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			183 lines
		
	
	
		
			5.5 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			183 lines
		
	
	
		
			5.5 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
#!/usr/bin/env python3
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##################################
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# testgen-ADDIW-SLLIW-SRLIW-SRAIW.py
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#
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# ehedenberg@hmc.edu 4 February 2021
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# heavily influenced by Prof Harris Code
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#
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# Generate directed and random test vectors for RISC-V Design Validation.
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##################################
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##################################
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# libraries
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##################################
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from datetime import datetime
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from random import randint 
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from random import seed
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from random import getrandbits
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import sys
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##################################
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# functions
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##################################
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def logical_rshift(signed_integer, places):
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  unsigned_integer=signed_integer%(1<<32)
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  return unsigned_integer >> places
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def toSigned12bit(n):
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  n=n & 0xfff
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  if (n&(1<<11)):
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    n=n|0xfffffffffffff000
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  return n
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def toSigned32bit(n):
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  n=n & 0xffffffff
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  if (n&(1<<31)):
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    n=n|0xffffffff00000000
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  return n
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def computeExpected(a, b, test):
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  if (test == "ADDIW"):
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    b=toSigned12bit(b)
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    return a + b
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  elif (test == "SLLIW"):
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    return (a << b)
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  elif (test == "SRLIW"):
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    return logical_rshift(a, b)
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  elif(test == "SRAIW"):
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    a= toSigned32bit(a)
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    return a >> b
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  else:
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    die("bad test name ", test)
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  #  exit(1)
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def randRegs():
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  reg1 = randint(1,31)
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  reg2 = randint(1,31)
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  reg3 = randint(1,31) 
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  if (reg1 == 6 or reg2 == 6 or reg3 == 6 or reg1 == reg2):
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    return randRegs()
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  else:
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      return reg1, reg2, reg3
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def writeVector(a, b, storecmd):
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  global testnum
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  expected = computeExpected(a, b, test)
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  expected = expected % 2**64 # drop carry if necessary
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  if (expected < 0): # take twos complement
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    expected = 2**64 + expected
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    #expected=expected+2^32<<32
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  if (expected >= (2**32)):
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    expected=expected%(2**32)
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  expected=toSigned32bit(expected)
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  reg1, reg2, reg3 = randRegs()
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  lines = "\n# Testcase " + str(testnum) + ":  rs1:x" + str(reg1) + "(" + formatstr.format(a)
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  lines = lines + "), imm:"+formatstr.format(b) 
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  lines = lines + ", result rd:x" + str(reg3) + "(" + formatstr.format(expected) +")\n"
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  lines = lines + "li x" + str(reg1) + ", MASK_XLEN(" + formatstr.format(a) + ")\n"
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  #lines = lines + "li x" + str(reg2) + ", MASK_XLEN(" + formatstr.format(b) + ")\n"
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  lines = lines + test + " x" + str(reg3) + ", x" + str(reg1) + ", SEXT_IMM(" + formatstr.format(b) + ")\n"
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  lines = lines + storecmd + " x" + str(reg3) + ", " + str(wordsize*testnum) + "(x6)\n"
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  lines = lines + "RVTEST_IO_ASSERT_GPR_EQ(x7, x" + str(reg3) +", "+formatstr.format(expected)+")\n"
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  #lines = lines + str(b)+"\n"
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  f.write(lines)
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  if (xlen == 32):
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    line = formatrefstr.format(expected)+"\n"
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  else:
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    line = formatrefstr.format(expected % 2**32)+"\n" + formatrefstr.format(expected >> 32) + "\n"
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  r.write(line)
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  testnum = testnum+1
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##################################
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# main body
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##################################
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# change these to suite your tests
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tests = ["ADDIW", "SLLIW", "SRLIW", "SRAIW"]
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author = "Eizabeth Hedenberg"
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xlens = [64]
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shiftlen=5
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addlen=12
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numrand = 100
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# setup
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seed(0) # make tests reproducible
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# generate files for each test
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for xlen in xlens:
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  formatstrlen = str(int(xlen/4))
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  #formatstrlen6=str(int())
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  formatstr = "0x{:0" + formatstrlen + "x}" # format as xlen-bit hexadecimal number
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  #formatstr6 = "0x{:0" + "2" + "x}" # format as xlen-bit hexadecimal number
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  formatrefstr = "{:08x}" # format as xlen-bit hexadecimal number with no leading 0x
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  if (xlen == 32):
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    storecmd = "sw"
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    wordsize = 4
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  else:
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    storecmd = "sd"
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    wordsize = 8
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  for test in tests:
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    cornersa = [0, 1, 2, 0xFF, 0x624B3E976C52DD14 % 2**xlen, 2**(xlen-1)-2, 2**(xlen-1)-1, 
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            2**(xlen-1), 2**(xlen-1)+1, 0xC365DDEB9173AB42 % 2**xlen, 2**(xlen)-2, 2**(xlen)-1]
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            #test both confined to top 32 and not
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    cornersshift=[0, 1, 2, 2**(shiftlen)-1, 2**(shiftlen)-2, 0b00101, 0b01110]
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    #6 bits: 0, 1, 2, largest, largest -1, largest -2,  21, 46
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    cornersadd=[0, 1, 2, 2**(addlen-1), 2**(addlen-1)-1, 2**(addlen-1)-2, 2**(addlen-1)+1, 2**(addlen)-2, 2**(addlen)-1, 0b001010010101, 0b101011101111]
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    #12 bit, 0, 1, 2 argest positive, largest -1, largest -2, largest negative number, -2, -1, random
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    imperaspath = "../../imperas-riscv-tests/riscv-test-suite/rv" + str(xlen) + "i/"
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    basename = "WALLY-" + test 
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    fname = imperaspath + "src/" + basename + ".S"
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    refname = imperaspath + "references/" + basename + ".reference_output"
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    testnum = 0
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    # print custom header part
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    f = open(fname, "w")
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    r = open(refname, "w")
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    line = "///////////////////////////////////////////\n"
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    f.write(line)
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    lines="// "+fname+ "\n// " + author + "\n"
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    f.write(lines)
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    line ="// Created " + str(datetime.now()) 
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    f.write(line)
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    # insert generic header
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    h = open("testgen_header.S", "r")
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    for line in h:  
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      f.write(line)
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    # print directed and random test vectors
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    if test=="ADDIW":
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      for a in cornersa:
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        for b in cornersadd:
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          writeVector(a, b, storecmd)
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      for i in range(0,numrand):
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        a = getrandbits(xlen)
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        b = getrandbits(12)
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        writeVector(a, b, storecmd)
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    else:
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      for a in cornersa:
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        for b in cornersshift:
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          writeVector(a, b, storecmd)
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      for i in range(0,numrand):
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        a = getrandbits(xlen)
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        b = getrandbits(5)
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        writeVector(a, b, storecmd)
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    # print footer
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    h = open("testgen_footer.S", "r")
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    for line in h:  
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      f.write(line)
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    # Finish
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    lines = ".fill " + str(testnum) + ", " + str(wordsize) + ", -1\n"
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    lines = lines + "\nRV_COMPLIANCE_DATA_END\n" 
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    f.write(lines)
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    f.close()
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    r.close()
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