Files
carbon-lang/toolchain/check/testdata/array/fail_bound_overflow.carbon
T
Geoff RomerandJon Ross-Perkins dc32aa2690 Initial support for binding patterns in SemIR (#4221)
Introduces the `BindingPattern` and `SymbolicBindingPattern` insts, and
a separate stack of pattern blocks that they are emitted into. The
intent is to generate the corresponding pattern-matching insts (like
`BindName`) from them in a separate pass, but that is deferred to future
PRs.

See
[here](https://docs.google.com/document/d/1U_vQH17V893J9aF1LJXUnFYBNSs2MjKl4bJPaWCB2zo/edit?usp=sharing&resourcekey=0-w0xGYZ0An31Kpz-wvzSXwQ)
for the design this is based on, but note that during review we have
chosen to deviate from that design by putting the patterns in separate
blocks, and omitting the "forward references" from a `BindingPattern` to
its corresponding `BindName`. This in turn necessitates having separate
inst kinds for symbolic and non-symbolic binding patterns.

---------

Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
2024-09-25 19:12:58 +00:00

161 lines
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// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
// Exceptions. See /LICENSE for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
// AUTOUPDATE
// TIP: To test this file alone, run:
// TIP: bazel test //toolchain/testing:file_test --test_arg=--file_tests=toolchain/check/testdata/array/fail_bound_overflow.carbon
// TIP: To dump output, run:
// TIP: bazel run //toolchain/testing:file_test -- --dump_output --file_tests=toolchain/check/testdata/array/fail_bound_overflow.carbon
// TODO: Once we preserve the full value of integer literals in SemIR, check
// that we reject the array bound being too large.
// CHECK:STDERR: fail_bound_overflow.carbon:[[@LINE+4]]:14: error: integer literal with value 39999999999999999993 does not fit in i32
// CHECK:STDERR: var a: [i32; 39999999999999999993];
// CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~
// CHECK:STDERR:
var a: [i32; 39999999999999999993];
// CHECK:STDERR: fail_bound_overflow.carbon:[[@LINE+10]]:9: error: cannot implicitly convert from `i32` to `type`
// CHECK:STDERR: var b: [1; 39999999999999999993];
// CHECK:STDERR: ^
// CHECK:STDERR: fail_bound_overflow.carbon:[[@LINE+7]]:9: note: type `i32` does not implement interface `ImplicitAs`
// CHECK:STDERR: var b: [1; 39999999999999999993];
// CHECK:STDERR: ^
// CHECK:STDERR:
// CHECK:STDERR: fail_bound_overflow.carbon:[[@LINE+3]]:12: error: integer literal with value 39999999999999999993 does not fit in i32
// CHECK:STDERR: var b: [1; 39999999999999999993];
// CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~
var b: [1; 39999999999999999993];
// CHECK:STDOUT: --- fail_bound_overflow.carbon
// CHECK:STDOUT:
// CHECK:STDOUT: constants {
// CHECK:STDOUT: %Int32.type: type = fn_type @Int32 [template]
// CHECK:STDOUT: %.1: type = tuple_type () [template]
// CHECK:STDOUT: %Int32: %Int32.type = struct_value () [template]
// CHECK:STDOUT: %.2: i32 = int_literal 1 [template]
// CHECK:STDOUT: %ImplicitAs.type: type = generic_interface_type @ImplicitAs [template]
// CHECK:STDOUT: %ImplicitAs: %ImplicitAs.type = struct_value () [template]
// CHECK:STDOUT: %Dest: type = bind_symbolic_name Dest 0 [symbolic]
// CHECK:STDOUT: %.3: type = interface_type @ImplicitAs, @ImplicitAs(%Dest) [symbolic]
// CHECK:STDOUT: %Self.1: @ImplicitAs.%.1 (%.3) = bind_symbolic_name Self 1 [symbolic]
// CHECK:STDOUT: %Self.2: %.3 = bind_symbolic_name Self 1 [symbolic]
// CHECK:STDOUT: %Convert.type.1: type = fn_type @Convert, @ImplicitAs(%Dest) [symbolic]
// CHECK:STDOUT: %Convert.1: %Convert.type.1 = struct_value () [symbolic]
// CHECK:STDOUT: %.4: type = assoc_entity_type %.3, %Convert.type.1 [symbolic]
// CHECK:STDOUT: %.5: %.4 = assoc_entity element0, imports.%import_ref.6 [symbolic]
// CHECK:STDOUT: %.6: type = interface_type @ImplicitAs, @ImplicitAs(type) [template]
// CHECK:STDOUT: %Convert.type.2: type = fn_type @Convert, @ImplicitAs(type) [template]
// CHECK:STDOUT: %Convert.2: %Convert.type.2 = struct_value () [template]
// CHECK:STDOUT: %.7: type = assoc_entity_type %.6, %Convert.type.2 [template]
// CHECK:STDOUT: %.8: %.7 = assoc_entity element0, imports.%import_ref.6 [template]
// CHECK:STDOUT: %.9: %.4 = assoc_entity element0, imports.%import_ref.7 [symbolic]
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: imports {
// CHECK:STDOUT: %Core: <namespace> = namespace file.%Core.import, [template] {
// CHECK:STDOUT: .Int32 = %import_ref.1
// CHECK:STDOUT: .ImplicitAs = %import_ref.2
// CHECK:STDOUT: import Core//prelude
// CHECK:STDOUT: import Core//prelude/operators
// CHECK:STDOUT: import Core//prelude/types
// CHECK:STDOUT: import Core//prelude/operators/arithmetic
// CHECK:STDOUT: import Core//prelude/operators/as
// CHECK:STDOUT: import Core//prelude/operators/bitwise
// CHECK:STDOUT: import Core//prelude/operators/comparison
// CHECK:STDOUT: import Core//prelude/types/bool
// CHECK:STDOUT: }
// CHECK:STDOUT: %import_ref.1: %Int32.type = import_ref Core//prelude/types, inst+4, loaded [template = constants.%Int32]
// CHECK:STDOUT: %import_ref.2: %ImplicitAs.type = import_ref Core//prelude/operators/as, inst+40, loaded [template = constants.%ImplicitAs]
// CHECK:STDOUT: %import_ref.3 = import_ref Core//prelude/operators/as, inst+45, unloaded
// CHECK:STDOUT: %import_ref.4: @ImplicitAs.%.2 (%.4) = import_ref Core//prelude/operators/as, inst+63, loaded [symbolic = @ImplicitAs.%.3 (constants.%.9)]
// CHECK:STDOUT: %import_ref.5 = import_ref Core//prelude/operators/as, inst+56, unloaded
// CHECK:STDOUT: %import_ref.6 = import_ref Core//prelude/operators/as, inst+56, unloaded
// CHECK:STDOUT: %import_ref.7 = import_ref Core//prelude/operators/as, inst+56, unloaded
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: file {
// CHECK:STDOUT: package: <namespace> = namespace [template] {
// CHECK:STDOUT: .Core = imports.%Core
// CHECK:STDOUT: .a = %a
// CHECK:STDOUT: .b = %b
// CHECK:STDOUT: }
// CHECK:STDOUT: %Core.import = import Core
// CHECK:STDOUT: %int.make_type_32: init type = call constants.%Int32() [template = i32]
// CHECK:STDOUT: %.loc18_9.1: type = value_of_initializer %int.make_type_32 [template = i32]
// CHECK:STDOUT: %.loc18_9.2: type = converted %int.make_type_32, %.loc18_9.1 [template = i32]
// CHECK:STDOUT: %.loc18_34: type = array_type <error>, i32 [template = <error>]
// CHECK:STDOUT: %a.var: ref <error> = var a
// CHECK:STDOUT: %a: ref <error> = bind_name a, %a.var
// CHECK:STDOUT: %.loc30_9.1: i32 = int_literal 1 [template = constants.%.2]
// CHECK:STDOUT: %.loc30_9.2: type = interface_type @ImplicitAs, @ImplicitAs(type) [template = constants.%.6]
// CHECK:STDOUT: %.loc30_9.3: %.7 = specific_constant imports.%import_ref.4, @ImplicitAs(type) [template = constants.%.8]
// CHECK:STDOUT: %Convert.ref: %.7 = name_ref Convert, %.loc30_9.3 [template = constants.%.8]
// CHECK:STDOUT: %.loc30_9.4: type = converted %.loc30_9.1, <error> [template = <error>]
// CHECK:STDOUT: %.loc30_32: type = array_type <error>, <error> [template = <error>]
// CHECK:STDOUT: %b.var: ref <error> = var b
// CHECK:STDOUT: %b: ref <error> = bind_name b, %b.var
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: generic interface @ImplicitAs(constants.%Dest: type) {
// CHECK:STDOUT: %Dest: type = bind_symbolic_name Dest 0 [symbolic = %Dest (constants.%Dest)]
// CHECK:STDOUT:
// CHECK:STDOUT: !definition:
// CHECK:STDOUT: %.1: type = interface_type @ImplicitAs, @ImplicitAs(%Dest) [symbolic = %.1 (constants.%.3)]
// CHECK:STDOUT: %Self: %.3 = bind_symbolic_name Self 1 [symbolic = %Self (constants.%Self.2)]
// CHECK:STDOUT: %Convert.type: type = fn_type @Convert, @ImplicitAs(%Dest) [symbolic = %Convert.type (constants.%Convert.type.1)]
// CHECK:STDOUT: %Convert: @ImplicitAs.%Convert.type (%Convert.type.1) = struct_value () [symbolic = %Convert (constants.%Convert.1)]
// CHECK:STDOUT: %.2: type = assoc_entity_type @ImplicitAs.%.1 (%.3), @ImplicitAs.%Convert.type (%Convert.type.1) [symbolic = %.2 (constants.%.4)]
// CHECK:STDOUT: %.3: @ImplicitAs.%.2 (%.4) = assoc_entity element0, imports.%import_ref.6 [symbolic = %.3 (constants.%.5)]
// CHECK:STDOUT:
// CHECK:STDOUT: interface {
// CHECK:STDOUT: !members:
// CHECK:STDOUT: .Self = imports.%import_ref.3
// CHECK:STDOUT: .Convert = imports.%import_ref.4
// CHECK:STDOUT: witness = (imports.%import_ref.5)
// CHECK:STDOUT: }
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: fn @Int32() -> type = "int.make_type_32";
// CHECK:STDOUT:
// CHECK:STDOUT: generic fn @Convert(constants.%Dest: type, constants.%Self.1: @ImplicitAs.%.1 (%.3)) {
// CHECK:STDOUT: %Dest: type = bind_symbolic_name Dest 0 [symbolic = %Dest (constants.%Dest)]
// CHECK:STDOUT: %.1: type = interface_type @ImplicitAs, @ImplicitAs(%Dest) [symbolic = %.1 (constants.%.3)]
// CHECK:STDOUT: %Self: %.3 = bind_symbolic_name Self 1 [symbolic = %Self (constants.%Self.2)]
// CHECK:STDOUT:
// CHECK:STDOUT: fn[%self: @Convert.%Self (%Self.2)]() -> @Convert.%Dest (%Dest);
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: specific @ImplicitAs(constants.%Dest) {
// CHECK:STDOUT: %Dest => constants.%Dest
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: specific @ImplicitAs(@ImplicitAs.%Dest) {
// CHECK:STDOUT: %Dest => constants.%Dest
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: specific @ImplicitAs(@Convert.%Dest) {
// CHECK:STDOUT: %Dest => constants.%Dest
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: specific @Convert(constants.%Dest, constants.%Self.1) {
// CHECK:STDOUT: %Dest => constants.%Dest
// CHECK:STDOUT: %.1 => constants.%.3
// CHECK:STDOUT: %Self => constants.%Self.1
// CHECK:STDOUT: }
// CHECK:STDOUT:
// CHECK:STDOUT: specific @ImplicitAs(type) {
// CHECK:STDOUT: %Dest => type
// CHECK:STDOUT:
// CHECK:STDOUT: !definition:
// CHECK:STDOUT: %.1 => constants.%.6
// CHECK:STDOUT: %Self => constants.%Self.2
// CHECK:STDOUT: %Convert.type => constants.%Convert.type.2
// CHECK:STDOUT: %Convert => constants.%Convert.2
// CHECK:STDOUT: %.2 => constants.%.7
// CHECK:STDOUT: %.3 => constants.%.8
// CHECK:STDOUT: }
// CHECK:STDOUT: