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#!/usr/bin/env ruby
#
# Extracts via layer stack information from the technology LEF file
#
# Usage: LEFViaData.rb -i tech_lef_file [-s sha_file] [-l layer_lef_file ]
# [-v via_lef_file ]
#
# This file needs to be located in ~/.klayout/ruby
#
require 'optparse'
require_relative 'LEFVia'
require_relative 'LEFLayer'
#
# Class to extract via layer stack information from technology LEF
#
class LEFViaData
#
# Initialization method
#
# via_map: stores the mapping from a key to the list of layers in the stack
# layer_ct: current layer count - used to set layer numbers establishing
# layer stack order
# start_via_re: regexp to find the start of the LEF VIA statement
# via_layer_re: regexp to extract the layer name in the via layer stack
# start_layer_re: regexp to find the start of the LEF LAYER statement
# rect_re: regexp to extract rect coords
# layer_type_re: regexp to extract LAYER TYPE
# end_re: regexp to find the end of a section
#
def initialize()
@layer_map = {}
@layer_ct = 0
@via_map = {}
@start_via_re = /^\s*VIA\s+(\S+)(?i)(\s+DEFAULT)?/
@via_layer_re = /^\s*LAYER\s+(\S+)\s*\;/
@start_layer_re = /^\s*LAYER\s+(\S+)\s*$/
@rect_re = /^\s*RECT\s+(\S+)\s+(\S+)\s+(\S+)\s+(\S+)/
@layer_type_re = /^\s*TYPE\s+(\S+)/
@end_re = /^\s*END\s+\S+/
end
#
# Reads the tech LEF and creates the VIA map
#
def read_file(file_name)
fh = File.open(file_name, chomp: true)
if fh
read(fh)
fh.close
else
puts "Error: can't open " + file_name
end
end
#
# Reads the content from a stream and looks for the LEF LAYER and VIA
# statements. The layers are added to the layer_map and the vias are added
# to the via_map
#
def read(fh)
while (line = fh.gets)
result = line.match(@start_via_re)
if result
via_name = result[1]
is_default = result[2]
via = LEFVia.new(via_name, is_default)
read_via(fh, via)
@via_map[via.get_name()] = via
else
result = line.match(@start_layer_re)
if result
layer_name = result[1]
layer = LEFLayer.new(layer_name, @layer_ct)
read_layer(fh, layer)
@layer_map[layer_name] = layer
@layer_ct += 1
end
end
end
end
#
# Reads the LEF LAYER definition and adds it to the layer object
#
def read_layer(fh, layer)
while (line = fh.gets)
if line.match(@end_re)
return
end
result = line.match(@layer_type_re)
if result
layer.set_type(result[1])
end
end
end
#
# Reads the LEF VIA definition and adds it to the via object
#
def read_via(fh, via)
current_layer = nil
while (line = fh.gets)
if line.match(@end_re)
via.add_layer(current_layer)
return
end
result = line.match(@via_layer_re)
if result
if current_layer
via.add_layer(current_layer)
end
current_layer = LEFVia::LEFViaLayer.new(@layer_map[result[1]])
else
result = line.match(@rect_re)
if result
rect = [result[1].to_f, result[2].to_f, result[3].to_f, result[4].to_f]
current_layer.add_shape(rect)
end
end
end
end
#
# Accessor to get the via map
#
def get_map()
return @via_map
end
#
# Utility method to write out LEF VIA snippet to output stream
#
def write_via_lef(outfh)
@via_map.each do | via_name, via |
via.write_lef(outfh)
end
end
#
# Utility method to write out LEF VIA snippet to file
#
def write_via_lef_file(file_name)
outfh = File.open(file_name, "w")
write_via_lef(outfh)
outfh.close
end
#
# Utility method to write out SHA list to output stream
#
def write_sha(outfh)
@via_map.each do | via_name, via |
sha256 = via.sha256()
outfh.puts sprintf("%s %s", sha256, via_name)
end
end
#
# Utility method to write out SHA list to output file
#
def write_sha_file(file_name)
outfh = File.open(file_name, "w")
write_sha(outfh)
outfh.close
end
#
# Utility method to write out LEF LAYER snippet to output stream
#
def write_layer_lef(outfh)
sorted_layer_map = @layer_map.sort_by { |layer_name, layer| layer.get_number }.to_h
sorted_layer_map.each do | layer_name, layer |
layer.write_lef(outfh)
end
end
#
# Utility method to write out LEF LAYER snippet to output file
#
def write_layer_lef_file(file_name)
outfh = File.open(file_name, "w")
write_layer_lef(outfh)
outfh.close
end
#
# Standalone main driver
#
def LEFViaData.main()
options = {}
OptionParser.new do |opts|
opts.banner = "Usage: LEFViaData.rb -i tech_lef_file [-s <sha_file>] [-l <layer_lef_file>] [-v <via_lef_file]"
opts.on("-iTECH_LEF_FILE", "--input_file=TECH_LEF_FILE") do |input_file|
options[:input_file] = input_file
end
opts.on("-sSHA_FILE", "--sha_file=SHA_FILE") do |sha_file|
options[:sha_file] = sha_file
end
opts.on("-lLAYER_LEF_FILE", "--layer_lef_file=LAYER_LEF_FILE") do |layer_lef_file|
options[:layer_lef_file] = layer_lef_file
end
opts.on("-vVIA_LEF_FILE", "--via_lef_file=VIA_LEF_FILE") do |via_lef_file|
options[:via_lef_file] = via_lef_file
end
end.parse!
if options[:input_file]
rep = LEFViaData.new
rep.read_file(options[:input_file])
if options[:sha_file]
rep.write_sha_file(options[:sha_file])
end
if options[:layer_lef_file]
rep.write_layer_lef_file(options[:layer_lef_file])
end
if options[:via_lef_file]
rep.write_via_lef_file(options[:via_lef_file])
end
end
end
end
#
# Only call the main driver if we're calling this as a script
#
if __FILE__ == $0
LEFViaData.main()
end