314 lines
8.6 KiB
Forth
314 lines
8.6 KiB
Forth
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\ *****************************************************************************
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\ * Copyright (c) 2004, 2008 IBM Corporation
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\ * All rights reserved.
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\ * This program and the accompanying materials
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\ * are made available under the terms of the BSD License
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\ * which accompanies this distribution, and is available at
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\ * http://www.opensource.org/licenses/bsd-license.php
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\ *
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\ * Contributors:
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\ * IBM Corporation - initial implementation
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\ ****************************************************************************/
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\ U4 DDR2 memory controller.
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cr .( Setting up memory controller...)
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\ First, I2C access to the SPDs.
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: >i2c f8001000 + ;
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: i2c@ >i2c rl@ ;
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: i2c! >i2c rl! ;
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: .i2c 80 0 DO i i2c@ . 10 +LOOP ;
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: i2c-addr ( addr -- ) 50 i2c! 2 10 i2c! BEGIN 30 i2c@ 2 and UNTIL ;
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: i2c-addr-subaddr ( addr suba -- ) 60 i2c! i2c-addr ;
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: i2c-stop ( -- ) BEGIN 30 i2c@ dup 30 i2c! 4 and UNTIL ;
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: i2c-nak? ( -- failed? ) 20 i2c@ 2 and 0= dup IF i2c-stop THEN ;
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: i2c-short? ( -- failed? ) 30 i2c@ 4 and 0<> dup IF 0 10 i2c! i2c-stop THEN ;
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: i2c-aak-if-more ( n -- ) 1 <> 1 and 10 i2c! ;
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: i2c-sub-read ( buf len addr suba -- error? )
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c 0 i2c! >r 1 or r> i2c-addr-subaddr i2c-nak? IF 2drop true EXIT THEN
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dup i2c-aak-if-more 2 30 i2c!
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BEGIN
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30 i2c@ 1 and IF
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1- >r 70 i2c@ over c! char+ r>
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dup 0= IF i2c-stop 2drop false EXIT THEN
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dup i2c-aak-if-more 1 30 i2c! THEN
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i2c-short? IF 2drop true EXIT THEN
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AGAIN ;
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\ What slots are filled with working memory (bitmask).
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f VALUE dimms-valid
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: dimm-invalid 1 swap lshift invert dimms-valid and to dimms-valid ;
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: dimm-invalid dup dimm-invalid 2 xor dimm-invalid ; \ DIMMs are paired
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: dimm-valid? 1 swap lshift dimms-valid and ;
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: dimm( +comp postpone 4 postpone 0 postpone DO
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postpone i postpone dimm-valid? postpone IF ; immediate
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: )dimm postpone THEN postpone LOOP -comp ; immediate
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\ The data from the SPDs.
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CREATE spds 100 allot
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: spd@ ( dimm# off -- value ) swap 40 * + spds + c@ ;
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CREATE addresses a0 c, a4 c, a2 c, a6 c,
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dimm( spds i 40 * + 40 addresses i + c@ 0 i2c-sub-read IF i dimm-invalid THEN )dimm
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\ Accessors.
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: spd>rows 3 spd@ ;
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: spd>cols 4 spd@ ;
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: spd>ranks 5 spd@ 7 and 1+ ;
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: spd>width d spd@ ;
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: spd>banks 11 spd@ ;
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: spd>cas 12 spd@ ; \ bit mask of allowable CAS latencies
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: spd>trp 1b spd@ ; \ in units of 0.25 ns
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: spd>trrd 1c spd@ ; \ in units of 0.25 ns
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: spd>trcd 1d spd@ ; \ in units of 0.25 ns
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: spd>tras 1e spd@ ; \ in units of 1 ns
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: spd>twr 24 spd@ ; \ in units of 0.25 ns
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: spd>twtr 25 spd@ ; \ in units of 0.25 ns
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: spd>trtp 26 spd@ ; \ in units of 0.25 ns
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: spd>trc 29 spd@ ; \ in units of 1 ns XXX: should also look at byte 28
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: spd>trfc 2a spd@ ; \ in units of 1 ns XXX: should also look at byte 28
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cr .( rows cols ranks width banks trp trrd trcd tras twr twtr trtp trc trfc)
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cr .( =====================================================================)
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decimal
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dimm( cr
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i spd>rows 4 .r i spd>cols 5 .r i spd>ranks 6 .r i spd>width 6 .r
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i spd>banks 6 .r i spd>trp 4 .r i spd>trrd 5 .r i spd>trcd 5 .r
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i spd>tras 5 .r i spd>twr 4 .r i spd>twtr 5 .r i spd>trtp 5 .r
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i spd>trc 4 .r i spd>trfc 5 .r
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)dimm
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hex
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ff dimm( i spd>cas and )dimm CONSTANT cl-supported
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: max-cl -1 swap 8 0 DO dup 1 and IF nip i swap THEN u2/ LOOP drop ;
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cl-supported max-cl VALUE cl
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: tck>60*ns dup f and swap 4 rshift a * over + 6 * swap CASE
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a OF 2d - ENDOF b OF 2e - ENDOF c OF 20 - ENDOF d OF 21 - ENDOF
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ENDCASE ;
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: cl>tck 0 spd>cas max-cl swap -
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CASE 0 OF 9 ENDOF 1 OF 17 ENDOF 2 OF 19 ENDOF
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true ABORT" No supported CAS latency for this DIMM" ENDCASE
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0 swap spd@ tck>60*ns ;
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: spd>min-tck dup spd>cas max-cl cl -
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CASE 0 OF 9 ENDOF 1 OF 17 ENDOF 2 OF 19 ENDOF
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true ABORT" No supported CAS latency for this DIMM" ENDCASE
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spd@ tck>60*ns ;
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: spd>max-tck 2b spd@ tck>60*ns ;
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: .tck base @ >r decimal dup d# 60 / 0 .r [char] . emit
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d# 60 mod d# 1000 * d# 60 / 3 0.r ." ns" r> base ! ;
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cr .( CAS latencies supported: )
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8 0 DO cl-supported 1 i lshift and IF i . THEN LOOP
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\ Find the lowest CL at the highest tCK.
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8 0 DO cl-supported 1 i lshift and IF cl cl>tck i cl>tck = IF
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i to cl LEAVE THEN THEN LOOP
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.( -- using ) cl .
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0 dimm( i spd>min-tck max )dimm CONSTANT tck
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dimm( i spd>max-tck tck < IF i dimm-invalid THEN )dimm
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cr .( tCK is ) tck .tck
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0 CONSTANT al
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cl al + CONSTANT rl
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rl 1- CONSTANT wl
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: // dup >r 1- + r> / ; \ round up
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0 spd>tras d# 60 * tck // CONSTANT tras
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0 spd>trtp d# 15 * tck // CONSTANT trtp
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0 spd>twr d# 15 * tck // CONSTANT twr
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0 spd>trp d# 15 * tck // CONSTANT trp
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0 spd>trrd d# 15 * tck // CONSTANT trrd
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0 spd>trrd d# 60 * tck // CONSTANT 4*trrd
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0 spd>trcd d# 15 * tck // CONSTANT trcd
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0 spd>trc d# 60 * tck // CONSTANT trc
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0 spd>twtr d# 15 * tck // CONSTANT twtr
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: spd>memmd
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>r r@ spd>rows r@ spd>cols +
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r@ spd>banks 2log + 4 * r> spd>width 2log 3 * + 6c - ;
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: dimm-group-size ( dimm# -- size )
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>r r@ spd>rows r@ spd>cols + 1 swap lshift
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r@ spd>banks * r> spd>ranks * 10 * ;
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VARIABLE start-address
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VARIABLE was-prev-big
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: assign-dimm-group ( dimm# -- config-value )
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dup dimm-valid? 0= IF drop 0 EXIT THEN
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\ MemMd, enable, single-sided or not
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dup spd>memmd c lshift 1 or over spd>ranks 1 = IF 2 or THEN
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cr ." ---> " dup .
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>r
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dimm-group-size start-address @ 2dup + rot ( start end size )
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80000000 > IF
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dup 1000000000 < IF dup 4 rshift ELSE 08000000 THEN r> or >r \ Add2G
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over 0<> IF over c rshift ELSE 00080000 THEN r> or >r \ Sub2G
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was-prev-big on
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ELSE
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was-prev-big @ IF 80000000 + swap 80000000 + swap THEN r> 08080000 or >r
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was-prev-big off
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THEN
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swap 18 rshift r> or >r \ start address
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dup 80000000 = IF drop 100000000 THEN start-address ! r> ;
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\ Now set the frequency in the memory controller
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d# 1800 tck / 4 - 12 lshift 33c or f8000800 rl!
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f8000860 rl@ 80000000 or f8000860 rl! 10000 0 DO LOOP
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: mc! f8002000 + rl! ;
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: mc@ f8002000 + rl@ ;
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\ memory timing regs (state machine)
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tras 2-
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5 lshift al trtp + 2- or
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5 lshift wl twr + or
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5 lshift trp 2- or
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5 lshift trp 2- 0 spd>banks 8 = IF 1+ THEN or
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7 lshift 030 mc!
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al trtp + trp + 2-
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5 lshift cl al + twr + trp + 1- or
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5 lshift trrd 2- or
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5 lshift trc 2- or
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5 lshift trcd 2- or
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5 lshift 4*trrd or
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2 lshift 040 mc!
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0
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5 lshift 1 or
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5 lshift 1 or
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5 lshift cl 1- twtr + or
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5 lshift 1 or
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5 lshift 1 or
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2 lshift 050 mc!
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0
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5 lshift 1 or
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5 lshift 1 or
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5 lshift 2 or
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5 lshift 2 or
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5 lshift 2 or
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2 lshift 060 mc! \ XXX joerg has different setting
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cl 3 = IF 30801800 ( 30800d00 ) 070 mc! \ XXX memory refresh
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ELSE 41002000 070 mc! THEN
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\ memory size regs
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1 dimm-group-size 0 dimm-group-size > 1 0 rot IF swap THEN \ biggest first
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assign-dimm-group 200 mc!
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assign-dimm-group 210 mc!
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0 220 mc! 0 230 mc!
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\ arbiter tunables
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\ 40041040 270 mc!
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04041040 270 mc!
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50000000 280 mc!
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\ a0a00000 290 mc! \ a0000000 might be faster
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00000000 290 mc!
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\ 20020820 2a0 mc!
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04020822 2a0 mc!
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00000000 2b0 mc!
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\ 30413cc7 2c0 mc! \ have to calculate the low five bits
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30413dc5 2c0 mc!
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\ cl 3 = IF 76000050 2d0 mc! 70000000 2e0 mc! ELSE
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cl 3 = IF 75000050 2d0 mc! 70000000 2e0 mc! ELSE
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b8002080 2d0 mc! b0000000 2e0 mc! THEN
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\ Should test for something else really
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cl 3 = IF 00006000 890 mc! 00006000 8a0 mc! ELSE
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00006500 890 mc! 00006500 8a0 mc! THEN
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cl 3 = IF 1e008a8a ELSE 31000000 THEN
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dup 800 mc! dup 810 mc! dup 820 mc! dup 830 mc!
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dup 900 mc! dup 910 mc! dup 920 mc! dup 930 mc! dup 980 mc!
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dup a00 mc! dup a10 mc! dup a20 mc! dup a30 mc!
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dup b00 mc! dup b10 mc! dup b20 mc! dup b30 mc! b80 mc!
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\ 0 8d0 mc! 0 9d0 mc! 0 ad0 mc! 0 bd0 mc!
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61630000 8d0 mc!
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61630000 9d0 mc!
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52510000 ad0 mc!
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434e0000 bd0 mc!
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a0200400 100 mc!
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80020000 110 mc!
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80030000 120 mc!
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80010404 130 mc!
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cl 3 = IF
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8000153a 140 mc! ELSE
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8000174a 140 mc! THEN
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a0200400 150 mc!
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\ 92000000 160 mc!
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\ 92000000 170 mc!
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\ 91300000 160 mc!
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\ 91300000 170 mc!
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91800000 160 mc!
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91800000 170 mc!
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cl 3 = IF
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8ff0143a 180 mc! ELSE
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8ff0164a 180 mc! THEN
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80010784 190 mc!
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80010404 1a0 mc!
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0 1b0 mc! 0 1c0 mc! 0 1d0 mc! 0 1e0 mc! 0 1f0 mc!
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cl 3 = IF
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143a 0c0 mc! ELSE
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164a 0c0 mc! THEN
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0404 0d0 mc!
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\ after this point, setup is common for all speeds and sizes of dimms (sort of)
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60000000 3a0 mc!
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0 840 mc! 0 850 mc! 0 860 mc! 0 870 mc!
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0 940 mc! 0 950 mc! 0 960 mc! 0 970 mc! 0 990 mc!
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0 a40 mc! 0 a50 mc! 0 a60 mc! 0 a70 mc!
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0 b40 mc! 0 b50 mc! 0 b60 mc! 0 b70 mc! 0 b90 mc!
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0 880 mc!
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001a4000 9a0 mc!
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84800000 500 mc!
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10000 0 DO LOOP
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80000000 b0 mc! BEGIN b0 mc@ 40000000 and UNTIL
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0 300 mc! 0 310 mc!
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80000000 440 mc!
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0 410 mc! 27fffffc 420 mc!
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fedcba98 430 mc!
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c0000000 400 mc! BEGIN 400 mc@ c0000000 and 0= UNTIL
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cr .( mem done)
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