739 lines
27 KiB
Haxe
739 lines
27 KiB
Haxe
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package kha.js.graphics4;
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import js.html.webgl.GL2;
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import kha.graphics4.StencilValue;
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import kha.arrays.Float32Array;
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import kha.arrays.Int32Array;
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import js.html.webgl.GL;
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import kha.graphics4.BlendingFactor;
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import kha.graphics4.BlendingOperation;
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import kha.graphics4.CompareMode;
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import kha.graphics4.CubeMap;
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import kha.graphics4.CullMode;
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import kha.graphics4.IndexBuffer;
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import kha.graphics4.MipMapFilter;
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import kha.graphics4.PipelineState;
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import kha.graphics4.StencilAction;
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import kha.graphics4.TextureAddressing;
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import kha.graphics4.TextureFilter;
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import kha.graphics4.Usage;
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import kha.graphics4.VertexBuffer;
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import kha.graphics4.VertexStructure;
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import kha.Image;
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import kha.math.FastMatrix3;
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import kha.math.FastMatrix4;
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import kha.math.FastVector2;
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import kha.math.FastVector3;
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import kha.math.FastVector4;
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import kha.WebGLImage;
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class Graphics implements kha.graphics4.Graphics {
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var currentPipeline: PipelineState = null;
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var depthTest: Bool = false;
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var depthMask: Bool = false;
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var colorMaskRed: Bool = true;
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var colorMaskGreen: Bool = true;
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var colorMaskBlue: Bool = true;
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var colorMaskAlpha: Bool = true;
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var indicesCount: Int;
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var renderTarget: Canvas;
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var renderTargetFrameBuffer: Dynamic;
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var renderTargetMSAA: Dynamic;
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var renderTargetTexture: Dynamic;
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var isCubeMap: Bool = false;
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var isDepthAttachment: Bool = false;
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var instancedExtension: Dynamic;
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var blendMinMaxExtension: Dynamic;
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static var current: Graphics = null;
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static var useVertexAttributes: Int = 0;
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public function new(renderTarget: Canvas = null) {
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this.renderTarget = renderTarget;
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init();
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if (SystemImpl.gl2) {
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instancedExtension = true;
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}
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else {
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instancedExtension = SystemImpl.gl.getExtension("ANGLE_instanced_arrays");
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blendMinMaxExtension = SystemImpl.gl.getExtension("EXT_blend_minmax");
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}
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}
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function init() {
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if (renderTarget == null)
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return;
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isCubeMap = Std.isOfType(renderTarget, CubeMap);
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if (isCubeMap) {
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var cubeMap: CubeMap = cast(renderTarget, CubeMap);
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renderTargetFrameBuffer = cubeMap.frameBuffer;
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renderTargetTexture = cubeMap.texture;
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isDepthAttachment = cubeMap.isDepthAttachment;
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}
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else {
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var image: WebGLImage = cast(renderTarget, WebGLImage);
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renderTargetFrameBuffer = image.frameBuffer;
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renderTargetMSAA = image.MSAAFrameBuffer;
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renderTargetTexture = image.texture;
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}
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}
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public function begin(additionalRenderTargets: Array<Canvas> = null): Void {
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if (current == null) {
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current = this;
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}
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else {
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throw "End before you begin";
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}
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SystemImpl.gl.enable(GL.BLEND);
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SystemImpl.gl.blendFunc(GL.SRC_ALPHA, GL.ONE_MINUS_SRC_ALPHA);
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if (renderTarget == null) {
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SystemImpl.gl.bindFramebuffer(GL.FRAMEBUFFER, null);
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SystemImpl.gl.viewport(0, 0, System.windowWidth(), System.windowHeight());
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}
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else {
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SystemImpl.gl.bindFramebuffer(GL.FRAMEBUFFER, renderTargetFrameBuffer);
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// if (isCubeMap) SystemImpl.gl.framebufferTexture(GL.FRAMEBUFFER, GL.COLOR_ATTACHMENT0, GL.TEXTURE_CUBE_MAP, renderTargetTexture, 0); // Layered
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SystemImpl.gl.viewport(0, 0, renderTarget.width, renderTarget.height);
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if (additionalRenderTargets != null) {
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SystemImpl.gl.framebufferTexture2D(GL.FRAMEBUFFER, SystemImpl.drawBuffers.COLOR_ATTACHMENT0_WEBGL, GL.TEXTURE_2D, renderTargetTexture, 0);
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for (i in 0...additionalRenderTargets.length) {
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SystemImpl.gl.framebufferTexture2D(GL.FRAMEBUFFER, SystemImpl.drawBuffers.COLOR_ATTACHMENT0_WEBGL + i + 1, GL.TEXTURE_2D,
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cast(additionalRenderTargets[i], WebGLImage).texture, 0);
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}
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var attachments = [SystemImpl.drawBuffers.COLOR_ATTACHMENT0_WEBGL];
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for (i in 0...additionalRenderTargets.length) {
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attachments.push(SystemImpl.drawBuffers.COLOR_ATTACHMENT0_WEBGL + i + 1);
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}
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SystemImpl.gl2 ? untyped SystemImpl.gl.drawBuffers(attachments) : SystemImpl.drawBuffers.drawBuffersWEBGL(attachments);
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}
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}
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}
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public function beginFace(face: Int): Void {
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if (current == null) {
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current = this;
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}
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else {
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throw "End before you begin";
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}
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SystemImpl.gl.enable(GL.BLEND);
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SystemImpl.gl.blendFunc(GL.SRC_ALPHA, GL.ONE_MINUS_SRC_ALPHA);
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SystemImpl.gl.bindFramebuffer(GL.FRAMEBUFFER, renderTargetFrameBuffer);
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SystemImpl.gl.framebufferTexture2D(GL.FRAMEBUFFER, isDepthAttachment ? GL.DEPTH_ATTACHMENT : GL.COLOR_ATTACHMENT0,
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GL.TEXTURE_CUBE_MAP_POSITIVE_X + face, renderTargetTexture, 0);
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SystemImpl.gl.viewport(0, 0, renderTarget.width, renderTarget.height);
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}
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public function beginEye(eye: Int): Void {
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if (current == null) {
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current = this;
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}
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else {
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throw "End before you begin";
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}
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SystemImpl.gl.enable(GL.BLEND);
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SystemImpl.gl.blendFunc(GL.SRC_ALPHA, GL.ONE_MINUS_SRC_ALPHA);
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SystemImpl.gl.bindFramebuffer(GL.FRAMEBUFFER, null);
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if (eye == 0) {
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SystemImpl.gl.viewport(0, 0, Std.int(System.windowWidth() * 0.5), System.windowHeight());
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}
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else {
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SystemImpl.gl.viewport(Std.int(System.windowWidth() * 0.5), 0, Std.int(System.windowWidth() * 0.5), System.windowHeight());
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}
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}
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public function end(): Void {
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if (current == this) {
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current = null;
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}
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else {
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throw "Begin before you end";
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}
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if (renderTargetMSAA != null) {
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untyped SystemImpl.gl.bindFramebuffer(SystemImpl.gl.READ_FRAMEBUFFER, renderTargetFrameBuffer);
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untyped SystemImpl.gl.bindFramebuffer(SystemImpl.gl.DRAW_FRAMEBUFFER, renderTargetMSAA);
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untyped SystemImpl.gl.blitFramebuffer(0, 0, renderTarget.width, renderTarget.height, 0, 0, renderTarget.width, renderTarget.height,
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GL.COLOR_BUFFER_BIT, GL.NEAREST);
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}
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#if (debug || kha_debug_html5)
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var error = SystemImpl.gl.getError();
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switch (error) {
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case GL.NO_ERROR:
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case GL.INVALID_ENUM:
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trace("WebGL error: Invalid enum");
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case GL.INVALID_VALUE:
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trace("WebGL error: Invalid value");
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case GL.INVALID_OPERATION:
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trace("WebGL error: Invalid operation");
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case GL.INVALID_FRAMEBUFFER_OPERATION:
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trace("WebGL error: Invalid framebuffer operation");
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case GL.OUT_OF_MEMORY:
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trace("WebGL error: Out of memory");
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case GL.CONTEXT_LOST_WEBGL:
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trace("WebGL error: Context lost");
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default:
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trace("Unknown WebGL error");
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}
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#end
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}
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public function flush(): Void {}
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public function vsynced(): Bool {
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return true;
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}
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public function refreshRate(): Int {
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return 60;
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}
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public function clear(?color: Color, ?depth: Float, ?stencil: Int): Void {
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var clearMask: Int = 0;
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if (color != null) {
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clearMask |= GL.COLOR_BUFFER_BIT;
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SystemImpl.gl.colorMask(true, true, true, true);
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SystemImpl.gl.clearColor(color.R, color.G, color.B, color.A);
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}
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if (depth != null) {
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clearMask |= GL.DEPTH_BUFFER_BIT;
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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SystemImpl.gl.depthMask(true);
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SystemImpl.gl.clearDepth(depth);
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}
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if (stencil != null) {
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clearMask |= GL.STENCIL_BUFFER_BIT;
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SystemImpl.gl.enable(GL.STENCIL_TEST);
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SystemImpl.gl.stencilMask(0xff);
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SystemImpl.gl.clearStencil(stencil);
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}
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SystemImpl.gl.clear(clearMask);
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SystemImpl.gl.colorMask(colorMaskRed, colorMaskGreen, colorMaskBlue, colorMaskAlpha);
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if (depthTest) {
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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}
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else {
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SystemImpl.gl.disable(GL.DEPTH_TEST);
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}
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SystemImpl.gl.depthMask(depthMask);
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}
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public function viewport(x: Int, y: Int, width: Int, height: Int): Void {
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if (renderTarget == null) {
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SystemImpl.gl.viewport(x, System.windowHeight(0) - y - height, width, height);
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}
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else {
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SystemImpl.gl.viewport(x, y, width, height);
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}
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}
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public function scissor(x: Int, y: Int, width: Int, height: Int): Void {
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SystemImpl.gl.enable(GL.SCISSOR_TEST);
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if (renderTarget == null) {
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SystemImpl.gl.scissor(x, System.windowHeight(0) - y - height, width, height);
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}
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else {
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SystemImpl.gl.scissor(x, y, width, height);
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}
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}
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public function disableScissor(): Void {
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SystemImpl.gl.disable(GL.SCISSOR_TEST);
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}
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public function setDepthMode(write: Bool, mode: CompareMode): Void {
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switch (mode) {
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case Always:
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write ? SystemImpl.gl.enable(GL.DEPTH_TEST) : SystemImpl.gl.disable(GL.DEPTH_TEST);
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depthTest = write;
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SystemImpl.gl.depthFunc(GL.ALWAYS);
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case Never:
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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depthTest = true;
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SystemImpl.gl.depthFunc(GL.NEVER);
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case Equal:
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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depthTest = true;
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SystemImpl.gl.depthFunc(GL.EQUAL);
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case NotEqual:
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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depthTest = true;
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SystemImpl.gl.depthFunc(GL.NOTEQUAL);
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case Less:
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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depthTest = true;
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SystemImpl.gl.depthFunc(GL.LESS);
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case LessEqual:
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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depthTest = true;
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SystemImpl.gl.depthFunc(GL.LEQUAL);
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case Greater:
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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depthTest = true;
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SystemImpl.gl.depthFunc(GL.GREATER);
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case GreaterEqual:
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SystemImpl.gl.enable(GL.DEPTH_TEST);
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depthTest = true;
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SystemImpl.gl.depthFunc(GL.GEQUAL);
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}
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SystemImpl.gl.depthMask(write);
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depthMask = write;
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}
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static function getBlendFunc(factor: BlendingFactor): Int {
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switch (factor) {
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case BlendZero, Undefined:
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return GL.ZERO;
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case BlendOne:
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return GL.ONE;
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case SourceAlpha:
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return GL.SRC_ALPHA;
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case DestinationAlpha:
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return GL.DST_ALPHA;
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case InverseSourceAlpha:
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return GL.ONE_MINUS_SRC_ALPHA;
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case InverseDestinationAlpha:
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return GL.ONE_MINUS_DST_ALPHA;
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case SourceColor:
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return GL.SRC_COLOR;
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case DestinationColor:
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return GL.DST_COLOR;
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case InverseSourceColor:
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return GL.ONE_MINUS_SRC_COLOR;
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case InverseDestinationColor:
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return GL.ONE_MINUS_DST_COLOR;
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}
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}
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static function getBlendOp(op: BlendingOperation): Int {
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switch (op) {
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case Add:
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return GL.FUNC_ADD;
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case Subtract:
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return GL.FUNC_SUBTRACT;
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case ReverseSubtract:
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return GL.FUNC_REVERSE_SUBTRACT;
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case Min:
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return 0x8007;
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case Max:
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return 0x8008;
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}
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}
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public function setBlendingMode(source: BlendingFactor, destination: BlendingFactor, operation: BlendingOperation, alphaSource: BlendingFactor,
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alphaDestination: BlendingFactor, alphaOperation: BlendingOperation): Void {
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if (source == BlendOne && destination == BlendZero) {
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SystemImpl.gl.disable(GL.BLEND);
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}
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else {
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SystemImpl.gl.enable(GL.BLEND);
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SystemImpl.gl.blendFuncSeparate(getBlendFunc(source), getBlendFunc(destination), getBlendFunc(alphaSource), getBlendFunc(alphaDestination));
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SystemImpl.gl.blendEquationSeparate(getBlendOp(operation), getBlendOp(alphaOperation));
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}
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}
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public function createVertexBuffer(vertexCount: Int, structure: VertexStructure, usage: Usage, canRead: Bool = false): kha.graphics4.VertexBuffer {
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return new VertexBuffer(vertexCount, structure, usage);
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}
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public function setVertexBuffer(vertexBuffer: kha.graphics4.VertexBuffer): Void {
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for (i in 0...useVertexAttributes) {
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SystemImpl.gl.disableVertexAttribArray(i);
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}
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useVertexAttributes = vertexBuffer.set(0);
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}
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public function setVertexBuffers(vertexBuffers: Array<kha.graphics4.VertexBuffer>): Void {
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for (i in 0...useVertexAttributes) {
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SystemImpl.gl.disableVertexAttribArray(i);
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}
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var offset: Int = 0;
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for (vertexBuffer in vertexBuffers) {
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offset += vertexBuffer.set(offset);
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}
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useVertexAttributes = offset;
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}
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public function createIndexBuffer(indexCount: Int, usage: Usage, canRead: Bool = false): kha.graphics4.IndexBuffer {
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return new IndexBuffer(indexCount, usage);
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}
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public function setIndexBuffer(indexBuffer: kha.graphics4.IndexBuffer): Void {
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indicesCount = indexBuffer.count();
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indexBuffer.set();
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}
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// public function maxTextureSize(): Int {
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// return Sys.gl == null ? 8192 : Sys.gl.getParameter(Sys.gl.MAX_TEXTURE_SIZE);
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// }
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// public function supportsNonPow2Textures(): Bool {
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// return false;
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// }
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||
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public function setTexture(stage: kha.graphics4.TextureUnit, texture: kha.Image): Void {
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if (texture == null) {
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SystemImpl.gl.activeTexture(GL.TEXTURE0 + (cast stage : TextureUnit).value);
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SystemImpl.gl.bindTexture(GL.TEXTURE_2D, null);
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}
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else {
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cast(texture, WebGLImage).set((cast stage : TextureUnit).value);
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}
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}
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public function setTextureDepth(stage: kha.graphics4.TextureUnit, texture: kha.Image): Void {
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cast(texture, WebGLImage).setDepth((cast stage : TextureUnit).value);
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}
|
||
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public function setTextureArray(unit: kha.graphics4.TextureUnit, texture: kha.Image): Void {
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// not implemented yet.
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}
|
||
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public function setVideoTexture(unit: kha.graphics4.TextureUnit, texture: kha.Video): Void {
|
||
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if (texture == null) {
|
||
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SystemImpl.gl.activeTexture(GL.TEXTURE0 + (cast unit : TextureUnit).value);
|
||
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SystemImpl.gl.bindTexture(GL.TEXTURE_2D, null);
|
||
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}
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else {
|
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cast((cast texture : kha.js.Video).texture, WebGLImage).set((cast unit : TextureUnit).value);
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||
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}
|
||
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}
|
||
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||
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public function setImageTexture(unit: kha.graphics4.TextureUnit, texture: kha.Image): Void {}
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||
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public function setTextureParameters(texunit: kha.graphics4.TextureUnit, uAddressing: TextureAddressing, vAddressing: TextureAddressing,
|
||
|
minificationFilter: TextureFilter, magnificationFilter: TextureFilter, mipmapFilter: MipMapFilter): Void {
|
||
|
SystemImpl.gl.activeTexture(GL.TEXTURE0 + (cast texunit : TextureUnit).value);
|
||
|
|
||
|
switch (uAddressing) {
|
||
|
case Clamp:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_WRAP_S, GL.CLAMP_TO_EDGE);
|
||
|
case Repeat:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_WRAP_S, GL.REPEAT);
|
||
|
case Mirror:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_WRAP_S, GL.MIRRORED_REPEAT);
|
||
|
}
|
||
|
|
||
|
switch (vAddressing) {
|
||
|
case Clamp:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_WRAP_T, GL.CLAMP_TO_EDGE);
|
||
|
case Repeat:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_WRAP_T, GL.REPEAT);
|
||
|
case Mirror:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_WRAP_T, GL.MIRRORED_REPEAT);
|
||
|
}
|
||
|
|
||
|
switch (minificationFilter) {
|
||
|
case PointFilter:
|
||
|
switch (mipmapFilter) {
|
||
|
case NoMipFilter:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_MIN_FILTER, GL.NEAREST);
|
||
|
case PointMipFilter:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_MIN_FILTER, GL.NEAREST_MIPMAP_NEAREST);
|
||
|
case LinearMipFilter:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_MIN_FILTER, GL.NEAREST_MIPMAP_LINEAR);
|
||
|
}
|
||
|
case LinearFilter, AnisotropicFilter:
|
||
|
switch (mipmapFilter) {
|
||
|
case NoMipFilter:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_MIN_FILTER, GL.LINEAR);
|
||
|
case PointMipFilter:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_MIN_FILTER, GL.LINEAR_MIPMAP_NEAREST);
|
||
|
case LinearMipFilter:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_MIN_FILTER, GL.LINEAR_MIPMAP_LINEAR);
|
||
|
}
|
||
|
if (minificationFilter == AnisotropicFilter) {
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, SystemImpl.anisotropicFilter.TEXTURE_MAX_ANISOTROPY_EXT, 4);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
switch (magnificationFilter) {
|
||
|
case PointFilter:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_MAG_FILTER, GL.NEAREST);
|
||
|
case LinearFilter, AnisotropicFilter:
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL.TEXTURE_MAG_FILTER, GL.LINEAR);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function setTexture3DParameters(texunit: kha.graphics4.TextureUnit, uAddressing: TextureAddressing, vAddressing: TextureAddressing,
|
||
|
wAddressing: TextureAddressing, minificationFilter: TextureFilter, magnificationFilter: TextureFilter, mipmapFilter: MipMapFilter): Void {}
|
||
|
|
||
|
public function setTextureCompareMode(texunit: kha.graphics4.TextureUnit, enabled: Bool) {
|
||
|
if (enabled) {
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL2.TEXTURE_COMPARE_MODE, GL2.COMPARE_REF_TO_TEXTURE);
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL2.TEXTURE_COMPARE_FUNC, GL.LEQUAL);
|
||
|
}
|
||
|
else {
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_2D, GL2.TEXTURE_COMPARE_MODE, GL.NONE);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function setCubeMapCompareMode(texunit: kha.graphics4.TextureUnit, enabled: Bool) {
|
||
|
if (enabled) {
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_CUBE_MAP, GL2.TEXTURE_COMPARE_MODE, GL2.COMPARE_REF_TO_TEXTURE);
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_CUBE_MAP, GL2.TEXTURE_COMPARE_FUNC, GL.LEQUAL);
|
||
|
}
|
||
|
else {
|
||
|
SystemImpl.gl.texParameteri(GL.TEXTURE_CUBE_MAP, GL2.TEXTURE_COMPARE_MODE, GL.NONE);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function setCubeMap(stage: kha.graphics4.TextureUnit, cubeMap: kha.graphics4.CubeMap): Void {
|
||
|
if (cubeMap == null) {
|
||
|
SystemImpl.gl.activeTexture(GL.TEXTURE0 + (cast stage : TextureUnit).value);
|
||
|
SystemImpl.gl.bindTexture(GL.TEXTURE_CUBE_MAP, null);
|
||
|
}
|
||
|
else {
|
||
|
cubeMap.set((cast stage : TextureUnit).value);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function setCubeMapDepth(stage: kha.graphics4.TextureUnit, cubeMap: kha.graphics4.CubeMap): Void {
|
||
|
cubeMap.setDepth((cast stage : TextureUnit).value);
|
||
|
}
|
||
|
|
||
|
public function maxBoundTextures(): Int {
|
||
|
return SystemImpl.gl.getParameter(GL.MAX_TEXTURE_IMAGE_UNITS);
|
||
|
}
|
||
|
|
||
|
public function setCullMode(mode: CullMode): Void {
|
||
|
switch (mode) {
|
||
|
case None:
|
||
|
SystemImpl.gl.disable(GL.CULL_FACE);
|
||
|
case Clockwise:
|
||
|
SystemImpl.gl.enable(GL.CULL_FACE);
|
||
|
SystemImpl.gl.cullFace(GL.BACK);
|
||
|
case CounterClockwise:
|
||
|
SystemImpl.gl.enable(GL.CULL_FACE);
|
||
|
SystemImpl.gl.cullFace(GL.FRONT);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function setPipeline(pipe: PipelineState): Void {
|
||
|
setCullMode(pipe.cullMode);
|
||
|
setDepthMode(pipe.depthWrite, pipe.depthMode);
|
||
|
if (pipe.stencilFrontMode == Always && pipe.stencilBackMode == Always && pipe.stencilFrontBothPass == Keep && pipe.stencilBackBothPass == Keep
|
||
|
&& pipe.stencilFrontDepthFail == Keep && pipe.stencilBackDepthFail == Keep && pipe.stencilFrontFail == Keep && pipe.stencilBackFail == Keep) {
|
||
|
SystemImpl.gl.disable(GL.STENCIL_TEST);
|
||
|
}
|
||
|
else {
|
||
|
SystemImpl.gl.enable(GL.STENCIL_TEST);
|
||
|
setStencilParameters(true, pipe.stencilFrontMode, pipe.stencilFrontBothPass, pipe.stencilFrontDepthFail, pipe.stencilFrontFail,
|
||
|
pipe.stencilReferenceValue, pipe.stencilReadMask, pipe.stencilWriteMask);
|
||
|
setStencilParameters(false, pipe.stencilBackMode, pipe.stencilBackBothPass, pipe.stencilBackDepthFail, pipe.stencilBackFail,
|
||
|
pipe.stencilReferenceValue, pipe.stencilReadMask, pipe.stencilWriteMask);
|
||
|
}
|
||
|
setBlendingMode(pipe.blendSource, pipe.blendDestination, pipe.blendOperation, pipe.alphaBlendSource, pipe.alphaBlendDestination,
|
||
|
pipe.alphaBlendOperation);
|
||
|
currentPipeline = pipe;
|
||
|
pipe.set();
|
||
|
colorMaskRed = pipe.colorWriteMaskRed;
|
||
|
colorMaskGreen = pipe.colorWriteMaskGreen;
|
||
|
colorMaskBlue = pipe.colorWriteMaskBlue;
|
||
|
colorMaskAlpha = pipe.colorWriteMaskAlpha;
|
||
|
}
|
||
|
|
||
|
public function setStencilReferenceValue(value: Int): Void {
|
||
|
SystemImpl.gl.stencilFuncSeparate(GL.FRONT, convertCompareMode(currentPipeline.stencilFrontMode), value, currentPipeline.stencilReadMask);
|
||
|
SystemImpl.gl.stencilFuncSeparate(GL.BACK, convertCompareMode(currentPipeline.stencilBackMode), value, currentPipeline.stencilReadMask);
|
||
|
}
|
||
|
|
||
|
public function setBool(location: kha.graphics4.ConstantLocation, value: Bool): Void {
|
||
|
SystemImpl.gl.uniform1i((cast location : ConstantLocation).value, value ? 1 : 0);
|
||
|
}
|
||
|
|
||
|
public function setInt(location: kha.graphics4.ConstantLocation, value: Int): Void {
|
||
|
SystemImpl.gl.uniform1i((cast location : ConstantLocation).value, value);
|
||
|
}
|
||
|
|
||
|
public function setInt2(location: kha.graphics4.ConstantLocation, value1: Int, value2: Int): Void {
|
||
|
SystemImpl.gl.uniform2i((cast location : ConstantLocation).value, value1, value2);
|
||
|
}
|
||
|
|
||
|
public function setInt3(location: kha.graphics4.ConstantLocation, value1: Int, value2: Int, value3: Int): Void {
|
||
|
SystemImpl.gl.uniform3i((cast location : ConstantLocation).value, value1, value2, value3);
|
||
|
}
|
||
|
|
||
|
public function setInt4(location: kha.graphics4.ConstantLocation, value1: Int, value2: Int, value3: Int, value4: Int): Void {
|
||
|
SystemImpl.gl.uniform4i((cast location : ConstantLocation).value, value1, value2, value3, value4);
|
||
|
}
|
||
|
|
||
|
public function setInts(location: kha.graphics4.ConstantLocation, values: Int32Array): Void {
|
||
|
var webglLocation = (cast location : ConstantLocation);
|
||
|
var rawValues = new js.lib.Int32Array(values.buffer, values.byteOffset, values.length);
|
||
|
switch (webglLocation.type) {
|
||
|
case GL.INT_VEC2:
|
||
|
SystemImpl.gl.uniform2iv(webglLocation.value, rawValues);
|
||
|
case GL.INT_VEC3:
|
||
|
SystemImpl.gl.uniform3iv(webglLocation.value, rawValues);
|
||
|
case GL.INT_VEC4:
|
||
|
SystemImpl.gl.uniform4iv(webglLocation.value, rawValues);
|
||
|
default:
|
||
|
SystemImpl.gl.uniform1iv(webglLocation.value, rawValues);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function setFloat(location: kha.graphics4.ConstantLocation, value: FastFloat): Void {
|
||
|
SystemImpl.gl.uniform1f((cast location : ConstantLocation).value, value);
|
||
|
}
|
||
|
|
||
|
public function setFloat2(location: kha.graphics4.ConstantLocation, value1: FastFloat, value2: FastFloat): Void {
|
||
|
SystemImpl.gl.uniform2f((cast location : ConstantLocation).value, value1, value2);
|
||
|
}
|
||
|
|
||
|
public function setFloat3(location: kha.graphics4.ConstantLocation, value1: FastFloat, value2: FastFloat, value3: FastFloat): Void {
|
||
|
SystemImpl.gl.uniform3f((cast location : ConstantLocation).value, value1, value2, value3);
|
||
|
}
|
||
|
|
||
|
public function setFloat4(location: kha.graphics4.ConstantLocation, value1: FastFloat, value2: FastFloat, value3: FastFloat, value4: FastFloat): Void {
|
||
|
SystemImpl.gl.uniform4f((cast location : ConstantLocation).value, value1, value2, value3, value4);
|
||
|
}
|
||
|
|
||
|
public function setFloats(location: kha.graphics4.ConstantLocation, values: Float32Array): Void {
|
||
|
var webglLocation = (cast location : ConstantLocation);
|
||
|
var rawValues = new js.lib.Float32Array(values.buffer, values.byteOffset, values.length);
|
||
|
switch (webglLocation.type) {
|
||
|
case GL.FLOAT_VEC2:
|
||
|
SystemImpl.gl.uniform2fv(webglLocation.value, rawValues);
|
||
|
case GL.FLOAT_VEC3:
|
||
|
SystemImpl.gl.uniform3fv(webglLocation.value, rawValues);
|
||
|
case GL.FLOAT_VEC4:
|
||
|
SystemImpl.gl.uniform4fv(webglLocation.value, rawValues);
|
||
|
case GL.FLOAT_MAT4:
|
||
|
SystemImpl.gl.uniformMatrix4fv(webglLocation.value, false, rawValues);
|
||
|
default:
|
||
|
SystemImpl.gl.uniform1fv(webglLocation.value, rawValues);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function setVector2(location: kha.graphics4.ConstantLocation, value: FastVector2): Void {
|
||
|
SystemImpl.gl.uniform2f((cast location : ConstantLocation).value, value.x, value.y);
|
||
|
}
|
||
|
|
||
|
public function setVector3(location: kha.graphics4.ConstantLocation, value: FastVector3): Void {
|
||
|
SystemImpl.gl.uniform3f((cast location : ConstantLocation).value, value.x, value.y, value.z);
|
||
|
}
|
||
|
|
||
|
public function setVector4(location: kha.graphics4.ConstantLocation, value: FastVector4): Void {
|
||
|
SystemImpl.gl.uniform4f((cast location : ConstantLocation).value, value.x, value.y, value.z, value.w);
|
||
|
}
|
||
|
|
||
|
static var matrixCache = new js.lib.Float32Array(16);
|
||
|
public inline function setMatrix(location: kha.graphics4.ConstantLocation, matrix: FastMatrix4): Void {
|
||
|
matrixCache[0] = matrix._00;
|
||
|
matrixCache[1] = matrix._01;
|
||
|
matrixCache[2] = matrix._02;
|
||
|
matrixCache[3] = matrix._03;
|
||
|
matrixCache[4] = matrix._10;
|
||
|
matrixCache[5] = matrix._11;
|
||
|
matrixCache[6] = matrix._12;
|
||
|
matrixCache[7] = matrix._13;
|
||
|
matrixCache[8] = matrix._20;
|
||
|
matrixCache[9] = matrix._21;
|
||
|
matrixCache[10] = matrix._22;
|
||
|
matrixCache[11] = matrix._23;
|
||
|
matrixCache[12] = matrix._30;
|
||
|
matrixCache[13] = matrix._31;
|
||
|
matrixCache[14] = matrix._32;
|
||
|
matrixCache[15] = matrix._33;
|
||
|
SystemImpl.gl.uniformMatrix4fv((cast location : ConstantLocation).value, false, matrixCache);
|
||
|
}
|
||
|
|
||
|
static var matrix3Cache = new js.lib.Float32Array(9);
|
||
|
public inline function setMatrix3(location: kha.graphics4.ConstantLocation, matrix: FastMatrix3): Void {
|
||
|
matrix3Cache[0] = matrix._00;
|
||
|
matrix3Cache[1] = matrix._01;
|
||
|
matrix3Cache[2] = matrix._02;
|
||
|
matrix3Cache[3] = matrix._10;
|
||
|
matrix3Cache[4] = matrix._11;
|
||
|
matrix3Cache[5] = matrix._12;
|
||
|
matrix3Cache[6] = matrix._20;
|
||
|
matrix3Cache[7] = matrix._21;
|
||
|
matrix3Cache[8] = matrix._22;
|
||
|
SystemImpl.gl.uniformMatrix3fv((cast location : ConstantLocation).value, false, matrix3Cache);
|
||
|
}
|
||
|
|
||
|
public function drawIndexedVertices(start: Int = 0, count: Int = -1): Void {
|
||
|
var type = SystemImpl.elementIndexUint == null ? GL.UNSIGNED_SHORT : GL.UNSIGNED_INT;
|
||
|
var size = type == GL.UNSIGNED_SHORT ? 2 : 4;
|
||
|
SystemImpl.gl.drawElements(GL.TRIANGLES, count == -1 ? indicesCount : count, type, start * size);
|
||
|
}
|
||
|
|
||
|
function convertStencilAction(action: StencilAction) {
|
||
|
switch (action) {
|
||
|
case StencilAction.Decrement:
|
||
|
return GL.DECR;
|
||
|
case StencilAction.DecrementWrap:
|
||
|
return GL.DECR_WRAP;
|
||
|
case StencilAction.Increment:
|
||
|
return GL.INCR;
|
||
|
case StencilAction.IncrementWrap:
|
||
|
return GL.INCR_WRAP;
|
||
|
case StencilAction.Invert:
|
||
|
return GL.INVERT;
|
||
|
case StencilAction.Keep:
|
||
|
return GL.KEEP;
|
||
|
case StencilAction.Replace:
|
||
|
return GL.REPLACE;
|
||
|
case StencilAction.Zero:
|
||
|
return GL.ZERO;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
function convertCompareMode(compareMode: CompareMode) {
|
||
|
switch (compareMode) {
|
||
|
case Always:
|
||
|
return GL.ALWAYS;
|
||
|
case Equal:
|
||
|
return GL.EQUAL;
|
||
|
case Greater:
|
||
|
return GL.GREATER;
|
||
|
case GreaterEqual:
|
||
|
return GL.GEQUAL;
|
||
|
case Less:
|
||
|
return GL.LESS;
|
||
|
case LessEqual:
|
||
|
return GL.LEQUAL;
|
||
|
case Never:
|
||
|
return GL.NEVER;
|
||
|
case NotEqual:
|
||
|
return GL.NOTEQUAL;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function setStencilParameters(front: Bool, compareMode: CompareMode, bothPass: StencilAction, depthFail: StencilAction, stencilFail: StencilAction,
|
||
|
referenceValue: StencilValue, readMask: Int = 0xff, writeMask: Int = 0xff): Void {
|
||
|
var stencilFunc = convertCompareMode(compareMode);
|
||
|
SystemImpl.gl.stencilMaskSeparate(front ? GL.FRONT : GL.BACK, writeMask);
|
||
|
SystemImpl.gl.stencilOpSeparate(front ? GL.FRONT : GL.BACK, convertStencilAction(stencilFail), convertStencilAction(depthFail),
|
||
|
convertStencilAction(bothPass));
|
||
|
switch (referenceValue) {
|
||
|
case Static(value):
|
||
|
SystemImpl.gl.stencilFuncSeparate(front ? GL.FRONT : GL.BACK, stencilFunc, value, readMask);
|
||
|
case Dynamic:
|
||
|
SystemImpl.gl.stencilFuncSeparate(front ? GL.FRONT : GL.BACK, stencilFunc, 0, readMask);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function drawIndexedVerticesInstanced(instanceCount: Int, start: Int = 0, count: Int = -1) {
|
||
|
if (instancedRenderingAvailable()) {
|
||
|
var type = SystemImpl.elementIndexUint == null ? GL.UNSIGNED_SHORT : GL.UNSIGNED_INT;
|
||
|
var typeSize = SystemImpl.elementIndexUint == null ? 2 : 4;
|
||
|
if (SystemImpl.gl2) {
|
||
|
untyped SystemImpl.gl.drawElementsInstanced(GL.TRIANGLES, count == -1 ? indicesCount : count, type, start * typeSize, instanceCount);
|
||
|
}
|
||
|
else {
|
||
|
instancedExtension.drawElementsInstancedANGLE(GL.TRIANGLES, count == -1 ? indicesCount : count, type, start * typeSize, instanceCount);
|
||
|
}
|
||
|
}
|
||
|
}
|
||
|
|
||
|
public function instancedRenderingAvailable(): Bool {
|
||
|
return instancedExtension;
|
||
|
}
|
||
|
}
|