2021-02-03 15:27:09 +01:00
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#!/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
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import re
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import random
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random.seed(int(os.getenv("SEED"), 16))
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from prjxray import util
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from prjxray.db import Database
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from prjxray.grid_types import GridLoc
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2024-10-19 02:27:32 +02:00
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PCIE_INT_Y_RE = re.compile("PCIE_INT_INTERFACE.*X[0-9]+Y([0-9]+)")
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2021-02-03 15:27:09 +01:00
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def get_pcie_int_tiles(grid, pcie_loc):
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def get_site_at_loc(loc):
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gridinfo = grid.gridinfo_at_loc(loc)
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sites = list(gridinfo.sites.keys())
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if len(sites) and sites[0].startswith("SLICE"):
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return sites[0]
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return None
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pcie_int_tiles = list()
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for tile_name in sorted(grid.tiles()):
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if not tile_name.startswith("PCIE_INT_INTERFACE"):
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continue
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2024-10-19 02:27:32 +02:00
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m = PCIE_INT_Y_RE.match(tile_name)
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2021-02-03 15:27:09 +01:00
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assert m
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int_y = int(m.group(1))
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if int_y % 50 == 0:
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loc = grid.loc_of_tilename(tile_name)
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is_left = loc.grid_x < pcie_loc.grid_x
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if is_left:
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for i in range(1, loc.grid_x):
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loc_grid_x = loc.grid_x - i
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site = get_site_at_loc(GridLoc(loc_grid_x, loc.grid_y))
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if site:
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break
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else:
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_, x_max, _, _ = grid.dims()
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for i in range(1, x_max - loc.grid_x):
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loc_grid_x = loc.grid_x + i
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site = get_site_at_loc(GridLoc(loc_grid_x, loc.grid_y))
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if site:
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break
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pcie_int_tiles.append((tile_name, is_left, site))
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return pcie_int_tiles
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def gen_sites():
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db = Database(util.get_db_root(), util.get_part())
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grid = db.grid()
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for tile_name in sorted(grid.tiles()):
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loc = grid.loc_of_tilename(tile_name)
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gridinfo = grid.gridinfo_at_loc(loc)
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for site_name, site_type in gridinfo.sites.items():
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if site_type in ['PCIE_2_1']:
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pcie_int_tiles = get_pcie_int_tiles(grid, loc)
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yield pcie_int_tiles, site_name
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def write_params(params):
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pinstr = 'tile,val,site\n'
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for tile, (site, val) in sorted(params.items()):
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pinstr += '%s,%s,%s\n' % (tile, val, site)
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open('params.csv', 'w').write(pinstr)
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def run():
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print('''
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module top();
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''')
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params = {}
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sites = list(gen_sites())
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for pcie_int_tiles, site_name in sites:
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left_side = None
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right_side = None
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for tile, is_left, site in pcie_int_tiles:
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isone = random.randint(0, 1)
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params[tile] = (site_name, isone)
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if is_left:
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left_side = site
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else:
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right_side = site
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assert left_side and right_side
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print(
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'''
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wire [1:0] PLDIRECTEDLINKCHANGE;
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wire [68:0] MIMTXRDATA;
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(* KEEP, DONT_TOUCH, LOC = "{left}" *)
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LUT1 left_lut_{left} (.O(MIMTXRDATA[0]));
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(* KEEP, DONT_TOUCH, LOC = "{right}" *)
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LUT1 right_lut_{right} (.O(PLDIRECTEDLINKCHANGE[0]));
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(* KEEP, DONT_TOUCH, LOC = "{site}" *)
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PCIE_2_1 pcie_2_1_{site} (
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.PLDIRECTEDLINKCHANGE(PLDIRECTEDLINKCHANGE),
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.MIMTXRDATA(MIMTXRDATA)
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);'''.format(site=site_name, right=right_side, left=left_side))
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print("endmodule")
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write_params(params)
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if __name__ == '__main__':
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run()
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