580f44aa83
* Move FFI tests into a separate test suite. They never belonged in standalone_2/ since they are not only available in the standalone VM. Also, we want to have a separate status file. * Add new "SharedObjects" option to test files to copy needed shared objects to the Android device for testing. * Add support to compiler/runtime_configuration.dart for testing JIT-mode on Android. * Add new configurations and builders to test_matrix.json to test JIT-mode on Android. * Clean up status file entries for FFI (we didn't need to special-case stress & subtype tests). Change-Id: Ifb32ef7051754f477d00ecd7a0f9b19ca8a66eae Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/97334 Commit-Queue: Samir Jindel <sjindel@google.com> Reviewed-by: William Hesse <whesse@google.com> Reviewed-by: Daco Harkes <dacoharkes@google.com>
121 lines
3.0 KiB
Dart
121 lines
3.0 KiB
Dart
// Copyright (c) 2019, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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//
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// Dart test program for testing dart:ffi function pointers with struct
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// arguments.
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//
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// SharedObjects=ffi_test_functions
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library FfiTest;
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import 'dart:ffi' as ffi;
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import 'dylib_utils.dart';
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import "package:expect/expect.dart";
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import 'coordinate.dart';
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import 'very_large_struct.dart';
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typedef NativeCoordinateOp = Coordinate Function(Coordinate);
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void main() {
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testFunctionWithStruct();
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testFunctionWithStructArray();
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testFunctionWithVeryLargeStruct();
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}
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ffi.DynamicLibrary ffiTestFunctions =
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dlopenPlatformSpecific("ffi_test_functions");
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/// pass a struct to a c function and get a struct as return value
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void testFunctionWithStruct() {
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ffi.Pointer<ffi.NativeFunction<NativeCoordinateOp>> p1 =
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ffiTestFunctions.lookup("TransposeCoordinate");
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NativeCoordinateOp f1 = p1.asFunction();
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Coordinate c1 = Coordinate(10.0, 20.0, null);
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Coordinate c2 = Coordinate(42.0, 84.0, c1);
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c1.next = c2;
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Coordinate result = f1(c1);
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Expect.approxEquals(20.0, c1.x);
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Expect.approxEquals(30.0, c1.y);
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Expect.approxEquals(42.0, result.x);
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Expect.approxEquals(84.0, result.y);
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c1.free();
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c2.free();
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}
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/// pass an array of structs to a c funtion
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void testFunctionWithStructArray() {
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ffi.Pointer<ffi.NativeFunction<NativeCoordinateOp>> p1 =
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ffiTestFunctions.lookup("CoordinateElemAt1");
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NativeCoordinateOp f1 = p1.asFunction();
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Coordinate c1 = Coordinate.allocate(count: 3);
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Coordinate c2 = c1.elementAt(1);
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Coordinate c3 = c1.elementAt(2);
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c1.x = 10.0;
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c1.y = 10.0;
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c1.next = c3;
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c2.x = 20.0;
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c2.y = 20.0;
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c2.next = c1;
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c3.x = 30.0;
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c3.y = 30.0;
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c3.next = c2;
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Coordinate result = f1(c1);
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Expect.approxEquals(20.0, result.x);
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Expect.approxEquals(20.0, result.y);
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c1.free();
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}
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typedef VeryLargeStructSum = int Function(VeryLargeStruct);
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typedef NativeVeryLargeStructSum = ffi.Int64 Function(VeryLargeStruct);
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void testFunctionWithVeryLargeStruct() {
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ffi.Pointer<ffi.NativeFunction<NativeVeryLargeStructSum>> p1 =
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ffiTestFunctions.lookup("SumVeryLargeStruct");
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VeryLargeStructSum f = p1.asFunction();
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VeryLargeStruct vls1 = VeryLargeStruct.allocate(count: 2);
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VeryLargeStruct vls2 = vls1.elementAt(1);
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List<VeryLargeStruct> structs = [vls1, vls2];
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for (VeryLargeStruct struct in structs) {
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struct.a = 1;
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struct.b = 2;
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struct.c = 4;
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struct.d = 8;
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struct.e = 16;
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struct.f = 32;
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struct.g = 64;
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struct.h = 128;
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struct.i = 256;
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struct.j = 512;
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struct.k = 1024;
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struct.smallLastField = 1;
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}
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vls1.parent = vls2;
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vls1.numChidlren = 2;
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vls1.children = vls1;
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vls2.parent = vls2;
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vls2.parent = null;
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vls2.numChidlren = 0;
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vls2.children = null;
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int result = f(vls1);
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Expect.equals(2051, result);
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result = f(vls2);
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Expect.equals(2048, result);
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vls1.free();
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}
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