This reverts commit e572bab3ee5aa40f57bdc6e11d6381cad1d1401a. The problem with skipping the "unnecessary" bash wrappers is that Ubuntu systems use 'dash' as a default shell, which does not support our build infrastructure. While we do recommend not using dash for building FPGA builds in our documentation, it's not obvious that dash is the problem when calling rfnoc_image_builder. Original-commit: 888850d6417c93f561e0555c693e3f11e9f40856
609 lines
19 KiB
Python
Executable File
609 lines
19 KiB
Python
Executable File
#!/usr/bin/env python3
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#
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# Copyright 2023 Ettus Research, a National Instrument Brand
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#
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# SPDX-License-Identifier: GPL-3.0-or-later
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#
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"""
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Repeatedly runs the requested build until it builds successfully and meets
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timing, up to a maximum number of tries. Builds will be retried when they
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fail with timing errors or other errors that might not reoccur. Builds will
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stop if a an unrecognized error occurs.
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"""
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import sys
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import os
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import signal
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import time
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import argparse
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import subprocess
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import threading
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import logging
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import re
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import random
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from enum import Enum
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# Delay between build status checks
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SLEEP_DELAY = 3
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class Status(Enum):
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# Build status constants. Values can be returned to shell as error codes.
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SUCCESS = 0
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ERROR_TRANSIENT = 1
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ERROR_UNKNOWN = 2
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CANCELLED = 3
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TIMEOUT = 4
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NONE = 5
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def __str__(self):
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"""Returns a pretty string for each enum."""
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status_string = {
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self.SUCCESS: "Success",
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self.ERROR_TRANSIENT: "Error (Transient)",
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self.ERROR_UNKNOWN: "Error (Unknown)",
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self.CANCELLED: "Cancelled",
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self.TIMEOUT: "Timeout",
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self.NONE: "Not Started",
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}
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return status_string[self]
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class Worker:
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"""Information for a single worker."""
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def __init__(self):
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self.status = None
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self.thread = None
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self.process = None
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self.start_time = None
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class Workers:
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"""A set of workers and methods for adding and checking the status of workers."""
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def __init__(self):
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self.thread_lock = threading.Lock()
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self.worker_list = []
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def new(self):
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"""Create a new worker and returns its index."""
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with self.thread_lock:
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new_worker = Worker()
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self.worker_list.append(new_worker)
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num = len(self.worker_list) - 1
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return num
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def set(self, index, status=None, thread=None, process=None, start_time=None):
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"""Set the status of a worker.
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Args:
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index:
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The index for the worker to update.
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status:
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If not None, set status to Status.SUCCESS, Status.ERROR_UNKNOWN, etc.
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thread:
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If not None, set thread to a Thread object.
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process:
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If not None, set process to a Popen object.
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start_time:
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If not None, set start_time to time worker started, in seconds.
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"""
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with self.thread_lock:
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if status is not None:
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self.worker_list[index].status = status
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if thread is not None:
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self.worker_list[index].thread = thread
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if process is not None:
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self.worker_list[index].process = process
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if start_time is not None:
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self.worker_list[index].start_time = start_time
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def status(self, index):
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"""Returns the status of the indicated worker."""
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with self.thread_lock:
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return self.worker_list[index].status
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def num_workers(self):
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"""Return the total number of workers."""
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with self.thread_lock:
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return len(self.worker_list)
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def num_finished(self):
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"""Return the number of workers that have finished."""
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with self.thread_lock:
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return sum(int(w.status is not None) for w in self.worker_list)
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def num_error_unknown(self):
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"""Return the number of workers that finished with an unknown error."""
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with self.thread_lock:
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return sum(int(w.status == Status.ERROR_UNKNOWN) for w in self.worker_list)
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def any_success(self):
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"""Returns True if any worker finished successfully."""
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with self.thread_lock:
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return any(
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not w.thread.is_alive() and w.status == Status.SUCCESS
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for w in self.worker_list
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)
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def check_timeout(self, timeout):
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"""Check the timeout status of each worker. Kill it if timeout has
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expired.
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Args:
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timeout: The timeout in seconds.
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"""
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with self.thread_lock:
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for index, worker in enumerate(self.worker_list):
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if time.time() - worker.start_time > timeout and worker.status == None:
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try:
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self.worker_list[index].status = Status.TIMEOUT
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os.killpg(os.getpgid(worker.process.pid), signal.SIGTERM)
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except ProcessLookupError:
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# Process is already dead
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pass
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def kill_jobs(self):
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"""Kill any running jobs by sending SIGTERM to each process group."""
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with self.thread_lock:
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for index, worker in enumerate(self.worker_list):
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if worker.status == None:
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try:
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self.worker_list[index].status = Status.CANCELLED
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os.killpg(os.getpgid(worker.process.pid), signal.SIGTERM)
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except ProcessLookupError:
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# Process is already dead
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pass
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def parse_args():
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"""Parse the command line arguments.
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Returns:
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Populated namespace containing the arguments and their values.
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"""
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parser = argparse.ArgumentParser(
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description=__doc__, formatter_class=argparse.ArgumentDefaultsHelpFormatter
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)
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parser.add_argument(
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"--target",
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"-t",
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type=str,
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help="FPGA make target to build (e.g., X310_XG).",
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)
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parser.add_argument(
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"--image-core",
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"-y",
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type=str,
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help="For using the image builder instead of make, use this to specify "
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"the image core YAML.",
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)
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parser.add_argument(
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"--image-core-name",
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type=str,
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help="Specifies the image core name to pass to rfnoc_image_builder using the -n argument.",
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)
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parser.add_argument(
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"--fpga-dir",
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"-F",
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type=str,
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default=None,
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required=False,
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help="Specifies the FPGA directory to pass to rfnoc_image_builder using the -F argument.",
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)
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parser.add_argument(
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"--build-dir",
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"-B",
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type=str,
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default=None,
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required=False,
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help="Specifies the build directory to pass to rfnoc_image_builder using the -B argument.",
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)
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parser.add_argument(
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"--vivado-path",
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"-P",
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help="Path to the base install for Xilinx Vivado if not in default "
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"location (e.g., /tools/Xilinx/Vivado).",
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default=None,
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)
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parser.add_argument(
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"--ignore-warnings",
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"-W",
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help="Run build even when there are warnings from the RFNoC image builder",
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action="store_true",
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)
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parser.add_argument(
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"--num",
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"-n",
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type=int,
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default=4,
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required=False,
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help="Number of times to attempt the build.",
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)
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parser.add_argument(
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"--persistent",
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"-p",
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action="store_true",
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default=False,
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help=(
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"Continue retrying builds regardless of which error occurs, "
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"up to the specified number of attempts."
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),
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)
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parser.add_argument(
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"--seed",
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"-s",
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type=int,
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default=0,
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required=False,
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help="Initial seed value to use.",
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)
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parser.add_argument(
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"--fpga-jobs",
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"-j",
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type=int,
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default=1,
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required=False,
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help="Number of parallel FPGA build jobs to run.",
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)
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parser.add_argument(
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"--ip-jobs",
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"-J",
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type=int,
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default=4,
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required=False,
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help="Number of parallel IP build jobs to run.",
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)
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parser.add_argument(
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"--timeout",
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"-T",
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type=float,
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default=0,
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help=("Set a timeout in hours for each build attempt. Use 0 for no timeout."),
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)
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parser.add_argument(
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"--all",
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"-a",
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action="store_true",
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default=False,
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help=(
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"Complete all builds, even after a successful build is completed, "
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"unless an unknown error occurs."
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),
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)
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parser.add_argument(
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"--index",
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"-i",
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type=int,
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required=False,
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default=1,
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help=(
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"Starting index for the number to be appended to each parallel "
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"build's directory name."
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),
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)
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return parser.parse_args()
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def rfnoc_image_builder_cmd(
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build_seed,
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target,
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image_core,
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image_core_name,
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fpga_dir,
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build_dir,
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vivado_path,
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ignore_warnings,
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build_num=None,
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):
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"""
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Build the RFNoC image builder command for this build
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"""
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cmd = ""
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if build_seed is not None:
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cmd += f"BUILD_SEED={build_seed} "
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cmd += f"rfnoc_image_builder --yaml-config {image_core} "
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if target:
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cmd += f"--target {target} "
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if image_core_name:
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cmd += f"--image-core-name {image_core_name}"
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cmd += " " if build_num == None else f"_{build_num:02} "
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if build_dir:
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cmd += f"--build-dir {build_dir}"
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cmd += " " if build_num == None else f"/{image_core_name}_{build_num:02} "
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if fpga_dir:
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cmd += f"--fpga-dir {fpga_dir} "
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if vivado_path:
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cmd += f"--vivado-path {vivado_path} "
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if ignore_warnings:
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cmd += "--ignore-warnings "
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return cmd
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def run_fpga_build(
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workers,
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worker_num,
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build_num,
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build_seed,
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target,
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image_core,
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image_core_name,
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fpga_dir,
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build_dir,
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vivado_path,
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ignore_warnings,
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parallel_builds,
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):
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"""Performs one iteration of an FPGA build.
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Args:
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workers: Workers object containing the state of all workers
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woker_num: The number ID for this worker
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build_num: Build number to be displayed for this build
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build_seed: 32-bit signed integer to seed the FPGA build
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target: --target argument to be passed
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image_core: --image-core argument to be passed
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image_core_name: --image-core-name argument to be passed
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fpga_dir: --fpga-dir argument to be passed
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build_dir: --build-dir argument to be passed
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vivado_path: --vivado-path argument to be passed
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ignore_warnings: --ignore-warnings argument to be passed
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parallel_builds: Indicates if we are doing builds in parallel
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Returns:
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Status.SUCCESS: The build succeeded
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Status.*: The build failed for the indicated reason
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"""
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logging.info(f"Starting FPGA build {build_num} with seed {build_seed}")
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output = ""
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# Give each build a unique directory number if doing parallel builds
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cmd_build_num = build_num if parallel_builds else None
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cmd = rfnoc_image_builder_cmd(
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build_seed,
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target,
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image_core,
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image_core_name,
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fpga_dir,
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build_dir,
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vivado_path,
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ignore_warnings,
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cmd_build_num,
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)
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logging.info(f"Running FPGA build command: {cmd}")
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with subprocess.Popen(
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cmd,
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shell=True,
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stdout=subprocess.PIPE,
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stderr=subprocess.STDOUT,
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bufsize=1,
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universal_newlines=True,
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start_new_session=True,
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) as proc:
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workers.set(worker_num, process=proc)
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prefix = f"[{build_num:02}] "
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for line in proc.stdout:
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print(prefix + line, end="")
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output += line
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if proc.returncode == 0:
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logging.info(f"Finished FPGA build {build_num} (SUCCESS)")
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status = Status.SUCCESS
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elif workers.status(worker_num) in (Status.CANCELLED, Status.TIMEOUT):
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status = workers.status(worker_num)
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logging.info((f"Finished FPGA build {build_num} ({str(status)})"))
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else:
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# Regular expressions for error strings to search for that would tell
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# us we should try again.
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transient_errors = [
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# Standard timing error:
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"The design did not satisfy timing constraints",
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# Known issue fixed in Vivado 2021.2:
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(
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"Router encountered a fatal exception of type .*"
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"Trying to tool lock on already tool locked arc"
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),
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]
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logging.info(f"Finished FPGA build {build_num} (FAILURE)")
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status = Status.ERROR_UNKNOWN
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for error_string in transient_errors:
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if re.search(error_string, output):
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status = Status.ERROR_TRANSIENT
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break
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workers.set(worker_num, status=status)
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return status
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def run_ip_build(
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ip_jobs,
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target,
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image_core,
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image_core_name,
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fpga_dir,
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build_dir,
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vivado_path,
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ignore_warnings,
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):
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"""Performs the IP build.
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This is done separately so that when we do parallel FPGA builds, they don't
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separately launch IP builds that would clobber each other.
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Args:
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ip_jobs: Number or parallel jobs to use for IP build
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target: --target argument to be passed
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image_core: --image-core argument to be passed
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image_core_name: --image-core-name argument to be passed
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fpga_dir: --fpga-dir argument to be passed
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build_dir: --build-dir argument to be passed
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vivado_path: --vivado-path argument to be passed
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ignore_warnings: --ignore-warnings argument to be passed
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Returns:
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0: The IP build succeeded
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non-zero: The IP build failed
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"""
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cmd = rfnoc_image_builder_cmd(
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None,
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target,
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image_core,
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image_core_name,
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fpga_dir,
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build_dir,
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vivado_path,
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ignore_warnings,
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None,
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)
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cmd += f" --ip-only --jobs {ip_jobs}"
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logging.info(f"Running IP build with command: {cmd}")
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output = ""
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with subprocess.Popen(
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f'/bin/bash -c "{cmd}"',
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shell=True,
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stdout=subprocess.PIPE,
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stderr=subprocess.STDOUT,
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bufsize=1,
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universal_newlines=True,
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) as proc:
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for line in proc.stdout:
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print(line, end="")
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output += line
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if proc.returncode != 0:
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logging.error("IP build failed! Consult output for details.")
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return Status.ERROR_UNKNOWN
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return Status.SUCCESS
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def next_build_seed(previous_seed):
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"""Determines the next seed to use based on the previous seed. This creates
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a reproducible sequence of values with a specific initial value.
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Args:
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previous_seed: The previous integer seed from which to determine the
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new seed.
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Returns:
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The next build seed value in the range of a 32-bit signed integer.
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"""
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random.seed(previous_seed)
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return random.randint(-0x80000000, 0x7FFFFFFF)
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def main():
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"""Run the requested builds.
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Returns:
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The status of the build as an integer, based on the Status enum (0 if
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successful, non-zero if the build failed).
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"""
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logging.basicConfig(format="[REPEAT BUILD][%(levelname)s] %(message)s")
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logging.root.setLevel(logging.INFO)
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args = parse_args()
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if not args.target and not args.image_core:
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logging.error("Either --target or --image-core must be provided!")
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return Status.NONE.value
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build_seed = args.seed
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workers = Workers()
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if args.fpga_jobs > 1 and not args.image_core_name:
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logging.error(
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"You must provide --image-core-name when doing parallel FPGA "
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"builds. Each build will use this name followed by a build number."
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)
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return Status.NONE.value
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# Build all the IP first, so it's ready to go for any parallel FPGA builds
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status = run_ip_build(
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args.ip_jobs,
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args.target,
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args.image_core,
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args.image_core_name,
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args.fpga_dir,
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args.build_dir,
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args.vivado_path,
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args.ignore_warnings,
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)
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if status != Status.SUCCESS:
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return status.value
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# Run the FPGA builds next
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status = Status.NONE
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try:
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while True:
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# See if we can start another build job
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if (
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threading.active_count() < args.fpga_jobs + 1
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and workers.num_workers() < args.num
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):
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worker_num = workers.new()
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build_num = worker_num + args.index
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thread = threading.Thread(
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target=run_fpga_build,
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args=(
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workers,
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worker_num,
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build_num,
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build_seed,
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args.target,
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args.image_core,
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args.image_core_name,
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args.fpga_dir,
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args.build_dir,
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args.vivado_path,
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args.ignore_warnings,
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args.fpga_jobs > 1,
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),
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)
|
|
workers.set(worker_num, thread=thread, start_time=time.time())
|
|
thread.start()
|
|
build_seed = next_build_seed(build_seed)
|
|
else:
|
|
# We've maxed out the number of workers/jobs, so check the
|
|
# status periodically.
|
|
time.sleep(SLEEP_DELAY)
|
|
if args.timeout > 0:
|
|
workers.check_timeout(args.timeout * 3600)
|
|
if workers.any_success():
|
|
if not args.all or workers.num_finished() == args.num:
|
|
break
|
|
elif workers.num_finished() == args.num:
|
|
break
|
|
|
|
# We're done, so kill any remaining jobs that haven't finished
|
|
if threading.active_count() > 1:
|
|
logging.info("Stopping remaining jobs . . .")
|
|
workers.kill_jobs()
|
|
while threading.active_count() > 1:
|
|
time.sleep(0.1)
|
|
|
|
# Print the results before returning
|
|
logging.info(f"Build Summary:")
|
|
for worker_num in range(workers.num_workers()):
|
|
logging.info(
|
|
f" - Build attempt {args.index + worker_num}: {str(workers.status(worker_num))}"
|
|
)
|
|
if workers.any_success():
|
|
status = Status.SUCCESS
|
|
elif workers.num_finished() == args.num:
|
|
status = Status.ERROR_TRANSIENT
|
|
logging.error("Reached maximum number of FPGA build attempts")
|
|
elif workers.num_error_unknown() != 0 and args.stop_on_error:
|
|
status = Status.ERROR_UNKNOWN
|
|
logging.error("Stopped due to unexpected FPGA build error")
|
|
|
|
except KeyboardInterrupt:
|
|
logging.info("Received SIGINT. Aborting . . .")
|
|
workers.kill_jobs()
|
|
while threading.active_count() > 1:
|
|
time.sleep(0.1)
|
|
# Return normal Bash value for SIGINT (128+2)
|
|
return 130
|
|
|
|
return status.value
|
|
|
|
|
|
if __name__ == "__main__":
|
|
sys.exit(main())
|