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1 # RISC-V 3D GPU / CPU / VPU
2
3 Note: this is a **hybrid** CPU, VPU and GPU. It is not, as many news articles
4 are implying, a "dedicated exclusive GPU". The option exists to **create**
5 a stand-alone GPU product. It is being *designed* to be a **complete**
6 all-in-one processor (System-on-a-Chip).
7
8 We seek investors, sponsors, engineers and potential customers, who are
9 interested in the creation and use of an entirely libre low-power mobile
10 class system-on-a-chip. Comparative benchmark performance, pincount and
11 price is the Allwinner A64, except that the power budget target is 2.5 watts
12 in a 16x16mm 320 to 360 pin 0.8mm FBGA package.
13
14 See:
15
16 * [[shakti/m_class/libre_3d_gpu]]
17 * [[discussion]]
18 * Founding [[charter]]
19 * Mailing list <http://lists.libre-riscv.org/pipermail/libre-riscv-dev/>
20 * Crowdsupply page <https://www.crowdsupply.com/libre-risc-v/m-class>
21 * Wiki <https://libre-riscv.org>
22 * Git repositories <https://git.libre-riscv.org>
23 * Bugtracker <http://bugs.libre-riscv.org>
24 * Kazan Vulkan Driver (including 3D engine) <https://salsa.debian.org/Kazan-team/kazan>
25 * [NLNet 2019 Milestones](http://bugs.libre-riscv.org/buglist.cgi?columnlist=assigned_to%2Cbug_status%2Cresolution%2Cshort_desc%2Ccf_budget&f1=cf_nlnet_milestone&o1=equals&query_format=advanced&resolution=---&v1=NLnet.2019.02)
26 * NLNet Project Page <https://nlnet.nl/project/Libre-RISCV/>
27
28 Progress:
29
30 * Jun 2019: IEEE754 FP Mul, Add, and FSM "DIV" completed.
31 * May 2019: 6600-style scoreboard started
32 * Apr 2019: NLnet funding approved by independent review committee
33 * Mar 2019: NLnet funding application first and second phase passed
34 * Mar 2019: First successful nmigen pipeline milestone achieved with IEEE754 FADD
35 * Feb 2019: Conversion of John Dawson's IEEE754 FPU to nmigen started
36 * Jan 2019: Second version Simple-V preliminary proposal (suited to LLVM)
37 * 2017 - Nov 2018: Simple-V specification preliminary draft completed
38 * Aug 2018 - Nov 2018: spike-sv implementation of draft spec completed
39 * Aug 2018: Kazan Vulkan Driver initiated
40 * Sep 2018: mailing list established
41 * Sep 2018: Crowdsupply pre-launch page up (for updates)
42 * Dec 2018: preliminary floorplan and architecture designed (comp.arch)
43
44 # News Articles
45
46 * <https://hub.packtpub.com/a-libre-gpu-effort-based-on-risc-v-rust-llvm-and-vulkan-by-the-developer-of-an-earth-friendly-computer/>
47 * <https://riscv.org/2018/10/packt-hub-article-a-libre-gpu-effort-based-on-risc-v-rust-llvm-and-vulkan-by-the-developer-of-an-earth-friendly-computer/>
48 * <https://www.reddit.com/r/RISCV/comments/9jts9t/theres_a_new_libre_gpu_effort_building_on_riscv/>
49 * <https://www.linux.com/blog/2018/11/risc-v-linux-development-full-swing>
50 * <https://www.phoronix.com/scan.php?page=news_item&px=Libre-GPU-RISC-V-Vulkan>
51 * <https://www.heise.de/newsticker/meldung/Mobilprozessor-mit-freier-GPU-Libre-RISC-V-M-Class-geplant-4242802.html>
52 * <https://news.ycombinator.com/item?id=18094734>
53 * <http://www.tuxmachines.org/node/116004>
54 * <https://linuxfr.org/users/martoni/journaux/risc-v-est-pret-pour-le-desktop>
55 * <https://www.reddit.com/r/hardware/comments/9jlby1/theres_a_new_libre_gpu_effort_building_on_riscv/>
56 * <http://www.eevblog.com/forum/crowd-funded-projects/libre-risc-v-m-class-with-open-source-gpu-and-kazan-vulkan-driver/>
57 * <https://www.reddit.com/domain/libre-riscv.org/>
58 * <https://hardware.slashdot.org/comments.pl?sid=13447940&cid=58160868>
59 * <https://www.phoronix.com/forums/forum/hardware/graphics-cards/1080755-libre-risc-v-gpu-aiming-for-2-5-watt-power-draw-continues-being-plotted/page5>
60 * <https://www.phoronix.com/forums/forum/hardware/processors-memory/1070828-more-details-on-the-proposed-simple-v-extension-to-risc-v-for-gpu-workloads>
61 * <https://slashdot.org/submission/9750302/nlnet-funds-development-of-a-libre-risc-v-3d-cpu>
62 * <https://hardware.slashdot.org/story/19/06/02/0153243/nlnet-funds-development-of-a-libre-risc-v-3d-cpu>
63 * <https://www.phoronix.com/forums/forum/hardware/graphics-cards/1104124-libre-risc-v-snags-50k-eur-grant-to-work-on-its-risc-v-3d-gpu-chip/page6>
64
65 # Information Resources and Tutorials
66
67 * <https://github.com/timvideos/litex-buildenv/wiki/LiteX-for-Hardware-Engineers>
68 * <https://jeffrey.co.in/blog/2014/01/d-flip-flop-using-migen/>
69 * <http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2019-March/000705.html>
70 * <https://chisel.eecs.berkeley.edu/api/latest/chisel3/util/DecoupledIO.html>
71 * <http://www.clifford.at/papers/2016/yosys-synth-formal/slides.pdf>
72 * <http://blog.lambdaconcept.com/doku.php?id=migen:tutorial>
73 * <http://chiselapp.com/user/kc5tja/repository/kestrel-3/dir?ci=6c559135a301f321&name=cores/cpu>
74 * <https://chips4makers.io/blog/>
75 * <https://hackaday.io/project/7817-zynqberry>
76 * <https://wiki.f-si.org/index.php/FSiC2019>
77 * <https://github.com/efabless/raven-picorv32> - <https://efabless.com>
78 * <https://efabless.com/design_catalog/default>
79 * <https://toyota-ai.ventures/>
80 * <https://github.com/lambdaconcept/minerva>
81 * <https://en.wikipedia.org/wiki/Liskov_substitution_principle>
82 * <https://en.wikipedia.org/wiki/Principle_of_least_astonishment>
83 * <https://peertube.f-si.org/videos/watch/379ef007-40b7-4a51-ba1a-0db4f48e8b16>
84 * <https://github.com/riscv/riscv-sbi-doc/blob/master/riscv-sbi.md>
85 * <https://mshahrad.github.io/openpiton-asplos16.html>
86 * <https://wiki.f-si.org/index.php/The_Raven_chip:_First-time_silicon_success_with_qflow_and_efabless>
87 * <http://smallcultfollowing.com/babysteps/blog/2019/04/19/aic-adventures-in-consensus/>
88 * <http://www.crnhq.org/12-Skills-Summary.aspx?rw=c>
89 * <http://bugs.libre-riscv.org/buglist.cgi?columnlist=assigned_to%2Cbug_status%2Cresolution%2Cshort_desc%2Ccf_budget&f1=cf_nlnet_milestone&o1=equals&query_format=advanced&resolution=---&v1=NLnet.2019.02>
90 * <https://pdfs.semanticscholar.org/5060/4e9aff0e37089c4ab9a376c3f35761ffe28b.pdf>
91 * <http://www.acsel-lab.com/arithmetic/arith15/papers/ARITH15_Takagi.pdf>
92 * <https://youtu.be/o5Ihqg72T3c>
93 * <http://flopoco.gforge.inria.fr/>
94 * Fundamentals of Modern VLSI Devices <https://groups.google.com/a/groups.riscv.org/d/msg/hw-dev/b4pPvlzBzu0/7hDfxArEAgAJ>
95
96 # Analog Simulation
97
98 * <https://github.com/Isotel/mixedsim>
99 * <http://www.vlsiacademy.org/open-source-cad-tools.html>
100 * <http://ngspice.sourceforge.net/adms.html>
101 * <https://en.wikipedia.org/wiki/Verilog-AMS#Open_Source_Implementations>