mirror of
https://github.com/sampletext32/ParkanPlayground.git
synced 2026-08-15 02:57:49 +04:00
200 lines
6.7 KiB
C#
200 lines
6.7 KiB
C#
using System.Text;
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using Common;
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using NResLib;
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namespace ResTreeLib;
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public class ResTreeParser
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{
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private static readonly Encoding CyrillicEncoding = CodePagesEncodingProvider.Instance.GetEncoding(1251)
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?? Encoding.GetEncoding("windows-1251");
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public static List<ResearchNodeData> Parse(string filePath)
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{
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using var fs = new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.Read);
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var nres = NResParser.ReadFile(fs);
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fs.Seek(0, SeekOrigin.Begin);
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return Parse(nres.Archive!, fs);
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}
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public static List<ResearchNodeData> Parse(NResArchive archive, Stream stream)
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{
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// Register provider for Windows-1251 if not already done globally.
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Encoding.RegisterProvider(CodePagesEncodingProvider.Instance);
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// 1. Locate the master nodes (TRF0).
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var trf0 = archive.Files.FirstOrDefault(f => f.FileType == "TRF0");
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if (trf0 == null)
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{
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return new List<ResearchNodeData>();
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}
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// 2. Load node states (TRF1): one byte per node.
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byte[] initialStates = LoadRawBuffer(stream, archive, "TRF1");
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var nodes = new List<Trf0Element>();
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stream.Position = trf0.OffsetInFile;
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for (int i = 0; i < trf0.ElementCount; i++)
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{
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nodes.Add(ReadTrf0Element(stream));
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}
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// 3. Load string pools.
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byte[] shortNamesPoolTrf7 = LoadRawBuffer(stream, archive, "TRF7");
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byte[] longNamesPoolTrf8 = LoadRawBuffer(stream, archive, "TRF8");
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byte[] helpTextPoolTrf9 = LoadRawBuffer(stream, archive, "TRF9");
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byte[] descriptionsPoolTrfa = LoadRawBuffer(stream, archive, "TRFA");
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// 4. Load relationship maps.
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var prereqMap = LoadRelationMap(stream, archive, "TRF2", "TRF3", strict: true);
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var unlockMap = LoadRelationMap(stream, archive, "TRF4", "TRF5", strict: true);
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// TRFB/TRF6 is auxiliary and currently unknown.
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// Real game files may have inconsistent counts here, so keep it non-strict.
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_ = LoadRelationMap(stream, archive, "TRFB", "TRF6", strict: false);
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// 5. Assemble DTOs.
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var result = new List<ResearchNodeData>();
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for (int i = 0; i < nodes.Count; i++)
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{
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var element = nodes[i];
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result.Add(new ResearchNodeData
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{
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Index = i,
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Node = element,
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State = initialStates.Length > i ? (NodeState)initialStates[i] : NodeState.Hidden,
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ShortName = GetStringFromPool(shortNamesPoolTrf7, element.OffsetShortName_TRF7),
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LongName = GetStringFromPool(longNamesPoolTrf8, element.OffsetLongName_TRF8),
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HelpText = GetStringFromPool(helpTextPoolTrf9, element.OffsetHelpText_TRF9),
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Description = GetStringFromPool(descriptionsPoolTrfa, element.OffsetDescription_TRFA),
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PrerequisiteIds = prereqMap.TryGetValue(i, out var pValue) ? pValue : [],
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UnlockIds = unlockMap.TryGetValue(i, out var uValue) ? uValue : []
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});
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}
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return result;
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}
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private static Trf0Element ReadTrf0Element(Stream s)
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{
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// TRF0 element size is 40 bytes (0x28).
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return new Trf0Element
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{
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ResearchCost = s.ReadFloatLittleEndian(),
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ResearchTime = s.ReadFloatLittleEndian(),
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ViewPosX = s.ReadFloatLittleEndian(),
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ViewPosY = s.ReadFloatLittleEndian(),
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OffsetShortName_TRF7 = s.ReadUInt32LittleEndian(),
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OffsetLongName_TRF8 = s.ReadUInt32LittleEndian(),
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OffsetHelpText_TRF9 = s.ReadUInt32LittleEndian(),
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OffsetDescription_TRFA = s.ReadUInt32LittleEndian(),
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OffsetAux_TRFB = s.ReadUInt16LittleEndian(),
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TurretType = (byte)s.ReadByte(),
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MainType = (byte)s.ReadByte(),
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SubType = (byte)s.ReadByte(),
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BuildSubSystem = (byte)s.ReadByte(),
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SizeOfType = (byte)s.ReadByte(),
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UpgradeLevel = (byte)s.ReadByte()
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};
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}
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private static Dictionary<int, uint[]> LoadRelationMap(
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Stream s,
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NResArchive archive,
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string headerType,
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string dataType,
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bool strict)
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{
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var header = archive.Files.FirstOrDefault(f => f.FileType == headerType);
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var data = archive.Files.FirstOrDefault(f => f.FileType == dataType);
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var map = new Dictionary<int, uint[]>();
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if (header == null || data == null)
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{
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return map;
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}
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uint[] counts = new uint[header.ElementCount];
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s.Position = header.OffsetInFile;
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for (int i = 0; i < header.ElementCount; i++)
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{
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counts[i] = s.ReadUInt32LittleEndian();
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}
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long dataWordsRequired = 0;
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for (int i = 0; i < counts.Length; i++)
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{
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dataWordsRequired += counts[i];
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}
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if (dataWordsRequired * sizeof(uint) > data.FileLength)
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{
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if (strict)
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{
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throw new InvalidDataException(
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$"Relation map {headerType}/{dataType} expects {dataWordsRequired * sizeof(uint)} bytes but section has {data.FileLength} bytes.");
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}
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return map;
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}
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long dataEnd = data.OffsetInFile + data.FileLength;
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s.Position = data.OffsetInFile;
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for (int i = 0; i < counts.Length; i++)
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{
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uint count = counts[i];
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if (s.Position + count * sizeof(uint) > dataEnd)
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{
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if (strict)
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{
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throw new EndOfStreamException(
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$"Relation map {headerType}/{dataType} overreads section at node {i} (count={count}).");
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}
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break;
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}
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uint[] ids = new uint[count];
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for (int j = 0; j < count; j++)
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{
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ids[j] = s.ReadUInt32LittleEndian();
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}
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map[i] = ids;
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}
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return map;
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}
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private static byte[] LoadRawBuffer(Stream s, NResArchive archive, string type)
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{
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var item = archive.Files.FirstOrDefault(f => f.FileType == type);
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if (item == null)
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{
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return [];
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}
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byte[] buffer = new byte[item.FileLength];
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s.Position = item.OffsetInFile;
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s.ReadExactly(buffer);
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return buffer;
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}
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private static string GetStringFromPool(byte[] pool, uint offset)
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{
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if (pool.Length == 0 || offset >= pool.Length)
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{
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return string.Empty;
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}
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int end = Array.IndexOf(pool, (byte)0, (int)offset);
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int length = end == -1 ? pool.Length - (int)offset : end - (int)offset;
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return CyrillicEncoding.GetString(pool, (int)offset, length);
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}
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}
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