use crate::plan::CustomFieldAccess;
use crate::plan::{
BoolExpr, CaptureArg, ConstantIntFunctionInstantiation, FloatExpr, FunctionFunctionExpr,
FunctionInstantiation, FunctionListExpr, FunctionType, IntExpr, IntFunctionLocalId,
IntFunctionReference, PanicExpr, Step, StringExpr, TupleExpr,
};
use ecow::EcoString;
use num_bigint::BigInt;
#[derive(Debug, Clone, PartialEq)]
pub struct IntFunctionExpr {
type_: FunctionType,
kind: IntFunctionExprKind,
}
#[derive(Debug, Clone, PartialEq)]
pub(crate) enum IntFunctionExprKind {
Constant(ConstantIntFunctionInstantiation),
Reference(IntFunctionReference),
Closure {
function: FunctionInstantiation,
captures: Vec<CaptureArg>,
},
LocalGet {
local: IntFunctionLocalId,
name: EcoString,
},
Call {
function: FunctionInstantiation,
args: Vec<crate::plan::CallArg>,
type_: FunctionType,
site: crate::plan::HostCallSite,
},
FunctionCall {
function: Box<FunctionFunctionExpr>,
args: Vec<crate::plan::CallArg>,
type_: FunctionType,
site: crate::plan::HostCallSite,
},
TupleIndex {
tuple: Box<TupleExpr>,
index: usize,
type_: FunctionType,
},
CustomField(CustomFieldAccess),
ListIndex {
list: Box<FunctionListExpr>,
index: usize,
type_: FunctionType,
},
Panic(PanicExpr),
BoolCase {
subject: Box<BoolExpr>,
true_: Box<IntFunctionExpr>,
false_: Box<IntFunctionExpr>,
},
IntCase {
subject: Box<IntExpr>,
clauses: Vec<(BigInt, IntFunctionExpr)>,
fallback: Box<IntFunctionExpr>,
},
StringCase {
subject: Box<StringExpr>,
clauses: Vec<(EcoString, IntFunctionExpr)>,
fallback: Box<IntFunctionExpr>,
},
FloatCase {
subject: Box<FloatExpr>,
clauses: Vec<(f64, IntFunctionExpr)>,
fallback: Box<IntFunctionExpr>,
},
Block {
steps: Vec<Step>,
return_: Box<IntFunctionExpr>,
},
}
impl IntFunctionExpr {
pub(crate) fn constant(value: ConstantIntFunctionInstantiation, type_: FunctionType) -> Self {
Self {
type_,
kind: IntFunctionExprKind::Constant(value),
}
}
pub(crate) fn reference(value: IntFunctionReference) -> Self {
let type_ = value.instantiation().shape().type_();
Self {
type_,
kind: IntFunctionExprKind::Reference(value),
}
}
pub(crate) fn closure(
function: FunctionInstantiation,
captures: Vec<CaptureArg>,
type_: FunctionType,
) -> Self {
Self {
type_,
kind: IntFunctionExprKind::Closure { function, captures },
}
}
pub(crate) fn local_get(
local: IntFunctionLocalId,
name: EcoString,
type_: FunctionType,
) -> Self {
Self {
type_,
kind: IntFunctionExprKind::LocalGet { local, name },
}
}
#[cfg(test)]
pub(crate) fn call(
function: FunctionInstantiation,
args: Vec<crate::plan::CallArg>,
type_: FunctionType,
) -> Self {
Self::call_at(function, args, type_, crate::plan::HostCallSite::unknown())
}
pub(crate) fn call_at(
function: FunctionInstantiation,
args: Vec<crate::plan::CallArg>,
type_: FunctionType,
site: crate::plan::HostCallSite,
) -> Self {
Self {
type_: type_.clone(),
kind: IntFunctionExprKind::Call {
function,
args,
type_,
site,
},
}
}
#[cfg(test)]
pub(crate) fn function_call(
function: FunctionFunctionExpr,
args: Vec<crate::plan::CallArg>,
type_: FunctionType,
) -> Self {
Self::function_call_at(function, args, type_, crate::plan::HostCallSite::unknown())
}
pub(crate) fn function_call_at(
function: FunctionFunctionExpr,
args: Vec<crate::plan::CallArg>,
type_: FunctionType,
site: crate::plan::HostCallSite,
) -> Self {
Self {
type_: type_.clone(),
kind: IntFunctionExprKind::FunctionCall {
function: Box::new(function),
args,
type_,
site,
},
}
}
pub(crate) fn tuple_index(tuple: TupleExpr, index: usize, type_: FunctionType) -> Self {
Self {
type_: type_.clone(),
kind: IntFunctionExprKind::TupleIndex {
tuple: Box::new(tuple),
index,
type_,
},
}
}
pub(crate) fn custom_field(access: CustomFieldAccess, type_: FunctionType) -> Self {
Self {
type_,
kind: IntFunctionExprKind::CustomField(access),
}
}
pub(crate) fn list_index(
list: impl Into<FunctionListExpr>,
index: usize,
type_: FunctionType,
) -> Self {
Self {
type_: type_.clone(),
kind: IntFunctionExprKind::ListIndex {
list: Box::new(list.into()),
index,
type_,
},
}
}
pub(crate) fn panic(panic: PanicExpr, type_: FunctionType) -> Self {
Self {
type_,
kind: IntFunctionExprKind::Panic(panic),
}
}
pub(crate) fn bool_case(
subject: BoolExpr,
true_: IntFunctionExpr,
false_: IntFunctionExpr,
) -> Self {
Self {
type_: true_.type_.clone(),
kind: IntFunctionExprKind::BoolCase {
subject: Box::new(subject),
true_: Box::new(true_),
false_: Box::new(false_),
},
}
}
pub(crate) fn int_case(
subject: IntExpr,
clauses: Vec<(BigInt, IntFunctionExpr)>,
fallback: IntFunctionExpr,
) -> Self {
Self {
type_: fallback.type_.clone(),
kind: IntFunctionExprKind::IntCase {
subject: Box::new(subject),
clauses,
fallback: Box::new(fallback),
},
}
}
pub(crate) fn string_case(
subject: StringExpr,
clauses: Vec<(EcoString, IntFunctionExpr)>,
fallback: IntFunctionExpr,
) -> Self {
Self {
type_: fallback.type_.clone(),
kind: IntFunctionExprKind::StringCase {
subject: Box::new(subject),
clauses,
fallback: Box::new(fallback),
},
}
}
pub(crate) fn float_case(
subject: FloatExpr,
clauses: Vec<(f64, IntFunctionExpr)>,
fallback: IntFunctionExpr,
) -> Self {
Self {
type_: fallback.type_.clone(),
kind: IntFunctionExprKind::FloatCase {
subject: Box::new(subject),
clauses,
fallback: Box::new(fallback),
},
}
}
pub(crate) fn block(steps: Vec<Step>, return_: IntFunctionExpr) -> Self {
Self {
type_: return_.type_.clone(),
kind: IntFunctionExprKind::Block {
steps,
return_: Box::new(return_),
},
}
}
pub fn type_(&self) -> &FunctionType {
&self.type_
}
pub(crate) fn kind(&self) -> &IntFunctionExprKind {
&self.kind
}
}
#[cfg(test)]
mod tests {
use super::{IntFunctionExpr, IntFunctionExprKind};
use crate::plan::{
BoolExpr, Expr, FunctionFunctionExpr, FunctionFunctionReference, FunctionInstantiation,
FunctionShape, FunctionType, IntExpr, IntFunctionLocalId, IntFunctionReference, Step,
StringExpr, ValueShape, ValueType, monomorphic_function_instantiation,
};
#[test]
fn int_function_expr_kind_accessors() {
assert_eq!(
int_function_type(),
FunctionType::new(vec![ValueType::Int], ValueType::Int),
);
assert_eq!(
int_function_value().kind(),
&IntFunctionExprKind::Reference(IntFunctionReference::new(function_instantiation())),
);
assert_eq!(
IntFunctionExpr::closure(function_instantiation(), Vec::new(), int_function_type(),)
.kind(),
&IntFunctionExprKind::Closure {
function: function_instantiation(),
captures: Vec::new(),
},
);
assert_eq!(
IntFunctionExpr::local_get(IntFunctionLocalId(0), "f".into(), int_function_type(),)
.kind(),
&IntFunctionExprKind::LocalGet {
local: IntFunctionLocalId(0),
name: "f".into(),
},
);
assert_eq!(
IntFunctionExpr::call(
function_returning_function_instantiation(),
Vec::new(),
int_function_type(),
)
.kind(),
&IntFunctionExprKind::Call {
function: function_returning_function_instantiation(),
args: Vec::new(),
type_: int_function_type(),
site: crate::plan::HostCallSite::unknown(),
},
);
assert_eq!(
IntFunctionExpr::function_call(
function_function_value(),
Vec::new(),
int_function_type(),
)
.kind(),
&IntFunctionExprKind::FunctionCall {
function: Box::new(function_function_value()),
args: Vec::new(),
type_: int_function_type(),
site: crate::plan::HostCallSite::unknown(),
},
);
assert_eq!(
IntFunctionExpr::tuple_index(tuple_expr(), 0, int_function_type()).kind(),
&IntFunctionExprKind::TupleIndex {
tuple: Box::new(tuple_expr()),
index: 0,
type_: int_function_type(),
},
);
assert_eq!(
IntFunctionExpr::bool_case(
BoolExpr::value(true),
int_function_value(),
int_function_value(),
)
.kind(),
&IntFunctionExprKind::BoolCase {
subject: Box::new(BoolExpr::value(true)),
true_: Box::new(int_function_value()),
false_: Box::new(int_function_value()),
},
);
assert_eq!(
IntFunctionExpr::int_case(
IntExpr::value(1.into()),
vec![(1.into(), int_function_value())],
int_function_value(),
)
.kind(),
&IntFunctionExprKind::IntCase {
subject: Box::new(IntExpr::value(1.into())),
clauses: vec![(1.into(), int_function_value())],
fallback: Box::new(int_function_value()),
},
);
assert_eq!(
IntFunctionExpr::string_case(
StringExpr::value("one".into()),
vec![("one".into(), int_function_value())],
int_function_value(),
)
.kind(),
&IntFunctionExprKind::StringCase {
subject: Box::new(StringExpr::value("one".into())),
clauses: vec![("one".into(), int_function_value())],
fallback: Box::new(int_function_value()),
},
);
assert_eq!(
IntFunctionExpr::float_case(
crate::plan::FloatExpr::value(1.0),
vec![(1.0, int_function_value())],
int_function_value(),
)
.kind(),
&IntFunctionExprKind::FloatCase {
subject: Box::new(crate::plan::FloatExpr::value(1.0)),
clauses: vec![(1.0, int_function_value())],
fallback: Box::new(int_function_value()),
},
);
assert_eq!(
IntFunctionExpr::block(
vec![Step::evaluate(Expr::int(IntExpr::value(1.into())))],
int_function_value(),
)
.kind(),
&IntFunctionExprKind::Block {
steps: vec![Step::evaluate(Expr::int(IntExpr::value(1.into())))],
return_: Box::new(int_function_value()),
},
);
}
#[test]
fn int_function_expr_type() {
assert_eq!(int_function_value().type_(), &int_function_type());
assert_eq!(
IntFunctionExpr::bool_case(
BoolExpr::value(true),
int_function_value(),
int_function_value(),
)
.type_(),
&int_function_type(),
);
assert_eq!(
IntFunctionExpr::int_case(
IntExpr::value(1.into()),
vec![(1.into(), int_function_value())],
int_function_value(),
)
.type_(),
&int_function_type(),
);
assert_eq!(
IntFunctionExpr::block(Vec::new(), int_function_value()).type_(),
&int_function_type(),
);
}
fn int_function_value() -> IntFunctionExpr {
IntFunctionExpr::reference(IntFunctionReference::new(function_instantiation()))
}
fn int_function_type() -> FunctionType {
FunctionType::new(vec![ValueType::Int], ValueType::Int)
}
fn function_function_value() -> FunctionFunctionExpr {
FunctionFunctionExpr::reference(
FunctionFunctionReference::new(function_returning_function_instantiation()),
int_function_type(),
)
}
fn function_instantiation() -> FunctionInstantiation {
monomorphic_function_instantiation(
0,
FunctionShape::from_function_type(int_function_type()),
)
}
fn function_returning_function_instantiation() -> FunctionInstantiation {
monomorphic_function_instantiation(
1,
FunctionShape::new(
Vec::new(),
ValueShape::Function(Box::new(FunctionShape::from_function_type(
int_function_type(),
))),
),
)
}
fn tuple_expr() -> crate::plan::TupleExpr {
crate::plan::TupleExpr::value(
vec![Expr::function(crate::plan::FunctionExpr::int(
int_function_value(),
))],
vec![ValueType::Function(Box::new(int_function_type()))],
)
}
}