Difference between revisions of "6809 Second Processor"

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m (typo)
(Documented OS_INIT)
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<pre>On entry, A, X, Y contain values to pass to system call
 
<pre>On entry, A, X, Y contain values to pass to system call
 
On exit,  A, X, Y contain returned data
 
On exit,  A, X, Y contain returned data
           All addresses are little-endian, except where noted
+
           All addresses are big-endian, except where noted
 +
          When an application starts it should call OS_INIT which
 +
          returns MI if little-endian addresses are being used.
 
</pre>
 
</pre>
 
=== &FFF7 - OS_CLI ===
 
=== &FFF7 - OS_CLI ===
Line 58: Line 60:
 
X=>control block        X=preserved
 
X=>control block        X=preserved
 
Filename address at X+0/1 is big-endian
 
Filename address at X+0/1 is big-endian
 +
Control block addresses are big-endian unless indicated by OS_INIT
 
</pre>
 
</pre>
 
=== &FFDA - OS_ARGS ===
 
=== &FFDA - OS_ARGS ===
Line 65: Line 68:
 
X=>data                X=preserved
 
X=>data                X=preserved
 
                         data updated
 
                         data updated
 +
The data word is big-endian unless indicated by OS_INIT
 
</pre>
 
</pre>
 
=== &FFD7 - OS_BPUT ===
 
=== &FFD7 - OS_BPUT ===
Line 81: Line 85:
 
A=function              A=preserved
 
A=function              A=preserved
 
X=>control block        Cy=carry flag
 
X=>control block        Cy=carry flag
 +
Control block addresses are big-endian unless indicated by OS_INIT
 
</pre>
 
</pre>
 
=== &FFCE - OS_FIND ===
 
=== &FFCE - OS_FIND ===
Line 98: Line 103:
 
=== &FFB9 - CLICOM  ===
 
=== &FFB9 - CLICOM  ===
 
=== &FFBC - ERRJMP  ===
 
=== &FFBC - ERRJMP  ===
=== &FFBF - INITERR ===
+
=== &FFBF - OS_INIT Initialise error handler and other environment settings ===
 +
<pre>                On entry, A=0 to become the current program
 +
                          A=$FF to just read the current settings
 +
                Returns X=>BRKV, Y=>ESCFLG, DP=>Direct Page, A,B=various
 +
                        CC set from contents of A on return
 +
                        A.b7=1: little-endian filing system calls (CC=MI)
 +
                        A.b7=0: big-endian filing system calls (CC=PL)
 +
 
 +
                This must be called by application code as part of its
 +
                startup, before writing anything to memory. Before making
 +
                this call, code does not known where BRKV and ESCFLG are,
 +
                as they can be anywhere in memory.
 +
</pre>
  
 
== See also ==
 
== See also ==
Line 104: Line 121:
  
 
==External links==
 
==External links==
* [http://mdfs.net/tube/6809 6809 CoPro information at mdfs.net]
+
* [https://mdfs.net/tube/6809 6809 CoPro information at mdfs.net]
* [http://mdfs.net/Archive/BBCMicro/2009/07/16/220501.htm Johan Heusevelt's 6809 CoPro]
+
* [https://mdfs.net/Docs/Books/6809CoPro/Technical 6809 CoPro technical documentation]
 +
* [https://mdfs.net/Archive/BBCMicro/2009/07/16/220501.htm Johan Heusevelt's 6809 CoPro]
  
 
[[User:Jgharston|Jgharston]] 16:53, 6 November 2009 (UTC)
 
[[User:Jgharston|Jgharston]] 16:53, 6 November 2009 (UTC)
 
[[User:Jgharston|Jgharston]] ([[User talk:Jgharston|talk]]) 23:41, 30 January 2016 (UTC)
 
[[User:Jgharston|Jgharston]] ([[User talk:Jgharston|talk]]) 23:41, 30 January 2016 (UTC)
 +
[[User:Jgharston|Jgharston]] ([[User talk:Jgharston|talk]]) 00:44, 10 February 2022 (CET)

Revision as of 00:44, 10 February 2022

A second processor for the BBC/Master containing a Motorola 6809.

The 6809 client MOS provides the basic system required to communicate with the host computer. The BBC MOS entry block is implemented by using the BA/BS signals to remap the hardware vectors to from &FFF0 to &FEF0.

MOS API Calls

Programs communicate with the kernal and MOS via an entry block at &FF80-&FFFF. Parameters are passed in the A, X and Y registers.

On entry, A, X, Y contain values to pass to system call
On exit,  A, X, Y contain returned data
          All addresses are big-endian, except where noted
          When an application starts it should call OS_INIT which
          returns MI if little-endian addresses are being used.

&FFF7 - OS_CLI

On entry:               On exit:
X=>command string       A=Return value

&FFF4 - OS_BYTE

On entry:               On exit
A=function              A=preserved
X=first parameter       X=returned word
Y=second parameter      Y=returned word DIV 256
                        Cy=returned carry flag

&FFF1 - OS_WORD

On entry:               On exit:
A=function              Control block updated
X=>control block        Y=returned line length for OSWORD 0
Text buffer address at X+0/1 with OSWORD 0 is big-endian

&FFEE - OS_WRCH

On entry:               On exit:
A=character             A=preserved

&FFEC - OS_WRCR

On entry:               On exit:
                        A=13

&FFE7 - OS_NEWL

On entry:               On exit:
                        A=13

&FFE3 - OS_ASCI

On entry:               On exit:
A=character             A=preserved

&FFE0 - OS_RDCH

On entry:               On exit:
                        A=character
                        Cy=carry flag

&FFDD - OS_FILE

On entry:               On exit:
A=function              A=result
X=>control block        X=preserved
Filename address at X+0/1 is big-endian
Control block addresses are big-endian unless indicated by OS_INIT

&FFDA - OS_ARGS

On entry:               On exit:
A=function              A=result
Y=handle                Y=preserved
X=>data                 X=preserved
                        data updated
The data word is big-endian unless indicated by OS_INIT

&FFD7 - OS_BPUT

On entry:               On exit:
A=byte                  A=preserved
Y=handle                Y=preserved

&FFD4 - OS_BGET

On entry:               On exit:
                        A=byte
Y=handle                Y=preserved
                        Cy=carry flag

&FFD1 - OS_GBPB

On entry:               On exit:
A=function              A=preserved
X=>control block        Cy=carry flag
Control block addresses are big-endian unless indicated by OS_INIT

&FFCE - OS_FIND

On entry:               On exit:
A=function              A=handle
X=>string or
Y=handle

&FF9B - PRSTRING

&FFA1 - SCANHEX

&FFA7 - OSQUIT

&FFAA - PRHEX

&FFAD - PR2HEX

&FFB0 - USERINT

&FFB3 - PRTEXT

&FFB9 - CLICOM

&FFBC - ERRJMP

&FFBF - OS_INIT Initialise error handler and other environment settings

                 On entry, A=0 to become the current program
                           A=$FF to just read the current settings
                 Returns X=>BRKV, Y=>ESCFLG, DP=>Direct Page, A,B=various
                         CC set from contents of A on return
                         A.b7=1: little-endian filing system calls (CC=MI)
                         A.b7=0: big-endian filing system calls (CC=PL)

                 This must be called by application code as part of its
                 startup, before writing anything to memory. Before making
                 this call, code does not known where BRKV and ESCFLG are,
                 as they can be anywhere in memory.

See also

External links

Jgharston 16:53, 6 November 2009 (UTC) Jgharston (talk) 23:41, 30 January 2016 (UTC) Jgharston (talk) 00:44, 10 February 2022 (CET)