Difference between revisions of "CISC440 S2019"
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|valign="top"|'''Office hours''' | |valign="top"|'''Office hours''' | ||
− | |Wednesdays, | + | |Wednesdays, 10:15 am -- 12:15 pm |
|- | |- | ||
|valign="top"|'''TA''' | |valign="top"|'''TA''' | ||
|Chunbo Song, songcb@udel.edu<br> | |Chunbo Song, songcb@udel.edu<br> | ||
− | TA office hours: Mondays, 3 | + | TA office hours: Mondays, 1-3 pm in Smith 102A |
|- | |- | ||
|valign="top"|'''Grading''' | |valign="top"|'''Grading''' | ||
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|valign="top"|'''Piazza''' | |valign="top"|'''Piazza''' | ||
| | | | ||
− | * To enroll: http://piazza.com/udel/ | + | * To enroll: http://piazza.com/udel/spring2019/cisc440640 |
− | * After you enroll: http://piazza.com/udel/ | + | * After you enroll: http://piazza.com/udel/spring2019/cisc440640/home |
|- | |- | ||
|valign="top"|'''Academic policies''' | |valign="top"|'''Academic policies''' | ||
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This book is NOT at the campus bookstore. Other ordering options: | This book is NOT at the campus bookstore. Other ordering options: | ||
− | * [http://www.amazon.com/Fundamentals-Computer-Graphics-Fourth-Marschner/dp/1482229390/ref=sr_1_1?ie=UTF8&qid=1452108760&sr=8-1 Amazon]: About $79 for used hardcover, $ | + | * [http://www.amazon.com/Fundamentals-Computer-Graphics-Fourth-Marschner/dp/1482229390/ref=sr_1_1?ie=UTF8&qid=1452108760&sr=8-1 Amazon]: About $79 for used hardcover, $26 to rent physical book for semester, E-book purchase $42 |
* [https://www.crcpress.com/Fundamentals-of-Computer-Graphics-Fourth-Edition/Marschner-Shirley/9781482229394 CRC Press] (the publisher): E-book purchase is $52, rental is $29 for 180 days | * [https://www.crcpress.com/Fundamentals-of-Computer-Graphics-Fourth-Edition/Marschner-Shirley/9781482229394 CRC Press] (the publisher): E-book purchase is $52, rental is $29 for 180 days | ||
<!-- | <!-- | ||
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''Note'': The blue squares in the "#" column below indicate Tuesdays. <br> | ''Note'': The blue squares in the "#" column below indicate Tuesdays. <br> | ||
− | + | UDCapture videos are available in the Media Gallery tab of this course's Canvas page | |
<br> | <br> | ||
+ | |||
{| class="wikitable" style="text-align: center" border="1" cellpadding="5" | {| class="wikitable" style="text-align: center" border="1" cellpadding="5" | ||
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|- | |- | ||
|style="background:rgb(102, 204, 255)"|1 | |style="background:rgb(102, 204, 255)"|1 | ||
− | |Feb. | + | |Feb. 12 |
|Introduction | |Introduction | ||
|Graphics background, course information | |Graphics background, course information | ||
|Marschner, 1-1.4 | |Marschner, 1-1.4 | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1EgKeHo4vHxs90nAAfSQAZMfP-hxLFPsz2E6Mwpv8k6M/edit?usp=sharing slides] |
|- | |- | ||
|2 | |2 | ||
− | |Feb. | + | |Feb. 14 |
|2-D, 3-D Geometry | |2-D, 3-D Geometry | ||
|Vector & matrix review, homogeneous coordinates, 2-D & 3-D transformations, quaternions | |Vector & matrix review, homogeneous coordinates, 2-D & 3-D transformations, quaternions | ||
|Marschner, 2.4, 5.2-5.2.2, 6-6.3 (skip 6.1.6, 6.2.1-6.2.2), 16.2.2 | |Marschner, 2.4, 5.2-5.2.2, 6-6.3 (skip 6.1.6, 6.2.1-6.2.2), 16.2.2 | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/11coBBT-FjdP4S4mEERIN2vW-uKzNuFYGVd8cT3wTjOo/edit?usp=sharing slides] |
|- | |- | ||
|style="background:rgb(102, 204, 255)"|3 | |style="background:rgb(102, 204, 255)"|3 | ||
− | |Feb. | + | |Feb. 19 |
|3-D Geometry | |3-D Geometry | ||
|More 3-D transformations, camera manipulation & the view volume | |More 3-D transformations, camera manipulation & the view volume | ||
|Marschner, 6.5-7.2 <!--; Red book, 3 --> | |Marschner, 6.5-7.2 <!--; Red book, 3 --> | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1oWrAKSIfZfZ8PiazpidED7ZYGOE0Gka08-l__GbfuWA/edit?usp=sharing slides] |
|- | |- | ||
|4 | |4 | ||
− | |Feb. | + | |Feb. 21 |
|3-D Geometry | |3-D Geometry | ||
|Perspective projection, geometry pipeline, transformations with GLM | |Perspective projection, geometry pipeline, transformations with GLM | ||
|Marschner, 7.3, 7.5; OpenGL tutorials [http://www.opengl-tutorial.org/beginners-tutorials/tutorial-1-opening-a-window/ #1] (including installation instructions), [http://www.opengl-tutorial.org/beginners-tutorials/tutorial-3-matrices/ #3] <!--Red book, 1, 2 (stop before stippling) --> | |Marschner, 7.3, 7.5; OpenGL tutorials [http://www.opengl-tutorial.org/beginners-tutorials/tutorial-1-opening-a-window/ #1] (including installation instructions), [http://www.opengl-tutorial.org/beginners-tutorials/tutorial-3-matrices/ #3] <!--Red book, 1, 2 (stop before stippling) --> | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1spOcwq7QDmaqbW3EwxidtfyJQX3pqF8cSbjuR1NUdCw/edit?usp=sharing slides]<br> |
− | [[ | + | [[CISC440_S2019_HW1|HW #1]] |
|- | |- | ||
|style="background:rgb(102, 204, 255)"|5 | |style="background:rgb(102, 204, 255)"|5 | ||
− | |Feb. | + | |Feb. 26 |
− | ''Register/add deadline Feb. | + | ''Register/add deadline Feb. 25''<br> |
|OpenGL/GLFW | |OpenGL/GLFW | ||
|Program initialization, window creation, geometric primitives <!--, GLUT --> | |Program initialization, window creation, geometric primitives <!--, GLUT --> | ||
|Marschner, 17-17.7, 17.9-17.11 <!--Red book 1, 2, 6 "Blending" section, 9 --> | |Marschner, 17-17.7, 17.9-17.11 <!--Red book 1, 2, 6 "Blending" section, 9 --> | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1JiZryyooKeCHmdl0oT6z2wzYeGArpQGe1Sn9Yob3BQY/edit?usp=sharing slides] |
|- | |- | ||
|6 | |6 | ||
− | |Feb. | + | |Feb. 28 |
|OpenGL/GLFW | |OpenGL/GLFW | ||
|Basic animation, user interface callbacks | |Basic animation, user interface callbacks | ||
|OpenGL tutorial [http://www.opengl-tutorial.org/beginners-tutorials/tutorial-6-keyboard-and-mouse/ #6] | |OpenGL tutorial [http://www.opengl-tutorial.org/beginners-tutorials/tutorial-6-keyboard-and-mouse/ #6] | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1CyP2mnn0_MpKUHXfulycKn-h2Er1CCT1QICaP8GAB3c/edit?usp=sharing slides]<br>[https://drive.google.com/open?id=11F506g-4qhnYGRGQvSVPE1ElCUhvzO78 interactive_tutorial03.cpp] |
|- | |- | ||
|style="background:rgb(102, 204, 255)"|7 | |style="background:rgb(102, 204, 255)"|7 | ||
− | | | + | |Mar. 5 |
|GPU programming | |GPU programming | ||
− | |Introduction to GLSL, vertex shaders vs. fragment shaders | + | |Introduction to GLSL, vertex shaders vs. fragment shaders; GLSL texturing demo |
|Marschner, 17.8; [http://wiki.labomedia.org/images/1/10/Orange_Book_-_OpenGL_Shading_Language_2nd_Edition.pdf Orange book Chaps. 2-5] | |Marschner, 17.8; [http://wiki.labomedia.org/images/1/10/Orange_Book_-_OpenGL_Shading_Language_2nd_Edition.pdf Orange book Chaps. 2-5] | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1b5JTe1vNIiCAN4YxZhHX1JwpOSmTb630tt5Vkq6RjaU/edit?usp=sharing slides]<br> |
+ | [https://drive.google.com/file/d/1zGheap531oLlk8hFMV5xg8JV0BpOQXuF/view?usp=sharing texture_example.zip] | ||
|- | |- | ||
|8 | |8 | ||
− | |Mar. | + | |Mar. 7 |
|Shading | |Shading | ||
− | | | + | |Radiometry: irradiance, radiosity, radiance, BRDFs |
|Marschner, 10-10.2.1, 20-20.2 | |Marschner, 10-10.2.1, 20-20.2 | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1X7CylbMURBQ-xZimIokrKn4XhLL2TuYzvB5EG6mqh88/edit?usp=sharing slides]<br> |
− | + | [[CISC440_S2019_HW2|HW #2]]<br>''HW #1 due'' | |
− | [[ | ||
|- | |- | ||
|style="background:rgb(102, 204, 255)"|9 | |style="background:rgb(102, 204, 255)"|9 | ||
− | |Mar. | + | |Mar. 12 |
|Shading | |Shading | ||
|Diffuse, specular reflection, Gouraud/Phong shading details; OpenGL, GLSL shading methods | |Diffuse, specular reflection, Gouraud/Phong shading details; OpenGL, GLSL shading methods | ||
|Marschner, 10-10.2.2; [http://www.opengl-tutorial.org/beginners-tutorials/tutorial-8-basic-shading/ OpenGL tutorial #8] | |Marschner, 10-10.2.2; [http://www.opengl-tutorial.org/beginners-tutorials/tutorial-8-basic-shading/ OpenGL tutorial #8] | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1Jz_QvrUYHbSKOHRA5PFaOmKu6miJAcJozDzRw3W01nE/edit?usp=sharing slides] |
|- | |- | ||
|10 | |10 | ||
− | |Mar. | + | |Mar. 14 |
|Textures | |Textures | ||
|Texture-mapping pipeline, start bump mapping | |Texture-mapping pipeline, start bump mapping | ||
|Marschner, 11.2, 11.4 (homogeneous division material--not barycentric coords), 11.5 <!--; Red book, 9 (through "Assigning texture coordinates") --> | |Marschner, 11.2, 11.4 (homogeneous division material--not barycentric coords), 11.5 <!--; Red book, 9 (through "Assigning texture coordinates") --> | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/19dMoZsgSAa0p1ssY-JoKBFiIXa5P1KP9QGtm_RMNp84/edit?usp=sharing slides] |
|- | |- | ||
|style="background:rgb(102, 204, 255)"|11 | |style="background:rgb(102, 204, 255)"|11 | ||
− | |Mar. | + | |Mar. 19 |
|Textures | |Textures | ||
− | | | + | |Environment maps, shadow maps, lightmaps, magnification/minification |
− | |Marschner, 11.1.3-11.1.4, 11. | + | |Marschner, 11.1.3-11.1.4, 11.3 |
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1XXpHrO7URx-SHqxd7iRujQym_lOht8f9XlXdPLQ5q3M/edit?usp=sharing slides] |
|- | |- | ||
|12 | |12 | ||
− | |Mar. | + | |Mar. 21 |
− | | | + | |Clipping and start hidden surface elimination |
− | | | + | |Line and triangle clipping, backface culling |
− | | | + | |Marschner, 8.1.3-8.1.6, 8.4 |
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1foZXottOepNReSn6s4FTYXxCm1XgCX8CRFvG-54vRqo/edit?usp=sharing slides]<br>''HW #2 due''<!--<br> |
[https://docs.google.com/presentation/d/1IeookkoZP5GEAYuCb40CIUC1S96YroyaAvKfyD9LT8o/edit?usp=sharing slides]--> | [https://docs.google.com/presentation/d/1IeookkoZP5GEAYuCb40CIUC1S96YroyaAvKfyD9LT8o/edit?usp=sharing slides]--> | ||
|- | |- | ||
|style="background:rgb(102, 204, 255)"|13 | |style="background:rgb(102, 204, 255)"|13 | ||
− | |Mar. | + | |Mar. 26 |
|Midterm review | |Midterm review | ||
| | | | ||
| | | | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1FTIs9mxZSTyG4C3HHi32UovnFP7qTdhghJHZrgScxyI/edit?usp=sharing slides]<br>[http://nameless.cis.udel.edu/class_data/cg_s2017/midterm_s2014.pdf 2014 midterm] (ignore Q9, Q10, and Q11)<br> |
[http://nameless.cis.udel.edu/class_data/cg/midterm2004.pdf 2004 midterm] (look at questions 1.1, 1.2, 2.1, and 3.2 only) | [http://nameless.cis.udel.edu/class_data/cg/midterm2004.pdf 2004 midterm] (look at questions 1.1, 1.2, 2.1, and 3.2 only) | ||
|- | |- | ||
|14 | |14 | ||
− | |Mar. | + | |Mar. 28 |
|MIDTERM EXAM | |MIDTERM EXAM | ||
| | | | ||
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|- | |- | ||
|style="background:rgb(102, 204, 255)"| | |style="background:rgb(102, 204, 255)"| | ||
− | | | + | |Apr. 2 |
|style="background:rgb(255, 102, 0)"|NO CLASS<br>''Spring break'' | |style="background:rgb(255, 102, 0)"|NO CLASS<br>''Spring break'' | ||
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− | | | + | |Apr. 4 |
|style="background:rgb(255, 102, 0)"|NO CLASS<br>''Spring break'' | |style="background:rgb(255, 102, 0)"|NO CLASS<br>''Spring break'' | ||
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|- | |- | ||
|style="background:rgb(102, 204, 255)"|15 | |style="background:rgb(102, 204, 255)"|15 | ||
− | |Apr. | + | |Apr. 9 |
− | | | + | |Finish hidden surface elimination; line drawing |
− | | | + | |Z-buffering, painter's algorithm, BSP trees; DDA, midpoint line-drawing |
− | |Marschner, 8. | + | |Marschner, 8.2-8.2.3, 12.4; 8.1-8.1.1, 8.3 |
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1-9o9EE9tJN86181qcxpAp91SdkrtVNsv8e-3OnyNo74/edit?usp=sharing slides]<!--[https://docs.google.com/presentation/d/1H0tSJHr07SF8wG6LUxeL2e0_5jjCusG5HHGsYOZiAVM/edit?usp=sharing slides]--> |
|- | |- | ||
|16 | |16 | ||
− | |Apr. | + | |Apr. 11 |
|Motion/simulation | |Motion/simulation | ||
|Particle systems, flocking | |Particle systems, flocking | ||
|Marschner, 16.7 | |Marschner, 16.7 | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1-lsZC75u-d20W0F0278QYGCOiXumBav14wkK5G5mgtg/edit?usp=sharing slides]<!--[https://docs.google.com/presentation/d/15n9PEKXT3ErqK-TG1OcpX-OuZZts-Jo0RzbOtsoMsRA/edit?usp=sharing slides]<br>--><!----> |
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|- | |- | ||
+ | |style="background:rgb(102, 204, 255)"| | ||
+ | |Apr. 16<br>''Withdraw deadline Apr. 15'' | ||
+ | |style="background:rgb(255, 102, 0)"|NO CLASS<br>''Instructor away'' | ||
| | | | ||
− | |||
− | |||
| | | | ||
− | + | |<!--[https://docs.google.com/presentation/d/1ZuycE08PPYuNpv6DhSx0gsSZ4ib5Cp6CIl6fC2-Zt7s/edit?usp=sharing slides]--> | |
− | |<!--[https://docs.google.com/presentation/d/ | + | |- |
+ | |17 | ||
+ | |Apr. 18 | ||
+ | |Physics/simulation | ||
+ | |Finish flocking; introduction to Bullet physics library | ||
+ | |OpenGL tutorial on [http://www.opengl-tutorial.org/miscellaneous/clicking-on-objects/picking-with-a-physics-library/ clicking], [https://github.com/bulletphysics/bullet3/blob/master/docs/Bullet_User_Manual.pdf Bullet physics manual] (you don't have to read all of it, it's just for reference) | ||
+ | |[https://docs.google.com/presentation/d/1bHRwcBv1oVgjCXvWE3XJ4P6IGTQC85f3aiN7Hz4-Efw/edit?usp=sharing slides]<br><!--[https://docs.google.com/presentation/d/1l1iPQGlKUeOgLsd1x0TQnqcccyrT0YZv1NBXAuxNcEM/edit?usp=sharing slides]-->[[CISC440_S2019_HW3|HW #3]] | ||
|- | |- | ||
|style="background:rgb(102, 204, 255)"|18 | |style="background:rgb(102, 204, 255)"|18 | ||
− | |Apr. | + | |Apr. 23 |
− | | | + | |Ray tracing |
− | | | + | |Ray casting, intersection testing |
− | |Marschner, | + | |Marschner, 4 |
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/16PWLLjsNKe3SSOcc37jaG8Gcp2iYXUxe-HrW42jy_RM/edit?usp=sharing slides] |
|- | |- | ||
|19 | |19 | ||
− | |Apr. | + | |Apr. 25 |
− | | | + | |Ray tracing |
− | | | + | |Shadow rays (including soft shadows, ambient occlusion), reflections (including glossy) |
|Marschner, 4 | |Marschner, 4 | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1nFmP3YpOzFilRObdpD8wcSfxDlx-Nw_D6l0ZHbjxD6I/edit?usp=sharing slides] |
|- | |- | ||
|style="background:rgb(102, 204, 255)"|20 | |style="background:rgb(102, 204, 255)"|20 | ||
− | |Apr. | + | |Apr. 30 |
− | |Ray tracing | + | |Review midterms; Ray tracing |
− | | | + | |Refractions, distributed ray tracing for anti-aliasing |
|Marschner, 4 | |Marschner, 4 | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1ASLJGV0EiQS6T61QCmKZvHrg1b3jGTXsmzsAioRFD3s/edit?usp=sharing slides] |
|- | |- | ||
|21 | |21 | ||
− | + | |May 2 | |
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |May | ||
|Ray tracing and beyond | |Ray tracing and beyond | ||
− | | | + | |Spatial data structures; bidirectional ray tracing |
|Marschner, 4, 12.3, 13.1, 13.4; [http://nameless.cis.udel.edu/class_data/cg/heckbert_bidirectional.pdf "Bidirectional Ray Tracing"] paper by | |Marschner, 4, 12.3, 13.1, 13.4; [http://nameless.cis.udel.edu/class_data/cg/heckbert_bidirectional.pdf "Bidirectional Ray Tracing"] paper by | ||
P. Heckbert | P. Heckbert | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1R9bGkLeWFbzitD_ltsMcwUU5L4tRjCxE67xgxLOK4HU/edit?usp=sharing slides]<!--<br>[https://docs.google.com/presentation/d/1ouyej5ltRdqlp5x3FnqxWRq1cwmh9Lt-3PdRRHtpFOo/edit?usp=sharing slides]--><br>''HW #3 due''<br>[[CISC440_S2019_HW4|HW #4]] |
|- | |- | ||
− | | | + | |style="background:rgb(102, 204, 255)"|22 |
− | |May | + | |May 7 |
|Global illumination | |Global illumination | ||
− | | | + | |Photon mapping |
|[http://web.cs.wpi.edu/~emmanuel/courses/cs563/write_ups/zackw/photon_mapping/PhotonMapping.html Photon mapping introduction], [http://www.cc.gatech.edu/~phlosoft/photon/ online demo], [http://nameless.cis.udel.edu/class_data/cg/jensen_photon_mapping_tutorial.pdf tutorial] | |[http://web.cs.wpi.edu/~emmanuel/courses/cs563/write_ups/zackw/photon_mapping/PhotonMapping.html Photon mapping introduction], [http://www.cc.gatech.edu/~phlosoft/photon/ online demo], [http://nameless.cis.udel.edu/class_data/cg/jensen_photon_mapping_tutorial.pdf tutorial] | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1N-mF3yglLl2c2UyMnx22vFce-oEwGJz6rcKxZiJsjmI/edit?usp=sharing slides] |
|- | |- | ||
− | | | + | |23 |
− | |May | + | |May 9 |
− | | | + | |Noise |
− | |Value/Perlin noise | + | |Value/Perlin noise |
|Marschner, 11.5.2-11.5.3, Orange book 15 | |Marschner, 11.5.2-11.5.3, Orange book 15 | ||
− | |[https://docs.google.com/presentation/d/ | + | |[https://docs.google.com/presentation/d/1RQowhwgnrSW4ySegy3Mkb9mSk-V07G6jweOqCuQWbjM/edit?usp=sharing slides] |
|- | |- | ||
− | | | + | |style="background:rgb(102, 204, 255)"|24 |
− | |May | + | |May 14 |
− | | | + | |In-class HW #4 help -- attendance optional |
| | | | ||
| | | | ||
− | |<!--[https://docs.google.com/presentation/d/ | + | |<!--[https://docs.google.com/presentation/d/1TP7aOmOcE0j5A6thVQ-E0vHQwIt4sY8793j_JL4Lobs/edit?usp=sharing slides]--> |
|- | |- | ||
− | | | + | |25 |
− | |May | + | |May 16 |
− | |Final review | + | |Final review |
| | | | ||
| | | | ||
− | |<!--[https://docs.google.com/presentation/d/ | + | |<!--[https://docs.google.com/presentation/d/1RWvmTrSD1076eN6luo24XgJSuhroHKgkBT4tPovJxI0/edit?usp=sharing slides]--> |
+ | [https://docs.google.com/presentation/d/1kjDUMRjXeyHSYDP5h1POf1NE-R5ZlxYABD9tsF2s268/edit?usp=sharing slides]<br>[http://nameless.cis.udel.edu/class_data/cg/f2008_final_arial.pdf 2008 final]<br>''HW #4 due''<!--<br>[https://docs.google.com/presentation/d/113m0MIqb3mzzp4JmUMTFBRQcta2p7rIPzf5Oy8FaBy0/edit?usp=sharing slides]<br>[http://nameless.cis.udel.edu/class_data/cg/f2008_final_arial.pdf 2008 final]--> | ||
|- | |- | ||
| | | | ||
− | |May | + | |May 28, 1-3 pm |
|FINAL EXAM | |FINAL EXAM | ||
| | | |
Latest revision as of 11:52, 16 May 2019
Course information
Title | CISC440/640 Computer Graphics |
Shortened URL | https://goo.gl/V6WTfi |
Description | A first course in computer graphics covering fundamental concepts and techniques related to rasterization, textures, 2-D and 3-D transformations (including perspective projection), shading, hidden surface elimination, and anti-aliasing, as well as selected topics in modeling, animation, ray tracing, and global illumination. OpenGL will be used for programming; you should have some familiarity with C/C++ or be ready to learn it. |
When | Tuesdays and Thursdays, 2-3:15 pm |
Where | ISE 207 |
Instructor | Christopher Rasmussen, 446 Smith Hall, cer@cis.udel.edu |
Office hours | Wednesdays, 10:15 am -- 12:15 pm |
TA | Chunbo Song, songcb@udel.edu TA office hours: Mondays, 1-3 pm in Smith 102A |
Grading |
Graduate students will be given extra tasks to complete or features to implement on each homework, and extra questions to answer on each exam. Programming assignments will be graded on the basis of correctness, efficiency, and originality. This is not an introductory programming class, so coding style is not critical. However, if you want partial credit for something that doesn't quite work, it needs to be well-commented and easy to follow. For the overall course grade, a preliminary absolute mark will be assigned to each student based on the percentage of the total possible points they earn according to the standard formula: A = 90-100, B = 80-90, C = 70-80, etc., with +'s and -'s given for the upper and lower third of each range, respectively. Based on the distribution of preliminary grades for all students (i.e., "the curve"), the instructor may increase these grades monotonically to calculate final grades. This means that your final grade can't be lower than your preliminary grade, and your final grade won't be higher than that of anyone who had a higher preliminary grade. I will try to keep you informed about your standing throughout the semester. If you have any questions about grading or expectations at any time, please feel free to ask me. |
Piazza |
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Academic policies | Programming projects are due by midnight of the deadline day (with a grace period of a few hours afterward...after sunrise is definitely late). A late homework is a 0 without a valid prior excuse. To give you a little flexibility, you have 6 "late days" to use on homeworks to extend the deadline by one day each without penalty. No more than three late days may be used per assignment. Late days will automatically be subtracted, but as a courtesy please notify the instructor (and CC the TA) in an e-mail of your intention to use late days before the deadline. See submission instructions below.
The two exams will be closed book (i.e., no reference materials allowed). Unless otherwise instructed, you are responsible for all material covered up to the day of the exam, both from the assigned readings (everything in the Readings column of the Schedule below) and in lectures (excluding guest lectures). Students can discuss problems with one another in general terms, but must work independently on programming assignments. This also applies to online and printed resources: you may consult them as references (as long as you cite them), but the words and source code you turn in must be yours alone. The University's policies on academic dishonesty are set forth in the student code of conduct here. |
Readings
Textbook (required) | Fundamentals of Computer Graphics (4th ed.) [Marschner in calendar below]
Steve Marschner and Peter Shirley CRC Press, 2016 Textbook web site: Author (most useful thing there is link to course with relevant slides), Publisher This book is NOT at the campus bookstore. Other ordering options: |
Instructions
OpenGL | Key thing to note: We are using OpenGL 3.3 for programming! A lot of examples on the web are for older 2.x, so beware
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Homeworks | Assignment submissions should consist of a directory containing all code (your .cpp files, header files, makefile if applicable, etc.), any output data generated (e.g., images, movies, etc.), and an explanation of your approach, what worked and didn't work, etc. contained in a separate text or HTML file. Do not submit executables, .o files, or libraries, please! The directory you submit for each assignment should be packaged by tar'ing and gzip'ing it or just zip'ing it. The resulting file should be submitted through Canvas.
You may develop your OpenGL, C/C++ code in any fashion that is convenient--that is, with any compiler and operating system that you want--but you must avoid OS- and hardware-specific functions. |
Schedule
Note: The blue squares in the "#" column below indicate Tuesdays.
UDCapture videos are available in the Media Gallery tab of this course's Canvas page
# | Date | Topic | Notes | Readings | Assignments/slides |
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1 | Feb. 12 | Introduction | Graphics background, course information | Marschner, 1-1.4 | slides |
2 | Feb. 14 | 2-D, 3-D Geometry | Vector & matrix review, homogeneous coordinates, 2-D & 3-D transformations, quaternions | Marschner, 2.4, 5.2-5.2.2, 6-6.3 (skip 6.1.6, 6.2.1-6.2.2), 16.2.2 | slides |
3 | Feb. 19 | 3-D Geometry | More 3-D transformations, camera manipulation & the view volume | Marschner, 6.5-7.2 | slides |
4 | Feb. 21 | 3-D Geometry | Perspective projection, geometry pipeline, transformations with GLM | Marschner, 7.3, 7.5; OpenGL tutorials #1 (including installation instructions), #3 | slides |
5 | Feb. 26
Register/add deadline Feb. 25 |
OpenGL/GLFW | Program initialization, window creation, geometric primitives | Marschner, 17-17.7, 17.9-17.11 | slides |
6 | Feb. 28 | OpenGL/GLFW | Basic animation, user interface callbacks | OpenGL tutorial #6 | slides interactive_tutorial03.cpp |
7 | Mar. 5 | GPU programming | Introduction to GLSL, vertex shaders vs. fragment shaders; GLSL texturing demo | Marschner, 17.8; Orange book Chaps. 2-5 | slides |
8 | Mar. 7 | Shading | Radiometry: irradiance, radiosity, radiance, BRDFs | Marschner, 10-10.2.1, 20-20.2 | slides HW #2 |
9 | Mar. 12 | Shading | Diffuse, specular reflection, Gouraud/Phong shading details; OpenGL, GLSL shading methods | Marschner, 10-10.2.2; OpenGL tutorial #8 | slides |
10 | Mar. 14 | Textures | Texture-mapping pipeline, start bump mapping | Marschner, 11.2, 11.4 (homogeneous division material--not barycentric coords), 11.5 | slides |
11 | Mar. 19 | Textures | Environment maps, shadow maps, lightmaps, magnification/minification | Marschner, 11.1.3-11.1.4, 11.3 | slides |
12 | Mar. 21 | Clipping and start hidden surface elimination | Line and triangle clipping, backface culling | Marschner, 8.1.3-8.1.6, 8.4 | slides HW #2 due |
13 | Mar. 26 | Midterm review | slides 2014 midterm (ignore Q9, Q10, and Q11) 2004 midterm (look at questions 1.1, 1.2, 2.1, and 3.2 only) | ||
14 | Mar. 28 | MIDTERM EXAM | |||
Apr. 2 | NO CLASS Spring break |
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Apr. 4 | NO CLASS Spring break |
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15 | Apr. 9 | Finish hidden surface elimination; line drawing | Z-buffering, painter's algorithm, BSP trees; DDA, midpoint line-drawing | Marschner, 8.2-8.2.3, 12.4; 8.1-8.1.1, 8.3 | slides |
16 | Apr. 11 | Motion/simulation | Particle systems, flocking | Marschner, 16.7 | slides |
Apr. 16 Withdraw deadline Apr. 15 |
NO CLASS Instructor away |
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17 | Apr. 18 | Physics/simulation | Finish flocking; introduction to Bullet physics library | OpenGL tutorial on clicking, Bullet physics manual (you don't have to read all of it, it's just for reference) | slides HW #3 |
18 | Apr. 23 | Ray tracing | Ray casting, intersection testing | Marschner, 4 | slides |
19 | Apr. 25 | Ray tracing | Shadow rays (including soft shadows, ambient occlusion), reflections (including glossy) | Marschner, 4 | slides |
20 | Apr. 30 | Review midterms; Ray tracing | Refractions, distributed ray tracing for anti-aliasing | Marschner, 4 | slides |
21 | May 2 | Ray tracing and beyond | Spatial data structures; bidirectional ray tracing | Marschner, 4, 12.3, 13.1, 13.4; "Bidirectional Ray Tracing" paper by
P. Heckbert |
slides HW #3 due HW #4 |
22 | May 7 | Global illumination | Photon mapping | Photon mapping introduction, online demo, tutorial | slides |
23 | May 9 | Noise | Value/Perlin noise | Marschner, 11.5.2-11.5.3, Orange book 15 | slides |
24 | May 14 | In-class HW #4 help -- attendance optional | |||
25 | May 16 | Final review |
slides | ||
May 28, 1-3 pm | FINAL EXAM |