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https://github.com/italicsjenga/slang-shaders.git
synced 2024-11-25 08:51:32 +11:00
move/add stereoscopic-3D shaders to match glsl repo
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3
stereoscopic-3d/anaglyph-to-side-by-side.slangp
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3
stereoscopic-3d/anaglyph-to-side-by-side.slangp
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shaders = 1
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shader0 = shaders/anaglyph-to-side-by-side.slang
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60
stereoscopic-3d/shaders/shutter-to-anaglyph.slang
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stereoscopic-3d/shaders/shutter-to-anaglyph.slang
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#version 450
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layout(push_constant) uniform Push
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{
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vec4 SourceSize;
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vec4 OriginalSize;
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vec4 OutputSize;
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uint FrameCount;
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float flip_eye_toggle;
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float green;
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float blue;
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} params;
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#pragma parameter flip_eye_toggle "Flip Left/Right" 0.0 0.0 1.0 1.0
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bool flip_eye = bool(params.flip_eye_toggle);
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#pragma parameter green "Green" 1.0 0.0 1.0 1.0
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#pragma parameter blue "Blue" 1.0 0.0 1.0 1.0
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const vec3 rec_709_luma = vec3(0.212, 0.701, 0.087);
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layout(std140, set = 0, binding = 0) uniform UBO
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{
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mat4 MVP;
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} global;
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#pragma stage vertex
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layout(location = 0) in vec4 Position;
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layout(location = 1) in vec2 TexCoord;
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layout(location = 0) out vec2 vTexCoord;
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layout(location = 1) out float oscillator;
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void main()
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{
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gl_Position = global.MVP * Position;
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vTexCoord = TexCoord;
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oscillator = float(mod(params.FrameCount, 2.));
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oscillator = (flip_eye) ? oscillator : 1. - oscillator;
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}
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#pragma stage fragment
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layout(location = 0) in vec2 vTexCoord;
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layout(location = 1) in float oscillator;
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layout(location = 0) out vec4 FragColor;
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layout(set = 0, binding = 2) uniform sampler2D Source;
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layout(set = 0, binding = 3) uniform sampler2D OriginalHistory1;
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void main()
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{
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// convert current and previous frames to luma to preserve details
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vec3 curr = texture(Source, vTexCoord).rgb;
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float curr_lum = dot(curr, rec_709_luma);
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vec3 last = texture(OriginalHistory1, vTexCoord).rgb;
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float last_lum = dot(last, rec_709_luma);
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// image for left/right eyes alternate on each frame
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float one_eye = last_lum * oscillator + (curr_lum * (1. - oscillator));
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float other_eye = curr_lum * oscillator + (last_lum * (1. - oscillator));
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// one eye gets the red channel, the other eye goes to green and/or blue, depending on glasses
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vec3 combined = vec3(one_eye, other_eye * params.green, other_eye * params.blue);
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FragColor = vec4(combined, 1.0);
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}
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76
stereoscopic-3d/shaders/shutter-to-side-by-side.slang
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stereoscopic-3d/shaders/shutter-to-side-by-side.slang
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#version 450
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// Shutter 3D to side-by-side
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// by hunterk
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// license: public domain
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layout(push_constant) uniform Push
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{
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vec4 SourceSize;
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vec4 OriginalSize;
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vec4 OutputSize;
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uint FrameCount;
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float ZOOM, vert_pos, horz_pos, separation, flicker, height_mod, swap_eye;
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} params;
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#pragma parameter ZOOM "Zoom" 1.0 0.0 2.0 0.01
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#define ZOOM params.ZOOM
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#pragma parameter vert_pos "Vertical Modifier" 0.0 -2.0 2.0 0.01
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#define vert_pos params.vert_pos
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#pragma parameter horz_pos "Horizontal Modifier" 0.0 -2.0 2.0 0.01
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#define horz_pos params.horz_pos
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#pragma parameter separation "Eye Separation" 0.0 -2.0 2.0 0.01
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#define separation params.separation
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#pragma parameter flicker "Hold Last Frame (reduce flicker)" 1.0 0.0 1.0 0.25
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#define flicker params.flicker
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#pragma parameter height_mod "Image Height" 1.0 0.0 2.0 0.01
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#define height_mod params.height_mod
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#pragma parameter swap_eye "Swap Eye Sequence" 0.0 0.0 1.0 1.0
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#define swap_eye params.swap_eye
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layout(std140, set = 0, binding = 0) uniform UBO
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{
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mat4 MVP;
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} global;
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#pragma stage vertex
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layout(location = 0) in vec4 Position;
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layout(location = 1) in vec2 TexCoord;
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layout(location = 0) out vec2 left_coord;
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layout(location = 1) out vec2 right_coord;
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layout(location = 2) out float timer;
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void main()
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{
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gl_Position = global.MVP * Position;
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vec2 temp_coord = TexCoord.xy - 0.5;
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temp_coord *= ZOOM;
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temp_coord *= vec2(2.,1. / height_mod);
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temp_coord += vec2(horz_pos, vert_pos);
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temp_coord += 0.5;
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left_coord = temp_coord.xy - vec2(0.5 + separation,0.);
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right_coord = temp_coord.xy + vec2(0.5 + separation,0.);
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timer = abs(swap_eye - mod(float(params.FrameCount), 2.));
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}
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#pragma stage fragment
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layout(location = 0) in vec2 left_coord;
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layout(location = 1) in vec2 right_coord;
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layout(location = 2) in float timer;
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layout(location = 0) out vec4 FragColor;
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layout(set = 0, binding = 2) uniform sampler2D Source;
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layout(set = 0, binding = 2) uniform sampler2D OriginalHistory1;
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#define PrevTexture OriginalHistory1
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void main()
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{
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vec4 left_screen = texture(Source, left_coord);
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vec4 left_hold = texture(PrevTexture, left_coord);
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vec4 right_screen = texture(Source, right_coord);
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vec4 right_hold = texture(PrevTexture, right_coord);
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left_screen = left_screen * timer + (1. - timer) * left_hold * flicker;
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right_screen = right_screen * (1. - timer) + right_hold * timer * flicker;
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FragColor = left_screen + right_screen;
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}
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71
stereoscopic-3d/shaders/side-by-side-simple.slang
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stereoscopic-3d/shaders/side-by-side-simple.slang
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#version 450
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// simple shader to view content on side-by-side 3D displays
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// by hunterk
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// license: public domain
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layout(push_constant) uniform Push
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{
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vec4 SourceSize;
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vec4 OriginalSize;
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vec4 OutputSize;
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uint FrameCount;
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float eye_sep, y_loc, BOTH, ana_zoom, WIDTH, HEIGHT, warpX, warpY, pulfrich;
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} params;
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#pragma parameter eye_sep "Eye Separation" 0.30 -1.0 5.0 0.05
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#define eye_sep params.eye_sep
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#pragma parameter y_loc "Vertical Placement" 0.25 -1.0 1.0 0.01
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#define y_loc params.y_loc
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#pragma parameter BOTH "Horizontal Placement" 0.51 -2.0 2.0 0.005
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#define BOTH params.BOTH
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#pragma parameter ana_zoom "Zoom" 0.75 -2.0 2.0 0.05
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#define ana_zoom params.ana_zoom
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#pragma parameter WIDTH "Side-by-Side Image Width" 3.05 1.0 7.0 0.05
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#define WIDTH params.WIDTH
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#pragma parameter HEIGHT "Side-by-Side Image Height" 2.0 1.0 5.0 0.1
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#define HEIGHT params.HEIGHT
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#pragma parameter warpX "Lens Warp Correction X" 0.1 0.0 0.5 0.05
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#define warpX params.warpX
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#pragma parameter warpY "Lens Warp Correction Y" 0.1 0.0 0.5 0.05
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#define warpY params.warpY
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#pragma parameter pulfrich "Pulfrich Effect" 0.0 0.0 0.5 0.25
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#define pulfrich params.pulfrich
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layout(std140, set = 0, binding = 0) uniform UBO
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{
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mat4 MVP;
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} global;
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#pragma stage vertex
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layout(location = 0) in vec4 Position;
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layout(location = 1) in vec2 TexCoord;
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layout(location = 0) out vec2 vTexCoord;
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void main()
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{
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gl_Position = global.MVP * Position;
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vTexCoord = ((TexCoord.xy - 0.5) * ana_zoom + 0.5) * vec2(WIDTH, HEIGHT) - vec2(BOTH, 0.0);
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}
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#pragma stage fragment
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layout(location = 0) in vec2 vTexCoord;
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layout(location = 0) out vec4 FragColor;
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layout(set = 0, binding = 2) uniform sampler2D Source;
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//distortion
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vec2 Warp(vec2 pos){
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pos.xy = pos.xy * 2.0-1.0;
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pos.xy *= vec2(1.0+(pos.y*pos.y)*warpX,1.0+(pos.x*pos.x)*warpY);
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return pos*0.5+0.5;}
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void main()
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{
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vec2 warpCoord1 = Warp(vTexCoord.xy - vec2(eye_sep, y_loc));
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vec2 warpCoord2 = Warp(vTexCoord.xy + vec2(eye_sep, -y_loc));
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vec4 frame1 = texture(Source, warpCoord1);
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vec4 frame2 = texture(Source, warpCoord2) * (1.0 - pulfrich);
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vec4 final = vec4(frame1 + frame2);
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FragColor = final;
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}
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3
stereoscopic-3d/shutter-to-anaglyph.slangp
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stereoscopic-3d/shutter-to-anaglyph.slangp
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shaders = 1
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shader0 = shaders/shutter-to-anaglyph.slang
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3
stereoscopic-3d/shutter-to-side-by-side.slangp
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stereoscopic-3d/shutter-to-side-by-side.slangp
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shaders = 1
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shader0 = shaders/shutter-to-side-by-side.slang
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3
stereoscopic-3d/side-by-side-simple.slangp
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stereoscopic-3d/side-by-side-simple.slangp
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shaders = 1
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shaders0 = shaders/side-by-side-simple.slang
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