mirror of
https://github.com/davidgiven/fluxengine.git
synced 2025-10-31 11:17:01 -07:00
535 lines
20 KiB
C++
535 lines
20 KiB
C++
#include "lib/core/globals.h"
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#include "lib/flags.h"
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#include "lib/sector.h"
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#include "lib/imagewriter/imagewriter.h"
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#include "lib/image.h"
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#include "lib/config.pb.h"
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#include "lib/layout.h"
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#include "lib/core/logger.h"
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#include <algorithm>
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#include <iostream>
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#include <fstream>
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#include <chrono>
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#include <ctime>
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/*
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* Where to get the type of encoding FM or MFM? Now solved with options in
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* proto config
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*/
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static const char LABEL[] = "IMD archive by fluxengine on"; // 22 karakters
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static uint8_t getModulationandSpeed(
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int flags, ImdOutputProto::RecordingMode mode)
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{
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if (flags == 0)
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{
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error(
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"Can't write IMD files with this speed {}, and modulation {}. Did "
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"you read a real disk?",
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flags,
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false);
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}
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else
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{
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flags = 1000000.0 / flags;
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}
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if ((flags > 950) and
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(flags < 1050)) // HD disk 5% discrepency is ok 1000*5% = 50 1 us
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{
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/* 500 kbps */
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if (mode == ImdOutputProto::RECMODE_FM)
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{
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return 0;
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}
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else
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{
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return 3;
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}
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}
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else if ((flags > 1475) and (flags < 1575)) // SD disk
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{
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/* 300 kbps*/
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if (mode == ImdOutputProto::RECMODE_FM)
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{
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return 1;
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}
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else
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{
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return 4;
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}
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}
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else if ((flags > 1900) and (flags < 2100)) // DD disk
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{
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/* 250 kbps */
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if (mode == ImdOutputProto::RECMODE_FM)
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{
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return 2;
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}
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else
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{
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return 5;
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}
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}
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else
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{
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error(
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"IMD: Can't write IMD files with this speed {}, and modulation {}. "
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"Try another format.",
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flags,
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false);
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}
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}
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struct TrackHeader
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{
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uint8_t ModeValue;
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uint8_t track;
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uint8_t Head;
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uint8_t numSectors;
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uint8_t SectorSize;
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};
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static uint8_t setSectorSize(int flags)
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{
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switch (flags)
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{
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case 128:
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return 0;
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case 256:
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return 1;
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case 512:
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return 2;
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case 1024:
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return 3;
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case 2048:
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return 4;
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case 4096:
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return 5;
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case 8192:
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return 6;
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}
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error(
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"IMD: Sector size {} not in standard range (128, 256, 512, 1024, 2048, "
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"4096, 8192).",
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flags);
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}
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#define SEC_CYL_MAP_FLAG 0x80
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#define SEC_HEAD_MAP_FLAG 0x40
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#define HEAD_MASK 0x3F
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#define END_OF_FILE 0x1A
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// clang-format off
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/*
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* IMAGE FILE FORMAT
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* The overall layout of an ImageDisk .IMD image file is:
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* IMD v.vv: dd/mm/yyyy hh:mm:ss
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* Comment (ASCII only - unlimited size)
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* 1A byte - ASCII EOF character
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* - For each track on the disk:
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* 1 byte Mode value (0-5) see getModulationspeed for definition
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* 1 byte Cylinder (0-n)
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* 1 byte Head (0-1)
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* 1 byte number of sectors in track (1-n)
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* 1 byte sector size (0-6) see getsectorsize for definition
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* sector numbering map IMD start numbering sectors with 1.
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* sector cylinder map (optional) definied in high byte of head (since head is 0 or 1)
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* sector head map (optional) definied in high byte of head (since head is 0 or 1)
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* sector data records For each data record:
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* 1 byte Sector status
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* 0: Sector data unavailable - could not be read
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* 1: Normal data: (Sector Size) bytes follow
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* 2: Compressed: All bytes in sector have same value (xx)
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* 3: Normal data with "Deleted-Data address mark"
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* 4: Compressed with "Deleted-Data address mark"
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* 5: Normal data read with data error
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* 6: Compressed read with data error"
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* 7: Deleted data read with data error"
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* 8: Compressed, Deleted read with data error"
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* sector size of Sector data
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* <End of file>
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*/
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// clang-format on
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class ImdImageWriter : public ImageWriter
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{
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public:
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ImdImageWriter(const ImageWriterProto& config): ImageWriter(config) {}
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void writeImage(const Image& image) override
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{
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const Geometry& geometry = image.getGeometry();
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unsigned numHeads;
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unsigned numSectors;
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unsigned numBytes;
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std::ofstream outputFile(
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_config.filename(), std::ios::out | std::ios::binary);
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if (!outputFile.is_open())
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error("IMD: cannot open output file");
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unsigned numSectorsinTrack = 0;
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numHeads = geometry.numSides;
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numSectors = geometry.numSectors;
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numBytes = geometry.sectorSize;
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Bytes imagenew;
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ByteWriter bw(imagenew);
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ImdOutputProto::DataRate dataRate = _config.imd().data_rate();
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if (dataRate == ImdOutputProto::RATE_GUESS)
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{
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dataRate = (geometry.numSectors > 10) ? ImdOutputProto::RATE_HD
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: ImdOutputProto::RATE_DD;
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if (geometry.sectorSize <= 256)
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dataRate = ImdOutputProto::RATE_SD;
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log("IMD: guessing data rate as {}",
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ImdOutputProto::DataRate_Name(dataRate));
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}
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ImdOutputProto::RecordingMode recordingMode =
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_config.imd().recording_mode();
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if (recordingMode == ImdOutputProto::RECMODE_GUESS)
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{
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recordingMode = ImdOutputProto::RECMODE_MFM;
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log("IMD: guessing recording mode as {}",
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ImdOutputProto::RecordingMode_Name(recordingMode));
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}
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// Give the user a option to give a comment in the IMD file for archive
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// purposes.
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auto start = std::chrono::system_clock::now();
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std::time_t time = std::chrono::system_clock::to_time_t(start);
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std::string comment = _config.imd().comment();
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if (comment.size() == 0)
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{
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comment = LABEL;
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comment.append(" date: ");
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comment.append(std::ctime(&time));
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}
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else
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{
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comment.insert(0, "IMD ");
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}
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bw.seek(0);
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bw.append(comment);
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bw.write_8(END_OF_FILE);
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std::string sector_skew;
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sector_skew.clear();
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unsigned Status_Sector = 1;
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bool blnOptionalCylinderMap = false;
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bool blnOptionalHeadMap = false;
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/* Write the actual sector data. */
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for (int track = 0; track < geometry.numTracks; track++)
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{
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for (int head = 0; head < numHeads; head++)
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{
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unsigned sectorIdBase = 1; // IMD starts sector numbering with
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// 1;
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unsigned sectorId = 0;
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TrackHeader header = {0,
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0,
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0,
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0,
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0}; // define something to hold the header values
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const auto& sector = image.get(track, head, sectorId + 1);
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if (!sector)
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{ // sector 0 doesnt exist exit with error
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// this track, head has no sectors
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Status_Sector = 0;
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log("IMD: sector {} not found on track {}, head {}\n",
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sectorId + 1,
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track,
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head);
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break;
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}
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else
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{
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/* Get the header information */
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numBytes =
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sector->data.size(); // number of bytes can change per
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// sector per track
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header.track = track;
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header.Head = head;
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header.SectorSize = setSectorSize(numBytes);
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sector_skew.clear();
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numSectorsinTrack = 0;
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nanoseconds_t RATE = 0;
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if (sector->clock > 0)
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{
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RATE = 1000000.0 / sector->clock;
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}
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else
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{
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switch (dataRate)
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{
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case ImdOutputProto::RATE_HD:
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RATE = 1000;
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break;
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case ImdOutputProto::RATE_SD:
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RATE = 1500;
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break;
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case ImdOutputProto::RATE_DD:
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RATE = 2000;
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break;
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case ImdOutputProto::RATE_GUESS:
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break;
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}
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}
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header.ModeValue =
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getModulationandSpeed(RATE, recordingMode);
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}
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// determine number of sectors in track
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for (int sectorId = 0; sectorId < numSectors; sectorId++)
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{
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const auto& sector = image.get(track, head, sectorId + 1);
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if (!sector)
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{
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break;
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}
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else
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{
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numSectorsinTrack++;
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}
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}
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// determine sector skew and if there are optional cylindermaps
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// or headermaps
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for (int sectorId = 0; sectorId < numSectorsinTrack; sectorId++)
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{
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const auto& sector = image.get(track, head, sectorId + 1);
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if (!sector)
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{
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break;
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}
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else
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{
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sector_skew.push_back(
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(sectorId + sectorIdBase) +
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'0'); // fill sectorskew start with 1
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if ((sector->physicalTrack) !=
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(sector->logicalTrack)) // different physicaltrack
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// fromn logicaltrack
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{
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blnOptionalCylinderMap = true;
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}
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if (sector->logicalSide !=
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sector->physicalSide) // different physicalside
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// fromn logicalside
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{
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blnOptionalHeadMap = true;
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}
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}
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}
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bw.write_8(header.ModeValue); // 1 byte ModeValue
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bw.write_8(track); // 1 byte Cylinder
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// are there optional cylinder or head maps?
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if (blnOptionalCylinderMap)
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{
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header.Head = header.Head ^
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SEC_CYL_MAP_FLAG; // if head was 0 (00000000)
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// it becomes (10000000)
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}
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if (blnOptionalHeadMap)
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{
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header.Head = header.Head ^
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SEC_HEAD_MAP_FLAG; // if head was 1 (00000001)
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// it becomes (01000001)
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}
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bw.write_8(head); // 1 byte Head
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bw.write_8(
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numSectorsinTrack); // 1 byte number of sectors in track
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bw.write_8(header.SectorSize); // 1 byte sector size
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for (int sectorId = 0; sectorId < numSectorsinTrack; sectorId++)
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{
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bw.write_8(
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(sectorId + sectorIdBase)); // sector numbering map
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}
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// Write optional cylinder map
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// The Sector Cylinder Map has one entry for each sector, and
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// contains the logical Cylinder ID for the corresponding sector
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// in the Sector Numbering Map.
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if (blnOptionalCylinderMap)
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{
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// determine how the optional cylinder map looks like
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// write the corresponding logical ID
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for (int sectorId = 0; sectorId < numSectorsinTrack;
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sectorId++)
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{
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// const auto& sector = sectors.get(track, head,
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// sectorId);
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bw.write_8(sector->logicalTrack); // 1 byte logical
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// track
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}
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}
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// Write optional sector head map
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// The Sector Head Map has one entry for each sector, and
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// contains the logical Head ID for the corresponding sector in
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// the Sector Numbering Map.
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if (blnOptionalHeadMap)
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{
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// determine how the optional head map looks like
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// write the corresponding logical ID
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for (int sectorId = 0; sectorId < numSectorsinTrack;
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sectorId++)
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{
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// const auto& sector = sectors.get(track, head,
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// sectorId);
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bw.write_8(sector->logicalSide); // 1 byte logical side
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}
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}
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// Now read data and write to file
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for (int sectorId = 0; sectorId < numSectorsinTrack; sectorId++)
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{
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// clang-format off
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/* For each data record:
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* 1 byte Sector status
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* 0: Sector data unavailable - could not be read
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* 1: Normal data: (Sector Size) bytes follow
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* 2: Compressed: All bytes in sector have same value (xx)
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* 3: Normal data with "Deleted-Data address mark"
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* 4: Compressed with "Deleted-Data address mark"
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* 5: Normal data read with data error
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* 6: Compressed read with data error"
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* 7: Deleted data read with data error"
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* 8: Compressed, Deleted read with data error"
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* sector size of Sector data
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*/
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// clang-format on
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// read sector
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const auto& sector = image.get(track, head, sectorId + 1);
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bool blnCompressable =
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false; // Consists the sector of 1 value? if yes then
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// compresses IMD this to 1 value
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Bytes sectordata(numBytes); // define the sectordata with
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// the size of the sectorsize
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Bytes compressed(
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1); // reserve 1 byte for comressed sectordata
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uint8_t byte; // value read
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uint8_t
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byte_previous; // previous value read (to determine if
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// all bytes are equel in this sector)
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if (!sector)
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{
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Status_Sector = 0;
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break;
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}
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else
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{
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ByteReader br(sector->data); // read the sector data
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int i;
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// determine if all bytes are the same -> compress and
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// sector status = 2
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for (i = 0; i < numBytes; i++)
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{
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byte = br.read_8();
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if (i == 0)
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{
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byte_previous = byte;
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}
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if (byte_previous == byte)
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{
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blnCompressable = true;
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}
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else
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{
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blnCompressable = false;
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break;
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}
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}
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switch (sector->status)
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{
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// clang-format off
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/* fluxengine knows of a few sector statussen but not all of the statussen in IMD.
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* // the statussen are in sector.h. Translation to fluxengine is as follows:
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* Statussen fluxengine | Status IMD
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*--------------------------------------------------------------------------------------------------------------------
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* OK, | 1, 2 (Normal data: (Sector Size) of (compressed) bytes follow)
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* BAD_CHECKSUM, | 5, 6, 7, 8
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* MISSING, sector not found | 0 (Sector data unavailable - could not be read)
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* DATA_MISSING, sector present but no data found | 3, 4
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* CONFLICT, |
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* INTERNAL_ERROR |
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*/
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// clang-format on
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case Sector::MISSING: /* Sector data unavailable -
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could not be read */
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Status_Sector = 0;
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break;
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case Sector::OK: /* Normal data: (Sector Size) bytes
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follow */
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if (blnCompressable) // data is compressable
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{
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Status_Sector = 2;
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}
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else
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{
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Status_Sector = 1;
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}
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break;
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case Sector::DATA_MISSING:
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Status_Sector =
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3; // we misuse normal data with
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// deleted-data addres mark for this
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// missing data option
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break;
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// IMD recognizes all of these cases. but fluxengine
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// doesnt support them. case 2: /* Compressed: All
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// bytes in sector have same value (xx) */ case 3:
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// /* Normal data with "Deleted-Data address mark"
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// */ case 4: /* Compressed with "Deleted-Data
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// address mark"*/
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case Sector::BAD_CHECKSUM:
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// case 5: /* Normal data read with data error -
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// could not be read*/
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Status_Sector = 5;
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break;
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// case 6: /* Compressed read with data error -
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// could not be read */ case 7: /* Deleted data
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// read with data error - could not be read */
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// case 8: /* Compressed, Deleted read with data
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// error - could not be read */
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default:
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error(
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"IMD: Don't understand IMD files with "
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"sector status {}",
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Status_Sector);
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}
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bw.write_8(Status_Sector); // 1 byte status sector
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if (blnCompressable)
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{
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bw.write_8(byte);
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blnCompressable = false;
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}
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else
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{
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bw.append(sector->data);
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}
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numSectors = numSectorsinTrack;
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}
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blnOptionalCylinderMap = false;
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blnOptionalHeadMap = false;
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}
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}
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}
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imagenew.writeTo(outputFile);
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log("IMD: Written {} tracks, {} heads, {} sectors, {} bytes per "
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"sector, {} kB total",
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geometry.numTracks,
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numHeads,
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numSectors,
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numBytes,
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outputFile.tellp() / 1024);
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}
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};
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std::unique_ptr<ImageWriter> ImageWriter::createImdImageWriter(
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const ImageWriterProto& config)
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{
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return std::unique_ptr<ImageWriter>(new ImdImageWriter(config));
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}
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