a82c742269d94ed9a92a51e8652aaaa7119511df
[crowdsupply.git] / updates / 023_2020mar26_decoder_emulator_started.mdwn
1 So many things happened since the last update they actually need to go
2 in the main update, even in summary form. One big thing:
3 [Raptor CS](https://www.raptorcs.com/)
4 sponsored us with remote access to a Monster spec'd TALOS II Workstation!
5
6 # Introduction
7
8 Here's the summary (if it can be called a summary):
9
10 * [An announcement](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/004995.html)
11 that we got the funding (which is open to anyone - hint, hint) resulted in
12 at least three people reaching out to join the team. "We don't need
13 permission to own our own hardware" got a *really* positive reaction.
14 * New team member, Jock (hello Jock!) starts on the coriolis2 layout,
15 after Jean-Paul from LIP6.fr helped to dramatically improve how coriolis2
16 can be used. This resulted in a
17 [tutorial](https://libre-riscv.org/HDL_workflow/coriolis2/) and a
18 [huge bug report discussion](http://bugs.libre-riscv.org/show_bug.cgi?id=178)
19 * Work has started on the
20 [POWER ISA decoder](http://bugs.libre-riscv.org/show_bug.cgi?id=186),
21 verified through
22 [calling GNU AS](https://git.libre-riscv.org/?p=soc.git;a=blob;f=src/soc/decoder/test/test_decoder_gas.py;h=9238d3878d964907c5569a3468d6895effb7dc02;hb=56d145e42ac75626423915af22d1493f1e7bb143) (yes, really!)
23 and on a mini-simulator
24 [calling QEMU](https://git.libre-riscv.org/?p=soc.git;a=blob;f=src/soc/simulator/qemu.py;h=9eb103bae227e00a2a1d2ec4f43d7e39e4f44960;hb=56d145e42ac75626423915af22d1493f1e7bb143)
25 for verification.
26 * Jacob's simple-soft-float library growing
27 [Power FP compatibility](http://bugs.libre-riscv.org/show_bug.cgi?id=258)
28 and python bindings.
29 * Kazan, the Vulkan driver Jacob is writing, is getting
30 a [new shader compiler IR](http://bugs.libre-riscv.org/show_bug.cgi?id=161).
31 * A Conference call with OpenPOWER Foundation Director, Hugh, and Timothy
32 Pearson from RaptorCS has been established every two weeks.
33 * The OpenPOWER Foundation is also running some open
34 ["Virtual Coffee"](https://openpowerfoundation.org/openpower-virtual-coffee-calls/)
35 weekly round-table calls for anyone interested, generally, in OpenPOWER
36 development.
37 * Tim sponsors our team with access to a Monster Talos II system with a
38 whopping 128 GB RAM. htop lists a staggering 72 cores (18 real
39 with 4-way hyperthreading).
40 * [Epic MegaGrants](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005262.html)
41 reached out (hello!) to say they're still considering our
42 request.
43 * A marathon 3-hour session with [NLNet](http://nlnet.nl) resulted
44 in the completion of the
45 [Milestone tasks list(s)](http://bugs.libre-riscv.org/buglist.cgi?component=Milestones&list_id=567&resolution=---)
46 and a
47 [boat-load](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/thread.html)
48 of bug reports to the list.
49 * Immanuel Yehowshua is participating in the Georgia Tech
50 [Create-X](https://create-x.gatech.edu/) Programme, and is establishing
51 a Public Benefit Corporation in Atlanta, as an ethical vehicle for VC
52 Funding.
53 * A [Load/Store Buffer](http://bugs.libre-riscv.org/show_bug.cgi?id=216)
54 design and
55 [further discussion](http://bugs.libre-riscv.org/show_bug.cgi?id=257)
56 including on
57 [comp.arch](https://groups.google.com/forum/#!topic/comp.arch/cbGAlcCjiZE)
58 inspired additional writeup
59 on the
60 [6600 scoreboard](https://libre-riscv.org/3d_gpu/architecture/6600scoreboard/)
61 page.
62 * [Public-Inbox](http://bugs.libre-riscv.org/show_bug.cgi?id=181) was
63 installed successfully on the server, which is in the process of
64 moving to a [new domain name](http://bugs.libre-riscv.org/show_bug.cgi?id=182)
65 [Libre-SOC](http://libre-soc.org)
66 * Build Servers have been set up with
67 [automated testing](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005364.html)
68 being established
69
70 Well dang, as you can see, suddenly it just went ballistic. There's
71 almost certainly things left off the list. For such a small team there's
72 a heck of a lot going on. We have an awful lot to do, in a short amount
73 of time: the 180nm tape-out is in October 2020 - only 7 months away.
74
75 With this update we're doing something slightly different: a request
76 has gone out [to the other team members](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005428.html)
77 to say a little bit about what each of them is doing. This also helps me
78 because these updates do take quite a bit of time to write.
79
80 # NLNet Funding announcement
81
82 An announcement went out
83 [last year](https://lists.gnu.org/archive/html/libreplanet-discuss/2019-09/msg00170.html)
84 that we'd applied for funding, and we got some great responses and
85 feedback (such as "don't use patented AXI4"). The second time, we
86 sent out a "we got it!" message and got some really nice private and
87 public replies, as well as requests from people to join the team.
88 More on that when it happens.
89
90 # Coriolis2 experimentation started
91
92 Jock, a really enthusiastic and clearly skilled and experienced python
93 developer, has this to say about coriolis2:
94
95 As a humble Python developer, I understand the unique status and
96 significance of the Coriolis project, nevertheless I cannot help
97 but notice that it has a huge room for improvement. I genuinely hope
98 that my participation in libre-riscv will also help improve Coriolis.
99
100 This was the short version, with a much more
101 [detailed insight](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005478.html)
102 listed here which would do well as a bugreport. However the time it would
103 take is quite significant. We do have funding available from NLNet,
104 so if there is anyone that would like to take this on, under the supervision
105 of Jean-Paul at LIP6.fr, we can look at facilitating that.
106
107 One of the key insights that Jock came up with was that the coding style,
108 whilst consistent, is something that specifically has to be learned, and,
109 as such, being contrary to PEP8 in so many ways, creates an artificially
110 high barrier and learning curve.
111
112 Even particularly experienced cross-language developers such as
113 myself tend to be able to *read* such code, but editing it, when
114 commas separating list items are on the beginning of lines, results in
115 syntax errors automatically introduced *without thinking* because we
116 automatically add them *at the end* because it looks like one is missing.
117
118 This is why we insisted on PEP8 in the
119 [HDL workflow](http://libre-riscv.org/HDL_workflow) document.
120
121 Other than that: coriolis2 is actually extremely exciting to work with.
122 Anyone who has done manual PCB layout will know quite how much of a relief
123 it is to have auto-routing: this is what coriolis2 has by the bucket-load,
124 *as well* as auto-placement. We are looking at half a *million* objects
125 (Cells) to place. Without an auto-router / auto-placer this is just a
126 flat-out impossible task.
127
128 The first step was to
129 [learn and adapt coriolis2](http://bugs.libre-riscv.org/show_bug.cgi?id=178)
130 which was needed to find out how much work would be involved, as much as
131 anything else, in order to be able to accurately assign the fixed budgets
132 to the NLNet milestones. Following on from that, when Jock joined,
133 we needed to work out a compact way to express the
134 [layout of blocks](http://bugs.libre-riscv.org/show_bug.cgi?id=217#c44)
135 and he's well on the way to achieving that.
136
137 Some of the pictures from coriolis2 are
138 [stunning](bugs.libre-riscv.org/attachment.cgi?id=29). This was an
139 experimental routing of the IEEE754 FP 64-bit multiplier. It took
140 5 minutes to run, and is around 50,000 gates: as big as most silicon
141 ASICs that have formerly been done with Coriolis2, and 50% of the
142 practical size that can be handed in one go to the auto-place/auto-router.
143
144 Other designs using coriolis2 have been of the form where the major "blocks"
145 (such as FPMUL, or Register File) are laid-out automatically in a single-level
146 hierarchy, followed by full and total manual layout from that point onwawrds,
147 in what is termed in the industry as a "Floorplan".
148 With around 500,000 gates to do and many blocks being repeated, this approach
149 is not viable for us. We therefore need a *two* level or potentially three
150 level hierarchy.
151
152 [Explaining this](http://bugs.libre-riscv.org/show_bug.cgi?id=178#c146)
153 to Jean-Paul was amusing and challenging. Much bashing of heads against
154 walls and keyboards was involved. The basic plan: rather than have
155 coriolis2 perform an *entire* layout, in a flat and all-or-nothing fashion,
156 we need a much more subtle fine-grained approach, where *sub-blocks* are
157 laid-out, then *included* at a given level of hierarchy as "pre-done blocks".
158
159 Save and repeat.
160
161 This apparently had never been done before, and explaining it in words was
162 extremely challenging. Through a massive hack (actively editing the underlying
163 HDL files temporarily in between tasks) was the only way to illustrate it.
164 However once the lightbulb went on, Jean-Paul was able to get coriolis2's
165 c++ code into shape extremely rapidly, and this alone has opened up an
166 *entire new avenue* of potential for coriolis2 to be used in industry
167 for doing much larger ASICs. Which is precisely the kind of thing that
168 our NLNet sponsors (and the EU, from the Horizon 2020 Grant) love. hooray.
169 Now if only we could actually go to a conference and talk about it.
170
171 # POWER ISA decoder and Simulator
172
173 *(kindly written by Michael)*
174
175 The decoder we have is based on that of IBM's
176 [microwatt reference design](https://github.com/antonblanchard/microwatt).
177 As microwatt's decoder is quite regular, consisting of a bunch of large
178 switch statements returning fields of a struct, we elected not to
179 pursue a direct conversion of the VHDL to nmigen. Instead, we
180 extracted the information in the switch statements into several
181 [CSV tables](https://libre-riscv.org/openpower/isatables/),
182 and leveraged nmigen to construct the decoder from these
183 tables. We applied the same technique to extract the subfields
184 (register numbers, branch offset, immediates, etc.) from the
185 instruction, where Luke converted the information in the POWER ISA
186 specification to text, and wrote a module in python to extract those
187 fields from an instruction.
188
189 To test the decoder, we initially verified it against the tables we
190 extracted, and manually against the [POWER ISA
191 specification](https://openpowerfoundation.org/?resource_lib=power-isa-version-3-0). Later
192 however, we came up with the idea of [verifying the
193 decoder](https://git.libre-riscv.org/?p=soc.git;a=blob;f=src/soc/decoder/test/test_decoder_gas.py;h=9238d3878d964907c5569a3468d6895effb7dc02;hb=433ab59cf9b7ab1ae10754798fc1c110e705db76)
194 against the output of the GNU assembler. This is done by selecting an
195 instruction type (integer reg/reg, integer immediate, load store,
196 etc), and randomly selecting the opcode, registers, immediates, and
197 other operands. We then feed this instruction to GNU AS to assemble,
198 and then the assembled instruction is sent to our decoder. From this,
199 we can then verify that the output of the decoder matches what was
200 generated earlier.
201
202 We also explored using a similar idea to test the functionality of the
203 entire SOC. By using the [QEMU](https://www.qemu.org/) PowerPC
204 emulator, we can compare the execution of our SOC against that of the
205 emulator to verify that our decoder and backend are working correctly.
206 We would write snippets of test code (or potentially randomly generate
207 instructions) and send the resulting binary to both the SOC and
208 QEMU. We would then simulate our SOC until it was finished executing
209 instructions, and use Qemu's gdb interface to do the same. We would
210 then use Qemu's gdb interface to compare the register file and memory
211 with that of our SOC to verify that it is working correctly. I did
212 some experimentation using this technique to verify a [rudimentary
213 simulator](https://git.libre-riscv.org/?p=soc.git;a=blob;f=src/soc/simulator/test_sim.py;h=aadaf667eff7317b1aa514993cd82b9abedf1047;hb=433ab59cf9b7ab1ae10754798fc1c110e705db76)
214 of the SOC backend, and it seemed to work quite well.
215
216 *(Note from Luke: this automated approach, taking either other people's
217 regularly-written code or actual PDF specifications, not only saves us a
218 vast amount of time, it also ensures that our implementation is
219 correct and does not contain transcription errors).*
220
221 # simple-soft-float Library and POWER FP emulation
222
223 The [simple-soft-float](https://salsa.debian.org/Kazan-team/simple-soft-float)
224 library is a floating-point library Jacob wrote with the intention
225 of being a reference implementation of IEEE 754 for hardware testing
226 purposes. It's specifically designed to be written to be easier to
227 understand instead of having the code obscured in pursuit of speed:
228
229 * Being easier to understand helps prevent bugs where the code does not
230 match the IEEE spec.
231 * It uses the [algebraics](https://salsa.debian.org/Kazan-team/algebraics)
232 library that Jacob wrote since that allows using numbers that behave
233 like exact real numbers, making reasoning about the code simpler.
234 * It is written in Rust rather than highly-macro-ified C, since that helps with
235 readability since operations aren't obscured, as well as safety, since Rust
236 proves at compile time that the code won't seg-fault unless you specifically
237 opt-out of those guarantees by using `unsafe`.
238
239 It currently supports 16, 32, 64, 128-bit FP for RISC-V, along with
240 having a `DynamicFloat` type which allows dynamically specifying all
241 aspects of how a particular floating-point type behaves -- if one wanted,
242 they could configure it as a 2048-bit floating-point type.
243
244 It also has Python bindings, thanks to the awesome
245 [PyO3](https://pyo3.rs/) library for writing Python bindings in Rust.
246
247 We decided to write simple-soft-float instead
248 of extending the industry-standard [Berkeley
249 softfloat](http://www.jhauser.us/arithmetic/SoftFloat.html) library
250 because of a range of issues, including not supporting Power FP, requiring
251 recompilation to switch which ISA is being emulated, not supporting
252 all the required operations, architectural issues such as depending on
253 global variables, etc. We are still testing simple-soft-float against
254 Berkeley softfloat where we can, however, since Berkeley softfloat is
255 widely used and highly likely to be correct.
256
257 simple-soft-float is [gaining support for Power
258 FP](http://bugs.libre-riscv.org/show_bug.cgi?id=258), which requires
259 rewriting a lot of the status-flag handling code since Power supports a
260 much larger set of floating-point status flags and exceptions than most
261 other ISAs.
262
263 Thanks to Raptor CS for giving us remote access to a Power9 system,
264 since that makes it much easier verifying that the test cases are correct
265 (more on this below).
266
267 API Docs for stable releases of both
268 [simple-soft-float](https://docs.rs/simple-soft-float) and
269 [algebraics](https://docs.rs/algebraics) are available on docs.rs.
270
271 The algebraics library was chosen as the
272 [Crate of the Week for October 8, 2019 on This Week in
273 Rust](https://this-week-in-rust.org/blog/2019/10/08/this-week-in-rust-307/#crate-of-the-week).
274
275 One of the really important things about these libraries: they're not
276 specifically coded exclusively for Libre-SOC: like Berkeley softfloat itself
277 (and also like the [IEEE754 FPU](https://git.libre-riscv.org/?p=ieee754fpu.git))
278 they're intended for *general-purpose* use by other projects. These are
279 exactly the kinds of side-benefits for the wider Libre community that
280 sponsorship, from individuals, Foundations (such as NLNet) and Companies
281 (such as Purism and Raptor CS) brings.
282
283 # Kazan Getting a New Shader Compiler IR
284
285 After spending several weeks only to discover that translating directly from
286 SPIR-V to LLVM IR, Vectorizing, and all the other front-end stuff all in a
287 single step is not really feasible, Jacob has switched to [creating a new
288 shader compiler IR](http://bugs.libre-riscv.org/show_bug.cgi?id=161) to allow
289 decomposing the translation process into several smaller steps.
290
291 The IR and
292 SPIR-V to IR translator are being written simultaneously, since that allows
293 more easily finding the things that need to be represented in the shader
294 compiler IR. Because writing both of the IR and SPIR-V translator together is
295 such a big task, we decided to pick an arbitrary point ([translating a totally
296 trivial shader into the IR](http://bugs.libre-riscv.org/show_bug.cgi?id=177))
297 and split it into tasks at that point so Jacob would be able to get paid
298 after several months of work.
299
300 The IR uses structured control-flow inspired by WebAssembly's control-flow
301 constructs as well as
302 [SSA](https://en.wikipedia.org/wiki/Static_single_assignment_form) but, instead
303 of using traditional phi instructions, it uses block and loop parameters and
304 return values (inspired by [Cranelift's EBB
305 parameters](https://github.com/bytecodealliance/wasmtime/blob/master/cranelift/docs/ir.md#static-single-assignment-form)
306 as well as both of the [Rust](https://www.rust-lang.org/) and [Lua](https://www.lua.org/) programming languages).
307
308 The IR has a single pointer type for all data pointers (`data_ptr`), unlike LLVM IR where pointer types have a type they point to (like `* i32`, where `i32` is the type the pointer points to).
309
310 Because having a serialized form of the IR is important for any good IR, like
311 LLVM IR, it has a user-friendly textual form that can be both read and
312 written without losing any information (assuming the IR is valid, comments are
313 ignored). A binary form may be added later.
314
315 Some example IR is [available in the Kazan repo](https://salsa.debian.org/Kazan-team/kazan/-/blob/master/docs/Shader%20Compiler%20IR%20Example.md).
316
317 # OpenPOWER Conference calls
318
319 We've now established a routine two-week conference call with Hugh Blemings,
320 OpenPOWER Foundation Director, and Timothy Pearson, CEO of Raptor CS. This
321 allows us to keep up-to-date (each way) on both our new venture and also
322 the newly-announced OpenPOWER Foundation effort as it progresses.
323
324 One of the most important things that we, Libre-SOC, need, and are
325 discussing with Hugh and Tim is: a way to switch on/off functionality
326 in the (limited) 32-bit opcode space, so that we have one mode for
327 "POWER 3.0B compliance" and another for "things that are absolutely
328 essential to make a decent GPU". With these two being strongly
329 mutually exclusively incompatible, this is just absolutely critical.
330
331 Khronos Vulkan Floating-point Compliance is, for example, critical not
332 just from a Khronos Trademark Compliance perspective, it's essential
333 from a power-saving and thus commercial success perspective. If we
334 have absolute strict compliance with IEEE754 for POWER 3.0B, this will
335 result in far more silicon than any commercially-competitive GPU on
336 the market, and we will not be able to sell product. Thus it is
337 *commercially* essential to be able to swap between POWER Compliance
338 and Khronos Compliance *at the silicon level*.
339
340 POWER 3.0B does not have c++ style LR/SC atomic operations for example,
341 and if we have half a **million** 3D GPU data structures **per second**
342 that need SMP-level inter-core mutexes, and the current POWER 3.0B
343 multi-instruction atomic operations are used - conforming strictly to
344 the standard - we're highly likely to use 10 to 15 **percent** processing
345 power consumed on spin-locking. Finding out from Tim on one of these
346 calls that this is something that c++ atomics is something that end-users
347 have been asking about is therefore a good sign.
348
349 Adding new and essential features that could well end up in a future version
350 of the POWER ISA *need* to be firewalled in a clean way, and we've been
351 asked to [draft a letter](https://libre-riscv.org/openpower/isans_letter/)
352 to some of the (very busy) engineers with a huge amount of knowledge
353 and experience inside IBM, for them to consider. Some help in reviewing
354 it would be greatly appreciated.
355
356 These and many other things are why the calls with Tim and Hugh are a
357 good idea. The amazing thing is that they're taking us seriously, and
358 we can discuss things like those above with them.
359
360 Other nice things we learned (more on this below) is that Epic Games
361 and RaptorCS are collaborating to get POWER9 supported in Unreal Engine.
362 And that the idea has been very tentatively considered to use our design
363 for the "boot management" processor, running
364 [OpenBMC](https://github.com/openbmc/openbmc). These are early days,
365 it's just ideas, ok! Aside from anything, we actually have to get a chip
366 done, first.
367
368 # OpenPower Virtual Coffee Meetings
369
370 The "Virtual Coffee Meetings", announced
371 [here](https://openpowerfoundation.org/openpower-virtual-coffee-calls/)
372 are literally open to anyone interested in OpenPOWER (if you're strictly
373 Libre there's a dial-in method). These calls are not recorded, it's
374 just an informal conversation.
375
376 What's a really nice surprise is finding
377 out that Paul Mackerras, whom I used to work with 20 years ago, is *also*
378 working on OpenPOWER, specifically
379 [microwatt](https://github.com/antonblanchard/microwatt), being managed
380 by Anton Blanchard.
381
382 A brief discussion led to learning that Paul is looking at adding TLB
383 (Virtual Memory) support to microwatt, specifically the RADIX TLB.
384 I therefore pointed him at the same resource
385 [(power-gem5)](https://github.com/power-gem5/gem5/tree/gem5-experimental)
386 that Hugh had kindly pointed me at, the week before, and did a
387 [late night write-up](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005445.html)
388
389 My feeling is that these weekly round-table meetings are going to be
390 really important for everyone involved in OpenPOWER. It's a community:
391 we help each other.
392
393 # Sponsorship by RaptorCS with a TALOS II Workstation
394
395 With many thanks to Timothy from
396 [RaptorCS](https://raptorcs.com), we've a new shiny
397 online server that needs
398 [setting up](http://bugs.libre-riscv.org/show_bug.cgi?id=265).
399 This machine is not just a "nice-to-have", it's actually essential for
400 us to be able to verify against. As you can see in the bugreport, the idea
401 is to bootstrap our way from running IEEE754 FP on a *POWER* system
402 (using typically gnu libm), verifying Jacob's algorithmic FP library
403 particularly and specifically for its rounding modes and exception modes.
404
405 Once that is done, then apart from having a general-purpose library that
406 is compliant with POWER IEEE754 which *anyone else can use*, we can use
407 that to run unit tests against our[
408 hardware IEEE754 FP library](https://git.libre-riscv.org/?p=ieee754fpu.git;a=summary) -
409 again, a resource that anyone may use in any arbitrary project - verifying
410 that it is also correct. This stepping-stone "bootstrap" method we are
411 deploying all over the place, however to do so we need access to resources
412 that have correctly-compliant implementations in the first place. Thus,
413 the critical importance of access to a TALOS II POWER9 workstation.
414
415 # Epic Megagrants
416
417 Several months back I got word of the existence of Epic Games' "Megagrants".
418 In December 2019 they announced that so far they've given
419 [USD $13 million](https://www.unrealengine.com/en-US/blog/epic-megagrants-reaches-13-million-milestone-in-2019)
420 to 200 recipients, so far: one of them, the Blender Foundation, was
421 [USD $1.2 million](https://www.blender.org/press/epic-games-supports-blender-foundation-with-1-2-million-epic-megagrant/)!
422 This is an amazing and humbling show of support for the 3D Community,
423 world-wide.
424
425 It's not just "games", or products specifically using the Unreal Engine:
426 they're happy to look at anything that "enhances Libre / Open source"
427 capabilities for the 3D Graphics Community.
428
429 A full hybrid 3D-capable CPU-GPU-VPU which is fully-documented not just in
430 its capabilities, that [documentation](http://libre-riscv.org) and
431 [full source code](http://git.libre-riscv.org) kinda extends
432 right the way through the *entire development process* down to the bedrock
433 of the actual silicon - not just the firmware, bootloader and BIOS,
434 *everything* - in my mind it kinda qualifies in way that can, in some
435 delightful way, be characterised delicately as "complete overkill".
436
437 Interestingly, guys, if you're reading this: Tim, the CEO of RaptorCS
438 informs us that you're working closely with his team to get the Unreal
439 Engine up and running on the POWER architecture? Wouldn't that be highly
440 amusing, for us to be able to run the Unreal Engine on the Libre-SOC,
441 given that it's going to be POWER compatible hardware, as a test,
442 first initially in FPGA and then in 18-24 months, on actual silicon, eh?
443
444 So, as I mentioned
445 [on the list](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005262.html)
446 (reiterating what I put in the original application), we're happy with
447 USD $25,000, we're happy with USD $10 million. It's really up to you guys,
448 at Epic Games, as to what level you'd like to see us get to, and how fast.
449
450 USD $600,000 for example we can instead of paying USD $1million to a proprietary
451 company to license a DDR3 PHY for a limited one-time use and only a 32-bit
452 wide interface, we can contract SymbioticEDA to *design* a DDR3 PHY for us,
453 which both we *and the rest of the worldwide Silicon Community can use
454 without limitation* because we will ask SymbioticEDA to make the design
455 (and layout) libre-licensed, for anyone to use.
456
457 USD 250,000 pays for the mask charges that will allow us to do the 40nm
458 quad-core ASIC that we have on the roadmap for the second chip. USD
459 $1m pays for 28nm masks (and so on, in an exponential ramp-up). No, we
460 don't want to do that straight away: yes we do want to go through a first
461 proving test ASIC in 180nm, which, thanks to NLNet, is already funded.
462 This is just good sane sensible use of funds.
463
464 Even USD $25,000 helps us to cover things such as administration of the
465 website (which is taking up a *lot* of time) and little things that we
466 didn't quite foresee when putting in the NLNet Grant Applications.
467
468 Lastly, one of the conditions as I understood it from the Megagrants
469 process is that the funds are paid in "stages". This is exactly
470 what NLNet does for (and with) us, right now. If you wanted to save
471 administrative costs, there may be some benefit to having a conversation
472 with the [30-year-old](https://nlnet.nl/foundation/history/)
473 NLNet Charitable Foundation. Something to think about?
474
475 # NLNet Milestone tasks
476
477 Part of applying for NLNet's Grants is a requirement to create a list
478 of tasks, each of which is assigned a budget. On 100% completion of the task,
479 donations can be sent out. With *six* new proposals accepted, each of which
480 required between five (minimum) and *ninteen* separate and distinct tasks,
481 a call with Michiel and Joost turned into an unexpected three hour online
482 marathon, scrambling to write almost fifty bugreports as part of the Schedule
483 to be attached to each Memorandum of Understanding. The mailing list
484 got a [leeetle bit busy](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005003.html)
485 right around here.
486
487 Which emphasised for us the important need to subdivide the mailing list into
488 separate lists (below).
489
490 # Georgia Tech CREATE-X
491
492 (*This section kindly written by Yehowshua*)
493
494 Yehowshua is a student at Georgia Tech currently pursuing a Masters in
495 Computer Engineering - to graduate this summer. He had started working
496 on Libre-SOC in December and wanted to to get Libre-SOC more funding so
497 I could work on it full time.
498
499 He originally asked if the ECE Chair at Georgia Tech would be willing
500 to fund an in-department effort to deliver an SOC in collaboration
501 with Libre-SOC(an idea to which he was quite receptive). Through Luke,
502 Yehowshua got in contact with Chistopher Klaus who suggested Yehowshua
503 should look into Klaus's startup accelerator program Create-X and perhaps
504 consider taking Libre-SOC down the startup route. Robert Rhinehart, who
505 had funded Libre-SOC a little in the past (*note from Luke: he donated
506 the ZC706 and also funded modernisation of Richard Herveille's excellent
507 [vga_lcd](https://github.com/RoaLogic/vga_lcd) Library*)
508 also suggested that Yehowshua
509 incorporate Libre-SOC with help from Create-X and said he would be willing
510 to be a seed investor. All this happened by February.
511
512 As of March, Yehowshua has been talking with Robert about what type of
513 customers would be interested in Libre-SOC. Robert is largely interested in
514 biological applications. Yehowshua also had a couple meetings with Rahul
515 from Create-X. Yehowshua has started the incorporation of Libre-SOC. The
516 parent company will probably be called Systèmes-Libres with Libre-SOC
517 simply being one of the products we will offer. Yehowshua also attended
518 HPCA in late February and had mentioned Libre-SOC during his talk. People
519 seemed to find the idea quite interesting
520
521 He will later be speaking with some well know startup lawyers that have
522 an HQ in Atlanta to discuss business related things such as S Corps,
523 C corps, taxes, wages, equity etc…
524
525 Yehowshua plans for Systèmes-Libres to hire full time employees. Part
526 time work on Libre-SOC will still be possible through donations and
527 support from NL Net and companies like purism.
528
529 Currently, Yehowshua plans to take the Create-X summer launch program
530 and fund Systèmes-Libres by August. Full time wages would probably be
531 set around 100k USD.
532
533 # LOAD/STORE Buffer and 6600 design documentation
534
535 A critical part of this project is not just to create a chip, it's to
536 *document* the chip design, the decisions along the way, for both
537 educational, research, and ongoing maintenance purposes. With an
538 augmented CDC 6600 design being chosen as the fundamental basis,
539 [documenting that](https://libre-riscv.org/3d_gpu/architecture/6600scoreboard/)
540 as well as the key differences is particularly important. At the very least,
541 the extremely simple and highly effective hardware but timing-critical
542 design aspects of the circular loops in the 6600 were recognised by James
543 Thornton (the co-designer of the 6600) as being paradoxically challenging
544 to understand why so few gates could be so effective (being as they were,
545 literally the world's first ever out-of-order superscalar architecture).
546 Consequently, documenting it just to be able to *develop* it is extremely
547 important.
548
549 We're getting to the point where we need to connect the LOAD/STORE Computation
550 Units up to an actual memory architecture. We've chosen
551 [minerva](https://github.com/lambdaconcept/minerva/blob/master/minerva/units/loadstore.py)
552 as the basis because it is written in nmigen, works, and, crucially, uses
553 wishbone (which we decided to use as the main Bus Backbone a few months ago).
554
555 However, unlike minerva, which is a single-issue 32-bit embedded chip,
556 where it's perfectly ok to have one single LD/ST operation per clock,
557 and not only that but to have that operation take a few clock cycles,
558 to get anything like the level of performance needed of a GPU, we need
559 at least four 64-bit LOADs or STOREs *every clock cycle*.
560
561 For a first ASIC from a team that's never done a chip before, this is,
562 officially, "Bonkers Territory". Where minerva is doing 32-bit-wide
563 Buses (and does not support 64-bit LD/ST at all), we need internal
564 data buses of a minimum whopping **2000** wires wide.
565
566 Let that sink in for a moment.
567
568 The reason why the internal buses need to be 2000 wires wide comes down
569 to the fact that we need, realistically, 6 to eight LOAD/STORE Computation
570 Units. 4 of them will be operational, 2 to 4 of them will be waiting
571 with pending instructions from the multi-issue Vectorisation Engine.
572
573 We chose to use a system which expands the first 4 bits of the address,
574 plus the operation width (1,2,4,8 bytes) into a "bitmap" - a byte-mask -
575 that corresponds directly with the 16 byte "cache line" byte enable
576 columns, in the L1 Cache. These bitmaps can then be "merged" such
577 that requests that go to the same cache line can be served *in the
578 same clock cycle* to multiple LOAD/STORE Computation Units. This
579 being absolutely critical for effective Vector Processing.
580
581 Additionally, in order to deal with misaligned memory requests, each of those
582 needs to put out *two* such 16-byte-wide requests (see where this is going?)
583 out to the L1 Cache.
584 So, we now have eight times two times 128 bits which is a staggering
585 2048 wires *just for the data*. There do exist ways to get that down
586 (potentially to half), and there do exist ways to get that cut in half
587 again, however doing so would miss opportunities for merging of requests
588 into cache lines.
589
590 At that point, thanks to Mitch Alsup's input (Mitch is the designer of
591 the Motorola 68000, Motorola 88120, key architecture on AMD's Opteron
592 Series, the AMD K9, AMDGPU and Samsung's latest GPU), we learned that
593 L1 cache design critically depends on what type of SRAM you have. We
594 initially, naively, wanted dual-ported L1 SRAM and that's when Staf
595 and Mitch taught us that this results in half-duty rate. Only
596 1-Read **or** 1-Write SRAM Cells give you fast enough (single-cycle)
597 data rates to be useable for L1 Caches.
598
599 Part of the conversation has wandered into
600 [why we chose dynamic pipelines](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005459.html)
601 as well as receiving that
602 [important advice](http://lists.libre-riscv.org/pipermail/libre-riscv-dev/2020-March/005354.html)
603 from both Mitch Alsup and Staf Verhaegen.
604
605 (Staf is also [sponsored by NLNet](https://nlnet.nl/project/Chips4Makers/)
606 to create Libre-licensed Cell Libraries, busting through one of the -
607 many - layers of NDAs and reducing NREs and unnecessary and artificial
608 barriers for ASIC development: I helped him put in the submission, and
609 he was really happy to do the Cell Libraries that we will be using for
610 Libre-SOC's 180nm test tape-out in October 2020.)
611
612 # Public-Inbox and Domain Migration
613
614 As mentioned before, one of the important aspects of this project is
615 the documentation and archiving. It also turns out that when working
616 over an extremely unreliable or ultra-expensive mobile broadband link,
617 having *local* (offline) access to every available development resource
618 is critically important.
619
620 Hence why we are going to the trouble of installing public-inbox, due
621 to its ability to not only have a mailing list entirely stored in a
622 git repository, the "web service" which provides access to that git-backed
623 archive can be not only mirrored elsewhere, it can be *run locally on
624 your own local machine* even when offline. This in combination
625 with the right mailer setup can store-and-forward any replies to the
626 (offline-copied) messages, such that they can be sent when internet
627 connectivity is restored, yet remain a productive collaborative developer.
628
629 Now you know why we absolutely do not accept "slack", or other proprietary
630 "online oh-so-convenient" service. Not only is it highly inappropriate for
631 Libre Projects, not only do we become critically dependent on the Corporation
632 running the service (yes, github has been entirely offline, several times),
633 if we have remote developers (such as myself, working from Scotland last
634 month with sporadic access to a single Cell Tower) or developers in emerging
635 markets where their only internet access is via a Library or Internet Cafe,
636 we absolutely do not want to exclude or penalise such people, just because
637 they have less resources.
638
639 Fascinatingly, Linus Torvals is *specifically*
640 [on record](https://www.linuxjournal.com/content/line-length-limits)
641 about making sure that "Linux development does not favour wealthy people".
642
643 We are also, as mentioned before, moving to a new domain name. We'll take
644 the opportunity to fix some of the issues with HTTPS (wrong certificate),
645 and also do some
646 [better mailing list names](http://bugs.libre-riscv.org/show_bug.cgi?id=184)
647 at the same time.
648
649 TODO (Veera?) bit about what was actually done, how it links into mailman2.
650
651 # OpenPOWER HDL Mailing List opens up
652
653 It is early days, however it is fantastic to see responses from IBM with
654 regards to requests for access to the POWER ISA Specification
655 documents in
656 [machine-readable form](http://lists.mailinglist.openpowerfoundation.org/pipermail/openpower-hdl-cores/2020-March/000007.html)
657 I took Jeff at his word and explained, in some detail,
658 [exactly why](http://lists.mailinglist.openpowerfoundation.org/pipermail/openpower-hdl-cores/2020-March/000008.html)
659 machine readable versions of specifications are critically important.
660
661 The takeaway is: *we haven't got time to do manual transliteration of the spec*
662 into "code". We're expending considerable effort making sure that we
663 "bounce" or "bootstrap" off of pre-existing resources, using computer
664 programs to do so.
665
666 This "trick" is something that I learned over 20 years ago, when developing
667 an SMB Client and Server in something like two weeks flat. I wrote a
668 parser which read the packet formats *from the IETF Draft Specification*,
669 and outputted c-code.
670
671 This leaves me wondering, as I mention on the HDL list, if we can do the same
672 thing with large sections of the POWER Spec.
673
674 # Build Servers
675
676 TODO
677
678 # Conclusion
679
680 I'm not going to mention anything about the current world climate: you've
681 seen enough news reports. I will say (more about this through the
682 [EOMA68](https://www.crowdsupply.com/eoma68/micro-desktop) updates) that
683 I anticipated something like what is happening right now, over ten years
684 ago. I wasn't precisely expecting what *has* happened, just the consequences:
685 world-wide travel shut-down, and for people - the world over - to return to
686 local community roots.
687
688 However what I definitely wasn't expecting was a United States President
689 to be voted in who was eager and, frankly, stupid enough, to start *and
690 escalate* a Trade war with China. The impact on the U.S economy alone, and the
691 reputation of the whole country, has been detrimental in the extreme.
692
693 This combination leaves us - world-wide - with the strong possibility that
694 seemed so "preposterous" that I could in no way discuss it widely, let alone
695 mention it on something like a Crowdsupply update, that thanks to the
696 business model on which their entire product lifecycle is predicated,
697 in combination with the extremely high NREs and development costs for
698 ASICs (custom silicon costs USD $100 million, these days), several
699 large Corporations producing proprietary binary-only drivers for
700 hardware on which we critically rely for our internet-connected way
701 of life **may soon go out of business**.
702
703 Right at a critical time where video conferencing is taking off massively,
704 your proprietary hardware - your smartphone, your tablet, your laptop,
705 everything you rely on for connectivity to the rest of the world, all of
706 a sudden **you may not be able to get software updates** or, worse,
707 your products could even be
708 [remotely shut down](https://www.theguardian.com/technology/2016/apr/05/revolv-devices-bricked-google-nest-smart-home)
709 **without warning**.
710
711 I do not want to hammer the point home too strongly but you should be
712 getting, in no uncertain terms, exactly how strategically critical, in
713 the current world climate, this project just became. We need to get it
714 accelerated, completed, and into production, in an expedited and responsible
715 fashion.
716