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Test query to exercise the big resistor database we now have.
- boom/test.mbq: sample query (a bunch of 0402 resistors) - boom/test.sub: basic substitution rules - boom/Makefile: tie it all together
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31
boom/Makefile
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boom/Makefile
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BOOM=PATH=/home/moko/svn.openmoko.org/trunk/eda/boom:../boom:$$PATH boom
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KITS = 1
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INV = dist/dk/db/digi-key.inv
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EQU = dist/dk/db/digi-key.equ
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DSC = dist/dk/db/digi-key.dsc
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CHR = manu/panasonic/panasonic.chr manu/stackpole/stackpole.chr
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.PHONY: all show again
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all: show
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show: test.ord $(DSC)
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$(BOOM) prettyord -t $^
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again:
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$(MAKE) spotless
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$(MAKE) all
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test.ord: test.par $(INV) $(EQU)
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$(BOOM) part2order $(KITS) $^ >$@ || { rm -f $@; exit 1; }
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test.par: $(EQU) $(INV) $(CHR) test.lst test.sub
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$(BOOM) bom2part $^ >$@ || { rm -f $@; exit 1; }
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test.lst: test.mbq
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perl ./mbq2lst $^ >$@ || { rm -f $@; exit 1; }
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spotless:
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rm -f test.lst test.par test.ord
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34
boom/test.mbq
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boom/test.mbq
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1 R 0402 12R
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1 R 0402 15R
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1 R 0402 36R
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1 R 0402 47R
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1 R 0402 68R
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1 R 0402 82R
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1 R 0402 120R
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1 R 0402 150R
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1 R 0402 360R
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1 R 0402 470R
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1 R 0402 680R
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1 R 0402 820R
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1 R 0402 1k2
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1 R 0402 1k5
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1 R 0402 3k6
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1 R 0402 4k7
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1 R 0402 6k8
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1 R 0402 8k2
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1 R 0402 12k
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1 R 0402 15k
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1 R 0402 36k
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1 R 0402 47k
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1 R 0402 68k
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1 R 0402 82k
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1 R 0402 120k
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1 R 0402 150k
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1 R 0402 360k
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1 R 0402 470k
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1 R 0402 680k
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1 R 0402 820k
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61
boom/test.sub
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boom/test.sub
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#SUB
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# Taken from ben-wpan. Removed anything project-specific but the translation
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# rules.
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-> T=unknown
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R[0-9P]* { # also handle RP...
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-> T=R
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VAL=$R -> R=$VAL
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# -> TOL=5%
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FN=$% -> TOL=$FN
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}
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RP[0-9]* {
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-> T=RA
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# the other parameters have already been taken care of by R*
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}
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C[0-9]* {
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-> T=C
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VAL=*F -> C=$VAL
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FN=*V -> V=>=$FN
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}
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L[0-9]* {
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-> T=L
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VAL=*H -> L=$VAL
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FN=*A -> I=>=$FN
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}
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B[0-9]* {
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-> T=FILTER M=BEAD
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VAL=$R -> R=$VAL
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FN=*A -> I=$FN
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FN=*R -> Rdc=$FN
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}
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D[0-9]* {
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-> T=D
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VAL=*F { # heuristic to detect TVS
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-> M=TVS
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VAL=*F -> C=<=$VAL
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FN=(*V)ac -> Vac=$FN:1
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FN=(*V)dc -> Vdc=$FN:1
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#
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# Hack: some companies specify the class of varistors with Vdc = 9 V
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# as Vac = 6.5 V while others use Vac = 7 V. Sometimes, Vac is even
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# omitted entirely.
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#
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# Here, we work around the issue that Karmax use Vac = 6.5 V,
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# Cooper/Bussmann use Vac = 7V if at all, and out schematics specify
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# Vac = 6.5 V.
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#
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Vac=6.5V {
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-> Vac=
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-> Vdc=9V
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}
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}
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}
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