The motivation example likes below
```
$ cat t1.c
struct S {
int var[3];
};
int foo1 (struct S *a, struct S *b)
{
return a - b;
}
```
For cpu v1/v2/v3, the compilation will fail with the following error:
```
$ clang --target=bpf -O2 -c t1.c -mcpu=v3
t1.c:4:5: error: unsupported signed division, please convert to unsigned div/mod.
4 | int foo1 (struct S *a, struct S *b)
| ^
1 error generated.
```
The reason is that sdiv/smod is only supported at -mcpu=v4. At cpu
v1/v2/v3, only udiv/umod is supported.
But the above example (for func foo1()) is reasonable common and user
has to workaround the compilation failure by using udiv with
conditionals.
For x86, for the above t1.c, compile and dump the asm code like below:
```
$ clang -O2 -c t1.c && llvm-objdump -d t1.o
0000000000000000 <foo1>:
0: 48 29 f7 subq %rsi, %rdi
3: 48 c1 ef 02 shrq $0x2, %rdi
7: 69 c7 ab aa aa aa imull $0xaaaaaaab, %edi, %eax # imm = 0xAAAAAAAB
d: c3 retq
```
Basically sdiv can be replaced with sub, shr and imul. Latest gcc-bpf is
also able to generate code similar to x86 with -mcpu=v1. See
https://godbolt.org/z/feP9ETbjj
Generally multiplication is cheaper than divide. LLVM SelectionDAG
already supports to generate alternative codes (mul etc.) for div/mod
operations if the divisor is constant and if the cost of division is not
cheap. For BPF backend, let us use multiplication instead of divide
whenever possible. The following is the list of div/mod operations which
can be converted to mul.
- 32bit signed/unsigned div/mod with constant divisor
- 64bit signed/unsigned div with constant divisor and with 'exact' flag
in IR where 'exact' means if replacing div with mod, it is guaranteed
that modulo result will be 0. The above foo1() case belongs here.
Currently on mcpu=v3 we do not support sdiv, srem instructions. And the
backend crashes with stacktrace & coredump, which is misleading for end
users, as this is not a "bug"
Add llvm bug reporting for sdiv/srem on ISel legalize-op phase.
For clang frontend we can get detailed location & bug report.
$ build/bin/clang -g -target bpf -c local/sdiv.c
local/sdiv.c:1:35: error: unsupported signed division, please convert to
unsigned div/mod.
1 | int sdiv(int a, int b) { return a / b; }
| ^
1 error generated.
Fixes: #70433Fixes: #48647
This also improves error handling for dynamic stack allocation:
local/vla.c:2:3: error: unsupported dynamic stack allocation
2 | int b[n];
| ^
1 error generated.
Fixes: https://github.com/llvm/llvm-project/issues/57171
This reverts commit 80a34ae31125aa46dcad47162ba45b152aed968d with fixes.
Previously, since bots turning on EXPENSIVE_CHECKS are essentially turning on
MachineVerifierPass by default on X86 and the fact that
inline-asm-avx-v-constraint-32bit.ll and inline-asm-avx512vl-v-constraint-32bit.ll
are not expected to generate functioning machine code, this would go
down to `report_fatal_error` in MachineVerifierPass. Here passing
`-verify-machineinstrs=0` to make the intent explicit.
This reverts commit 80a34ae31125aa46dcad47162ba45b152aed968d with fixes.
On bots llvm-clang-x86_64-expensive-checks-ubuntu and
llvm-clang-x86_64-expensive-checks-debian only,
llc returns 0 for these two tests unexpectedly. I tweaked the RUN line a little
bit in the hope that LIT is the culprit since this change is not in the
codepath these tests are testing.
llvm\test\CodeGen\X86\inline-asm-avx-v-constraint-32bit.ll
llvm\test\CodeGen\X86\inline-asm-avx512vl-v-constraint-32bit.ll
This reverts commit rGcd5b308b828e, rGcd5b308b828e, rG8cedf0e2994c.
There are issues to be investigated for polly bots and bots turning on
EXPENSIVE_CHECKS.
Summary:
This patch could be treated as a rebase of D33960. It also fixes PR35547.
A fix for `llvm/test/Other/close-stderr.ll` is proposed in D68164. Seems
the consensus is that the test is passing by chance and I'm not
sure how important it is for us. So it is removed like in D33960 for now.
The rest of the test fixes are just adding `--crash` flag to `not` tool.
** The reason it fixes PR35547 is
`exit` does cleanup including calling class destructor whereas `abort`
does not do any cleanup. In multithreading environment such as ThinLTO or JIT,
threads may share states which mostly are ManagedStatic<>. If faulting thread
tearing down a class when another thread is using it, there are chances of
memory corruption. This is bad 1. It will stop error reporting like pretty
stack printer; 2. The memory corruption is distracting and nondeterministic in
terms of error message, and corruption type (depending one the timing, it
could be double free, heap free after use, etc.).
Reviewers: rnk, chandlerc, zturner, sepavloff, MaskRay, espindola
Reviewed By: rnk, MaskRay
Subscribers: wuzish, jholewinski, qcolombet, dschuff, jyknight, emaste, sdardis, nemanjai, jvesely, nhaehnle, sbc100, arichardson, jgravelle-google, aheejin, kbarton, fedor.sergeev, asb, rbar, johnrusso, simoncook, apazos, sabuasal, niosHD, jrtc27, zzheng, edward-jones, atanasyan, rogfer01, MartinMosbeck, brucehoult, the_o, PkmX, jocewei, jsji, lenary, s.egerton, pzheng, cfe-commits, MaskRay, filcab, davide, MatzeB, mehdi_amini, hiraditya, steven_wu, dexonsmith, rupprecht, seiya, llvm-commits
Tags: #llvm, #clang
Differential Revision: https://reviews.llvm.org/D67847