Difference between revisions of "YM2151 Programming"

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The YM2151 is now ready and active at addresses $460 and $461.
 
The YM2151 is now ready and active at addresses $460 and $461.
 +
  
 
== Updating Registers on the YM2151 ==
 
== Updating Registers on the YM2151 ==
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   sta YM2151BASE+1
 
   sta YM2151BASE+1
 
   rts
 
   rts
 +
  
 
== The YM2151 Register Map ==
 
== The YM2151 Register Map ==
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   ! Purpose             
 
   ! Purpose             
 
   |-  
 
   |-  
   | 01 || <tt>%TTTTTTTT</tt> || TEST || Test || - || not normally used
+
   | 01 || <tt>%TTTTTTTT</tt> || TEST || Test || - || not used for XM
 
   |-
 
   |-
 
   | 08 || <tt>%-SSSSCCC</tt> || SN,CN || Slot Number, Channel Number || - || Send Note-on or Note-off
 
   | 08 || <tt>%-SSSSCCC</tt> || SN,CN || Slot Number, Channel Number || - || Send Note-on or Note-off
 +
  |-
 +
  | 0F || <tt>%E--FFFFF</tt> || NE,NFRQ|| Noise Enable, Noise Frequency || - || Enable Noise
 +
  |-
 +
  | 10 || <tt>%CCCCCCCC</tt> || CLKA1 || Clock A1 || - || Clock Frequency Determination
 +
  |-
 +
  | 11 || <tt>%------CC</tt> || CLKA2 || Clock A2 || - || Clock Frequency Determination
 +
  |-
 +
  | 12 || <tt>%CCCCCCCC</tt> || CLKB || Clock B || - || Clock Frequency Determination
 +
  |-
 +
  | 14 || <tt>%C-FFIILL</tt> || CSM,FReset,IRQEN,LOAD || TBD || - || not used for XM
 +
  |-
 +
  | 18 || <tt>%LLLLLLLL</tt> ||LFRQ || TBD || - || TBD
 +
  |-
 +
  | 19 || <tt>%MMMMMMMM</tt> ||AMD/PMD || TBD || - || TBD
 
   |-
 
   |-
 
  |}
 
  |}

Revision as of 20:27, 25 February 2020

The YM2151 is a Yamaha FM-based soundchip. The focus of this article is programming this chip with regard to the Atari 7800 XM module, though there will get information that applies to other systems that support the YM2151.

If you wish to just use the existing XMYM tracker (instead of programming the YM2151 at a low level) you can skip this article, and get a hold of the DefleMask composing software, and the dmf2asm converter, so you can make your music and convert it to XMYM compatible format.


Mapping the XM YM2151 into address space

The XM Ctrl register is used to map devices in and out of address space. Writing the value #$84 will will make the YM2151 and cartridge ROM available. If you want other hardware present, like the pokey sound chip, you'll need to modify the value appropriately. (see the official XM developer docs)

The YM2151 is now ready and active at addresses $460 and $461.


Updating Registers on the YM2151

The YM2151 can be busy with updates you've previously sent to it, so previous to any communications you need to check if it's ready with something like...

 WaitForYMReady
   bit $461
   bmi WaitForYMReady

To update the YM registers, you write the YM register location to the $460 location, and then the value you wish to write to the YM register to $461. For convenience, the following subroutine will write the A register contents to the X register location.

YM2151BASE = $460
WriteToYM_X
  ; utility function: writes A to the YM, at register location X
  ; on entry: X=YM Register, A=Value to write
WaitForYMXReady1
  bit YM2151BASE+1
  bmi WaitForYMXReady1
  stx YM2151BASE
WaitForYMXReady2
  bit YM2151BASE+1
  bmi WaitForYMXReady2
  sta YM2151BASE+1
  rts


The YM2151 Register Map

Here's the summary of the YM2151 register locations. It's important to note that these aren't locations in 6502 address space, but locations internal to the YM2151, and can only be reached through YM2151 register update mechanism.


YM2151 Registers
Location             Bits Used             Register             Register Description                    Alt Reg Name             Purpose            
01 %TTTTTTTT TEST Test - not used for XM
08 %-SSSSCCC SN,CN Slot Number, Channel Number - Send Note-on or Note-off
0F %E--FFFFF NE,NFRQ Noise Enable, Noise Frequency - Enable Noise
10 %CCCCCCCC CLKA1 Clock A1 - Clock Frequency Determination
11 %------CC CLKA2 Clock A2 - Clock Frequency Determination
12 %CCCCCCCC CLKB Clock B - Clock Frequency Determination
14 %C-FFIILL CSM,FReset,IRQEN,LOAD TBD - not used for XM
18 %LLLLLLLL LFRQ TBD - TBD
19 %MMMMMMMM AMD/PMD TBD - TBD