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1283 lines
48 KiB
1283 lines
48 KiB
//===-- CommunicationKDP.cpp ----------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "CommunicationKDP.h"
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#include <errno.h>
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#include <limits.h>
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#include <string.h>
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#include "lldb/Core/DumpDataExtractor.h"
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#include "lldb/Host/Host.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Utility/DataBufferHeap.h"
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#include "lldb/Utility/DataExtractor.h"
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#include "lldb/Utility/FileSpec.h"
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#include "lldb/Utility/Log.h"
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#include "lldb/Utility/State.h"
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#include "lldb/Utility/UUID.h"
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#include "ProcessKDPLog.h"
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using namespace lldb;
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using namespace lldb_private;
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// CommunicationKDP constructor
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CommunicationKDP::CommunicationKDP(const char *comm_name)
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: Communication(comm_name), m_addr_byte_size(4),
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m_byte_order(eByteOrderLittle), m_packet_timeout(5), m_sequence_mutex(),
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m_is_running(false), m_session_key(0u), m_request_sequence_id(0u),
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m_exception_sequence_id(0u), m_kdp_version_version(0u),
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m_kdp_version_feature(0u), m_kdp_hostinfo_cpu_mask(0u),
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m_kdp_hostinfo_cpu_type(0u), m_kdp_hostinfo_cpu_subtype(0u) {}
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// Destructor
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CommunicationKDP::~CommunicationKDP() {
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if (IsConnected()) {
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Disconnect();
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}
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}
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bool CommunicationKDP::SendRequestPacket(
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const PacketStreamType &request_packet) {
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std::lock_guard<std::recursive_mutex> guard(m_sequence_mutex);
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return SendRequestPacketNoLock(request_packet);
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}
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void CommunicationKDP::MakeRequestPacketHeader(CommandType request_type,
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PacketStreamType &request_packet,
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uint16_t request_length) {
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request_packet.Clear();
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request_packet.PutHex8(request_type |
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ePacketTypeRequest); // Set the request type
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request_packet.PutHex8(m_request_sequence_id++); // Sequence number
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request_packet.PutHex16(
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request_length); // Length of the packet including this header
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request_packet.PutHex32(m_session_key); // Session key
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}
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bool CommunicationKDP::SendRequestAndGetReply(
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const CommandType command, const PacketStreamType &request_packet,
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DataExtractor &reply_packet) {
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if (IsRunning()) {
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Log *log(ProcessKDPLog::GetLogIfAllCategoriesSet(KDP_LOG_PACKETS));
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if (log) {
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PacketStreamType log_strm;
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DumpPacket(log_strm, request_packet.GetData(), request_packet.GetSize());
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LLDB_LOGF(log, "error: kdp running, not sending packet: %.*s",
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(uint32_t)log_strm.GetSize(), log_strm.GetData());
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}
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return false;
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}
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std::lock_guard<std::recursive_mutex> guard(m_sequence_mutex);
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// NOTE: this only works for packets that are in native endian byte order
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assert(request_packet.GetSize() ==
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*((const uint16_t *)(request_packet.GetData() + 2)));
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lldb::offset_t offset = 1;
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const uint32_t num_retries = 3;
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for (uint32_t i = 0; i < num_retries; ++i) {
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if (SendRequestPacketNoLock(request_packet)) {
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const uint8_t request_sequence_id = (uint8_t)request_packet.GetData()[1];
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while (true) {
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if (WaitForPacketWithTimeoutMicroSecondsNoLock(
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reply_packet,
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std::chrono::microseconds(GetPacketTimeout()).count())) {
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offset = 0;
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const uint8_t reply_command = reply_packet.GetU8(&offset);
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const uint8_t reply_sequence_id = reply_packet.GetU8(&offset);
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if (request_sequence_id == reply_sequence_id) {
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// The sequent ID was correct, now verify we got the response we
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// were looking for
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if ((reply_command & eCommandTypeMask) == command) {
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// Success
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if (command == KDP_RESUMECPUS)
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m_is_running.SetValue(true, eBroadcastAlways);
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return true;
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} else {
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// Failed to get the correct response, bail
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reply_packet.Clear();
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return false;
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}
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} else if (reply_sequence_id > request_sequence_id) {
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// Sequence ID was greater than the sequence ID of the packet we
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// sent, something is really wrong...
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reply_packet.Clear();
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return false;
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} else {
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// The reply sequence ID was less than our current packet's
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// sequence ID so we should keep trying to get a response because
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// this was a response for a previous packet that we must have
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// retried.
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}
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} else {
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// Break and retry sending the packet as we didn't get a response due
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// to timeout
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break;
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}
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}
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}
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}
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reply_packet.Clear();
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return false;
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}
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bool CommunicationKDP::SendRequestPacketNoLock(
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const PacketStreamType &request_packet) {
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if (IsConnected()) {
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const char *packet_data = request_packet.GetData();
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const size_t packet_size = request_packet.GetSize();
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Log *log(ProcessKDPLog::GetLogIfAllCategoriesSet(KDP_LOG_PACKETS));
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if (log) {
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PacketStreamType log_strm;
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DumpPacket(log_strm, packet_data, packet_size);
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LLDB_LOGF(log, "%.*s", (uint32_t)log_strm.GetSize(), log_strm.GetData());
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}
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ConnectionStatus status = eConnectionStatusSuccess;
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size_t bytes_written = Write(packet_data, packet_size, status, NULL);
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if (bytes_written == packet_size)
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return true;
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LLDB_LOGF(log,
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"error: failed to send packet entire packet %" PRIu64
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" of %" PRIu64 " bytes sent",
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(uint64_t)bytes_written, (uint64_t)packet_size);
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}
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return false;
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}
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bool CommunicationKDP::GetSequenceMutex(
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std::unique_lock<std::recursive_mutex> &lock) {
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return (lock = std::unique_lock<std::recursive_mutex>(m_sequence_mutex,
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std::try_to_lock))
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.owns_lock();
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}
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bool CommunicationKDP::WaitForNotRunningPrivate(
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const std::chrono::microseconds &timeout) {
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return m_is_running.WaitForValueEqualTo(false, timeout);
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}
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size_t
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CommunicationKDP::WaitForPacketWithTimeoutMicroSeconds(DataExtractor &packet,
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uint32_t timeout_usec) {
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std::lock_guard<std::recursive_mutex> guard(m_sequence_mutex);
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return WaitForPacketWithTimeoutMicroSecondsNoLock(packet, timeout_usec);
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}
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size_t CommunicationKDP::WaitForPacketWithTimeoutMicroSecondsNoLock(
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DataExtractor &packet, uint32_t timeout_usec) {
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uint8_t buffer[8192];
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Status error;
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Log *log(ProcessKDPLog::GetLogIfAllCategoriesSet(KDP_LOG_PACKETS));
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// Check for a packet from our cache first without trying any reading...
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if (CheckForPacket(NULL, 0, packet))
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return packet.GetByteSize();
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bool timed_out = false;
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while (IsConnected() && !timed_out) {
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lldb::ConnectionStatus status = eConnectionStatusNoConnection;
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size_t bytes_read = Read(buffer, sizeof(buffer),
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timeout_usec == UINT32_MAX
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? Timeout<std::micro>(llvm::None)
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: std::chrono::microseconds(timeout_usec),
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status, &error);
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LLDB_LOGV(log,
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"Read (buffer, sizeof(buffer), timeout_usec = 0x{0:x}, "
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"status = {1}, error = {2}) => bytes_read = {4}",
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timeout_usec, Communication::ConnectionStatusAsString(status),
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error, bytes_read);
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if (bytes_read > 0) {
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if (CheckForPacket(buffer, bytes_read, packet))
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return packet.GetByteSize();
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} else {
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switch (status) {
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case eConnectionStatusInterrupted:
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case eConnectionStatusTimedOut:
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timed_out = true;
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break;
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case eConnectionStatusSuccess:
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// printf ("status = success but error = %s\n",
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// error.AsCString("<invalid>"));
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break;
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case eConnectionStatusEndOfFile:
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case eConnectionStatusNoConnection:
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case eConnectionStatusLostConnection:
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case eConnectionStatusError:
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Disconnect();
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break;
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}
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}
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}
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packet.Clear();
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return 0;
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}
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bool CommunicationKDP::CheckForPacket(const uint8_t *src, size_t src_len,
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DataExtractor &packet) {
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// Put the packet data into the buffer in a thread safe fashion
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std::lock_guard<std::recursive_mutex> guard(m_bytes_mutex);
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Log *log(ProcessKDPLog::GetLogIfAllCategoriesSet(KDP_LOG_PACKETS));
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if (src && src_len > 0) {
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if (log && log->GetVerbose()) {
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PacketStreamType log_strm;
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DumpHexBytes(&log_strm, src, src_len, UINT32_MAX, LLDB_INVALID_ADDRESS);
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log_strm.PutChar('\0');
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LLDB_LOGF(log, "CommunicationKDP::%s adding %u bytes: %s", __FUNCTION__,
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(uint32_t)src_len, log_strm.GetData());
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}
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m_bytes.append((const char *)src, src_len);
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}
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// Make sure we at least have enough bytes for a packet header
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const size_t bytes_available = m_bytes.size();
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if (bytes_available >= 8) {
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packet.SetData(&m_bytes[0], bytes_available, m_byte_order);
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lldb::offset_t offset = 0;
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uint8_t reply_command = packet.GetU8(&offset);
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switch (reply_command) {
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case ePacketTypeRequest | KDP_EXCEPTION:
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case ePacketTypeRequest | KDP_TERMINATION:
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// We got an exception request, so be sure to send an ACK
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{
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PacketStreamType request_ack_packet(Stream::eBinary, m_addr_byte_size,
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m_byte_order);
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// Set the reply but and make the ACK packet
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request_ack_packet.PutHex8(reply_command | ePacketTypeReply);
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request_ack_packet.PutHex8(packet.GetU8(&offset));
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request_ack_packet.PutHex16(packet.GetU16(&offset));
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request_ack_packet.PutHex32(packet.GetU32(&offset));
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m_is_running.SetValue(false, eBroadcastAlways);
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// Ack to the exception or termination
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SendRequestPacketNoLock(request_ack_packet);
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}
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// Fall through to case below to get packet contents
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LLVM_FALLTHROUGH;
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case ePacketTypeReply | KDP_CONNECT:
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case ePacketTypeReply | KDP_DISCONNECT:
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case ePacketTypeReply | KDP_HOSTINFO:
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case ePacketTypeReply | KDP_VERSION:
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case ePacketTypeReply | KDP_MAXBYTES:
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case ePacketTypeReply | KDP_READMEM:
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case ePacketTypeReply | KDP_WRITEMEM:
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case ePacketTypeReply | KDP_READREGS:
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case ePacketTypeReply | KDP_WRITEREGS:
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case ePacketTypeReply | KDP_LOAD:
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case ePacketTypeReply | KDP_IMAGEPATH:
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case ePacketTypeReply | KDP_SUSPEND:
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case ePacketTypeReply | KDP_RESUMECPUS:
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case ePacketTypeReply | KDP_BREAKPOINT_SET:
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case ePacketTypeReply | KDP_BREAKPOINT_REMOVE:
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case ePacketTypeReply | KDP_REGIONS:
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case ePacketTypeReply | KDP_REATTACH:
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case ePacketTypeReply | KDP_HOSTREBOOT:
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case ePacketTypeReply | KDP_READMEM64:
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case ePacketTypeReply | KDP_WRITEMEM64:
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case ePacketTypeReply | KDP_BREAKPOINT_SET64:
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case ePacketTypeReply | KDP_BREAKPOINT_REMOVE64:
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case ePacketTypeReply | KDP_KERNELVERSION:
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case ePacketTypeReply | KDP_READPHYSMEM64:
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case ePacketTypeReply | KDP_WRITEPHYSMEM64:
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case ePacketTypeReply | KDP_READIOPORT:
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case ePacketTypeReply | KDP_WRITEIOPORT:
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case ePacketTypeReply | KDP_READMSR64:
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case ePacketTypeReply | KDP_WRITEMSR64:
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case ePacketTypeReply | KDP_DUMPINFO: {
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offset = 2;
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const uint16_t length = packet.GetU16(&offset);
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if (length <= bytes_available) {
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// We have an entire packet ready, we need to copy the data bytes into
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// a buffer that will be owned by the packet and erase the bytes from
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// our communication buffer "m_bytes"
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packet.SetData(DataBufferSP(new DataBufferHeap(&m_bytes[0], length)));
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m_bytes.erase(0, length);
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if (log) {
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PacketStreamType log_strm;
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DumpPacket(log_strm, packet);
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LLDB_LOGF(log, "%.*s", (uint32_t)log_strm.GetSize(),
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log_strm.GetData());
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}
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return true;
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}
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} break;
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default:
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// Unrecognized reply command byte, erase this byte and try to get back
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// on track
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LLDB_LOGF(log, "CommunicationKDP::%s: tossing junk byte: 0x%2.2x",
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__FUNCTION__, (uint8_t)m_bytes[0]);
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m_bytes.erase(0, 1);
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break;
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}
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}
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packet.Clear();
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return false;
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}
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bool CommunicationKDP::SendRequestConnect(uint16_t reply_port,
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uint16_t exc_port,
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const char *greeting) {
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PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
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m_byte_order);
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if (greeting == NULL)
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greeting = "";
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const CommandType command = KDP_CONNECT;
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// Length is 82 uint16_t and the length of the greeting C string with the
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// terminating NULL
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const uint32_t command_length = 8 + 2 + 2 + ::strlen(greeting) + 1;
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MakeRequestPacketHeader(command, request_packet, command_length);
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// Always send connect ports as little endian
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request_packet.SetByteOrder(eByteOrderLittle);
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request_packet.PutHex16(htons(reply_port));
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request_packet.PutHex16(htons(exc_port));
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request_packet.SetByteOrder(m_byte_order);
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request_packet.PutCString(greeting);
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DataExtractor reply_packet;
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return SendRequestAndGetReply(command, request_packet, reply_packet);
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}
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void CommunicationKDP::ClearKDPSettings() {
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m_request_sequence_id = 0;
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m_kdp_version_version = 0;
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m_kdp_version_feature = 0;
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m_kdp_hostinfo_cpu_mask = 0;
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m_kdp_hostinfo_cpu_type = 0;
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m_kdp_hostinfo_cpu_subtype = 0;
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}
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bool CommunicationKDP::SendRequestReattach(uint16_t reply_port) {
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PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
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m_byte_order);
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const CommandType command = KDP_REATTACH;
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// Length is 8 bytes for the header plus 2 bytes for the reply UDP port
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const uint32_t command_length = 8 + 2;
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MakeRequestPacketHeader(command, request_packet, command_length);
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// Always send connect ports as little endian
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request_packet.SetByteOrder(eByteOrderLittle);
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request_packet.PutHex16(htons(reply_port));
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request_packet.SetByteOrder(m_byte_order);
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DataExtractor reply_packet;
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if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
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// Reset the sequence ID to zero for reattach
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ClearKDPSettings();
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lldb::offset_t offset = 4;
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m_session_key = reply_packet.GetU32(&offset);
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return true;
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}
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return false;
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}
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uint32_t CommunicationKDP::GetVersion() {
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if (!VersionIsValid())
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SendRequestVersion();
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return m_kdp_version_version;
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}
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uint32_t CommunicationKDP::GetFeatureFlags() {
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if (!VersionIsValid())
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SendRequestVersion();
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return m_kdp_version_feature;
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}
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bool CommunicationKDP::SendRequestVersion() {
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PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
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m_byte_order);
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const CommandType command = KDP_VERSION;
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const uint32_t command_length = 8;
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MakeRequestPacketHeader(command, request_packet, command_length);
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DataExtractor reply_packet;
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if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
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lldb::offset_t offset = 8;
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m_kdp_version_version = reply_packet.GetU32(&offset);
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m_kdp_version_feature = reply_packet.GetU32(&offset);
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return true;
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}
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return false;
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}
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uint32_t CommunicationKDP::GetCPUMask() {
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if (!HostInfoIsValid())
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SendRequestHostInfo();
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return m_kdp_hostinfo_cpu_mask;
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}
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uint32_t CommunicationKDP::GetCPUType() {
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if (!HostInfoIsValid())
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SendRequestHostInfo();
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return m_kdp_hostinfo_cpu_type;
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}
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uint32_t CommunicationKDP::GetCPUSubtype() {
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if (!HostInfoIsValid())
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SendRequestHostInfo();
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return m_kdp_hostinfo_cpu_subtype;
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}
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lldb_private::UUID CommunicationKDP::GetUUID() {
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UUID uuid;
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if (GetKernelVersion() == NULL)
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return uuid;
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if (m_kernel_version.find("UUID=") == std::string::npos)
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return uuid;
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size_t p = m_kernel_version.find("UUID=") + strlen("UUID=");
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std::string uuid_str = m_kernel_version.substr(p, 36);
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if (uuid_str.size() < 32)
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return uuid;
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if (!uuid.SetFromStringRef(uuid_str)) {
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UUID invalid_uuid;
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return invalid_uuid;
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}
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return uuid;
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}
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bool CommunicationKDP::RemoteIsEFI() {
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if (GetKernelVersion() == NULL)
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return false;
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return strncmp(m_kernel_version.c_str(), "EFI", 3) == 0;
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}
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bool CommunicationKDP::RemoteIsDarwinKernel() {
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if (GetKernelVersion() == NULL)
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return false;
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return m_kernel_version.find("Darwin Kernel") != std::string::npos;
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}
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lldb::addr_t CommunicationKDP::GetLoadAddress() {
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if (GetKernelVersion() == NULL)
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return LLDB_INVALID_ADDRESS;
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if (m_kernel_version.find("stext=") == std::string::npos)
|
|
return LLDB_INVALID_ADDRESS;
|
|
size_t p = m_kernel_version.find("stext=") + strlen("stext=");
|
|
if (m_kernel_version[p] != '0' || m_kernel_version[p + 1] != 'x')
|
|
return LLDB_INVALID_ADDRESS;
|
|
|
|
addr_t kernel_load_address;
|
|
errno = 0;
|
|
kernel_load_address = ::strtoul(m_kernel_version.c_str() + p, NULL, 16);
|
|
if (errno != 0 || kernel_load_address == 0)
|
|
return LLDB_INVALID_ADDRESS;
|
|
|
|
return kernel_load_address;
|
|
}
|
|
|
|
bool CommunicationKDP::SendRequestHostInfo() {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
const CommandType command = KDP_HOSTINFO;
|
|
const uint32_t command_length = 8;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
DataExtractor reply_packet;
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
lldb::offset_t offset = 8;
|
|
m_kdp_hostinfo_cpu_mask = reply_packet.GetU32(&offset);
|
|
m_kdp_hostinfo_cpu_type = reply_packet.GetU32(&offset);
|
|
m_kdp_hostinfo_cpu_subtype = reply_packet.GetU32(&offset);
|
|
|
|
ArchSpec kernel_arch;
|
|
kernel_arch.SetArchitecture(eArchTypeMachO, m_kdp_hostinfo_cpu_type,
|
|
m_kdp_hostinfo_cpu_subtype);
|
|
|
|
m_addr_byte_size = kernel_arch.GetAddressByteSize();
|
|
m_byte_order = kernel_arch.GetByteOrder();
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
const char *CommunicationKDP::GetKernelVersion() {
|
|
if (m_kernel_version.empty())
|
|
SendRequestKernelVersion();
|
|
return m_kernel_version.c_str();
|
|
}
|
|
|
|
bool CommunicationKDP::SendRequestKernelVersion() {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
const CommandType command = KDP_KERNELVERSION;
|
|
const uint32_t command_length = 8;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
DataExtractor reply_packet;
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
const char *kernel_version_cstr = reply_packet.PeekCStr(8);
|
|
if (kernel_version_cstr && kernel_version_cstr[0])
|
|
m_kernel_version.assign(kernel_version_cstr);
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
bool CommunicationKDP::SendRequestDisconnect() {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
const CommandType command = KDP_DISCONNECT;
|
|
const uint32_t command_length = 8;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
DataExtractor reply_packet;
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
// Are we supposed to get a reply for disconnect?
|
|
}
|
|
ClearKDPSettings();
|
|
return true;
|
|
}
|
|
|
|
uint32_t CommunicationKDP::SendRequestReadMemory(lldb::addr_t addr, void *dst,
|
|
uint32_t dst_len,
|
|
Status &error) {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
bool use_64 = (GetVersion() >= 11);
|
|
uint32_t command_addr_byte_size = use_64 ? 8 : 4;
|
|
const CommandType command = use_64 ? KDP_READMEM64 : KDP_READMEM;
|
|
// Size is header + address size + uint32_t length
|
|
const uint32_t command_length = 8 + command_addr_byte_size + 4;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
request_packet.PutMaxHex64(addr, command_addr_byte_size);
|
|
request_packet.PutHex32(dst_len);
|
|
DataExtractor reply_packet;
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
lldb::offset_t offset = 8;
|
|
uint32_t kdp_error = reply_packet.GetU32(&offset);
|
|
uint32_t src_len = reply_packet.GetByteSize() - 12;
|
|
|
|
if (src_len > 0) {
|
|
const void *src = reply_packet.GetData(&offset, src_len);
|
|
if (src) {
|
|
::memcpy(dst, src, src_len);
|
|
error.Clear();
|
|
return src_len;
|
|
}
|
|
}
|
|
if (kdp_error)
|
|
error.SetErrorStringWithFormat("kdp read memory failed (error %u)",
|
|
kdp_error);
|
|
else
|
|
error.SetErrorString("kdp read memory failed");
|
|
} else {
|
|
error.SetErrorString("failed to send packet");
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
uint32_t CommunicationKDP::SendRequestWriteMemory(lldb::addr_t addr,
|
|
const void *src,
|
|
uint32_t src_len,
|
|
Status &error) {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
bool use_64 = (GetVersion() >= 11);
|
|
uint32_t command_addr_byte_size = use_64 ? 8 : 4;
|
|
const CommandType command = use_64 ? KDP_WRITEMEM64 : KDP_WRITEMEM;
|
|
// Size is header + address size + uint32_t length
|
|
const uint32_t command_length = 8 + command_addr_byte_size + 4 + src_len;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
request_packet.PutMaxHex64(addr, command_addr_byte_size);
|
|
request_packet.PutHex32(src_len);
|
|
request_packet.PutRawBytes(src, src_len);
|
|
|
|
DataExtractor reply_packet;
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
lldb::offset_t offset = 8;
|
|
uint32_t kdp_error = reply_packet.GetU32(&offset);
|
|
if (kdp_error)
|
|
error.SetErrorStringWithFormat("kdp write memory failed (error %u)",
|
|
kdp_error);
|
|
else {
|
|
error.Clear();
|
|
return src_len;
|
|
}
|
|
} else {
|
|
error.SetErrorString("failed to send packet");
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
bool CommunicationKDP::SendRawRequest(
|
|
uint8_t command_byte,
|
|
const void *src, // Raw packet payload bytes
|
|
uint32_t src_len, // Raw packet payload length
|
|
DataExtractor &reply_packet, Status &error) {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
// Size is header + address size + uint32_t length
|
|
const uint32_t command_length = 8 + src_len;
|
|
const CommandType command = (CommandType)command_byte;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
request_packet.PutRawBytes(src, src_len);
|
|
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
lldb::offset_t offset = 8;
|
|
uint32_t kdp_error = reply_packet.GetU32(&offset);
|
|
if (kdp_error && (command_byte != KDP_DUMPINFO))
|
|
error.SetErrorStringWithFormat("request packet 0x%8.8x failed (error %u)",
|
|
command_byte, kdp_error);
|
|
else {
|
|
error.Clear();
|
|
return true;
|
|
}
|
|
} else {
|
|
error.SetErrorString("failed to send packet");
|
|
}
|
|
return false;
|
|
}
|
|
|
|
const char *CommunicationKDP::GetCommandAsCString(uint8_t command) {
|
|
switch (command) {
|
|
case KDP_CONNECT:
|
|
return "KDP_CONNECT";
|
|
case KDP_DISCONNECT:
|
|
return "KDP_DISCONNECT";
|
|
case KDP_HOSTINFO:
|
|
return "KDP_HOSTINFO";
|
|
case KDP_VERSION:
|
|
return "KDP_VERSION";
|
|
case KDP_MAXBYTES:
|
|
return "KDP_MAXBYTES";
|
|
case KDP_READMEM:
|
|
return "KDP_READMEM";
|
|
case KDP_WRITEMEM:
|
|
return "KDP_WRITEMEM";
|
|
case KDP_READREGS:
|
|
return "KDP_READREGS";
|
|
case KDP_WRITEREGS:
|
|
return "KDP_WRITEREGS";
|
|
case KDP_LOAD:
|
|
return "KDP_LOAD";
|
|
case KDP_IMAGEPATH:
|
|
return "KDP_IMAGEPATH";
|
|
case KDP_SUSPEND:
|
|
return "KDP_SUSPEND";
|
|
case KDP_RESUMECPUS:
|
|
return "KDP_RESUMECPUS";
|
|
case KDP_EXCEPTION:
|
|
return "KDP_EXCEPTION";
|
|
case KDP_TERMINATION:
|
|
return "KDP_TERMINATION";
|
|
case KDP_BREAKPOINT_SET:
|
|
return "KDP_BREAKPOINT_SET";
|
|
case KDP_BREAKPOINT_REMOVE:
|
|
return "KDP_BREAKPOINT_REMOVE";
|
|
case KDP_REGIONS:
|
|
return "KDP_REGIONS";
|
|
case KDP_REATTACH:
|
|
return "KDP_REATTACH";
|
|
case KDP_HOSTREBOOT:
|
|
return "KDP_HOSTREBOOT";
|
|
case KDP_READMEM64:
|
|
return "KDP_READMEM64";
|
|
case KDP_WRITEMEM64:
|
|
return "KDP_WRITEMEM64";
|
|
case KDP_BREAKPOINT_SET64:
|
|
return "KDP_BREAKPOINT64_SET";
|
|
case KDP_BREAKPOINT_REMOVE64:
|
|
return "KDP_BREAKPOINT64_REMOVE";
|
|
case KDP_KERNELVERSION:
|
|
return "KDP_KERNELVERSION";
|
|
case KDP_READPHYSMEM64:
|
|
return "KDP_READPHYSMEM64";
|
|
case KDP_WRITEPHYSMEM64:
|
|
return "KDP_WRITEPHYSMEM64";
|
|
case KDP_READIOPORT:
|
|
return "KDP_READIOPORT";
|
|
case KDP_WRITEIOPORT:
|
|
return "KDP_WRITEIOPORT";
|
|
case KDP_READMSR64:
|
|
return "KDP_READMSR64";
|
|
case KDP_WRITEMSR64:
|
|
return "KDP_WRITEMSR64";
|
|
case KDP_DUMPINFO:
|
|
return "KDP_DUMPINFO";
|
|
}
|
|
return NULL;
|
|
}
|
|
|
|
void CommunicationKDP::DumpPacket(Stream &s, const void *data,
|
|
uint32_t data_len) {
|
|
DataExtractor extractor(data, data_len, m_byte_order, m_addr_byte_size);
|
|
DumpPacket(s, extractor);
|
|
}
|
|
|
|
void CommunicationKDP::DumpPacket(Stream &s, const DataExtractor &packet) {
|
|
const char *error_desc = NULL;
|
|
if (packet.GetByteSize() < 8) {
|
|
error_desc = "error: invalid packet (too short): ";
|
|
} else {
|
|
lldb::offset_t offset = 0;
|
|
const uint8_t first_packet_byte = packet.GetU8(&offset);
|
|
const uint8_t sequence_id = packet.GetU8(&offset);
|
|
const uint16_t length = packet.GetU16(&offset);
|
|
const uint32_t key = packet.GetU32(&offset);
|
|
const CommandType command = ExtractCommand(first_packet_byte);
|
|
const char *command_name = GetCommandAsCString(command);
|
|
if (command_name) {
|
|
const bool is_reply = ExtractIsReply(first_packet_byte);
|
|
s.Printf("(running=%i) %s %24s: 0x%2.2x 0x%2.2x 0x%4.4x 0x%8.8x ",
|
|
IsRunning(), is_reply ? "<--" : "-->", command_name,
|
|
first_packet_byte, sequence_id, length, key);
|
|
|
|
if (is_reply) {
|
|
// Dump request reply packets
|
|
switch (command) {
|
|
// Commands that return a single 32 bit error
|
|
case KDP_CONNECT:
|
|
case KDP_WRITEMEM:
|
|
case KDP_WRITEMEM64:
|
|
case KDP_BREAKPOINT_SET:
|
|
case KDP_BREAKPOINT_REMOVE:
|
|
case KDP_BREAKPOINT_SET64:
|
|
case KDP_BREAKPOINT_REMOVE64:
|
|
case KDP_WRITEREGS:
|
|
case KDP_LOAD:
|
|
case KDP_WRITEIOPORT:
|
|
case KDP_WRITEMSR64: {
|
|
const uint32_t error = packet.GetU32(&offset);
|
|
s.Printf(" (error=0x%8.8x)", error);
|
|
} break;
|
|
|
|
case KDP_DISCONNECT:
|
|
case KDP_REATTACH:
|
|
case KDP_HOSTREBOOT:
|
|
case KDP_SUSPEND:
|
|
case KDP_RESUMECPUS:
|
|
case KDP_EXCEPTION:
|
|
case KDP_TERMINATION:
|
|
// No return value for the reply, just the header to ack
|
|
s.PutCString(" ()");
|
|
break;
|
|
|
|
case KDP_HOSTINFO: {
|
|
const uint32_t cpu_mask = packet.GetU32(&offset);
|
|
const uint32_t cpu_type = packet.GetU32(&offset);
|
|
const uint32_t cpu_subtype = packet.GetU32(&offset);
|
|
s.Printf(" (cpu_mask=0x%8.8x, cpu_type=0x%8.8x, cpu_subtype=0x%8.8x)",
|
|
cpu_mask, cpu_type, cpu_subtype);
|
|
} break;
|
|
|
|
case KDP_VERSION: {
|
|
const uint32_t version = packet.GetU32(&offset);
|
|
const uint32_t feature = packet.GetU32(&offset);
|
|
s.Printf(" (version=0x%8.8x, feature=0x%8.8x)", version, feature);
|
|
} break;
|
|
|
|
case KDP_REGIONS: {
|
|
const uint32_t region_count = packet.GetU32(&offset);
|
|
s.Printf(" (count = %u", region_count);
|
|
for (uint32_t i = 0; i < region_count; ++i) {
|
|
const addr_t region_addr = packet.GetAddress(&offset);
|
|
const uint32_t region_size = packet.GetU32(&offset);
|
|
const uint32_t region_prot = packet.GetU32(&offset);
|
|
s.Printf("\n\tregion[%" PRIu64 "] = { range = [0x%16.16" PRIx64
|
|
" - 0x%16.16" PRIx64 "), size = 0x%8.8x, prot = %s }",
|
|
region_addr, region_addr, region_addr + region_size,
|
|
region_size, GetPermissionsAsCString(region_prot));
|
|
}
|
|
} break;
|
|
|
|
case KDP_READMEM:
|
|
case KDP_READMEM64:
|
|
case KDP_READPHYSMEM64: {
|
|
const uint32_t error = packet.GetU32(&offset);
|
|
const uint32_t count = packet.GetByteSize() - offset;
|
|
s.Printf(" (error = 0x%8.8x:\n", error);
|
|
if (count > 0)
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
offset, // Offset within "packet"
|
|
eFormatBytesWithASCII, // Format to use
|
|
1, // Size of each item
|
|
// in bytes
|
|
count, // Number of items
|
|
16, // Number per line
|
|
m_last_read_memory_addr, // Don't show addresses
|
|
// before each line
|
|
0, 0); // No bitfields
|
|
} break;
|
|
|
|
case KDP_READREGS: {
|
|
const uint32_t error = packet.GetU32(&offset);
|
|
const uint32_t count = packet.GetByteSize() - offset;
|
|
s.Printf(" (error = 0x%8.8x regs:\n", error);
|
|
if (count > 0)
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
offset, // Offset within "packet"
|
|
eFormatHex, // Format to use
|
|
m_addr_byte_size, // Size of each item
|
|
// in bytes
|
|
count / m_addr_byte_size, // Number of items
|
|
16 / m_addr_byte_size, // Number per line
|
|
LLDB_INVALID_ADDRESS,
|
|
// Don't
|
|
// show addresses before
|
|
// each line
|
|
0, 0); // No bitfields
|
|
} break;
|
|
|
|
case KDP_KERNELVERSION: {
|
|
const char *kernel_version = packet.PeekCStr(8);
|
|
s.Printf(" (version = \"%s\")", kernel_version);
|
|
} break;
|
|
|
|
case KDP_MAXBYTES: {
|
|
const uint32_t max_bytes = packet.GetU32(&offset);
|
|
s.Printf(" (max_bytes = 0x%8.8x (%u))", max_bytes, max_bytes);
|
|
} break;
|
|
case KDP_IMAGEPATH: {
|
|
const char *path = packet.GetCStr(&offset);
|
|
s.Printf(" (path = \"%s\")", path);
|
|
} break;
|
|
|
|
case KDP_READIOPORT:
|
|
case KDP_READMSR64: {
|
|
const uint32_t error = packet.GetU32(&offset);
|
|
const uint32_t count = packet.GetByteSize() - offset;
|
|
s.Printf(" (error = 0x%8.8x io:\n", error);
|
|
if (count > 0)
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
offset, // Offset within "packet"
|
|
eFormatHex, // Format to use
|
|
1, // Size of each item in bytes
|
|
count, // Number of items
|
|
16, // Number per line
|
|
LLDB_INVALID_ADDRESS, // Don't show addresses
|
|
// before each line
|
|
0, 0); // No bitfields
|
|
} break;
|
|
case KDP_DUMPINFO: {
|
|
const uint32_t count = packet.GetByteSize() - offset;
|
|
s.Printf(" (count = %u, bytes = \n", count);
|
|
if (count > 0)
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
offset, // Offset within "packet"
|
|
eFormatHex, // Format to use
|
|
1, // Size of each item in
|
|
// bytes
|
|
count, // Number of items
|
|
16, // Number per line
|
|
LLDB_INVALID_ADDRESS, // Don't show addresses
|
|
// before each line
|
|
0, 0); // No bitfields
|
|
|
|
} break;
|
|
|
|
default:
|
|
s.Printf(" (add support for dumping this packet reply!!!");
|
|
break;
|
|
}
|
|
} else {
|
|
// Dump request packets
|
|
switch (command) {
|
|
case KDP_CONNECT: {
|
|
const uint16_t reply_port = ntohs(packet.GetU16(&offset));
|
|
const uint16_t exc_port = ntohs(packet.GetU16(&offset));
|
|
s.Printf(" (reply_port = %u, exc_port = %u, greeting = \"%s\")",
|
|
reply_port, exc_port, packet.GetCStr(&offset));
|
|
} break;
|
|
|
|
case KDP_DISCONNECT:
|
|
case KDP_HOSTREBOOT:
|
|
case KDP_HOSTINFO:
|
|
case KDP_VERSION:
|
|
case KDP_REGIONS:
|
|
case KDP_KERNELVERSION:
|
|
case KDP_MAXBYTES:
|
|
case KDP_IMAGEPATH:
|
|
case KDP_SUSPEND:
|
|
// No args, just the header in the request...
|
|
s.PutCString(" ()");
|
|
break;
|
|
|
|
case KDP_RESUMECPUS: {
|
|
const uint32_t cpu_mask = packet.GetU32(&offset);
|
|
s.Printf(" (cpu_mask = 0x%8.8x)", cpu_mask);
|
|
} break;
|
|
|
|
case KDP_READMEM: {
|
|
const uint32_t addr = packet.GetU32(&offset);
|
|
const uint32_t size = packet.GetU32(&offset);
|
|
s.Printf(" (addr = 0x%8.8x, size = %u)", addr, size);
|
|
m_last_read_memory_addr = addr;
|
|
} break;
|
|
|
|
case KDP_WRITEMEM: {
|
|
const uint32_t addr = packet.GetU32(&offset);
|
|
const uint32_t size = packet.GetU32(&offset);
|
|
s.Printf(" (addr = 0x%8.8x, size = %u, bytes = \n", addr, size);
|
|
if (size > 0)
|
|
DumpHexBytes(&s, packet.GetData(&offset, size), size, 32, addr);
|
|
} break;
|
|
|
|
case KDP_READMEM64: {
|
|
const uint64_t addr = packet.GetU64(&offset);
|
|
const uint32_t size = packet.GetU32(&offset);
|
|
s.Printf(" (addr = 0x%16.16" PRIx64 ", size = %u)", addr, size);
|
|
m_last_read_memory_addr = addr;
|
|
} break;
|
|
|
|
case KDP_READPHYSMEM64: {
|
|
const uint64_t addr = packet.GetU64(&offset);
|
|
const uint32_t size = packet.GetU32(&offset);
|
|
const uint32_t lcpu = packet.GetU16(&offset);
|
|
s.Printf(" (addr = 0x%16.16llx, size = %u, lcpu = %u)", addr, size,
|
|
lcpu);
|
|
m_last_read_memory_addr = addr;
|
|
} break;
|
|
|
|
case KDP_WRITEMEM64: {
|
|
const uint64_t addr = packet.GetU64(&offset);
|
|
const uint32_t size = packet.GetU32(&offset);
|
|
s.Printf(" (addr = 0x%16.16" PRIx64 ", size = %u, bytes = \n", addr,
|
|
size);
|
|
if (size > 0)
|
|
DumpHexBytes(&s, packet.GetData(&offset, size), size, 32, addr);
|
|
} break;
|
|
|
|
case KDP_WRITEPHYSMEM64: {
|
|
const uint64_t addr = packet.GetU64(&offset);
|
|
const uint32_t size = packet.GetU32(&offset);
|
|
const uint32_t lcpu = packet.GetU16(&offset);
|
|
s.Printf(" (addr = 0x%16.16llx, size = %u, lcpu = %u, bytes = \n",
|
|
addr, size, lcpu);
|
|
if (size > 0)
|
|
DumpHexBytes(&s, packet.GetData(&offset, size), size, 32, addr);
|
|
} break;
|
|
|
|
case KDP_READREGS: {
|
|
const uint32_t cpu = packet.GetU32(&offset);
|
|
const uint32_t flavor = packet.GetU32(&offset);
|
|
s.Printf(" (cpu = %u, flavor = %u)", cpu, flavor);
|
|
} break;
|
|
|
|
case KDP_WRITEREGS: {
|
|
const uint32_t cpu = packet.GetU32(&offset);
|
|
const uint32_t flavor = packet.GetU32(&offset);
|
|
const uint32_t nbytes = packet.GetByteSize() - offset;
|
|
s.Printf(" (cpu = %u, flavor = %u, regs = \n", cpu, flavor);
|
|
if (nbytes > 0)
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
offset, // Offset within
|
|
// "packet"
|
|
eFormatHex, // Format to use
|
|
m_addr_byte_size, // Size of each item in
|
|
// bytes
|
|
nbytes / m_addr_byte_size, // Number of items
|
|
16 / m_addr_byte_size, // Number per line
|
|
LLDB_INVALID_ADDRESS, // Don't show addresses
|
|
// before each line
|
|
0, 0); // No bitfields
|
|
} break;
|
|
|
|
case KDP_BREAKPOINT_SET:
|
|
case KDP_BREAKPOINT_REMOVE: {
|
|
const uint32_t addr = packet.GetU32(&offset);
|
|
s.Printf(" (addr = 0x%8.8x)", addr);
|
|
} break;
|
|
|
|
case KDP_BREAKPOINT_SET64:
|
|
case KDP_BREAKPOINT_REMOVE64: {
|
|
const uint64_t addr = packet.GetU64(&offset);
|
|
s.Printf(" (addr = 0x%16.16" PRIx64 ")", addr);
|
|
} break;
|
|
|
|
case KDP_LOAD: {
|
|
const char *path = packet.GetCStr(&offset);
|
|
s.Printf(" (path = \"%s\")", path);
|
|
} break;
|
|
|
|
case KDP_EXCEPTION: {
|
|
const uint32_t count = packet.GetU32(&offset);
|
|
|
|
for (uint32_t i = 0; i < count; ++i) {
|
|
const uint32_t cpu = packet.GetU32(&offset);
|
|
const uint32_t exc = packet.GetU32(&offset);
|
|
const uint32_t code = packet.GetU32(&offset);
|
|
const uint32_t subcode = packet.GetU32(&offset);
|
|
const char *exc_cstr = NULL;
|
|
switch (exc) {
|
|
case 1:
|
|
exc_cstr = "EXC_BAD_ACCESS";
|
|
break;
|
|
case 2:
|
|
exc_cstr = "EXC_BAD_INSTRUCTION";
|
|
break;
|
|
case 3:
|
|
exc_cstr = "EXC_ARITHMETIC";
|
|
break;
|
|
case 4:
|
|
exc_cstr = "EXC_EMULATION";
|
|
break;
|
|
case 5:
|
|
exc_cstr = "EXC_SOFTWARE";
|
|
break;
|
|
case 6:
|
|
exc_cstr = "EXC_BREAKPOINT";
|
|
break;
|
|
case 7:
|
|
exc_cstr = "EXC_SYSCALL";
|
|
break;
|
|
case 8:
|
|
exc_cstr = "EXC_MACH_SYSCALL";
|
|
break;
|
|
case 9:
|
|
exc_cstr = "EXC_RPC_ALERT";
|
|
break;
|
|
case 10:
|
|
exc_cstr = "EXC_CRASH";
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
|
|
s.Printf("{ cpu = 0x%8.8x, exc = %s (%u), code = %u (0x%8.8x), "
|
|
"subcode = %u (0x%8.8x)} ",
|
|
cpu, exc_cstr, exc, code, code, subcode, subcode);
|
|
}
|
|
} break;
|
|
|
|
case KDP_TERMINATION: {
|
|
const uint32_t term_code = packet.GetU32(&offset);
|
|
const uint32_t exit_code = packet.GetU32(&offset);
|
|
s.Printf(" (term_code = 0x%8.8x (%u), exit_code = 0x%8.8x (%u))",
|
|
term_code, term_code, exit_code, exit_code);
|
|
} break;
|
|
|
|
case KDP_REATTACH: {
|
|
const uint16_t reply_port = ntohs(packet.GetU16(&offset));
|
|
s.Printf(" (reply_port = %u)", reply_port);
|
|
} break;
|
|
|
|
case KDP_READMSR64: {
|
|
const uint32_t address = packet.GetU32(&offset);
|
|
const uint16_t lcpu = packet.GetU16(&offset);
|
|
s.Printf(" (address=0x%8.8x, lcpu=0x%4.4x)", address, lcpu);
|
|
} break;
|
|
|
|
case KDP_WRITEMSR64: {
|
|
const uint32_t address = packet.GetU32(&offset);
|
|
const uint16_t lcpu = packet.GetU16(&offset);
|
|
const uint32_t nbytes = packet.GetByteSize() - offset;
|
|
s.Printf(" (address=0x%8.8x, lcpu=0x%4.4x, nbytes=0x%8.8x)", lcpu,
|
|
address, nbytes);
|
|
if (nbytes > 0)
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
offset, // Offset within "packet"
|
|
eFormatHex, // Format to use
|
|
1, // Size of each item in
|
|
// bytes
|
|
nbytes, // Number of items
|
|
16, // Number per line
|
|
LLDB_INVALID_ADDRESS, // Don't show addresses
|
|
// before each line
|
|
0, 0); // No bitfields
|
|
} break;
|
|
|
|
case KDP_READIOPORT: {
|
|
const uint16_t lcpu = packet.GetU16(&offset);
|
|
const uint16_t address = packet.GetU16(&offset);
|
|
const uint16_t nbytes = packet.GetU16(&offset);
|
|
s.Printf(" (lcpu=0x%4.4x, address=0x%4.4x, nbytes=%u)", lcpu, address,
|
|
nbytes);
|
|
} break;
|
|
|
|
case KDP_WRITEIOPORT: {
|
|
const uint16_t lcpu = packet.GetU16(&offset);
|
|
const uint16_t address = packet.GetU16(&offset);
|
|
const uint16_t nbytes = packet.GetU16(&offset);
|
|
s.Printf(" (lcpu = %u, addr = 0x%4.4x, nbytes = %u, bytes = \n", lcpu,
|
|
address, nbytes);
|
|
if (nbytes > 0)
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
offset, // Offset within "packet"
|
|
eFormatHex, // Format to use
|
|
1, // Size of each item in
|
|
// bytes
|
|
nbytes, // Number of items
|
|
16, // Number per line
|
|
LLDB_INVALID_ADDRESS, // Don't show addresses
|
|
// before each line
|
|
0, 0); // No bitfields
|
|
} break;
|
|
|
|
case KDP_DUMPINFO: {
|
|
const uint32_t count = packet.GetByteSize() - offset;
|
|
s.Printf(" (count = %u, bytes = \n", count);
|
|
if (count > 0)
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
offset, // Offset within "packet"
|
|
eFormatHex, // Format to use
|
|
1, // Size of each item in bytes
|
|
count, // Number of items
|
|
16, // Number per line
|
|
LLDB_INVALID_ADDRESS, // Don't show addresses before each line
|
|
0, 0); // No bitfields
|
|
|
|
} break;
|
|
}
|
|
}
|
|
} else {
|
|
error_desc = "error: invalid packet command: ";
|
|
}
|
|
}
|
|
|
|
if (error_desc) {
|
|
s.PutCString(error_desc);
|
|
|
|
DumpDataExtractor(packet,
|
|
&s, // Stream to dump to
|
|
0, // Offset into "packet"
|
|
eFormatBytes, // Dump as hex bytes
|
|
1, // Size of each item is 1 for
|
|
// single bytes
|
|
packet.GetByteSize(), // Number of bytes
|
|
UINT32_MAX, // Num bytes per line
|
|
LLDB_INVALID_ADDRESS, // Base address
|
|
0, 0); // Bitfield info set to not do
|
|
// anything bitfield related
|
|
}
|
|
}
|
|
|
|
uint32_t CommunicationKDP::SendRequestReadRegisters(uint32_t cpu,
|
|
uint32_t flavor, void *dst,
|
|
uint32_t dst_len,
|
|
Status &error) {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
const CommandType command = KDP_READREGS;
|
|
// Size is header + 4 byte cpu and 4 byte flavor
|
|
const uint32_t command_length = 8 + 4 + 4;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
request_packet.PutHex32(cpu);
|
|
request_packet.PutHex32(flavor);
|
|
DataExtractor reply_packet;
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
lldb::offset_t offset = 8;
|
|
uint32_t kdp_error = reply_packet.GetU32(&offset);
|
|
uint32_t src_len = reply_packet.GetByteSize() - 12;
|
|
|
|
if (src_len > 0) {
|
|
const uint32_t bytes_to_copy = std::min<uint32_t>(src_len, dst_len);
|
|
const void *src = reply_packet.GetData(&offset, bytes_to_copy);
|
|
if (src) {
|
|
::memcpy(dst, src, bytes_to_copy);
|
|
error.Clear();
|
|
// Return the number of bytes we could have returned regardless if we
|
|
// copied them or not, just so we know when things don't match up
|
|
return src_len;
|
|
}
|
|
}
|
|
if (kdp_error)
|
|
error.SetErrorStringWithFormat(
|
|
"failed to read kdp registers for cpu %u flavor %u (error %u)", cpu,
|
|
flavor, kdp_error);
|
|
else
|
|
error.SetErrorStringWithFormat(
|
|
"failed to read kdp registers for cpu %u flavor %u", cpu, flavor);
|
|
} else {
|
|
error.SetErrorString("failed to send packet");
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
uint32_t CommunicationKDP::SendRequestWriteRegisters(uint32_t cpu,
|
|
uint32_t flavor,
|
|
const void *src,
|
|
uint32_t src_len,
|
|
Status &error) {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
const CommandType command = KDP_WRITEREGS;
|
|
// Size is header + 4 byte cpu and 4 byte flavor
|
|
const uint32_t command_length = 8 + 4 + 4 + src_len;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
request_packet.PutHex32(cpu);
|
|
request_packet.PutHex32(flavor);
|
|
request_packet.Write(src, src_len);
|
|
DataExtractor reply_packet;
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
lldb::offset_t offset = 8;
|
|
uint32_t kdp_error = reply_packet.GetU32(&offset);
|
|
if (kdp_error == 0)
|
|
return src_len;
|
|
error.SetErrorStringWithFormat(
|
|
"failed to read kdp registers for cpu %u flavor %u (error %u)", cpu,
|
|
flavor, kdp_error);
|
|
} else {
|
|
error.SetErrorString("failed to send packet");
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
bool CommunicationKDP::SendRequestResume() {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
const CommandType command = KDP_RESUMECPUS;
|
|
const uint32_t command_length = 12;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
request_packet.PutHex32(GetCPUMask());
|
|
|
|
DataExtractor reply_packet;
|
|
return SendRequestAndGetReply(command, request_packet, reply_packet);
|
|
}
|
|
|
|
bool CommunicationKDP::SendRequestBreakpoint(bool set, addr_t addr) {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
bool use_64 = (GetVersion() >= 11);
|
|
uint32_t command_addr_byte_size = use_64 ? 8 : 4;
|
|
const CommandType command =
|
|
set ? (use_64 ? KDP_BREAKPOINT_SET64 : KDP_BREAKPOINT_SET)
|
|
: (use_64 ? KDP_BREAKPOINT_REMOVE64 : KDP_BREAKPOINT_REMOVE);
|
|
|
|
const uint32_t command_length = 8 + command_addr_byte_size;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
request_packet.PutMaxHex64(addr, command_addr_byte_size);
|
|
|
|
DataExtractor reply_packet;
|
|
if (SendRequestAndGetReply(command, request_packet, reply_packet)) {
|
|
lldb::offset_t offset = 8;
|
|
uint32_t kdp_error = reply_packet.GetU32(&offset);
|
|
if (kdp_error == 0)
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
bool CommunicationKDP::SendRequestSuspend() {
|
|
PacketStreamType request_packet(Stream::eBinary, m_addr_byte_size,
|
|
m_byte_order);
|
|
const CommandType command = KDP_SUSPEND;
|
|
const uint32_t command_length = 8;
|
|
MakeRequestPacketHeader(command, request_packet, command_length);
|
|
DataExtractor reply_packet;
|
|
return SendRequestAndGetReply(command, request_packet, reply_packet);
|
|
}
|