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/*
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/*
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 *
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 *
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 *  Copyright (C) 2010  Mattias Runge
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 *  Copyright (C) 2010  Mattias Runge
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 *
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 *
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 *  This program is free software; you can redistribute it and/or modify
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 *  This program is free software; you can redistribute it and/or modify
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 *  it under the terms of the GNU General Public License as published by
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 *  it under the terms of the GNU General Public License as published by
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 *  the Free Software Foundation; either version 2 of the License, or
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 *  the Free Software Foundation; either version 2 of the License, or
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 *  (at your option) any later version.
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 *  (at your option) any later version.
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 *
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 *
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 *  This program is distributed in the hope that it will be useful,
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 *  This program 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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 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
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 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 *  GNU General Public License for more details.
13
 *  GNU General Public License for more details.
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 *
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 *
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 *  You should have received a copy of the GNU General Public License along
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 *  You should have received a copy of the GNU General Public License along
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 *  with this program; if not, write to the Free Software Foundation, Inc.,
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 *  with this program; if not, write to the Free Software Foundation, Inc.,
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 *  51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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 *  51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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 *
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 *
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 */
19
 */
20
 
20
 
21
#include "Node.h"
21
#include "Node.h"
22
 
22
 
23
#include <boost/date_time/posix_time/posix_time.hpp>
23
#include <boost/date_time/posix_time/posix_time.hpp>
24
#include <boost/lexical_cast.hpp>
24
#include <boost/lexical_cast.hpp>
25
 
25
 
26
#include "Manager.h"
26
#include "Manager.h"
27
#include "can/Message.h"
27
#include "can/Message.h"
28
#include "broker/Manager.h"
28
#include "broker/Manager.h"
29
 
29
 
30
namespace atom {
30
namespace atom {
31
namespace control {
31
namespace control {
32
 
32
 
33
Node::TransitionList Node::transitions_;
33
Node::TransitionList Node::transitions_;
34
std::map<Node::State, std::string> Node::state_names_;
34
std::map<Node::State, std::string> Node::state_names_;
35
std::map<Node::Event, std::string> Node::event_names_;
35
std::map<Node::Event, std::string> Node::event_names_;
36
   
36
   
37
Node::Node(Node::Id id) : LOG("control::Node")
37
Node::Node(Node::Id id) : LOG("control::Node")
38
{
38
{
39
    this->state_ = STATE_NORM_OFFLINE;
39
    this->state_ = STATE_NORM_OFFLINE;
40
    this->id_ = id;
40
    this->id_ = boost::algorithm::to_lower_copy((std::string)id);
41
    this->information_.has_application_ = false;
41
    this->information_.has_application_ = false;
42
    this->information_.bios_version_ = 0;
42
    this->information_.bios_version_ = 0;
43
    this->information_.device_type_ = "N/A";
43
    this->information_.device_type_ = "N/A";
44
    this->information_.last_active_ = 0;
44
    this->information_.last_active_ = 0;
45
    this->information_.valid_ = false;
45
    this->information_.valid_ = false;
46
   
46
   
47
    this->current_offset_ = 0;
47
    this->current_offset_ = 0;
48
    this->expected_ack_data_ = 0;
48
    this->expected_ack_data_ = 0;
49
    this->program_start_time_ = 0;
49
    this->program_start_time_ = 0;
50
}
50
}
51
 
51
 
52
Node::~Node()
52
Node::~Node()
53
{
53
{
54
 
54
 
55
}
55
}
56
 
56
 
57
void Node::ConnectSlots(const SignalOnNewState::slot_type& slot_on_new_state)
57
void Node::ConnectSlots(const SignalOnNewState::slot_type& slot_on_new_state)
58
{
58
{
59
    this->signal_on_new_state_.connect(slot_on_new_state);
59
    this->signal_on_new_state_.connect(slot_on_new_state);
60
}
60
}
61
 
61
 
62
Node::Id Node::GetId()
62
Node::Id Node::GetId()
63
{
63
{
64
    return this->id_;
64
    return this->id_;
65
}
65
}
66
 
66
 
67
Node::Information Node::GetInformation()
67
Node::Information Node::GetInformation()
68
{
68
{
69
    return this->information_;
69
    return this->information_;
70
}
70
}
71
 
71
 
72
void Node::SetupStateMachine()
72
void Node::SetupStateMachine()
73
{
73
{
74
    // Normal flow
74
    // Normal flow
75
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_BIOS_START,        STATE_NORM_ONLINE);
75
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_BIOS_START,        STATE_NORM_ONLINE);
76
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_APP_START,         STATE_NORM_LIST);
76
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_APP_START,         STATE_NORM_LIST);
77
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_HEARTBEAT,         STATE_NORM_LIST);
77
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_HEARTBEAT,         STATE_NORM_LIST);
78
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_PROGRAM_BIOS,      STATE_BPGM_OFFLINE);
78
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_PROGRAM_BIOS,      STATE_BPGM_OFFLINE);
79
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_PROGRAM_APP,       STATE_APGM_OFFLINE);
79
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_PROGRAM_APP,       STATE_APGM_OFFLINE);
80
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_RESET,             STATE_NO_CHANGE);
80
    Node::AddTransition(STATE_NORM_OFFLINE,          EVENT_RESET,             STATE_NO_CHANGE);
81
   
81
   
82
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_BIOS_START,        STATE_NORM_ONLINE);
82
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_BIOS_START,        STATE_NORM_ONLINE);
83
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_APP_START,         STATE_NORM_LIST);
83
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_APP_START,         STATE_NORM_LIST);
84
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_HEARTBEAT,         STATE_NORM_LIST);
84
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_HEARTBEAT,         STATE_NORM_LIST);
85
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_PROGRAM_BIOS,      STATE_BPGM_OFFLINE);
85
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_PROGRAM_BIOS,      STATE_BPGM_OFFLINE);
86
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_PROGRAM_APP,       STATE_APGM_OFFLINE);
86
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_PROGRAM_APP,       STATE_APGM_OFFLINE);
87
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_RESET,             STATE_NORM_OFFLINE);
87
    Node::AddTransition(STATE_NORM_ONLINE,           EVENT_RESET,             STATE_NORM_OFFLINE);
88
   
88
   
89
    Node::AddTransition(STATE_NORM_LIST,             EVENT_BIOS_START,        STATE_NORM_ONLINE);
89
    Node::AddTransition(STATE_NORM_LIST,             EVENT_BIOS_START,        STATE_NORM_ONLINE);
90
    Node::AddTransition(STATE_NORM_LIST,             EVENT_APP_START,         STATE_NORM_LIST);
90
    Node::AddTransition(STATE_NORM_LIST,             EVENT_APP_START,         STATE_NORM_LIST);
91
    Node::AddTransition(STATE_NORM_LIST,             EVENT_HEARTBEAT,         STATE_NO_CHANGE);
91
    Node::AddTransition(STATE_NORM_LIST,             EVENT_HEARTBEAT,         STATE_NO_CHANGE);
92
    Node::AddTransition(STATE_NORM_LIST,             EVENT_LIST_DONE,         STATE_NORM_INITIALIZED);
92
    Node::AddTransition(STATE_NORM_LIST,             EVENT_LIST_DONE,         STATE_NORM_INITIALIZED);
93
    Node::AddTransition(STATE_NORM_LIST,             EVENT_PROGRAM_BIOS,      STATE_BPGM_OFFLINE);
93
    Node::AddTransition(STATE_NORM_LIST,             EVENT_PROGRAM_BIOS,      STATE_BPGM_OFFLINE);
94
    Node::AddTransition(STATE_NORM_LIST,             EVENT_PROGRAM_APP,       STATE_APGM_OFFLINE);
94
    Node::AddTransition(STATE_NORM_LIST,             EVENT_PROGRAM_APP,       STATE_APGM_OFFLINE);
95
    Node::AddTransition(STATE_NORM_LIST,             EVENT_RESET,             STATE_NORM_OFFLINE);
95
    Node::AddTransition(STATE_NORM_LIST,             EVENT_RESET,             STATE_NORM_OFFLINE);
96
   
96
   
97
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_BIOS_START,        STATE_NORM_ONLINE);
97
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_BIOS_START,        STATE_NORM_ONLINE);
98
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_APP_START,         STATE_NORM_LIST);
98
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_APP_START,         STATE_NORM_LIST);
99
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_HEARTBEAT,         STATE_NO_CHANGE);
99
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_HEARTBEAT,         STATE_NO_CHANGE);
100
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_PROGRAM_BIOS,      STATE_BPGM_OFFLINE);
100
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_PROGRAM_BIOS,      STATE_BPGM_OFFLINE);
101
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_PROGRAM_APP,       STATE_APGM_OFFLINE);
101
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_PROGRAM_APP,       STATE_APGM_OFFLINE);
102
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_RESET,             STATE_NORM_OFFLINE);
102
    Node::AddTransition(STATE_NORM_INITIALIZED,      EVENT_RESET,             STATE_NORM_OFFLINE);
103
   
103
   
104
   
104
   
105
    // Program bios flow
105
    // Program bios flow
106
    Node::AddTransition(STATE_BPGM_OFFLINE,          EVENT_BIOS_START,        STATE_BPGM_START);
106
    Node::AddTransition(STATE_BPGM_OFFLINE,          EVENT_BIOS_START,        STATE_BPGM_START);
107
   
107
   
108
    Node::AddTransition(STATE_BPGM_START,            EVENT_PGM_ACK,           STATE_BPGM_DATA);
108
    Node::AddTransition(STATE_BPGM_START,            EVENT_PGM_ACK,           STATE_BPGM_DATA);
109
    Node::AddTransition(STATE_BPGM_START,            EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
109
    Node::AddTransition(STATE_BPGM_START,            EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
110
 
110
 
111
    Node::AddTransition(STATE_BPGM_DATA,             EVENT_PGM_ACK,           STATE_BPGM_DATA); // If there is no more data to send STATE_PGM_END will be set instead
111
    Node::AddTransition(STATE_BPGM_DATA,             EVENT_PGM_ACK,           STATE_BPGM_DATA); // If there is no more data to send STATE_PGM_END will be set instead
112
    Node::AddTransition(STATE_BPGM_DATA,             EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
112
    Node::AddTransition(STATE_BPGM_DATA,             EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
113
   
113
   
114
    Node::AddTransition(STATE_BPGM_END,              EVENT_PGM_ACK,           STATE_BPGM_COPY);
114
    Node::AddTransition(STATE_BPGM_END,              EVENT_PGM_ACK,           STATE_BPGM_COPY);
115
    Node::AddTransition(STATE_BPGM_END,              EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
115
    Node::AddTransition(STATE_BPGM_END,              EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
116
   
116
   
117
    Node::AddTransition(STATE_BPGM_COPY,             EVENT_BIOS_START,        STATE_APGM_OFFLINE); // Remove application after bios upgrade
117
    Node::AddTransition(STATE_BPGM_COPY,             EVENT_BIOS_START,        STATE_APGM_OFFLINE); // Remove application after bios upgrade
118
       
118
       
119
   
119
   
120
    // Program application flow
120
    // Program application flow
121
    Node::AddTransition(STATE_APGM_OFFLINE,          EVENT_BIOS_START,        STATE_APGM_START);
121
    Node::AddTransition(STATE_APGM_OFFLINE,          EVENT_BIOS_START,        STATE_APGM_START);
122
   
122
   
123
    Node::AddTransition(STATE_APGM_START,            EVENT_PGM_ACK,           STATE_APGM_DATA);
123
    Node::AddTransition(STATE_APGM_START,            EVENT_PGM_ACK,           STATE_APGM_DATA);
124
    Node::AddTransition(STATE_APGM_START,            EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
124
    Node::AddTransition(STATE_APGM_START,            EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
125
   
125
   
126
    Node::AddTransition(STATE_APGM_DATA,             EVENT_PGM_ACK,           STATE_APGM_DATA); // If there is no more data to send STATE_PGM_END will be set instead
126
    Node::AddTransition(STATE_APGM_DATA,             EVENT_PGM_ACK,           STATE_APGM_DATA); // If there is no more data to send STATE_PGM_END will be set instead
127
    Node::AddTransition(STATE_APGM_DATA,             EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
127
    Node::AddTransition(STATE_APGM_DATA,             EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
128
   
128
   
129
    Node::AddTransition(STATE_APGM_END,              EVENT_PGM_ACK,           STATE_NORM_OFFLINE); // Return to normal flow
129
    Node::AddTransition(STATE_APGM_END,              EVENT_PGM_ACK,           STATE_NORM_OFFLINE); // Return to normal flow
130
    Node::AddTransition(STATE_APGM_END,              EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
130
    Node::AddTransition(STATE_APGM_END,              EVENT_PGM_NACK,          STATE_NORM_OFFLINE); // Return to normal flow
131
   
131
   
132
   
132
   
133
    Node::state_names_[STATE_INVALID] = "STATE_INVALID";
133
    Node::state_names_[STATE_INVALID] = "STATE_INVALID";
134
    Node::state_names_[STATE_NO_CHANGE] = "STATE_NO_CHANGE";
134
    Node::state_names_[STATE_NO_CHANGE] = "STATE_NO_CHANGE";
135
    Node::state_names_[STATE_NORM_OFFLINE] = "STATE_NORM_OFFLINE";
135
    Node::state_names_[STATE_NORM_OFFLINE] = "STATE_NORM_OFFLINE";
136
    Node::state_names_[STATE_NORM_ONLINE] = "STATE_NORM_ONLINE";
136
    Node::state_names_[STATE_NORM_ONLINE] = "STATE_NORM_ONLINE";
137
    Node::state_names_[STATE_NORM_LIST] = "STATE_NORM_LIST";
137
    Node::state_names_[STATE_NORM_LIST] = "STATE_NORM_LIST";
138
    Node::state_names_[STATE_NORM_INITIALIZED] = "STATE_NORM_INITIALIZED";
138
    Node::state_names_[STATE_NORM_INITIALIZED] = "STATE_NORM_INITIALIZED";
139
    Node::state_names_[STATE_BPGM_OFFLINE] = "STATE_BPGM_OFFLINE";
139
    Node::state_names_[STATE_BPGM_OFFLINE] = "STATE_BPGM_OFFLINE";
140
    Node::state_names_[STATE_BPGM_START] = "STATE_BPGM_START";
140
    Node::state_names_[STATE_BPGM_START] = "STATE_BPGM_START";
141
    Node::state_names_[STATE_BPGM_DATA] = "STATE_BPGM_DATA";
141
    Node::state_names_[STATE_BPGM_DATA] = "STATE_BPGM_DATA";
142
    Node::state_names_[STATE_BPGM_END] = "STATE_BPGM_END";
142
    Node::state_names_[STATE_BPGM_END] = "STATE_BPGM_END";
143
    Node::state_names_[STATE_BPGM_COPY] = "STATE_BPGM_COPY";
143
    Node::state_names_[STATE_BPGM_COPY] = "STATE_BPGM_COPY";
144
    Node::state_names_[STATE_APGM_OFFLINE] = "STATE_APGM_OFFLINE";
144
    Node::state_names_[STATE_APGM_OFFLINE] = "STATE_APGM_OFFLINE";
145
    Node::state_names_[STATE_APGM_START] = "STATE_APGM_START";
145
    Node::state_names_[STATE_APGM_START] = "STATE_APGM_START";
146
    Node::state_names_[STATE_APGM_DATA] = "STATE_APGM_DATA";
146
    Node::state_names_[STATE_APGM_DATA] = "STATE_APGM_DATA";
147
    Node::state_names_[STATE_APGM_END] = "STATE_APGM_END";
147
    Node::state_names_[STATE_APGM_END] = "STATE_APGM_END";
148
   
148
   
149
    Node::event_names_[EVENT_BIOS_START] = "EVENT_BIOS_START";
149
    Node::event_names_[EVENT_BIOS_START] = "EVENT_BIOS_START";
150
    Node::event_names_[EVENT_APP_START] = "EVENT_APP_START";
150
    Node::event_names_[EVENT_APP_START] = "EVENT_APP_START";
151
    Node::event_names_[EVENT_HEARTBEAT] = "EVENT_HEARTBEAT";
151
    Node::event_names_[EVENT_HEARTBEAT] = "EVENT_HEARTBEAT";
152
    Node::event_names_[EVENT_PGM_ACK] = "EVENT_PGM_ACK";
152
    Node::event_names_[EVENT_PGM_ACK] = "EVENT_PGM_ACK";
153
    Node::event_names_[EVENT_PGM_NACK] = "EVENT_PGM_NACK";
153
    Node::event_names_[EVENT_PGM_NACK] = "EVENT_PGM_NACK";
154
    Node::event_names_[EVENT_LIST_DONE] = "EVENT_LIST_DONE";
154
    Node::event_names_[EVENT_LIST_DONE] = "EVENT_LIST_DONE";
155
    Node::event_names_[EVENT_PROGRAM_BIOS] = "EVENT_PROGRAM_BIOS";
155
    Node::event_names_[EVENT_PROGRAM_BIOS] = "EVENT_PROGRAM_BIOS";
156
    Node::event_names_[EVENT_PROGRAM_APP] = "EVENT_PROGRAM_APP";
156
    Node::event_names_[EVENT_PROGRAM_APP] = "EVENT_PROGRAM_APP";
157
    Node::event_names_[EVENT_RESET] = "EVENT_RESET";
157
    Node::event_names_[EVENT_RESET] = "EVENT_RESET";
158
}
158
}
159
 
159
 
160
void Node::AddTransition(Node::State current_state, Node::Event event, State target_state)
160
void Node::AddTransition(Node::State current_state, Node::Event event, State target_state)
161
{
161
{
162
    Node::transitions_[current_state][event] = target_state;
162
    Node::transitions_[current_state][event] = target_state;
163
}
163
}
164
 
164
 
165
Node::State Node::GetTransitionTarget(Node::Event event)
165
Node::State Node::GetTransitionTarget(Node::Event event)
166
{
166
{
167
    Node::TransitionList::iterator it1 = Node::transitions_.find(this->state_);
167
    Node::TransitionList::iterator it1 = Node::transitions_.find(this->state_);
168
   
168
   
169
    if (it1 == Node::transitions_.end())
169
    if (it1 == Node::transitions_.end())
170
    {
170
    {
171
        LOG.Warning("No transitions found for current state " + boost::lexical_cast<std::string>(this->state_));
171
        LOG.Warning("No transitions found for current state " + boost::lexical_cast<std::string>(this->state_));
172
        return STATE_INVALID;
172
        return STATE_INVALID;
173
    }
173
    }
174
   
174
   
175
    Node::Transition::iterator it2 = it1->second.find(event);
175
    Node::Transition::iterator it2 = it1->second.find(event);
176
   
176
   
177
    if (it2 == it1->second.end())
177
    if (it2 == it1->second.end())
178
    {
178
    {
179
        LOG.Warning("No transitions found for current state " + boost::lexical_cast<std::string>(this->state_) + " for event " + boost::lexical_cast<std::string>(event));
179
        LOG.Warning("No transitions found for current state " + boost::lexical_cast<std::string>(this->state_) + " for event " + boost::lexical_cast<std::string>(event));
180
        return STATE_INVALID;
180
        return STATE_INVALID;
181
    }
181
    }
182
   
182
   
183
    return it2->second;
183
    return it2->second;
184
}
184
}
185
 
185
 
186
void Node::Trigger(Node::Event event, common::StringMap variables)
186
void Node::Trigger(Node::Event event, common::StringMap variables)
187
{
187
{
188
    this->ResetTimeout();
188
    this->ResetTimeout();
189
   
189
   
190
    State target_state = this->GetTransitionTarget(event);
190
    State target_state = this->GetTransitionTarget(event);
191
   
191
   
192
    LOG.Debug("Trigger called on " + this->id_ + ", current state: " + Node::state_names_[this->state_] + ", event: " + Node::event_names_[event] + ", target state: "  + Node::state_names_[target_state]);
192
    LOG.Debug("Trigger called on " + this->id_ + ", current state: " + Node::state_names_[this->state_] + ", event: " + Node::event_names_[event] + ", target state: "  + Node::state_names_[target_state]);
193
   
193
   
194
    if (event == EVENT_BIOS_START)
194
    if (event == EVENT_BIOS_START)
195
    {
195
    {
196
        this->information_.has_application_ = boost::lexical_cast<int>(variables["HasApplication"]) > 0;
196
        this->information_.has_application_ = boost::lexical_cast<int>(variables["HasApplication"]) > 0;
197
        this->information_.bios_version_ = boost::lexical_cast<unsigned int>(variables["BiosVersion"]);
197
        this->information_.bios_version_ = boost::lexical_cast<unsigned int>(variables["BiosVersion"]);
198
        this->information_.device_type_ = variables["DeviceType"];
198
        this->information_.device_type_ = variables["DeviceType"];
199
        this->information_.valid_ = true;
199
        this->information_.valid_ = true;
200
    }
200
    }
201
   
201
   
202
    if (target_state == STATE_INVALID)
202
    if (target_state == STATE_INVALID)
203
    {
203
    {
204
        this->SendReset();
204
        this->SendReset();
205
        target_state = STATE_NORM_OFFLINE;
205
        target_state = STATE_NORM_OFFLINE;
206
    }
206
    }
207
    else if (target_state == STATE_NO_CHANGE)
207
    else if (target_state == STATE_NO_CHANGE)
208
    {
208
    {
209
        return;
209
        return;
210
    }
210
    }
211
   
211
   
212
    if ((this->state_ == STATE_APGM_END || this->state_ == STATE_BPGM_END) && event == EVENT_PGM_ACK)
212
    if ((this->state_ == STATE_APGM_END || this->state_ == STATE_BPGM_END) && event == EVENT_PGM_ACK)
213
    {
213
    {
214
        unsigned int checksum = boost::lexical_cast<unsigned int>(variables["Data"]);
214
        unsigned int checksum = boost::lexical_cast<unsigned int>(variables["Data"]);
215
       
215
       
216
        if (this->expected_ack_data_ != checksum)
216
        if (this->expected_ack_data_ != checksum)
217
        {
217
        {
218
            LOG.Warning("Checksum received in ACK was incorrect got " + boost::lexical_cast<std::string>(checksum) + " expected " + boost::lexical_cast<std::string>(this->expected_ack_data_) + ", aborting...");
218
            LOG.Warning("Checksum received in ACK was incorrect got " + boost::lexical_cast<std::string>(checksum) + " expected " + boost::lexical_cast<std::string>(this->expected_ack_data_) + ", aborting...");
219
        }
219
        }
220
        else if (this->state_ == STATE_BPGM_END)
220
        else if (this->state_ == STATE_BPGM_END)
221
        {
221
        {
222
            float speed = (float)this->code_->GetLength() / (float)(time(NULL) - this->program_start_time_);
222
            float speed = (float)this->code_->GetLength() / (float)(time(NULL) - this->program_start_time_);
223
           
223
           
224
            LOG.Info("Data was successfully transferred to " + this->id_ + ", speed was " + boost::lexical_cast<std::string>(speed) + " B/s");
224
            LOG.Info("Data was successfully transferred to " + this->id_ + ", speed was " + boost::lexical_cast<std::string>(speed) + " B/s");
225
           
225
           
226
            LOG.Debug("Sending application programming copy to node " + this->id_);
226
            LOG.Debug("Sending application programming copy to node " + this->id_);
227
            can::Message* payload = new can::Message("nmt", "", "", 0, "Pgm_Copy");
227
            can::Message* payload = new can::Message("nmt", "", "", 0, "Pgm_Copy");
228
           
228
           
229
            unsigned int source0 = GET_LOW_BYTE_16(this->start_offset_);
229
            unsigned int source0 = GET_LOW_BYTE_16(this->start_offset_);
230
            unsigned int source1 = GET_HIGH_BYTE_16(this->start_offset_);
230
            unsigned int source1 = GET_HIGH_BYTE_16(this->start_offset_);
231
           
231
           
232
            unsigned int destination0 = GET_LOW_BYTE_16(this->code_->GetAddressLower());
232
            unsigned int destination0 = GET_LOW_BYTE_16(this->code_->GetAddressLower());
233
            unsigned int destination1 = GET_HIGH_BYTE_16(this->code_->GetAddressLower());
233
            unsigned int destination1 = GET_HIGH_BYTE_16(this->code_->GetAddressLower());
234
           
234
           
235
            unsigned int length0 = GET_LOW_BYTE_16(this->code_->GetLength());
235
            unsigned int length0 = GET_LOW_BYTE_16(this->code_->GetLength());
236
            unsigned int length1 = GET_HIGH_BYTE_16(this->code_->GetLength());
236
            unsigned int length1 = GET_HIGH_BYTE_16(this->code_->GetLength());
237
           
237
           
238
            payload->SetVariable("Source0", boost::lexical_cast<std::string>(source0));
238
            payload->SetVariable("Source0", boost::lexical_cast<std::string>(source0));
239
            payload->SetVariable("Source1", boost::lexical_cast<std::string>(source1));
239
            payload->SetVariable("Source1", boost::lexical_cast<std::string>(source1));
240
            payload->SetVariable("Destination0", boost::lexical_cast<std::string>(destination0));
240
            payload->SetVariable("Destination0", boost::lexical_cast<std::string>(destination0));
241
            payload->SetVariable("Destination1", boost::lexical_cast<std::string>(destination1));
241
            payload->SetVariable("Destination1", boost::lexical_cast<std::string>(destination1));
242
            payload->SetVariable("Length0", boost::lexical_cast<std::string>(length0));
242
            payload->SetVariable("Length0", boost::lexical_cast<std::string>(length0));
243
            payload->SetVariable("Length1", boost::lexical_cast<std::string>(length1));
243
            payload->SetVariable("Length1", boost::lexical_cast<std::string>(length1));
244
           
244
           
245
            broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
245
            broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
246
        }
246
        }
247
        else
247
        else
248
        {
248
        {
249
            float speed = (float)this->code_->GetLength() / (float)(time(NULL) - this->program_start_time_);
249
            float speed = (float)this->code_->GetLength() / (float)(time(NULL) - this->program_start_time_);
250
           
250
           
251
            LOG.Info("Programming was completed successfully on " + this->id_ + ", speed was " + boost::lexical_cast<std::string>(speed) + " B/s");
251
            LOG.Info("Programming was completed successfully on " + this->id_ + ", speed was " + boost::lexical_cast<std::string>(speed) + " B/s");
252
        }
252
        }
253
    }
253
    }
254
   
254
   
255
    if (target_state == STATE_NORM_LIST)
255
    if (target_state == STATE_NORM_LIST)
256
    {
256
    {
257
        this->SendListRequest();
257
        this->SendListRequest();
258
    }
258
    }
259
    else if (target_state == STATE_BPGM_OFFLINE || target_state == STATE_APGM_OFFLINE)
259
    else if (target_state == STATE_BPGM_OFFLINE || target_state == STATE_APGM_OFFLINE)
260
    {
260
    {
261
        if (event != EVENT_BIOS_START)
261
        if (event != EVENT_BIOS_START)
262
        {
262
        {
263
            this->SendReset();
263
            this->SendReset();
264
        }
264
        }
265
    }
265
    }
266
    else if (target_state == STATE_APGM_START || target_state == STATE_BPGM_START)
266
    else if (target_state == STATE_APGM_START || target_state == STATE_BPGM_START)
267
    {
267
    {
268
        if (!this->code_->IsValid())
268
        if (!this->code_->IsValid())
269
        {
269
        {
270
            LOG.Error("Code is not valid, aborting...");
270
            LOG.Error("Code is not valid, aborting...");
271
            target_state = STATE_NORM_OFFLINE;
271
            target_state = STATE_NORM_OFFLINE;
272
        }
272
        }
273
        else
273
        else
274
        {
274
        {
275
            LOG.Debug("Sending programming start to node " + this->id_);
275
            LOG.Debug("Sending programming start to node " + this->id_);
276
            can::Message* payload = new can::Message("nmt", "", "", 0, "Pgm_Start");
276
            can::Message* payload = new can::Message("nmt", "", "", 0, "Pgm_Start");
277
            payload->SetVariable("HardwareId", boost::lexical_cast<std::string>(common::FromHex(this->id_)));
277
            payload->SetVariable("HardwareId", boost::lexical_cast<std::string>(common::FromHex(this->id_)));
278
           
278
           
279
            this->start_offset_ = target_state == STATE_BPGM_START ? 0 : this->code_->GetAddressLower();
279
            this->start_offset_ = target_state == STATE_BPGM_START ? 0 : this->code_->GetAddressLower();
280
           
280
           
281
            unsigned int address0 = GET_LOW_BYTE_16(this->start_offset_);
281
            unsigned int address0 = GET_LOW_BYTE_16(this->start_offset_);
282
            unsigned int address1 = GET_HIGH_BYTE_16(this->start_offset_);
282
            unsigned int address1 = GET_HIGH_BYTE_16(this->start_offset_);
283
           
283
           
284
            this->expected_ack_data_ = SWAP_BYTE_ORDER_16(this->start_offset_);
284
            this->expected_ack_data_ = SWAP_BYTE_ORDER_16(this->start_offset_);
285
           
285
           
286
            payload->SetVariable("Address0", boost::lexical_cast<std::string>(address0));
286
            payload->SetVariable("Address0", boost::lexical_cast<std::string>(address0));
287
            payload->SetVariable("Address1", boost::lexical_cast<std::string>(address1));
287
            payload->SetVariable("Address1", boost::lexical_cast<std::string>(address1));
288
            payload->SetVariable("Address2", "0"); // Not used?
288
            payload->SetVariable("Address2", "0"); // Not used?
289
            payload->SetVariable("Address3", "0"); // Not used?
289
            payload->SetVariable("Address3", "0"); // Not used?
290
           
290
           
291
            this->current_offset_ = 0;
291
            this->current_offset_ = 0;
292
           
292
           
293
            broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
293
            broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
294
           
294
           
295
            this->program_start_time_ = time(NULL);
295
            this->program_start_time_ = time(NULL);
296
        }
296
        }
297
    }
297
    }
298
    else if (target_state == STATE_APGM_DATA || target_state == STATE_BPGM_DATA)
298
    else if (target_state == STATE_APGM_DATA || target_state == STATE_BPGM_DATA)
299
    {
299
    {
300
        unsigned int offset = boost::lexical_cast<unsigned int>(variables["Data"]);
300
        unsigned int offset = boost::lexical_cast<unsigned int>(variables["Data"]);
301
       
301
       
302
        if ( this->expected_ack_data_ != offset)
302
        if ( this->expected_ack_data_ != offset)
303
        {
303
        {
304
            LOG.Warning("Offset received in ACK was incorrect got " + boost::lexical_cast<std::string>(offset) + " expected " + boost::lexical_cast<std::string>(this->expected_ack_data_) + ", aborting...");
304
            LOG.Warning("Offset received in ACK was incorrect got " + boost::lexical_cast<std::string>(offset) + " expected " + boost::lexical_cast<std::string>(this->expected_ack_data_) + ", aborting...");
305
            target_state = STATE_NORM_OFFLINE;
305
            target_state = STATE_NORM_OFFLINE;
306
        }
306
        }
307
        else if (this->current_offset_ >= this->code_->GetLength())
307
        else if (this->current_offset_ >= this->code_->GetLength())
308
        {
308
        {
309
            LOG.Debug("Sending programming end to node " + this->id_);
309
            LOG.Debug("Sending programming end to node " + this->id_);
310
           
310
           
311
            unsigned int checksum = this->code_->GetChecksum();
311
            unsigned int checksum = this->code_->GetChecksum();
312
            this->expected_ack_data_ = SWAP_BYTE_ORDER_16(checksum);
312
            this->expected_ack_data_ = SWAP_BYTE_ORDER_16(checksum);
313
           
313
           
314
            can::Message* payload = new can::Message("nmt", "", "", 0, "Pgm_End");
314
            can::Message* payload = new can::Message("nmt", "", "", 0, "Pgm_End");
315
            broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
315
            broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
316
           
316
           
317
            target_state = target_state == STATE_BPGM_DATA ? STATE_BPGM_END : STATE_APGM_END;
317
            target_state = target_state == STATE_BPGM_DATA ? STATE_BPGM_END : STATE_APGM_END;
318
        }
318
        }
319
        else
319
        else
320
        {
320
        {
321
            LOG.Debug("Sending programming data to node " + this->id_);
321
            LOG.Debug("Sending programming data to node " + this->id_);
322
            can::Message* payload = new can::Message("nmt", "", "", 0, "Pgm_Data_48");
322
            can::Message* payload = new can::Message("nmt", "", "", 0, "Pgm_Data_48");
323
           
323
           
324
            unsigned int offset0 = GET_LOW_BYTE_16(this->start_offset_ + this->current_offset_);
324
            unsigned int offset0 = GET_LOW_BYTE_16(this->start_offset_ + this->current_offset_);
325
            unsigned int offset1 = GET_HIGH_BYTE_16(this->start_offset_ + this->current_offset_);
325
            unsigned int offset1 = GET_HIGH_BYTE_16(this->start_offset_ + this->current_offset_);
326
           
326
           
327
            this->expected_ack_data_ = SWAP_BYTE_ORDER_16(this->start_offset_ + this->current_offset_);
327
            this->expected_ack_data_ = SWAP_BYTE_ORDER_16(this->start_offset_ + this->current_offset_);
328
           
328
           
329
            payload->SetVariable("Offset0", boost::lexical_cast<std::string>(offset0));
329
            payload->SetVariable("Offset0", boost::lexical_cast<std::string>(offset0));
330
            payload->SetVariable("Offset1", boost::lexical_cast<std::string>(offset1));
330
            payload->SetVariable("Offset1", boost::lexical_cast<std::string>(offset1));
331
           
331
           
332
            for (int n = 0; (this->current_offset_ < this->code_->GetLength()) && (n < 6); n++)
332
            for (int n = 0; (this->current_offset_ < this->code_->GetLength()) && (n < 6); n++)
333
            {
333
            {
334
                //LOG.Debug("Data" + boost::lexical_cast<std::string>(n) + "=" +  boost::lexical_cast<std::string>((unsigned int)this->code_->GetByte(this->code_->GetAddressLower() + this->current_offset_)));
334
                //LOG.Debug("Data" + boost::lexical_cast<std::string>(n) + "=" +  boost::lexical_cast<std::string>((unsigned int)this->code_->GetByte(this->code_->GetAddressLower() + this->current_offset_)));
335
                payload->SetVariable("Data" + boost::lexical_cast<std::string>(n), boost::lexical_cast<std::string>((unsigned int)this->code_->GetByte(this->code_->GetAddressLower() + this->current_offset_)));
335
                payload->SetVariable("Data" + boost::lexical_cast<std::string>(n), boost::lexical_cast<std::string>((unsigned int)this->code_->GetByte(this->code_->GetAddressLower() + this->current_offset_)));
336
                this->current_offset_++;
336
                this->current_offset_++;
337
            }
337
            }
338
           
338
           
339
            broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
339
            broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
340
        }
340
        }
341
    }
341
    }
342
    else if (target_state == STATE_BPGM_COPY)
342
    else if (target_state == STATE_BPGM_COPY)
343
    {
343
    {
344
        LOG.Debug("Preparing to send null application to node " + this->id_);
344
        LOG.Debug("Preparing to send null application to node " + this->id_);
345
       
345
       
346
        this->code_->Reset();
346
        this->code_->Reset();
347
       
347
       
348
        this->code_->AddByte(0xFF);
348
        this->code_->AddByte(0xFF);
349
        this->code_->AddByte(0xFF);
349
        this->code_->AddByte(0xFF);
350
    }
350
    }
351
    else if (target_state == STATE_NORM_OFFLINE)
351
    else if (target_state == STATE_NORM_OFFLINE)
352
    {
352
    {
353
        this->information_.valid_ = false;
353
        this->information_.valid_ = false;
354
        this->SendReset();
354
        this->SendReset();
355
    }
355
    }
356
   
356
   
357
   
357
   
358
    if (this->state_ != target_state)
358
    if (this->state_ != target_state)
359
    {
359
    {
360
        this->signal_on_new_state_(this->id_, this->state_, target_state);
360
        this->signal_on_new_state_(this->id_, this->state_, target_state);
361
    }
361
    }
362
   
362
   
363
    this->state_ = target_state;
363
    this->state_ = target_state;
364
}
364
}
365
 
365
 
366
bool Node::CheckTimeout()
366
bool Node::CheckTimeout()
367
{
367
{
368
    if (this->state_ == STATE_NORM_OFFLINE)
368
    if (this->state_ == STATE_NORM_OFFLINE)
369
    {
369
    {
370
        return true;
370
        return true;
371
    }
371
    }
372
   
372
   
373
    if (this->code_.use_count() == 0 && this->information_.last_active_ + 10 < time(NULL))
373
    if (this->code_.use_count() == 0 && this->information_.last_active_ + 10 < time(NULL))
374
    {
374
    {
375
        this->state_ = STATE_NORM_OFFLINE;
375
        this->state_ = STATE_NORM_OFFLINE;
376
        return false;
376
        return false;
377
    }
377
    }
378
   
378
   
379
    return true;
379
    return true;
380
}
380
}
381
 
381
 
382
void Node::ResetTimeout()
382
void Node::ResetTimeout()
383
{
383
{
384
    this->information_.last_active_ = time(NULL);
384
    this->information_.last_active_ = time(NULL);
385
}
385
}
386
 
386
 
387
void Node::Reset()
387
void Node::Reset()
388
{
388
{
389
    common::StringMap variables;
389
    common::StringMap variables;
390
   
390
   
391
    this->Trigger(EVENT_RESET, variables);
391
    this->Trigger(EVENT_RESET, variables);
392
}
392
}
393
 
393
 
394
void Node::ProgramApplication(Code::Pointer code)
394
void Node::ProgramApplication(Code::Pointer code)
395
{
395
{
396
    this->code_ = code;
396
    this->code_ = code;
397
   
397
   
398
    common::StringMap variables;
398
    common::StringMap variables;
399
   
399
   
400
    this->Trigger(EVENT_PROGRAM_APP, variables);
400
    this->Trigger(EVENT_PROGRAM_APP, variables);
401
}
401
}
402
 
402
 
403
void Node::ProgramBios(Code::Pointer code)
403
void Node::ProgramBios(Code::Pointer code)
404
{
404
{
405
    this->code_ = code;
405
    this->code_ = code;
406
   
406
   
407
    common::StringMap variables;
407
    common::StringMap variables;
408
   
408
   
409
    this->Trigger(EVENT_PROGRAM_BIOS, variables);
409
    this->Trigger(EVENT_PROGRAM_BIOS, variables);
410
}
410
}
411
 
411
 
412
void Node::SendReset()
412
void Node::SendReset()
413
{
413
{
414
    LOG.Info("Sending node reset to " + this->id_);
414
    LOG.Info("Sending node reset to " + this->id_);
415
    can::Message* payload = new can::Message("nmt", "", "", 0, "Reset");
415
    can::Message* payload = new can::Message("nmt", "", "", 0, "Reset");
416
    payload->SetVariable("HardwareId", boost::lexical_cast<std::string>(common::FromHex(this->id_)));
416
    payload->SetVariable("HardwareId", boost::lexical_cast<std::string>(common::FromHex(this->id_)));
417
   
417
   
418
    broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
418
    broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
419
}
419
}
420
 
420
 
421
void Node::SendListRequest()
421
void Node::SendListRequest()
422
{
422
{
423
    LOG.Debug("Sending module listing on node " + this->id_);
423
    LOG.Debug("Sending module listing on node " + this->id_);
424
    can::Message* payload = new can::Message("mnmt", "To_Owner", "", 0, "List");
424
    can::Message* payload = new can::Message("mnmt", "To_Owner", "", 0, "List");
425
    payload->SetVariable("HardwareId", boost::lexical_cast<std::string>(common::FromHex(this->id_)));
425
    payload->SetVariable("HardwareId", boost::lexical_cast<std::string>(common::FromHex(this->id_)));
426
   
426
   
427
    broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
427
    broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), Manager::Instance().get())));
428
}
428
}
429
 
429
 
430
}; // namespace control
430
}; // namespace control
431
}; // namespace atom
431
}; // namespace atom
432
 
432