745 lines
23 KiB
Tcl
745 lines
23 KiB
Tcl
# Wishrc startup for ToolScript (netgen)
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#
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# For installation: Put this file and also tclnetgen.so into
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# directory ${CAD_ROOT}/netgen/tcl/, and set the "load" line below
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# to point to the location of tclnetgen.so. Also see comments
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# in shell script "netgen.sh".
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#
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# Check namespaces for existence of other applications
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set UsingMagic 0
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set UsingXCircuit 0
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set UsingIRSIM 0
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set batchmode 0
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set nlist [namespace children]
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foreach i $nlist {
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switch $i {
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::magic { set UsingMagic 1 }
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::xcircuit { set UsingXCircuit 1 }
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::irsim { set UsingIRSIM 1 }
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}
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}
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# -lazy option not needed if stubs libraries are handled correctly
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# load -lazy TCL_DIR/tclnetgenSHDLIB_EXT
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load TCL_DIR/tclnetgenSHDLIB_EXT
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#----------------------------------------------------------------
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# Convert LVS list result into a JSON file
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#----------------------------------------------------------------
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proc netgen::convert_to_json {filename lvs_final} {
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set pidx [string last . $filename]
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set jsonname [string replace $filename $pidx end ".json"]
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if {![catch {open $jsonname w} fjson]} {
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puts $fjson "\["
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# Outer list is of each cell compared
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set clen [llength $lvs_final]
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set cidx 0
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foreach circuit $lvs_final {
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incr cidx
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puts $fjson " \{"
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set nkeys [llength $circuit]
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set kidx 0
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foreach {key value} $circuit {
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incr kidx 2
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switch $key {
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name {
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puts $fjson " \"${key}\": \["
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set cktval [lindex $value 0]
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puts $fjson " \"${cktval}\","
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set cktval [lindex $value 1]
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puts $fjson " \"${cktval}\""
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if {$kidx == $nkeys} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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pins {
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puts $fjson " \"${key}\": \["
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puts $fjson " \["
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set cktval [lindex $value 0]
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foreach pin [lrange $cktval 0 end-1] {
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puts $fjson " \"$pin\","
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}
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set pin [lindex $cktval end]
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puts $fjson " \"$pin\""
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puts $fjson " \], \["
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set cktval [lindex $value 1]
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foreach pin [lrange $cktval 0 end-1] {
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puts $fjson " \"$pin\","
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}
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set pin [lindex $cktval end]
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puts $fjson " \"$pin\""
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puts $fjson " \]"
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if {$kidx == $nkeys} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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nets {
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puts $fjson " \"${key}\": \["
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set cktval [lindex $value 0]
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puts $fjson " $cktval,"
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set cktval [lindex $value 1]
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puts $fjson " $cktval"
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if {$kidx == $nkeys} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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devices {
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puts $fjson " \"${key}\": \["
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puts $fjson " \["
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set cktval [lindex $value 0]
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foreach dev [lrange $cktval 0 end-1] {
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set devname [lindex $dev 0]
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set devnum [lindex $dev 1]
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puts $fjson " \[\"${devname}\", ${devnum}\],"
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}
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set dev [lindex $cktval end]
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set devname [lindex $dev 0]
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set devnum [lindex $dev 1]
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puts $fjson " \[\"${devname}\", ${devnum} \]"
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puts $fjson " \], \["
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set cktval [lindex $value 1]
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foreach dev [lrange $cktval 0 end-1] {
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set devname [lindex $dev 0]
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set devnum [lindex $dev 1]
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puts $fjson " \[\"${devname}\", ${devnum} \],"
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}
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set dev [lindex $cktval end]
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set devname [lindex $dev 0]
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set devnum [lindex $dev 1]
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puts $fjson " \[\"${devname}\", ${devnum} \]"
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puts $fjson " \]"
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if {$kidx == $nkeys} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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goodnets -
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badnets {
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puts $fjson " \"${key}\": \["
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set glen [llength $value]
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set gidx 0
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foreach group $value {
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incr gidx
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puts $fjson " \["
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puts $fjson " \["
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set cktval [lindex $group 0]
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set nlen [llength $cktval]
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set nidx 0
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foreach net $cktval {
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incr nidx
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puts $fjson " \["
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set netname [string map {"\\" "\\\\"} [lindex $net 0]]
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puts $fjson " \"$netname\","
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puts $fjson " \["
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set netconn [lindex $net 1]
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foreach fanout [lrange $netconn 0 end-1] {
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set devname [lindex $fanout 0]
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set pinname [lindex $fanout 1]
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set count [lindex $fanout 2]
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if {$count == {}} {set count 0}
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puts $fjson " \[ \"$devname\", \"$pinname\", $count \],"
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}
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set fanout [lindex $netconn end]
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set devname [lindex $fanout 0]
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set pinname [lindex $fanout 1]
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set count [lindex $fanout 2]
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if {$count == {}} {set count 0}
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puts $fjson " \[ \"$devname\", \"$pinname\", $count \]"
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puts $fjson " \]"
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if {$nidx == $nlen} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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puts $fjson " \], \["
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set cktval [lindex $group 1]
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set nlen [llength $cktval]
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set nidx 0
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foreach net $cktval {
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incr nidx
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puts $fjson " \["
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set netname [string map {"\\" "\\\\"} [lindex $net 0]]
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puts $fjson " \"$netname\","
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puts $fjson " \["
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set netconn [lindex $net 1]
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foreach fanout [lrange $netconn 0 end-1] {
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set devname [lindex $fanout 0]
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set pinname [lindex $fanout 1]
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set count [lindex $fanout 2]
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if {$count == {}} {set count 0}
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puts $fjson " \[ \"$devname\", \"$pinname\", $count \],"
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}
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set fanout [lindex $netconn end]
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set devname [lindex $fanout 0]
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set pinname [lindex $fanout 1]
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set count [lindex $fanout 2]
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if {$count == {}} {set count 0}
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puts $fjson " \[ \"$devname\", \"$pinname\", $count \]"
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puts $fjson " \]"
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if {$nidx == $nlen} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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puts $fjson " \]"
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if {$gidx == $glen} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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if {$kidx == $nkeys} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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goodelements -
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badelements {
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puts $fjson " \"${key}\": \["
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set glen [llength $value]
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set gidx 0
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foreach group $value {
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incr gidx
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puts $fjson " \["
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puts $fjson " \["
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set cktval [lindex $group 0]
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set ilen [llength $cktval]
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set iidx 0
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foreach inst $cktval {
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incr iidx
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puts $fjson " \["
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set instname [string map {"\\" "\\\\"} [lindex $inst 0]]
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puts $fjson " \"$instname\","
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puts $fjson " \["
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set instpins [lindex $inst 1]
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foreach fanout [lrange $instpins 0 end-1] {
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set pinname [lindex $fanout 0]
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set count [lindex $fanout 1]
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if {$count == {}} {set count 0}
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puts $fjson " \[ \"$pinname\", $count \],"
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}
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set fanout [lindex $instpins end]
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set pinname [lindex $fanout 0]
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set count [lindex $fanout 1]
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if {$count == {}} {set count 0}
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puts $fjson " \[ \"$pinname\", $count \]"
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puts $fjson " \]"
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if {$iidx == $ilen} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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puts $fjson " \], \["
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set cktval [lindex $group 1]
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set ilen [llength $cktval]
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set iidx 0
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foreach inst $cktval {
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incr iidx
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puts $fjson " \["
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set instname [string map {"\\" "\\\\"} [lindex $inst 0]]
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puts $fjson " \"$instname\","
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puts $fjson " \["
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set instpins [lindex $inst 1]
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foreach fanout [lrange $instpins 0 end-1] {
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set pinname [lindex $fanout 0]
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set count [lindex $fanout 1]
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if {$count == {}} {set count 0}
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puts $fjson " \[ \"$pinname\", $count \],"
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}
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set fanout [lindex $instpins end]
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set pinname [lindex $fanout 0]
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set count [lindex $fanout 1]
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if {$count == {}} {set count 0}
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puts $fjson " \[ \"$pinname\", $count \]"
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puts $fjson " \]"
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if {$iidx == $ilen} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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puts $fjson " \]"
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if {$gidx == $glen} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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if {$kidx == $nkeys} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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properties {
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puts $fjson " \"${key}\": \["
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set plen [llength $value]
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set pidx 0
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foreach instance $value {
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incr pidx
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puts $fjson " \["
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set instnames [string map {"\\" "\\\\"} [lindex $instance 0]]
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set instname0 [string map {"\\" "\\\\"} [lindex $instnames 0]]
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puts $fjson " \["
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puts $fjson " \"${instname0}\","
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puts $fjson " \["
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foreach property [lrange $instance 1 end-1] {
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set prop0 [lindex $property 0]
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set propname [lindex $prop0 0]
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set propval [lindex $prop0 1]
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puts $fjson " \[\"${propname}\", \"${propval}\"\],"
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}
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set property [lindex $instance end]
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set prop0 [lindex $property 0]
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set propname [lindex $prop0 0]
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set propval [lindex $prop0 1]
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puts $fjson " \[\"${propname}\", \"${propval}\"\]"
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puts $fjson " \]"
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puts $fjson " \],"
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set instname1 [string map {"\\" "\\\\"} [lindex $instnames 1]]
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puts $fjson " \["
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puts $fjson " \"${instname1}\","
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puts $fjson " \["
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foreach property [lrange $instance 1 end-1] {
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set prop1 [lindex $property 1]
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set propname [lindex $prop1 0]
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set propval [lindex $prop1 1]
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puts $fjson " \[\"${propname}\", \"${propval}\"\],"
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}
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set property [lindex $instance end]
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set prop1 [lindex $property 1]
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set propname [lindex $prop1 0]
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set propval [lindex $prop1 1]
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puts $fjson " \[\"${propname}\", \"${propval}\"\]"
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puts $fjson " \]"
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puts $fjson " \]"
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if {$pidx == $plen} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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if {$kidx == $nkeys} {
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puts $fjson " \]"
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} else {
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puts $fjson " \],"
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}
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}
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}
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}
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if {$cidx == $clen} {
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puts $fjson " \}"
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} else {
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puts $fjson " \},"
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}
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}
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puts $fjson "\]"
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}
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close $fjson
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}
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#----------------------------------------------------------------
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# Define the "lvs" command as a way of calling the netgen options
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# for standard compare, essentially the same as the old "netcomp"
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# standalone program.
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#
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# Use the "canonical" command to parse the file and cell names,
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# although if the cells have not been read in yet, then the
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# original syntax of filename or {filename cellname} is required.
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#
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# "args" is passed to verify and may therefore contain only the
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# value "-list" or nothing. If "-list", then output is returned
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# as a nested list.
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#----------------------------------------------------------------
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proc netgen::lvs { name1 name2 {setupfile setup.tcl} {logfile comp.out} args} {
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set dolist 0
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set dojson 0
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foreach arg $args {
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if {$arg == "-list"} {
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puts stdout "Generating list result"
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set dolist 1
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set lvs_final {}
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} elseif {$arg == "-json"} {
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puts stdout "Generating JSON file result"
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set dolist 1
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set dojson 1
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set lvs_final {}
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} elseif {$arg == "-blackbox"} {
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puts stdout "Treating empty subcircuits as black-box cells"
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netgen::model blackbox on
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}
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}
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# Allow name1 or name2 to be a list of {filename cellname},
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# A single <filename>, or any valid_cellname form if the
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# file has already been read.
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if {[catch {set flist1 [canonical $name1]}]} {
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if {[llength $name1] == 2} {
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set file1 [lindex $name1 0]
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set cell1 [lindex $name1 1]
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} else {
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set file1 $name1
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set cell1 $name1
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}
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puts stdout "Reading netlist file $file1"
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set fnum1 [netgen::readnet $file1]
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} else {
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set cell1 [lindex $flist1 0]
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set fnum1 [lindex $flist1 1]
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set flist1 [canonical $fnum1]
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set file1 [lindex $flist1 0]
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}
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if {[catch {set flist2 [canonical $name2]}]} {
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if {[llength $name2] == 2} {
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set file2 [lindex $name2 0]
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set cell2 [lindex $name2 1]
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} else {
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set file2 $name2
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set cell2 $name2
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}
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puts stdout "Reading netlist file $file2"
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set fnum2 [netgen::readnet $file2]
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} else {
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set cell2 [lindex $flist2 0]
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set fnum2 [lindex $flist2 1]
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set flist2 [canonical $fnum2]
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set file2 [lindex $flist2 0]
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}
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if {$fnum1 == $fnum2} {
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puts stderr "Both cells are in the same netlist: Cannot compare!"
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return
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}
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set clist1 [cells list $fnum1]
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set cidx [lsearch -regexp $clist1 ^$cell1$]
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if {$cidx < 0} {
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puts stderr "Cannot find cell $cell1 in file $file1"
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return
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} else {
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set cell1 [lindex $clist1 $cidx]
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}
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set clist2 [cells list $fnum2]
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set cidx [lsearch -regexp $clist2 ^$cell2$]
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if {$cidx < 0} {
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puts stderr "Cannot find cell $cell2 in file $file2"
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return
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} else {
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set cell2 [lindex $clist2 $cidx]
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}
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netgen::compare assign "$fnum1 $cell1" "$fnum2 $cell2"
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if {[file exists $setupfile]} {
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puts stdout "Reading setup file $setupfile"
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# Instead of sourcing the setup file, run each line so we can
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# catch individual errors and not let them halt the LVS process
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set perrors 0
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if {![catch {open $setupfile r} fsetup]} {
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set sline 0
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set command {}
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while {[gets $fsetup line] >= 0} {
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incr sline
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append command $line "\n"
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if {[info complete $command]} {
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if {[catch {uplevel 1 [list namespace eval netgen $command]} msg]} {
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set msg [string trimright $msg "\n"]
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puts stderr "Error $setupfile:$sline (ignoring), $msg"
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incr perrors
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}
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set command {}
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}
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}
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close $fsetup
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} else {
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puts stdout "Error: Cannot read the setup file $setupfile"
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}
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if {$perrors > 0} {
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puts stdout "Warning: There were errors reading the setup file"
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}
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} elseif {[string first nosetup $setupfile] < 0} {
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netgen::permute default ;# transistors and resistors
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netgen::property default
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}
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if {[string first nolog $logfile] < 0} {
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puts stdout "Comparison output logged to file $logfile"
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netgen::log file $logfile
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netgen::log start
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netgen::log echo off
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set dolog true
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} else {
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set dolog false
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}
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if {$dolist == 1} {
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set endval [netgen::compare -list hierarchical "$fnum1 $cell1" "$fnum2 $cell2"]
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} else {
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set endval [netgen::compare hierarchical "$fnum1 $cell1" "$fnum2 $cell2"]
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}
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if {$endval == {}} {
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netgen::log put "No cells in queue!\n"
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return
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}
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set properr {}
|
|
while {$endval != {}} {
|
|
if {$dolist == 1} {
|
|
netgen::run -list converge
|
|
} else {
|
|
netgen::run converge
|
|
}
|
|
netgen::log echo on
|
|
if {[verify equivalent]} {
|
|
# Resolve automorphisms by pin and property
|
|
if {$dolist == 1} {
|
|
netgen::run -list resolve
|
|
} else {
|
|
netgen::run resolve
|
|
}
|
|
set uresult [verify unique]
|
|
if {$uresult == 0} {
|
|
netgen::log put " Networks match locally but not globally.\n"
|
|
netgen::log put " Probably connections are swapped.\n"
|
|
netgen::log put " Check the end of logfile ${logfile} for implicated nodes.\n"
|
|
if {$dolist == 1} {
|
|
verify -list nodes
|
|
} else {
|
|
verify nodes
|
|
}
|
|
|
|
# Flatten the non-matching subcircuit (but not the top-level cells)
|
|
if {[netgen::print queue] != {}} {
|
|
netgen::log put " Flattening non-matched subcircuits $endval"
|
|
netgen::flatten class "[lindex $endval 0] $fnum1"
|
|
netgen::flatten class "[lindex $endval 1] $fnum2"
|
|
}
|
|
} else {
|
|
# Match pins
|
|
netgen::log echo off
|
|
if {$dolist == 1} {
|
|
set result [equate -list pins "$fnum1 [lindex $endval 0]" \
|
|
"$fnum2 [lindex $endval 1]"]
|
|
} else {
|
|
set result [equate pins "$fnum1 [lindex $endval 0]" \
|
|
"$fnum2 [lindex $endval 1]"]
|
|
}
|
|
if {$result != 0} {
|
|
equate classes "$fnum1 [lindex $endval 0]" \
|
|
"$fnum2 [lindex $endval 1]"
|
|
}
|
|
netgen::log echo on
|
|
}
|
|
if {$uresult == 2} {lappend properr [lindex $endval 0]}
|
|
} else {
|
|
# Flatten the non-matching subcircuit (but not the top-level cells)
|
|
if {[netgen::print queue] != {}} {
|
|
netgen::log put " Flattening non-matched subcircuits $endval"
|
|
netgen::flatten class "[lindex $endval 0] $fnum1"
|
|
netgen::flatten class "[lindex $endval 1] $fnum2"
|
|
}
|
|
}
|
|
netgen::log echo off
|
|
if {$dolist == 1} {
|
|
catch {lappend lvs_final $lvs_out}
|
|
set lvs_out {}
|
|
set endval [netgen::compare -list hierarchical]
|
|
} else {
|
|
set endval [netgen::compare hierarchical]
|
|
}
|
|
}
|
|
netgen::log echo off
|
|
puts stdout "Result: " nonewline
|
|
netgen::log echo on
|
|
verify only
|
|
if {$properr != {}} {
|
|
netgen::log put "The following cells had property errors: $properr\n"
|
|
}
|
|
if {$dolog} {
|
|
netgen::log end
|
|
}
|
|
puts stdout "LVS Done."
|
|
if {$dojson == 1} {
|
|
netgen::convert_to_json $logfile $lvs_final
|
|
} elseif {$dolist == 1} {
|
|
return $lvs_final
|
|
}
|
|
}
|
|
|
|
# It is important to make sure no netgen commands overlap with Tcl built-in
|
|
# commands, because otherwise the namespace import will fail.
|
|
|
|
proc pushnamespace { name } {
|
|
|
|
set y [namespace eval ${name} info commands ::${name}::*]
|
|
set z [info commands]
|
|
|
|
foreach v $y {
|
|
regsub -all {\*} $v {\\*} i
|
|
set x [namespace tail $i]
|
|
if {[lsearch $z $x] < 0} {
|
|
namespace import $i
|
|
} else {
|
|
puts "Warning: ${name} command '$x' use fully-qualified name '$v'"
|
|
}
|
|
}
|
|
}
|
|
|
|
proc popnamespace { name } {
|
|
set z [info commands]
|
|
set l [expr [string length ${name}] + 5]
|
|
|
|
while {[set v [lsearch $z ${name}_tcl_*]] >= 0} {
|
|
set y [lindex $z $v]
|
|
set w [string range $y $l end]
|
|
interp alias {} ::$w {}
|
|
rename ::$y ::$w
|
|
puts "Info: replacing ::$w with ::$y"
|
|
}
|
|
namespace forget ::${name}::*
|
|
}
|
|
|
|
set auto_noexec 1 ;# don't EVER call UNIX commands w/o "shell" in front
|
|
|
|
#----------------------------------------------------------------------
|
|
# Cross-Application section
|
|
#----------------------------------------------------------------------
|
|
|
|
# Setup IRSIM assuming that the Tcl version is installed.
|
|
# We do not need to rename procedure irsim to NULL because it is
|
|
# redefined in a script, which simply overwrites the original.
|
|
|
|
proc irsim { args } {
|
|
global CAD_ROOT
|
|
set irsimscript [glob -nocomplain ${CAD_ROOT}/irsim/tcl/irsim.tcl]
|
|
if { ${irsimscript} == {} } {
|
|
puts stderr "\"irsim\" requires Tcl-based IRSIM version 9.6 or newer."
|
|
puts stderr "Could not find script \"irsim.tcl\". If IRSIM is installed in a"
|
|
puts stderr "place other than CAD_ROOT (=${CAD_ROOT}), use the command"
|
|
puts stderr "\"source <path>/irsim.tcl\" before doing \"irsim\"."
|
|
} else {
|
|
source $irsimscript
|
|
eval {irsim} $args
|
|
}
|
|
}
|
|
|
|
# Setup Xcircuit assuming that the Tcl version is installed.
|
|
|
|
proc xcircuit { args } {
|
|
global CAD_ROOT
|
|
global argc
|
|
global argv
|
|
set xcircscript [glob -nocomplain ${CAD_ROOT}/xcircuit*/xcircuit.tcl]
|
|
if { ${xcircscript} == {} } {
|
|
puts stderr "\"xcircuit\" requires Tcl-based XCircuit version 3.1 or newer."
|
|
puts stderr "Could not find script \"xcircuit.tcl\". If XCircuit is installed in a"
|
|
puts stderr "place other than CAD_ROOT (=${CAD_ROOT}), use the command"
|
|
puts stderr "\"source <path>/xcircuit.tcl\"."
|
|
} else {
|
|
# if there are multiple installed versions, choose the highest version.
|
|
if {[llength $xcircscript] > 1} {
|
|
set xcircscript [lindex [lsort -decreasing -dictionary $xcircscript] 0]
|
|
}
|
|
set argv $args
|
|
set argc [llength $args]
|
|
uplevel #0 source $xcircscript
|
|
}
|
|
}
|
|
|
|
# Setup Magic assuming that the Tcl version is installed.
|
|
|
|
proc magic { args } {
|
|
global CAD_ROOT
|
|
global argc
|
|
global argv
|
|
set magicscript [glob -nocomplain ${CAD_ROOT}/magic/tcl/magic.tcl]
|
|
if { ${magicscript} == {} } {
|
|
puts stderr "\"magic\" requires Tcl-based Magic version 7.2 or newer."
|
|
puts stderr "Could not find script \"magic.tcl\". If Magic is installed in a"
|
|
puts stderr "place other than CAD_ROOT (=${CAD_ROOT}), use the command"
|
|
puts stderr "\"source <path>/magic.tcl\"."
|
|
} else {
|
|
set argv $args
|
|
set argc [llength $args]
|
|
uplevel #0 source $magicscript
|
|
}
|
|
}
|
|
|
|
#----------------------------------------------------------------------------
|
|
# Have we called netgen from tkcon or a clone thereof? If so, set NetgenConsole
|
|
#----------------------------------------------------------------------------
|
|
|
|
if {! $UsingMagic } {
|
|
if {[lsearch [interp aliases] tkcon] != -1} {
|
|
set NetgenConsole tkcon
|
|
wm withdraw .
|
|
}
|
|
}
|
|
|
|
pushnamespace netgen
|
|
|
|
#----------------------------------------------------------------------------
|
|
# For now, if we are standalone, pop down the default Tk window.
|
|
# Sometime later we may wish to provide a standalone GUI frontend in Tk
|
|
# to improve upon the original X11 "xnetgen" frontend. If so, its
|
|
# definitions would go below.
|
|
|
|
if {! $UsingMagic } {
|
|
if {[lsearch [interp aliases] tkcon] != -1} {
|
|
if {[string range [wm title .] 0 3] == "wish"} {
|
|
wm withdraw .
|
|
}
|
|
}
|
|
}
|
|
|
|
#----------------------------------------------------------------------------
|
|
# No-console mode drops "--" in front of the argument list and "-noc"
|
|
# is retained, so remove them. Internally, the console will be determined
|
|
# by checking for a slave interpreter, so there is no need for any
|
|
# action here other than removing the argument.
|
|
|
|
if {[lindex $argv 0] == "--"} {
|
|
incr argc -1
|
|
set argv [lrange $argv 1 end]
|
|
}
|
|
|
|
if {[string range [lindex $argv 0] 0 3] == "-noc"} {
|
|
incr argc -1
|
|
set argv [lrange $argv 1 end]
|
|
}
|
|
|
|
if {[string range [lindex $argv 0] 0 3] == "-bat"} {
|
|
incr argc -1
|
|
set argv [lrange $argv 1 end]
|
|
set batchmode 1
|
|
}
|
|
|
|
#----------------------------------------------------------------------------
|
|
# Anything on the command line is assumed to be a netgen command to evaluate
|
|
|
|
if {[catch {eval $argv}]} {
|
|
puts stdout "$errorInfo"
|
|
}
|
|
if {$batchmode == 1} {quit}
|
|
|
|
#----------------------------------------------------------------------------
|
|
# Netgen start function drops back to interpreter after initialization & setup
|