comptime eval

This commit is contained in:
2026-07-02 21:31:53 +02:00
parent b94687c30a
commit e00a4e929a
8 changed files with 500 additions and 36 deletions
+2 -1
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@@ -54,6 +54,7 @@ roadmap and milestone history.
- demand-monomorphized Brolang and C-ABI functions - demand-monomorphized Brolang and C-ABI functions
- integer comptime value parameters such as `make_array func($N usize) [N]u8`, specialized by value and omitted from the runtime ABI - integer comptime value parameters such as `make_array func($N usize) [N]u8`, specialized by value and omitted from the runtime ABI
- explicit comptime type parameters such as `max func($T type, a, b T) T`, specialized by type and omitted from the runtime ABI - explicit comptime type parameters such as `max func($T type, a, b T) T`, specialized by type and omitted from the runtime ABI
- forced comptime expressions such as `$sum(1, 2)` and comptime value blocks such as `${ yield 4 }` for integer constant contexts
- bodyful `c_func` definitions and bodyless `c_func` declarations with exact external symbol names - bodyful `c_func` definitions and bodyless `c_func` declarations with exact external symbol names
- concrete-only C signatures, C variadic declarations/calls, and C default argument promotions - concrete-only C signatures, C variadic declarations/calls, and C default argument promotions
- Apple Silicon C ABI lowering for scalars, pointers, fixed-signature plain records/unions, small aggregates, homogeneous float aggregates, and indirect aggregate returns - Apple Silicon C ABI lowering for scalars, pointers, fixed-signature plain records/unions, small aggregates, homogeneous float aggregates, and indirect aggregate returns
@@ -81,7 +82,7 @@ roadmap and milestone history.
## PLANNED / DEFERRED ## PLANNED / DEFERRED
- comptime-evaluable functions - broader Zig-style comptime execution
- tuples and native Brolang variadic functions - tuples and native Brolang variadic functions
- exporting Brolang functions to C and broader target-specific C ABI lowering - exporting Brolang functions to C and broader target-specific C ABI lowering
- non-plain C record layouts such as bitfields, packed records, flexible arrays, qualified fields, and C variadic record arguments - non-plain C record layouts such as bitfields, packed records, flexible arrays, qualified fields, and C variadic record arguments
+1
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@@ -137,6 +137,7 @@ Current prototype features:
- Qualified imported globals and functions with package-aware symbol mangling - Qualified imported globals and functions with package-aware symbol mangling
- Demand-monomorphized Brolang and C-ABI functions - Demand-monomorphized Brolang and C-ABI functions
- Integer and type comptime parameters (`func($N usize) [N]u8`, `func($T type, value T) T`) specialized by comptime argument - Integer and type comptime parameters (`func($N usize) [N]u8`, `func($T type, value T) T`) specialized by comptime argument
- Forced comptime expressions (`$sum(1, 2)`) and comptime value blocks (`${ yield 4 }`) for integer constant contexts
- Bodyless concrete C function declarations with exact external symbol names - Bodyless concrete C function declarations with exact external symbol names
- Bodyless manual and imported C variadic declarations with default argument promotions - Bodyless manual and imported C variadic declarations with default argument promotions
- Ordered linking of additional C sources, objects, archives, and libraries - Ordered linking of additional C sources, objects, archives, and libraries
+27 -4
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@@ -651,7 +651,29 @@
inferred type parameters, first-class type values, or comptime execution inferred type parameters, first-class type values, or comptime execution
27.6 comptime-evaluable constants/functions 27.6 comptime-evaluable constants/functions
- planned shape: `$x :: 32` and `$sum func(a, b int) int { ... }` - `$expr` forces comptime evaluation of an expression:
`x :: $32`, `n :: $sum(1, 2)`, and `res :: ${ ... }`
- constant contexts such as array counts and comptime value arguments implicitly
require comptime evaluation; ordinary immutable bindings remain ordinary bindings
- ordinary `func` calls are comptime-evaluable when reached from a comptime context;
do not add a separate `$sum func(...)` declaration form
- v1 evaluator supports integer literals/arithmetic, boolean conditions, immutable
locals, `return`, `if`/`else`, comptime blocks, and direct calls to other evaluable
brolang functions
- broader Zig-style comptime execution is milestone 27.7
27.7 broader Zig-style comptime execution
- extend the comptime evaluator from integer scalars into a real compile-time value
model: bools, floats, strings, arrays/slices, structs/unions/enums, optionals,
fallibles, and pointers to comptime storage
- support mutable comptime locals/assignment, loops with an evaluation quota,
`defer`, `match`, value blocks/`yield`, and `try`/`catch`
- allow calls through comptime-known function values/function pointers; keep external
`c_func` calls runtime-only unless a future compiler intrinsic explicitly models
their behavior
- immutable locals/globals with comptime-known initializers may feed comptime
evaluation; runtime-dependent values remain invalid in comptime contexts
- no runtime side effects during comptime evaluation
28. brolang build system (requires comptime execution) 28. brolang build system (requires comptime execution)
@@ -1244,9 +1266,10 @@ data :: read_file(path) catch |e| match e {
``` ```
make_array func($N usize) [N]u8 { ... } # implemented: integer comptime value params make_array func($N usize) [N]u8 { ... } # implemented: integer comptime value params
max func($T type, a, b T) T { ... } # deferred: comptime type params max func($T type, a, b T) T { ... } # implemented: comptime type params
$x :: 32 # deferred: comptime evaluable constant x :: $32 # implemented: force comptime expression evaluation
$sum func(a, b int) int { ... } # deferred: comptime evaluable function n :: $sum(1, 2) # implemented: ordinary functions can run at comptime
res :: ${ yield 4 } # implemented: comptime value block
``` ```
## A word on memory allocation ## A word on memory allocation
+1
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@@ -85,6 +85,7 @@ Expr_Kind :: enum u8 {
Struct_Literal, Struct_Literal,
Keyed, Keyed,
Cast, Cast,
Comptime,
Negate, Negate,
Not, Not,
Add, Add,
+229 -13
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@@ -389,6 +389,7 @@ eval_integer_constant_in_context :: proc(
pkg: ast.Package_Id, pkg: ast.Package_Id,
file: ast.File_Id, file: ast.File_Id,
depth := 0, depth := 0,
values: []Comptime_Value = nil,
) -> Constant { ) -> Constant {
if depth > 64 || expr_id == ast.INVALID_EXPR || int(expr_id) >= len(checker.ast_module.exprs) { if depth > 64 || expr_id == ast.INVALID_EXPR || int(expr_id) >= len(checker.ast_module.exprs) {
return Constant{kind = .Not_Constant} return Constant{kind = .Not_Constant}
@@ -397,8 +398,15 @@ eval_integer_constant_in_context :: proc(
#partial switch expr.kind { #partial switch expr.kind {
case .Integer: case .Integer:
return Constant{kind = .Value, value = i128(expr.integer)} return Constant{kind = .Value, value = i128(expr.integer)}
case .Bool:
return Constant{kind = .Value, value = i128(expr.integer)}
case .Name: case .Name:
if !symbol.is_valid(expr.qualifier) { if !symbol.is_valid(expr.qualifier) {
if value, ok := find_comptime_value(values, expr.name); ok {
if value.kind == .Integer {
return Constant{kind = .Value, value = value.value}
}
}
if value, ok := current_comptime_value(checker, expr.name); ok { if value, ok := current_comptime_value(checker, expr.name); ok {
if value.kind == .Integer { if value.kind == .Integer {
return Constant{kind = .Value, value = value.value} return Constant{kind = .Value, value = value.value}
@@ -417,17 +425,32 @@ eval_integer_constant_in_context :: proc(
if g.external || !g.immutable { if g.external || !g.immutable {
return Constant{kind = .Not_Constant} return Constant{kind = .Not_Constant}
} }
return eval_integer_constant_in_context(checker, g.expr, g.pkg, g.file, depth+1) return eval_integer_constant_in_context(checker, g.expr, g.pkg, g.file, depth+1, values)
case .Comptime:
if expr.left != ast.INVALID_EXPR {
return eval_integer_constant_in_context(checker, expr.left, pkg, file, depth+1, values)
}
result, produced, ok := eval_comptime_statements(checker, expr.body, pkg, file, depth+1, values, true)
if ok && produced {
return result
}
return Constant{kind = .Not_Constant}
case .Negate: case .Negate:
operand := eval_integer_constant_in_context(checker, expr.left, pkg, file, depth+1) operand := eval_integer_constant_in_context(checker, expr.left, pkg, file, depth+1, values)
if operand.kind == .Value { if operand.kind == .Value {
value, overflow := intrinsics.overflow_sub(i128(0), operand.value) value, overflow := intrinsics.overflow_sub(i128(0), operand.value)
return Constant{kind = .Overflow} if overflow else Constant{kind = .Value, value = value} return Constant{kind = .Overflow} if overflow else Constant{kind = .Value, value = value}
} }
return operand return operand
case .Not:
operand := eval_integer_constant_in_context(checker, expr.left, pkg, file, depth+1, values)
if operand.kind == .Value {
return Constant{kind = .Value, value = 1 if operand.value == 0 else 0}
}
return operand
case .Add, .Sub, .Mul, .Div: case .Add, .Sub, .Mul, .Div:
left := eval_integer_constant_in_context(checker, expr.left, pkg, file, depth+1) left := eval_integer_constant_in_context(checker, expr.left, pkg, file, depth+1, values)
right := eval_integer_constant_in_context(checker, expr.right, pkg, file, depth+1) right := eval_integer_constant_in_context(checker, expr.right, pkg, file, depth+1, values)
if left.kind == .Div_By_Zero || right.kind == .Div_By_Zero { if left.kind == .Div_By_Zero || right.kind == .Div_By_Zero {
return Constant{kind = .Div_By_Zero} return Constant{kind = .Div_By_Zero}
} }
@@ -453,10 +476,163 @@ eval_integer_constant_in_context :: proc(
value, overflow = intrinsics.overflow_add(left.value, right.value) value, overflow = intrinsics.overflow_add(left.value, right.value)
} }
return Constant{kind = .Overflow} if overflow else Constant{kind = .Value, value = value} return Constant{kind = .Overflow} if overflow else Constant{kind = .Value, value = value}
case .Eq, .Ne, .Lt, .Le, .Gt, .Ge:
left := eval_integer_constant_in_context(checker, expr.left, pkg, file, depth+1, values)
right := eval_integer_constant_in_context(checker, expr.right, pkg, file, depth+1, values)
if left.kind != .Value || right.kind != .Value {
if left.kind == .Div_By_Zero || right.kind == .Div_By_Zero {
return Constant{kind = .Div_By_Zero}
}
if left.kind == .Overflow || right.kind == .Overflow {
return Constant{kind = .Overflow}
}
return Constant{kind = .Not_Constant}
}
ok := false
#partial switch expr.kind {
case .Eq: ok = left.value == right.value
case .Ne: ok = left.value != right.value
case .Lt: ok = left.value < right.value
case .Le: ok = left.value <= right.value
case .Gt: ok = left.value > right.value
case .Ge: ok = left.value >= right.value
}
return Constant{kind = .Value, value = 1 if ok else 0}
case .And, .Or:
left := eval_integer_constant_in_context(checker, expr.left, pkg, file, depth+1, values)
if left.kind != .Value {
return left
}
if expr.kind == .And && left.value == 0 {
return Constant{kind = .Value, value = 0}
}
if expr.kind == .Or && left.value != 0 {
return Constant{kind = .Value, value = 1}
}
right := eval_integer_constant_in_context(checker, expr.right, pkg, file, depth+1, values)
if right.kind == .Value {
return Constant{kind = .Value, value = 1 if right.value != 0 else 0}
}
return right
case .Call:
return eval_comptime_call(checker, expr, pkg, file, depth+1, values)
} }
return Constant{kind = .Not_Constant} return Constant{kind = .Not_Constant}
} }
eval_comptime_statements :: proc(
checker: ^Checker,
statements: []ast.Stmt_Id,
pkg: ast.Package_Id,
file: ast.File_Id,
depth: int,
values: []Comptime_Value,
yield_returns: bool,
) -> (Constant, bool, bool) {
env: [dynamic]Comptime_Value
env.allocator = checker.allocator
append(&env, ..values)
defer delete(env)
for statement_id in statements {
if statement_id == ast.INVALID_STMT || int(statement_id) >= len(checker.ast_module.statements) {
return Constant{kind=.Not_Constant}, false, false
}
statement := checker.ast_module.statements[statement_id]
#partial switch statement.kind {
case .Declaration:
if statement.expr == ast.INVALID_EXPR || !statement.immutable {
return Constant{kind=.Not_Constant}, false, false
}
value := eval_integer_constant_in_context(checker, statement.expr, pkg, file, depth+1, env[:])
if value.kind != .Value || statement.name == checker.sink_symbol {
return value, false, false
}
append(&env, Comptime_Value{name=statement.name, type=types.I64, value=value.value})
case .Return:
if yield_returns || statement.expr == ast.INVALID_EXPR {
return Constant{kind=.Not_Constant}, false, false
}
value := eval_integer_constant_in_context(checker, statement.expr, pkg, file, depth+1, env[:])
return value, value.kind == .Value, value.kind == .Value
case .Yield:
if !yield_returns || statement.expr == ast.INVALID_EXPR {
return Constant{kind=.Not_Constant}, false, false
}
value := eval_integer_constant_in_context(checker, statement.expr, pkg, file, depth+1, env[:])
return value, value.kind == .Value, value.kind == .Value
case .If:
if len(statement.captures) > 0 || statement.guard != ast.INVALID_EXPR {
return Constant{kind=.Not_Constant}, false, false
}
condition := eval_integer_constant_in_context(checker, statement.expr, pkg, file, depth+1, env[:])
if condition.kind != .Value {
return condition, false, false
}
body := statement.body if condition.value != 0 else statement.else_body
value, produced, ok := eval_comptime_statements(checker, body, pkg, file, depth+1, env[:], yield_returns)
if !ok || produced {
return value, produced, ok
}
case:
return Constant{kind=.Not_Constant}, false, false
}
}
return Constant{kind=.Not_Constant}, false, true
}
eval_comptime_call :: proc(
checker: ^Checker,
expr: ast.Expr,
pkg: ast.Package_Id,
file: ast.File_Id,
depth: int,
values: []Comptime_Value,
) -> Constant {
if expr.left != ast.INVALID_EXPR || depth > 64 {
return Constant{kind=.Not_Constant}
}
target_pkg, available := expr_package(checker, expr, pkg, file, false)
if !available {
return Constant{kind=.Not_Constant}
}
template := find_template(checker, expr.name, target_pkg)
if template == ast.INVALID_FUNCTION || int(template) >= len(checker.ast_module.functions) {
return Constant{kind=.Not_Constant}
}
function := checker.ast_module.functions[template]
if function.c_abi || !function.has_body || types.is_valid(function.error) ||
len(function.unsupported_reason) > 0 || !valid_call_arity(function, len(expr.args)) {
return Constant{kind=.Not_Constant}
}
comptime_values, comptime_ok := collect_comptime_values(checker, function, expr.args, pkg, file, false, values)
defer delete(comptime_values, checker.allocator)
if !comptime_ok {
return Constant{kind=.Not_Constant}
}
env: [dynamic]Comptime_Value
env.allocator = checker.allocator
defer delete(env)
append(&env, ..comptime_values)
for param, index in function.params {
if param.comptime_value {
continue
}
if index >= len(expr.args) {
return Constant{kind=.Not_Constant}
}
value := eval_integer_constant_in_context(checker, expr.args[index], pkg, file, depth+1, values)
if value.kind != .Value {
return value
}
append(&env, Comptime_Value{name=param.name, type=types.I64, value=value.value})
}
result, produced, ok := eval_comptime_statements(checker, function.body, function.pkg, function.file, depth+1, env[:], false)
if !ok || !produced {
return Constant{kind=.Not_Constant}
}
return result
}
fits_signed_type :: proc(value: i128, value_type: types.Type, selected := target.DEFAULT) -> bool { fits_signed_type :: proc(value: i128, value_type: types.Type, selected := target.DEFAULT) -> bool {
if !types.is_signed(value_type, selected) { if !types.is_signed(value_type, selected) {
return false return false
@@ -952,6 +1128,7 @@ collect_comptime_values :: proc(
pkg: ast.Package_Id, pkg: ast.Package_Id,
file: ast.File_Id, file: ast.File_Id,
diagnose := false, diagnose := false,
extra_values: []Comptime_Value = nil,
) -> ([]Comptime_Value, bool) { ) -> ([]Comptime_Value, bool) {
if !function_has_comptime_params(function) { if !function_has_comptime_params(function) {
return nil, true return nil, true
@@ -1002,7 +1179,7 @@ collect_comptime_values :: proc(
} }
constant := Constant{kind = .Not_Constant} constant := Constant{kind = .Not_Constant}
if index < len(args) { if index < len(args) {
constant = eval_integer_constant_in_context(checker, args[index], pkg, file) constant = eval_integer_constant_in_context(checker, args[index], pkg, file, values=extra_values)
} }
if constant.kind != .Value { if constant.kind != .Value {
if diagnose { if diagnose {
@@ -1145,6 +1322,11 @@ mark_expr_imports_used :: proc(checker: ^Checker, expr_id: ast.Expr_Id, file: as
} }
case .Negate, .Not, .Address, .Deref, .Field, .Unwrap, .Try, .Keyed, .Enum_Literal, .Cast: case .Negate, .Not, .Address, .Deref, .Field, .Unwrap, .Try, .Keyed, .Enum_Literal, .Cast:
append(&stack, expr.left) append(&stack, expr.left)
case .Comptime:
if expr.left != ast.INVALID_EXPR {
append(&stack, expr.left)
}
mark_block_imports_used(checker, expr.body, file)
case .Catch: case .Catch:
append(&stack, expr.left) append(&stack, expr.left)
if expr.right != ast.INVALID_EXPR { if expr.right != ast.INVALID_EXPR {
@@ -1744,6 +1926,25 @@ infer_compound_expr :: proc(
) -> types.Type { ) -> types.Type {
store := &checker.module.types store := &checker.module.types
#partial switch expr.kind { #partial switch expr.kind {
case .Comptime:
constant := Constant{kind=.Not_Constant}
if expr.left != ast.INVALID_EXPR {
constant = eval_integer_constant_in_context(checker, expr.left, pkg, file)
}
if expr.left == ast.INVALID_EXPR {
value, produced, ok := eval_comptime_statements(checker, expr.body, pkg, file, 0, nil, true)
if ok && produced {
constant = value
}
}
if constant.kind == .Overflow || constant.kind == .Div_By_Zero ||
(constant.kind == .Value && !fits_i64(constant.value)) {
return types.I64
}
if constant.kind == .Value {
return types.smallest_signed_for_literal(i64(constant.value))
}
return types.INVALID
case .Bool: case .Bool:
return types.BOOL return types.BOOL
case .Not: case .Not:
@@ -1954,7 +2155,7 @@ infer_expr :: proc(
_ = pop(&stack) _ = pop(&stack)
case .String, .Array, .None, .Undefined, .Address, .Deref, .Index, .Slice, case .String, .Array, .None, .Undefined, .Address, .Deref, .Index, .Slice,
.Field, .Unwrap, .Orelse, .Try, .Catch, .Struct_Literal, .Keyed, .Enum_Literal, .Cast, .Field, .Unwrap, .Orelse, .Try, .Catch, .Struct_Literal, .Keyed, .Enum_Literal, .Cast,
.Bool, .Not, .Eq, .Ne, .Lt, .Le, .Gt, .Ge, .And, .Or, .Range: .Comptime, .Bool, .Not, .Eq, .Ne, .Lt, .Le, .Gt, .Ge, .And, .Or, .Range:
last = infer_compound_expr(checker, expr, locals, pkg, file, demanded, local_types) last = infer_compound_expr(checker, expr, locals, pkg, file, demanded, local_types)
_ = pop(&stack) _ = pop(&stack)
case .Name: case .Name:
@@ -2371,7 +2572,7 @@ infer_statements :: proc(
open_float := false open_float := false
const_val := i128(0) const_val := i128(0)
if !is_runtime_type(checker, declared_local) && !is_undefined_expr(checker, statement.expr) { if !is_runtime_type(checker, declared_local) && !is_undefined_expr(checker, statement.expr) {
constant := eval_constant(checker, statement.expr) constant := eval_integer_constant_in_context(checker, statement.expr, pkg, file)
if constant.kind == .Value && fits_i64(constant.value) { if constant.kind == .Value && fits_i64(constant.value) {
open = true open = true
const_val = constant.value const_val = constant.value
@@ -2842,7 +3043,7 @@ expr_accepts_numeric_demand :: proc(
expr_id == ast.INVALID_EXPR || int(expr_id) >= len(checker.ast_module.exprs) { expr_id == ast.INVALID_EXPR || int(expr_id) >= len(checker.ast_module.exprs) {
return false return false
} }
if constant := eval_constant(checker, expr_id); constant.kind == .Value { if constant := eval_integer_constant_in_context(checker, expr_id, pkg, file); constant.kind == .Value {
return open_integer_accepts_demand(checker, constant.value, demand) return open_integer_accepts_demand(checker, constant.value, demand)
} }
if is_float_constant_expr(checker, expr_id) { if is_float_constant_expr(checker, expr_id) {
@@ -2945,7 +3146,7 @@ infer_all :: proc(checker: ^Checker) {
if global.external { if global.external {
continue continue
} }
constant := eval_constant(checker, global.expr) constant := eval_integer_constant_in_context(checker, global.expr, global.pkg, global.file)
if constant.kind == .Value && fits_i64(constant.value) { if constant.kind == .Value && fits_i64(constant.value) {
checker.global_open_const[index] = true checker.global_open_const[index] = true
checker.global_const_value[index] = constant.value checker.global_const_value[index] = constant.value
@@ -4120,6 +4321,21 @@ build_compound_expr :: proc(
target=hir.INVALID_REF, left=hir.INVALID_EXPR, right=hir.INVALID_EXPR, target=hir.INVALID_REF, left=hir.INVALID_EXPR, right=hir.INVALID_EXPR,
diagnostic=source.INVALID_DIAGNOSTIC, diagnostic=source.INVALID_DIAGNOSTIC,
}) })
case .Comptime:
constant := Constant{kind=.Not_Constant}
if expr.left != ast.INVALID_EXPR {
constant = eval_integer_constant_in_context(checker, expr.left, pkg, file)
} else {
value, produced, ok := eval_comptime_statements(checker, expr.body, pkg, file, 0, nil, true)
if ok && produced {
constant = value
}
}
if constant.kind == .Value || constant.kind == .Overflow || constant.kind == .Div_By_Zero {
return build_constant_expr(checker, expr, constant, expected)
}
id := source.add(checker.diagnostics, expr.span, "expression cannot be evaluated at comptime")
return invalid_hir_expr(checker, expr.span, id)
case .Bool: case .Bool:
return add_hir_expr(checker, hir.Expr{ return add_hir_expr(checker, hir.Expr{
kind=.Bool, span=expr.span, type=types.BOOL, integer=i64(expr.integer), kind=.Bool, span=expr.span, type=types.BOOL, integer=i64(expr.integer),
@@ -4398,9 +4614,9 @@ build_expr :: proc(
continue continue
} }
switch expr.kind { switch expr.kind {
case .String, .Array, .None, .Undefined, .Address, .Deref, .Index, .Slice, case .String, .Array, .None, .Undefined, .Address, .Deref, .Index, .Slice,
.Field, .Unwrap, .Orelse, .Try, .Catch, .Struct_Literal, .Keyed, .Field, .Unwrap, .Orelse, .Try, .Catch, .Struct_Literal, .Keyed,
.Bool, .Cast, .Not, .Eq, .Ne, .Lt, .Le, .Gt, .Ge, .And, .Or, .Range, .Bool, .Cast, .Comptime, .Not, .Eq, .Ne, .Lt, .Le, .Gt, .Ge, .And, .Or, .Range,
.Enum_Literal: .Enum_Literal:
last = build_compound_expr( last = build_compound_expr(
checker, expr, locals, global_reads, calls, frame.expected, pkg, file, checker, expr, locals, global_reads, calls, frame.expected, pkg, file,
@@ -5092,7 +5308,7 @@ build_block :: proc(
// `undefined`, open numeric constants, or arithmetic expressions. // `undefined`, open numeric constants, or arithmetic expressions.
open_const_decl := !is_runtime_type(checker, declared) && !is_undefined_expr(checker, statement.expr) open_const_decl := !is_runtime_type(checker, declared) && !is_undefined_expr(checker, statement.expr)
if open_const_decl { if open_const_decl {
constant := eval_constant(checker, statement.expr) constant := eval_integer_constant_in_context(checker, statement.expr, ctx.pkg, ctx.file)
open_const_decl = constant.kind == .Value && fits_i64(constant.value) || open_const_decl = constant.kind == .Value && fits_i64(constant.value) ||
is_float_constant_expr(checker, statement.expr) is_float_constant_expr(checker, statement.expr)
} }
@@ -7650,7 +7866,7 @@ build_globals :: proc(checker: ^Checker) {
expected := types.INVALID expected := types.INVALID
if is_runtime_type(checker, declared) { if is_runtime_type(checker, declared) {
expected = declared expected = declared
} else if constant := eval_constant(checker, global.expr); } else if constant := eval_integer_constant_in_context(checker, global.expr, global.pkg, global.file);
constant.kind == .Value && fits_i64(constant.value) && constant.kind == .Value && fits_i64(constant.value) &&
is_runtime_type(checker, checker.global_types[global_index]) { is_runtime_type(checker, checker.global_types[global_index]) {
// Open integer constant: build against its demanded/defaulted type. Gated // Open integer constant: build against its demanded/defaulted type. Gated
+32 -18
View File
@@ -914,7 +914,7 @@ is_simple_range_bound :: proc(expr: ast.Expr) -> bool {
prefix_binding_power :: proc(kind: token.Kind) -> (right: int, ok: bool) { prefix_binding_power :: proc(kind: token.Kind) -> (right: int, ok: bool) {
#partial switch kind { #partial switch kind {
case .Minus, .Ampersand, .Bang, .Keyword_Try: case .Minus, .Ampersand, .Bang, .Dollar, .Keyword_Try:
return 20, true return 20, true
} }
return 0, false return 0, false
@@ -931,24 +931,38 @@ parse_expression_bp :: proc(parser: ^Parser, minimum_binding_power, nesting: int
left := ast.INVALID_EXPR left := ast.INVALID_EXPR
if right_power, ok := prefix_binding_power(current(parser).kind); ok { if right_power, ok := prefix_binding_power(current(parser).kind); ok {
operator := advance(parser) operator := advance(parser)
if parser.delimiter_depth > 0 { if operator.kind == .Dollar && current(parser).kind == .Left_Brace {
skip_newlines(parser) body := parse_block(parser)
end := previous(parser)
left = add_expr(parser, ast.Expr{
kind = .Comptime,
span = span_from(operator.span, end.span),
body = body,
left = ast.INVALID_EXPR,
right = ast.INVALID_EXPR,
diagnostic = source.INVALID_DIAGNOSTIC,
})
} else {
if parser.delimiter_depth > 0 {
skip_newlines(parser)
}
operand := parse_expression_bp(parser, right_power, nesting+1)
operand_expr := parser.module.exprs[operand]
prefix_kind := ast.Expr_Kind.Negate
#partial switch operator.kind {
case .Ampersand: prefix_kind = .Address
case .Bang: prefix_kind = .Not
case .Dollar: prefix_kind = .Comptime
case .Keyword_Try: prefix_kind = .Try
}
left = add_expr(parser, ast.Expr{
kind = prefix_kind,
span = span_from(operator.span, operand_expr.span),
left = operand,
right = ast.INVALID_EXPR,
diagnostic = source.INVALID_DIAGNOSTIC,
})
} }
operand := parse_expression_bp(parser, right_power, nesting+1)
operand_expr := parser.module.exprs[operand]
prefix_kind := ast.Expr_Kind.Negate
#partial switch operator.kind {
case .Ampersand: prefix_kind = .Address
case .Bang: prefix_kind = .Not
case .Keyword_Try: prefix_kind = .Try
}
left = add_expr(parser, ast.Expr{
kind=prefix_kind,
span=span_from(operator.span, operand_expr.span),
left=operand,
right=ast.INVALID_EXPR,
diagnostic=source.INVALID_DIAGNOSTIC,
})
} else { } else {
left = parse_primary(parser, nesting) left = parse_primary(parser, nesting)
} }
+159
View File
@@ -567,6 +567,42 @@ main func() void {}
testing.expect_value(t, module.exprs[chained.left].kind, ast.Expr_Kind.Negate) testing.expect_value(t, module.exprs[chained.left].kind, ast.Expr_Kind.Negate)
} }
@(test)
parser_accepts_comptime_prefix_and_block_expressions :: proc(t: ^testing.T) {
text := `sum func(a, b int) int { return a + b }
literal :: $32
call :: $sum(1, 2) + 3
block :: ${
yield 4
}
main func() void {}
`
source_file := source.Source{path="test.bro", text=text}
diagnostics := source.init_diagnostics(&source_file)
defer source.destroy_diagnostics(&diagnostics)
symbols := symbol.init_table()
defer symbol.destroy_table(&symbols)
stream := lexer.lex(&source_file, &diagnostics, &symbols)
defer delete(stream.items)
module := parser.parse(&stream, &source_file, &diagnostics)
defer ast.destroy_module(&module)
literal := module.exprs[module.globals[0].expr]
call_add := module.exprs[module.globals[1].expr]
call := module.exprs[call_add.left]
block := module.exprs[module.globals[2].expr]
testing.expect_value(t, len(diagnostics.items), 0)
testing.expect_value(t, literal.kind, ast.Expr_Kind.Comptime)
testing.expect_value(t, module.exprs[literal.left].kind, ast.Expr_Kind.Integer)
testing.expect_value(t, call_add.kind, ast.Expr_Kind.Add)
testing.expect_value(t, call.kind, ast.Expr_Kind.Comptime)
testing.expect_value(t, module.exprs[call.left].kind, ast.Expr_Kind.Call)
testing.expect_value(t, block.kind, ast.Expr_Kind.Comptime)
testing.expect_value(t, len(block.body), 1)
testing.expect_value(t, module.statements[block.body[0]].kind, ast.Stmt_Kind.Yield)
}
nested_expression_source :: proc(call: bool, depth: int) -> string { nested_expression_source :: proc(call: bool, depth: int) -> string {
builder := strings.builder_make() builder := strings.builder_make()
defer strings.builder_destroy(&builder) defer strings.builder_destroy(&builder)
@@ -2235,6 +2271,119 @@ main func() void {
testing.expect(t, found_assign) testing.expect(t, found_assign)
} }
@(test)
comptime_expression_forces_integer_evaluation :: proc(t: ^testing.T) {
text := `sum func(a, b int) int {
return a + b
}
max func(a, b int) int {
if a > b {
return a
}
return b
}
nested func(value int) int {
two :: 2
return sum(value, two)
}
make_array func($N usize) [N]u8 {
data [N]u8 = undefined
return data
}
forced :: $sum(1, 2)
main func() i32 {
value i32 :: $sum(20, 22)
choice i32 :: $max(9, 3)
blocked i32 :: ${
local :: 5
yield sum(local, 6)
}
bytes [_]u8 :: make_array($nested(2))
if forced != 3 {
return 1
}
if value != 42 {
return 2
}
if choice != 9 {
return 3
}
if blocked != 11 {
return 4
}
if bytes.len != 4 {
return 5
}
return 0
}
`
source_file := source.Source{path="test.bro", text=text}
diagnostics := source.init_diagnostics(&source_file)
defer source.destroy_diagnostics(&diagnostics)
symbols := symbol.init_table()
defer symbol.destroy_table(&symbols)
stream := lexer.lex(&source_file, &diagnostics, &symbols)
defer delete(stream.items)
ast_module := parser.parse(&stream, &source_file, &diagnostics)
defer ast.destroy_module(&ast_module)
hir_module := checker.check(&ast_module, &diagnostics, &symbols)
defer hir.destroy_module(&hir_module)
ir_module := lower.lower(&hir_module)
defer ir.destroy_module(&ir_module)
llvm_text := llvm.emit(&ir_module, &diagnostics, &symbols)
defer delete(llvm_text)
testing.expect_value(t, len(diagnostics.items), 0)
testing.expect(t, strings.contains(llvm_text, "@bro.g.0 = internal constant i8 3"))
}
@(test)
comptime_expression_diagnoses_unsupported_v1_evaluation :: proc(t: ^testing.T) {
text := `loop func() int {
while true {
return 1
}
return 0
}
missing func() int {
if true {
}
}
recurse func(value int) int {
return recurse(value)
}
main func() void {
runtime i32 = 1
_ = $runtime
_ = $loop()
_ = $missing()
_ = $recurse(1)
_ = ${
value :: 1
}
}
`
source_file := source.Source{path="test.bro", text=text}
diagnostics := source.init_diagnostics(&source_file)
defer source.destroy_diagnostics(&diagnostics)
symbols := symbol.init_table()
defer symbol.destroy_table(&symbols)
stream := lexer.lex(&source_file, &diagnostics, &symbols)
defer delete(stream.items)
ast_module := parser.parse(&stream, &source_file, &diagnostics)
defer ast.destroy_module(&ast_module)
hir_module := checker.check(&ast_module, &diagnostics, &symbols)
defer hir.destroy_module(&hir_module)
found := 0
for diagnostic in diagnostics.items {
if strings.contains(diagnostic.message, "expression cannot be evaluated at comptime") {
found += 1
}
}
testing.expect(t, found >= 5)
}
@(test) @(test)
unused_function_signatures_are_validated_eagerly :: proc(t: ^testing.T) { unused_function_signatures_are_validated_eagerly :: proc(t: ^testing.T) {
text := `broken func(value, value i8, nope void) void {} text := `broken func(value, value i8, nope void) void {}
@@ -5615,6 +5764,16 @@ comptime_type_params_compile_and_run :: proc(t: ^testing.T) {
testing.expect_value(t, state.exit_code, 0) testing.expect_value(t, state.exit_code, 0)
} }
@(test)
comptime_eval_compile_and_run :: proc(t: ^testing.T) {
output := "/tmp/brolang-test-comptime-eval"
defer _ = os.remove(output)
status := compiler_core.compile_package("examples/programs/comptime_eval", output)
testing.expect_value(t, status, 0)
state := run_executable(output)
testing.expect_value(t, state.exit_code, 0)
}
@(test) @(test)
lazy_function_body_marks_import_as_used_without_resolving_it :: proc(t: ^testing.T) { lazy_function_body_marks_import_as_used_without_resolving_it :: proc(t: ^testing.T) {
output := "/tmp/brolang-test-package-lazy-import" output := "/tmp/brolang-test-package-lazy-import"
+49
View File
@@ -0,0 +1,49 @@
sum func(a, b int) int {
return a + b
}
max func(a, b int) int {
if a > b {
return a
}
return b
}
nested func(value int) int {
two :: 2
return sum(value, two)
}
make_array func($N usize) [N]u8 {
data [N]u8 = undefined
return data
}
forced :: $sum(1, 2)
main func() i32 {
value i32 :: $sum(20, 22)
choice i32 :: $max(9, 3)
blocked i32 :: ${
local :: 5
yield sum(local, 6)
}
bytes [_]u8 :: make_array($nested(2))
if forced != 3 {
return 1
}
if value != 42 {
return 2
}
if choice != 9 {
return 3
}
if blocked != 11 {
return 4
}
if bytes.len != 4 {
return 5
}
return 0
}