fix mono tests

This commit is contained in:
Folkert 2020-11-13 23:24:13 +01:00
parent 490f50deb2
commit 859656f02d
2 changed files with 460 additions and 372 deletions

View file

@ -1169,20 +1169,19 @@ fn test_to_equality<'a>(
} }
} }
type Tests<'a> = std::vec::Vec<(
bumpalo::collections::Vec<'a, (Symbol, Layout<'a>, Expr<'a>)>,
Symbol,
Symbol,
Layout<'a>,
)>;
fn stores_and_condition<'a>( fn stores_and_condition<'a>(
env: &mut Env<'a, '_>, env: &mut Env<'a, '_>,
cond_symbol: Symbol, cond_symbol: Symbol,
cond_layout: &Layout<'a>, cond_layout: &Layout<'a>,
test_chain: Vec<(Path, Test<'a>)>, test_chain: Vec<(Path, Test<'a>)>,
) -> ( ) -> (Tests<'a>, Option<(Symbol, JoinPointId, Stmt<'a>)>) {
std::vec::Vec<(
bumpalo::collections::Vec<'a, (Symbol, Layout<'a>, Expr<'a>)>,
Symbol,
Symbol,
Layout<'a>,
)>,
Option<(Symbol, JoinPointId, Stmt<'a>)>,
) {
let mut tests = Vec::with_capacity(test_chain.len()); let mut tests = Vec::with_capacity(test_chain.len());
let mut guard = None; let mut guard = None;
@ -1261,6 +1260,68 @@ fn compile_guard<'a>(
} }
} }
fn compile_test<'a>(
env: &mut Env<'a, '_>,
ret_layout: Layout<'a>,
stores: bumpalo::collections::Vec<'a, (Symbol, Layout<'a>, Expr<'a>)>,
lhs: Symbol,
rhs: Symbol,
fail: &'a Stmt<'a>,
mut cond: Stmt<'a>,
) -> Stmt<'a> {
// `if test_symbol then cond else false_branch
let test_symbol = env.unique_symbol();
let arena = env.arena;
cond = Stmt::Cond {
cond_symbol: test_symbol,
cond_layout: Layout::Builtin(Builtin::Int1),
branching_symbol: test_symbol,
branching_layout: Layout::Builtin(Builtin::Int1),
pass: arena.alloc(cond),
fail,
ret_layout,
};
let test = Expr::RunLowLevel(LowLevel::Eq, arena.alloc([lhs, rhs]));
// write to the test symbol
cond = Stmt::Let(
test_symbol,
test,
Layout::Builtin(Builtin::Int1),
arena.alloc(cond),
);
// stores are in top-to-bottom order, so we have to add them in reverse
for (symbol, layout, expr) in stores.into_iter().rev() {
cond = Stmt::Let(symbol, expr, layout, arena.alloc(cond));
}
cond
}
fn compile_tests<'a>(
env: &mut Env<'a, '_>,
ret_layout: Layout<'a>,
tests: Tests<'a>,
opt_guard: Option<(Symbol, JoinPointId, Stmt<'a>)>,
fail: &'a Stmt<'a>,
mut cond: Stmt<'a>,
) -> Stmt<'a> {
let arena = env.arena;
// the guard is the final thing that we check, so needs to be layered on first!
if let Some((_, id, stmt)) = opt_guard {
cond = compile_guard(env, ret_layout.clone(), id, arena.alloc(stmt), fail, cond);
}
for (new_stores, lhs, rhs, _layout) in tests.into_iter().rev() {
cond = compile_test(env, ret_layout.clone(), new_stores, lhs, rhs, fail, cond);
}
cond
}
// TODO procs and layout are currently unused, but potentially required // TODO procs and layout are currently unused, but potentially required
// for defining optional fields? // for defining optional fields?
// if not, do remove // if not, do remove
@ -1278,6 +1339,8 @@ fn decide_to_branching<'a>(
use Choice::*; use Choice::*;
use Decider::*; use Decider::*;
let arena = env.arena;
match decider { match decider {
Leaf(Jump(label)) => { Leaf(Jump(label)) => {
// we currently inline the jumps: does fewer jumps but produces a larger artifact // we currently inline the jumps: does fewer jumps but produces a larger artifact
@ -1293,7 +1356,7 @@ fn decide_to_branching<'a>(
success, success,
failure, failure,
} => { } => {
// generate a switch based on the test chain // generate a (nested) if-then-else
let pass_expr = decide_to_branching( let pass_expr = decide_to_branching(
env, env,
@ -1317,80 +1380,35 @@ fn decide_to_branching<'a>(
jumps, jumps,
); );
let fail = &*env.arena.alloc(fail_expr);
let pass = &*env.arena.alloc(pass_expr);
let branching_symbol = env.unique_symbol();
let branching_layout = Layout::Builtin(Builtin::Int1);
let mut cond = pass.clone();
let true_symbol = env.unique_symbol();
let (tests, guard) = stores_and_condition(env, cond_symbol, &cond_layout, test_chain); let (tests, guard) = stores_and_condition(env, cond_symbol, &cond_layout, test_chain);
let mut current_symbol = branching_symbol; let number_of_tests = tests.len() as i64 + guard.is_some() as i64;
// TODO There must be some way to remove this iterator/loop debug_assert!(number_of_tests > 0);
let nr = (tests.len() as i64) - 1 + (guard.is_some() as i64);
let arena = env.arena; let mut accum = pass_expr;
if number_of_tests == 1 {
// if there is just one test, compile to a simple if-then-else
let fail = &*env.arena.alloc(fail_expr);
let accum_symbols = std::iter::once(true_symbol) accum = compile_tests(env, ret_layout, tests, guard, fail, accum);
.chain((0..nr).map(|_| env.unique_symbol())) } else {
.rev() // otherwise, we use a join point so the code for the `else` case
.collect::<Vec<_>>(); // is only generated once.
let fail_jp_id = JoinPointId(env.unique_symbol());
let fail = arena.alloc(Stmt::Jump(fail_jp_id, &[]));
let mut accum_it = accum_symbols.into_iter(); accum = compile_tests(env, ret_layout, tests, guard, fail, accum);
// the guard is the final thing that we check, so needs to be layered on first! accum = Stmt::Join {
if let Some((_, id, stmt)) = guard { id: fail_jp_id,
cond = compile_guard(env, ret_layout.clone(), id, arena.alloc(stmt), fail, cond); parameters: &[],
} continuation: env.arena.alloc(fail_expr),
remainder: arena.alloc(accum),
for ((new_stores, lhs, rhs, _layout), accum) in tests.into_iter().rev().zip(accum_it) {
// `if test_symbol then cond else false_branch
let test_symbol = env.unique_symbol();
cond = Stmt::Cond {
cond_symbol: test_symbol,
cond_layout: Layout::Builtin(Builtin::Int1),
branching_symbol: test_symbol,
branching_layout: Layout::Builtin(Builtin::Int1),
pass: env.arena.alloc(cond),
fail,
ret_layout: ret_layout.clone(),
}; };
let test = Expr::RunLowLevel(
LowLevel::Eq,
bumpalo::vec![in arena; lhs, rhs].into_bump_slice(),
);
// write to the test symbol
cond = Stmt::Let(
test_symbol,
test,
Layout::Builtin(Builtin::Int1),
arena.alloc(cond),
);
// stores are in top-to-bottom order, so we have to add them in reverse
for (symbol, layout, expr) in new_stores.into_iter().rev() {
cond = Stmt::Let(symbol, expr, layout, arena.alloc(cond));
} }
current_symbol = accum; accum
}
cond = Stmt::Let(
true_symbol,
Expr::Literal(Literal::Bool(true)),
Layout::Builtin(Builtin::Int1),
arena.alloc(cond),
);
cond
} }
FanOut { FanOut {
path, path,

View file

@ -116,11 +116,17 @@ mod test_mono {
let the_same = result == expected; let the_same = result == expected;
if !the_same { if !the_same {
println!("{}", result);
let expected_lines = expected.split("\n").collect::<Vec<&str>>(); let expected_lines = expected.split("\n").collect::<Vec<&str>>();
let result_lines = result.split("\n").collect::<Vec<&str>>(); let result_lines = result.split("\n").collect::<Vec<&str>>();
for line in &result_lines {
if !line.is_empty() {
println!(" {}", line);
} else {
println!("");
}
}
assert_eq!(expected_lines, result_lines); assert_eq!(expected_lines, result_lines);
assert_eq!(0, 1); assert_eq!(0, 1);
} }
@ -183,15 +189,13 @@ mod test_mono {
indoc!( indoc!(
r#" r#"
procedure Test.0 (): procedure Test.0 ():
let Test.10 = 0i64; let Test.8 = 0i64;
let Test.11 = 3i64; let Test.9 = 3i64;
let Test.2 = Just Test.10 Test.11; let Test.2 = Just Test.8 Test.9;
let Test.6 = true; let Test.5 = 0i64;
let Test.7 = 0i64; let Test.6 = Index 0 Test.2;
let Test.8 = Index 0 Test.2; let Test.7 = lowlevel Eq Test.5 Test.6;
let Test.9 = lowlevel Eq Test.7 Test.8; if Test.7 then
let Test.5 = lowlevel And Test.9 Test.6;
if Test.5 then
let Test.1 = Index 1 Test.2; let Test.1 = Index 1 Test.2;
ret Test.1; ret Test.1;
else else
@ -310,29 +314,27 @@ mod test_mono {
indoc!( indoc!(
r#" r#"
procedure Num.32 (#Attr.2, #Attr.3): procedure Num.32 (#Attr.2, #Attr.3):
let Test.19 = 0i64; let Test.17 = 0i64;
let Test.15 = lowlevel NotEq #Attr.3 Test.19; let Test.13 = lowlevel NotEq #Attr.3 Test.17;
if Test.15 then if Test.13 then
let Test.17 = 1i64; let Test.15 = 1i64;
let Test.18 = lowlevel NumDivUnchecked #Attr.2 #Attr.3; let Test.16 = lowlevel NumDivUnchecked #Attr.2 #Attr.3;
let Test.16 = Ok Test.17 Test.18; let Test.14 = Ok Test.15 Test.16;
ret Test.16; ret Test.14;
else else
let Test.13 = 0i64; let Test.11 = 0i64;
let Test.14 = Struct {}; let Test.12 = Struct {};
let Test.12 = Err Test.13 Test.14; let Test.10 = Err Test.11 Test.12;
ret Test.12; ret Test.10;
procedure Test.0 (): procedure Test.0 ():
let Test.10 = 1000i64; let Test.8 = 1000i64;
let Test.11 = 10i64; let Test.9 = 10i64;
let Test.2 = CallByName Num.32 Test.10 Test.11; let Test.2 = CallByName Num.32 Test.8 Test.9;
let Test.6 = true; let Test.5 = 1i64;
let Test.7 = 1i64; let Test.6 = Index 0 Test.2;
let Test.8 = Index 0 Test.2; let Test.7 = lowlevel Eq Test.5 Test.6;
let Test.9 = lowlevel Eq Test.7 Test.8; if Test.7 then
let Test.5 = lowlevel And Test.9 Test.6;
if Test.5 then
let Test.1 = Index 1 Test.2; let Test.1 = Index 1 Test.2;
ret Test.1; ret Test.1;
else else
@ -386,15 +388,13 @@ mod test_mono {
ret Test.5; ret Test.5;
procedure Test.0 (): procedure Test.0 ():
let Test.12 = 0i64; let Test.10 = 0i64;
let Test.13 = 41i64; let Test.11 = 41i64;
let Test.1 = Just Test.12 Test.13; let Test.1 = Just Test.10 Test.11;
let Test.8 = true; let Test.7 = 0i64;
let Test.9 = 0i64; let Test.8 = Index 0 Test.1;
let Test.10 = Index 0 Test.1; let Test.9 = lowlevel Eq Test.7 Test.8;
let Test.11 = lowlevel Eq Test.9 Test.10; if Test.9 then
let Test.7 = lowlevel And Test.11 Test.8;
if Test.7 then
let Test.2 = Index 1 Test.1; let Test.2 = Index 1 Test.1;
let Test.4 = 1i64; let Test.4 = 1i64;
let Test.3 = CallByName Num.14 Test.2 Test.4; let Test.3 = CallByName Num.14 Test.2 Test.4;
@ -442,20 +442,24 @@ mod test_mono {
r#" r#"
procedure Test.1 (Test.2): procedure Test.1 (Test.2):
let Test.5 = 2i64; let Test.5 = 2i64;
let Test.11 = true; joinpoint Test.11:
let Test.12 = 2i64; let Test.9 = 0i64;
let Test.15 = lowlevel Eq Test.12 Test.5; ret Test.9;
let Test.13 = lowlevel And Test.15 Test.11; in
let Test.8 = false; let Test.10 = 2i64;
jump Test.7 Test.8; let Test.13 = lowlevel Eq Test.10 Test.5;
joinpoint Test.7 Test.14: if Test.13 then
let Test.10 = lowlevel And Test.14 Test.13; joinpoint Test.7 Test.12:
if Test.10 then if Test.12 then
let Test.6 = 42i64; let Test.6 = 42i64;
ret Test.6; ret Test.6;
else else
let Test.9 = 0i64; jump Test.11;
ret Test.9; in
let Test.8 = false;
jump Test.7 Test.8;
else
jump Test.11;
procedure Test.0 (): procedure Test.0 ():
let Test.4 = Struct {}; let Test.4 = Struct {};
@ -511,30 +515,33 @@ mod test_mono {
ret Test.6; ret Test.6;
procedure Test.0 (): procedure Test.0 ():
let Test.17 = 0i64;
let Test.19 = 0i64; let Test.19 = 0i64;
let Test.21 = 0i64; let Test.20 = 41i64;
let Test.22 = 41i64; let Test.18 = Just Test.19 Test.20;
let Test.20 = Just Test.21 Test.22; let Test.2 = Just Test.17 Test.18;
let Test.2 = Just Test.19 Test.20; joinpoint Test.14:
let Test.10 = true; let Test.8 = 1i64;
ret Test.8;
in
let Test.9 = Index 1 Test.2;
let Test.10 = 0i64;
let Test.11 = Index 0 Test.9;
let Test.16 = lowlevel Eq Test.10 Test.11;
if Test.16 then
let Test.12 = 0i64; let Test.12 = 0i64;
let Test.11 = Index 1 Test.2; let Test.13 = Index 0 Test.2;
let Test.13 = Index 0 Test.11; let Test.15 = lowlevel Eq Test.12 Test.13;
let Test.18 = lowlevel Eq Test.12 Test.13; if Test.15 then
let Test.16 = lowlevel And Test.18 Test.10;
let Test.14 = 0i64;
let Test.15 = Index 0 Test.2;
let Test.17 = lowlevel Eq Test.14 Test.15;
let Test.9 = lowlevel And Test.17 Test.16;
if Test.9 then
let Test.7 = Index 1 Test.2; let Test.7 = Index 1 Test.2;
let Test.3 = Index 1 Test.7; let Test.3 = Index 1 Test.7;
let Test.5 = 1i64; let Test.5 = 1i64;
let Test.4 = CallByName Num.14 Test.3 Test.5; let Test.4 = CallByName Num.14 Test.3 Test.5;
ret Test.4; ret Test.4;
else else
let Test.8 = 1i64; jump Test.14;
ret Test.8; else
jump Test.14;
"# "#
), ),
) )
@ -555,26 +562,29 @@ mod test_mono {
ret Test.6; ret Test.6;
procedure Test.0 (): procedure Test.0 ():
let Test.16 = 2i64; let Test.14 = 2i64;
let Test.17 = 3i64; let Test.15 = 3i64;
let Test.3 = Struct {Test.16, Test.17}; let Test.3 = Struct {Test.14, Test.15};
let Test.8 = true; joinpoint Test.11:
let Test.10 = 4i64;
let Test.9 = Index 0 Test.3;
let Test.15 = lowlevel Eq Test.10 Test.9;
let Test.13 = lowlevel And Test.15 Test.8;
let Test.12 = 3i64;
let Test.11 = Index 1 Test.3;
let Test.14 = lowlevel Eq Test.12 Test.11;
let Test.7 = lowlevel And Test.14 Test.13;
if Test.7 then
let Test.4 = 9i64;
ret Test.4;
else
let Test.1 = Index 0 Test.3; let Test.1 = Index 0 Test.3;
let Test.2 = Index 1 Test.3; let Test.2 = Index 1 Test.3;
let Test.5 = CallByName Num.14 Test.1 Test.2; let Test.5 = CallByName Num.14 Test.1 Test.2;
ret Test.5; ret Test.5;
in
let Test.7 = Index 0 Test.3;
let Test.8 = 4i64;
let Test.13 = lowlevel Eq Test.8 Test.7;
if Test.13 then
let Test.9 = Index 1 Test.3;
let Test.10 = 3i64;
let Test.12 = lowlevel Eq Test.10 Test.9;
if Test.12 then
let Test.4 = 9i64;
ret Test.4;
else
jump Test.11;
else
jump Test.11;
"# "#
), ),
) )
@ -698,6 +708,9 @@ mod test_mono {
r#" r#"
procedure Test.1 (Test.4): procedure Test.1 (Test.4):
let Test.2 = 0u8; let Test.2 = 0u8;
joinpoint Test.8 Test.3:
ret Test.3;
in
switch Test.2: switch Test.2:
case 1: case 1:
let Test.9 = 1i64; let Test.9 = 1i64;
@ -711,8 +724,6 @@ mod test_mono {
let Test.11 = 3i64; let Test.11 = 3i64;
jump Test.8 Test.11; jump Test.8 Test.11;
joinpoint Test.8 Test.3:
ret Test.3;
procedure Test.0 (): procedure Test.0 ():
let Test.6 = Struct {}; let Test.6 = Struct {};
@ -798,21 +809,20 @@ mod test_mono {
indoc!( indoc!(
r#" r#"
procedure Test.1 (Test.4): procedure Test.1 (Test.4):
let Test.22 = 1i64; let Test.18 = 1i64;
let Test.23 = 2i64; let Test.19 = 2i64;
let Test.2 = Ok Test.22 Test.23; let Test.2 = Ok Test.18 Test.19;
let Test.18 = true; joinpoint Test.8 Test.3:
let Test.19 = 1i64; ret Test.3;
let Test.20 = Index 0 Test.2; in
let Test.21 = lowlevel Eq Test.19 Test.20; let Test.15 = 1i64;
let Test.17 = lowlevel And Test.21 Test.18; let Test.16 = Index 0 Test.2;
let Test.17 = lowlevel Eq Test.15 Test.16;
if Test.17 then if Test.17 then
let Test.13 = true; let Test.12 = Index 1 Test.2;
let Test.15 = 3i64; let Test.13 = 3i64;
let Test.14 = Index 1 Test.2; let Test.14 = lowlevel Eq Test.13 Test.12;
let Test.16 = lowlevel Eq Test.15 Test.14; if Test.14 then
let Test.12 = lowlevel And Test.16 Test.13;
if Test.12 then
let Test.9 = 1i64; let Test.9 = 1i64;
jump Test.8 Test.9; jump Test.8 Test.9;
else else
@ -821,8 +831,6 @@ mod test_mono {
else else
let Test.11 = 3i64; let Test.11 = 3i64;
jump Test.8 Test.11; jump Test.8 Test.11;
joinpoint Test.8 Test.3:
ret Test.3;
procedure Test.0 (): procedure Test.0 ():
let Test.6 = Struct {}; let Test.6 = Struct {};
@ -901,18 +909,17 @@ mod test_mono {
procedure Test.1 (Test.3): procedure Test.1 (Test.3):
let Test.6 = 10i64; let Test.6 = 10i64;
let Test.14 = true; joinpoint Test.8 Test.13:
let Test.10 = 5i64;
let Test.9 = CallByName Bool.5 Test.6 Test.10;
jump Test.8 Test.9;
joinpoint Test.8 Test.15:
let Test.13 = lowlevel And Test.15 Test.14;
if Test.13 then if Test.13 then
let Test.7 = 0i64; let Test.7 = 0i64;
ret Test.7; ret Test.7;
else else
let Test.12 = 42i64; let Test.12 = 42i64;
ret Test.12; ret Test.12;
in
let Test.10 = 5i64;
let Test.9 = CallByName Bool.5 Test.6 Test.10;
jump Test.8 Test.9;
procedure Test.0 (): procedure Test.0 ():
let Test.5 = Struct {}; let Test.5 = Struct {};
@ -977,11 +984,9 @@ mod test_mono {
r#" r#"
procedure Test.0 (): procedure Test.0 ():
let Test.2 = 0i64; let Test.2 = 0i64;
let Test.6 = true; let Test.5 = 1i64;
let Test.7 = 1i64; let Test.6 = lowlevel Eq Test.5 Test.2;
let Test.8 = lowlevel Eq Test.7 Test.2; if Test.6 then
let Test.5 = lowlevel And Test.8 Test.6;
if Test.5 then
let Test.3 = 12i64; let Test.3 = 12i64;
ret Test.3; ret Test.3;
else else
@ -1195,6 +1200,71 @@ mod test_mono {
), ),
indoc!( indoc!(
r#" r#"
procedure List.3 (#Attr.2, #Attr.3):
let Test.38 = lowlevel ListLen #Attr.2;
let Test.34 = lowlevel NumLt #Attr.3 Test.38;
if Test.34 then
let Test.36 = 1i64;
let Test.37 = lowlevel ListGetUnsafe #Attr.2 #Attr.3;
let Test.35 = Ok Test.36 Test.37;
ret Test.35;
else
let Test.32 = 0i64;
let Test.33 = Struct {};
let Test.31 = Err Test.32 Test.33;
ret Test.31;
procedure List.4 (#Attr.2, #Attr.3, #Attr.4):
let Test.14 = lowlevel ListLen #Attr.2;
let Test.12 = lowlevel NumLt #Attr.3 Test.14;
if Test.12 then
let Test.13 = lowlevel ListSet #Attr.2 #Attr.3 #Attr.4;
ret Test.13;
else
ret #Attr.2;
procedure Test.1 (Test.2):
let Test.39 = 0i64;
let Test.28 = CallByName List.3 Test.2 Test.39;
let Test.30 = 0i64;
let Test.29 = CallByName List.3 Test.2 Test.30;
let Test.7 = Struct {Test.28, Test.29};
joinpoint Test.25:
let Test.18 = Array [];
ret Test.18;
in
let Test.19 = Index 0 Test.7;
let Test.20 = 1i64;
let Test.21 = Index 0 Test.19;
let Test.27 = lowlevel Eq Test.20 Test.21;
if Test.27 then
let Test.22 = Index 1 Test.7;
let Test.23 = 1i64;
let Test.24 = Index 0 Test.22;
let Test.26 = lowlevel Eq Test.23 Test.24;
if Test.26 then
let Test.17 = Index 0 Test.7;
let Test.3 = Index 1 Test.17;
let Test.16 = Index 1 Test.7;
let Test.4 = Index 1 Test.16;
let Test.15 = 0i64;
let Test.9 = CallByName List.4 Test.2 Test.15 Test.4;
let Test.10 = 0i64;
let Test.8 = CallByName List.4 Test.9 Test.10 Test.3;
ret Test.8;
else
dec Test.2;
jump Test.25;
else
dec Test.2;
jump Test.25;
procedure Test.0 ():
let Test.40 = 1i64;
let Test.41 = 2i64;
let Test.6 = Array [Test.40, Test.41];
let Test.5 = CallByName Test.1 Test.6;
ret Test.5;
"# "#
), ),
) )
@ -1226,18 +1296,18 @@ mod test_mono {
indoc!( indoc!(
r#" r#"
procedure List.3 (#Attr.2, #Attr.3): procedure List.3 (#Attr.2, #Attr.3):
let Test.40 = lowlevel ListLen #Attr.2; let Test.38 = lowlevel ListLen #Attr.2;
let Test.36 = lowlevel NumLt #Attr.3 Test.40; let Test.34 = lowlevel NumLt #Attr.3 Test.38;
if Test.36 then if Test.34 then
let Test.38 = 1i64; let Test.36 = 1i64;
let Test.39 = lowlevel ListGetUnsafe #Attr.2 #Attr.3; let Test.37 = lowlevel ListGetUnsafe #Attr.2 #Attr.3;
let Test.37 = Ok Test.38 Test.39; let Test.35 = Ok Test.36 Test.37;
ret Test.37; ret Test.35;
else else
let Test.34 = 0i64; let Test.32 = 0i64;
let Test.35 = Struct {}; let Test.33 = Struct {};
let Test.33 = Err Test.34 Test.35; let Test.31 = Err Test.32 Test.33;
ret Test.33; ret Test.31;
procedure List.4 (#Attr.2, #Attr.3, #Attr.4): procedure List.4 (#Attr.2, #Attr.3, #Attr.4):
let Test.14 = lowlevel ListLen #Attr.2; let Test.14 = lowlevel ListLen #Attr.2;
@ -1249,23 +1319,25 @@ mod test_mono {
ret #Attr.2; ret #Attr.2;
procedure Test.1 (Test.2): procedure Test.1 (Test.2):
let Test.41 = 0i64; let Test.39 = 0i64;
let Test.30 = CallByName List.3 Test.2 Test.41; let Test.28 = CallByName List.3 Test.2 Test.39;
let Test.32 = 0i64; let Test.30 = 0i64;
let Test.31 = CallByName List.3 Test.2 Test.32; let Test.29 = CallByName List.3 Test.2 Test.30;
let Test.7 = Struct {Test.30, Test.31}; let Test.7 = Struct {Test.28, Test.29};
let Test.20 = true; joinpoint Test.25:
let Test.22 = 1i64; let Test.18 = Array [];
let Test.21 = Index 0 Test.7; ret Test.18;
let Test.23 = Index 0 Test.21; in
let Test.29 = lowlevel Eq Test.22 Test.23; let Test.19 = Index 0 Test.7;
let Test.27 = lowlevel And Test.29 Test.20; let Test.20 = 1i64;
let Test.25 = 1i64; let Test.21 = Index 0 Test.19;
let Test.24 = Index 1 Test.7; let Test.27 = lowlevel Eq Test.20 Test.21;
let Test.26 = Index 0 Test.24; if Test.27 then
let Test.28 = lowlevel Eq Test.25 Test.26; let Test.22 = Index 1 Test.7;
let Test.19 = lowlevel And Test.28 Test.27; let Test.23 = 1i64;
if Test.19 then let Test.24 = Index 0 Test.22;
let Test.26 = lowlevel Eq Test.23 Test.24;
if Test.26 then
let Test.17 = Index 0 Test.7; let Test.17 = Index 0 Test.7;
let Test.3 = Index 1 Test.17; let Test.3 = Index 1 Test.17;
let Test.16 = Index 1 Test.7; let Test.16 = Index 1 Test.7;
@ -1277,13 +1349,15 @@ mod test_mono {
ret Test.8; ret Test.8;
else else
dec Test.2; dec Test.2;
let Test.18 = Array []; jump Test.25;
ret Test.18; else
dec Test.2;
jump Test.25;
procedure Test.0 (): procedure Test.0 ():
let Test.42 = 1i64; let Test.40 = 1i64;
let Test.43 = 2i64; let Test.41 = 2i64;
let Test.6 = Array [Test.42, Test.43]; let Test.6 = Array [Test.40, Test.41];
let Test.5 = CallByName Test.1 Test.6; let Test.5 = CallByName Test.1 Test.6;
ret Test.5; ret Test.5;
"# "#
@ -1430,19 +1504,18 @@ mod test_mono {
ret Test.12; ret Test.12;
procedure Test.1 (Test.2, Test.3): procedure Test.1 (Test.2, Test.3):
jump Test.7 Test.2 Test.3;
joinpoint Test.7 Test.2 Test.3: joinpoint Test.7 Test.2 Test.3:
let Test.16 = true; let Test.15 = 0i64;
let Test.17 = 0i64; let Test.16 = lowlevel Eq Test.15 Test.2;
let Test.18 = lowlevel Eq Test.17 Test.2; if Test.16 then
let Test.15 = lowlevel And Test.18 Test.16;
if Test.15 then
ret Test.3; ret Test.3;
else else
let Test.13 = 1i64; let Test.13 = 1i64;
let Test.10 = CallByName Num.15 Test.2 Test.13; let Test.10 = CallByName Num.15 Test.2 Test.13;
let Test.11 = CallByName Num.16 Test.2 Test.3; let Test.11 = CallByName Num.16 Test.2 Test.3;
jump Test.7 Test.10 Test.11; jump Test.7 Test.10 Test.11;
in
jump Test.7 Test.2 Test.3;
procedure Test.0 (): procedure Test.0 ():
let Test.5 = 10i64; let Test.5 = 10i64;
@ -1767,20 +1840,18 @@ mod test_mono {
indoc!( indoc!(
r#" r#"
procedure Test.0 (): procedure Test.0 ():
let Test.8 = 0i64;
let Test.10 = 0i64; let Test.10 = 0i64;
let Test.12 = 0i64; let Test.12 = 0i64;
let Test.14 = 0i64; let Test.14 = 1i64;
let Test.16 = 1i64; let Test.13 = Z Test.14;
let Test.15 = Z Test.16;
let Test.13 = S Test.14 Test.15;
let Test.11 = S Test.12 Test.13; let Test.11 = S Test.12 Test.13;
let Test.2 = S Test.10 Test.11; let Test.9 = S Test.10 Test.11;
let Test.6 = true; let Test.2 = S Test.8 Test.9;
let Test.7 = 1i64; let Test.5 = 1i64;
let Test.8 = Index 0 Test.2; let Test.6 = Index 0 Test.2;
let Test.9 = lowlevel Eq Test.7 Test.8; let Test.7 = lowlevel Eq Test.5 Test.6;
let Test.5 = lowlevel And Test.9 Test.6; if Test.7 then
if Test.5 then
let Test.3 = 0i64; let Test.3 = 0i64;
ret Test.3; ret Test.3;
else else
@ -1810,29 +1881,25 @@ mod test_mono {
indoc!( indoc!(
r#" r#"
procedure Test.0 (): procedure Test.0 ():
let Test.14 = 0i64;
let Test.16 = 0i64;
let Test.18 = 0i64; let Test.18 = 0i64;
let Test.20 = 0i64; let Test.20 = 1i64;
let Test.22 = 0i64; let Test.19 = Z Test.20;
let Test.24 = 1i64; let Test.17 = S Test.18 Test.19;
let Test.23 = Z Test.24; let Test.15 = S Test.16 Test.17;
let Test.21 = S Test.22 Test.23; let Test.2 = S Test.14 Test.15;
let Test.19 = S Test.20 Test.21; let Test.11 = 0i64;
let Test.2 = S Test.18 Test.19; let Test.12 = Index 0 Test.2;
let Test.14 = true; let Test.13 = lowlevel Eq Test.11 Test.12;
let Test.15 = 0i64;
let Test.16 = Index 0 Test.2;
let Test.17 = lowlevel Eq Test.15 Test.16;
let Test.13 = lowlevel And Test.17 Test.14;
if Test.13 then if Test.13 then
let Test.8 = true; let Test.7 = Index 1 Test.2;
let Test.10 = 0i64; inc Test.7;
let Test.9 = Index 1 Test.2; let Test.8 = 0i64;
inc Test.9; let Test.9 = Index 0 Test.7;
let Test.11 = Index 0 Test.9; dec Test.7;
dec Test.9; let Test.10 = lowlevel Eq Test.8 Test.9;
let Test.12 = lowlevel Eq Test.10 Test.11; if Test.10 then
let Test.7 = lowlevel And Test.12 Test.8;
if Test.7 then
let Test.4 = Index 1 Test.2; let Test.4 = Index 1 Test.2;
let Test.3 = 1i64; let Test.3 = 1i64;
ret Test.3; ret Test.3;
@ -1872,12 +1939,10 @@ mod test_mono {
ret Test.13; ret Test.13;
procedure Test.1 (Test.6): procedure Test.1 (Test.6):
let Test.19 = true; let Test.18 = Index 0 Test.6;
let Test.21 = false; let Test.19 = false;
let Test.20 = Index 0 Test.6; let Test.20 = lowlevel Eq Test.19 Test.18;
let Test.22 = lowlevel Eq Test.21 Test.20; if Test.20 then
let Test.18 = lowlevel And Test.22 Test.19;
if Test.18 then
let Test.8 = Index 1 Test.6; let Test.8 = Index 1 Test.6;
ret Test.8; ret Test.8;
else else
@ -1885,11 +1950,9 @@ mod test_mono {
ret Test.10; ret Test.10;
procedure Test.1 (Test.6): procedure Test.1 (Test.6):
let Test.32 = true; let Test.29 = Index 0 Test.6;
let Test.34 = false; let Test.30 = false;
let Test.33 = Index 0 Test.6; let Test.31 = lowlevel Eq Test.30 Test.29;
let Test.35 = lowlevel Eq Test.34 Test.33;
let Test.31 = lowlevel And Test.35 Test.32;
if Test.31 then if Test.31 then
let Test.8 = 3i64; let Test.8 = 3i64;
ret Test.8; ret Test.8;
@ -1898,19 +1961,19 @@ mod test_mono {
ret Test.10; ret Test.10;
procedure Test.0 (): procedure Test.0 ():
let Test.38 = true; let Test.34 = true;
let Test.37 = Struct {Test.38}; let Test.33 = Struct {Test.34};
let Test.5 = CallByName Test.1 Test.37; let Test.5 = CallByName Test.1 Test.33;
let Test.36 = false; let Test.32 = false;
let Test.28 = Struct {Test.36}; let Test.26 = Struct {Test.32};
let Test.3 = CallByName Test.1 Test.28; let Test.3 = CallByName Test.1 Test.26;
let Test.26 = true; let Test.24 = true;
let Test.27 = 11i64; let Test.25 = 11i64;
let Test.25 = Struct {Test.26, Test.27}; let Test.23 = Struct {Test.24, Test.25};
let Test.4 = CallByName Test.1 Test.25; let Test.4 = CallByName Test.1 Test.23;
let Test.23 = false; let Test.21 = false;
let Test.24 = 7i64; let Test.22 = 7i64;
let Test.15 = Struct {Test.23, Test.24}; let Test.15 = Struct {Test.21, Test.22};
let Test.2 = CallByName Test.1 Test.15; let Test.2 = CallByName Test.1 Test.15;
let Test.14 = CallByName Num.16 Test.2 Test.3; let Test.14 = CallByName Num.16 Test.2 Test.3;
let Test.12 = CallByName Num.16 Test.14 Test.4; let Test.12 = CallByName Num.16 Test.14 Test.4;
@ -1943,30 +2006,33 @@ mod test_mono {
ret Test.6; ret Test.6;
procedure Test.0 (): procedure Test.0 ():
let Test.17 = 0i64;
let Test.19 = 0i64; let Test.19 = 0i64;
let Test.21 = 0i64; let Test.20 = 41i64;
let Test.22 = 41i64; let Test.18 = Just Test.19 Test.20;
let Test.20 = Just Test.21 Test.22; let Test.2 = Just Test.17 Test.18;
let Test.2 = Just Test.19 Test.20; joinpoint Test.14:
let Test.10 = true; let Test.8 = 1i64;
ret Test.8;
in
let Test.9 = Index 1 Test.2;
let Test.10 = 0i64;
let Test.11 = Index 0 Test.9;
let Test.16 = lowlevel Eq Test.10 Test.11;
if Test.16 then
let Test.12 = 0i64; let Test.12 = 0i64;
let Test.11 = Index 1 Test.2; let Test.13 = Index 0 Test.2;
let Test.13 = Index 0 Test.11; let Test.15 = lowlevel Eq Test.12 Test.13;
let Test.18 = lowlevel Eq Test.12 Test.13; if Test.15 then
let Test.16 = lowlevel And Test.18 Test.10;
let Test.14 = 0i64;
let Test.15 = Index 0 Test.2;
let Test.17 = lowlevel Eq Test.14 Test.15;
let Test.9 = lowlevel And Test.17 Test.16;
if Test.9 then
let Test.7 = Index 1 Test.2; let Test.7 = Index 1 Test.2;
let Test.3 = Index 1 Test.7; let Test.3 = Index 1 Test.7;
let Test.5 = 1i64; let Test.5 = 1i64;
let Test.4 = CallByName Num.14 Test.3 Test.5; let Test.4 = CallByName Num.14 Test.3 Test.5;
ret Test.4; ret Test.4;
else else
let Test.8 = 1i64; jump Test.14;
ret Test.8; else
jump Test.14;
"# "#
), ),
) )
@ -2055,18 +2121,18 @@ mod test_mono {
indoc!( indoc!(
r#" r#"
procedure List.3 (#Attr.2, #Attr.3): procedure List.3 (#Attr.2, #Attr.3):
let Test.42 = lowlevel ListLen #Attr.2; let Test.40 = lowlevel ListLen #Attr.2;
let Test.38 = lowlevel NumLt #Attr.3 Test.42; let Test.36 = lowlevel NumLt #Attr.3 Test.40;
if Test.38 then if Test.36 then
let Test.40 = 1i64; let Test.38 = 1i64;
let Test.41 = lowlevel ListGetUnsafe #Attr.2 #Attr.3; let Test.39 = lowlevel ListGetUnsafe #Attr.2 #Attr.3;
let Test.39 = Ok Test.40 Test.41; let Test.37 = Ok Test.38 Test.39;
ret Test.39; ret Test.37;
else else
let Test.36 = 0i64; let Test.34 = 0i64;
let Test.37 = Struct {}; let Test.35 = Struct {};
let Test.35 = Err Test.36 Test.37; let Test.33 = Err Test.34 Test.35;
ret Test.35; ret Test.33;
procedure List.4 (#Attr.2, #Attr.3, #Attr.4): procedure List.4 (#Attr.2, #Attr.3, #Attr.4):
let Test.18 = lowlevel ListLen #Attr.2; let Test.18 = lowlevel ListLen #Attr.2;
@ -2078,21 +2144,23 @@ mod test_mono {
ret #Attr.2; ret #Attr.2;
procedure Test.1 (Test.2, Test.3, Test.4): procedure Test.1 (Test.2, Test.3, Test.4):
let Test.33 = CallByName List.3 Test.4 Test.2; let Test.31 = CallByName List.3 Test.4 Test.2;
let Test.34 = CallByName List.3 Test.4 Test.3; let Test.32 = CallByName List.3 Test.4 Test.3;
let Test.12 = Struct {Test.33, Test.34}; let Test.12 = Struct {Test.31, Test.32};
let Test.23 = true; joinpoint Test.28:
let Test.25 = 1i64; let Test.21 = Array [];
let Test.24 = Index 0 Test.12; ret Test.21;
let Test.26 = Index 0 Test.24; in
let Test.32 = lowlevel Eq Test.25 Test.26; let Test.22 = Index 0 Test.12;
let Test.30 = lowlevel And Test.32 Test.23; let Test.23 = 1i64;
let Test.28 = 1i64; let Test.24 = Index 0 Test.22;
let Test.27 = Index 1 Test.12; let Test.30 = lowlevel Eq Test.23 Test.24;
let Test.29 = Index 0 Test.27; if Test.30 then
let Test.31 = lowlevel Eq Test.28 Test.29; let Test.25 = Index 1 Test.12;
let Test.22 = lowlevel And Test.31 Test.30; let Test.26 = 1i64;
if Test.22 then let Test.27 = Index 0 Test.25;
let Test.29 = lowlevel Eq Test.26 Test.27;
if Test.29 then
let Test.20 = Index 0 Test.12; let Test.20 = Index 0 Test.12;
let Test.5 = Index 1 Test.20; let Test.5 = Index 1 Test.20;
let Test.19 = Index 1 Test.12; let Test.19 = Index 1 Test.12;
@ -2102,14 +2170,16 @@ mod test_mono {
ret Test.13; ret Test.13;
else else
dec Test.4; dec Test.4;
let Test.21 = Array []; jump Test.28;
ret Test.21; else
dec Test.4;
jump Test.28;
procedure Test.0 (): procedure Test.0 ():
let Test.9 = 0i64; let Test.9 = 0i64;
let Test.10 = 0i64; let Test.10 = 0i64;
let Test.43 = 1i64; let Test.41 = 1i64;
let Test.11 = Array [Test.43]; let Test.11 = Array [Test.41];
let Test.8 = CallByName Test.1 Test.9 Test.10 Test.11; let Test.8 = CallByName Test.1 Test.9 Test.10 Test.11;
ret Test.8; ret Test.8;
"# "#