Bibliography:

  1. ‘CS’ tag

  2. ‘AI hardware’ tag

  3. How Many Computers Are In Your Computer?

  4. Slowing Moore’s Law: How It Could Happen

  5. Refurb Weekend: the Symbolics MacIvory Lisp Machine

  6. Evaluation of OpenAI o1: Opportunities and Challenges of AGI

  7. [Yacht laptops: more dakka]

  8. Quantum error correction below the surface code threshold

  9. NAVIX: Scaling MiniGrid Environments with JAX

  10. AI and Memory Wall

  11. A 3D nanoscale optical disk memory with petabit capacity

  12. Linux/4004: Slowly Booting Full Linux on the Intel 4004 CPU for Fun, Art, and Absolutely No Profit

  13. f5dad12de2f63aad489704cfeff50ae060ec6340.html

  14. Machine Learning Without a Processor: Emergent Learning in a Nonlinear Electronic Metamaterial

  15. Application of the Thermodynamics of Radiation to Dyson Spheres as Work Extractors and Computational Engines, and their Observational Consequences

  16. Putting out the hardware dumpster fire

  17. Universal Mechanical Polycomputation in Granular Matter

  18. Arm seeks to raise prices ahead of hotly anticipated IPO: SoftBank-owned group aims to charge more for each chip design in radical shake-up of business model

  19. Ultrafast optical switching and data encoding on synthesized light fields

  20. We stand to save $7m over 5 years from our cloud exit

  21. Optical Transformers

  22. Google wants RISC-V to be a ‘tier-1’ Android architecture: Google's keynote at the RISC-V Summit promises official, polished support

  23. Deep Differentiable Logic Gate Networks

  24. Deep Learning with Coherent VCSEL Neural Networks

  25. Twin physically unclonable functions based on aligned carbon nanotube arrays

  26. Detecting silent data corruptions in the wild

  27. Gigahertz Sub-Landauer Momentum Computing

  28. EvoJAX: Hardware-Accelerated Neuroevolution

  29. Accelerated Quality-Diversity for Robotics through Massive Parallelism

  30. Is Programmable Overhead Worth The Cost? How much do we pay for a system to be programmable? It depends upon who you ask

  31. Relational Memory: Native In-Memory Accesses on Rows and Columns

  32. Megaverse: Simulating Embodied Agents at One Million Experiences per Second

  33. Does Not Compute: Avoiding Pitfalls Assessing the Internet’s Energy and Carbon Impacts

  34. Brax—A Differentiable Physics Engine for Large Scale Rigid Body Simulation

  35. Cores that don’t count

  36. Scaling Scaling Laws with Board Games

  37. Warehouse-Scale Video Acceleration (Argos): Co-design and Deployment in the Wild

  38. Silent Data Corruptions at Scale

  39. The Semiconductor Supply Chain: Assessing National Competitiveness

  40. Scaling down Deep Learning

  41. Fast Stencil-Code Computation on a Wafer-Scale Processor

  42. A Time Leap Challenge for SAT Solving

  43. Measuring hardware overhang

  44. There’s plenty of room at the Top: What will drive computer performance after Moore’s law?

  45. Revisiting RowHammer: An Experimental Analysis of Modern DRAM Devices and Mitigation Techniques

  46. Measuring the Algorithmic Efficiency of Neural Networks

  47. Chip Placement with Deep Reinforcement Learning

  48. Placement Optimization with Deep Reinforcement Learning

  49. Recalibrating Global Data Center Energy-Use Estimates

  50. The 1-Bit Instrument: The Fundamentals of 1-Bit Synthesis, Their Implementational Implications, and Instrumental Possibilities

  51. Mixed-Signal Neuromorphic Processors: Quo vadis?

  52. Ternary circuits: why R=3 is not the Optimal Radix for Computation

  53. Spectre is here to stay: An analysis of side-channels and speculative execution

  54. Role of contacts in long-range protein conductance

  55. ExSpectre: Hiding Malware in Speculative Execution

  56. e4053d55fa6f7d4f1391ac85f4795cb2132fd60a.pdf

  57. Breaking POps/J Barrier with Analog Multiplier Circuits Based on Nonvolatile Memories

  58. Security, Moore’s law, and the anomaly of cheap complexity

  59. Mechanical Computing Systems Using Only Links and Rotary Joints

  60. Paper As a Substrate for Circuits

  61. Analogue signal and image processing with large memristor crossbars

  62. Computer latency: 1977–2017

  63. Keyboard latency

  64. Beating Floating Point at its Own Game: Posit Arithmetic

  65. Terminal Latency

  66. Mechanical Turing Machine in Wood Explained

  67. Exponential Laws of Computing Growth: Moore’s Law Is One Small Component in an Exponentially Growing Planetary Computing Ecosystem

  68. Architecting energy-efficient STT-RAM based register file on GPGPUs via delta compression

  69. On Having No Head: Cognition throughout Biological Systems

  70. Typing with pleasure

  71. Brainless but Multi-Headed: Decision Making by the Acellular Slime Mould Physarum polycephalum

  72. Profiling a warehouse-scale computer

  73. An Interview with Fred Brooks

  74. An experimental survey of energy management across the stack

  75. Computing’s Energy Problem (and what we can do about it)

  76. Algorithmic Progress in Six Domains

  77. What it takes to run Stack Overflow

  78. Intelligence Explosion Microeconomics

  79. The International SAT Solver Competitions

  80. The thermodynamics of prediction

  81. Simultaneous cat and external keyboard input causing kernel panic

  82. Implications of Historical Trends in the Electrical Efficiency of Computing

  83. Exploration of FPGA interconnect for the design of unconventional antennas

  84. Warehouse-Scale Computers to Exploit Request-Level and Data-Level Parallelism

  85. Exascale Computing: Technical Challenges

  86. Google-Wide Profiling: A Continuous Profiling Infrastructure for Data Centers

  87. Debugging Behind the Iron Curtain [Chernobyl Radiation Coverup]

  88. 96f88f2dc1a7408d1f80dafe4c3d31253b9a6c20.html

  89. Understanding sources of inefficiency in general-purpose chips

  90. Brick and mortar chip fabrication

  91. What Every Programmer Should Know About Memory

  92. Two Centuries of Productivity Growth in Computing

  93. When Slide Rules Ruled

  94. 30 years later: lessons from the Multics security evaluation

  95. DARPA and the Quest for Machine Intelligence, 1983–1993

  96. The Wheel of Reincarnation

  97. On Proebsting’s Law

  98. It’s the Latency, Stupid

  99. Thermodynamic optimization of geometry: T-shaped & Y-shaped constructs of fluid streams

  100. Ultimate physical limits to computation

  101. Proebsting’s Law: Compiler Advances Double Computing Power Every 18 Years

  102. Constructal tree network for fluid flow between a finite-size volume and one source or sink

  103. An evolved circuit, intrinsic in silicon, entwined with physics

  104. Mother Earth Mother Board

  105. How learning by doing is done: problem identification in novel process equipment

  106. Information and Secrecy: Vannevar Bush, Ultra, and the Other Memex

  107. Trail: a track-based logging disk architecture for zero-overhead writes

  108. Cosmetics as a Potential Source of Particulate Contamination in the Clean Room

  109. Etymology of the Computer Bug: History and Folklore

  110. The Symbolics Ivory Processor: A 40 Bit Tagged Architecture Lisp Microprocessor

  111. A Retrospective on the Dorado, a High-Performance Personal Computer

  112. Conservative logic

  113. Bi-continuous extensions of invertible combinatorial functions

  114. Alpha-particle-induced soft errors in dynamic memories

  115. On the Design of Display Processors

  116. FLODAC—A Pure Fluid Digital Computer

  117. Review of a book by D. R. Hartree

  118. Some AI Koans

  119. Logitech MX Master 3 vs 2S Teardown: Our Favorite Mouse Got Even Better

  120. 3a2d369a3e07889a43a04fd0a3c70d885258f36e.html

  121. Computing With Time: Microarchitectural Weird Machines

  122. Napkin-Math: Techniques and Numbers for Estimating System’s Performance from First-Principles

  123. Richard Feynman and The Connection Machine

  124. How to Burn a Magnesium NeXT Cube

  125. How IBM Invented Semiconductor Manufacturing Automation

  126. Microsoft and Meta Join Google in Using AI to Help Run Their Data Centers

  127. 1031d0e9693d43e275b2a482c1b29278b19ca8c5.html

  128. How to Build a $20 Billion Semiconductor Fab

  129. The Effect of CRTs on Pixel Art

  130. 92d7cf5b4cd6b3c436aa53c4f77ed8f9ca132c07.html

  131. A Brief History of Liquid Computers

  132. The Valve.Computer: A Modern 8-Bit Design, Built Using 1950s Thermionic Valves

  133. Harder Drive: Hard Drives We Didn’t Want or Need

  134. design#future-tag-features

    [Transclude the forward-link's context]

  135. 2021-billdally-dackeynote-figure2-nvidiaenergyoverhead.jpg

  136. 2021-khan-figure17-2019nationalithographysharesbyfirmhq.jpg

  137. 2021-ranganathan-table1-videoencodingtcoimprovements.png

  138. 2015-fatin-typingwithpleasure-windowstexteditorlatency.png

  139. 2011-koomey-figure3-koomeyslawexponentialincreaseincomputingelectricalefficiencyfrom1946to2009.jpg

  140. 2010-bates.pdf

  141. 2010-nordhaus-nordhaus2007twocenturiesofproductivitygrowthincomputing-appendix.xlsx

  142. 2003-ross.pdf

  143. 1956-shannon.pdf

  144. http://www.roylongbottom.org.uk/Cray%201%20Supercomputer%20Performance%20Comparisons%20With%20Home%20Computers%20Phones%20and%20Tablets.htm

  145. ad69ec2374cd2e8df5726c5183c2237513c1fd7c.html

  146. https://andyljones.com/megastep/

  147. https://arstechnica.com/space/2024/01/now-that-weve-flown-on-mars-what-comes-next-in-aerial-planetary-exploration/3/

  148. https://blog.stuffedcow.net/2019/09/hard-disk-geometry-microbenchmarking/

  149. 5e67f76e6822f6e4af67ec7503edb1a0698de3e2.html

  150. https://cacm.acm.org/research/the-decline-of-computers-as-a-general-purpose-technology/

  151. https://classic.esquire.com/article/share/58ff278a-21da-4ee4-a446-b7f451b90275

  152. https://cloud.google.com/blog/topics/systems/the-evolution-of-googles-jupiter-data-center-network

  153. https://computeradsfromthepast.substack.com/p/byte-interview-with-the-creators

  154. https://comsec.ethz.ch/research/dram/zenhammer/

  155. 722335931377255fd3050cd4849c141b000469ef.html

  156. https://danluu.com/deconstruct-files/

  157. https://danluu.com/new-cpu-features/

  158. https://docs.flux.ai/tutorials/ai-for-hardware-design

  159. https://dotat.at/@/2023-05-26-whence-time.html

  160. https://dukope.com/devlogs/papers-please/lcdplease/

  161. https://en.algorithmica.org/hpc/

  162. https://github.com/lodefmode/moviecart

  163. 69393d97b2b1d3eed20475c86c0a7c99763d62d4.html

  164. https://hackaday.com/2017/12/14/adsl-robustness-verified-by-running-over-wet-string/

  165. b9e637236a36b1b2278faa504cf62b0b98d479b2.html

  166. https://hackmd.io/@andylo/matrix-multiplication-on-gpu

  167. 3cdceb5dc1f1ea562c553879c2622d5b0c05ce4d.html

  168. https://jacobfilipp.com/arvid-vhs/

  169. dcbe61da303f105698a0f4e8eeeb3aa54432b674.html

  170. https://nepp.nasa.gov/files/27631/NSTD87394A.pdf

  171. b39ae127005c1115b544a42a690b0a7574b39d06.pdf

  172. https://newsletter.shifthappens.site/archive/the-cursed-universes-of-dana-sibera/

  173. https://semiengineering.com/uneven-circuit-aging-becoming-a-bigger-problem/

  174. https://spectrum.ieee.org/the-vacuum-tubes-forgotten-rival

  175. https://stratechery.com/2024/intels-humbling/

  176. 927586d73f813b3075b81a17456deb0ea6957537.html

  177. https://thume.ca/2023/01/02/one-machine-twitter/

  178. https://voltagedivide.com/2024/03/18/unconventional-uses-of-fpgas/

  179. 883f07dddf255646da2af4bf9c85b502be25e074.html

  180. https://web.archive.org/web/20170815022856/http://acarol.woz.org/LegoDifferenceEngine.html

  181. 42a7ed10d957f8bdc3a76767df700d98c712a904.html

  182. https://web.archive.org/web/20200405194914/https://toki.increpare.com/ilo-sitelen/

  183. 82aa32c6117ae11ff97905442d976a64c15afea9.html

  184. https://web.archive.org/web/20210205014443/https://meanderful.blogspot.com/2018/01/the-accidental-hft-firm.html

  185. https://www.benkuhn.net/vc/#get-a-better-microphone

  186. 686cfce1a0e827ae1edbd38fe7ed95e57aa11fa7.html#get-a-better-microphone

  187. https://www.filfre.net/2023/05/the-next-generation-in-graphics-part-2-three-dimensions-in-hardware/

  188. https://www.filfre.net/2023/05/the-next-generation-in-graphics-part-3-software-meets-hardware/

  189. https://www.frontiersin.org/journals/science/articles/10.3389/fsci.2023.1017235/full

  190. https://www.nextplatform.com/2023/01/24/building-the-perfect-memory-bandwidth-beast/

  191. https://www.nytimes.com/2023/08/04/technology/the-chip-titan-whose-lifes-work-is-at-the-center-of-a-tech-cold-war.html

  192. https://www.nytimes.com/2024/02/08/science/walter-shawlee-dead.html

  193. https://www.pugetsystems.com/mineral-oil-pc/

  194. 6b982d027d4c6a7358180348d10fca6ebbd0d790.html

  195. https://www.reddit.com/r/cableporn/

  196. https://www.revk.uk/2017/12/its-official-adsl-works-over-wet-string.html

  197. 0049671b54bd3f6afa792ebd3cacd1e31f819d42.html

  198. https://www.smspower.org/SegaAI/Index

  199. 45b457d320174e3e71900f3f6af596de14444545.html

  200. https://www.tomshardware.com/reviews/strip-fans,1203.html

  201. https://www.winestockwebdesign.com/Essays/Eternal_Mainframe.html

  202. https://www.wired.com/story/book-excerpt-science-of-ultra-pure-silicon/

  203. https://www.wired.com/story/why-the-floppy-disk-just-wont-die/

  204. https://www.xilinx.com/prs_rls/silicon_spart/0333spartan3.htm

  205. https://www.youtube.com/watch?v=2SdGkkp1aq8

  206. https://www.youtube.com/watch?v=KFDlVgBMomQ

  207. https://x.com/_MG_/status/1152317329646088192

  208. Universal Mechanical Polycomputation in Granular Matter

  209. https%253A%252F%252Farxiv.org%252Fabs%252F2305.17872.html

  210. Arm seeks to raise prices ahead of hotly anticipated IPO: SoftBank-owned group aims to charge more for each chip design in radical shake-up of business model

  211. https%253A%252F%252Fwww.ft.com%252Fcontent%252F25ea2570-264d-472d-8ef8-3a02003e87ab.html

  212. We stand to save $7m over 5 years from our cloud exit

  213. https%253A%252F%252Fworld.hey.com%252Fdhh%252Fwe-stand-to-save-7m-over-five-years-from-our-cloud-exit-53996caa.html

  214. Google wants RISC-V to be a ‘tier-1’ Android architecture: Google's keynote at the RISC-V Summit promises official, polished support

  215. https%253A%252F%252Farstechnica.com%252Fgadgets%252F2023%252F01%252Fgoogle-announces-official-android-support-for-risc-v%252F.html

  216. EvoJAX: Hardware-Accelerated Neuroevolution

  217. https%253A%252F%252Farxiv.org%252Fabs%252F2202.05008%2523google.html

  218. Is Programmable Overhead Worth The Cost? How much do we pay for a system to be programmable? It depends upon who you ask

  219. https%253A%252F%252Fsemiengineering.com%252Fis-programmable-overhead-worth-the-cost%252F.html

  220. Brax—A Differentiable Physics Engine for Large Scale Rigid Body Simulation

  221. Igor Mordatch

  222. https%253A%252F%252Farxiv.org%252Fabs%252F2106.13281%2523google.html

  223. Scaling down Deep Learning

  224. About Sam Greydanus

  225. https%253A%252F%252Fgreydanus.github.io%252F2020%252F12%252F01%252Fscaling-down%252F.html

  226. Keyboard latency

  227. https://danluu.com/

  228. https%253A%252F%252Fdanluu.com%252Fkeyboard-latency%252F.html

  229. An experimental survey of energy management across the stack

  230. %252Fdoc%252Fcs%252Fhardware%252F2014-kambadur.pdf.html

  231. Understanding sources of inefficiency in general-purpose chips

  232. %252Fdoc%252Fcs%252Fhardware%252F2010-hameed.pdf.html

  233. 30 years later: lessons from the Multics security evaluation

  234. %252Fdoc%252Fcs%252Fsecurity%252F2002-karger.pdf.html

  235. The Wheel of Reincarnation

  236. http%253A%252F%252Fwww.cap-lore.com%252FHardware%252FWheel.html.html

  237. Constructal tree network for fluid flow between a finite-size volume and one source or sink

  238. %252Fdoc%252Fcs%252Fhardware%252F1997-bejan.pdf.html