2016-11-08 18:57:35 +01:00
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#!/usr/bin/env python2.7
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"""
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SRAM Compiler
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The output files append the given suffixes to the output name:
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a spice (.sp) file for circuit simulation
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a GDS2 (.gds) file containing the layout
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a LEF (.lef) file for preliminary P&R (real one should be from layout)
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a Liberty (.lib) file for timing analysis/optimization
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"""
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__author__ = "Matthew Guthaus (mrg@ucsc.edu) and numerous others"
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__version__ = "$Revision: 0.9 $"
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__copyright__ = "Copyright (c) 2015 UCSC and OSU"
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__license__ = "This is not currently licensed for use outside of UCSC's VLSI-DA and OSU's VLSI group."
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import sys,os
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import datetime
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import re
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import importlib
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import globals
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2016-11-15 18:36:15 +01:00
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global OPTS
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(OPTS, args) = globals.parse_args()
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2016-11-08 18:57:35 +01:00
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# These depend on arguments, so don't load them until now.
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import debug
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# required positional args for using openram main exe
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if len(args) < 1:
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print globals.USAGE
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sys.exit(2)
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2016-11-15 19:14:04 +01:00
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globals.print_banner()
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2016-11-08 18:57:35 +01:00
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2016-11-15 18:36:15 +01:00
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globals.init_openram(args[0])
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2016-11-08 18:57:35 +01:00
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# Check if all arguments are integers for bits, size, banks
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if type(OPTS.config.word_size)!=int:
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debug.error("{0} is not an integer in config file.".format(OPTS.config.word_size))
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if type(OPTS.config.num_words)!=int:
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debug.error("{0} is not an integer in config file.".format(OPTS.config.sram_size))
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if type(OPTS.config.num_banks)!=int:
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debug.error("{0} is not an integer in config file.".format(OPTS.config.num_banks))
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if not OPTS.config.tech_name:
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debug.error("Tech name must be specified in config file.")
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word_size = OPTS.config.word_size
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num_words = OPTS.config.num_words
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num_banks = OPTS.config.num_banks
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2017-06-12 23:37:15 +02:00
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if (OPTS.output_name == ""):
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OPTS.output_name = "sram_{0}_{1}_{2}_{3}".format(word_size,
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2016-11-08 18:57:35 +01:00
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num_words,
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num_banks,
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OPTS.tech_name)
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2017-06-12 23:37:15 +02:00
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debug.info(1, "Output file is " + OPTS.output_name + ".(sp|gds|v|lib|lef)")
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2016-11-08 18:57:35 +01:00
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print "Technology: %s" % (OPTS.tech_name)
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print "Word size: {0}\nWords: {1}\nBanks: {2}".format(word_size,num_words,num_banks)
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# only start importing modules after we have the config file
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import calibre
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import sram
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print "Start: ", datetime.datetime.now()
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# import SRAM test generation
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s = sram.sram(word_size=word_size,
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num_words=num_words,
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num_banks=num_banks,
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2017-06-12 23:37:15 +02:00
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name=OPTS.output_name)
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2016-11-08 18:57:35 +01:00
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# Measure design area
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# Not working?
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#cell_size = s.gds.measureSize(s.name)
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#print "Area:", cell_size[0] * cell_size[1]
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# Output the files for the resulting SRAM
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2017-06-12 23:37:15 +02:00
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spname = OPTS.output_path + s.name + ".sp"
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2016-11-08 18:57:35 +01:00
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print "SP: Writing to {0}".format(spname)
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s.sp_write(spname)
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2017-06-12 23:37:15 +02:00
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gdsname = OPTS.output_path + s.name + ".gds"
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2016-11-08 18:57:35 +01:00
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print "GDS: Writing to {0}".format(gdsname)
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s.gds_write(gdsname)
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# Run Characterizer on the design
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sram_file = spname
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2016-11-15 18:03:16 +01:00
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if OPTS.use_pex:
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2017-06-12 23:37:15 +02:00
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sram_file = OPTS.output_path + "temp_pex.sp"
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2016-11-08 18:57:35 +01:00
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calibre.run_pex(s.name, gdsname, spname, output=sram_file)
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# geenrate verilog
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import verilog
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2017-06-12 23:37:15 +02:00
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vname = OPTS.output_path + s.name + ".v"
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2016-11-08 18:57:35 +01:00
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print "Verilog: Writing to {0}".format(vname)
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verilog.verilog(vname,s)
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# generate LEF
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import lef
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2017-06-12 23:37:15 +02:00
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lefname = OPTS.output_path + s.name + ".lef"
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2016-11-08 18:57:35 +01:00
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print "LEF: Writing to {0}".format(lefname)
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lef.lef(gdsname,lefname,s)
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# generate lib
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import lib
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2017-06-12 23:37:15 +02:00
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libname = OPTS.output_path + s.name + ".lib"
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2016-11-08 18:57:35 +01:00
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print "LIB: Writing to {0}".format(libname)
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lib.lib(libname,s,sram_file)
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2016-11-11 23:05:14 +01:00
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globals.end_openram()
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2016-11-08 18:57:35 +01:00
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print "End: ", datetime.datetime.now()
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