Files
wasmtime/cranelift/filetests/filetests/simple_preopt/simplify64.clif
Ryan Hunt 832666c45e Mass rename Ebb and relatives to Block (#1365)
* Manually rename BasicBlock to BlockPredecessor

BasicBlock is a pair of (Ebb, Inst) that is used to represent the
basic block subcomponent of an Ebb that is a predecessor to an Ebb.

Eventually we will be able to remove this struct, but for now it
makes sense to give it a non-conflicting name so that we can start
to transition Ebb to represent a basic block.

I have not updated any comments that refer to BasicBlock, as
eventually we will remove BlockPredecessor and replace with Block,
which is a basic block, so the comments will become correct.

* Manually rename SSABuilder block types to avoid conflict

SSABuilder has its own Block and BlockData types. These along with
associated identifier will cause conflicts in a later commit, so
they are renamed to be more verbose here.

* Automatically rename 'Ebb' to 'Block' in *.rs

* Automatically rename 'EBB' to 'block' in *.rs

* Automatically rename 'ebb' to 'block' in *.rs

* Automatically rename 'extended basic block' to 'basic block' in *.rs

* Automatically rename 'an basic block' to 'a basic block' in *.rs

* Manually update comment for `Block`

`Block`'s wikipedia article required an update.

* Automatically rename 'an `Block`' to 'a `Block`' in *.rs

* Automatically rename 'extended_basic_block' to 'basic_block' in *.rs

* Automatically rename 'ebb' to 'block' in *.clif

* Manually rename clif constant that contains 'ebb' as substring to avoid conflict

* Automatically rename filecheck uses of 'EBB' to 'BB'

'regex: EBB' -> 'regex: BB'
'$EBB' -> '$BB'

* Automatically rename 'EBB' 'Ebb' to 'block' in *.clif

* Automatically rename 'an block' to 'a block' in *.clif

* Fix broken testcase when function name length increases

Test function names are limited to 16 characters. This causes
the new longer name to be truncated and fail a filecheck test. An
outdated comment was also fixed.
2020-02-07 10:46:47 -06:00

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test simple_preopt
target x86_64
;; 64-bits platforms.
function %iadd_imm(i32) -> i32 {
block0(v0: i32):
v1 = iconst.i32 2
v2 = iadd v0, v1
return v2
}
; sameln: function %iadd_imm
; nextln: block0(v0: i32):
; nextln: v1 = iconst.i32 2
; nextln: v2 = iadd_imm v0, 2
; nextln: return v2
; nextln: }
function %isub_imm(i32) -> i32 {
block0(v0: i32):
v1 = iconst.i32 2
v2 = isub v0, v1
return v2
}
; sameln: function %isub_imm
; nextln: block0(v0: i32):
; nextln: v1 = iconst.i32 2
; nextln: v2 = iadd_imm v0, -2
; nextln: return v2
; nextln: }
function %icmp_imm(i32) -> i32 {
block0(v0: i32):
v1 = iconst.i32 2
v2 = icmp slt v0, v1
v3 = bint.i32 v2
return v3
}
; sameln: function %icmp_imm
; nextln: block0(v0: i32):
; nextln: v1 = iconst.i32 2
; nextln: v2 = icmp_imm slt v0, 2
; nextln: v3 = bint.i32 v2
; nextln: return v3
; nextln: }
function %brz_bint(i32) {
block0(v0: i32):
v3 = icmp_imm slt v0, 0
v1 = bint.i32 v3
v2 = select v1, v1, v1
trapz v1, user0
brz v1, block1
jump block2
block1:
return
block2:
return
}
; sameln: function %brz_bint
; nextln: (v0: i32):
; nextln: v3 = icmp_imm slt v0, 0
; nextln: v1 = bint.i32 v3
; nextln: v2 = select v3, v1, v1
; nextln: trapz v3, user0
; nextln: brnz v3, block2
; nextln: jump block1
function %irsub_imm(i32) -> i32 {
block0(v0: i32):
v1 = iconst.i32 2
v2 = isub v1, v0
return v2
}
; sameln: function %irsub_imm
; nextln: block0(v0: i32):
; nextln: v1 = iconst.i32 2
; nextln: v2 = irsub_imm v0, 2
; nextln: return v2
; nextln: }
;; Sign-extensions.
;; 8 -> 16
function %uextend_8_16() -> i16 {
block0:
v0 = iconst.i16 37
v1 = ishl_imm v0, 8
v2 = ushr_imm v1, 8
return v2
}
; sameln: function %uextend_8_16
; nextln: block0:
; nextln: v0 = iconst.i16 37
; nextln: v1 = ishl_imm v0, 8
; nextln: v3 = ireduce.i8 v0
; nextln: v2 = uextend.i16 v3
; nextln: return v2
; nextln: }
function %sextend_8_16() -> i16 {
block0:
v0 = iconst.i16 37
v1 = ishl_imm v0, 8
v2 = sshr_imm v1, 8
return v2
}
; sameln: function %sextend_8_16
; nextln: block0:
; nextln: v0 = iconst.i16 37
; nextln: v1 = ishl_imm v0, 8
; nextln: v3 = ireduce.i8 v0
; nextln: v2 = sextend.i16 v3
; nextln: return v2
; nextln: }
;; 8 -> 32
function %uextend_8_32() -> i32 {
block0:
v0 = iconst.i32 37
v1 = ishl_imm v0, 24
v2 = ushr_imm v1, 24
return v2
}
; sameln: function %uextend_8_32
; nextln: block0:
; nextln: v0 = iconst.i32 37
; nextln: v1 = ishl_imm v0, 24
; nextln: v3 = ireduce.i8 v0
; nextln: v2 = uextend.i32 v3
; nextln: return v2
; nextln: }
function %sextend_8_32() -> i32 {
block0:
v0 = iconst.i32 37
v1 = ishl_imm v0, 24
v2 = sshr_imm v1, 24
return v2
}
; sameln: function %sextend_8_32
; nextln: block0:
; nextln: v0 = iconst.i32 37
; nextln: v1 = ishl_imm v0, 24
; nextln: v3 = ireduce.i8 v0
; nextln: v2 = sextend.i32 v3
; nextln: return v2
; nextln: }
;; 16 -> 32
function %uextend_16_32() -> i32 {
block0:
v0 = iconst.i32 37
v1 = ishl_imm v0, 16
v2 = ushr_imm v1, 16
return v2
}
; sameln: function %uextend_16_32
; nextln: block0:
; nextln: v0 = iconst.i32 37
; nextln: v1 = ishl_imm v0, 16
; nextln: v3 = ireduce.i16 v0
; nextln: v2 = uextend.i32 v3
; nextln: return v2
; nextln: }
function %sextend_16_32() -> i32 {
block0:
v0 = iconst.i32 37
v1 = ishl_imm v0, 16
v2 = sshr_imm v1, 16
return v2
}
; sameln: function %sextend_16_32
; nextln: block0:
; nextln: v0 = iconst.i32 37
; nextln: v1 = ishl_imm v0, 16
; nextln: v3 = ireduce.i16 v0
; nextln: v2 = sextend.i32 v3
; nextln: return v2
; nextln: }
;; 8 -> 64
function %uextend_8_64() -> i64 {
block0:
v0 = iconst.i64 37
v1 = ishl_imm v0, 56
v2 = ushr_imm v1, 56
return v2
}
; sameln: function %uextend_8_64
; nextln: block0:
; nextln: v0 = iconst.i64 37
; nextln: v1 = ishl_imm v0, 56
; nextln: v3 = ireduce.i8 v0
; nextln: v2 = uextend.i64 v3
; nextln: return v2
; nextln: }
function %sextend_8_64() -> i64 {
block0:
v0 = iconst.i64 37
v1 = ishl_imm v0, 56
v2 = sshr_imm v1, 56
return v2
}
; sameln: function %sextend_8_64
; nextln: block0:
; nextln: v0 = iconst.i64 37
; nextln: v1 = ishl_imm v0, 56
; nextln: v3 = ireduce.i8 v0
; nextln: v2 = sextend.i64 v3
; nextln: return v2
; nextln: }
;; 16 -> 64
function %uextend_16_64() -> i64 {
block0:
v0 = iconst.i64 37
v1 = ishl_imm v0, 48
v2 = ushr_imm v1, 48
return v2
}
; sameln: function %uextend_16_64
; nextln: block0:
; nextln: v0 = iconst.i64 37
; nextln: v1 = ishl_imm v0, 48
; nextln: v3 = ireduce.i16 v0
; nextln: v2 = uextend.i64 v3
; nextln: return v2
; nextln: }
function %sextend_16_64() -> i64 {
block0:
v0 = iconst.i64 37
v1 = ishl_imm v0, 48
v2 = sshr_imm v1, 48
return v2
}
; sameln: function %sextend_16_64
; nextln: block0:
; nextln: v0 = iconst.i64 37
; nextln: v1 = ishl_imm v0, 48
; nextln: v3 = ireduce.i16 v0
; nextln: v2 = sextend.i64 v3
; nextln: return v2
; nextln: }
;; 32 -> 64
function %uextend_32_64() -> i64 {
block0:
v0 = iconst.i64 37
v1 = ishl_imm v0, 32
v2 = ushr_imm v1, 32
return v2
}
; sameln: function %uextend_32_64
; nextln: block0:
; nextln: v0 = iconst.i64 37
; nextln: v1 = ishl_imm v0, 32
; nextln: v3 = ireduce.i32 v0
; nextln: v2 = uextend.i64 v3
; nextln: return v2
; nextln: }
function %sextend_32_64() -> i64 {
block0:
v0 = iconst.i64 37
v1 = ishl_imm v0, 32
v2 = sshr_imm v1, 32
return v2
}
; sameln: function %sextend_32_64
; nextln: block0:
; nextln: v0 = iconst.i64 37
; nextln: v1 = ishl_imm v0, 32
; nextln: v3 = ireduce.i32 v0
; nextln: v2 = sextend.i64 v3
; nextln: return v2
; nextln: }
function %add_imm_fold(i32) -> i32 {
block0(v0: i32):
v1 = iadd_imm v0, 42
v2 = iadd_imm v1, -42
return v2
}
; sameln: function %add_imm_fold(i32)
; nextln: block0(v0: i32):
; nextln: v2 -> v0
; nextln: v1 = iadd_imm v0, 42
; nextln: nop
; nextln: return v2