uint16_t x,
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#define VERTICAL_DEPTH_MULTIPLY 2
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#define drawHorizontal(pref,l1,l2,comp,inc)\
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p.depth += RCL_absVal(pref##Z1World) * VERTICAL_DEPTH_MULTIPLY;\
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#define drawHorizontal(pref,l1,l2,comp,inc,compDepth)\
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if (compDepth)\
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p.depth += RCL_absVal(pref##Z1World) * VERTICAL_DEPTH_MULTIPLY;\
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limit = RCL_clamp(pref##Z1Screen,l1,l2);\
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for (i = pref##PosY inc 1; i comp##= limit; inc##inc i)\
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{\
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p.position.y = i;\
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p.depth += _RCL_horizontalDepthStep;\
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if (compDepth)\
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p.depth += _RCL_horizontalDepthStep;\
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RCL_PIXEL_FUNCTION(&p);\
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}\
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if (pref##PosY comp limit)\
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@ -1033,17 +1045,27 @@ void _columnFunction(RCL_HitResult *hits, uint16_t hitCount, uint16_t x,
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// draw floor until wall
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p.isFloor = 1;
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#if RCL_COMPUTE_FLOOR_DEPTH == 1
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p.depth = (_RCL_fHorizontalDepthStart - fPosY) * _RCL_horizontalDepthStep;
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drawHorizontal(f,cPosY + 1,_RCL_camera.resolution.y,>,-)
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// ^ purposfully allow outside screen bounds here
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#else
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p.depth = 0;
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#endif
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drawHorizontal(f,cPosY + 1,_RCL_camera.resolution.y,>,-,
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RCL_COMPUTE_FLOOR_DEPTH) // ^ purposfully allow outside screen bounds
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if (_RCL_ceilFunction != 0 || drawingHorizon)
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{
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// draw ceiling until wall
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p.isFloor = 0;
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#if RCL_COMPUTE_CEILING_DEPTH == 1
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p.depth = (cPosY - _RCL_cHorizontalDepthStart) *
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_RCL_horizontalDepthStep;
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drawHorizontal(c,-1,fPosY - 1,<,+)
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#endif
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drawHorizontal(c,-1,fPosY - 1,<,+,RCL_COMPUTE_CEILING_DEPTH)
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// ^ purposfully allow outside screen bounds here
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}
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@ -1228,7 +1250,10 @@ void _columnFunctionSimple(RCL_HitResult *hits, uint16_t hitCount, uint16_t x,
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p.position.y = y;
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RCL_PIXEL_FUNCTION(&p);
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++y;
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#if RCL_COMPUTE_CEILING_DEPTH == 1
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p.depth += _RCL_horizontalDepthStep;
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#endif
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}
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// draw wall
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@ -1284,7 +1309,10 @@ RCL_Unit coordStep = 1;
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// draw floor
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p.isWall = 0;
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#if RCL_COMPUTE_FLOOR_DEPTH == 1
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p.depth = (_RCL_camera.resolution.y - y) * _RCL_horizontalDepthStep + 1;
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#endif
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#if RCL_COMPUTE_FLOOR_TEXCOORDS == 1
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RCL_Unit dx = p.hit.position.x - _RCL_camera.position.x;
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@ -1315,14 +1343,16 @@ RCL_Unit coordStep = 1;
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++y;
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#if RCL_COMPUTE_FLOOR_DEPTH == 1
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p.depth -= _RCL_horizontalDepthStep;
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#endif
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if (p.depth < 0) // just in case
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p.depth = 0;
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}
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}
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void RCL_render(RCL_Camera cam, RCL_ArrayFunction floorHeightFunc,
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void RCL_renderComplex(RCL_Camera cam, RCL_ArrayFunction floorHeightFunc,
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RCL_ArrayFunction ceilingHeightFunc, RCL_ArrayFunction typeFunction,
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RCL_RayConstraints constraints)
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{
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@ -1352,7 +1382,7 @@ void RCL_render(RCL_Camera cam, RCL_ArrayFunction floorHeightFunc,
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_RCL_horizontalDepthStep = HORIZON_DEPTH / cam.resolution.y;
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RCL_castRaysMultiHit(cam,_floorCeilFunction,typeFunction,
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_columnFunction,constraints);
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_columnFunctionComplex,constraints);
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}
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void RCL_renderSimple(RCL_Camera cam, RCL_ArrayFunction floorHeightFunc,
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