diff --git a/README.md b/README.md index 856ab54..d17eade 100644 --- a/README.md +++ b/README.md @@ -3,442 +3,92 @@ WebGL Deferred Shading **University of Pennsylvania, CIS 565: GPU Programming and Architecture, Project 6** -* (TODO) YOUR NAME HERE -* Tested on: (TODO) **Google Chrome 222.2** on - Windows 22, i7-2222 @ 2.22GHz 22GB, GTX 222 222MB (Moore 2222 Lab) +* Bradley Crusco +* Tested on: Google Chrome 46 on Windows 10, i7-3770K @ 3.50GHz 16GB, 2 x GTX 980 4096MB (Personal Computer) ### Live Online -[![](img/thumb.png)](http://TODO.github.io/Project6-WebGL-Deferred-Shading) +[![](img/Bloom.PNG)](http://bcrusco.github.io/WebGL-Deferred-Shader/) -### Demo Video - -[![](img/video.png)](TODO) - -### (TODO: Your README) - -*DO NOT* leave the README to the last minute! It is a crucial part of the -project, and we will not be able to grade you without a good README. - -This assignment has a considerable amount of performance analysis compared -to implementation work. Complete the implementation early to leave time! - - -Instructions (delete me) -======================== - -This is due at midnight on the evening of Tuesday, October 27. - -**Summary:** In this project, you'll be introduced to the basics of deferred -shading and WebGL. You'll use GLSL and WebGL to implement a deferred shading -pipeline and various lighting and visual effects. - -**Recommendations:** -Take screenshots as you go. Use them to document your progress in your README! +Click the above image or the following link to view the project in your browser: [http://bcrusco.github.io/WebGL-Deferred-Shader/](http://bcrusco.github.io/WebGL-Deferred-Shader/) -Read (or at least skim) the full README before you begin, so that you know what -to expect and what to prepare for. - -### Running the code - -If you have Python, you should be able to run `server.py` to start a server. -Then, open [`http://localhost:10565/`](http://localhost:10565/) in your browser. - -This project requires a WebGL-capable web browser with support for -`WEBGL_draw_buffers`. You can check for support on -[WebGL Report](http://webglreport.com/). - -Google Chrome seems to work best on all platforms. If you have problems running -the starter code, use Chrome or Chromium, and make sure you have updated your -browser and video drivers. - -In Moore 100C, both Chrome and Firefox work. -See below for notes on profiling/debugging tools. - -Use the screenshot button to save a screenshot. - -## Requirements - -**Ask on the mailing list for any clarifications.** +### Demo Video -In this project, you are given code for: +WebGL Deferred Shader -* Loading OBJ files and color/normal map textures -* Camera control -* Partial implementation of deferred shading including many helper functions +## Description -### Required Tasks +A deferred shader on the GPU using WebGL. Features Blinn-Phong shading, optional bloom and toon shader effects, scissor test culling for point lights, and material defined specular exponents. -**Before doing performance analysis,** you must disable debug mode by changing -`debugMode` to `false` in `framework.js`. Keep it enabled when developing - it -helps find WebGL errors *much* more easily. +## Features -You will need to perform the following tasks: +### Deferred Blinn-Phong Shading +![](img/No Effect.PNG) -* Complete the deferred shading pipeline so that the Blinn-Phong and Post1 - shaders recieve the correct input. Go through the Starter Code Tour **before - continuing!** +* **Overview**: Standard Blinn-Phong shader with support for normal maps. +* **Optimization**: Performance was improved by offloading surface normal calculations to the copy shader. See [G-Buffer Optimization](#g-buffer-optimization) for more information. -**Effects:** +### Bloom Shading with Two-Pass Gaussian Blur -* Implement deferred Blinn-Phong shading (diffuse + specular) for point lights - * With normal mapping (code provided) - * For deferred shading, you want to use a lighting model for the point lights - which has a limited radius - so that adding a scissor or proxy geometry - will not cause parts of the lighting to disappear. It should look very - similar both with and without scissor/proxy optimization. Here is a - convenient lighting model, but you can also use others: - * `float attenuation = max(0.0, u_lightRad - dist_from_surface_to_light);` +![](img/Bloom.PNG) -* Implement one of the following effects: - * Bloom using post-process blur (box or Gaussian) [1] - * Toon shading (with ramp shading + simple depth-edge detection for outlines) +* **Overview**: Two-pass Gaussian blur to simulate the bloom glow effect. +* **Performance Impact**: Minimal on my machine. In the below chart you can see that there is no measurable impact on performance until we hit 2,000 lights in the scene. At this point we see a 1ms increase, still very small considering the number of light sources. +* **Optimization**: Two-pass Gaussian blur is used instead of a single convolution pass. This helps keep the performance impact minimal. The cost of calculating this blur in a single pass would be d2, where d is the diameter of the blur area. By splitting our convolution into two phases the complexity is reduced to 2d. Unfortunately since this requires an additional render pass there is some added overhead required for memory setup and additional buffer manipulations. Overall the benefit of the two-pass implementation counteracts any negatives. -**Optimizations:** +![](charts/Bloom Analysis.png) -* Scissor test optimization: when accumulating shading from each point - light source, only render in a rectangle around the light. - * Show a debug view for this (showing scissor masks clearly), e.g. by - modifying and using `red.frag.glsl` with additive blending and alpha = 0.1. - * Code is provided to compute this rectangle for you, and there are - comments at the relevant place in `deferredRender.js` with more guidance. - * **NOTE:** The provided scissor function is not very accurate - it is a - quick hack which results in some errors (as can be seen in the live - demo). - -* Optimized g-buffer format - reduce the number and size of g-buffers: - * Ideas: - * Pack values together into vec4s - * Use 2-component normals - * Quantize values by using smaller texture types instead of gl.FLOAT - * Reduce number of properties passed via g-buffer, e.g. by: - * Applying the normal map in the `copy` shader pass instead of - copying both geometry normals and normal maps - * Reconstructing world space position using camera matrices and X/Y/depth - * For credit, you must show a good optimization effort and record the - performance of each version you test, in a simple table. - * It is expected that you won't need all 4 provided g-buffers for a basic - pipeline - make sure you disable the unused ones. - * See mainly: `copy.frag.glsl`, `deferred/*.glsl`, `deferredSetup.js` - -### Extra Tasks - -You must do at least **10 points** worth of extra features (effects or -optimizations/analysis). - -**Effects:** - -* (3pts) The effect you didn't choose above (bloom or toon shading) - -* (3pts) Screen-space motion blur (blur along velocity direction) [3] - -* (2pts) Allow variability in additional material properties - * Include other properties (e.g. specular coeff/exponent) in g-buffers - * Use this to render objects with different material properties - * These may be uniform across one model draw call, but you'll have to show - multiple models - -**Optimizations/Analysis:** - -* (2pts) Improved screen-space AABB for scissor test - (smaller/more accurate than provided - but beware of CPU/GPU tradeoffs) - -* (3pts) Two-pass **Gaussian** blur using separable convolution (using a second - postprocess render pass) to improve bloom or other 2D blur performance - -* (4-6pts) Light proxies - * (4pts) Instead of rendering a scissored full-screen quad for every light, - render some proxy geometry which covers the part of the screen affected by - the light (e.g. a sphere, for an attenuated point light). - * A model called `sphereModel` is provided which can be drawn in the same - way as the code in `drawScene`. (Must be drawn with a vertex shader which - scales it to the light radius and translates it to the light position.) - * (+2pts) To avoid lighting geometry far behind the light, render the proxy - geometry (e.g. sphere) using an inverted depth test - (`gl.depthFunc(gl.GREATER)`) with depth writing disabled (`gl.depthMask`). - This test will pass only for parts of the screen for which the backside of - the sphere appears behind parts of the scene. - * Note that the copy pass's depth buffer must be bound to the FBO during - this operation! - * Show a debug view for this (showing light proxies) - * Compare performance of this, naive, and scissoring. - -* (8pts) Tile-based deferred shading with detailed performance comparison - * On the CPU, check which lights overlap which tiles. Then, render each tile - just once for all lights (instead of once for each light), applying only - the overlapping lights. - * The method is described very well in - [Yuqin & Sijie's README](https://github.com/YuqinShao/Tile_Based_WebGL_DeferredShader/blob/master/README.md#algorithm-details). - * This feature requires allocating the global light list and tile light - index lists as shown at this link. These can be implemented as textures. - * Show a debug view for this (number of lights per tile) - -* (6pts) Deferred shading without multiple render targets - (i.e. without WEBGL_draw_buffers). - * Render the scene once for each target g-buffer, each time into a different - framebuffer object. - * Include a detailed performance analysis, comparing with/without - WEBGL_draw_buffers (like in the - [Mozilla blog article](https://hacks.mozilla.org/2014/01/webgl-deferred-shading/)). - -* (2-6pts) Compare performance to equivalently-lit forward-rendering: - * (2pts) With no forward-rendering optimizations - * (+2pts) Coarse, per-object back-to-front sorting of geometry for early-z - * (Of course) must render many objects to test - * (+2pts) Z-prepass for early-z - -This extra feature list is not comprehensive. If you have a particular idea -that you would like to implement, please **contact us first** (preferably on -the mailing list). - -**Where possible, all features should be switchable using the GUI panel in -`ui.js`.** - -### Performance & Analysis - -**Before doing performance analysis,** you must disable debug mode by changing -`debugMode` to `false` in `framework.js`. Keep it enabled when developing - it -helps find WebGL errors *much* more easily. - -Optimize your JavaScript and/or GLSL code. Web Tracing Framework -and Chrome/Firefox's profiling tools (see Resources section) will -be useful for this. For each change -that improves performance, show the before and after render times. - -For each new *effect* feature (required or extra), please -provide the following analysis: - -* Concise overview write-up of the feature. -* Performance change due to adding the feature. - * If applicable, how do parameters (such as number of lights, etc.) - affect performance? Show data with simple graphs. -* If you did something to accelerate the feature, what did you do and why? -* How might this feature be optimized beyond your current implementation? - -For each *performance* feature (required or extra), please provide: - -* Concise overview write-up of the feature. -* Detailed performance improvement analysis of adding the feature - * What is the best case scenario for your performance improvement? What is - the worst? Explain briefly. - * Are there tradeoffs to this performance feature? Explain briefly. - * How do parameters (such as number of lights, tile size, etc.) affect - performance? Show data with graphs. - * Show debug views when possible. - * If the debug view correlates with performance, explain how. - -Note: Be aware that stats.js may give 0 millisecond frame timings in Chrome on -occasion - if this happens, you can use the FPS counter. - -### Starter Code Tour - -You'll be working mainly in `deferredRender.js` using raw WebGL. Three.js is -included in the project for various reasons. You won't use it for much, but its -matrix/vector types may come in handy. - -It's highly recommended that you use the browser debugger to inspect variables -to get familiar with the code. At any point, you can also -`console.log(some_var);` to show it in the console and inspect it. - -The setup in `deferredSetup` is already done for you, for many of the features. -If you want to add uniforms (textures or values), you'll change them here. -Therefore, it is recommended that you review the comments to understand the -process, BEFORE starting work in `deferredRender`. - -In `deferredRender`, start at the **START HERE!** comment. -Work through the appropriate `TODO`s as you go - most of them are very -small. Test incrementally (after implementing each part, instead of testing -all at once). -* (The first thing you should be doing is implementing the fullscreen quad!) -* See the note in the Debugging section on how to test the first part of the - pipeline incrementally. - -Your _next_ first goal should be to get the debug views working. -Add code in `debug.frag.glsl` to examine your g-buffers before trying to -render them. (Set the debugView in the UI to show them.) - -For editing JavaScript, you can use a simple editor with syntax highlighting -such as Sublime, Vim, Emacs, etc., or the editor built into Chrome. - -* `js/`: JavaScript files for this project. - * `main.js`: Handles initialization of other parts of the program. - * `framework.js`: Loads the scene, camera, etc., and calls your setup/render - functions. Hopefully, you won't need to change anything here. - * `deferredSetup.js`: Deferred shading pipeline setup code. - * `createAndBind(Depth/Color)TargetTexture`: Creates empty textures for - binding to frame buffer objects as render targets. - * `deferredRender.js`: Your deferred shading pipeline execution code. - * `renderFullScreenQuad`: Renders a full-screen quad with the given shader - program. - * `ui.js`: Defines the UI using - [dat.GUI](https://workshop.chromeexperiments.com/examples/gui/). - * The global variable `cfg` can be accessed anywhere in the code to read - configuration values. - * `utils.js`: Utilities for JavaScript and WebGL. - * `abort`: Aborts the program and shows an error. - * `loadTexture`: Loads a texture from a URL into WebGL. - * `loadShaderProgram`: Loads shaders from URLs into a WebGL shader program. - * `loadModel`: Loads a model into WebGL buffers. - * `readyModelForDraw`: Configures the WebGL state to draw a model. - * `drawReadyModel`: Draws a model which has been readied. - * `getScissorForLight`: Computes an approximate scissor rectangle for a - light in world space. -* `glsl/`: GLSL code for each part of the pipeline: - * `clear.*.glsl`: Clears each of the `NUM_GBUFFERS` g-buffers. - * `copy.*.glsl`: Performs standard rendering without any fragment shading, - storing all of the resulting values into the `NUM_GBUFFERS` g-buffers. - * `quad.vert.glsl`: Minimal vertex shader for rendering a single quad. - * `deferred.frag.glsl`: Deferred shading pass (for lighting calculations). - Reads from each of the `NUM_GBUFFERS` g-buffers. - * `post1.frag.glsl`: First post-processing pass. -* `lib/`: JavaScript libraries. -* `models/`: OBJ models for testing. Sponza is the default. -* `index.html`: Main HTML page. -* `server.bat` (Windows) or `server.py` (OS X/Linux): - Runs a web server at `localhost:10565`. - -### The Deferred Shading Pipeline - -See the comments in `deferredSetup.js`/`deferredRender.js` for low-level guidance. - -In order to enable and disable effects using the GUI, upload a vec4 uniform -where each component is an enable/disable flag. In JavaScript, the state of the -UI is accessible anywhere as `cfg.enableEffect0`, etc. - -**Pass 1:** Renders the scene geometry and its properties to the g-buffers. -* `copy.vert.glsl`, `copy.frag.glsl` -* The framebuffer object `pass_copy.fbo` must be bound during this pass. -* Renders into `pass_copy.depthTex` and `pass_copy.gbufs[i]`, which need to be - attached to the framebuffer. - -**Pass 2:** Performs lighting and shading into the color buffer. -* `quad.vert.glsl`, `deferred/blinnphong-pointlight.frag.glsl` -* Takes the g-buffers `pass_copy.gbufs`/`depthTex` as texture inputs to the - fragment shader, on uniforms `u_gbufs` and `u_depth`. -* `pass_deferred.fbo` must be bound. -* Renders into `pass_deferred.colorTex`. - -**Pass 3:** Performs post-processing. -* `quad.vert.glsl`, `post/one.frag.glsl` -* Takes `pass_BlinnPhong_PointLight.colorTex` as a texture input `u_color`. -* Renders directly to the screen if there are no additional passes. - -More passes may be added for additional effects (e.g. combining bloom with -motion blur) or optimizations (e.g. two-pass Gaussian blur for bloom) - -#### Debugging - -If there is a WebGL error, it will be displayed on the developer console and -the renderer will be aborted. To find out where the error came from, look at -the backtrace of the error (you may need to click the triangle to expand the -message). The line right below `wrapper @ webgl-debug.js` will point to the -WebGL call that failed. - -When working in the early pipeline (before you have a lit render), it can be -useful to render WITHOUT post-processing. To do this, you have to make sure -that there is NO framebuffer bound while rendering to the screen (that is, bind -null) so that the output will display to the screen instead of saving into a -texture. Writing to gl_FragData[0] is the same as writing to gl_FragColor, so -you'll see whatever you were storing into the first g-buffer. - -#### Changing the number of g-buffers - -Note that the g-buffers are just `vec4`s - you can put any values you want into -them. However, if you want to change the total number of g-buffers (add more -for additional effects or remove some for performance), you will need to make -changes in a number of places: - -* `deferredSetup.js`/`deferredRender.js`: search for `NUM_GBUFFERS` -* `copy.frag.glsl` -* `deferred.frag.glsl` -* `clear.frag.glsl` - - -## Resources - -* [1] Bloom: - [GPU Gems, Ch. 21](http://http.developer.nvidia.com/GPUGems/gpugems_ch21.html) -* [2] Screen-Space Ambient Occlusion: - [Floored Article](http://floored.com/blog/2013/ssao-screen-space-ambient-occlusion.html) -* [3] Post-Process Motion Blur: - [GPU Gems 3, Ch. 27](http://http.developer.nvidia.com/GPUGems3/gpugems3_ch27.html) - -**Also see:** The articles linked in the course schedule. - -### Profiling and debugging tools - -Built into Firefox: -* Canvas inspector -* Shader Editor -* JavaScript debugger and profiler - -Built into Chrome: -* JavaScript debugger and profiler - -Plug-ins: -* (Chrome/Firefox) [Web Tracing Framework](http://google.github.io/tracing-framework/) -* (Chrome) [Shader Editor](https://chrome.google.com/webstore/detail/shader-editor/ggeaidddejpbakgafapihjbgdlbbbpob) +### Toon Shading +![](img/Toon.PNG) -Firefox can also be useful - it has a canvas inspector, WebGL profiling and a -shader editor built in. +* **Overview**: Toon ramp shading using Sobel operator as an edge detector. +* **Performance Impact**: No noticable impact. As you can see in the below chart, enabling the toon effect has no impact on performance even with a large number of lights in the scene. +* **Further Improvement**: With regard to performance, there are no improvements I would make because I'm seeing performance numbers in line with the standard Blinn-Phong shading. There are some changes I'd like to make to the visuals of the effect though. Right now the effect is only impacting the point light sources. I also wish to apply the effect to the ambient light as well, so that the toon look will be across the entire scene. +![](charts/Toon Analysis.png) -## README +### G-Buffer Optimization +* **Overview**: Pre-calculate the surface normal by applying the normal map in the copy shader pass. This prevents us from having to copy the geometry normals and normal map through the g-buffers. +* **Performance Analysis**: Difficult to objectively analyze, as my frame times are already extremely low. A significant performance increase should be expected though. Removing one g-buffer results in less of a bottle-neck on memory access. Additionally there is computational improvement made by not calculating normals over and over again in the Blinn-Phong shader pass. In practice I saw the frame time drop from 3ms to 2ms in a scene with 1000 lights. -Replace the contents of this README.md in a clear manner with the following: +### Scissor Test with AABB Optimizations -* A brief description of the project and the specific features you implemented. -* At least one screenshot of your project running. -* A 30+ second video of your project running showing all features. - [Open Broadcaster Software](http://obsproject.com) is recommended. - (Even though your demo can be seen online, using multiple render targets - means it won't run on many computers. A video will work everywhere.) -* A performance analysis (described below). +#### Original Scissor Test +![](img/default scissor.PNG) -### Performance Analysis +#### Optimized AABB Scissor Test +![](img/improved scissor.PNG) -See above. +* **Overview**: In the optimized version of the scissor test, the AABB is calculated at the light's front-facing maximum circle. This minimizes the distortions that result from transformations and give us smaller, more accurately sized bounding boxes to use for the scissor test. This has performance benefits and eliminates minor artifacts caused by the original implementation. +* **Performance Analysis**: The smaller AABB result in faster scissor test calculations. This impact is especially noticable in scenes with many light sources. Below is the recorded frame times for a scene with 4,000 point lights. With the original implementation, we see 75 ms per frame. With the AABB optimizations we see that drop almost 10 ms to 66 ms per frame, a significant increase in performance. If you look at the two images above you'll see squares representing the AABB being used for the scissor test. In the second image, where the AABB improvements have been made, notice that the boxes have less overlap and are smaller. -### GitHub Pages +![](charts/Scissor Analysis.png) -Since this assignment is in WebGL, you can make your project easily viewable by -taking advantage of GitHub's project pages feature. +### Additional Material Property -Once you are done with the assignment, create a new branch: +#### Multiple Models (Sponza and Cow) with Specular Exponent as a Material Property in G-Buffer +![](img/cow.PNG) -`git branch gh-pages` +* **Overview**: Specular exponent added as an input to the g-buffers. Passed using the alpha channel of the normal buffer. +* **Performance Impact**: None, the exponent is simply passed along the alpha channel of the normal buffer. -Push the branch to GitHub: +### Debug Views -`git push origin gh-pages` +#### Depth +![](img/depth.png) -Now, you can go to `.github.io/` to see your -renderer online from anywhere. Add this link to your README. +#### Position +![](img/position.png) -## Submit +#### Surface Normals +![](img/Surface Normal.png) -1. Open a GitHub pull request so that we can see that you have finished. - The title should be "Submission: YOUR NAME". - * **ADDITIONALLY:** - In the body of the pull request, include a link to your repository. -2. Send an email to the TA (gmail: kainino1+cis565@) with: - * **Subject**: in the form of `[CIS565] Project N: PENNKEY`. - * Direct link to your pull request on GitHub. - * Estimate the amount of time you spent on the project. - * If there were any outstanding problems, briefly explain. - * **List the extra features you did.** - * Feedback on the project itself, if any. +#### Color Map +![](img/color map.png) -### Third-Party Code Policy +## References -* Use of any third-party code must be approved by asking on our mailing list. -* If it is approved, all students are welcome to use it. Generally, we approve - use of third-party code that is not a core part of the project. For example, - for the path tracer, we would approve using a third-party library for loading - models, but would not approve copying and pasting a CUDA function for doing - refraction. -* Third-party code **MUST** be credited in README.md. -* Using third-party code without its approval, including using another - student's code, is an academic integrity violation, and will, at minimum, - result in you receiving an F for the semester. +* [GPU Gems Chapter 21. Real-Time Glow](http://http.developer.nvidia.com/GPUGems/gpugems_ch21.html) +* [Antialiased Cel Shading](http://prideout.net/blog/?p=22) +* [Sobel Operator](https://en.wikipedia.org/wiki/Sobel_operator) diff --git a/charts/Bloom Analysis.png b/charts/Bloom Analysis.png new file mode 100644 index 0000000..9fa6de6 Binary files /dev/null and b/charts/Bloom Analysis.png differ diff --git a/charts/Scissor Analysis.png b/charts/Scissor Analysis.png new file mode 100644 index 0000000..3765487 Binary files /dev/null and b/charts/Scissor Analysis.png differ diff --git a/charts/Toon Analysis.png b/charts/Toon Analysis.png new file mode 100644 index 0000000..44fde0c Binary files /dev/null and b/charts/Toon Analysis.png differ diff --git a/glsl/clear.frag.glsl b/glsl/clear.frag.glsl index b4e4ff3..0018432 100644 --- a/glsl/clear.frag.glsl +++ b/glsl/clear.frag.glsl @@ -1,9 +1,10 @@ #version 100 #extension GL_EXT_draw_buffers: enable + precision highp float; precision highp int; -#define NUM_GBUFFERS 4 +#define NUM_GBUFFERS 3 void main() { for (int i = 0; i < NUM_GBUFFERS; i++) { diff --git a/glsl/copy.frag.glsl b/glsl/copy.frag.glsl index 0f5f8f7..94b5e08 100644 --- a/glsl/copy.frag.glsl +++ b/glsl/copy.frag.glsl @@ -5,11 +5,28 @@ precision highp int; uniform sampler2D u_colmap; uniform sampler2D u_normap; +uniform float u_specular_exp; varying vec3 v_position; varying vec3 v_normal; varying vec2 v_uv; +vec3 applyNormalMap(vec3 geomnor, vec3 normap) { + normap = normap * 2.0 - 1.0; + vec3 up = normalize(vec3(0.001, 1, 0.001)); + vec3 surftan = normalize(cross(geomnor, up)); + vec3 surfbinor = cross(geomnor, surftan); + + return normap.y * surftan + normap.x * surfbinor + normap.z * geomnor; +} + void main() { - // TODO: copy values into gl_FragData[0], [1], etc. + // Model view position + gl_FragData[0] = vec4(v_position, 1.0); + + // Normal + gl_FragData[1] = vec4(applyNormalMap(v_normal, texture2D(u_normap, v_uv).rgb), u_specular_exp); // Pack specular exponent in the alpha channel + + // Color map + gl_FragData[2] = texture2D(u_colmap, v_uv); } diff --git a/glsl/deferred/ambient.frag.glsl b/glsl/deferred/ambient.frag.glsl index 1fd4647..59c3e4e 100644 --- a/glsl/deferred/ambient.frag.glsl +++ b/glsl/deferred/ambient.frag.glsl @@ -3,7 +3,7 @@ precision highp float; precision highp int; -#define NUM_GBUFFERS 4 +#define NUM_GBUFFERS 3 uniform sampler2D u_gbufs[NUM_GBUFFERS]; uniform sampler2D u_depth; @@ -11,17 +11,14 @@ uniform sampler2D u_depth; varying vec2 v_uv; void main() { - vec4 gb0 = texture2D(u_gbufs[0], v_uv); - vec4 gb1 = texture2D(u_gbufs[1], v_uv); vec4 gb2 = texture2D(u_gbufs[2], v_uv); - vec4 gb3 = texture2D(u_gbufs[3], v_uv); float depth = texture2D(u_depth, v_uv).x; - // TODO: Extract needed properties from the g-buffers into local variables + vec3 color_map = gb2.xyz; if (depth == 1.0) { - gl_FragColor = vec4(0, 0, 0, 0); // set alpha to 0 + gl_FragColor = vec4(0.0); return; } - gl_FragColor = vec4(0.1, 0.1, 0.1, 1); // TODO: replace this + gl_FragColor = vec4(0.2 * color_map, 1.0); } diff --git a/glsl/deferred/blinnphong-pointlight.frag.glsl b/glsl/deferred/blinnphong-pointlight.frag.glsl index b24a54a..9a28cfa 100644 --- a/glsl/deferred/blinnphong-pointlight.frag.glsl +++ b/glsl/deferred/blinnphong-pointlight.frag.glsl @@ -2,38 +2,60 @@ precision highp float; precision highp int; -#define NUM_GBUFFERS 4 +#define NUM_GBUFFERS 3 uniform vec3 u_lightCol; uniform vec3 u_lightPos; uniform float u_lightRad; +uniform vec3 u_cameraPos; uniform sampler2D u_gbufs[NUM_GBUFFERS]; uniform sampler2D u_depth; +uniform int u_toon; varying vec2 v_uv; -vec3 applyNormalMap(vec3 geomnor, vec3 normap) { - normap = normap * 2.0 - 1.0; - vec3 up = normalize(vec3(0.001, 1, 0.001)); - vec3 surftan = normalize(cross(geomnor, up)); - vec3 surfbinor = cross(geomnor, surftan); - return normap.y * surftan + normap.x * surfbinor + normap.z * geomnor; -} - void main() { vec4 gb0 = texture2D(u_gbufs[0], v_uv); vec4 gb1 = texture2D(u_gbufs[1], v_uv); vec4 gb2 = texture2D(u_gbufs[2], v_uv); - vec4 gb3 = texture2D(u_gbufs[3], v_uv); float depth = texture2D(u_depth, v_uv).x; - // TODO: Extract needed properties from the g-buffers into local variables + int toon = u_toon; + + //Extract needed properties from the g-buffers into local variables + vec3 position = gb0.xyz; + vec3 normal = normalize(gb1.xyz); + vec3 color_map = gb2.xyz; + float specular_exp = gb1.w; // If nothing was rendered to this pixel, set alpha to 0 so that the // postprocessing step can render the sky color. if (depth == 1.0) { - gl_FragColor = vec4(0, 0, 0, 0); + gl_FragColor = vec4(0.0); return; } - gl_FragColor = vec4(0, 0, 1, 1); // TODO: perform lighting calculations + vec3 light_difference = u_lightPos - position; + vec3 light_direction = normalize(light_difference); + vec3 camera_direction = normalize(u_cameraPos - position); + float light_distance = length(light_difference); + vec3 half_way = normalize(light_direction + camera_direction); + + if (light_distance > u_lightRad){ + gl_FragColor = vec4(0.0); + return; + } + + float falloff = 1.0 / pow(light_distance, 2.0); + float diffuse = max(0.0, dot(normal, light_direction)); + float specular = pow(max(0.0, dot(normal, half_way)), specular_exp); + + // Toon ramp shading + if(toon == 1) { + float steps = 5.0; + diffuse = ceil(diffuse * steps) / steps; + specular = ceil(specular * steps) / steps; + falloff = ceil(falloff * steps) / steps; + } + + gl_FragColor = falloff * vec4(u_lightCol * diffuse * specular * color_map * max(0.0, u_lightRad - light_distance), 1.0); } diff --git a/glsl/deferred/debug.frag.glsl b/glsl/deferred/debug.frag.glsl index 9cbfae4..93eb212 100644 --- a/glsl/deferred/debug.frag.glsl +++ b/glsl/deferred/debug.frag.glsl @@ -2,7 +2,7 @@ precision highp float; precision highp int; -#define NUM_GBUFFERS 4 +#define NUM_GBUFFERS 3 uniform int u_debug; uniform sampler2D u_gbufs[NUM_GBUFFERS]; @@ -12,41 +12,26 @@ varying vec2 v_uv; const vec4 SKY_COLOR = vec4(0.66, 0.73, 1.0, 1.0); -vec3 applyNormalMap(vec3 geomnor, vec3 normap) { - normap = normap * 2.0 - 1.0; - vec3 up = normalize(vec3(0.001, 1, 0.001)); - vec3 surftan = normalize(cross(geomnor, up)); - vec3 surfbinor = cross(geomnor, surftan); - return normap.y * surftan + normap.x * surfbinor + normap.z * geomnor; -} - void main() { vec4 gb0 = texture2D(u_gbufs[0], v_uv); vec4 gb1 = texture2D(u_gbufs[1], v_uv); vec4 gb2 = texture2D(u_gbufs[2], v_uv); - vec4 gb3 = texture2D(u_gbufs[3], v_uv); float depth = texture2D(u_depth, v_uv).x; - // TODO: Extract needed properties from the g-buffers into local variables - // These definitions are suggested for starting out, but you will probably want to change them. - vec3 pos; // World-space position - vec3 geomnor; // Normals of the geometry as defined, without normal mapping - vec3 colmap; // The color map - unlit "albedo" (surface color) - vec3 normap; // The raw normal map (normals relative to the surface they're on) - vec3 nor; // The true normals as we want to light them - with the normal map applied to the geometry normals (applyNormalMap above) + + // Extract needed properties from the g-buffers into local variables + vec3 pos = gb0.xyz; // World-space position + vec3 nor = normalize(gb1.xyz); // Precomputed surface normals + vec3 colmap = gb2.xyz; // The color map - unlit "albedo" (surface color) if (u_debug == 0) { gl_FragColor = vec4(vec3(depth), 1.0); } else if (u_debug == 1) { gl_FragColor = vec4(abs(pos) * 0.1, 1.0); } else if (u_debug == 2) { - gl_FragColor = vec4(abs(geomnor), 1.0); + gl_FragColor = vec4(abs(nor), 1.0); } else if (u_debug == 3) { gl_FragColor = vec4(colmap, 1.0); - } else if (u_debug == 4) { - gl_FragColor = vec4(normap, 1.0); - } else if (u_debug == 5) { - gl_FragColor = vec4(abs(nor), 1.0); } else { - gl_FragColor = vec4(1, 0, 1, 1); + gl_FragColor = vec4(1.0, 0, 1.0, 1.0); } } diff --git a/glsl/post/bloom.one.frag.glsl b/glsl/post/bloom.one.frag.glsl new file mode 100644 index 0000000..e138dc8 --- /dev/null +++ b/glsl/post/bloom.one.frag.glsl @@ -0,0 +1,33 @@ +#version 100 +precision highp float; +precision highp int; + +uniform sampler2D u_color; +uniform vec2 u_screen_inv; + +varying vec2 v_uv; + +const vec4 SKY_COLOR = vec4(0.01, 0.14, 0.42, 1.0); +const vec3 gauss = vec3(0.4, 0.25, 0.05); + +void main() { + vec4 color = texture2D(u_color, v_uv); + + if (color.a == 0.0) { + color = SKY_COLOR; + } + + vec4 left0_color = texture2D(u_color, vec2(v_uv.x - u_screen_inv.x, v_uv.y)); + left0_color *= left0_color.a; + vec4 left1_color = texture2D(u_color, vec2(v_uv.x - u_screen_inv.x * 2.0, v_uv.y)); + left1_color *= left1_color.a; + vec4 right0_color = texture2D(u_color, vec2(v_uv.x + u_screen_inv.x, v_uv.y)); + right0_color *= right0_color.a; + vec4 right1_color = texture2D(u_color, vec2(v_uv.x + u_screen_inv.x * 2.0, v_uv.y)); + right1_color *= right1_color.a; + + color *= color.a; + + gl_FragColor = left1_color * gauss.z + left0_color * gauss.y + color * gauss.x + + right0_color * gauss.y + right1_color * gauss.z; +} diff --git a/glsl/post/bloom.two.frag.glsl b/glsl/post/bloom.two.frag.glsl new file mode 100644 index 0000000..48bf0f4 --- /dev/null +++ b/glsl/post/bloom.two.frag.glsl @@ -0,0 +1,29 @@ +#version 100 +precision highp float; +precision highp int; + +uniform sampler2D u_orig_color; +uniform sampler2D u_color; +uniform vec2 u_screen_inv; + +varying vec2 v_uv; + +const vec4 SKY_COLOR = vec4(0.01, 0.14, 0.42, 1.0); +const vec3 gauss = vec3(0.4, 0.25, 0.05); + +void main() { + vec4 color = texture2D(u_color, v_uv); + vec4 orig_color = texture2D(u_orig_color, v_uv); + + if (color.a == 0.0) { + color = SKY_COLOR; + } + + vec4 top0_color = texture2D(u_color, vec2(v_uv.x, v_uv.y - u_screen_inv.y)); + vec4 top1_color = texture2D(u_color, vec2(v_uv.x, v_uv.y - u_screen_inv.y * 2.0)); + vec4 bottom0_color = texture2D(u_color, vec2(v_uv.x, v_uv.y + u_screen_inv.y)); + vec4 bottom1_color = texture2D(u_color, vec2(v_uv.x, v_uv.y + u_screen_inv.y * 2.0)); + + gl_FragColor = 0.65 * (orig_color + top1_color * gauss.z + top0_color * gauss.y + color * gauss.x + + bottom0_color * gauss.y + bottom1_color * gauss.z); +} diff --git a/glsl/post/toon.one.frag.glsl b/glsl/post/toon.one.frag.glsl new file mode 100644 index 0000000..f989f7d --- /dev/null +++ b/glsl/post/toon.one.frag.glsl @@ -0,0 +1,27 @@ +#version 100 +precision highp float; +precision highp int; + +uniform sampler2D u_color; +uniform vec2 u_screen_inv; + +varying vec2 v_uv; + +const vec4 SKY_COLOR = vec4(0.01, 0.14, 0.42, 1.0); + +void main() { + vec4 color = texture2D(u_color, v_uv); + + if (color.a == 0.0) { + color = SKY_COLOR; + } + + vec4 left_color = texture2D(u_color, vec2(v_uv.x - u_screen_inv.x, v_uv.y)); + vec4 top_left_color = texture2D(u_color, vec2(v_uv.x - u_screen_inv.x, v_uv.y - u_screen_inv.y)); + vec4 bottom_left_color = texture2D(u_color, vec2(v_uv.x - u_screen_inv.x, v_uv.y + u_screen_inv.y)); + vec4 right_color = texture2D(u_color, vec2(v_uv.x + u_screen_inv.x, v_uv.y)); + vec4 top_right_color = texture2D(u_color, vec2(v_uv.x + u_screen_inv.x, v_uv.y - u_screen_inv.y)); + vec4 bottom_right_color = texture2D(u_color, vec2(v_uv.x + u_screen_inv.x, v_uv.y + u_screen_inv.y)); + + gl_FragColor = -left_color - top_left_color - bottom_left_color + right_color + top_right_color + bottom_right_color; +} diff --git a/glsl/post/toon.two.frag.glsl b/glsl/post/toon.two.frag.glsl new file mode 100644 index 0000000..66bf180 --- /dev/null +++ b/glsl/post/toon.two.frag.glsl @@ -0,0 +1,39 @@ +#version 100 +precision highp float; +precision highp int; + +uniform sampler2D u_orig_color; +uniform sampler2D u_color; +uniform vec2 u_screen_inv; + +varying vec2 v_uv; + +const vec4 SKY_COLOR = vec4(0.01, 0.14, 0.42, 1.0); + +void main() { + vec4 color = texture2D(u_color, v_uv); + vec4 orig_color = texture2D(u_orig_color, v_uv); + + if (color.a == 0.0) { + color = SKY_COLOR; + } + + vec4 top_color = texture2D(u_color, vec2(v_uv.x, v_uv.y - u_screen_inv.y)); + vec4 top_left_color = texture2D(u_color, vec2(v_uv.x - u_screen_inv.x, v_uv.y - u_screen_inv.y)); + vec4 top_right_color = texture2D(u_color, vec2(v_uv.x + u_screen_inv.x, v_uv.y - u_screen_inv.y)); + vec4 bottom_color = texture2D(u_color, vec2(v_uv.x, v_uv.y + u_screen_inv.y)); + vec4 bottom_left_color = texture2D(u_color, vec2(v_uv.x - u_screen_inv.x, v_uv.y + u_screen_inv.y)); + vec4 bottom_right_color = texture2D(u_color, vec2(v_uv.x + u_screen_inv.x, v_uv.y + u_screen_inv.y)); + + // Blend and perform edge ramping + vec4 blend = -top_color - top_left_color - top_right_color + bottom_color + bottom_left_color + bottom_right_color; + blend = vec4(vec3(max(max(blend.x, blend.y), blend.z)), 1.0); + if(blend.x <= 0.2) { + blend = vec4(0.0, 0.0, 0.0, 1.0); + } + else { + blend = vec4(1.0); + } + + gl_FragColor = (1.0 - blend) * orig_color; +} diff --git a/glsl/post/one.frag.glsl b/glsl/post/zero.frag.glsl similarity index 100% rename from glsl/post/one.frag.glsl rename to glsl/post/zero.frag.glsl diff --git a/glsl/red.frag.glsl b/glsl/red.frag.glsl index f8ef1ec..81c9b60 100644 --- a/glsl/red.frag.glsl +++ b/glsl/red.frag.glsl @@ -3,5 +3,5 @@ precision highp float; precision highp int; void main() { - gl_FragColor = vec4(1, 0, 0, 1); + gl_FragColor = vec4(0.05, 0.05, 0.05, 1.0); } diff --git a/img/Bloom.PNG b/img/Bloom.PNG new file mode 100644 index 0000000..a31c18b Binary files /dev/null and b/img/Bloom.PNG differ diff --git a/img/Fake Youtube.PNG b/img/Fake Youtube.PNG new file mode 100644 index 0000000..c1e2a85 Binary files /dev/null and b/img/Fake Youtube.PNG differ diff --git a/img/No Effect.PNG b/img/No Effect.PNG new file mode 100644 index 0000000..32c0581 Binary files /dev/null and b/img/No Effect.PNG differ diff --git a/img/Surface Normal.png b/img/Surface Normal.png new file mode 100644 index 0000000..1119ef8 Binary files /dev/null and b/img/Surface Normal.png differ diff --git a/img/Toon.PNG b/img/Toon.PNG new file mode 100644 index 0000000..45412e9 Binary files /dev/null and b/img/Toon.PNG differ diff --git a/img/color map.png b/img/color map.png new file mode 100644 index 0000000..62fb718 Binary files /dev/null and b/img/color map.png differ diff --git a/img/cow.PNG b/img/cow.PNG new file mode 100644 index 0000000..fa3a579 Binary files /dev/null and b/img/cow.PNG differ diff --git a/img/default scissor.PNG b/img/default scissor.PNG new file mode 100644 index 0000000..6c50ba8 Binary files /dev/null and b/img/default scissor.PNG differ diff --git a/img/depth.png b/img/depth.png new file mode 100644 index 0000000..57b9579 Binary files /dev/null and b/img/depth.png differ diff --git a/img/improved scissor.PNG b/img/improved scissor.PNG new file mode 100644 index 0000000..8b5e87a Binary files /dev/null and b/img/improved scissor.PNG differ diff --git a/img/position.png b/img/position.png new file mode 100644 index 0000000..b1e1f66 Binary files /dev/null and b/img/position.png differ diff --git a/js/deferredRender.js b/js/deferredRender.js index b1f238b..e155e08 100644 --- a/js/deferredRender.js +++ b/js/deferredRender.js @@ -10,14 +10,15 @@ !R.prog_Ambient || !R.prog_BlinnPhong_PointLight || !R.prog_Debug || - !R.progPost1)) { + !R.progPost0 || + !R.progBloomPost1 || + !R.progBloomPost2)) { console.log('waiting for programs to load...'); return; } // Move the R.lights for (var i = 0; i < R.lights.length; i++) { - // OPTIONAL TODO: Edit if you want to change how lights move var mn = R.light_min[1]; var mx = R.light_max[1]; R.lights[i].pos[1] = (R.lights[i].pos[1] + R.light_dt - mn + mx) % mx + mn; @@ -26,14 +27,7 @@ // Execute deferred shading pipeline // CHECKITOUT: START HERE! You can even uncomment this: - //debugger; - - { // TODO: this block should be removed after testing renderFullScreenQuad - gl.bindFramebuffer(gl.FRAMEBUFFER, null); - // TODO: Implement/test renderFullScreenQuad first - renderFullScreenQuad(R.progRed); - return; - } + debugger; R.pass_copy.render(state); @@ -41,13 +35,21 @@ // Do a debug render instead of a regular render // Don't do any post-processing in debug mode R.pass_debug.render(state); - } else { + } + else if(cfg && cfg.effects == 0) { + R.pass_deferred.render(state); + R.pass_bloom_post1.render(state); + R.pass_bloom_post2.render(state); + } + else if(cfg && cfg.effects == 1) { + R.pass_deferred.render(state); + R.pass_toon_post1.render(state); + R.pass_toon_post2.render(state); + } + else { // * Deferred pass and postprocessing pass(es) - // TODO: uncomment these - //R.pass_deferred.render(state); - //R.pass_post1.render(state); - - // OPTIONAL TODO: call more postprocessing passes, if any + R.pass_deferred.render(state); + R.pass_post0.render(state); } }; @@ -56,22 +58,22 @@ */ R.pass_copy.render = function(state) { // * Bind the framebuffer R.pass_copy.fbo - // TODO: ^ + gl.bindFramebuffer(gl.FRAMEBUFFER, R.pass_copy.fbo); // * Clear screen using R.progClear - TODO: renderFullScreenQuad(R.progClear); + renderFullScreenQuad(R.progClear); // * Clear depth buffer to value 1.0 using gl.clearDepth and gl.clear - // TODO: ^ - // TODO: ^ + gl.clearDepth(1.0); + gl.clear(gl.DEPTH_BUFFER_BIT); // * "Use" the program R.progCopy.prog - // TODO: ^ - // TODO: Write glsl/copy.frag.glsl + gl.useProgram(R.progCopy.prog); var m = state.cameraMat.elements; // * Upload the camera matrix m to the uniform R.progCopy.u_cameraMat // using gl.uniformMatrix4fv - // TODO: ^ + //gl.uniformMatrix4fv(R.progCopy.u_cameraMat, false, m); + gl.uniformMatrix4fv(R.progCopy.u_cameraMat, false, state.cameraMat.elements); // * Draw the scene drawScene(state); @@ -118,7 +120,8 @@ // Enable blending and use gl.blendFunc to blend with: // color = 1 * src_color + 1 * dst_color - // TODO: ^ + gl.enable(gl.BLEND); + gl.blendFunc(gl.ONE, gl.ONE); // * Bind/setup the ambient pass, and render using fullscreen quad bindTexturesForLightPass(R.prog_Ambient); @@ -127,18 +130,42 @@ // * Bind/setup the Blinn-Phong pass, and render using fullscreen quad bindTexturesForLightPass(R.prog_BlinnPhong_PointLight); - // TODO: add a loop here, over the values in R.lights, which sets the - // uniforms R.prog_BlinnPhong_PointLight.u_lightPos/Col/Rad etc., - // then does renderFullScreenQuad(R.prog_BlinnPhong_PointLight). - - // TODO: In the lighting loop, use the scissor test optimization - // Enable gl.SCISSOR_TEST, render all lights, then disable it. - // - // getScissorForLight returns null if the scissor is off the screen. - // Otherwise, it returns an array [xmin, ymin, width, height]. - // - // var sc = getScissorForLight(state.viewMat, state.projMat, light); + gl.enable(gl.SCISSOR_TEST); + for(var i = 0; i < R.lights.length; i++) { + var light = R.lights[i]; + + gl.uniform3fv(R.prog_BlinnPhong_PointLight.u_lightPos, light.pos); + gl.uniform3fv(R.prog_BlinnPhong_PointLight.u_lightCol, light.col); + gl.uniform1f(R.prog_BlinnPhong_PointLight.u_lightRad, light.rad); + gl.uniform3f(R.prog_BlinnPhong_PointLight.u_cameraPos, state.cameraPos[0], state.cameraPos[1], state.cameraPos[2]); + if(cfg && cfg.effects == 1) { + gl.uniform1i(R.prog_BlinnPhong_PointLight.u_toon, 1); + } + else { + gl.uniform1i(R.prog_BlinnPhong_PointLight.u_toon, 0); + } + + var scissor; + if(cfg.improvedAABB) { + scissor = improvedGetScissorForLight(state.viewMat, state.projMat, light); + } + else { + scissor = getScissorForLight(state.viewMat, state.projMat, light); + } + if(scissor != null) { + gl.scissor(scissor[0], scissor[1], scissor[2], scissor[3]); + + if(cfg.debugScissor) { + renderFullScreenQuad(R.progRed); + } + else { + renderFullScreenQuad(R.prog_BlinnPhong_PointLight); + } + } + } + // Disable scissor + gl.disable(gl.SCISSOR_TEST); // Disable blending so that it doesn't affect other code gl.disable(gl.BLEND); }; @@ -159,9 +186,64 @@ }; /** - * 'post1' pass: Perform (first) pass of post-processing + * This is just the default post procesing pass (with no effects) + */ + R.pass_post0.render = function(state) { + // * Unbind any existing framebuffer (if there are no more passes) + gl.bindFramebuffer(gl.FRAMEBUFFER, null); + + // * Clear the framebuffer depth to 1.0 + gl.clearDepth(1.0); + gl.clear(gl.DEPTH_BUFFER_BIT); + + // * Bind the postprocessing shader program + gl.useProgram(R.progPost0.prog); + + // * Bind the deferred pass's color output as a texture input + // Set gl.TEXTURE0 as the gl.activeTexture unit + gl.activeTexture(gl.TEXTURE0); + // Bind the TEXTURE_2D, R.pass_deferred.colorTex to the active texture unit + gl.bindTexture(gl.TEXTURE_2D, R.pass_deferred.colorTex); + // Configure the R.progPost0.u_color uniform to point at texture unit 0 + gl.uniform1i(R.progPost0.u_color, 0); + + // * Render a fullscreen quad to perform shading on + renderFullScreenQuad(R.progPost0); // change this + }; + + /** + * 'post1' pass: Perform (first) pass of post-processing for bloom shading */ - R.pass_post1.render = function(state) { + R.pass_bloom_post1.render = function(state) { + // * Unbind any existing framebuffer (if there are no more passes) + // So we don't do this because there are more passes? + gl.bindFramebuffer(gl.FRAMEBUFFER, R.pass_bloom_post1.fbo); + + // * Clear the framebuffer depth to 1.0 + gl.clearDepth(1.0); + gl.clear(gl.DEPTH_BUFFER_BIT); + + // * Bind the postprocessing shader program + gl.useProgram(R.progBloomPost1.prog); + + // * Bind the deferred pass's color output as a texture input + // Set gl.TEXTURE0 as the gl.activeTexture unit + gl.activeTexture(gl.TEXTURE0); + // Bind the TEXTURE_2D, R.pass_deferred.colorTex to the active texture unit + gl.bindTexture(gl.TEXTURE_2D, R.pass_deferred.colorTex); + // Configure the R.progPost1.u_color uniform to point at texture unit 0 + gl.uniform1i(R.progBloomPost1.u_color, 0); + + gl.uniform2f(R.progBloomPost1.u_screen_inv, 1.0 / state.screenDim.w, 1.0 / state.screenDim.h); + + // * Render a fullscreen quad to perform shading on + renderFullScreenQuad(R.progBloomPost1); + }; + + /** + * 'post2' pass: Perform (second) pass of post-processing for bloom shading + */ + R.pass_bloom_post2.render = function(state) { // * Unbind any existing framebuffer (if there are no more passes) gl.bindFramebuffer(gl.FRAMEBUFFER, null); @@ -170,18 +252,93 @@ gl.clear(gl.DEPTH_BUFFER_BIT); // * Bind the postprocessing shader program - gl.useProgram(R.progPost1.prog); + gl.useProgram(R.progBloomPost2.prog); // * Bind the deferred pass's color output as a texture input // Set gl.TEXTURE0 as the gl.activeTexture unit - // TODO: ^ + gl.activeTexture(gl.TEXTURE0); // Bind the TEXTURE_2D, R.pass_deferred.colorTex to the active texture unit - // TODO: ^ + gl.bindTexture(gl.TEXTURE_2D, R.pass_deferred.colorTex); // Configure the R.progPost1.u_color uniform to point at texture unit 0 - gl.uniform1i(R.progPost1.u_color, 0); + gl.uniform1i(R.progBloomPost2.u_color, 0); + + // * Bind the deferred pass's color output as a texture input + // Set gl.TEXTURE0 as the gl.activeTexture unit + gl.activeTexture(gl.TEXTURE1); + // Bind the TEXTURE_2D, R.pass_post1.colorTex to the active texture unit + gl.bindTexture(gl.TEXTURE_2D, R.pass_bloom_post1.colorTex); + // Configure the R.progPost2.u_color uniform to point at texture unit 1 + gl.uniform1i(R.progBloomPost2.u_color, 1); + + gl.uniform2f(R.progBloomPost2.u_screen_inv, 1.0 / state.screenDim.w, 1.0 / state.screenDim.h); + + // * Render a fullscreen quad to perform shading on + renderFullScreenQuad(R.progBloomPost2); + }; + + /** + * 'post1' pass: Perform (first) pass of post-processing for toon shading + */ + R.pass_toon_post1.render = function(state) { + // * Unbind any existing framebuffer (if there are no more passes) + // So we don't do this because there are more passes? + gl.bindFramebuffer(gl.FRAMEBUFFER, R.pass_toon_post1.fbo); + + // * Clear the framebuffer depth to 1.0 + gl.clearDepth(1.0); + gl.clear(gl.DEPTH_BUFFER_BIT); + + // * Bind the postprocessing shader program + gl.useProgram(R.progToonPost1.prog); + + // * Bind the deferred pass's color output as a texture input + // Set gl.TEXTURE0 as the gl.activeTexture unit + gl.activeTexture(gl.TEXTURE0); + // Bind the TEXTURE_2D, R.pass_deferred.colorTex to the active texture unit + gl.bindTexture(gl.TEXTURE_2D, R.pass_deferred.colorTex); + // Configure the R.progToonPost1.u_color uniform to point at texture unit 0 + gl.uniform1i(R.progToonPost1.u_color, 0); + + gl.uniform2f(R.progToonPost1.u_screen_inv, 1.0 / state.screenDim.w, 1.0 / state.screenDim.h); + + // * Render a fullscreen quad to perform shading on + renderFullScreenQuad(R.progToonPost1); + }; + + /** + * 'post2' pass: Perform (second) pass of post-processing for toon shading + */ + R.pass_toon_post2.render = function(state) { + // * Unbind any existing framebuffer (if there are no more passes) + gl.bindFramebuffer(gl.FRAMEBUFFER, null); + + // * Clear the framebuffer depth to 1.0 + gl.clearDepth(1.0); + gl.clear(gl.DEPTH_BUFFER_BIT); + + // * Bind the postprocessing shader program + gl.useProgram(R.progToonPost2.prog); + + // * Bind the deferred pass's color output as a texture input + // Set gl.TEXTURE0 as the gl.activeTexture unit + gl.activeTexture(gl.TEXTURE0); + // Bind the TEXTURE_2D, R.pass_deferred.colorTex to the active texture unit + gl.bindTexture(gl.TEXTURE_2D, R.pass_deferred.colorTex); + // Configure the R.progToonPost2.u_color uniform to point at texture unit 0 + gl.uniform1i(R.progToonPost2.u_color, 0); + + // * Bind the deferred pass's color output as a texture input + // Set gl.TEXTURE0 as the gl.activeTexture unit + gl.activeTexture(gl.TEXTURE1); + // Bind the TEXTURE_2D, R.pass_toon_post1.colorTex to the active texture unit + gl.bindTexture(gl.TEXTURE_2D, R.pass_toon_post1.colorTex); + // Configure the R.progToonPost2.u_color uniform to point at texture unit 1 + gl.uniform1i(R.progToonPost2.u_color, 1); + + gl.uniform2f(R.progToonPost2.u_screen_inv, 1.0 / state.screenDim.w, 1.0 / state.screenDim.h); // * Render a fullscreen quad to perform shading on - renderFullScreenQuad(R.progPost1); + renderFullScreenQuad(R.progToonPost2); }; var renderFullScreenQuad = (function() { @@ -204,13 +361,13 @@ var init = function() { // Create a new buffer with gl.createBuffer, and save it as vbo. - // TODO: ^ + vbo = gl.createBuffer(); // Bind the VBO as the gl.ARRAY_BUFFER - // TODO: ^ + gl.bindBuffer(gl.ARRAY_BUFFER, vbo); // Upload the positions array to the currently-bound array buffer // using gl.bufferData in static draw mode. - // TODO: ^ + gl.bufferData(gl.ARRAY_BUFFER, positions, gl.STATIC_DRAW); }; return function(prog) { @@ -223,16 +380,16 @@ gl.useProgram(prog.prog); // Bind the VBO as the gl.ARRAY_BUFFER - // TODO: ^ + gl.bindBuffer(gl.ARRAY_BUFFER, vbo); // Enable the bound buffer as the vertex attrib array for // prog.a_position, using gl.enableVertexAttribArray - // TODO: ^ + gl.enableVertexAttribArray(prog.a_position); // Use gl.vertexAttribPointer to tell WebGL the type/layout for // prog.a_position's access pattern. - // TODO: ^ + gl.vertexAttribPointer(prog.a_position, 3, gl.FLOAT, false, 0, 0); // Use gl.drawArrays (or gl.drawElements) to draw your quad. - // TODO: ^ + gl.drawArrays(gl.TRIANGLE_STRIP, 0, 4); // Unbind the array buffer. gl.bindBuffer(gl.ARRAY_BUFFER, null); diff --git a/js/deferredSetup.js b/js/deferredSetup.js index 65136e0..4dc214f 100644 --- a/js/deferredSetup.js +++ b/js/deferredSetup.js @@ -5,10 +5,14 @@ R.pass_copy = {}; R.pass_debug = {}; R.pass_deferred = {}; - R.pass_post1 = {}; + R.pass_post0 = {}; + R.pass_bloom_post1 = {}; + R.pass_bloom_post2 = {}; + R.pass_toon_post1 = {}; + R.pass_toon_post2 = {}; R.lights = []; - R.NUM_GBUFFERS = 4; + R.NUM_GBUFFERS = 3; /** * Set up the deferred pipeline framebuffer objects and textures. @@ -18,14 +22,16 @@ loadAllShaderPrograms(); R.pass_copy.setup(); R.pass_deferred.setup(); + R.pass_post0.setup(); + R.pass_bloom_post1.setup(); + R.pass_toon_post1.setup(); }; - // TODO: Edit if you want to change the light initial positions R.light_min = [-14, 0, -6]; R.light_max = [14, 18, 6]; R.light_dt = -0.03; R.LIGHT_RADIUS = 4.0; - R.NUM_LIGHTS = 20; // TODO: test with MORE lights! + R.NUM_LIGHTS = 50; var setupLights = function() { Math.seedrandom(0); @@ -98,6 +104,54 @@ gl.bindFramebuffer(gl.FRAMEBUFFER, null); }; + R.pass_post0.setup = function() { + // * Create the FBO + R.pass_post0.fbo = gl.createFramebuffer(); + // * Create, bind, and store a single color target texture for the FBO + R.pass_post0.colorTex = createAndBindColorTargetTexture( + R.pass_post0.fbo, gl_draw_buffers.COLOR_ATTACHMENT0_WEBGL); + + // * Check for framebuffer errors + abortIfFramebufferIncomplete(R.pass_post0.fbo); + // * Tell the WEBGL_draw_buffers extension which FBO attachments are + // being used. (This extension allows for multiple render targets.) + gl_draw_buffers.drawBuffersWEBGL([gl_draw_buffers.COLOR_ATTACHMENT0_WEBGL]); + } + + /** + * first pass bloom shading setup + */ + R.pass_bloom_post1.setup = function() { + // * Create the FBO + R.pass_bloom_post1.fbo = gl.createFramebuffer(); + // * Create, bind, and store a single color target texture for the FBO + R.pass_bloom_post1.colorTex = createAndBindColorTargetTexture( + R.pass_bloom_post1.fbo, gl_draw_buffers.COLOR_ATTACHMENT0_WEBGL); + + // * Check for framebuffer errors + abortIfFramebufferIncomplete(R.pass_bloom_post1.fbo); + // * Tell the WEBGL_draw_buffers extension which FBO attachments are + // being used. (This extension allows for multiple render targets.) + gl_draw_buffers.drawBuffersWEBGL([gl_draw_buffers.COLOR_ATTACHMENT0_WEBGL]); + } + + /** + * first pass toon shading setup + */ + R.pass_toon_post1.setup = function() { + // * Create the FBO + R.pass_toon_post1.fbo = gl.createFramebuffer(); + // * Create, bind, and store a single color target texture for the FBO + R.pass_toon_post1.colorTex = createAndBindColorTargetTexture( + R.pass_toon_post1.fbo, gl_draw_buffers.COLOR_ATTACHMENT0_WEBGL); + + // * Check for framebuffer errors + abortIfFramebufferIncomplete(R.pass_toon_post1.fbo); + // * Tell the WEBGL_draw_buffers extension which FBO attachments are + // being used. (This extension allows for multiple render targets.) + gl_draw_buffers.drawBuffersWEBGL([gl_draw_buffers.COLOR_ATTACHMENT0_WEBGL]); + } + /** * Loads all of the shader programs used in the pipeline. */ @@ -111,6 +165,7 @@ p.u_cameraMat = gl.getUniformLocation(prog, 'u_cameraMat'); p.u_colmap = gl.getUniformLocation(prog, 'u_colmap'); p.u_normap = gl.getUniformLocation(prog, 'u_normap'); + p.u_specular_exp = gl.getUniformLocation(prog, 'u_specular_exp'); p.a_position = gl.getAttribLocation(prog, 'a_position'); p.a_normal = gl.getAttribLocation(prog, 'a_normal'); p.a_uv = gl.getAttribLocation(prog, 'a_uv'); @@ -141,6 +196,7 @@ p.u_lightPos = gl.getUniformLocation(p.prog, 'u_lightPos'); p.u_lightCol = gl.getUniformLocation(p.prog, 'u_lightCol'); p.u_lightRad = gl.getUniformLocation(p.prog, 'u_lightRad'); + p.u_toon = gl.getUniformLocation(p.prog, 'u_toon'); R.prog_BlinnPhong_PointLight = p; }); @@ -150,13 +206,41 @@ R.prog_Debug = p; }); - loadPostProgram('one', function(p) { + loadPostProgram('zero', function(p) { p.u_color = gl.getUniformLocation(p.prog, 'u_color'); // Save the object into this variable for access later - R.progPost1 = p; + R.progPost0 = p; }); - // TODO: If you add more passes, load and set up their shader programs. + loadPostProgram('bloom.one', function(p) { + p.u_color = gl.getUniformLocation(p.prog, 'u_color'); + p.u_screen_inv = gl.getUniformLocation(p.prog, 'u_screen_inv'); + // Save the object into this variable for access later + R.progBloomPost1 = p; + }); + + loadPostProgram('bloom.two', function(p) { + p.u_orig_color = gl.getUniformLocation(p.prog, 'u_orig_color'); + p.u_color = gl.getUniformLocation(p.prog, 'u_color'); + p.u_screen_inv = gl.getUniformLocation(p.prog, 'u_screen_inv'); + // Save the object into this variable for access later + R.progBloomPost2 = p; + }); + + loadPostProgram('toon.one', function(p) { + p.u_color = gl.getUniformLocation(p.prog, 'u_color'); + p.u_screen_inv = gl.getUniformLocation(p.prog, 'u_screen_inv'); + // Save the object into this variable for access later + R.progToonPost1 = p; + }); + + loadPostProgram('toon.two', function(p) { + p.u_orig_color = gl.getUniformLocation(p.prog, 'u_orig_color'); + p.u_color = gl.getUniformLocation(p.prog, 'u_color'); + p.u_screen_inv = gl.getUniformLocation(p.prog, 'u_screen_inv'); + // Save the object into this variable for access later + R.progToonPost2 = p; + }); }; var loadDeferredProgram = function(name, callback) { diff --git a/js/framework.js b/js/framework.js index b86e05d..60d5cfa 100644 --- a/js/framework.js +++ b/js/framework.js @@ -18,7 +18,8 @@ var width, height; projMat: camera.projectionMatrix, viewMat: camera.matrixWorldInverse, cameraPos: camera.position, - models: models + models: models, + screenDim: { w: width, h: height } }); }; @@ -67,9 +68,6 @@ var width, height; }; var init = function() { - // TODO: For performance measurements, disable debug mode! - var debugMode = true; - canvas = document.getElementById('canvas'); renderer = new THREE.WebGLRenderer({ canvas: canvas, @@ -77,6 +75,9 @@ var width, height; }); gl = renderer.context; + // For performance measurements, disable debug mode! + var debugMode = false; + if (debugMode) { $('#dlbutton button').attr('disabled', false); $('#debugmodewarning').css('display', 'block'); @@ -135,9 +136,28 @@ var width, height; loadTexture('models/sponza/normal.png').then(function(tex) { m.normap = tex; }); + + m.specular_exp = 1.0; + models.push(m); + }); + }); + + /* + // Additional model to show specular exponent being configurable + loadModel('models/cow/cow.obj', function(o) { + scene.add(o); + uploadModel(o, function(m) { + loadTexture('models/cow/color.png').then(function(tex) { + m.colmap = tex; + }); + loadTexture('models/cow/normal.png').then(function(tex) { + m.normap = tex; + }); + m.specular_exp = 10.0; models.push(m); }); }); + */ // Render once to get three.js to copy all of the model buffers resize(); diff --git a/js/ui.js b/js/ui.js index 05c1852..504a04d 100644 --- a/js/ui.js +++ b/js/ui.js @@ -4,31 +4,30 @@ var cfg; 'use strict'; var Cfg = function() { - // TODO: Define config fields and defaults here this.debugView = -1; this.debugScissor = false; - this.enableEffect0 = false; + this.improvedAABB = true; + this.effects = -1; }; var init = function() { cfg = new Cfg(); var gui = new dat.GUI(); - // TODO: Define any other possible config values gui.add(cfg, 'debugView', { 'None': -1, '0 Depth': 0, '1 Position': 1, - '2 Geometry normal': 2, - '3 Color map': 3, - '4 Normal map': 4, - '5 Surface normal': 5 + '2 Surface normal': 2, + '3 Color map': 3 }); gui.add(cfg, 'debugScissor'); - - var eff0 = gui.addFolder('EFFECT NAME HERE'); - eff0.add(cfg, 'enableEffect0'); - // TODO: add more effects toggles and parameters here + gui.add(cfg, 'improvedAABB'); + gui.add(cfg, 'effects', { + 'None': -1, + '0 Bloom': 0, + '1 Toon': 1 + }); }; window.handle_load.push(init); diff --git a/js/util.js b/js/util.js index 3119dd8..50de219 100644 --- a/js/util.js +++ b/js/util.js @@ -126,6 +126,7 @@ window.readyModelForDraw = function(prog, m) { gl.vertexAttribPointer(prog.a_uv, 2, gl.FLOAT, false, 0, 0); } + gl.uniform1f(prog.u_specular_exp, m.specular_exp); gl.bindBuffer(gl.ELEMENT_ARRAY_BUFFER, m.idx); }; @@ -181,6 +182,55 @@ window.getScissorForLight = (function() { }; })(); +/* Improved scissor by minimizing bounding box distortions and box size */ +window.improvedGetScissorForLight = (function() { + // Pre-allocate for performance - avoids additional allocation + var a = new THREE.Vector4(0, 0, 0, 0); + var b = new THREE.Vector4(0, 0, 0, 0); + var minpt = new THREE.Vector2(0, 0); + var maxpt = new THREE.Vector2(0, 0); + var ret = [0, 0, 0, 0]; + + return function(view, proj, l) { + // front bottom-left corner of sphere's bounding cube + a.fromArray(l.pos); + a.w = 1; + a.applyMatrix4(view); + a.x -= l.rad; + a.y -= l.rad; + + // front bottom-left corner of sphere's bounding cube + b.fromArray(l.pos); + b.w = 1; + b.x = a.x + l.rad * 2.0; + b.y = a.y + l.rad * 2.0; + b.z = a.z; + + a.applyMatrix4(proj); + a.divideScalar(a.w); + + b.applyMatrix4(proj); + b.divideScalar(b.w); + + minpt.set(Math.max(-1, a.x), Math.max(-1, a.y)); + maxpt.set(Math.min( 1, b.x), Math.min( 1, b.y)); + + if (maxpt.x < -1 || 1 < minpt.x || + maxpt.y < -1 || 1 < minpt.y) { + return null; + } + + minpt.addScalar(1.0); minpt.multiplyScalar(0.5); + maxpt.addScalar(1.0); maxpt.multiplyScalar(0.5); + + ret[0] = Math.round(width * minpt.x); + ret[1] = Math.round(height * minpt.y); + ret[2] = Math.round(width * (maxpt.x - minpt.x)); + ret[3] = Math.round(height * (maxpt.y - minpt.y)); + return ret; + }; +})(); + window.abortIfFramebufferIncomplete = function(fbo) { gl.bindFramebuffer(gl.FRAMEBUFFER, fbo); var fbstatus = gl.checkFramebufferStatus(gl.FRAMEBUFFER); diff --git a/models/cow.obj b/models/cow.obj deleted file mode 100644 index 8ca318a..0000000 --- a/models/cow.obj +++ /dev/null @@ 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