mirror of https://github.com/openXC7/prjxray.git
185 lines
4.1 KiB
Python
185 lines
4.1 KiB
Python
#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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#
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# Copyright (C) 2017-2020 The Project X-Ray Authors.
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#
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# Use of this source code is governed by a ISC-style
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# license that can be found in the LICENSE file or at
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# https://opensource.org/licenses/ISC
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#
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# SPDX-License-Identifier: ISC
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import os, random
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random.seed(0)
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from prjxray import util
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from prjxray import verilog
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# INCREMENT is the amount of additional CLBN to be instantiated in the design.
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# This makes the fuzzer compilation more robust against failures.
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INCREMENT = os.getenv('CLBN', 0)
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CLBN = 40 + int(INCREMENT)
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print('//Requested CLBs: %s' % str(CLBN))
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def gen_slices():
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for _tile_name, site_name, _site_type in util.get_roi().gen_sites(
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['SLICEL', 'SLICEM']):
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yield site_name
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DIN_N = CLBN * 8
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DOUT_N = CLBN * 8
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verilog.top_harness(DIN_N, DOUT_N)
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f = open('params.csv', 'w')
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f.write('module,loc,n,def_a\n')
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slices = gen_slices()
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print(
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'module roi(input clk, input [%d:0] din, output [%d:0] dout);' %
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(DIN_N - 1, DOUT_N - 1))
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for i in range(CLBN):
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bel = ''
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module = 'clb_N5FFMUX'
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n = random.randint(0, 3)
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def_a = random.randint(0, 1)
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loc = next(slices)
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print(' %s' % module)
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print(' #(.LOC("%s"), .N(%d), .DEF_A(%d))' % (loc, n, def_a))
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print(
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' clb_%d (.clk(clk), .din(din[ %d +: 8]), .dout(dout[ %d +: 8]));'
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% (i, 8 * i, 8 * i))
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f.write('%s,%s,%s,%s\n' % (module, loc, n, def_a))
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f.close()
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print(
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'''endmodule
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// ---------------------------------------------------------------------
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''')
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print(
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'''
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module clb_N5FFMUX (input clk, input [7:0] din, output [7:0] dout);
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parameter LOC="SLICE_X22Y100";
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parameter N=-1;
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parameter DEF_A=1;
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wire lutdo, lutco, lutbo, lutao;
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wire lut7bo, lut7ao;
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wire lut8o;
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reg [3:0] ffds;
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wire lutdo5, lutco5, lutbo5, lutao5;
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//wire lutno5 [3:0] = {lutao5, lutbo5, lutco5, lutdo5};
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wire lutno5 [3:0] = {lutdo5, lutco5, lutbo5, lutao5};
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always @(*) begin
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if (DEF_A) begin
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//Default poliarty A
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ffds[3] = lutdo5;
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ffds[2] = lutco5;
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ffds[1] = lutbo5;
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ffds[0] = lutao5;
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ffds[N] = din[6];
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end else begin
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//Default polarity B
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ffds[3] = din[6];
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ffds[2] = din[6];
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ffds[1] = din[6];
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ffds[0] = din[6];
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ffds[N] = lutno5[N];
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end
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end
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(* LOC=LOC, BEL="F8MUX", KEEP, DONT_TOUCH *)
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MUXF8 mux8 (.O(), .I0(lut7bo), .I1(lut7ao), .S(din[6]));
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(* LOC=LOC, BEL="F7BMUX", KEEP, DONT_TOUCH *)
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MUXF7 mux7b (.O(lut7bo), .I0(lutdo), .I1(lutco), .S(din[6]));
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(* LOC=LOC, BEL="F7AMUX", KEEP, DONT_TOUCH *)
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MUXF7 mux7a (.O(lut7ao), .I0(lutbo), .I1(lutao), .S(din[6]));
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(* LOC=LOC, BEL="D6LUT", KEEP, DONT_TOUCH *)
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LUT6_2 #(
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.INIT(64'h8000_DEAD_0000_0001)
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) lutd (
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.I0(din[0]),
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.I1(din[1]),
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.I2(din[2]),
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.I3(din[3]),
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.I4(din[4]),
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.I5(din[5]),
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.O5(lutdo5),
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.O6(lutdo));
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(* LOC=LOC, BEL="D5FF" *)
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FDPE ffd (
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.C(clk),
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.Q(dout[1]),
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.CE(din[0]),
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.PRE(din[1]),
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.D(ffds[3]));
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(* LOC=LOC, BEL="C6LUT", KEEP, DONT_TOUCH *)
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LUT6_2 #(
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.INIT(64'h8000_BEEF_0000_0001)
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) lutc (
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.I0(din[0]),
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.I1(din[1]),
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.I2(din[2]),
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.I3(din[3]),
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.I4(din[4]),
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.I5(din[5]),
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.O5(lutco5),
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.O6(lutco));
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(* LOC=LOC, BEL="C5FF" *)
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FDPE ffc (
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.C(clk),
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.Q(dout[2]),
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.CE(din[0]),
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.PRE(din[1]),
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.D(ffds[2]));
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(* LOC=LOC, BEL="B6LUT", KEEP, DONT_TOUCH *)
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LUT6_2 #(
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.INIT(64'h8000_CAFE_0000_0001)
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) lutb (
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.I0(din[0]),
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.I1(din[1]),
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.I2(din[2]),
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.I3(din[3]),
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.I4(din[4]),
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.I5(din[5]),
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.O5(lutbo5),
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.O6(lutbo));
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(* LOC=LOC, BEL="B5FF" *)
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FDPE ffb (
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.C(clk),
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.Q(dout[3]),
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.CE(din[0]),
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.PRE(din[1]),
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.D(ffds[1]));
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(* LOC=LOC, BEL="A6LUT", KEEP, DONT_TOUCH *)
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LUT6_2 #(
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.INIT(64'h8000_1CE0_0000_0001)
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) luta (
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.I0(din[0]),
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.I1(din[1]),
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.I2(din[2]),
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.I3(din[3]),
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.I4(din[4]),
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.I5(din[5]),
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.O5(lutao5),
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.O6(lutao));
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(* LOC=LOC, BEL="A5FF" *)
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FDPE ffa (
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.C(clk),
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.Q(dout[4]),
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.CE(din[0]),
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.PRE(din[1]),
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//D can only come from O5 or AX
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//AX is used by MUXF7:S
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.D(ffds[0]));
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endmodule
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''')
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