use super::super::{EvaluatedFunctionExit, evaluate_entry, parameter_locals};
use crate::plan::execution::function::IntFunctionId;
use crate::plan::execution::graph::ParamLocal;
use crate::runtime::ExecutableRuntimePlan;
use crate::runtime::error::{ExecutionResult, HostCallOrigin};
use crate::runtime::graph::RetainedValues;
use crate::runtime::state::RuntimeStateFor;
use num_bigint::BigInt;
pub(in crate::runtime) fn run_int<Plan: ExecutableRuntimePlan>(
plan: &Plan,
state: &mut RuntimeStateFor<'_, Plan>,
mut function: IntFunctionId,
mut origin: HostCallOrigin,
mut inputs: RetainedValues,
) -> ExecutionResult<BigInt> {
loop {
let exit = evaluate_entry(plan, state, plan.int_function(function), origin, inputs)?;
match exit {
EvaluatedFunctionExit::Return(value) => return Ok(value),
EvaluatedFunctionExit::TailCall {
function: target,
args,
} => {
origin = HostCallOrigin::source(target.site().clone());
function = *target.function();
inputs = args;
}
}
}
}
pub(in crate::runtime) fn int_parameter_locals<Plan: ExecutableRuntimePlan>(
plan: &Plan,
function: IntFunctionId,
) -> Vec<ParamLocal> {
parameter_locals(plan, plan.int_function(function))
}
#[cfg(test)]
mod tests {
use super::int_parameter_locals;
use crate::plan::execution::function::IntFunctionId;
use crate::plan::execution::graph::{IntLocalId, ParamLocal};
use crate::{
HostModule, HostProviderSet, HostedExecution, ModuleSource, PackageSource, Value,
compile_typed_host_program, compile_typed_module, plan_host_program, plan_module, run_main,
};
use num_bigint::BigInt;
#[test]
fn plain_int_function_protocol_executes_graph_entries() {
let source = r#"
fn increment(value: Int) {
value + 1
}
pub fn main() {
increment(41)
}
"#;
let typed =
compile_typed_module("main", "main.gleam", source).expect("source should compile");
let plan = plan_module(typed).expect("source should plan");
let execution = crate::ExecutionPlan::from_module_plan(plan);
assert_eq!(
int_parameter_locals(&execution, IntFunctionId(1)),
[ParamLocal::Int(IntLocalId(0))],
);
assert_eq!(
run_main(&execution, &mut Vec::new()),
Ok(Value::Int(42.into()))
);
}
#[test]
fn hosted_int_function_protocol_executes_graph_and_host_entries() {
let math = HostModule::new("host_support", "host/math")
.expect("host module should be valid")
.with_function("add", <BigInt as std::ops::Add>::add)
.expect("host function should be valid");
let hosts = HostProviderSet::new([math]).expect("host modules should be unique");
let source = r#"
import host/math
fn increment(value: Int) {
value + 1
}
pub fn main() {
increment(math.add(20, 21))
}
"#;
let typed = compile_typed_host_program(
"application",
"main",
[PackageSource::new(
"application",
["host_support"],
[ModuleSource::new("main", "main.gleam", source)],
)],
hosts,
)
.expect("host source should compile");
let plan = plan_host_program(typed).expect("host source should plan");
let execution =
HostedExecution::try_from_module_plan(plan).expect("hosted execution should seal");
assert_eq!(
int_parameter_locals(&execution, IntFunctionId(2)),
[ParamLocal::Int(IntLocalId(0))],
);
assert_eq!(
int_parameter_locals(&execution, IntFunctionId(1)),
[
ParamLocal::Int(IntLocalId(0)),
ParamLocal::Int(IntLocalId(1)),
],
);
assert_eq!(
execution.run_main(&mut (), &mut Vec::new()),
Ok(Value::Int(42.into())),
);
}
}