mirror of https://github.com/AxioDL/metaforce.git
Add CAUD DNA
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#ifndef _DNAMP3_CAUD_HPP_
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#define _DNAMP3_CAUD_HPP_
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#include "../DNACommon/DNACommon.hpp"
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#include "../DNACommon/PAK.hpp"
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namespace DataSpec
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{
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namespace DNAMP3
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{
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struct CAUD : BigYAML
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{
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DECL_YAML
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DNAFourCC magic;
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Value<atUint32> version;
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String<-1> name;
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Value<atUint32> nameCount;
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Vector<String<-1>, DNA_COUNT(nameCount)> names;
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Value<float> unknown1;
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Value<atUint32> unknown2;
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Value<float> unknown3;
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Value<float> unknown4;
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Value<atUint32> unknown5;
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struct CSMPInfo : BigYAML
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{
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DECL_YAML
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Value<atUint32> dataLen;
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UniqueID64 csmpId;
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Value<float> unknown1;
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Value<atUint32> unknown2;
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Value<atUint32> unknown3;
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Value<float> unknown4;
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Value<float> unknown5;
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Value<float> unknown6;
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Value<atUint32> unknown7;
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Value<atUint32> unknown8;
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Value<atUint32> unknown9;
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Value<atUint32> unknown10;
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Value<float> unknown11;
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Value<float> unknown12;
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Value<float> unknown13;
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Value<atUint8> unknown14[8];
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struct UnknownStruct1 : BigYAML
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{
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DECL_YAML
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Value<float> unknown1;
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Value<float> unknown2;
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Value<atUint8> unknown3;
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Value<atUint8> unknown4;
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};
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Value<atUint32> unknown15;
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Vector<UnknownStruct1, DNA_COUNT(unknown15)> unknown16;
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struct UnknownStruct2 : BigYAML
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{
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DECL_YAML
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Value<atUint8> unknown1;
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Vector<atUint8, DNA_COUNT(unknown1)> unknown2;
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Value<float> unknown3;
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Value<float> unknown4;
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Value<atUint16> unknown5;
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struct UnknownPair : BigYAML
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{
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DECL_YAML
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Value<float> unknown1;
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Value<atInt32> unknown2;
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};
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Value<atUint16> unknown6;
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Vector<UnknownPair, DNA_COUNT(unknown6)> unknown7;
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struct UnknownQuad: BigYAML
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{
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Delete __dna_delete;
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Value<float> unknown1;
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Value<float> unknown2;
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Value<atUint8> unknown3;
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Value<atUint8> unknown4;
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Value<float> unknown5[5];
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void read(athena::io::IStreamReader& __dna_reader)
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{
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/* unknown1 */
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unknown1 = __dna_reader.readFloatBig();
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/* unknown2 */
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unknown2 = __dna_reader.readFloatBig();
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/* unknown3 */
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unknown3 = __dna_reader.readUByte();
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/* unknown4 */
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unknown4 = __dna_reader.readUByte();
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if (unknown4 == 5)
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{
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unknown5[0] = __dna_reader.readFloatBig();
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unknown5[1] = __dna_reader.readFloatBig();
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unknown5[2] = __dna_reader.readFloatBig();
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unknown5[3] = __dna_reader.readFloatBig();
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}
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}
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void write(athena::io::IStreamWriter& __dna_writer) const
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{
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/* unknown1 */
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__dna_writer.writeFloatBig(unknown1);
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/* unknown2 */
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__dna_writer.writeFloatBig(unknown2);
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/* unknown3 */
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__dna_writer.writeUByte(unknown3);
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/* unknown4 */
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__dna_writer.writeUByte(unknown4);
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if (unknown4 == 5)
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{
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__dna_writer.writeFloatBig(unknown5[0]);
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__dna_writer.writeFloatBig(unknown5[1]);
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__dna_writer.writeFloatBig(unknown5[2]);
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__dna_writer.writeFloatBig(unknown5[3]);
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}
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}
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void read(athena::io::YAMLDocReader& __dna_docin)
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{
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/* unknown1 */
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unknown1 = __dna_docin.readFloat("unknown1");
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/* unknown2 */
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unknown2 = __dna_docin.readFloat("unknown2");
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/* unknown3 */
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unknown3 = __dna_docin.readUByte("unknown3");
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/* unknown4 */
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unknown4 = __dna_docin.readUByte("unknown4");
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if (unknown4 == 5)
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{
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unknown5[0] = __dna_docin.readFloat("unknown5");
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unknown5[1] = __dna_docin.readFloat("unknown5");
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unknown5[2] = __dna_docin.readFloat("unknown5");
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unknown5[3] = __dna_docin.readFloat("unknown5");
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}
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}
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void write(athena::io::YAMLDocWriter& __dna_docout) const
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{
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/* unknown1 */
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__dna_docout.writeFloat("unknown1", unknown1);
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/* unknown2 */
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__dna_docout.writeFloat("unknown2", unknown2);
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/* unknown3 */
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__dna_docout.writeUByte("unknown3", unknown3);
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/* unknown4 */
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__dna_docout.writeUByte("unknown4", unknown4);
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if (unknown4 == 5)
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{
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__dna_docout.writeFloat("unknown5", unknown5[0]);
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__dna_docout.writeFloat("unknown5", unknown5[1]);
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__dna_docout.writeFloat("unknown5", unknown5[2]);
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__dna_docout.writeFloat("unknown5", unknown5[3]);
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}
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}
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const char* DNAType()
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{
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return "DataSpec::DNAMP3::CAUD::CSMPInfo::UnknownStruct2::UnknownQuad";
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}
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size_t binarySize(size_t __isz) const
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{
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return __isz + 10 + (unknown4 == 5 ? sizeof(float) * 4 : 0);
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}
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};
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Value<atUint16> unknown8;
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Vector<UnknownQuad, DNA_COUNT(unknown8)> unknown9;
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};
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UnknownStruct2 unknown17[4];
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Value<atUint16> unknown18;
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Value<float> unknown19;
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Value<atUint8> unknown20;
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Value<atUint8> unknown21;
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Value<atUint8> unknown22;
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Value<atUint8> unknown23;
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Value<atUint8> unknown24;
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Value<atUint8> unknown25;
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Value<atUint8> unknown26;
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Value<atUint8> unknown27;
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Value<atUint8> unknown28;
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struct UnknownStruct3 : BigYAML
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{
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DECL_YAML
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Value<atUint32> unknown1;
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Value<float> unknown2;
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Value<atUint8> unknown3;
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Value<atUint8> unknown4;
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};
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Vector<UnknownStruct3, DNA_COUNT(unknown27)> unknown29;
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Value<float> unknown30;
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Value<float> unknown31;
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};
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Value<atUint32> infoCount;
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Vector<CSMPInfo, DNA_COUNT(infoCount)> info;
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static bool Extract(PAKEntryReadStream& rs, const hecl::ProjectPath& outPath)
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{
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CAUD caud;
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caud.read(rs);
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athena::io::FileWriter writer(outPath.getAbsolutePath());
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caud.toYAMLStream(writer);
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return true;
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}
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};
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}
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}
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#endif // _DNAMP3_CAUD_HPP_
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@ -7,7 +7,8 @@ make_dnalist(liblist
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CINF
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CSKR
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MREA
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SAVW)
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SAVW
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CAUD)
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add_library(DNAMP3
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DNAMP3.hpp DNAMP3.cpp
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${liblist}
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#include "DNAMP3.hpp"
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#include "STRG.hpp"
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#include "MLVL.hpp"
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#include "CAUD.hpp"
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#include "CMDL.hpp"
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#include "CHAR.hpp"
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#include "MREA.hpp"
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{
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switch (entry.type)
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{
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case SBIG('CAUD'):
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return {CAUD::Extract, nullptr, {_S(".yaml")}};
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case SBIG('STRG'):
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return {STRG::Extract, nullptr, {_S(".yaml")}};
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case SBIG('TXTR'):
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