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https://gitlab.com/qemu-project/qemu
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61f3c91a67
There is no "version 2" of the "Lesser" General Public License. It is either "GPL version 2.0" or "Lesser GPL version 2.1". This patch replaces all occurrences of "Lesser GPL version 2" with "Lesser GPL version 2.1" in comment section. This patch contains all the files, whose maintainer I could not get from ‘get_maintainer.pl’ script. Signed-off-by: Chetan Pant <chetan4windows@gmail.com> Message-Id: <20201023124424.20177-1-chetan4windows@gmail.com> Reviewed-by: Thomas Huth <thuth@redhat.com> [thuth: Adapted exec.c and qdev-monitor.c to new location] Signed-off-by: Thomas Huth <thuth@redhat.com>
308 lines
12 KiB
Python
Executable file
308 lines
12 KiB
Python
Executable file
#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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#
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# Dump the contents of a recorded execution stream
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#
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# Copyright (c) 2017 Alex Bennée <alex.bennee@linaro.org>
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#
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# This library is free software; you can redistribute it and/or
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# modify it under the terms of the GNU Lesser General Public
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# License as published by the Free Software Foundation; either
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# version 2.1 of the License, or (at your option) any later version.
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#
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# This library is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public
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# License along with this library; if not, see <http://www.gnu.org/licenses/>.
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import argparse
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import struct
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from collections import namedtuple
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# This mirrors some of the global replay state which some of the
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# stream loading refers to. Some decoders may read the next event so
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# we need handle that case. Calling reuse_event will ensure the next
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# event is read from the cache rather than advancing the file.
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class ReplayState(object):
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def __init__(self):
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self.event = -1
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self.event_count = 0
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self.already_read = False
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self.current_checkpoint = 0
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self.checkpoint = 0
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def set_event(self, ev):
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self.event = ev
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self.event_count += 1
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def get_event(self):
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self.already_read = False
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return self.event
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def reuse_event(self, ev):
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self.event = ev
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self.already_read = True
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def set_checkpoint(self):
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self.checkpoint = self.event - self.checkpoint_start
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def get_checkpoint(self):
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return self.checkpoint
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replay_state = ReplayState()
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# Simple read functions that mirror replay-internal.c
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# The file-stream is big-endian and manually written out a byte at a time.
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def read_byte(fin):
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"Read a single byte"
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return struct.unpack('>B', fin.read(1))[0]
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def read_event(fin):
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"Read a single byte event, but save some state"
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if replay_state.already_read:
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return replay_state.get_event()
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else:
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replay_state.set_event(read_byte(fin))
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return replay_state.event
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def read_word(fin):
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"Read a 16 bit word"
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return struct.unpack('>H', fin.read(2))[0]
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def read_dword(fin):
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"Read a 32 bit word"
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return struct.unpack('>I', fin.read(4))[0]
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def read_qword(fin):
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"Read a 64 bit word"
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return struct.unpack('>Q', fin.read(8))[0]
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# Generic decoder structure
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Decoder = namedtuple("Decoder", "eid name fn")
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def call_decode(table, index, dumpfile):
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"Search decode table for next step"
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decoder = next((d for d in table if d.eid == index), None)
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if not decoder:
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print("Could not decode index: %d" % (index))
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print("Entry is: %s" % (decoder))
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print("Decode Table is:\n%s" % (table))
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return False
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else:
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return decoder.fn(decoder.eid, decoder.name, dumpfile)
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# Print event
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def print_event(eid, name, string=None, event_count=None):
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"Print event with count"
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if not event_count:
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event_count = replay_state.event_count
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if string:
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print("%d:%s(%d) %s" % (event_count, name, eid, string))
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else:
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print("%d:%s(%d)" % (event_count, name, eid))
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# Decoders for each event type
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def decode_unimp(eid, name, _unused_dumpfile):
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"Unimplimented decoder, will trigger exit"
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print("%s not handled - will now stop" % (name))
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return False
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# Checkpoint decoder
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def swallow_async_qword(eid, name, dumpfile):
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"Swallow a qword of data without looking at it"
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step_id = read_qword(dumpfile)
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print(" %s(%d) @ %d" % (name, eid, step_id))
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return True
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async_decode_table = [ Decoder(0, "REPLAY_ASYNC_EVENT_BH", swallow_async_qword),
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Decoder(1, "REPLAY_ASYNC_INPUT", decode_unimp),
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Decoder(2, "REPLAY_ASYNC_INPUT_SYNC", decode_unimp),
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Decoder(3, "REPLAY_ASYNC_CHAR_READ", decode_unimp),
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Decoder(4, "REPLAY_ASYNC_EVENT_BLOCK", decode_unimp),
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Decoder(5, "REPLAY_ASYNC_EVENT_NET", decode_unimp),
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]
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# See replay_read_events/replay_read_event
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def decode_async(eid, name, dumpfile):
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"""Decode an ASYNC event"""
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print_event(eid, name)
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async_event_kind = read_byte(dumpfile)
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async_event_checkpoint = read_byte(dumpfile)
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if async_event_checkpoint != replay_state.current_checkpoint:
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print(" mismatch between checkpoint %d and async data %d" % (
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replay_state.current_checkpoint, async_event_checkpoint))
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return True
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return call_decode(async_decode_table, async_event_kind, dumpfile)
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def decode_instruction(eid, name, dumpfile):
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ins_diff = read_dword(dumpfile)
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print_event(eid, name, "0x%x" % (ins_diff))
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return True
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def decode_audio_out(eid, name, dumpfile):
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audio_data = read_dword(dumpfile)
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print_event(eid, name, "%d" % (audio_data))
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return True
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def decode_checkpoint(eid, name, dumpfile):
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"""Decode a checkpoint.
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Checkpoints contain a series of async events with their own specific data.
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"""
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replay_state.set_checkpoint()
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# save event count as we peek ahead
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event_number = replay_state.event_count
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next_event = read_event(dumpfile)
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# if the next event is EVENT_ASYNC there are a bunch of
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# async events to read, otherwise we are done
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if next_event != 3:
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print_event(eid, name, "no additional data", event_number)
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else:
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print_event(eid, name, "more data follows", event_number)
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replay_state.reuse_event(next_event)
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return True
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def decode_checkpoint_init(eid, name, dumpfile):
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print_event(eid, name)
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return True
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def decode_interrupt(eid, name, dumpfile):
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print_event(eid, name)
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return True
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def decode_clock(eid, name, dumpfile):
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clock_data = read_qword(dumpfile)
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print_event(eid, name, "0x%x" % (clock_data))
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return True
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# pre-MTTCG merge
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v5_event_table = [Decoder(0, "EVENT_INSTRUCTION", decode_instruction),
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Decoder(1, "EVENT_INTERRUPT", decode_interrupt),
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Decoder(2, "EVENT_EXCEPTION", decode_unimp),
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Decoder(3, "EVENT_ASYNC", decode_async),
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Decoder(4, "EVENT_SHUTDOWN", decode_unimp),
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Decoder(5, "EVENT_CHAR_WRITE", decode_unimp),
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Decoder(6, "EVENT_CHAR_READ_ALL", decode_unimp),
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Decoder(7, "EVENT_CHAR_READ_ALL_ERROR", decode_unimp),
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Decoder(8, "EVENT_CLOCK_HOST", decode_clock),
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Decoder(9, "EVENT_CLOCK_VIRTUAL_RT", decode_clock),
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Decoder(10, "EVENT_CP_CLOCK_WARP_START", decode_checkpoint),
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Decoder(11, "EVENT_CP_CLOCK_WARP_ACCOUNT", decode_checkpoint),
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Decoder(12, "EVENT_CP_RESET_REQUESTED", decode_checkpoint),
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Decoder(13, "EVENT_CP_SUSPEND_REQUESTED", decode_checkpoint),
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Decoder(14, "EVENT_CP_CLOCK_VIRTUAL", decode_checkpoint),
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Decoder(15, "EVENT_CP_CLOCK_HOST", decode_checkpoint),
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Decoder(16, "EVENT_CP_CLOCK_VIRTUAL_RT", decode_checkpoint),
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Decoder(17, "EVENT_CP_INIT", decode_checkpoint_init),
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Decoder(18, "EVENT_CP_RESET", decode_checkpoint),
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]
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# post-MTTCG merge, AUDIO support added
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v6_event_table = [Decoder(0, "EVENT_INSTRUCTION", decode_instruction),
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Decoder(1, "EVENT_INTERRUPT", decode_interrupt),
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Decoder(2, "EVENT_EXCEPTION", decode_unimp),
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Decoder(3, "EVENT_ASYNC", decode_async),
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Decoder(4, "EVENT_SHUTDOWN", decode_unimp),
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Decoder(5, "EVENT_CHAR_WRITE", decode_unimp),
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Decoder(6, "EVENT_CHAR_READ_ALL", decode_unimp),
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Decoder(7, "EVENT_CHAR_READ_ALL_ERROR", decode_unimp),
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Decoder(8, "EVENT_AUDIO_OUT", decode_audio_out),
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Decoder(9, "EVENT_AUDIO_IN", decode_unimp),
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Decoder(10, "EVENT_CLOCK_HOST", decode_clock),
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Decoder(11, "EVENT_CLOCK_VIRTUAL_RT", decode_clock),
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Decoder(12, "EVENT_CP_CLOCK_WARP_START", decode_checkpoint),
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Decoder(13, "EVENT_CP_CLOCK_WARP_ACCOUNT", decode_checkpoint),
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Decoder(14, "EVENT_CP_RESET_REQUESTED", decode_checkpoint),
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Decoder(15, "EVENT_CP_SUSPEND_REQUESTED", decode_checkpoint),
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Decoder(16, "EVENT_CP_CLOCK_VIRTUAL", decode_checkpoint),
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Decoder(17, "EVENT_CP_CLOCK_HOST", decode_checkpoint),
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Decoder(18, "EVENT_CP_CLOCK_VIRTUAL_RT", decode_checkpoint),
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Decoder(19, "EVENT_CP_INIT", decode_checkpoint_init),
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Decoder(20, "EVENT_CP_RESET", decode_checkpoint),
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]
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# Shutdown cause added
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v7_event_table = [Decoder(0, "EVENT_INSTRUCTION", decode_instruction),
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Decoder(1, "EVENT_INTERRUPT", decode_interrupt),
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Decoder(2, "EVENT_EXCEPTION", decode_unimp),
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Decoder(3, "EVENT_ASYNC", decode_async),
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Decoder(4, "EVENT_SHUTDOWN", decode_unimp),
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Decoder(5, "EVENT_SHUTDOWN_HOST_ERR", decode_unimp),
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Decoder(6, "EVENT_SHUTDOWN_HOST_QMP", decode_unimp),
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Decoder(7, "EVENT_SHUTDOWN_HOST_SIGNAL", decode_unimp),
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Decoder(8, "EVENT_SHUTDOWN_HOST_UI", decode_unimp),
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Decoder(9, "EVENT_SHUTDOWN_GUEST_SHUTDOWN", decode_unimp),
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Decoder(10, "EVENT_SHUTDOWN_GUEST_RESET", decode_unimp),
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Decoder(11, "EVENT_SHUTDOWN_GUEST_PANIC", decode_unimp),
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Decoder(12, "EVENT_SHUTDOWN___MAX", decode_unimp),
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Decoder(13, "EVENT_CHAR_WRITE", decode_unimp),
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Decoder(14, "EVENT_CHAR_READ_ALL", decode_unimp),
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Decoder(15, "EVENT_CHAR_READ_ALL_ERROR", decode_unimp),
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Decoder(16, "EVENT_AUDIO_OUT", decode_audio_out),
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Decoder(17, "EVENT_AUDIO_IN", decode_unimp),
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Decoder(18, "EVENT_CLOCK_HOST", decode_clock),
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Decoder(19, "EVENT_CLOCK_VIRTUAL_RT", decode_clock),
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Decoder(20, "EVENT_CP_CLOCK_WARP_START", decode_checkpoint),
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Decoder(21, "EVENT_CP_CLOCK_WARP_ACCOUNT", decode_checkpoint),
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Decoder(22, "EVENT_CP_RESET_REQUESTED", decode_checkpoint),
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Decoder(23, "EVENT_CP_SUSPEND_REQUESTED", decode_checkpoint),
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Decoder(24, "EVENT_CP_CLOCK_VIRTUAL", decode_checkpoint),
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Decoder(25, "EVENT_CP_CLOCK_HOST", decode_checkpoint),
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Decoder(26, "EVENT_CP_CLOCK_VIRTUAL_RT", decode_checkpoint),
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Decoder(27, "EVENT_CP_INIT", decode_checkpoint_init),
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Decoder(28, "EVENT_CP_RESET", decode_checkpoint),
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]
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def parse_arguments():
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"Grab arguments for script"
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parser = argparse.ArgumentParser()
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parser.add_argument("-f", "--file", help='record/replay dump to read from',
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required=True)
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return parser.parse_args()
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def decode_file(filename):
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"Decode a record/replay dump"
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dumpfile = open(filename, "rb")
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# read and throwaway the header
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version = read_dword(dumpfile)
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junk = read_qword(dumpfile)
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print("HEADER: version 0x%x" % (version))
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if version == 0xe02007:
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event_decode_table = v7_event_table
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replay_state.checkpoint_start = 12
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elif version == 0xe02006:
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event_decode_table = v6_event_table
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replay_state.checkpoint_start = 12
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else:
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event_decode_table = v5_event_table
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replay_state.checkpoint_start = 10
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try:
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decode_ok = True
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while decode_ok:
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event = read_event(dumpfile)
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decode_ok = call_decode(event_decode_table, event, dumpfile)
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finally:
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dumpfile.close()
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if __name__ == "__main__":
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args = parse_arguments()
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decode_file(args.file)
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