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| Started by | Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> |
|---|---|
| First post | 2026-08-03 19:23 +0800 |
| Last post | 2026-08-04 15:10 +0200 |
| Articles | 20 on this page of 30 — 8 participants |
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Malicious Computer Architecture (was: Re: Prioritize Performance over Correctness) Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-03 19:23 +0800
Re: Malicious Computer Architecture (was: Re: Prioritize Performance over Correctness) scott@slp53.sl.home (Scott Lurndal) - 2026-08-03 14:29 +0000
Johnny Depp prevention [Windows 11 etc...] (Was: Malicious Computer Architecture) Mild Shock <janburse@fastmail.fm> - 2026-08-03 18:10 +0200
But how can you deploy. when its ROM? (Was: Johnny Depp prevention [Windows 11 etc...]) Mild Shock <janburse@fastmail.fm> - 2026-08-03 18:15 +0200
GPU Elasticity: Collective Communications Libraries (Was: But how can you deploy. when its ROM?) Mild Shock <janburse@fastmail.fm> - 2026-08-07 14:37 +0200
What are Flits and Phits? [Network on a Chip] (Re: GPU Elasticity: Collective Communications Libraries) Mild Shock <janburse@fastmail.fm> - 2026-08-07 18:07 +0200
Cristallina: Thank you for the Beam (Re: What are Flits and Phits? [Network on a Chip]) Mild Shock <janburse@fastmail.fm> - 2026-08-09 21:22 +0200
Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] Mild Shock <janburse@fastmail.fm> - 2026-08-18 16:26 +0200
How to shoot yourself in the foot (Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] Mild Shock <janburse@fastmail.fm> - 2026-08-18 16:50 +0200
Re: How to shoot yourself in the foot (Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-19 03:24 +0800
Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-19 03:21 +0800
Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] Aidan Kehoe <kehoea@parhasard.net> - 2026-08-18 21:13 +0100
Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] Lawrence D’Oliveiro <ldo@nz.invalid> - 2026-08-18 22:49 +0000
Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-19 08:32 +0800
Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-19 08:27 +0800
The Mac Neo is a Budget Monster [GPU Channels] (Re: What are Flits and Phits? [Network on a Chip]) Mild Shock <janburse@fastmail.fm> - 2026-08-11 16:27 +0200
The luminaries of duct-tape engineering [Sweeney and Torvald] (Was: The Mac Neo is a Budget Monster [GPU Channels]) Mild Shock <janburse@fastmail.fm> - 2026-08-11 16:51 +0200
Re: Malicious Computer Architecture Aidan Kehoe <kehoea@parhasard.net> - 2026-08-03 19:51 +0100
Re: Malicious Computer Architecture Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-05 00:22 +0800
Re: Malicious Computer Architecture Richard Harnden <richard.nospam@gmail.invalid> - 2026-08-04 19:10 +0100
Re: Malicious Computer Architecture Kaz Kylheku <046-301-5902@kylheku.com> - 2026-08-06 21:55 +0000
Re: Malicious Computer Architecture Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-07 06:31 +0800
Re: Malicious Computer Architecture Aidan Kehoe <kehoea@parhasard.net> - 2026-08-06 23:01 +0100
Re: Malicious Computer Architecture Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-07 06:45 +0800
Re: Malicious Computer Architecture Niocláisín Cóilín de Ghlostéir <thanks-to@Taf.com> - 2026-08-04 18:13 +0000
Re: Malicious Computer Architecture Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-05 03:48 +0800
Re: Malicious Computer Architecture Niocláisín Cóilín de Ghlostéir <thanks-to@Taf.com> - 2026-08-04 22:01 +0000
Re: Malicious Computer Architecture Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> - 2026-08-05 06:25 +0800
A Case for Impurity: The Applied Pi Calculus (Re: Malicious Computer Architecture) Mild Shock <janburse@fastmail.fm> - 2026-08-04 14:58 +0200
The Sandcastle of Paul Taraus Interactors (Re: A Case for Impurity: The Applied Pi Calculus) Mild Shock <janburse@fastmail.fm> - 2026-08-04 15:10 +0200
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| From | Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> |
|---|---|
| Date | 2026-08-03 19:23 +0800 |
| Subject | Malicious Computer Architecture (was: Re: Prioritize Performance over Correctness) |
| Message-ID | <5T_bS.71191$4Fu9.56234@fx05.ams4> |
On 03/08/2026 6:28 PM, David Brown wrote: > On 03/08/2026 11:41, Richard Harnden wrote: >> On 03/08/2026 09:16, David Brown wrote: > >>> On most targets, function pointers are the same size as void* >>> pointers. But there are exceptions, with some small microcontrollers >>> and DSPs having different kinds of pointers with different sizes, >>> depending on the memory space involved. I have yet to see a >>> situation where there was any reason for storing a function address >>> in a "void*" rather than a more appropriate typedef, such as : >>> >>> typedef void (*FVoid)(void); >> >> dlsym requires that pointer-to-function is compatible with a void* >> > > As I say, I have yet to see a situation where using void* for function > pointers was more appropriate than using a function pointer type. If > the OS system calls or standard OS libraries makes it a requirement that > function pointers are converted to or from void* for some calls, then of > course you need to follow those requirements - it's the people who > designed the interfaces that made questionable design choices. > Nope, you're wrong. You're dead wrong. The world isn't built on C, even though here in comp.lang.c we like to pretend it is. Several language environments allow function generation on the fly, these functions need to be garbage collected. Common Lisp is an example, therefore comp.lang.lisp is added to this discussion. I've also added comp.theory so Mild Shock can comment. You will have to go out of your way to make a computer architecture incompatible with garbage collected and heap allocated binary code, something I've been told SBCL does internally [1] to create an archi- tecture that has different * sizeof ( void * ), and * sizeof ( void (*)( void ) ), and when you do that, I'll just claim you're making a /malicious computer architecture/ and refuse to use it. [1] I've not looked at the code, but told the garbage collector can and will at least move the code around, if not collect it. -- Johann | email: invalid -> com | http://www.myrkraverk.com/blog/ I'm not from the Internet, I just work there. | via Easynews.com
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| From | scott@slp53.sl.home (Scott Lurndal) |
|---|---|
| Date | 2026-08-03 14:29 +0000 |
| Message-ID | <UA1cS.12216$B3ve.269@fx06.iad> |
| In reply to | #61270 |
Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> writes: >On 03/08/2026 6:28 PM, A respected comp.lang.c poster wrote: >Nope, you're wrong. You're dead wrong. The world isn't built on C, >even though here in comp.lang.c we like to pretend it is. Hey dipshit, you're responding to a post in comp.lang.c and cross-posting your reply to other unrelated groups. Please don't do that.
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-03 18:10 +0200 |
| Subject | Johnny Depp prevention [Windows 11 etc...] (Was: Malicious Computer Architecture) |
| Message-ID | <114qei6$t1uc$1@solani.org> |
| In reply to | #61270 |
Hi, > I've also added comp.theory so Mild Shock can comment. > that has different > * sizeof ( void * ), and > * sizeof ( void (*)( void ) ), Could indicate a data RAM and code ROM model. Which has then the advantage of: Modern operating systems like Windows 11 enforce strict Data Execution Prevention (DEP) (or NX/XD bit security features) to prevent malicious programs from injecting and executing code inside data-only memory regions. https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ I adopted data RAM and code ROM model for pi-WAM from Hack, which has the same separation: Slide 58, Hack Computer https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view But my motivation was not Johnny Depp prevention. Rather the caching of GPUs. Because WGSL allows storage annotations read_write and read. I use read_write for the data RAM of my Hack VM variant, and read for the code ROM of my Hack VM variant. You can see that here, its open source: @group(0) @binding(0) var<storage, read> code: array<i32>; @group(0) @binding(1) var<storage, read_write> state: array<i32>; 11.4 Giga Lips with a Budget Laptop https://github.com/Jean-Luc-Picard-2021/gigabudget Hope this Helps! Bye Johann 'Myrkraverk' Oskarsson schrieb: > On 03/08/2026 6:28 PM, David Brown wrote: >> On 03/08/2026 11:41, Richard Harnden wrote: >>> On 03/08/2026 09:16, David Brown wrote: >> >>>> On most targets, function pointers are the same size as void* >>>> pointers. But there are exceptions, with some small microcontrollers >>>> and DSPs having different kinds of pointers with different sizes, >>>> depending on the memory space involved. I have yet to see a >>>> situation where there was any reason for storing a function address >>>> in a "void*" rather than a more appropriate typedef, such as : >>>> >>>> typedef void (*FVoid)(void); >>> >>> dlsym requires that pointer-to-function is compatible with a void* >>> >> >> As I say, I have yet to see a situation where using void* for function >> pointers was more appropriate than using a function pointer type. If >> the OS system calls or standard OS libraries makes it a requirement >> that function pointers are converted to or from void* for some calls, >> then of course you need to follow those requirements - it's the people >> who designed the interfaces that made questionable design choices. >> > > Nope, you're wrong. You're dead wrong. The world isn't built on C, > even though here in comp.lang.c we like to pretend it is. > > Several language environments allow function generation on the fly, > these functions need to be garbage collected. Common Lisp is an > example, therefore comp.lang.lisp is added to this discussion. > > I've also added comp.theory so Mild Shock can comment. > > You will have to go out of your way to make a computer architecture > incompatible with garbage collected and heap allocated binary code, > something I've been told SBCL does internally [1] to create an archi- > tecture that has different > > * sizeof ( void * ), and > * sizeof ( void (*)( void ) ), > > and when you do that, I'll just claim you're making a /malicious > computer architecture/ and refuse to use it. > > > [1] I've not looked at the code, but told the garbage collector can > and will at least move the code around, if not collect it.
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-03 18:15 +0200 |
| Subject | But how can you deploy. when its ROM? (Was: Johnny Depp prevention [Windows 11 etc...]) |
| Message-ID | <114qerq$t244$1@solani.org> |
| In reply to | #61272 |
Hi, Well there are two viewpoint, the "client" of the GPU, which is the CPU, and the "server" of the GPU, which is the command processor queue of the GPU device. So basically as a CPU client I can write the memory area, that is later mapped to my GPU code storage. And this way have a compiler, even written in Prolog, that compiles pi-WAM to my Hack VM, that can then be then deployed to GPU. You could also try the same with a Tiny LISP VM. And a grown up LISP to act as the compiler. Would be a similar exercise. Have Fun! Bye Mild Shock schrieb: > Hi, > > > I've also added comp.theory so Mild Shock can comment. > > > that has different > > * sizeof ( void * ), and > > * sizeof ( void (*)( void ) ), > > Could indicate a data RAM and code ROM model. > Which has then the advantage of: > > Modern operating systems like Windows 11 > enforce strict Data Execution Prevention (DEP) > (or NX/XD bit security features) to prevent > malicious programs from injecting and executing > code inside data-only memory regions. > https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ > > I adopted data RAM and code ROM model for > pi-WAM from Hack, which has the same separation: > > Slide 58, Hack Computer > https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view > > But my motivation was not Johnny Depp prevention. > Rather the caching of GPUs. Because WGSL > allows storage annotations read_write and > > read. I use read_write for the data RAM > of my Hack VM variant, and read for the > code ROM of my Hack VM variant. You can > > see that here, its open source: > > @group(0) @binding(0) var<storage, read> code: array<i32>; > @group(0) @binding(1) var<storage, read_write> state: array<i32>; > > 11.4 Giga Lips with a Budget Laptop > https://github.com/Jean-Luc-Picard-2021/gigabudget > > Hope this Helps! > > Bye > > Johann 'Myrkraverk' Oskarsson schrieb: >> On 03/08/2026 6:28 PM, David Brown wrote: >>> On 03/08/2026 11:41, Richard Harnden wrote: >>>> On 03/08/2026 09:16, David Brown wrote: >>> >>>>> On most targets, function pointers are the same size as void* >>>>> pointers. But there are exceptions, with some small >>>>> microcontrollers and DSPs having different kinds of pointers with >>>>> different sizes, depending on the memory space involved. I have >>>>> yet to see a situation where there was any reason for storing a >>>>> function address in a "void*" rather than a more appropriate >>>>> typedef, such as : >>>>> >>>>> typedef void (*FVoid)(void); >>>> >>>> dlsym requires that pointer-to-function is compatible with a void* >>>> >>> >>> As I say, I have yet to see a situation where using void* for >>> function pointers was more appropriate than using a function pointer >>> type. If the OS system calls or standard OS libraries makes it a >>> requirement that function pointers are converted to or from void* for >>> some calls, then of course you need to follow those requirements - >>> it's the people who designed the interfaces that made questionable >>> design choices. >>> >> >> Nope, you're wrong. You're dead wrong. The world isn't built on C, >> even though here in comp.lang.c we like to pretend it is. >> >> Several language environments allow function generation on the fly, >> these functions need to be garbage collected. Common Lisp is an >> example, therefore comp.lang.lisp is added to this discussion. >> >> I've also added comp.theory so Mild Shock can comment. >> >> You will have to go out of your way to make a computer architecture >> incompatible with garbage collected and heap allocated binary code, >> something I've been told SBCL does internally [1] to create an archi- >> tecture that has different >> >> * sizeof ( void * ), and >> * sizeof ( void (*)( void ) ), >> >> and when you do that, I'll just claim you're making a /malicious >> computer architecture/ and refuse to use it. >> >> >> [1] I've not looked at the code, but told the garbage collector can >> and will at least move the code around, if not collect it. >
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-07 14:37 +0200 |
| Subject | GPU Elasticity: Collective Communications Libraries (Was: But how can you deploy. when its ROM?) |
| Message-ID | <1154jip$296j$3@solani.org> |
| In reply to | #61273 |
Hi, How it started, NVIDIA being cool: NCCL provides routines such as all-gather, all-reduce, broadcast, reduce, reduce-scatter, and point-to-point send and receive. These routines are optimized to achieve high bandwidth and low latency over PCIe, NVIDIA NVLink™, and other high-speed interconnects within a node and over NVIDIA networking across nodes. https://developer.nvidia.com/nccl How its going, vLLM trying to be cool: [RFC]: Native Weight Syncing APIs However, there are no standardized methods for performing online weight syncing. Open source projects like SkyRL, VeRL, and TRL need to include their own implementations of the weight syncing infrastructure, leading to added complexity for developers seeking to adopt vLLM as their inference server for post-training workloads. https://github.com/vllm-project/vllm/issues/31848 How much Workers are enough? I guess it depends on I/O parallelism, CPU Memory parallelism, CPU Processing parallelism, and now also GPU Memory parallelism and GPU Processing parallelism, and last but least you might have a couple DMAs sitting here and there, or even invoking a sort of RDMA. Quite amazing! Bye Mild Shock schrieb: > Hi, > > Well there are two viewpoint, the "client" > of the GPU, which is the CPU, and the "server" > of the GPU, which is the command processor > > queue of the GPU device. So basically as > a CPU client I can write the memory area, > that is later mapped to my GPU code storage. > > And this way have a compiler, even written > in Prolog, that compiles pi-WAM to my Hack VM, > that can then be then deployed to GPU. > > You could also try the same with a Tiny > LISP VM. And a grown up LISP to act as > the compiler. Would be a similar exercise. > > Have Fun! > > Bye > > Mild Shock schrieb: >> Hi, >> >> > I've also added comp.theory so Mild Shock can comment. >> >> > that has different >> > * sizeof ( void * ), and >> > * sizeof ( void (*)( void ) ), >> >> Could indicate a data RAM and code ROM model. >> Which has then the advantage of: >> >> Modern operating systems like Windows 11 >> enforce strict Data Execution Prevention (DEP) >> (or NX/XD bit security features) to prevent >> malicious programs from injecting and executing >> code inside data-only memory regions. >> https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ >> >> I adopted data RAM and code ROM model for >> pi-WAM from Hack, which has the same separation: >> >> Slide 58, Hack Computer >> https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view >> >> But my motivation was not Johnny Depp prevention. >> Rather the caching of GPUs. Because WGSL >> allows storage annotations read_write and >> >> read. I use read_write for the data RAM >> of my Hack VM variant, and read for the >> code ROM of my Hack VM variant. You can >> >> see that here, its open source: >> >> @group(0) @binding(0) var<storage, read> code: array<i32>; >> @group(0) @binding(1) var<storage, read_write> state: array<i32>; >> >> 11.4 Giga Lips with a Budget Laptop >> https://github.com/Jean-Luc-Picard-2021/gigabudget >> >> Hope this Helps! >> >> Bye >> >> Johann 'Myrkraverk' Oskarsson schrieb: >>> On 03/08/2026 6:28 PM, David Brown wrote: >>>> On 03/08/2026 11:41, Richard Harnden wrote: >>>>> On 03/08/2026 09:16, David Brown wrote: >>>> >>>>>> On most targets, function pointers are the same size as void* >>>>>> pointers. But there are exceptions, with some small >>>>>> microcontrollers and DSPs having different kinds of pointers with >>>>>> different sizes, depending on the memory space involved. I have >>>>>> yet to see a situation where there was any reason for storing a >>>>>> function address in a "void*" rather than a more appropriate >>>>>> typedef, such as : >>>>>> >>>>>> typedef void (*FVoid)(void); >>>>> >>>>> dlsym requires that pointer-to-function is compatible with a void* >>>>> >>>> >>>> As I say, I have yet to see a situation where using void* for >>>> function pointers was more appropriate than using a function pointer >>>> type. If the OS system calls or standard OS libraries makes it a >>>> requirement that function pointers are converted to or from void* >>>> for some calls, then of course you need to follow those requirements >>>> - it's the people who designed the interfaces that made questionable >>>> design choices. >>>> >>> >>> Nope, you're wrong. You're dead wrong. The world isn't built on C, >>> even though here in comp.lang.c we like to pretend it is. >>> >>> Several language environments allow function generation on the fly, >>> these functions need to be garbage collected. Common Lisp is an >>> example, therefore comp.lang.lisp is added to this discussion. >>> >>> I've also added comp.theory so Mild Shock can comment. >>> >>> You will have to go out of your way to make a computer architecture >>> incompatible with garbage collected and heap allocated binary code, >>> something I've been told SBCL does internally [1] to create an archi- >>> tecture that has different >>> >>> * sizeof ( void * ), and >>> * sizeof ( void (*)( void ) ), >>> >>> and when you do that, I'll just claim you're making a /malicious >>> computer architecture/ and refuse to use it. >>> >>> >>> [1] I've not looked at the code, but told the garbage collector can >>> and will at least move the code around, if not collect it. >> >
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-07 18:07 +0200 |
| Subject | What are Flits and Phits? [Network on a Chip] (Re: GPU Elasticity: Collective Communications Libraries) |
| Message-ID | <1154vsi$2mto$3@solani.org> |
| In reply to | #61323 |
Hi, Recently there was a paper somebody mentioning a flit doing a ACK or NACK, to express backpressure inside a Network on a Chip. But what is a flit? It seems multiple flits can be used to create the message passing in one directiob before the ACK or NACK in the other direction? "The growing need for performance from computing systems drove the industry into the multi-core and many-core arena. In this setup, the execution of a kernel (a program) is split across multiple processors and the computation happens in parallel Flits represent logical units of information, while phits represent the physical domain, that is, phits represent the number of bits that can be transferred in parallel in a single cycle. Consider the Cray T3D. It has an interconnection network which uses flit level message flow control wherein each flit is composed of eight 16-bit phits. That means its flit size is 128bits and phit size is 16bits. Also consider the IBM SP2 switch. It also uses the flit level message flow control, but its flit size is equal to its phit size, which is set to 8 bits." https://en.wikipedia.org/wiki/Flit_(computer_networking)#Example Well my idea how this is realized in silicon is rather foggy, I mean even the Hack project from Nand 2 Tetris, does not show some gate level schemes for flits and phits. Could be an interesting extension. But somehow the image of flits and phits inspired my channel objects here below. But I am afraid they are fire and forget, no ACK and NACK: π-WAM Contest: 1 Million Packets with Prolog https://medium.com/2989/ec3e91551773 Its amazing that a max_size(1) buffer can beat an unbounded buffer! LoL Bye Mild Shock schrieb: > Hi, > > How it started, NVIDIA being cool: > > NCCL provides routines such as all-gather, > all-reduce, broadcast, reduce, reduce-scatter, > and point-to-point send and receive. These > routines are optimized to achieve high > bandwidth and low latency over PCIe, > NVIDIA NVLink™, and other high-speed > interconnects within a node and over > NVIDIA networking across nodes. > https://developer.nvidia.com/nccl > > How its going, vLLM trying to be cool: > > [RFC]: Native Weight Syncing APIs > However, there are no standardized methods for > performing online weight syncing. Open source projects > like SkyRL, VeRL, and TRL need to include their > own implementations of the weight syncing > infrastructure, leading to added complexity > for developers seeking to adopt vLLM as their > inference server for post-training workloads. > https://github.com/vllm-project/vllm/issues/31848 > > How much Workers are enough? I guess it depends > on I/O parallelism, CPU Memory parallelism, CPU > Processing parallelism, and now also > > GPU Memory parallelism and GPU Processing > parallelism, and last but least you might have > a couple DMAs sitting here and there, > > or even invoking a sort of RDMA. Quite amazing! > > Bye > > Mild Shock schrieb: >> Hi, >> >> Well there are two viewpoint, the "client" >> of the GPU, which is the CPU, and the "server" >> of the GPU, which is the command processor >> >> queue of the GPU device. So basically as >> a CPU client I can write the memory area, >> that is later mapped to my GPU code storage. >> >> And this way have a compiler, even written >> in Prolog, that compiles pi-WAM to my Hack VM, >> that can then be then deployed to GPU. >> >> You could also try the same with a Tiny >> LISP VM. And a grown up LISP to act as >> the compiler. Would be a similar exercise. >> >> Have Fun! >> >> Bye >> >> Mild Shock schrieb: >>> Hi, >>> >>> > I've also added comp.theory so Mild Shock can comment. >>> >>> > that has different >>> > * sizeof ( void * ), and >>> > * sizeof ( void (*)( void ) ), >>> >>> Could indicate a data RAM and code ROM model. >>> Which has then the advantage of: >>> >>> Modern operating systems like Windows 11 >>> enforce strict Data Execution Prevention (DEP) >>> (or NX/XD bit security features) to prevent >>> malicious programs from injecting and executing >>> code inside data-only memory regions. >>> https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ >>> >>> I adopted data RAM and code ROM model for >>> pi-WAM from Hack, which has the same separation: >>> >>> Slide 58, Hack Computer >>> https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view >>> >>> But my motivation was not Johnny Depp prevention. >>> Rather the caching of GPUs. Because WGSL >>> allows storage annotations read_write and >>> >>> read. I use read_write for the data RAM >>> of my Hack VM variant, and read for the >>> code ROM of my Hack VM variant. You can >>> >>> see that here, its open source: >>> >>> @group(0) @binding(0) var<storage, read> code: array<i32>; >>> @group(0) @binding(1) var<storage, read_write> state: array<i32>; >>> >>> 11.4 Giga Lips with a Budget Laptop >>> https://github.com/Jean-Luc-Picard-2021/gigabudget >>> >>> Hope this Helps! >>> >>> Bye >>> >>> Johann 'Myrkraverk' Oskarsson schrieb: >>>> On 03/08/2026 6:28 PM, David Brown wrote: >>>>> On 03/08/2026 11:41, Richard Harnden wrote: >>>>>> On 03/08/2026 09:16, David Brown wrote: >>>>> >>>>>>> On most targets, function pointers are the same size as void* >>>>>>> pointers. But there are exceptions, with some small >>>>>>> microcontrollers and DSPs having different kinds of pointers with >>>>>>> different sizes, depending on the memory space involved. I have >>>>>>> yet to see a situation where there was any reason for storing a >>>>>>> function address in a "void*" rather than a more appropriate >>>>>>> typedef, such as : >>>>>>> >>>>>>> typedef void (*FVoid)(void); >>>>>> >>>>>> dlsym requires that pointer-to-function is compatible with a void* >>>>>> >>>>> >>>>> As I say, I have yet to see a situation where using void* for >>>>> function pointers was more appropriate than using a function >>>>> pointer type. If the OS system calls or standard OS libraries >>>>> makes it a requirement that function pointers are converted to or >>>>> from void* for some calls, then of course you need to follow those >>>>> requirements - it's the people who designed the interfaces that >>>>> made questionable design choices. >>>>> >>>> >>>> Nope, you're wrong. You're dead wrong. The world isn't built on C, >>>> even though here in comp.lang.c we like to pretend it is. >>>> >>>> Several language environments allow function generation on the fly, >>>> these functions need to be garbage collected. Common Lisp is an >>>> example, therefore comp.lang.lisp is added to this discussion. >>>> >>>> I've also added comp.theory so Mild Shock can comment. >>>> >>>> You will have to go out of your way to make a computer architecture >>>> incompatible with garbage collected and heap allocated binary code, >>>> something I've been told SBCL does internally [1] to create an archi- >>>> tecture that has different >>>> >>>> * sizeof ( void * ), and >>>> * sizeof ( void (*)( void ) ), >>>> >>>> and when you do that, I'll just claim you're making a /malicious >>>> computer architecture/ and refuse to use it. >>>> >>>> >>>> [1] I've not looked at the code, but told the garbage collector can >>>> and will at least move the code around, if not collect it. >>> >> >
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-09 21:22 +0200 |
| Subject | Cristallina: Thank you for the Beam (Re: What are Flits and Phits? [Network on a Chip]) |
| Message-ID | <115ak0p$6g3f$3@solani.org> |
| In reply to | #61325 |
Hi, How it started: Filming a vitamin B12 photoreceptor in action https://www.psi.ch/de/news/science-features/filming-a-vitamin-b12-photoreceptor-in-action How its going: Elon Musk's potential FEL route could challenge EUV lithography https://www.kucoin.com/news/flash/elon-musk-s-potential-fel-route-could-challenge-euv-lithography Who will win the Nano Atom mover race, will the USA OutChip its competitor China and its supplier Asia in the next years? Bye Mild Shock schrieb: > Hi, > > Recently there was a paper somebody mentioning > a flit doing a ACK or NACK, to express > backpressure inside a Network on a Chip. > > But what is a flit? It seems multiple > flits can be used to create the message > passing in one directiob before the > > ACK or NACK in the other direction? > > "The growing need for performance from > computing systems drove the industry into > the multi-core and many-core arena. In this > setup, the execution of a kernel (a program) > is split across multiple processors and the > computation happens in parallel > > Flits represent logical units of information, > while phits represent the physical domain, > that is, phits represent the number of bits > that can be transferred in parallel in a > single cycle. Consider the Cray T3D. It has > an interconnection network which uses > > flit level message flow control wherein each > flit is composed of eight 16-bit phits. That > means its flit size is 128bits and phit size > is 16bits. Also consider the IBM SP2 switch. > It also uses the flit level message flow > control, but its flit size is equal to its > phit size, which is set to 8 bits." > https://en.wikipedia.org/wiki/Flit_(computer_networking)#Example > > Well my idea how this is realized in silicon > is rather foggy, I mean even the Hack project > from Nand 2 Tetris, does not show some gate level > schemes for flits and phits. > > Could be an interesting extension. But somehow > the image of flits and phits inspired my channel > objects here below. But I am afraid they are fire > and forget, no ACK and NACK: > > π-WAM Contest: 1 Million Packets with Prolog > https://medium.com/2989/ec3e91551773 > > Its amazing that a max_size(1) buffer > can beat an unbounded buffer! > > LoL > > Bye > > Mild Shock schrieb: >> Hi, >> >> How it started, NVIDIA being cool: >> >> NCCL provides routines such as all-gather, >> all-reduce, broadcast, reduce, reduce-scatter, >> and point-to-point send and receive. These >> routines are optimized to achieve high >> bandwidth and low latency over PCIe, >> NVIDIA NVLink™, and other high-speed >> interconnects within a node and over >> NVIDIA networking across nodes. >> https://developer.nvidia.com/nccl >> >> How its going, vLLM trying to be cool: >> >> [RFC]: Native Weight Syncing APIs >> However, there are no standardized methods for >> performing online weight syncing. Open source projects >> like SkyRL, VeRL, and TRL need to include their >> own implementations of the weight syncing >> infrastructure, leading to added complexity >> for developers seeking to adopt vLLM as their >> inference server for post-training workloads. >> https://github.com/vllm-project/vllm/issues/31848 >> >> How much Workers are enough? I guess it depends >> on I/O parallelism, CPU Memory parallelism, CPU >> Processing parallelism, and now also >> >> GPU Memory parallelism and GPU Processing >> parallelism, and last but least you might have >> a couple DMAs sitting here and there, >> >> or even invoking a sort of RDMA. Quite amazing! >> >> Bye >> >> Mild Shock schrieb: >>> Hi, >>> >>> Well there are two viewpoint, the "client" >>> of the GPU, which is the CPU, and the "server" >>> of the GPU, which is the command processor >>> >>> queue of the GPU device. So basically as >>> a CPU client I can write the memory area, >>> that is later mapped to my GPU code storage. >>> >>> And this way have a compiler, even written >>> in Prolog, that compiles pi-WAM to my Hack VM, >>> that can then be then deployed to GPU. >>> >>> You could also try the same with a Tiny >>> LISP VM. And a grown up LISP to act as >>> the compiler. Would be a similar exercise. >>> >>> Have Fun! >>> >>> Bye >>> >>> Mild Shock schrieb: >>>> Hi, >>>> >>>> > I've also added comp.theory so Mild Shock can comment. >>>> >>>> > that has different >>>> > * sizeof ( void * ), and >>>> > * sizeof ( void (*)( void ) ), >>>> >>>> Could indicate a data RAM and code ROM model. >>>> Which has then the advantage of: >>>> >>>> Modern operating systems like Windows 11 >>>> enforce strict Data Execution Prevention (DEP) >>>> (or NX/XD bit security features) to prevent >>>> malicious programs from injecting and executing >>>> code inside data-only memory regions. >>>> https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ >>>> >>>> I adopted data RAM and code ROM model for >>>> pi-WAM from Hack, which has the same separation: >>>> >>>> Slide 58, Hack Computer >>>> https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view >>>> >>>> But my motivation was not Johnny Depp prevention. >>>> Rather the caching of GPUs. Because WGSL >>>> allows storage annotations read_write and >>>> >>>> read. I use read_write for the data RAM >>>> of my Hack VM variant, and read for the >>>> code ROM of my Hack VM variant. You can >>>> >>>> see that here, its open source: >>>> >>>> @group(0) @binding(0) var<storage, read> code: array<i32>; >>>> @group(0) @binding(1) var<storage, read_write> state: array<i32>; >>>> >>>> 11.4 Giga Lips with a Budget Laptop >>>> https://github.com/Jean-Luc-Picard-2021/gigabudget >>>> >>>> Hope this Helps! >>>> >>>> Bye >>>> >>>> Johann 'Myrkraverk' Oskarsson schrieb: >>>>> On 03/08/2026 6:28 PM, David Brown wrote: >>>>>> On 03/08/2026 11:41, Richard Harnden wrote: >>>>>>> On 03/08/2026 09:16, David Brown wrote: >>>>>> >>>>>>>> On most targets, function pointers are the same size as void* >>>>>>>> pointers. But there are exceptions, with some small >>>>>>>> microcontrollers and DSPs having different kinds of pointers >>>>>>>> with different sizes, depending on the memory space involved. I >>>>>>>> have yet to see a situation where there was any reason for >>>>>>>> storing a function address in a "void*" rather than a more >>>>>>>> appropriate typedef, such as : >>>>>>>> >>>>>>>> typedef void (*FVoid)(void); >>>>>>> >>>>>>> dlsym requires that pointer-to-function is compatible with a void* >>>>>>> >>>>>> >>>>>> As I say, I have yet to see a situation where using void* for >>>>>> function pointers was more appropriate than using a function >>>>>> pointer type. If the OS system calls or standard OS libraries >>>>>> makes it a requirement that function pointers are converted to or >>>>>> from void* for some calls, then of course you need to follow those >>>>>> requirements - it's the people who designed the interfaces that >>>>>> made questionable design choices. >>>>>> >>>>> >>>>> Nope, you're wrong. You're dead wrong. The world isn't built on C, >>>>> even though here in comp.lang.c we like to pretend it is. >>>>> >>>>> Several language environments allow function generation on the fly, >>>>> these functions need to be garbage collected. Common Lisp is an >>>>> example, therefore comp.lang.lisp is added to this discussion. >>>>> >>>>> I've also added comp.theory so Mild Shock can comment. >>>>> >>>>> You will have to go out of your way to make a computer architecture >>>>> incompatible with garbage collected and heap allocated binary code, >>>>> something I've been told SBCL does internally [1] to create an archi- >>>>> tecture that has different >>>>> >>>>> * sizeof ( void * ), and >>>>> * sizeof ( void (*)( void ) ), >>>>> >>>>> and when you do that, I'll just claim you're making a /malicious >>>>> computer architecture/ and refuse to use it. >>>>> >>>>> >>>>> [1] I've not looked at the code, but told the garbage collector can >>>>> and will at least move the code around, if not collect it. >>>> >>> >> >
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-18 16:26 +0200 |
| Subject | Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] |
| Message-ID | <1161q20$mbl1$3@solani.org> |
| In reply to | #61343 |
Hi, Sometimes I think the Loderunner Enemy AI was way ahead of its time: Lode Runner - Broderbund - 1983 - Apple II https://www.youtube.com/watch?v=pJZJepU8law Meanwhile SWI-Prolog Prologers even don't know whether a Prolog text is CNF or DNF: Sets of rules as conjunctions and/or disjunctions https://swi-prolog.discourse.group/t/sets-of-rules-as-conjunctions-and-or-disjunctions/9779 No Wonder that the EyeProlog "why" feature produces nonsense. Even a Flea circus is less crazy. Bye P.S.: If only there would exist something like universities where one can take a basic course in FOL, and then a world wide web, where one can lookup clark equational theory, clark completion, curry howard correspondence, etc.. etc.. Mild Shock schrieb: > Hi, > > Obviously to generate AI Surprises, > you have to stand on the shoulder of > giants. Otherwise you will not discover > > surprises, right? Only mediocre deja vues. > For this purpose, and maybe otherwise > related, in a discussion concerning the future > > of the library, Marvin Minsky and Edward A. > Feigenbaum endorsed the idea for books > to ‘talk to each other’: > > LET DOCUMENTS TALK TO EACH OTHER > Z. CHEN - 1993 > doi.org/10.1108/eb026910 > > Now we have: > > THE MACHINES ARE STUDYING > THE HUMANS ARE SCROLLING > https://9gag.com/gag/a9yQ16o > > Bye > > P.S.: But who was Marvin Minsky, and would it > be important to use symbolic AI? > > The Perceptron Controversy > Yuxi Liu - 2024 > https://yuxi.ml/essays/perceptron-controversy > > Mild Shock schrieb: >> Hi, >> >> How it started: >> >> Filming a vitamin B12 photoreceptor in action >> https://www.psi.ch/de/news/science-features/filming-a-vitamin-b12-photoreceptor-in-action >> >> >> How its going: >> >> Elon Musk's potential FEL route could challenge EUV lithography >> https://www.kucoin.com/news/flash/elon-musk-s-potential-fel-route-could-challenge-euv-lithography >> >> >> Who will win the Nano Atom mover race, >> >> will the USA OutChip its competitor China >> and its supplier Asia in the next years? >> >> Bye >> >> Mild Shock schrieb: >>> Hi, >>> >>> Recently there was a paper somebody mentioning >>> a flit doing a ACK or NACK, to express >>> backpressure inside a Network on a Chip. >>> >>> But what is a flit? It seems multiple >>> flits can be used to create the message >>> passing in one directiob before the >>> >>> ACK or NACK in the other direction? >>> >>> "The growing need for performance from >>> computing systems drove the industry into >>> the multi-core and many-core arena. In this >>> setup, the execution of a kernel (a program) >>> is split across multiple processors and the >>> computation happens in parallel >>> >>> Flits represent logical units of information, >>> while phits represent the physical domain, >>> that is, phits represent the number of bits >>> that can be transferred in parallel in a >>> single cycle. Consider the Cray T3D. It has >>> an interconnection network which uses >>> >>> flit level message flow control wherein each >>> flit is composed of eight 16-bit phits. That >>> means its flit size is 128bits and phit size >>> is 16bits. Also consider the IBM SP2 switch. >>> It also uses the flit level message flow >>> control, but its flit size is equal to its >>> phit size, which is set to 8 bits." >>> https://en.wikipedia.org/wiki/Flit_(computer_networking)#Example >>> >>> Well my idea how this is realized in silicon >>> is rather foggy, I mean even the Hack project >>> from Nand 2 Tetris, does not show some gate level >>> schemes for flits and phits. >>> >>> Could be an interesting extension. But somehow >>> the image of flits and phits inspired my channel >>> objects here below. But I am afraid they are fire >>> and forget, no ACK and NACK: >>> >>> π-WAM Contest: 1 Million Packets with Prolog >>> https://medium.com/2989/ec3e91551773 >>> >>> Its amazing that a max_size(1) buffer >>> can beat an unbounded buffer! >>> >>> LoL >>> >>> Bye >>> >>> Mild Shock schrieb: >>>> Hi, >>>> >>>> How it started, NVIDIA being cool: >>>> >>>> NCCL provides routines such as all-gather, >>>> all-reduce, broadcast, reduce, reduce-scatter, >>>> and point-to-point send and receive. These >>>> routines are optimized to achieve high >>>> bandwidth and low latency over PCIe, >>>> NVIDIA NVLink™, and other high-speed >>>> interconnects within a node and over >>>> NVIDIA networking across nodes. >>>> https://developer.nvidia.com/nccl >>>> >>>> How its going, vLLM trying to be cool: >>>> >>>> [RFC]: Native Weight Syncing APIs >>>> However, there are no standardized methods for >>>> performing online weight syncing. Open source projects >>>> like SkyRL, VeRL, and TRL need to include their >>>> own implementations of the weight syncing >>>> infrastructure, leading to added complexity >>>> for developers seeking to adopt vLLM as their >>>> inference server for post-training workloads. >>>> https://github.com/vllm-project/vllm/issues/31848 >>>> >>>> How much Workers are enough? I guess it depends >>>> on I/O parallelism, CPU Memory parallelism, CPU >>>> Processing parallelism, and now also >>>> >>>> GPU Memory parallelism and GPU Processing >>>> parallelism, and last but least you might have >>>> a couple DMAs sitting here and there, >>>> >>>> or even invoking a sort of RDMA. Quite amazing! >>>> >>>> Bye >>>> >>>> Mild Shock schrieb: >>>>> Hi, >>>>> >>>>> Well there are two viewpoint, the "client" >>>>> of the GPU, which is the CPU, and the "server" >>>>> of the GPU, which is the command processor >>>>> >>>>> queue of the GPU device. So basically as >>>>> a CPU client I can write the memory area, >>>>> that is later mapped to my GPU code storage. >>>>> >>>>> And this way have a compiler, even written >>>>> in Prolog, that compiles pi-WAM to my Hack VM, >>>>> that can then be then deployed to GPU. >>>>> >>>>> You could also try the same with a Tiny >>>>> LISP VM. And a grown up LISP to act as >>>>> the compiler. Would be a similar exercise. >>>>> >>>>> Have Fun! >>>>> >>>>> Bye >>>>> >>>>> Mild Shock schrieb: >>>>>> Hi, >>>>>> >>>>>> > I've also added comp.theory so Mild Shock can comment. >>>>>> >>>>>> > that has different >>>>>> > * sizeof ( void * ), and >>>>>> > * sizeof ( void (*)( void ) ), >>>>>> >>>>>> Could indicate a data RAM and code ROM model. >>>>>> Which has then the advantage of: >>>>>> >>>>>> Modern operating systems like Windows 11 >>>>>> enforce strict Data Execution Prevention (DEP) >>>>>> (or NX/XD bit security features) to prevent >>>>>> malicious programs from injecting and executing >>>>>> code inside data-only memory regions. >>>>>> https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ >>>>>> >>>>>> >>>>>> I adopted data RAM and code ROM model for >>>>>> pi-WAM from Hack, which has the same separation: >>>>>> >>>>>> Slide 58, Hack Computer >>>>>> https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view >>>>>> >>>>>> >>>>>> But my motivation was not Johnny Depp prevention. >>>>>> Rather the caching of GPUs. Because WGSL >>>>>> allows storage annotations read_write and >>>>>> >>>>>> read. I use read_write for the data RAM >>>>>> of my Hack VM variant, and read for the >>>>>> code ROM of my Hack VM variant. You can >>>>>> >>>>>> see that here, its open source: >>>>>> >>>>>> @group(0) @binding(0) var<storage, read> code: array<i32>; >>>>>> @group(0) @binding(1) var<storage, read_write> state: array<i32>; >>>>>> >>>>>> 11.4 Giga Lips with a Budget Laptop >>>>>> https://github.com/Jean-Luc-Picard-2021/gigabudget >>>>>> >>>>>> Hope this Helps! >>>>>> >>>>>> Bye >>>>>> >>>>>> Johann 'Myrkraverk' Oskarsson schrieb: >>>>>>> On 03/08/2026 6:28 PM, David Brown wrote: >>>>>>>> On 03/08/2026 11:41, Richard Harnden wrote: >>>>>>>>> On 03/08/2026 09:16, David Brown wrote: >>>>>>>> >>>>>>>>>> On most targets, function pointers are the same size as void* >>>>>>>>>> pointers. But there are exceptions, with some small >>>>>>>>>> microcontrollers and DSPs having different kinds of pointers >>>>>>>>>> with different sizes, depending on the memory space involved. >>>>>>>>>> I have yet to see a situation where there was any reason for >>>>>>>>>> storing a function address in a "void*" rather than a more >>>>>>>>>> appropriate typedef, such as : >>>>>>>>>> >>>>>>>>>> typedef void (*FVoid)(void); >>>>>>>>> >>>>>>>>> dlsym requires that pointer-to-function is compatible with a void* >>>>>>>>> >>>>>>>> >>>>>>>> As I say, I have yet to see a situation where using void* for >>>>>>>> function pointers was more appropriate than using a function >>>>>>>> pointer type. If the OS system calls or standard OS libraries >>>>>>>> makes it a requirement that function pointers are converted to >>>>>>>> or from void* for some calls, then of course you need to follow >>>>>>>> those requirements - it's the people who designed the interfaces >>>>>>>> that made questionable design choices. >>>>>>>> >>>>>>> >>>>>>> Nope, you're wrong. You're dead wrong. The world isn't built on C, >>>>>>> even though here in comp.lang.c we like to pretend it is. >>>>>>> >>>>>>> Several language environments allow function generation on the fly, >>>>>>> these functions need to be garbage collected. Common Lisp is an >>>>>>> example, therefore comp.lang.lisp is added to this discussion. >>>>>>> >>>>>>> I've also added comp.theory so Mild Shock can comment. >>>>>>> >>>>>>> You will have to go out of your way to make a computer architecture >>>>>>> incompatible with garbage collected and heap allocated binary code, >>>>>>> something I've been told SBCL does internally [1] to create an >>>>>>> archi- >>>>>>> tecture that has different >>>>>>> >>>>>>> * sizeof ( void * ), and >>>>>>> * sizeof ( void (*)( void ) ), >>>>>>> >>>>>>> and when you do that, I'll just claim you're making a /malicious >>>>>>> computer architecture/ and refuse to use it. >>>>>>> >>>>>>> >>>>>>> [1] I've not looked at the code, but told the garbage collector can >>>>>>> and will at least move the code around, if not collect it. >>>>>> >>>>> >>>> >>> >> >
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-18 16:50 +0200 |
| Subject | How to shoot yourself in the foot (Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] |
| Message-ID | <1161reu$mcl7$2@solani.org> |
| In reply to | #61497 |
Hi, The biggest joke, is to have logic somewhere in procedure and somewhere in declarative, and try to see different takes on logic. They really don't know what this mantra means: Algorithm = Logic + Control And cannot relate it to the ideas of declarative reading and procedural reading. The problem is a too lax introduction of this notions, prematurely before the notion "logic" is even understood. But nobody understands the meaning of the term "logic", i.e. a set of supposedly tautological sentences, as under- stood by mathematical logic. There is a subtle error again to conflate it with a "calculus", so this website has a very misleanding title, although they try hard to not commit the fallacy, and have subtitles "Proof System" and "Logic Level": Welcome to LogicProof https://6ximik9.github.io/naturalDeduction/ Then there is this moron: There is only one “minimal logic”. The term denotes Johansson’s Minimalkalkül [1937] — intuitionistic logic without ex falso quodlibet — and nothing else. No rival system competes for the name. https://vidal-rosset.net/rule-correspondence-F.html Of course there are rival "Proof Systems" aka calculi, even when the "Logic Level" is minimal logic. It is as if Joseph Vidal-Rosset doesn't understand basic German. You have to look behind "Minimalkalkül" to find "Minimallogic". Right? To identify calculus with logic, is maybe a 1930's fallacy, but then we had model theory besides proof theory, and people should be more educated now. Model theory can be also expanded to non-classical logics and even minimal logic, to give a purely semantic reading. Ok some modern morons think they need to invoke the word "algebraic". Bye Mild Shock schrieb: > Hi, > > Sometimes I think the Loderunner Enemy AI > was way ahead of its time: > > Lode Runner - Broderbund - 1983 - Apple II > https://www.youtube.com/watch?v=pJZJepU8law > > Meanwhile SWI-Prolog Prologers even don't know > whether a Prolog text is CNF or DNF: > > Sets of rules as conjunctions and/or disjunctions > https://swi-prolog.discourse.group/t/sets-of-rules-as-conjunctions-and-or-disjunctions/9779 > > > No Wonder that the EyeProlog "why" feature produces > nonsense. Even a Flea circus is less crazy. > > Bye > > P.S.: If only there would exist something like > universities where one can take a basic course in > FOL, and then a world wide web, where one can > > lookup clark equational theory, clark completion, > curry howard correspondence, etc.. etc.. > > Mild Shock schrieb: >> Hi, >> >> Obviously to generate AI Surprises, >> you have to stand on the shoulder of >> giants. Otherwise you will not discover >> >> surprises, right? Only mediocre deja vues. >> For this purpose, and maybe otherwise >> related, in a discussion concerning the future >> >> of the library, Marvin Minsky and Edward A. >> Feigenbaum endorsed the idea for books >> to ‘talk to each other’: >> >> LET DOCUMENTS TALK TO EACH OTHER >> Z. CHEN - 1993 >> doi.org/10.1108/eb026910 >> >> Now we have: >> >> THE MACHINES ARE STUDYING >> THE HUMANS ARE SCROLLING >> https://9gag.com/gag/a9yQ16o >> >> Bye >> >> P.S.: But who was Marvin Minsky, and would it >> be important to use symbolic AI? >> >> The Perceptron Controversy >> Yuxi Liu - 2024 >> https://yuxi.ml/essays/perceptron-controversy >> >> Mild Shock schrieb: >>> Hi, >>> >>> How it started: >>> >>> Filming a vitamin B12 photoreceptor in action >>> https://www.psi.ch/de/news/science-features/filming-a-vitamin-b12-photoreceptor-in-action >>> >>> >>> How its going: >>> >>> Elon Musk's potential FEL route could challenge EUV lithography >>> https://www.kucoin.com/news/flash/elon-musk-s-potential-fel-route-could-challenge-euv-lithography >>> >>> >>> Who will win the Nano Atom mover race, >>> >>> will the USA OutChip its competitor China >>> and its supplier Asia in the next years? >>> >>> Bye >>> >>> Mild Shock schrieb: >>>> Hi, >>>> >>>> Recently there was a paper somebody mentioning >>>> a flit doing a ACK or NACK, to express >>>> backpressure inside a Network on a Chip. >>>> >>>> But what is a flit? It seems multiple >>>> flits can be used to create the message >>>> passing in one directiob before the >>>> >>>> ACK or NACK in the other direction? >>>> >>>> "The growing need for performance from >>>> computing systems drove the industry into >>>> the multi-core and many-core arena. In this >>>> setup, the execution of a kernel (a program) >>>> is split across multiple processors and the >>>> computation happens in parallel >>>> >>>> Flits represent logical units of information, >>>> while phits represent the physical domain, >>>> that is, phits represent the number of bits >>>> that can be transferred in parallel in a >>>> single cycle. Consider the Cray T3D. It has >>>> an interconnection network which uses >>>> >>>> flit level message flow control wherein each >>>> flit is composed of eight 16-bit phits. That >>>> means its flit size is 128bits and phit size >>>> is 16bits. Also consider the IBM SP2 switch. >>>> It also uses the flit level message flow >>>> control, but its flit size is equal to its >>>> phit size, which is set to 8 bits." >>>> https://en.wikipedia.org/wiki/Flit_(computer_networking)#Example >>>> >>>> Well my idea how this is realized in silicon >>>> is rather foggy, I mean even the Hack project >>>> from Nand 2 Tetris, does not show some gate level >>>> schemes for flits and phits. >>>> >>>> Could be an interesting extension. But somehow >>>> the image of flits and phits inspired my channel >>>> objects here below. But I am afraid they are fire >>>> and forget, no ACK and NACK: >>>> >>>> π-WAM Contest: 1 Million Packets with Prolog >>>> https://medium.com/2989/ec3e91551773 >>>> >>>> Its amazing that a max_size(1) buffer >>>> can beat an unbounded buffer! >>>> >>>> LoL >>>> >>>> Bye >>>> >>>> Mild Shock schrieb: >>>>> Hi, >>>>> >>>>> How it started, NVIDIA being cool: >>>>> >>>>> NCCL provides routines such as all-gather, >>>>> all-reduce, broadcast, reduce, reduce-scatter, >>>>> and point-to-point send and receive. These >>>>> routines are optimized to achieve high >>>>> bandwidth and low latency over PCIe, >>>>> NVIDIA NVLink™, and other high-speed >>>>> interconnects within a node and over >>>>> NVIDIA networking across nodes. >>>>> https://developer.nvidia.com/nccl >>>>> >>>>> How its going, vLLM trying to be cool: >>>>> >>>>> [RFC]: Native Weight Syncing APIs >>>>> However, there are no standardized methods for >>>>> performing online weight syncing. Open source projects >>>>> like SkyRL, VeRL, and TRL need to include their >>>>> own implementations of the weight syncing >>>>> infrastructure, leading to added complexity >>>>> for developers seeking to adopt vLLM as their >>>>> inference server for post-training workloads. >>>>> https://github.com/vllm-project/vllm/issues/31848 >>>>> >>>>> How much Workers are enough? I guess it depends >>>>> on I/O parallelism, CPU Memory parallelism, CPU >>>>> Processing parallelism, and now also >>>>> >>>>> GPU Memory parallelism and GPU Processing >>>>> parallelism, and last but least you might have >>>>> a couple DMAs sitting here and there, >>>>> >>>>> or even invoking a sort of RDMA. Quite amazing! >>>>> >>>>> Bye >>>>> >>>>> Mild Shock schrieb: >>>>>> Hi, >>>>>> >>>>>> Well there are two viewpoint, the "client" >>>>>> of the GPU, which is the CPU, and the "server" >>>>>> of the GPU, which is the command processor >>>>>> >>>>>> queue of the GPU device. So basically as >>>>>> a CPU client I can write the memory area, >>>>>> that is later mapped to my GPU code storage. >>>>>> >>>>>> And this way have a compiler, even written >>>>>> in Prolog, that compiles pi-WAM to my Hack VM, >>>>>> that can then be then deployed to GPU. >>>>>> >>>>>> You could also try the same with a Tiny >>>>>> LISP VM. And a grown up LISP to act as >>>>>> the compiler. Would be a similar exercise. >>>>>> >>>>>> Have Fun! >>>>>> >>>>>> Bye >>>>>> >>>>>> Mild Shock schrieb: >>>>>>> Hi, >>>>>>> >>>>>>> > I've also added comp.theory so Mild Shock can comment. >>>>>>> >>>>>>> > that has different >>>>>>> > * sizeof ( void * ), and >>>>>>> > * sizeof ( void (*)( void ) ), >>>>>>> >>>>>>> Could indicate a data RAM and code ROM model. >>>>>>> Which has then the advantage of: >>>>>>> >>>>>>> Modern operating systems like Windows 11 >>>>>>> enforce strict Data Execution Prevention (DEP) >>>>>>> (or NX/XD bit security features) to prevent >>>>>>> malicious programs from injecting and executing >>>>>>> code inside data-only memory regions. >>>>>>> https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ >>>>>>> >>>>>>> >>>>>>> I adopted data RAM and code ROM model for >>>>>>> pi-WAM from Hack, which has the same separation: >>>>>>> >>>>>>> Slide 58, Hack Computer >>>>>>> https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view >>>>>>> >>>>>>> >>>>>>> But my motivation was not Johnny Depp prevention. >>>>>>> Rather the caching of GPUs. Because WGSL >>>>>>> allows storage annotations read_write and >>>>>>> >>>>>>> read. I use read_write for the data RAM >>>>>>> of my Hack VM variant, and read for the >>>>>>> code ROM of my Hack VM variant. You can >>>>>>> >>>>>>> see that here, its open source: >>>>>>> >>>>>>> @group(0) @binding(0) var<storage, read> code: array<i32>; >>>>>>> @group(0) @binding(1) var<storage, read_write> state: array<i32>; >>>>>>> >>>>>>> 11.4 Giga Lips with a Budget Laptop >>>>>>> https://github.com/Jean-Luc-Picard-2021/gigabudget >>>>>>> >>>>>>> Hope this Helps! >>>>>>> >>>>>>> Bye >>>>>>> >>>>>>> Johann 'Myrkraverk' Oskarsson schrieb: >>>>>>>> On 03/08/2026 6:28 PM, David Brown wrote: >>>>>>>>> On 03/08/2026 11:41, Richard Harnden wrote: >>>>>>>>>> On 03/08/2026 09:16, David Brown wrote: >>>>>>>>> >>>>>>>>>>> On most targets, function pointers are the same size as void* >>>>>>>>>>> pointers. But there are exceptions, with some small >>>>>>>>>>> microcontrollers and DSPs having different kinds of pointers >>>>>>>>>>> with different sizes, depending on the memory space involved. >>>>>>>>>>> I have yet to see a situation where there was any reason for >>>>>>>>>>> storing a function address in a "void*" rather than a more >>>>>>>>>>> appropriate typedef, such as : >>>>>>>>>>> >>>>>>>>>>> typedef void (*FVoid)(void); >>>>>>>>>> >>>>>>>>>> dlsym requires that pointer-to-function is compatible with a >>>>>>>>>> void* >>>>>>>>>> >>>>>>>>> >>>>>>>>> As I say, I have yet to see a situation where using void* for >>>>>>>>> function pointers was more appropriate than using a function >>>>>>>>> pointer type. If the OS system calls or standard OS libraries >>>>>>>>> makes it a requirement that function pointers are converted to >>>>>>>>> or from void* for some calls, then of course you need to follow >>>>>>>>> those requirements - it's the people who designed the >>>>>>>>> interfaces that made questionable design choices. >>>>>>>>> >>>>>>>> >>>>>>>> Nope, you're wrong. You're dead wrong. The world isn't built >>>>>>>> on C, >>>>>>>> even though here in comp.lang.c we like to pretend it is. >>>>>>>> >>>>>>>> Several language environments allow function generation on the fly, >>>>>>>> these functions need to be garbage collected. Common Lisp is an >>>>>>>> example, therefore comp.lang.lisp is added to this discussion. >>>>>>>> >>>>>>>> I've also added comp.theory so Mild Shock can comment. >>>>>>>> >>>>>>>> You will have to go out of your way to make a computer architecture >>>>>>>> incompatible with garbage collected and heap allocated binary code, >>>>>>>> something I've been told SBCL does internally [1] to create an >>>>>>>> archi- >>>>>>>> tecture that has different >>>>>>>> >>>>>>>> * sizeof ( void * ), and >>>>>>>> * sizeof ( void (*)( void ) ), >>>>>>>> >>>>>>>> and when you do that, I'll just claim you're making a /malicious >>>>>>>> computer architecture/ and refuse to use it. >>>>>>>> >>>>>>>> >>>>>>>> [1] I've not looked at the code, but told the garbage collector can >>>>>>>> and will at least move the code around, if not collect it. >>>>>>> >>>>>> >>>>> >>>> >>> >> >
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| From | Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> |
|---|---|
| Date | 2026-08-19 03:24 +0800 |
| Subject | Re: How to shoot yourself in the foot (Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] |
| Message-ID | <0k2hS.765207$jNNe.305662@fx15.ams4> |
| In reply to | #61498 |
On 18/08/2026 10:50 PM, Mild Shock wrote: > Hi, > > The biggest joke, is to have logic somewhere > in procedure and somewhere in declarative, and > try to see different takes on logic. > > They really don't know what this mantra means: > > Algorithm = Logic + Control > > And cannot relate it to the ideas of declarative > reading and procedural reading. The problem is > a too lax introduction of this notions, > > prematurely before the notion "logic" is > even understood. But nobody understands the > meaning of the term "logic", i.e. a set of > > supposedly tautological sentences, as under- > stood by mathematical logic. There is a subtle > error again to conflate it with a "calculus", > > so this website has a very misleanding title, > although they try hard to not commit the fallacy, > and have subtitles "Proof System" and "Logic Level": > > Welcome to LogicProof > https://6ximik9.github.io/naturalDeduction/ > > Then there is this moron: > > There is only one “minimal logic”. The term denotes Johansson’s > Minimalkalkül [1937] — intuitionistic logic without ex falso quodlibet — > and nothing else. No rival system competes for the name. > https://vidal-rosset.net/rule-correspondence-F.html > > Of course there are rival "Proof Systems" aka > calculi, even when the "Logic Level" is minimal > logic. It is as if Joseph Vidal-Rosset doesn't > > understand basic German. You have to look behind > "Minimalkalkül" to find "Minimallogic". Right? > To identify calculus with logic, is maybe a 1930's > > fallacy, but then we had model theory besides > proof theory, and people should be more educated > now. Model theory can be also expanded to > > non-classical logics and even minimal logic, to > give a purely semantic reading. Ok some modern > morons think they need to invoke the word "algebraic". > All my graphic art in CorelDRAW! is done with algebraic curves. I found the regular Bezier curves simply boring, and /upgraded/ my curvatures to /algebraic/. Do you also draw with algebraic curves in your vector drawing utility of choice? Is it Xfig? -- Johann | email: invalid -> com | http://www.myrkraverk.com/blog/ I'm not from the Internet, I just work there. | via Easynews.com https://bsky.app/profile/myrkraverk.bsky.social | for ( ;; ) _:;
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| From | Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> |
|---|---|
| Date | 2026-08-19 03:21 +0800 |
| Subject | Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] |
| Message-ID | <Ug2hS.182070$nUE4.143102@fx07.ams4> |
| In reply to | #61497 |
On 18/08/2026 10:26 PM, Mild Shock wrote: > Hi, > > Sometimes I think the Loderunner Enemy AI > was way ahead of its time: > > Lode Runner - Broderbund - 1983 - Apple II > https://www.youtube.com/watch?v=pJZJepU8law > > Meanwhile SWI-Prolog Prologers even don't know > whether a Prolog text is CNF or DNF: Are you coding the SWI interfaces in RISC OS in Prolog? Isn't it much more fruitful to code it in the /Acorn RISC Machine/ assembly? > > Sets of rules as conjunctions and/or disjunctions > https://swi-prolog.discourse.group/t/sets-of-rules-as-conjunctions-and- > or-disjunctions/9779 So, is this set of conjunctions and disjunctions about how to create set intersections and unions of windows on RISC OS? Why is that important? > > No Wonder that the EyeProlog "why" feature produces > nonsense. Even a Flea circus is less crazy. Does wearing an eye patch help when writing Prolog? I ask because I have never coded any Prolog before. Corollary, since an eye patch would hide my central heterochromia, would that not hinder my ability to reason? > > Bye > > P.S.: If only there would exist something like > universities where one can take a basic course in > FOL, and then a world wide web, where one can What is F.O.L? > > lookup clark equational theory, clark completion, > curry howard correspondence, etc.. etc.. You can always complete your journey at the Clark International Airport in the Philippines. Let me know when you do. As always, you've been greatly helpful, and mildly amusing, Mild Shock! -- Johann | email: invalid -> com | http://www.myrkraverk.com/blog/ I'm not from the Internet, I just work there. | via Easynews.com https://bsky.app/profile/myrkraverk.bsky.social | for ( ;; ) _:;
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| From | Aidan Kehoe <kehoea@parhasard.net> |
|---|---|
| Date | 2026-08-18 21:13 +0100 |
| Subject | Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] |
| Message-ID | <27268.48342.40320.549939@parhasard.net> |
| In reply to | #61499 |
Ar an naoú lá déag de mí Lúnasa, scríobh Johann Oskarsson: > On 18/08/2026 10:26 PM, Mild Shock wrote: > > [...] No Wonder that the EyeProlog "why" feature produces > > nonsense. Even a Flea circus is less crazy. > > Does wearing an eye patch help when writing Prolog? I ask because I > have never coded any Prolog before. I coded Prolog in 1998-1999. It is not oriented to the underlying machine in any useful way, and its syntax is not human-friendly. I don’t recommend it. > Corollary, since an eye patch would hide my central heterochromia, would > that not hinder my ability to reason? No comment. -- ‘As I sat looking up at the Guinness ad, I could never figure out / How your man stayed up on the surfboard after fourteen pints of stout’ (C. Moore)
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| From | Lawrence D’Oliveiro <ldo@nz.invalid> |
|---|---|
| Date | 2026-08-18 22:49 +0000 |
| Subject | Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] |
| Message-ID | <1162nhe$26tip$5@dont-email.me> |
| In reply to | #61501 |
On Tue, 18 Aug 2026 21:13:10 +0100, Aidan Kehoe wrote: > I coded Prolog in 1998-1999. It is not oriented to the underlying > machine in any useful way, and its syntax is not human-friendly. I > don’t recommend it. I did briefly flirt with it, a decade earlier. I found it “very high level”, in that its brute-force pattern-matching-plus-backtracking execution paradigm was well-suited to solving certain kinds of logic problems (it’s in the name of the language after all). Though I guess you’d get a blowup in execution time and memory in more complex real-world situations. You know the old “Who Owns The Zebra?” logic puzzle (or some variant thereof)? You basically code the given clues directly into Prolog, run the result as a program, and out pops the answer.
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| From | Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> |
|---|---|
| Date | 2026-08-19 08:32 +0800 |
| Subject | Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] |
| Message-ID | <NQ6hS.1098979$la89.205442@fx06.ams4> |
| In reply to | #61502 |
On 19/08/2026 6:49 AM, Lawrence D’Oliveiro wrote: > On Tue, 18 Aug 2026 21:13:10 +0100, Aidan Kehoe wrote: > >> I coded Prolog in 1998-1999. It is not oriented to the underlying >> machine in any useful way, and its syntax is not human-friendly. I >> don’t recommend it. > > I did briefly flirt with it, a decade earlier. I found it “very high > level”, in that its brute-force pattern-matching-plus-backtracking > execution paradigm was well-suited to solving certain kinds of logic > problems (it’s in the name of the language after all). Though I guess > you’d get a blowup in execution time and memory in more complex > real-world situations. > > You know the old “Who Owns The Zebra?” logic puzzle (or some variant > thereof)? You basically code the given clues directly into Prolog, run > the result as a program, and out pops the answer. Dear Lawrence, Have you thought to code yourself as a logical puzzle solving character in text adventures, with or without the help of Prolog? Do you think you can do so without ever mentioning Python? Or do you love snakes so much you cannot live without it? Are you perhaps a graduate of the Slitherin magical university? I have added rec.arts.int-fiction to this discussion, and alt.fantasy, even though we don't discuss Slitherins there. Happy coding yourself in a text adventure game! -- Johann | email: invalid -> com | http://www.myrkraverk.com/blog/ I'm not from the Internet, I just work there. | via Easynews.com https://bsky.app/profile/myrkraverk.bsky.social | for ( ;; ) _:;
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| From | Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> |
|---|---|
| Date | 2026-08-19 08:27 +0800 |
| Subject | Re: Loderunner Enemy AI better than SWI-Prolog? [Prolog Education Group] |
| Message-ID | <qL6hS.1098978$la89.964421@fx06.ams4> |
| In reply to | #61501 |
On 19/08/2026 4:13 AM, Aidan Kehoe wrote: > > Ar an naoú lá déag de mí Lúnasa, scríobh Johann Oskarsson: > > > On 18/08/2026 10:26 PM, Mild Shock wrote: > > > [...] No Wonder that the EyeProlog "why" feature produces > > > nonsense. Even a Flea circus is less crazy. > > > > Does wearing an eye patch help when writing Prolog? I ask because I > > have never coded any Prolog before. > > I coded Prolog in 1998-1999. It is not oriented to the underlying machine in > any useful way, and its syntax is not human-friendly. I don’t recommend it. Dear Aidan, Thank you for that summary. Now I positively know that I am in no hurry to dabble in Prolog, eye patch or no eye patch; see below. > > > Corollary, since an eye patch would hide my central heterochromia, would > > that not hinder my ability to reason? > > No comment. > This was an oblique and opaque reference to the great literary work of Torako of Japan called /Chuunibyou demo Koi ga Shitai/, or /Love, Chunibyo & Other Delusions/ and while I don't like to link to Wikipedia, it has a picture of the eye patch in question, so you can gaze upon the wonder that is Rikka Taka- nashi, https://en.wikipedia.org/wiki/Love,_Chunibyo_%26_Other_Delusions and I sincerely hope that you consider adding this work of great litera- ture to your no-doubt ever-growing pile of Tsundoku. And unlike the literary work, or anime if you prefer, my central hetero- chromia is not something I can just turn on and off; it's always there. I do not have an /evil eye/, at least in the traditional sense of liter- ary fantasy, but am willing to dabble in evil according to the dogma of the G.N.U. fantasy reality. And on the subject of such evils, you'll see me join the XEmacs list of mails in the near future, so I added comp.emacs.xemacs to this discuss- ion. Best wishes! -- Johann | email: invalid -> com | http://www.myrkraverk.com/blog/ I'm not from the Internet, I just work there. | via Easynews.com https://bsky.app/profile/myrkraverk.bsky.social | for ( ;; ) _:;
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-11 16:27 +0200 |
| Subject | The Mac Neo is a Budget Monster [GPU Channels] (Re: What are Flits and Phits? [Network on a Chip]) |
| Message-ID | <115fbgm$9vhm$3@solani.org> |
| In reply to | #61325 |
Hi, Now I implemented some multiple producer and multiple consumer channel objects for WebGPU. The only API to integrate it user facing into pi-WAM is this single predicate: /** * flit(C): * The predicate succeeds in C with a new channel. The channel * can be used from within GPU backed π-WAM logical threads. */ The Mac Neo is a Budget Monster. While the Ryzen AI Laptop cost around 1300.- CHF. The Mac Neo was around 600.- CHF with all extras. Here some performance results, checking out whether channel objects scale, when increasing their number to communicate the same 1 millon packets: Java performance: AI Laptop Single Double Ryzen 705.1 337.4 Neo 669.4 239.9 WebGPU performance: AI Laptop Single Double Ryzen 731.8 392.9 Neo 932.8 483.5 Cool! Java is also pretty cool, their semaphore library is top notch. I couldn't replicate the resulst with JavaScript yet, seems their Atomics.wait() resp. Atomics.waitAsync() is totally broken, using futex is mutex for fools somehow. I also found some gremlins attacking one of the GPUs. The Intel AI Laptop fails the above experiment. Maybe its a driver Vulkan versus OpenCL or something problem, or the Lunar lake architecture is nonsense. Bye Mild Shock schrieb: > Hi, > > Recently there was a paper somebody mentioning > a flit doing a ACK or NACK, to express > backpressure inside a Network on a Chip. > > But what is a flit? It seems multiple > flits can be used to create the message > passing in one directiob before the > > ACK or NACK in the other direction? > > "The growing need for performance from > computing systems drove the industry into > the multi-core and many-core arena. In this > setup, the execution of a kernel (a program) > is split across multiple processors and the > computation happens in parallel > > Flits represent logical units of information, > while phits represent the physical domain, > that is, phits represent the number of bits > that can be transferred in parallel in a > single cycle. Consider the Cray T3D. It has > an interconnection network which uses > > flit level message flow control wherein each > flit is composed of eight 16-bit phits. That > means its flit size is 128bits and phit size > is 16bits. Also consider the IBM SP2 switch. > It also uses the flit level message flow > control, but its flit size is equal to its > phit size, which is set to 8 bits." > https://en.wikipedia.org/wiki/Flit_(computer_networking)#Example > > Well my idea how this is realized in silicon > is rather foggy, I mean even the Hack project > from Nand 2 Tetris, does not show some gate level > schemes for flits and phits. > > Could be an interesting extension. But somehow > the image of flits and phits inspired my channel > objects here below. But I am afraid they are fire > and forget, no ACK and NACK: > > π-WAM Contest: 1 Million Packets with Prolog > https://medium.com/2989/ec3e91551773 > > Its amazing that a max_size(1) buffer > can beat an unbounded buffer! > > LoL > > Bye > > Mild Shock schrieb: >> Hi, >> >> How it started, NVIDIA being cool: >> >> NCCL provides routines such as all-gather, >> all-reduce, broadcast, reduce, reduce-scatter, >> and point-to-point send and receive. These >> routines are optimized to achieve high >> bandwidth and low latency over PCIe, >> NVIDIA NVLink™, and other high-speed >> interconnects within a node and over >> NVIDIA networking across nodes. >> https://developer.nvidia.com/nccl >> >> How its going, vLLM trying to be cool: >> >> [RFC]: Native Weight Syncing APIs >> However, there are no standardized methods for >> performing online weight syncing. Open source projects >> like SkyRL, VeRL, and TRL need to include their >> own implementations of the weight syncing >> infrastructure, leading to added complexity >> for developers seeking to adopt vLLM as their >> inference server for post-training workloads. >> https://github.com/vllm-project/vllm/issues/31848 >> >> How much Workers are enough? I guess it depends >> on I/O parallelism, CPU Memory parallelism, CPU >> Processing parallelism, and now also >> >> GPU Memory parallelism and GPU Processing >> parallelism, and last but least you might have >> a couple DMAs sitting here and there, >> >> or even invoking a sort of RDMA. Quite amazing! >> >> Bye >> >> Mild Shock schrieb: >>> Hi, >>> >>> Well there are two viewpoint, the "client" >>> of the GPU, which is the CPU, and the "server" >>> of the GPU, which is the command processor >>> >>> queue of the GPU device. So basically as >>> a CPU client I can write the memory area, >>> that is later mapped to my GPU code storage. >>> >>> And this way have a compiler, even written >>> in Prolog, that compiles pi-WAM to my Hack VM, >>> that can then be then deployed to GPU. >>> >>> You could also try the same with a Tiny >>> LISP VM. And a grown up LISP to act as >>> the compiler. Would be a similar exercise. >>> >>> Have Fun! >>> >>> Bye >>> >>> Mild Shock schrieb: >>>> Hi, >>>> >>>> > I've also added comp.theory so Mild Shock can comment. >>>> >>>> > that has different >>>> > * sizeof ( void * ), and >>>> > * sizeof ( void (*)( void ) ), >>>> >>>> Could indicate a data RAM and code ROM model. >>>> Which has then the advantage of: >>>> >>>> Modern operating systems like Windows 11 >>>> enforce strict Data Execution Prevention (DEP) >>>> (or NX/XD bit security features) to prevent >>>> malicious programs from injecting and executing >>>> code inside data-only memory regions. >>>> https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ >>>> >>>> I adopted data RAM and code ROM model for >>>> pi-WAM from Hack, which has the same separation: >>>> >>>> Slide 58, Hack Computer >>>> https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view >>>> >>>> But my motivation was not Johnny Depp prevention. >>>> Rather the caching of GPUs. Because WGSL >>>> allows storage annotations read_write and >>>> >>>> read. I use read_write for the data RAM >>>> of my Hack VM variant, and read for the >>>> code ROM of my Hack VM variant. You can >>>> >>>> see that here, its open source: >>>> >>>> @group(0) @binding(0) var<storage, read> code: array<i32>; >>>> @group(0) @binding(1) var<storage, read_write> state: array<i32>; >>>> >>>> 11.4 Giga Lips with a Budget Laptop >>>> https://github.com/Jean-Luc-Picard-2021/gigabudget >>>> >>>> Hope this Helps! >>>> >>>> Bye >>>> >>>> Johann 'Myrkraverk' Oskarsson schrieb: >>>>> On 03/08/2026 6:28 PM, David Brown wrote: >>>>>> On 03/08/2026 11:41, Richard Harnden wrote: >>>>>>> On 03/08/2026 09:16, David Brown wrote: >>>>>> >>>>>>>> On most targets, function pointers are the same size as void* >>>>>>>> pointers. But there are exceptions, with some small >>>>>>>> microcontrollers and DSPs having different kinds of pointers >>>>>>>> with different sizes, depending on the memory space involved. I >>>>>>>> have yet to see a situation where there was any reason for >>>>>>>> storing a function address in a "void*" rather than a more >>>>>>>> appropriate typedef, such as : >>>>>>>> >>>>>>>> typedef void (*FVoid)(void); >>>>>>> >>>>>>> dlsym requires that pointer-to-function is compatible with a void* >>>>>>> >>>>>> >>>>>> As I say, I have yet to see a situation where using void* for >>>>>> function pointers was more appropriate than using a function >>>>>> pointer type. If the OS system calls or standard OS libraries >>>>>> makes it a requirement that function pointers are converted to or >>>>>> from void* for some calls, then of course you need to follow those >>>>>> requirements - it's the people who designed the interfaces that >>>>>> made questionable design choices. >>>>>> >>>>> >>>>> Nope, you're wrong. You're dead wrong. The world isn't built on C, >>>>> even though here in comp.lang.c we like to pretend it is. >>>>> >>>>> Several language environments allow function generation on the fly, >>>>> these functions need to be garbage collected. Common Lisp is an >>>>> example, therefore comp.lang.lisp is added to this discussion. >>>>> >>>>> I've also added comp.theory so Mild Shock can comment. >>>>> >>>>> You will have to go out of your way to make a computer architecture >>>>> incompatible with garbage collected and heap allocated binary code, >>>>> something I've been told SBCL does internally [1] to create an archi- >>>>> tecture that has different >>>>> >>>>> * sizeof ( void * ), and >>>>> * sizeof ( void (*)( void ) ), >>>>> >>>>> and when you do that, I'll just claim you're making a /malicious >>>>> computer architecture/ and refuse to use it. >>>>> >>>>> >>>>> [1] I've not looked at the code, but told the garbage collector can >>>>> and will at least move the code around, if not collect it. >>>> >>> >> >
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| From | Mild Shock <janburse@fastmail.fm> |
|---|---|
| Date | 2026-08-11 16:51 +0200 |
| Subject | The luminaries of duct-tape engineering [Sweeney and Torvald] (Was: The Mac Neo is a Budget Monster [GPU Channels]) |
| Message-ID | <115fcu9$a0tm$1@solani.org> |
| In reply to | #61377 |
Hi, We didn't find yet a library for our Think that would support webgpu on the ARM architecture, so its back to the browser flag and testing there. The node.js package comes only with: dist +-- d3dcompiler_47.dll +-- darwin-universal.dawn.node +-- linux-arm64.dawn.node +-- linux-x64.dawn.node +-- win32-x64.dawn.node Its a similar situation like with SVN. In some communities its not common to provide a ARM build. They rather use x86 till the end of the universe. Although we think initiatives like the x86 Ecosystem Advisory Group could be a clever marketing trick to hide a funeral service. Adding "luminaries" such as Tim Sweeney and Linus Torvald to the panel, is even more so a joke, given that intel produces mutex bottlenecks instead of futex, where f stands for fast, in their GPU infrastructure. So who is the teacher and who are the students? But why even try to create a collation against ARM, it doesn't make any sense. Bye Mild Shock schrieb: > Hi, > > Now I implemented some multiple producer > and multiple consumer channel objects for > WebGPU. The only API to integrate it user > > facing into pi-WAM is this single predicate: > > /** > * flit(C): > * The predicate succeeds in C with a new channel. The channel > * can be used from within GPU backed π-WAM logical threads. > */ > > The Mac Neo is a Budget Monster. While the > Ryzen AI Laptop cost around 1300.- CHF. > The Mac Neo was around 600.- CHF with all > > extras. Here some performance results, > checking out whether channel objects scale, > when increasing their number to > > communicate the same 1 millon packets: > > Java performance: > > AI Laptop Single Double > Ryzen 705.1 337.4 > Neo 669.4 239.9 > > WebGPU performance: > > AI Laptop Single Double > Ryzen 731.8 392.9 > Neo 932.8 483.5 > > Cool! Java is also pretty cool, their > semaphore library is top notch. I couldn't > replicate the resulst with JavaScript yet, > > seems their Atomics.wait() resp. Atomics.waitAsync() > is totally broken, using futex is mutex for > fools somehow. I also found some gremlins > > attacking one of the GPUs. The Intel AI Laptop > fails the above experiment. Maybe its a driver > Vulkan versus OpenCL or something problem, > > or the Lunar lake architecture is nonsense. > > Bye > > Mild Shock schrieb: >> Hi, >> >> Recently there was a paper somebody mentioning >> a flit doing a ACK or NACK, to express >> backpressure inside a Network on a Chip. >> >> But what is a flit? It seems multiple >> flits can be used to create the message >> passing in one directiob before the >> >> ACK or NACK in the other direction? >> >> "The growing need for performance from >> computing systems drove the industry into >> the multi-core and many-core arena. In this >> setup, the execution of a kernel (a program) >> is split across multiple processors and the >> computation happens in parallel >> >> Flits represent logical units of information, >> while phits represent the physical domain, >> that is, phits represent the number of bits >> that can be transferred in parallel in a >> single cycle. Consider the Cray T3D. It has >> an interconnection network which uses >> >> flit level message flow control wherein each >> flit is composed of eight 16-bit phits. That >> means its flit size is 128bits and phit size >> is 16bits. Also consider the IBM SP2 switch. >> It also uses the flit level message flow >> control, but its flit size is equal to its >> phit size, which is set to 8 bits." >> https://en.wikipedia.org/wiki/Flit_(computer_networking)#Example >> >> Well my idea how this is realized in silicon >> is rather foggy, I mean even the Hack project >> from Nand 2 Tetris, does not show some gate level >> schemes for flits and phits. >> >> Could be an interesting extension. But somehow >> the image of flits and phits inspired my channel >> objects here below. But I am afraid they are fire >> and forget, no ACK and NACK: >> >> π-WAM Contest: 1 Million Packets with Prolog >> https://medium.com/2989/ec3e91551773 >> >> Its amazing that a max_size(1) buffer >> can beat an unbounded buffer! >> >> LoL >> >> Bye >> >> Mild Shock schrieb: >>> Hi, >>> >>> How it started, NVIDIA being cool: >>> >>> NCCL provides routines such as all-gather, >>> all-reduce, broadcast, reduce, reduce-scatter, >>> and point-to-point send and receive. These >>> routines are optimized to achieve high >>> bandwidth and low latency over PCIe, >>> NVIDIA NVLink™, and other high-speed >>> interconnects within a node and over >>> NVIDIA networking across nodes. >>> https://developer.nvidia.com/nccl >>> >>> How its going, vLLM trying to be cool: >>> >>> [RFC]: Native Weight Syncing APIs >>> However, there are no standardized methods for >>> performing online weight syncing. Open source projects >>> like SkyRL, VeRL, and TRL need to include their >>> own implementations of the weight syncing >>> infrastructure, leading to added complexity >>> for developers seeking to adopt vLLM as their >>> inference server for post-training workloads. >>> https://github.com/vllm-project/vllm/issues/31848 >>> >>> How much Workers are enough? I guess it depends >>> on I/O parallelism, CPU Memory parallelism, CPU >>> Processing parallelism, and now also >>> >>> GPU Memory parallelism and GPU Processing >>> parallelism, and last but least you might have >>> a couple DMAs sitting here and there, >>> >>> or even invoking a sort of RDMA. Quite amazing! >>> >>> Bye >>> >>> Mild Shock schrieb: >>>> Hi, >>>> >>>> Well there are two viewpoint, the "client" >>>> of the GPU, which is the CPU, and the "server" >>>> of the GPU, which is the command processor >>>> >>>> queue of the GPU device. So basically as >>>> a CPU client I can write the memory area, >>>> that is later mapped to my GPU code storage. >>>> >>>> And this way have a compiler, even written >>>> in Prolog, that compiles pi-WAM to my Hack VM, >>>> that can then be then deployed to GPU. >>>> >>>> You could also try the same with a Tiny >>>> LISP VM. And a grown up LISP to act as >>>> the compiler. Would be a similar exercise. >>>> >>>> Have Fun! >>>> >>>> Bye >>>> >>>> Mild Shock schrieb: >>>>> Hi, >>>>> >>>>> > I've also added comp.theory so Mild Shock can comment. >>>>> >>>>> > that has different >>>>> > * sizeof ( void * ), and >>>>> > * sizeof ( void (*)( void ) ), >>>>> >>>>> Could indicate a data RAM and code ROM model. >>>>> Which has then the advantage of: >>>>> >>>>> Modern operating systems like Windows 11 >>>>> enforce strict Data Execution Prevention (DEP) >>>>> (or NX/XD bit security features) to prevent >>>>> malicious programs from injecting and executing >>>>> code inside data-only memory regions. >>>>> https://root-nation.com/en/soft-en/lifehacks/en-dep-windows-all-about/ >>>>> >>>>> I adopted data RAM and code ROM model for >>>>> pi-WAM from Hack, which has the same separation: >>>>> >>>>> Slide 58, Hack Computer >>>>> https://drive.google.com/file/d/1Z_fxYmmRNXTkAzmZ6YMoX9NXZIRVCKiw/view >>>>> >>>>> But my motivation was not Johnny Depp prevention. >>>>> Rather the caching of GPUs. Because WGSL >>>>> allows storage annotations read_write and >>>>> >>>>> read. I use read_write for the data RAM >>>>> of my Hack VM variant, and read for the >>>>> code ROM of my Hack VM variant. You can >>>>> >>>>> see that here, its open source: >>>>> >>>>> @group(0) @binding(0) var<storage, read> code: array<i32>; >>>>> @group(0) @binding(1) var<storage, read_write> state: array<i32>; >>>>> >>>>> 11.4 Giga Lips with a Budget Laptop >>>>> https://github.com/Jean-Luc-Picard-2021/gigabudget >>>>> >>>>> Hope this Helps! >>>>> >>>>> Bye >>>>> >>>>> Johann 'Myrkraverk' Oskarsson schrieb: >>>>>> On 03/08/2026 6:28 PM, David Brown wrote: >>>>>>> On 03/08/2026 11:41, Richard Harnden wrote: >>>>>>>> On 03/08/2026 09:16, David Brown wrote: >>>>>>> >>>>>>>>> On most targets, function pointers are the same size as void* >>>>>>>>> pointers. But there are exceptions, with some small >>>>>>>>> microcontrollers and DSPs having different kinds of pointers >>>>>>>>> with different sizes, depending on the memory space involved. >>>>>>>>> I have yet to see a situation where there was any reason for >>>>>>>>> storing a function address in a "void*" rather than a more >>>>>>>>> appropriate typedef, such as : >>>>>>>>> >>>>>>>>> typedef void (*FVoid)(void); >>>>>>>> >>>>>>>> dlsym requires that pointer-to-function is compatible with a void* >>>>>>>> >>>>>>> >>>>>>> As I say, I have yet to see a situation where using void* for >>>>>>> function pointers was more appropriate than using a function >>>>>>> pointer type. If the OS system calls or standard OS libraries >>>>>>> makes it a requirement that function pointers are converted to or >>>>>>> from void* for some calls, then of course you need to follow >>>>>>> those requirements - it's the people who designed the interfaces >>>>>>> that made questionable design choices. >>>>>>> >>>>>> >>>>>> Nope, you're wrong. You're dead wrong. The world isn't built on C, >>>>>> even though here in comp.lang.c we like to pretend it is. >>>>>> >>>>>> Several language environments allow function generation on the fly, >>>>>> these functions need to be garbage collected. Common Lisp is an >>>>>> example, therefore comp.lang.lisp is added to this discussion. >>>>>> >>>>>> I've also added comp.theory so Mild Shock can comment. >>>>>> >>>>>> You will have to go out of your way to make a computer architecture >>>>>> incompatible with garbage collected and heap allocated binary code, >>>>>> something I've been told SBCL does internally [1] to create an archi- >>>>>> tecture that has different >>>>>> >>>>>> * sizeof ( void * ), and >>>>>> * sizeof ( void (*)( void ) ), >>>>>> >>>>>> and when you do that, I'll just claim you're making a /malicious >>>>>> computer architecture/ and refuse to use it. >>>>>> >>>>>> >>>>>> [1] I've not looked at the code, but told the garbage collector can >>>>>> and will at least move the code around, if not collect it. >>>>> >>>> >>> >> >
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| From | Aidan Kehoe <kehoea@parhasard.net> |
|---|---|
| Date | 2026-08-03 19:51 +0100 |
| Subject | Re: Malicious Computer Architecture |
| Message-ID | <27248.58134.739884.512819@parhasard.net> |
| In reply to | #61270 |
Ar an triú lá de mí Lúnasa, scríobh Johann Oskarsson: > On 03/08/2026 6:28 PM, David Brown wrote: > > On 03/08/2026 11:41, Richard Harnden wrote: > >> On 03/08/2026 09:16, David Brown wrote: > > > >>> On most targets, function pointers are the same size as void* pointers. > >>> But there are exceptions, with some small microcontrollers and DSPs > >>> having different kinds of pointers with different sizes, depending on > >>> the memory space involved. I have yet to see a situation where there > >>> was any reason for storing a function address in a "void*" rather than a > >>> more appropriate typedef, such as : > >>> > >>> typedef void (*FVoid)(void); > >> > >> dlsym requires that pointer-to-function is compatible with a void* > > > > As I say, I have yet to see a situation where using void* for function > > pointers was more appropriate than using a function pointer type. If the > > OS system calls or standard OS libraries makes it a requirement that > > function pointers are converted to or from void* for some calls, then of > > course you need to follow those requirements - it's the people who > > designed the interfaces that made questionable design choices. > > Nope, you're wrong. You're dead wrong. The world isn't built on C, > even though here in comp.lang.c we like to pretend it is. The habit when I read comp.lang.c it was to assert that standard C was all that was worth discussing (yes, yes, it’s phrased as standard C is on topic, everything else isn’t; but there wasn’t the activity in the architecture-specific groups for them to be helpful when I was reading it). This is even more ridiculous; almost all the C infrastructure out there relies on what is undefined behaviour by the letter of the standard. But it’s still C, and it’s worth understanding and worth writing. Oh well, thank you the autoconf maintainers, thank you the cmake maintainers, shame about the difficulty with cross-compiling. > Several language environments allow function generation on the fly, > these functions need to be garbage collected. Common Lisp is an > example, therefore comp.lang.lisp is added to this discussion. > > I've also added comp.theory so Mild Shock can comment. > > You will have to go out of your way to make a computer architecture > incompatible with garbage collected and heap allocated binary code, > something I've been told SBCL does internally [1] to create an archi- > tecture that has different I haven’t gone into the weeds of the GNU Emacs native-compiled function implementation, but it has to be doing something similar. The functions are not in the data segment, they’re not in BSS, they’re not on the stack; that leaves the heap. > * sizeof ( void * ), and > * sizeof ( void (*)( void ) ), > > and when you do that, I'll just claim you're making a /malicious > computer architecture/ and refuse to use it. Note that GCC on AMD64 produces function pointers that are one-byte aligned, which to me is a similar philosophy. There cannot be any performance advantage to that. > [1] I've not looked at the code, but told the garbage collector can > and will at least move the code around, if not collect it. -- ‘As I sat looking up at the Guinness ad, I could never figure out / How your man stayed up on the surfboard after fourteen pints of stout’ (C. Moore)
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| From | Johann 'Myrkraverk' Oskarsson <johann@myrkraverk.invalid> |
|---|---|
| Date | 2026-08-05 00:22 +0800 |
| Subject | Re: Malicious Computer Architecture |
| Message-ID | <blocS.832$Be5.329@fx13.ams4> |
| In reply to | #61274 |
On 04/08/2026 2:51 AM, Aidan Kehoe wrote:
Hello Aidan,
We haven't spoken for a long time, and I guess we're moving in different
social circles now.
You will find it amusing that my patch to the FreeBSD kernel, the one
that kind of tunes the TCP/IP stack, is presumably used by Whatsapp as
well.
At least, that's the rumor I heard; I wouldn't know the truth as I don't
work for Whatsapp. I thought only 5ch and Netflix had sites large
enough to make use of it. Well, sites both large enough, and hosted on
FreeBSD.
I promised myself to look into it later, and if I'm right -- at least,
that my patch is still there and all -- I'll let you know.
It's always fun to know that whenever someone streams from Netflix, the
TCP/IP patch I applied is being used; though I cannot say that it
streams through my code; it wasn't that kind of patch.
And I didn't, and don't work for Netflix either.
I hope you're also leaving trails of patches in various operating
systems that everyone on the planet, more or less, makes use of.
>
> Ar an triú lá de mí Lúnasa, scríobh Johann Oskarsson:
>
> > On 03/08/2026 6:28 PM, David Brown wrote:
> > > On 03/08/2026 11:41, Richard Harnden wrote:
> > >> On 03/08/2026 09:16, David Brown wrote:
> > >
> > >>> On most targets, function pointers are the same size as void* pointers.
> > >>> But there are exceptions, with some small microcontrollers and DSPs
> > >>> having different kinds of pointers with different sizes, depending on
> > >>> the memory space involved. I have yet to see a situation where there
> > >>> was any reason for storing a function address in a "void*" rather than a
> > >>> more appropriate typedef, such as :
> > >>>
> > >>> typedef void (*FVoid)(void);
> > >>
> > >> dlsym requires that pointer-to-function is compatible with a void*
> > >
> > > As I say, I have yet to see a situation where using void* for function
> > > pointers was more appropriate than using a function pointer type. If the
> > > OS system calls or standard OS libraries makes it a requirement that
> > > function pointers are converted to or from void* for some calls, then of
> > > course you need to follow those requirements - it's the people who
> > > designed the interfaces that made questionable design choices.
> >
> > Nope, you're wrong. You're dead wrong. The world isn't built on C,
> > even though here in comp.lang.c we like to pretend it is.
>
> The habit when I read comp.lang.c it was to assert that standard C was all that
> was worth discussing (yes, yes, it’s phrased as standard C is on topic,
> everything else isn’t; but there wasn’t the activity in the
> architecture-specific groups for them to be helpful when I was reading it).
> This is even more ridiculous; almost all the C infrastructure out there relies
> on what is undefined behaviour by the letter of the standard. But it’s still C,
> and it’s worth understanding and worth writing.
Yes, I remember that. I believe I came across a FAQ, probably comp.os.
msdos.programmer, that said because comp.lang.c was full of standard
thumping trolls, a lot of regular programming, even Win32 got discussed
there. Yes, I'll quote.
> Why does the newsgroup seem to be so C-oriented sometimes?
> There are two reasons. First, comp.lang.c and
> comp.lang.pascal have evolved in different
> directions. Comp.lang.pascal has split into discussions
> about individual Pascal compilers. comp.lang.pascal.borland
> welcomes discussion specific to Turbo Pascal, and the other
> new groups likewise. Turbo Pascal programmers tend to find
> DOS questions welcomed in comp.lang.pascal.borland, so that
> comp.os.msdos.programmer gets less of the "DOS in Turbo
> Pascal" traffic. On the other hand, comp.lang.c has stayed
> closer to talking only about the C language, and
> vendor-specific or operating-system-specific questions are
> not welcome. This tends to push questions about disks, DOS
> file structure, video, the keyboard, TSRs, etc. to
> comp.os.msdos.programmer even when those programs are
> written in C.
So my take on it, is that the standard thumping trolls in comp.lang.c
were already a problem in the 90s. They just didn't know it, didn't
care, and nobody challenged them about it. Until now.
I am challenging their rule. And they can whine, and they can bluster,
but nobody cares about their mistaken sense of prestige and power.
They claim my cross posting is annoying. As far as I'm aware, I'm
basically screaming into the void with my cross posts, because there
isn't enough traffic in the other groups to warrant complaints about it.
>
> Oh well, thank you the autoconf maintainers, thank you the cmake maintainers,
> shame about the difficulty with cross-compiling.
On that subject, I have to agree. I've largely given up on both for my
own projects. The problems with these tools isn't when they work, it's
when they don't. It can be a nightmare to get to the first build on a
platform where the build system doesn't work.
I currently believe both tools make porting to a /different enough
platform/ basically impossible. And that's based on hard earned
experience.
>
> > Several language environments allow function generation on the fly,
> > these functions need to be garbage collected. Common Lisp is an
> > example, therefore comp.lang.lisp is added to this discussion.
> >
> > I've also added comp.theory so Mild Shock can comment.
> >
> > You will have to go out of your way to make a computer architecture
> > incompatible with garbage collected and heap allocated binary code,
> > something I've been told SBCL does internally [1] to create an archi-
> > tecture that has different
>
> I haven’t gone into the weeds of the GNU Emacs native-compiled function
> implementation, but it has to be doing something similar. The functions are not
> in the data segment, they’re not in BSS, they’re not on the stack; that leaves
> the heap.
And not to mention the operating system interfaces. I'll name mmap(),
and Win32 has its equivalent, and while I'm not sure, OpenVMS might be
different too.
All of them return the equivalent of void *. So what are the program-
mers of the JVM, CLR, and other virtual machines to do? They'll have
to rely on this "undefined behaviour."
>
> > * sizeof ( void * ), and
> > * sizeof ( void (*)( void ) ),
> >
> > and when you do that, I'll just claim you're making a /malicious
> > computer architecture/ and refuse to use it.
>
> Note that GCC on AMD64 produces function pointers that are one-byte aligned,
> which to me is a similar philosophy. There cannot be any performance advantage
> to that.
Can you please expand on that? I'm not sure what you mean, and I hope
it doesn't create function pointers at strictly odd addresses, because
that's what it sounds like to me.
>
> > [1] I've not looked at the code, but told the garbage collector can
> > and will at least move the code around, if not collect it.
>
Best wishes, and happy XEmacs coding!
--
Johann | email: invalid -> com | http://www.myrkraverk.com/blog/
I'm not from the Internet, I just work there. | via Easynews.com
https://bsky.app/profile/myrkraverk.bsky.social
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| From | Richard Harnden <richard.nospam@gmail.invalid> |
|---|---|
| Date | 2026-08-04 19:10 +0100 |
| Subject | Re: Malicious Computer Architecture |
| Message-ID | <114t9u9$2c1qh$1@dont-email.me> |
| In reply to | #61279 |
On 04/08/2026 17:22, Johann 'Myrkraverk' Oskarsson wrote: > And not to mention the operating system interfaces. I'll name mmap(), > and Win32 has its equivalent, and while I'm not sure, OpenVMS might be > different too. > > All of them return the equivalent of void *. So what are the program- > mers of the JVM, CLR, and other virtual machines to do? They'll have > to rely on this "undefined behaviour." I suspect its because I'm not a genius like you, but ... malloc(3) also returns a void* and that is perfectly well defined, is used everywhere and never caused anybody any problems. ... it seems to me you are, as usual, talking bollocks.
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