2015-09-24 07:47:30 +00:00
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#ifndef _DNAMP1_SCAN_HPP_
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#define _DNAMP1_SCAN_HPP_
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#include "../DNACommon/DNACommon.hpp"
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#include "DNAMP1.hpp"
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namespace Retro
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{
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namespace DNAMP1
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{
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2015-11-19 13:16:15 +00:00
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static const std::vector<std::string> PaneNames =
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{
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"imagepane_pane0",
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"imagepane_pane1",
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"imagepane_pane2",
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"imagepane_pane3",
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"imagepane_pane01",
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"imagepane_pane12",
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"imagepane_pane23",
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"imagepane_pane012",
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"imagepane_pane123",
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"imagepane_pane0123",
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"imagepane_pane4",
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"imagepane_pane5",
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"imagepane_pane6",
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"imagepane_pane7",
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"imagepane_pane45",
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"imagepane_pane56",
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"imagepane_pane67",
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"imagepane_pane456",
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"imagepane_pane567",
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"imagepane_pane4567"
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};
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2015-09-24 07:47:30 +00:00
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struct SCAN : BigYAML
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{
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DECL_YAML
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Value<atUint32> version;
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Value<atUint32> magic;
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UniqueID32 frame;
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UniqueID32 string;
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2015-11-21 01:16:07 +00:00
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enum class ScanSpeed : atUint32
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{ Normal, Slow };
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Value<ScanSpeed> scanSpeed;
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2015-11-21 01:16:07 +00:00
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enum class Category : atUint32
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{
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None,
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SpacePirateData,
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ChozoLore,
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Creatures,
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Research
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};
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Value<Category> category;
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Value<bool> isImportant;
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struct Texture : BigYAML
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{
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Delete __delete;
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UniqueID32 texture;
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Value<float> appearanceRange;
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enum class Position : atInt32
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{
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Pane0,
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Pane1,
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Pane2,
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Pane3,
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Pane01,
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Pane12,
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Pane23,
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Pane012,
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Pane123,
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Pane0123,
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Pane4,
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Pane5,
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Pane6,
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Pane7,
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Pane45,
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Pane56,
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Pane67,
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Pane456,
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Pane567,
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2015-10-15 23:42:39 +00:00
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Pane4567,
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Invalid = -1
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};
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Value<Position> position;
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2015-10-15 23:42:39 +00:00
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Value<atUint32> width; // width of animation cell
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Value<atUint32> height; // height of animation cell
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Value<float> interval; // 0.0 - 1.0
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Value<float> fadeDuration; // 0.0 - 1.0
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2015-11-19 13:16:15 +00:00
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void read(Athena::io::IStreamReader& __dna_reader)
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{
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/* texture */
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texture.read(__dna_reader);
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/* appearanceRange */
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appearanceRange = __dna_reader.readFloatBig();
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/* position */
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position = Position(__dna_reader.readUint32Big());
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/* width */
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width = __dna_reader.readUint32Big();
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/* height */
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height = __dna_reader.readUint32Big();
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/* interval */
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interval = __dna_reader.readFloatBig();
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/* fadeDuration */
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fadeDuration = __dna_reader.readFloatBig();
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}
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void write(Athena::io::IStreamWriter& __dna_writer) const
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{
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/* texture */
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texture.write(__dna_writer);
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/* appearanceRange */
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__dna_writer.writeFloatBig(appearanceRange);
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/* position */
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__dna_writer.writeUint32Big(atUint32(position));
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/* width */
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__dna_writer.writeUint32Big(width);
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/* height */
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__dna_writer.writeUint32Big(height);
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/* interval */
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__dna_writer.writeFloatBig(interval);
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/* fadeDuration */
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__dna_writer.writeFloatBig(fadeDuration);
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}
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void fromYAML(Athena::io::YAMLDocReader& __dna_docin)
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{
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/* texture */
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__dna_docin.enumerate("texture", texture);
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/* appearanceRange */
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appearanceRange = __dna_docin.readFloat("appearanceRange");
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/* position */
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std::string tmp = __dna_docin.readString("position");
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auto idx = std::find(PaneNames.begin(), PaneNames.end(), tmp);
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if (idx != PaneNames.end())
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position = Position(idx - PaneNames.begin());
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else
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position = Position::Invalid;
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/* width */
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width = __dna_docin.readUint32("width");
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/* height */
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height = __dna_docin.readUint32("height");
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/* interval */
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interval = __dna_docin.readFloat("interval");
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/* fadeDuration */
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fadeDuration = __dna_docin.readFloat("fadeDuration");
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}
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void toYAML(Athena::io::YAMLDocWriter& __dna_docout) const
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{
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/* texture */
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__dna_docout.enumerate("texture", texture);
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/* appearanceRange */
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__dna_docout.writeFloat("appearanceRange", appearanceRange);
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/* position */
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if (position != Position::Invalid)
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__dna_docout.writeString("position", PaneNames.at(atUint32(position)));
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else
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__dna_docout.writeString("position", "undefined");
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/* width */
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__dna_docout.writeUint32("width", width);
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/* height */
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__dna_docout.writeUint32("height", height);
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/* interval */
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__dna_docout.writeFloat("interval", interval);
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/* fadeDuration */
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__dna_docout.writeFloat("fadeDuration", fadeDuration);
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}
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const char* DNAType() { return "Retro::DNAMP1::SCAN::Texture"; }
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size_t binarySize(size_t __isz) const
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{
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__isz = texture.binarySize(__isz);
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return __isz + 24;
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}
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2015-09-24 07:47:30 +00:00
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};
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Texture textures[4];
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static bool Extract(PAKEntryReadStream& rs, const HECL::ProjectPath& outPath)
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{
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SCAN scan;
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scan.read(rs);
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FILE* fp = HECL::Fopen(outPath.getAbsolutePath().c_str(), _S("wb"));
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scan.toYAMLFile(fp);
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fclose(fp);
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return true;
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}
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2015-10-27 00:19:03 +00:00
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static void Name(const SpecBase& dataSpec,
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PAKEntryReadStream& rs,
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PAKRouter<PAKBridge>& pakRouter,
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PAK::Entry& entry)
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{
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SCAN scan;
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scan.read(rs);
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if (scan.string)
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{
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PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(scan.string);
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ent->name = HECL::Format("SCAN_%s_strg", entry.id.toString().c_str());
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}
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for (int i=0 ; i<4 ; ++i)
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{
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const Texture& tex = scan.textures[i];
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if (tex.texture)
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{
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PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(tex.texture);
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ent->name = HECL::Format("SCAN_%s_tex%d", entry.id.toString().c_str(), i+1);
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}
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}
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}
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2015-09-24 07:47:30 +00:00
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};
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}
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}
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#endif
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