broaden type inference from context (assignment statements)
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@@ -253,7 +253,7 @@
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```
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17. for if statements, allow `if (cond) one-line statement` (instead of forcing either `if (cond) { block }` or `if cond { block }`)
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- if statements without a bracketed body must enclose the condition in parentheses
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- if statements without a bracketed body must wrap the condition in parentheses UNLESS it's a function call
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18. add `defer` statement (inspired by zig)
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@@ -1727,7 +1727,7 @@ infer_statements :: proc(
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case .Assignment:
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value_type := infer_expr(checker, statement.expr, locals^[:], pkg, file, demanded, local_types)
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if statement.target != ast.INVALID_EXPR {
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_ = infer_expr(checker, statement.target, locals^[:], pkg, file, demanded, local_types)
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target_type := infer_expr(checker, statement.target, locals^[:], pkg, file, demanded, local_types)
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target_expr := checker.ast_module.exprs[statement.target]
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if target_expr.kind == .Name && !symbol.is_valid(target_expr.qualifier) {
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if local_index, ok := find_infer_local_index(locals^[:], target_expr.name); ok &&
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@@ -1735,10 +1735,16 @@ infer_statements :: proc(
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_ = merge_infer_local_type(checker, &locals^[local_index], value_type, local_types)
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}
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}
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// Push the target's concrete type backward onto the RHS so a const used
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// only in an assignment (e.g. `x += speed`) resolves, mirroring how
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// declarations and returns demand their context (record_demand self-gates
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// on a concrete demand and only touches fitting open slots).
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_ = record_demand(checker, statement.expr, target_type, locals^[:], local_types, pkg, file)
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} else if statement.name != checker.sink_symbol {
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if local_index, ok := find_infer_local_index(locals^[:], statement.name); ok &&
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locals^[local_index].mutable {
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_ = merge_infer_local_type(checker, &locals^[local_index], value_type, local_types)
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_ = record_demand(checker, statement.expr, locals^[local_index].type, locals^[:], local_types, pkg, file)
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}
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}
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case .Expression:
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@@ -6603,6 +6603,33 @@ main :: func() void {
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testing.expect(t, types.equal(hir_module.globals[0].type, types.U16))
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}
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@(test)
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contextual_inference_flows_through_compound_assignment :: proc(t: ^testing.T) {
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text := `main :: func() void {
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s :: 5
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v u16 = 0
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v += s
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_ = v
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}
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`
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source_file := source.Source{path="test.bro", text=text}
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diagnostics := source.init_diagnostics(&source_file)
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defer source.destroy_diagnostics(&diagnostics)
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symbols := symbol.init_table()
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defer symbol.destroy_table(&symbols)
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stream := lexer.lex(&source_file, &diagnostics, &symbols)
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defer delete(stream.items)
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ast_module := parser.parse(&stream, &source_file, &diagnostics)
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defer ast.destroy_module(&ast_module)
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hir_module := checker.check(&ast_module, &diagnostics, &symbols)
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defer hir.destroy_module(&hir_module)
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// `s` is used only as the RHS of `v += s`. The assignment target's type (u16) is
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// demanded backward onto `s`, resolving the open constant; without it the compound
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// assignment would report "arithmetic requires compatible numeric operands".
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testing.expect_value(t, len(diagnostics.items), 0)
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}
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@(test)
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contextual_inference_rejects_local_constant_that_does_not_fit :: proc(t: ^testing.T) {
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text := `main :: func() void {
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