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BPBIOS Doc Updates
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@@ -1,8 +1,33 @@
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Loader uses CBIOS Disk I/O prior to CBOOT/WBOOT being run. As a
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result, DIOBUF is not properly initialized. At present, it is
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initialized to $7C00 which will work unless the location of the
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physical disk buffer in HBIOS ever changes!
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In general, the BPBIOS for RomWBW is incomplete. This is
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mostly just a proof of concept that it can work. As such,
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it is not built or included in the default builds of
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RomWBW. You *must* review and adjust the file romwbw.lib
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before building BPBIOS. To include BPBIOS in the build
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process, you need to uncomment the corresponding line
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in the Build.cmd file in the Source directory.
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For now, BPBIOS does not understand the dynamic disk assignment
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mechanism of RomWBW. This means that you need to explicitly
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tell BPBIOS the console unit number and the disk unit number of
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the first hard disk device. Floppy drives are basically not
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supported. You should review and adjust the romwbw.lib file
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as needed. The RomWBW ASSIGN command is not supported. BPBIOS
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will boot from the first hard disk unit number you assign and
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always from the first slice.
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As documented in "@WBW Z3ENV.txt", there are two general
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configurations of BPBIOS for RomWBW. I strongly recomment
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using the T configurations (external HBIOS proxy). This is
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the long term direction for BPBIOS on RomWBW. The N
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configurations (internal HBIOS proxy) will not work with
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interrrupts of any kind. This means that to use the N
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configurations, you *must* use a RomWBW ROM built with
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interrupts disabled or chaos will ensue.
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BPBIOS does not yet understand the 1024 directory entry
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hard disk format. You must use the 512 directory entry
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format images.
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The clock drivers supplied with BPBIOS (LDDS, LDP2D, and LDNZT)
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load into ZSYS user memory. If the user segment is not at the
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same location as the original BPBIOS ($E900), then the clock
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@@ -11,5 +36,3 @@ is OK because it does not relocate the user segment, but the T
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config fails because it uses a user segment at $E700. Note that
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this does not affect ZSDOS2 variants because they do not require
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a loadable clock driver.
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BPBIOS needs to assign disk units dynamically via discovery of disk type
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@@ -28,7 +28,7 @@ HBCLK EQU YES ; HBIOS clock driver
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;
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HB_IODEV EQU 0 ; Assume we want to use first HBIOS serial device
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;
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; Set HB_HDDEV to appropriate hard disk driver
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; Set HB_HDDEV to the first (boot) hard disk device unit number
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;
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HB_HDDEV EQU 2 ; Assumes disk device #2 is first hard disk device
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;
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@@ -28,7 +28,7 @@ HBCLK EQU YES ; HBIOS clock driver
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;
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HB_IODEV EQU 0 ; Assume we want to use first HBIOS serial device
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;
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; Set HB_HDDEV to appropriate hard disk driver
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; Set HB_HDDEV to the first (boot) hard disk device unit number
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;
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HB_HDDEV EQU 2 ; Assumes disk device #2 is first hard disk device
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;
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@@ -28,7 +28,7 @@ HBCLK EQU YES ; HBIOS clock driver
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;
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HB_IODEV EQU 0 ; Assume we want to use first HBIOS serial device
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;
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; Set HB_HDDEV to appropriate hard disk driver
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; Set HB_HDDEV to the first (boot) hard disk device unit number
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;
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HB_HDDEV EQU 2 ; Assumes disk device #2 is first hard disk device
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;
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@@ -1,10 +1,10 @@
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@echo off
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setlocal
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REM call BuildDoc || exit /b
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:: call BuildDoc || exit /b
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call BuildProp || exit /b
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call BuildShared || exit /b
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REM call BuildBP || exit /b
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:: call BuildBP || exit /b
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call BuildImages || exit /b
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call BuildROM %* || exit /b
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call BuildZRC || exit /b
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@@ -227,7 +227,7 @@ SN7CLK .EQU CPUOSC / 4 ; DEFAULT TO CPUOSC / 4
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;
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AY38910ENABLE .EQU FALSE ; AY: AY-3-8910 / YM2149 SOUND DRIVER
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AY_CLK .EQU CPUOSC / 4 ; DEFAULT TO CPUOSC / 4
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AYMODE .EQU AYMODE_NONE ; AY: DRIVER MODE: AYMODE_[SCG/N8/RCZ80/RCZ180]
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AYMODE .EQU AYMODE_SCG ; AY: DRIVER MODE: AYMODE_[SCG/N8/RCZ80/RCZ180]
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;
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SPKENABLE .EQU FALSE ; SPK: ENABLE RTC LATCH IOBIT SOUND DRIVER (SPK.ASM)
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;
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