; Test legalizer's handling of ABI boundaries. test legalizer isa riscv ; regex: V=v\d+ ; regex: SS=ss\d+ ; regex: WS=\s+ function %int_split_args(i64) -> i64 { ebb0(v0: i64): ; check: $ebb0($(v0l=$V): i32, $(v0h=$V): i32, $(link=$V): i32): ; check: $v0 = iconcat $v0l, $v0h v1 = iadd_imm v0, 1 ; check: $(v1l=$V), $(v1h=$V) = isplit $v1 ; check: return $v1l, $v1h, $link return v1 } function %split_call_arg(i32) { fn1 = function %foo(i64) fn2 = function %foo(i32, i64) ebb0(v0: i32): v1 = uextend.i64 v0 call fn1(v1) ; check: $(v1l=$V), $(v1h=$V) = isplit $v1 ; check: call $fn1($v1l, $v1h) call fn2(v0, v1) ; check: call $fn2($v0, $V, $V) return } function %split_ret_val() { fn1 = function %foo() -> i64 ebb0: v1 = call fn1() ; check: $ebb0($(link=$V): i32): ; nextln: $(v1l=$V), $(v1h=$V) = call $fn1() ; check: $v1 = iconcat $v1l, $v1h jump ebb1(v1) ; check: jump $ebb1($v1) ebb1(v10: i64): jump ebb1(v10) } ; First return value is fine, second one is expanded. function %split_ret_val2() { fn1 = function %foo() -> i32, i64 ebb0: v1, v2 = call fn1() ; check: $ebb0($(link=$V): i32): ; nextln: $v1, $(v2l=$V), $(v2h=$V) = call $fn1() ; check: $v2 = iconcat $v2l, $v2h jump ebb1(v1, v2) ; check: jump $ebb1($v1, $v2) ebb1(v9: i32, v10: i64): jump ebb1(v9, v10) } function %int_ext(i8, i8 sext, i8 uext) -> i8 uext { ebb0(v1: i8, v2: i8, v3: i8): ; check: $ebb0($v1: i8, $(v2x=$V): i32, $(v3x=$V): i32, $(link=$V): i32): ; check: $v2 = ireduce.i8 $v2x ; check: $v3 = ireduce.i8 $v3x ; check: $(v1x=$V) = uextend.i32 $v1 ; check: return $v1x, $link return v1 } ; Function produces single return value, still need to copy. function %ext_ret_val() { fn1 = function %foo() -> i8 sext ebb0: v1 = call fn1() ; check: $ebb0($V: i32): ; nextln: $(rv=$V) = call $fn1() ; check: $v1 = ireduce.i8 $rv jump ebb1(v1) ; check: jump $ebb1($v1) ebb1(v10: i8): jump ebb1(v10) } function %vector_split_args(i64x4) -> i64x4 { ebb0(v0: i64x4): ; check: $ebb0($(v0al=$V): i32, $(v0ah=$V): i32, $(v0bl=$V): i32, $(v0bh=$V): i32, $(v0cl=$V): i32, $(v0ch=$V): i32, $(v0dl=$V): i32, $(v0dh=$V): i32, $(link=$V): i32): ; check: $(v0a=$V) = iconcat $v0al, $v0ah ; check: $(v0b=$V) = iconcat $v0bl, $v0bh ; check: $(v0ab=$V) = vconcat $v0a, $v0b ; check: $(v0c=$V) = iconcat $v0cl, $v0ch ; check: $(v0d=$V) = iconcat $v0dl, $v0dh ; check: $(v0cd=$V) = vconcat $v0c, $v0d ; check: $v0 = vconcat $v0ab, $v0cd v1 = bxor v0, v0 ; check: $(v1ab=$V), $(v1cd=$V) = vsplit $v1 ; check: $(v1a=$V), $(v1b=$V) = vsplit $v1ab ; check: $(v1al=$V), $(v1ah=$V) = isplit $v1a ; check: $(v1bl=$V), $(v1bh=$V) = isplit $v1b ; check: $(v1c=$V), $(v1d=$V) = vsplit $v1cd ; check: $(v1cl=$V), $(v1ch=$V) = isplit $v1c ; check: $(v1dl=$V), $(v1dh=$V) = isplit $v1d ; check: return $v1al, $v1ah, $v1bl, $v1bh, $v1cl, $v1ch, $v1dl, $v1dh, $link return v1 } function %indirect(i32) { sig1 = () native ebb0(v0: i32): call_indirect sig1, v0() return } ; The first argument to call_indirect doesn't get altered. function %indirect_arg(i32, f32x2) { sig1 = (f32x2) native ebb0(v0: i32, v1: f32x2): call_indirect sig1, v0(v1) ; check: call_indirect $sig1, $v0($V, $V) return } ; Call a function that takes arguments on the stack. function %stack_args(i32) { ; check: $(ss0=$SS) = outgoing_arg 4 fn1 = function %foo(i64, i64, i64, i64, i32) ebb0(v0: i32): v1 = iconst.i64 1 call fn1(v1, v1, v1, v1, v0) ; check: [GPsp#48,$ss0]$WS $(v0s=$V) = spill $v0 ; check: call $fn1($(=.*), $v0s) return }