mirror of
https://github.com/Ryujinx/Ryujinx.git
synced 2024-10-01 12:30:00 +02:00
00579927e4
* Initial implementation of KProcess * Some improvements to the memory manager, implement back guest stack trace printing * Better GetInfo implementation, improve checking in some places with information from process capabilities * Allow the cpu to read/write from the correct memory locations for accesses crossing a page boundary * Change long -> ulong for address/size on memory related methods to avoid unnecessary casts * Attempt at implementing ldr:ro with new KProcess * Allow BSS with size 0 on ldr:ro * Add checking for memory block slab heap usage, return errors if full, exit gracefully * Use KMemoryBlockSize const from KMemoryManager * Allow all methods to read from non-contiguous locations * Fix for TransactParcelAuto * Address PR feedback, additionally fix some small issues related to the KIP loader and implement SVCs GetProcessId, GetProcessList, GetSystemInfo, CreatePort and ManageNamedPort * Fix wrong check for source pages count from page list on MapPhysicalMemory * Fix some issues with UnloadNro on ldr:ro
573 lines
18 KiB
C#
573 lines
18 KiB
C#
using ChocolArm64.Memory;
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using Ryujinx.Common;
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using Ryujinx.HLE.HOS.Ipc;
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using Ryujinx.HLE.HOS.Kernel;
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using Ryujinx.HLE.Loaders.Executables;
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using Ryujinx.HLE.Utilities;
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using System;
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using System.Collections.Generic;
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using System.IO;
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using System.Linq;
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using System.Runtime.InteropServices;
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using System.Security.Cryptography;
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using static Ryujinx.HLE.HOS.ErrorCode;
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namespace Ryujinx.HLE.HOS.Services.Ldr
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{
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[StructLayout(LayoutKind.Explicit, Size = 0x350)]
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unsafe struct NrrHeader
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{
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[FieldOffset(0)]
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public uint Magic;
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[FieldOffset(0x10)]
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public ulong TitleIdMask;
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[FieldOffset(0x18)]
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public ulong TitleIdPattern;
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[FieldOffset(0x30)]
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public fixed byte Modulus[0x100];
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[FieldOffset(0x130)]
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public fixed byte FixedKeySignature[0x100];
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[FieldOffset(0x230)]
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public fixed byte NrrSignature[0x100];
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[FieldOffset(0x330)]
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public ulong TitleIdMin;
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[FieldOffset(0x338)]
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public uint NrrSize;
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[FieldOffset(0x340)]
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public uint HashOffset;
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[FieldOffset(0x344)]
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public uint HashCount;
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}
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class NrrInfo
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{
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public NrrHeader Header { get; private set; }
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public List<byte[]> Hashes { get; private set; }
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public long NrrAddress { get; private set; }
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public NrrInfo(long NrrAddress, NrrHeader Header, List<byte[]> Hashes)
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{
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this.NrrAddress = NrrAddress;
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this.Header = Header;
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this.Hashes = Hashes;
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}
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}
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class NroInfo
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{
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public NxRelocatableObject Executable { get; private set; }
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public byte[] Hash { get; private set; }
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public ulong NroAddress { get; private set; }
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public ulong NroSize { get; private set; }
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public ulong BssAddress { get; private set; }
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public ulong BssSize { get; private set; }
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public ulong TotalSize { get; private set; }
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public ulong NroMappedAddress { get; set; }
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public NroInfo(
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NxRelocatableObject Executable,
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byte[] Hash,
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ulong NroAddress,
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ulong NroSize,
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ulong BssAddress,
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ulong BssSize,
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ulong TotalSize)
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{
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this.Executable = Executable;
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this.Hash = Hash;
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this.NroAddress = NroAddress;
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this.NroSize = NroSize;
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this.BssAddress = BssAddress;
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this.BssSize = BssSize;
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this.TotalSize = TotalSize;
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}
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}
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class IRoInterface : IpcService
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{
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private Dictionary<int, ServiceProcessRequest> m_Commands;
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public override IReadOnlyDictionary<int, ServiceProcessRequest> Commands => m_Commands;
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private const int MaxNrr = 0x40;
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private const int MaxNro = 0x40;
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private const uint NrrMagic = 0x3052524E;
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private const uint NroMagic = 0x304F524E;
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private List<NrrInfo> NrrInfos;
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private List<NroInfo> NroInfos;
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private bool IsInitialized;
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public IRoInterface()
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{
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m_Commands = new Dictionary<int, ServiceProcessRequest>()
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{
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{ 0, LoadNro },
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{ 1, UnloadNro },
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{ 2, LoadNrr },
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{ 3, UnloadNrr },
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{ 4, Initialize },
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};
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NrrInfos = new List<NrrInfo>(MaxNrr);
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NroInfos = new List<NroInfo>(MaxNro);
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}
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private long ParseNrr(out NrrInfo NrrInfo, ServiceCtx Context, long NrrAddress, long NrrSize)
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{
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NrrInfo = null;
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if (NrrSize == 0 || NrrAddress + NrrSize <= NrrAddress || (NrrSize & 0xFFF) != 0)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.BadSize);
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}
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else if ((NrrAddress & 0xFFF) != 0)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.UnalignedAddress);
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}
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StructReader Reader = new StructReader(Context.Memory, NrrAddress);
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NrrHeader Header = Reader.Read<NrrHeader>();
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if (Header.Magic != NrrMagic)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.InvalidNrr);
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}
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else if (Header.NrrSize != NrrSize)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.BadSize);
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}
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List<byte[]> Hashes = new List<byte[]>();
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for (int i = 0; i < Header.HashCount; i++)
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{
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Hashes.Add(Context.Memory.ReadBytes(NrrAddress + Header.HashOffset + (i * 0x20), 0x20));
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}
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NrrInfo = new NrrInfo(NrrAddress, Header, Hashes);
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return 0;
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}
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public bool IsNroHashPresent(byte[] NroHash)
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{
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foreach (NrrInfo Info in NrrInfos)
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{
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foreach (byte[] Hash in Info.Hashes)
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{
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if (Hash.SequenceEqual(NroHash))
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{
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return true;
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}
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}
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}
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return false;
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}
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public bool IsNroLoaded(byte[] NroHash)
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{
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foreach (NroInfo Info in NroInfos)
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{
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if (Info.Hash.SequenceEqual(NroHash))
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{
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return true;
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}
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}
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return false;
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}
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public long ParseNro(out NroInfo Res, ServiceCtx Context, ulong NroAddress, ulong NroSize, ulong BssAddress, ulong BssSize)
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{
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Res = null;
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if (NroInfos.Count >= MaxNro)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.MaxNro);
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}
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else if (NroSize == 0 || NroAddress + NroSize <= NroAddress || (NroSize & 0xFFF) != 0)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.BadSize);
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}
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else if (BssSize != 0 && BssAddress + BssSize <= BssAddress)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.BadSize);
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}
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else if ((NroAddress & 0xFFF) != 0)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.UnalignedAddress);
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}
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uint Magic = Context.Memory.ReadUInt32((long)NroAddress + 0x10);
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uint NroFileSize = Context.Memory.ReadUInt32((long)NroAddress + 0x18);
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if (Magic != NroMagic || NroSize != NroFileSize)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.InvalidNro);
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}
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byte[] NroData = Context.Memory.ReadBytes((long)NroAddress, (long)NroSize);
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byte[] NroHash = null;
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MemoryStream Stream = new MemoryStream(NroData);
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using (SHA256 Hasher = SHA256.Create())
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{
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NroHash = Hasher.ComputeHash(Stream);
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}
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if (!IsNroHashPresent(NroHash))
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{
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return MakeError(ErrorModule.Loader, LoaderErr.NroHashNotPresent);
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}
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if (IsNroLoaded(NroHash))
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{
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return MakeError(ErrorModule.Loader, LoaderErr.NroAlreadyLoaded);
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}
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Stream.Position = 0;
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NxRelocatableObject Executable = new NxRelocatableObject(Stream, NroAddress, BssAddress);
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// check if everything is page align.
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if ((Executable.Text.Length & 0xFFF) != 0 || (Executable.RO.Length & 0xFFF) != 0 ||
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(Executable.Data.Length & 0xFFF) != 0 || (Executable.BssSize & 0xFFF) != 0)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.InvalidNro);
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}
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// check if everything is contiguous.
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if (Executable.ROOffset != Executable.TextOffset + Executable.Text.Length ||
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Executable.DataOffset != Executable.ROOffset + Executable.RO.Length ||
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NroFileSize != Executable.DataOffset + Executable.Data.Length)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.InvalidNro);
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}
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// finally check the bss size match.
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if ((ulong)Executable.BssSize != BssSize)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.InvalidNro);
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}
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int TotalSize = Executable.Text.Length + Executable.RO.Length + Executable.Data.Length + Executable.BssSize;
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Res = new NroInfo(
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Executable,
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NroHash,
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NroAddress,
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NroSize,
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BssAddress,
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BssSize,
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(ulong)TotalSize);
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return 0;
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}
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private long MapNro(ServiceCtx Context, NroInfo Info, out ulong NroMappedAddress)
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{
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NroMappedAddress = 0;
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KMemoryManager MemMgr = Context.Process.MemoryManager;
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ulong TargetAddress = MemMgr.GetAddrSpaceBaseAddr();
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while (true)
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{
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if (TargetAddress + Info.TotalSize >= MemMgr.AddrSpaceEnd)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.InvalidMemoryState);
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}
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KMemoryInfo MemInfo = MemMgr.QueryMemory(TargetAddress);
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if (MemInfo.State == MemoryState.Unmapped && MemInfo.Size >= Info.TotalSize)
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{
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if (!MemMgr.InsideHeapRegion (TargetAddress, Info.TotalSize) &&
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!MemMgr.InsideAliasRegion(TargetAddress, Info.TotalSize))
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{
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break;
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}
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}
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TargetAddress += MemInfo.Size;
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}
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KernelResult Result = MemMgr.MapProcessCodeMemory(TargetAddress, Info.NroAddress, Info.NroSize);
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if (Result != KernelResult.Success)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.InvalidMemoryState);
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}
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ulong BssTargetAddress = TargetAddress + Info.NroSize;
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if (Info.BssSize != 0)
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{
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Result = MemMgr.MapProcessCodeMemory(BssTargetAddress, Info.BssAddress, Info.BssSize);
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if (Result != KernelResult.Success)
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{
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MemMgr.UnmapProcessCodeMemory(TargetAddress, Info.NroAddress, Info.NroSize);
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return MakeError(ErrorModule.Loader, LoaderErr.InvalidMemoryState);
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}
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}
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Result = LoadNroIntoMemory(Context.Process, Info.Executable, TargetAddress);
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if (Result != KernelResult.Success)
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{
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MemMgr.UnmapProcessCodeMemory(TargetAddress, Info.NroAddress, Info.NroSize);
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if (Info.BssSize != 0)
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{
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MemMgr.UnmapProcessCodeMemory(BssTargetAddress, Info.BssAddress, Info.BssSize);
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}
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return 0;
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}
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Info.NroMappedAddress = TargetAddress;
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NroMappedAddress = TargetAddress;
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return 0;
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}
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private KernelResult LoadNroIntoMemory(KProcess Process, IExecutable RelocatableObject, ulong BaseAddress)
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{
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ulong TextStart = BaseAddress + (ulong)RelocatableObject.TextOffset;
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ulong ROStart = BaseAddress + (ulong)RelocatableObject.ROOffset;
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ulong DataStart = BaseAddress + (ulong)RelocatableObject.DataOffset;
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ulong BssStart = DataStart + (ulong)RelocatableObject.Data.Length;
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ulong BssEnd = BitUtils.AlignUp(BssStart + (ulong)RelocatableObject.BssSize, KMemoryManager.PageSize);
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Process.CpuMemory.WriteBytes((long)TextStart, RelocatableObject.Text);
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Process.CpuMemory.WriteBytes((long)ROStart, RelocatableObject.RO);
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Process.CpuMemory.WriteBytes((long)DataStart, RelocatableObject.Data);
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MemoryHelper.FillWithZeros(Process.CpuMemory, (long)BssStart, (int)(BssEnd - BssStart));
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KernelResult Result;
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Result = Process.MemoryManager.SetProcessMemoryPermission(TextStart, ROStart - TextStart, MemoryPermission.ReadAndExecute);
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if (Result != KernelResult.Success)
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{
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return Result;
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}
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Result = Process.MemoryManager.SetProcessMemoryPermission(ROStart, DataStart - ROStart, MemoryPermission.Read);
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if (Result != KernelResult.Success)
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{
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return Result;
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}
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return Process.MemoryManager.SetProcessMemoryPermission(DataStart, BssEnd - DataStart, MemoryPermission.ReadAndWrite);
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}
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private long RemoveNrrInfo(long NrrAddress)
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{
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foreach (NrrInfo Info in NrrInfos)
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{
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if (Info.NrrAddress == NrrAddress)
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{
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NrrInfos.Remove(Info);
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return 0;
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}
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}
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return MakeError(ErrorModule.Loader, LoaderErr.BadNrrAddress);
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}
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private long RemoveNroInfo(ServiceCtx Context, ulong NroMappedAddress)
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{
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foreach (NroInfo Info in NroInfos)
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{
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if (Info.NroMappedAddress == NroMappedAddress)
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{
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NroInfos.Remove(Info);
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ulong TextSize = (ulong)Info.Executable.Text.Length;
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ulong ROSize = (ulong)Info.Executable.RO.Length;
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ulong DataSize = (ulong)Info.Executable.Data.Length;
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ulong BssSize = (ulong)Info.Executable.BssSize;
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KernelResult Result = KernelResult.Success;
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if (Info.Executable.BssSize != 0)
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{
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Result = Context.Process.MemoryManager.UnmapProcessCodeMemory(
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Info.NroMappedAddress + TextSize + ROSize + DataSize,
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Info.Executable.BssAddress,
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BssSize);
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}
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if (Result == KernelResult.Success)
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{
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Result = Context.Process.MemoryManager.UnmapProcessCodeMemory(
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Info.NroMappedAddress + TextSize + ROSize,
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Info.Executable.SourceAddress + TextSize + ROSize,
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DataSize);
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if (Result == KernelResult.Success)
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{
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Result = Context.Process.MemoryManager.UnmapProcessCodeMemory(
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Info.NroMappedAddress,
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Info.Executable.SourceAddress,
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TextSize + ROSize);
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}
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}
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return (long)Result;
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}
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}
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return MakeError(ErrorModule.Loader, LoaderErr.BadNroAddress);
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}
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// LoadNro(u64, u64, u64, u64, u64, pid) -> u64
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public long LoadNro(ServiceCtx Context)
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{
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long Result = MakeError(ErrorModule.Loader, LoaderErr.BadInitialization);
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// Zero
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Context.RequestData.ReadUInt64();
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ulong NroHeapAddress = Context.RequestData.ReadUInt64();
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ulong NroSize = Context.RequestData.ReadUInt64();
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ulong BssHeapAddress = Context.RequestData.ReadUInt64();
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ulong BssSize = Context.RequestData.ReadUInt64();
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ulong NroMappedAddress = 0;
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if (IsInitialized)
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{
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NroInfo Info;
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Result = ParseNro(out Info, Context, NroHeapAddress, NroSize, BssHeapAddress, BssSize);
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if (Result == 0)
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{
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Result = MapNro(Context, Info, out NroMappedAddress);
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if (Result == 0)
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{
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NroInfos.Add(Info);
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}
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}
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}
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Context.ResponseData.Write(NroMappedAddress);
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return Result;
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}
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// UnloadNro(u64, u64, pid)
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public long UnloadNro(ServiceCtx Context)
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{
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long Result = MakeError(ErrorModule.Loader, LoaderErr.BadInitialization);
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// Zero
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Context.RequestData.ReadUInt64();
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ulong NroMappedAddress = Context.RequestData.ReadUInt64();
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if (IsInitialized)
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{
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if ((NroMappedAddress & 0xFFF) != 0)
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{
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return MakeError(ErrorModule.Loader, LoaderErr.UnalignedAddress);
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}
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Result = RemoveNroInfo(Context, NroMappedAddress);
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}
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return Result;
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}
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// LoadNrr(u64, u64, u64, pid)
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public long LoadNrr(ServiceCtx Context)
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{
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long Result = MakeError(ErrorModule.Loader, LoaderErr.BadInitialization);
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// Zero
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Context.RequestData.ReadUInt64();
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long NrrAddress = Context.RequestData.ReadInt64();
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long NrrSize = Context.RequestData.ReadInt64();
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if (IsInitialized)
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{
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NrrInfo Info;
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Result = ParseNrr(out Info, Context, NrrAddress, NrrSize);
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if(Result == 0)
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{
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if (NrrInfos.Count >= MaxNrr)
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{
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Result = MakeError(ErrorModule.Loader, LoaderErr.MaxNrr);
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}
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else
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{
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NrrInfos.Add(Info);
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}
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}
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}
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return Result;
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}
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// UnloadNrr(u64, u64, pid)
|
|
public long UnloadNrr(ServiceCtx Context)
|
|
{
|
|
long Result = MakeError(ErrorModule.Loader, LoaderErr.BadInitialization);
|
|
|
|
// Zero
|
|
Context.RequestData.ReadUInt64();
|
|
|
|
long NrrHeapAddress = Context.RequestData.ReadInt64();
|
|
|
|
if (IsInitialized)
|
|
{
|
|
if ((NrrHeapAddress & 0xFFF) != 0)
|
|
{
|
|
return MakeError(ErrorModule.Loader, LoaderErr.UnalignedAddress);
|
|
}
|
|
|
|
Result = RemoveNrrInfo(NrrHeapAddress);
|
|
}
|
|
|
|
return Result;
|
|
}
|
|
|
|
// Initialize(u64, pid, KObject)
|
|
public long Initialize(ServiceCtx Context)
|
|
{
|
|
// TODO: we actually ignore the pid and process handle receive, we will need to use them when we will have multi process support.
|
|
IsInitialized = true;
|
|
|
|
return 0;
|
|
}
|
|
}
|
|
}
|