Some pesky TABs slipped into my JavaScript (apologies to Richard at Pied Piper)
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2 changed files with 40 additions and 40 deletions
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@ -1719,21 +1719,21 @@ if (DEBUGGER) {
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case Interrupts.WINDBG.KRNLVARS: // 0x005A
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/*
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* BX = version number of this data (0x3A0)
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* DX:CX points to:
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* WORD hGlobalHeap ****
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* WORD pGlobalHeap ****
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* WORD hExeHead ****
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* WORD hExeSweep
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* WORD topPDB
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* WORD headPDB
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* WORD topsizePDB
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* WORD headTDB ****
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* WORD curTDB ****
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* WORD loadTDB
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* WORD LockTDB
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* WORD SelTableLen ****
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* DWORD SelTableStart ****
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* BX = version number of this data (0x3A0)
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* DX:CX points to:
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* WORD hGlobalHeap ****
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* WORD pGlobalHeap ****
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* WORD hExeHead ****
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* WORD hExeSweep
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* WORD topPDB
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* WORD headPDB
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* WORD topsizePDB
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* WORD headTDB ****
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* WORD curTDB ****
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* WORD loadTDB
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* WORD LockTDB
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* WORD SelTableLen ****
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* DWORD SelTableStart ****
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*/
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break;
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@ -1955,7 +1955,7 @@ if (DEBUGGER) {
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/*
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* AL == segment type:
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* 0x80 device driver code seg
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* 0x81 device driver data seg
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* 0x81 device driver data seg
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* ES:DI -> D386_Device_Params structure (see addSectionInfo() for details)
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*/
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this.addSectionInfo(this.newAddr(DI, ES), !(AL & 0x1), !!this.fWinDbgRM);
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@ -497,16 +497,16 @@ Video.TRAPALL = true; // monitor all I/O by default (not just deltas)
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*
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* Also, for quick reference, IBM VGA register values for the standard VGA modes (from http://www.pcjs.org/blog/2015/06/01/):
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*
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* INT 0x10 Mode Requested: 0x00 0x01 0x02 0x03 0x04 0x05 0x06 0x0D 0x0E 0x10 0x12 0x13
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* INT 0x10 Mode Requested: 0x00 0x01 0x02 0x03 0x04 0x05 0x06 0x0D 0x0E 0x10 0x12 0x13
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*
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* BIOSMODE: 0x01 0x01 0x03 0x03 0x04 0x04 0x06 0x0D 0x0E 0x10 0x12 0x13
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* CRTC[0x00]: HTOTAL 0x2D 0x2D 0x5F 0x5F 0x2D 0x2D 0x5F 0x2D 0x5F 0x5F 0x5F 0x5F
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* CRTC[0x01]: HDISP_END 0x27 0x27 0x4F 0x4F 0x27 0x27 0x4F 0x27 0x4F 0x4F 0x4F 0x4F
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* CRTC[0x02]: HBLANK_START 0x28 0x28 0x50 0x50 0x28 0x28 0x50 0x28 0x50 0x50 0x50 0x50
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* CRTC[0x03]: HBLANK_END 0x90 0x90 0x82 0x82 0x90 0x90 0x82 0x90 0x82 0x82 0x82 0x82
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* CRTC[0x04]: HRETRACE_START 0x2B 0x2B 0x55 0x55 0x2B 0x2B 0x54 0x2B 0x54 0x54 0x54 0x54
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* CRTC[0x05]: HRETRACE_END 0xA0 0xA0 0x81 0x81 0x80 0x80 0x80 0x80 0x80 0x80 0x80 0x80
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* CRTC[0x06]: VTOTAL 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0x0B 0xBF
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* CRTC[0x00]: HTOTAL 0x2D 0x2D 0x5F 0x5F 0x2D 0x2D 0x5F 0x2D 0x5F 0x5F 0x5F 0x5F
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* CRTC[0x01]: HDISP_END 0x27 0x27 0x4F 0x4F 0x27 0x27 0x4F 0x27 0x4F 0x4F 0x4F 0x4F
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* CRTC[0x02]: HBLANK_START 0x28 0x28 0x50 0x50 0x28 0x28 0x50 0x28 0x50 0x50 0x50 0x50
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* CRTC[0x03]: HBLANK_END 0x90 0x90 0x82 0x82 0x90 0x90 0x82 0x90 0x82 0x82 0x82 0x82
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* CRTC[0x04]: HRETRACE_START 0x2B 0x2B 0x55 0x55 0x2B 0x2B 0x54 0x2B 0x54 0x54 0x54 0x54
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* CRTC[0x05]: HRETRACE_END 0xA0 0xA0 0x81 0x81 0x80 0x80 0x80 0x80 0x80 0x80 0x80 0x80
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* CRTC[0x06]: VTOTAL 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0xBF 0x0B 0xBF
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* CRTC[0x07]: OVERFLOW 0x1F 0x1F 0x1F 0x1F 0x1F 0x1F 0x1F 0x1F 0x1F 0x1F 0x3E 0x1F
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* CRTC[0x08]: PRESET_ROW 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00
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* CRTC[0x09]: MAX_SCAN 0x4F 0x4F 0x4F 0x4F 0xC1 0xC1 0xC1 0xC0 0xC0 0x40 0x40 0x41
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@ -516,13 +516,13 @@ Video.TRAPALL = true; // monitor all I/O by default (not just deltas)
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* CRTC[0x0D]: START_ADDR_LO 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00
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* CRTC[0x0E]: CURSOR_ADDR_HI 0x01 0x01 0x01 0x01 0x01 0x01 0x01 0x01 0x01 0x01 0x01 0x00
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* CRTC[0x0F]: CURSOR_ADDR_LO 0x19 0x19 0x41 0x41 0x19 0x19 0x41 0x19 0x41 0x41 0xE1 0xA2
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* CRTC[0x10]: VRETRACE_START 0x9C 0x9C 0x9C 0x9C 0x9C 0x9C 0x9C 0x9C 0x9C 0x83 0xEA 0x9C
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* CRTC[0x11]: VRETRACE_END 0x8E 0x8E 0x8E 0x8E 0x8E 0x8E 0x8E 0x8E 0x8E 0x85 0x8C 0x8E
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* CRTC[0x12]: VDISP_END 0x8F 0x8F 0x8F 0x8F 0x8F 0x8F 0x8F 0x8F 0x8F 0x5D 0xDF 0x8F
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* CRTC[0x10]: VRETRACE_START 0x9C 0x9C 0x9C 0x9C 0x9C 0x9C 0x9C 0x9C 0x9C 0x83 0xEA 0x9C
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* CRTC[0x11]: VRETRACE_END 0x8E 0x8E 0x8E 0x8E 0x8E 0x8E 0x8E 0x8E 0x8E 0x85 0x8C 0x8E
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* CRTC[0x12]: VDISP_END 0x8F 0x8F 0x8F 0x8F 0x8F 0x8F 0x8F 0x8F 0x8F 0x5D 0xDF 0x8F
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* CRTC[0x13]: OFFSET 0x14 0x14 0x28 0x28 0x14 0x14 0x28 0x14 0x28 0x28 0x28 0x28
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* CRTC[0x14]: UNDERLINE 0x1F 0x1F 0x1F 0x1F 0x00 0x00 0x00 0x00 0x00 0x0F 0x00 0x40
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* CRTC[0x15]: VBLANK_START 0x96 0x96 0x96 0x96 0x96 0x96 0x96 0x96 0x96 0x63 0xE7 0x96
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* CRTC[0x16]: VBLANK_END 0xB9 0xB9 0xB9 0xB9 0xB9 0xB9 0xB9 0xB9 0xB9 0xBA 0x04 0xB9
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* CRTC[0x15]: VBLANK_START 0x96 0x96 0x96 0x96 0x96 0x96 0x96 0x96 0x96 0x63 0xE7 0x96
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* CRTC[0x16]: VBLANK_END 0xB9 0xB9 0xB9 0xB9 0xB9 0xB9 0xB9 0xB9 0xB9 0xBA 0x04 0xB9
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* CRTC[0x17]: MODE_CTRL 0xA3 0xA3 0xA3 0xA3 0xA2 0xA2 0xC2 0xE3 0xE3 0xE3 0xE3 0xA3
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* CRTC[0x18]: LINE_COMPARE 0xFF 0xFF 0xFF 0xFF 0xFF 0xFF 0xFF 0xFF 0xFF 0xFF 0xFF 0xFF
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* GRC[0x00]: SRESET 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00
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@ -558,7 +558,7 @@ Video.TRAPALL = true; // monitor all I/O by default (not just deltas)
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* ATC[0x10]: MODE 0x0C 0x0C 0x0C 0x0C 0x01 0x01 0x01 0x01 0x01 0x01 0x01 0x41
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* ATC[0x11]: OVERSCAN 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00
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* ATC[0x12]: PLANES 0x0F 0x0F 0x0F 0x0F 0x03 0x03 0x01 0x0F 0x0F 0x0F 0x0F 0x0F
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* ATC[0x13]: HPAN 0x08 0x08 0x08 0x08 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00
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* ATC[0x13]: HPAN 0x08 0x08 0x08 0x08 0x00 0x00 0x00 0x00 0x00 0x00 0x00 0x00
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*
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* TODO: Build a similar table for the IBM EGA, and then work on rationalizing the mode detection logic in checkMode().
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*/
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@ -6305,22 +6305,22 @@ Video.prototype.inStatus0 = function(port, addrFrom)
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* thing again with 5 more arrays, expecting the 4th byte in all 5 arrays to match SWSENSE, and being
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* very unhappy if they don't:
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*
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* db 0x14,0x14,0x14,0x10
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* db 0x2D,0x14,0x14,0x00
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* db 0x14,0x2D,0x14,0x00
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* db 0x14,0x14,0x2D,0x00
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* db 0x2D,0x2D,0x2D,0x00
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* db 0x14,0x14,0x14,0x10
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* db 0x2D,0x14,0x14,0x00
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* db 0x14,0x2D,0x14,0x00
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* db 0x14,0x14,0x2D,0x00
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* db 0x2D,0x2D,0x2D,0x00
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*
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* I ensure much happiness by setting SWSENSE unless any of the three 6-bit DAC values contain 0x2D.
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*
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* This hard-coded behavior assumes a color monitor. If you really want to simulate a monochrome monitor,
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* then the 1st array (above) must mismatch, and a different set of arrays must all match:
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*
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* db 0x04,0x12,0x04,0x10
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* db 0x1E,0x12,0x04,0x00
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* db 0x04,0x2D,0x04,0x00
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* db 0x04,0x16,0x15,0x00
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* db 0x00,0x00,0x00,0x10
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* db 0x04,0x12,0x04,0x10
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* db 0x1E,0x12,0x04,0x00
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* db 0x04,0x2D,0x04,0x00
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* db 0x04,0x16,0x15,0x00
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* db 0x00,0x00,0x00,0x10
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*
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* In other words, for a monochrome monitor, set SWSENSE only when DAC register #0 matches the first and last
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* sets of values.
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