mirror of
https://github.com/par274/sharpemu.git
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7494792249
VirtualMemory: 4 new tests covering unmapped address returns false, zero-length operations, page-boundary access, and cross-gap failures. PhysicalVirtualMemory: 5 new tests covering lazy commit on demand, reserve-only GetPointer, unmapped GetPointer returns null, free-list first-fit reuse, and coalescing both neighbours on middle-range free. Total: 9 new tests, 18 passed (8 VirtualMemory + 5 PhysicalVirtualMemory + 5 GuestMemoryAllocator). No production code changes.
158 lines
6.2 KiB
C#
158 lines
6.2 KiB
C#
// Copyright (C) 2026 SharpEmu Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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using SharpEmu.Core.Loader;
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using SharpEmu.Core.Memory;
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using Xunit;
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namespace SharpEmu.Libs.Tests.Memory;
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public sealed class VirtualMemoryTests
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{
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[Fact]
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public void OutOfOrderMappingsRemainSortedAndResolveAtBoundaries()
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{
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var memory = new VirtualMemory();
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memory.Map(0x3000, 0x100, 0, [3], ProgramHeaderFlags.Read | ProgramHeaderFlags.Write);
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memory.Map(0x1000, 0x100, 0, [1], ProgramHeaderFlags.Read | ProgramHeaderFlags.Write);
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memory.Map(0x2000, 0x100, 0, [2], ProgramHeaderFlags.Read | ProgramHeaderFlags.Write);
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Assert.Equal([0x1000UL, 0x2000UL, 0x3000UL], memory.SnapshotRegions().Select(region => region.VirtualAddress));
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Span<byte> value = stackalloc byte[1];
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Assert.True(memory.TryRead(0x1000, value));
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Assert.Equal(1, value[0]);
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Assert.True(memory.TryRead(0x2000, value));
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Assert.Equal(2, value[0]);
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Assert.True(memory.TryRead(0x3000, value));
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Assert.Equal(3, value[0]);
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Assert.False(memory.TryRead(0x1100, value));
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Assert.False(memory.TryRead(0x0FFF, value));
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}
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[Fact]
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public void MappingRejectsOverlapWithEitherNeighbor()
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{
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var memory = new VirtualMemory();
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memory.Map(0x2000, 0x100, 0, [], ProgramHeaderFlags.Read);
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memory.Map(0x4000, 0x100, 0, [], ProgramHeaderFlags.Read);
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Assert.Throws<InvalidOperationException>(() =>
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memory.Map(0x1FFF, 2, 0, [], ProgramHeaderFlags.Read));
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Assert.Throws<InvalidOperationException>(() =>
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memory.Map(0x3FFF, 2, 0, [], ProgramHeaderFlags.Read));
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memory.Map(0x2100, 0x1F00, 0, [], ProgramHeaderFlags.Read);
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Assert.Equal(3, memory.SnapshotRegions().Count);
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}
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[Fact]
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public void ReadAndWriteSpanAdjacentRegions()
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{
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var memory = new VirtualMemory();
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const ProgramHeaderFlags protection = ProgramHeaderFlags.Read | ProgramHeaderFlags.Write;
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memory.Map(0x1000, 4, 0, [1, 2, 3, 4], protection);
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memory.Map(0x1004, 4, 0, [5, 6, 7, 8], protection);
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Span<byte> read = stackalloc byte[4];
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Assert.True(memory.TryRead(0x1002, read));
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Assert.Equal([3, 4, 5, 6], read.ToArray());
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Assert.True(memory.TryWrite(0x1002, [9, 10, 11, 12]));
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Assert.True(memory.TryRead(0x1000, read));
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Assert.Equal([1, 2, 9, 10], read.ToArray());
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Assert.True(memory.TryRead(0x1004, read));
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Assert.Equal([11, 12, 7, 8], read.ToArray());
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}
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[Fact]
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public void AccessRequiresPermissionAcrossEntireRange()
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{
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var memory = new VirtualMemory();
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memory.Map(0x1000, 4, 0, [1, 2, 3, 4], ProgramHeaderFlags.Read | ProgramHeaderFlags.Write);
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memory.Map(0x1004, 4, 0, [5, 6, 7, 8], ProgramHeaderFlags.Read);
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memory.Map(0x2000, 4, 0, [1, 2, 3, 4], ProgramHeaderFlags.Execute);
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memory.Map(0x3000, 4, 0, [], ProgramHeaderFlags.Write);
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Assert.False(memory.TryWrite(0x1002, [9, 9, 9, 9]));
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Span<byte> unchanged = stackalloc byte[4];
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Assert.True(memory.TryRead(0x1000, unchanged));
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Assert.Equal([1, 2, 3, 4], unchanged.ToArray());
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Assert.False(memory.TryRead(0x2000, unchanged));
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Assert.False(memory.TryWrite(0x2000, [9]));
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Assert.False(memory.TryRead(0x3000, unchanged));
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Assert.True(memory.TryWrite(0x3000, [9]));
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}
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[Fact]
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public void TryReadAndTryWriteOnUnmappedAddressReturnFalse()
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{
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var memory = new VirtualMemory();
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memory.Map(0x1000, 0x100, 0, [], ProgramHeaderFlags.Read | ProgramHeaderFlags.Write);
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// Addresses with no covering region fail for both reads and writes.
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Span<byte> value = stackalloc byte[1];
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Assert.False(memory.TryRead(0x2000, value));
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Assert.False(memory.TryWrite(0x2000, value));
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// With no regions mapped at all, every access fails.
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var empty = new VirtualMemory();
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Assert.False(empty.TryRead(0x1000, value));
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Assert.False(empty.TryWrite(0x1000, value));
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}
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// Zero-length operations succeed on a mapped address and touch nothing, but
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// still require a mapped address.
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[Fact]
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public void ZeroLengthOperationsOnMappedAddressReturnTrue()
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{
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var memory = new VirtualMemory();
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memory.Map(0x1000, 0x100, 0, [0x01], ProgramHeaderFlags.Read | ProgramHeaderFlags.Write);
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Assert.True(memory.TryRead(0x1000, []));
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Assert.True(memory.TryWrite(0x1000, []));
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Span<byte> value = stackalloc byte[1];
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Assert.True(memory.TryRead(0x1000, value));
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Assert.Equal(0x01, value[0]);
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Assert.False(memory.TryRead(0x2000, []));
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Assert.False(memory.TryWrite(0x2000, []));
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}
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// A page-aligned region must be accessible at both offset 0 and the final byte.
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[Fact]
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public void MappingAtPageBoundarySupportsOffsetZeroAndLastByte()
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{
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const ulong pageSize = 0x1000;
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var memory = new VirtualMemory();
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memory.Map(pageSize, pageSize, 0, [], ProgramHeaderFlags.Read | ProgramHeaderFlags.Write);
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Assert.True(memory.TryWrite(pageSize, [0x5A]));
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Assert.True(memory.TryWrite(pageSize + pageSize - 1, [0xA5]));
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Span<byte> head = stackalloc byte[1];
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Span<byte> tail = stackalloc byte[1];
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Assert.True(memory.TryRead(pageSize, head));
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Assert.True(memory.TryRead(pageSize + pageSize - 1, tail));
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Assert.Equal(0x5A, head[0]);
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Assert.Equal(0xA5, tail[0]);
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}
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// A read/write that starts in one region but extends into the unmapped gap
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// between two non-adjacent regions must fail across the entire range.
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[Fact]
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public void ReadWriteAcrossGapBetweenNonAdjacentRegionsReturnsFalse()
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{
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const ulong pageSize = 0x1000;
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var memory = new VirtualMemory();
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const ProgramHeaderFlags protection = ProgramHeaderFlags.Read | ProgramHeaderFlags.Write;
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memory.Map(pageSize, pageSize, 0, [], protection);
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memory.Map(pageSize * 3, pageSize, 0, [], protection);
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Assert.False(memory.TryRead(pageSize, new byte[(int)pageSize * 2]));
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Assert.False(memory.TryWrite(pageSize, new byte[(int)pageSize * 2]));
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}
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}
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