Dan Gohman
2012-Nov-01 22:08 UTC
[LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level
On Tue, Oct 30, 2012 at 8:28 PM, Michael Ilseman <milseman at apple.com> wrote:>> This is similar to how gcc defines *-fno-signed-zeros:* > "Allow optimizations for floating point arithmetic that ignore the > signedness of zero. IEEE arithmetic specifies the behavior of distinct > +0.0 and -0.0 values, which then prohibits simplification of expressions > such as x+0.0 or 0.0*x (even with *-ffinite-math-only*). This option > implies that the sign of a zero result isn't significant." > > I'll revise my description to also mention that the sign of a zero result > isn't significant. >Ok, I see what you're saying here now.> > Also, even when you do have the second sentence, it seems to contradict > the first sentence. > > > Why does it contradict the first sentence? I meant it as a clarification > or reinforcement of the first, not a contradiction. >Suppose I'm writing a backend for a target which has an instruction that traps on any kind of NaN. Assuming I care about NaNs, I can't use such an instruction for regular floating-point operations. However, would it be ok to use it when the N flag is set? If the "optimizer" may truly ignore the possibility of NaNs under the N flag, this would seem to be ok. However, a trap is outside the boundaries of "undefined result". So, which half is right? Dan -------------- next part -------------- An HTML attachment was scrubbed... URL: <http://lists.llvm.org/pipermail/llvm-dev/attachments/20121101/3be3166d/attachment.html>
Krzysztof Parzyszek
2012-Nov-01 22:56 UTC
[LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level
On 11/1/2012 5:08 PM, Dan Gohman wrote:> > Suppose I'm writing a backend for a target which has an instruction that > traps on any kind of NaN. Assuming I care about NaNs, I can't use such > an instruction for regular floating-point operations. However, would it > be ok to use it when the N flag is set?I've lost track here. What kind of instruction are you talking about? -Krzysztof -- Qualcomm Innovation Center, Inc. is a member of Code Aurora Forum, hosted by The Linux Foundation
Michael Ilseman
2012-Nov-01 23:38 UTC
[LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level
On Nov 1, 2012, at 3:08 PM, Dan Gohman <dan433584 at gmail.com> wrote:> On Tue, Oct 30, 2012 at 8:28 PM, Michael Ilseman <milseman at apple.com> wrote: > > This is similar to how gcc defines -fno-signed-zeros: > "Allow optimizations for floating point arithmetic that ignore the signedness of zero. IEEE arithmetic specifies the behavior of distinct +0.0 and -0.0 values, which then prohibits simplification of expressions such as x+0.0 or 0.0*x (even with -ffinite-math-only). This option implies that the sign of a zero result isn't significant." > > I'll revise my description to also mention that the sign of a zero result isn't significant. > > Ok, I see what you're saying here now. > > >> Also, even when you do have the second sentence, it seems to contradict the first sentence. >> > > Why does it contradict the first sentence? I meant it as a clarification or reinforcement of the first, not a contradiction. > > Suppose I'm writing a backend for a target which has an instruction that traps on any kind of NaN. Assuming I care about NaNs, I can't use such an instruction for regular floating-point operations. However, would it be ok to use it when the N flag is set? > > If the "optimizer" may truly ignore the possibility of NaNs under the N flag, this would seem to be ok. However, a trap is outside the boundaries of "undefined result". So, which half is right? >That makes sense, I was thinking of things only in terms of the optimizer and not in terms of instruction selection. Which do you think is better, Undefined Behavior or that instruction selection should disregard those bits? I'd lean towards undefined behavior, but I don't have a good feel for LLVM's overall design for undefined behavior, poison values, etc.> Dan >-------------- next part -------------- An HTML attachment was scrubbed... URL: <http://lists.llvm.org/pipermail/llvm-dev/attachments/20121101/45a2d48d/attachment.html>
Krzysztof Parzyszek
2012-Nov-02 01:41 UTC
[LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level
On 11/1/2012 6:38 PM, Michael Ilseman wrote:> > On Nov 1, 2012, at 3:08 PM, Dan Gohman <dan433584 at gmail.com > <mailto:dan433584 at gmail.com>> wrote: >> >> If the "optimizer" may truly ignore the possibility of NaNs under the >> N flag, this would seem to be ok. However, a trap is outside the >> boundaries of "undefined result". So, which half is right? >> > > That makes sense, I was thinking of things only in terms of the > optimizer and not in terms of instruction selection. Which do you think > is better, Undefined Behavior or that instruction selection should > disregard those bits? I'd lean towards undefined behavior, but I don't > have a good feel for LLVM's overall design for undefined behavior, > poison values, etc.I still don't understand Dan's concerns, but a target that traps on a quiet NaN is not IEEE compliant. IEEE754 requires that quiet NaNs get propagated through operands to the results without causing exceptions. -Krzysztof -- Qualcomm Innovation Center, Inc. is a member of Code Aurora Forum, hosted by The Linux Foundation
Maybe Matching Threads
- [LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level
- [LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level
- [LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level
- [LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level
- [LLVMdev] [RFC] Extend LLVM IR to express "fast-math" at a per-instruction level