llvm-project/llvm/test/CodeGen/NVPTX/addrspacecast.ll
Andrew Savonichev 0f1b5f115a [NVPTX] Integrate ptxas to LIT tests
ptxas is a proprietary compiler from Nvidia that can compile PTX to
machine code (SASS). It has a lot of diagnostics to catch errors
in PTX, which can be used to verify PTX output from llc.

Set -DPXTAS_EXECUTABLE=/path/to/ptxas CMake option to enable it.
If this option is not set, then ptxas is substituted to true which
effectively disables all ptxas RUN lines.

LLVM_PTXAS_EXECUTABLE environment variable takes precedence over
the CMake option, and allows to override ptxas executable that is used for LIT
without complete re-configuration.

Differential Revision: https://reviews.llvm.org/D121727
2022-04-28 14:59:45 +03:00

101 lines
2.8 KiB
LLVM

; RUN: llc -O0 < %s -march=nvptx -mcpu=sm_20 | FileCheck %s -check-prefixes=ALL,CLS32,G32
; RUN: llc -O0 < %s -march=nvptx64 -mcpu=sm_20 | FileCheck %s -check-prefixes=ALL,NOPTRCONV,CLS64,G64
; RUN: llc -O0 < %s -march=nvptx64 -mcpu=sm_20 --nvptx-short-ptr| FileCheck %s -check-prefixes=ALL,PTRCONV,CLS64,G64
; RUN: %if ptxas %{ llc -O0 < %s -march=nvptx -mcpu=sm_20 | %ptxas-verify %}
; RUN: %if ptxas %{ llc -O0 < %s -march=nvptx64 -mcpu=sm_20 | %ptxas-verify %}
; RUN: %if ptxas %{ llc -O0 < %s -march=nvptx64 -mcpu=sm_20 --nvptx-short-ptr | %ptxas-verify %}
; ALL-LABEL: conv1
define i32 @conv1(i32 addrspace(1)* %ptr) {
; G32: cvta.global.u32
; ALL-NOT: cvt.u64.u32
; G64: cvta.global.u64
; ALL: ld.u32
%genptr = addrspacecast i32 addrspace(1)* %ptr to i32*
%val = load i32, i32* %genptr
ret i32 %val
}
; ALL-LABEL: conv2
define i32 @conv2(i32 addrspace(3)* %ptr) {
; CLS32: cvta.shared.u32
; PTRCONV: cvt.u64.u32
; NOPTRCONV-NOT: cvt.u64.u32
; CLS64: cvta.shared.u64
; ALL: ld.u32
%genptr = addrspacecast i32 addrspace(3)* %ptr to i32*
%val = load i32, i32* %genptr
ret i32 %val
}
; ALL-LABEL: conv3
define i32 @conv3(i32 addrspace(4)* %ptr) {
; CLS32: cvta.const.u32
; PTRCONV: cvt.u64.u32
; NOPTRCONV-NOT: cvt.u64.u32
; CLS64: cvta.const.u64
; ALL: ld.u32
%genptr = addrspacecast i32 addrspace(4)* %ptr to i32*
%val = load i32, i32* %genptr
ret i32 %val
}
; ALL-LABEL: conv4
define i32 @conv4(i32 addrspace(5)* %ptr) {
; CLS32: cvta.local.u32
; PTRCONV: cvt.u64.u32
; NOPTRCONV-NOT: cvt.u64.u32
; CLS64: cvta.local.u64
; ALL: ld.u32
%genptr = addrspacecast i32 addrspace(5)* %ptr to i32*
%val = load i32, i32* %genptr
ret i32 %val
}
; ALL-LABEL: conv5
define i32 @conv5(i32* %ptr) {
; CLS32: cvta.to.global.u32
; ALL-NOT: cvt.u64.u32
; CLS64: cvta.to.global.u64
; ALL: ld.global.u32
%specptr = addrspacecast i32* %ptr to i32 addrspace(1)*
%val = load i32, i32 addrspace(1)* %specptr
ret i32 %val
}
; ALL-LABEL: conv6
define i32 @conv6(i32* %ptr) {
; CLS32: cvta.to.shared.u32
; CLS64: cvta.to.shared.u64
; PTRCONV: cvt.u32.u64
; NOPTRCONV-NOT: cvt.u32.u64
; ALL: ld.shared.u32
%specptr = addrspacecast i32* %ptr to i32 addrspace(3)*
%val = load i32, i32 addrspace(3)* %specptr
ret i32 %val
}
; ALL-LABEL: conv7
define i32 @conv7(i32* %ptr) {
; CLS32: cvta.to.const.u32
; CLS64: cvta.to.const.u64
; PTRCONV: cvt.u32.u64
; NOPTRCONV-NOT: cvt.u32.u64
; ALL: ld.const.u32
%specptr = addrspacecast i32* %ptr to i32 addrspace(4)*
%val = load i32, i32 addrspace(4)* %specptr
ret i32 %val
}
; ALL-LABEL: conv8
define i32 @conv8(i32* %ptr) {
; CLS32: cvta.to.local.u32
; CLS64: cvta.to.local.u64
; PTRCONV: cvt.u32.u64
; NOPTRCONV-NOT: cvt.u32.u64
; ALL: ld.local.u32
%specptr = addrspacecast i32* %ptr to i32 addrspace(5)*
%val = load i32, i32 addrspace(5)* %specptr
ret i32 %val
}