// Copyright (c) 2014 The btcsuite developers // Copyright (c) 2015-2020 The Decred developers // Use of this source code is governed by an ISC // license that can be found in the LICENSE file. package dcrjson import ( "errors" "io" "testing" ) // TestErrorKindStringer tests the stringized output for the ErrorKind type. func TestErrorKindStringer(t *testing.T) { t.Parallel() tests := []struct { in ErrorKind want string }{ {ErrDuplicateMethod, "ErrDuplicateMethod"}, {ErrInvalidUsageFlags, "ErrInvalidUsageFlags"}, {ErrInvalidType, "ErrInvalidType"}, {ErrEmbeddedType, "ErrEmbeddedType"}, {ErrUnexportedField, "ErrUnexportedField"}, {ErrUnsupportedFieldType, "ErrUnsupportedFieldType"}, {ErrNonOptionalField, "ErrNonOptionalField"}, {ErrNonOptionalDefault, "ErrNonOptionalDefault"}, {ErrMismatchedDefault, "ErrMismatchedDefault"}, {ErrUnregisteredMethod, "ErrUnregisteredMethod"}, {ErrNumParams, "ErrNumParams"}, {ErrMissingDescription, "ErrMissingDescription"}, } for i, test := range tests { result := test.in.Error() if result != test.want { t.Errorf("%d: got: %s want: %s", i, result, test.want) continue } } } // TestError tests the error output for the Error type. func TestError(t *testing.T) { t.Parallel() tests := []struct { in Error want string }{{ Error{Description: "some error"}, "some error", }, { Error{Description: "human-readable error"}, "human-readable error", }} t.Logf("Running %d tests", len(tests)) for i, test := range tests { result := test.in.Error() if result != test.want { t.Errorf("Error #%d\n got: %s want: %s", i, result, test.want) continue } } } // TestErrorKindIsAs ensures both ErrorKind and Error can be identified as being // a specific error kind via errors.Is and unwrapped via errors.As. func TestErrorKindIsAs(t *testing.T) { tests := []struct { name string err error target error wantMatch bool wantAs ErrorKind }{{ name: "ErrDuplicateMethod == ErrDuplicateMethod", err: ErrDuplicateMethod, target: ErrDuplicateMethod, wantMatch: true, wantAs: ErrDuplicateMethod, }, { name: "Error.ErrDuplicateMethod == ErrDuplicateMethod", err: makeError(ErrDuplicateMethod, ""), target: ErrDuplicateMethod, wantMatch: true, wantAs: ErrDuplicateMethod, }, { name: "Error.ErrDuplicateMethod == Error.ErrDuplicateMethod", err: makeError(ErrDuplicateMethod, ""), target: makeError(ErrDuplicateMethod, ""), wantMatch: true, wantAs: ErrDuplicateMethod, }, { name: "ErrDuplicateMethod != ErrInvalidType", err: ErrDuplicateMethod, target: ErrInvalidType, wantMatch: false, wantAs: ErrDuplicateMethod, }, { name: "Error.ErrDuplicateMethod != ErrInvalidType", err: makeError(ErrDuplicateMethod, ""), target: ErrInvalidType, wantMatch: false, wantAs: ErrDuplicateMethod, }, { name: "ErrDuplicateMethod != Error.ErrInvalidType", err: ErrDuplicateMethod, target: makeError(ErrInvalidType, ""), wantMatch: false, wantAs: ErrDuplicateMethod, }, { name: "Error.ErrDuplicateMethod != Error.ErrInvalidType", err: makeError(ErrDuplicateMethod, ""), target: makeError(ErrInvalidType, ""), wantMatch: false, wantAs: ErrDuplicateMethod, }, { name: "Error.ErrUnregisteredMethod != io.EOF", err: makeError(ErrUnregisteredMethod, ""), target: io.EOF, wantMatch: false, wantAs: ErrUnregisteredMethod, }} for _, test := range tests { // Ensure the error matches or not depending on the expected result. result := errors.Is(test.err, test.target) if result != test.wantMatch { t.Errorf("%s: incorrect error identification -- got %v, want %v", test.name, result, test.wantMatch) continue } // Ensure the underlying error kind can be unwrapped and is the // expected kind. var kind ErrorKind if !errors.As(test.err, &kind) { t.Errorf("%s: unable to unwrap to error kind", test.name) continue } if kind != test.wantAs { t.Errorf("%s: unexpected unwrapped error kind -- got %v, want %v", test.name, kind, test.wantAs) continue } } }