11a3dc67ce
Signed-off-by: Gwenhael Le Moine <gwenhael.le.moine@gmail.com>
250 lines
5.7 KiB
C
250 lines
5.7 KiB
C
/*
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* romcrc.c
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*
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* This file is part of Emu48
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*
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* Copyright (C) 2022 Christoph Gießelink
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*
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*/
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#include "pch.h"
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#include "Emu48.h"
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#include "ops.h"
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// flash page types
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#define BOOT 0x86
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#define FS 0x18
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#define SYSTEM 0x32
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#define ROM 0x0F
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#define RAM 0xF0
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//################
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//#
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//# Restore HP38G/HP48GX/SX ROM CRC
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//#
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//################
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// Clarke/Yorke CRC for HP38G and HP48GX/SX
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#define a0 0x0 // Start Address
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#define d0 (n0*16) // Address offset
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#define n0 0x4000 // Reads/Half-Sector
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#define s0 1 // #Sectors (Sector Size=2*d)
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// rebuild of the calculator =CHECKSUM function for the Clarke and the Yorke chip ROM
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static WORD Checksum(LPBYTE pbyROM, DWORD dwStart, DWORD dwOffset, INT nReads, INT nSector)
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{
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int i,j;
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WORD wCrc = 0;
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for (;nSector > 0; --nSector) // evaluate each sector
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{
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LPBYTE pbyAddr1 = pbyROM + dwStart;
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LPBYTE pbyAddr2 = pbyAddr1 + dwOffset;
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for (i = 0; i < nReads; ++i) // no. of reads in sector
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{
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for (j = 0; j < 16; ++j) wCrc = UpCRC(wCrc,*pbyAddr1++);
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for (j = 0; j < 16; ++j) wCrc = UpCRC(wCrc,*pbyAddr2++);
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}
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dwStart += 2 * dwOffset; // next start page
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}
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return wCrc;
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}
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// calculate proper checksum to produce final CRC of FFFF
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static __inline WORD CalcChksum(WORD wCrc, WORD wChksum)
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{
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WORD q, r = wCrc, s = wChksum;
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// first take the last 4-nib back out of the CRC
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r = (((r >> 12) * 0x811) ^ (r << 4) ^ (s & 0xf));
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s >>= 4;
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r = (((r >> 12) * 0x811) ^ (r << 4) ^ (s & 0xf));
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s >>= 4;
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r = (((r >> 12) * 0x811) ^ (r << 4) ^ (s & 0xf));
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s >>= 4;
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r = (((r >> 12) * 0x811) ^ (r << 4) ^ (s & 0xf));
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// calculate new checksum to correct the CRC
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s = 0xf831; // required MSNs to make goal
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q = (q<<4) | ((r ^ s) & 0xf); // get 1st (least sig) nib
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r = (r>>4) ^ ((s & 0xf) * 0x1081);
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s >>= 4;
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q = (q<<4) | ((r ^ s) & 0xf);
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r = (r>>4) ^ ((s & 0xf) * 0x1081);
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s >>= 4;
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q = (q<<4) | ((r ^ s) & 0xf);
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r = (r>>4) ^ ((s & 0xf) * 0x1081);
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s >>= 4;
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q = (q<<4) | ((r ^ s) & 0xf);
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return q;
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}
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static VOID CorrectCrc(DWORD dwAddrCrc, WORD wCrc)
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{
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if (wCrc != 0xFFFF) // wrong crc result
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{
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INT s;
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// get actual crc correction value
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const WORD wChkAct = (pbyRom[dwAddrCrc+0] << 12)
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| (pbyRom[dwAddrCrc+1] << 8)
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| (pbyRom[dwAddrCrc+2] << 4)
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| (pbyRom[dwAddrCrc+3]);
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wCrc = CalcChksum(wCrc,wChkAct); // calculate new checksum
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for (s = 3; s >= 0; --s) // write new checksum
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{
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PatchNibble(dwAddrCrc + s,(BYTE) (wCrc & 0xf));
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wCrc >>= 4;
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}
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}
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return;
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}
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//################
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//#
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//# Restore HP49G ROM CRC
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//#
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//################
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static VOID CorrectFlashCrc(LPBYTE pbyMem, DWORD dwSize, DWORD dwOffset, DWORD dwLength)
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{
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// address overflow (data length + 4 nibble CRC)
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if (dwOffset + dwLength + 4 <= dwSize)
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{
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WORD wRefCrc,wCrc = 0;
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pbyMem += dwOffset; // start address
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for (; dwLength > 0; --dwLength) // update CRC
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{
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wCrc = UpCRC(wCrc,*pbyMem++);
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}
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wRefCrc = (WORD) Npack(pbyMem,4); // read reference CRC
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if(wRefCrc != wCrc) // wrong page CRC
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{
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INT s;
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// linear CRC address in ROM
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DWORD dwAddrCrc = (DWORD) (pbyMem - pbyRom);
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wRefCrc = wCrc; // working copy of CRC
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for (s = 0; s < 4; ++s) // write new checksum
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{
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PatchNibble(dwAddrCrc++,(BYTE) (wRefCrc & 0xf));
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wRefCrc >>= 4;
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}
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_ASSERT(wCrc == (WORD) Npack(pbyMem,4));
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}
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}
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return;
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}
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static __inline VOID CorrectFlashRom(LPBYTE pbyMem, DWORD dwSize)
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{
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CorrectFlashCrc(pbyMem,dwSize,0x20A,Npack(pbyMem+0x20A,5));
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return;
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}
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static __inline VOID CorrectFlashSystem(LPBYTE pbyMem, DWORD dwSize)
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{
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CorrectFlashCrc(pbyMem,dwSize,0x20A,Npack(pbyMem+0x100,5));
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return;
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}
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static __inline VOID CorrectFlashPage(LPBYTE pbyMem, DWORD dwSize, DWORD dwPage)
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{
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_ASSERT(dwPage >= 0 && dwPage < 16);
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dwPage *= _KB(128); // convert page no. to data offset
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if (dwPage + _KB(128) <= dwSize) // page inside flash chip
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{
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BYTE byType;
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pbyMem += dwPage; // page address
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dwPage = _KB(128); // page size
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// get bank type
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byType = (BYTE) Npack(pbyMem+0x200,2);
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if (byType == BOOT) // 1st half of page is the boot bank
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{
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pbyMem += _KB(64); // 2nd half of page
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dwPage = _KB(64); // page size
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// get bank type
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byType = (BYTE) Npack(pbyMem+0x200,2);
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}
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_ASSERT(dwPage == _KB(64) || dwPage == _KB(128));
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switch (byType)
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{
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case FS: // FRBankFileSystem
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case ROM: // FRBankRom
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CorrectFlashRom(pbyMem,dwPage);
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break;
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case SYSTEM: // FRBankSystem
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CorrectFlashSystem(pbyMem,dwPage);
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break;
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case RAM: // FRBankRam
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default: // illegal bank identifier
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break;
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}
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}
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return;
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}
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static __inline VOID CorrectAllFlashPages(VOID)
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{
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DWORD dwPage;
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// check CRC of all pages
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CONST DWORD dwLastPage = dwRomSize / _KB(128);
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for (dwPage = 0; dwPage < dwLastPage; ++dwPage)
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{
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// correct CRC of page
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CorrectFlashPage(pbyRom,dwRomSize,dwPage);
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}
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return;
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}
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//################
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//#
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//# Restore ROM CRC
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//#
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//################
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VOID RebuildRomCrc(VOID)
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{
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// HP38G, HP48GX, HP48SX
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if ((strchr("6AGS",cCurrentRomType)) && dwRomSize >= _KB(256))
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{
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// first 256KB
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CorrectCrc(0x7FFFC,Checksum(pbyRom,a0,d0,n0,s0));
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}
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// HP38G, HP48GX
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if ((strchr("6AG",cCurrentRomType)) && dwRomSize == _KB(512))
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{
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// second 256KB
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CorrectCrc(0xFFFFC,Checksum(pbyRom,a0+_KB(256),d0,n0,s0));
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}
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// HP39G/40G
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if (cCurrentRomType == 'E')
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{
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// has no Crc
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}
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// HP49G
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if (cCurrentRomType == 'X' && dwRomSize == _KB(2048))
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{
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CorrectAllFlashPages(); // go through all pages
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}
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return;
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}
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