* 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 An outdated comment was also fixed.
102 lines
1.5 KiB
Plaintext
102 lines
1.5 KiB
Plaintext
; Test basic code generation for f64 arithmetic WebAssembly instructions.
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test compile
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target x86_64 haswell
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target x86_64 baseline
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; Constants.
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function %f64_const() -> f64 {
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block0:
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v1 = f64const 0x3.0
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return v1
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}
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; Unary operations
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function %f64_abs(f64) -> f64 {
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block0(v0: f64):
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v1 = fabs v0
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return v1
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}
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function %f64_neg(f64) -> f64 {
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block0(v0: f64):
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v1 = fneg v0
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return v1
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}
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function %f64_sqrt(f64) -> f64 {
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block0(v0: f64):
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v1 = sqrt v0
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return v1
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}
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function %f64_ceil(f64) -> f64 {
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block0(v0: f64):
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v1 = ceil v0
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return v1
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}
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function %f64_floor(f64) -> f64 {
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block0(v0: f64):
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v1 = floor v0
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return v1
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}
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function %f64_trunc(f64) -> f64 {
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block0(v0: f64):
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v1 = trunc v0
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return v1
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}
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function %f64_nearest (f64) -> f64 {
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block0(v0: f64):
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v1 = nearest v0
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return v1
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}
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; Binary Operations
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function %f64_add(f64, f64) -> f64 {
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block0(v0: f64, v1: f64):
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v2 = fadd v0, v1
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return v2
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}
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function %f64_sub(f64, f64) -> f64 {
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block0(v0: f64, v1: f64):
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v2 = fsub v0, v1
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return v2
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}
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function %f64_mul(f64, f64) -> f64 {
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block0(v0: f64, v1: f64):
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v2 = fmul v0, v1
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return v2
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}
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function %f64_div(f64, f64) -> f64 {
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block0(v0: f64, v1: f64):
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v2 = fdiv v0, v1
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return v2
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}
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function %f64_min(f64, f64) -> f64 {
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block0(v0: f64, v1: f64):
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v2 = fmin v0, v1
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return v2
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}
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function %f64_max(f64, f64) -> f64 {
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block0(v0: f64, v1: f64):
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v2 = fmax v0, v1
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return v2
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}
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function %f64_copysign(f64, f64) -> f64 {
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block0(v0: f64, v1: f64):
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v2 = fcopysign v0, v1
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return v2
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}
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