| ; RUN: llvm-split -o %t %s -j 3 -mtriple amdgcn-amd-amdhsa |
| ; RUN: llvm-dis -o - %t0 | FileCheck --check-prefix=CHECK0 --implicit-check-not=define %s |
| ; RUN: llvm-dis -o - %t1 | FileCheck --check-prefix=CHECK1 --implicit-check-not=define %s |
| ; RUN: llvm-dis -o - %t2 | FileCheck --check-prefix=CHECK2 --implicit-check-not=define %s |
| |
| ; We have 4 function: |
| ; - Each function has an internal helper |
| ; - @A and @B's helpers does an indirect call. |
| ; |
| ; For non-kernels, indirect calls shouldn't matter, so |
| ; @CallCandidate doesn't have to be in A/B's partition, unlike |
| ; in the corresponding tests for kernels where it has to. |
| |
| ; CHECK0: define internal void @HelperC |
| ; CHECK0: define internal void @HelperD |
| ; CHECK0: define internal void @C |
| ; CHECK0: define internal void @D |
| |
| ; CHECK1: define hidden void @HelperA |
| ; CHECK1: define hidden void @CallCandidate() |
| ; CHECK1: define internal void @A |
| |
| ; CHECK2: define hidden void @HelperB |
| ; CHECK2: define internal void @HelperC |
| ; CHECK2: define internal void @HelperD |
| ; CHECK2: define internal void @B |
| |
| @addrthief = global [3 x ptr] [ptr @HelperA, ptr @HelperB, ptr @CallCandidate] |
| |
| define internal void @HelperA(ptr %call) { |
| call void %call() |
| ret void |
| } |
| |
| define internal void @HelperB(ptr %call) { |
| call void @HelperC() |
| call void %call() |
| call void @HelperD() |
| ret void |
| } |
| |
| define internal void @CallCandidate() { |
| ret void |
| } |
| |
| define internal void @HelperC() { |
| ret void |
| } |
| |
| define internal void @HelperD() { |
| ret void |
| } |
| |
| define internal void @A(ptr %call) { |
| call void @HelperA(ptr %call) |
| ret void |
| } |
| |
| define internal void @B(ptr %call) { |
| call void @HelperB(ptr %call) |
| ret void |
| } |
| |
| define internal void @C() { |
| call void @HelperC() |
| ret void |
| } |
| |
| define internal void @D() { |
| call void @HelperD() |
| ret void |
| } |