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  1. /*
  2.  *
  3.  *  Copyright (C) 2010  Mattias Runge
  4.  *
  5.  *  This program is free software; you can redistribute it and/or modify
  6.  *  it under the terms of the GNU General Public License as published by
  7.  *  the Free Software Foundation; either version 2 of the License, or
  8.  *  (at your option) any later version.
  9.  *
  10.  *  This program is distributed in the hope that it will be useful,
  11.  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
  12.  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  13.  *  GNU General Public License for more details.
  14.  *
  15.  *  You should have received a copy of the GNU General Public License along
  16.  *  with this program; if not, write to the Free Software Foundation, Inc.,
  17.  *  51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  18.  *
  19.  */
  20.  
  21. #include "Manager.h"
  22.  
  23. #include <boost/lexical_cast.hpp>
  24.  
  25. #include "broker/Manager.h"
  26. #include "broker/Message.h"
  27. #include "common/common.h"
  28. #include "timer/Manager.h"
  29. #include "storage/Manager.h"
  30.  
  31. #include "can/Message.h"
  32. #include "can/CanDaemon.cpp"
  33.  
  34. namespace atom {
  35. namespace control {
  36.    
  37. Manager::Pointer Manager::instance_;
  38.  
  39. Manager::Manager() : broker::Subscriber(false), LOG("control::Manager")
  40. {
  41.     Node::SetupStateMachine();
  42.    
  43.     this->active_programming_node_id_ = "";
  44.    
  45.     // Nyquist–Shannon sampling theorem state that we need to double the time, modules send every 10 seconds
  46.     this->timer_id_ = timer::Manager::Instance()->SetTimer(20000, true);
  47. }
  48.  
  49. Manager::~Manager()
  50. {
  51. }
  52.  
  53. Manager::Pointer Manager::Instance()
  54. {
  55.     return Manager::instance_;
  56. }
  57.  
  58. void Manager::Create()
  59. {
  60.     Manager::instance_ = Manager::Pointer(new Manager());
  61. }
  62.  
  63. void Manager::Delete()
  64. {
  65.     Manager::instance_.reset();
  66. }
  67.  
  68. void Manager::ConnectSlotNode(const SignalOnNodeChange::slot_type& signal_on_node_change_)
  69. {
  70.     this->signal_on_node_change_.connect(signal_on_node_change_);
  71. }
  72.  
  73. void Manager::ConnectSlotModule(const SignalOnModuleChange::slot_type& slot_on_module_change)
  74. {
  75.     this->signal_on_module_change_.connect(slot_on_module_change);
  76. }
  77.  
  78. void Manager::ConnectSlotModule(const SignalOnModuleMessage::slot_type& slot_on_module_message)
  79. {
  80.     this->signal_on_module_message_.connect(slot_on_module_message);
  81. }
  82.  
  83. void Manager::SlotOnTimeoutHandler(timer::TimerId timer_id, bool repeat)
  84. {
  85.     if (timer_id != this->timer_id_)
  86.     {
  87.         return;
  88.     }
  89.    
  90.     for (NodeList::iterator it = this->nodes_.begin(); it != this->nodes_.end(); it++)
  91.     {
  92.         if (!it->second->CheckTimeout())
  93.         {
  94.             LOG.Info("Node " +it->second->GetId() + " has not sent anything in a long time, setting offline.");
  95.             this->RemoveModules(it->second->GetId());
  96.            
  97.             storage::Manager::Instance()->FlushStore("NodeList");
  98.             storage::Manager::Instance()->FlushStore("ModuleList");
  99.         }
  100.     }
  101. }
  102.  
  103. void Manager::SlotOnMessageHandler(broker::Message::Pointer message)
  104. {
  105.     if (message->GetType() == broker::Message::CAN_MESSAGE)
  106.     {
  107.         //LOG.Debug("Message received");
  108.         can::Message* payload = static_cast<can::Message*>(message->GetPayload().get());
  109.         Node::Pointer node;
  110.        
  111.         if (payload->GetClassName() == "nmt")
  112.         {
  113.             if (payload->GetCommandName() == "Bios_Start")
  114.             {
  115.                 node = this->GetNode(common::ToHex(boost::lexical_cast<unsigned int>(payload->GetVariables()["HardwareId"])));
  116.                 node->Trigger(Node::EVENT_BIOS_START, payload->GetVariables());
  117.             }
  118.             else if (payload->GetCommandName() == "App_Start")
  119.             {
  120.                 node = this->GetNode(common::ToHex(boost::lexical_cast<unsigned int>(payload->GetVariables()["HardwareId"])));
  121.                 node->Trigger(Node::EVENT_APP_START, payload->GetVariables());
  122.             }
  123.             else if (payload->GetCommandName() == "Heartbeat")
  124.             {
  125.                 node = this->GetNode(common::ToHex(boost::lexical_cast<unsigned int>(payload->GetVariables()["HardwareId"])));
  126.                 node->Trigger(Node::EVENT_HEARTBEAT, payload->GetVariables());
  127.             }
  128.             else if (payload->GetCommandName() == "Pgm_Ack")
  129.             {
  130.                 node = this->GetNode(this->active_programming_node_id_);
  131.                 node->Trigger(Node::EVENT_PGM_ACK, payload->GetVariables());
  132.             }
  133.             else if (payload->GetCommandName() == "Pgm_Nack")
  134.             {
  135.                 node = this->GetNode(this->active_programming_node_id_);
  136.                 node->Trigger(Node::EVENT_PGM_NACK, payload->GetVariables());
  137.             }
  138.         }
  139.         else if (payload->GetDirectionName() == "From_Owner")
  140.         {
  141.             Module::Pointer module = this->GetModule(boost::lexical_cast<unsigned int>(payload->GetId()), payload->GetModuleName(), payload->GetClassName());
  142.            
  143.             if (payload->GetCommandName() == "List")
  144.             {
  145.                 node = this->GetNode(common::ToHex(boost::lexical_cast<unsigned int>(payload->GetVariables()["HardwareId"])));
  146.                 node->ResetTimeout();
  147.                
  148.                 module->SetNodeId(node->GetId());
  149.                
  150.                 if (this->GetNumberOfModules(node->GetId()) == boost::lexical_cast<unsigned int>(payload->GetVariables()["NumberOfModules"]))
  151.                 {
  152.                     node->Trigger(Node::EVENT_LIST_DONE, payload->GetVariables());
  153.                 }
  154.                
  155.                 LOG.Info("Module " + module->GetFullId() + " is available on node " + node->GetId() + ".");
  156.                 this->signal_on_module_change_(module->GetFullId(), true);
  157.             }
  158.             else if (module->GetNodeId() != "")
  159.             {
  160.                 node = this->GetNode(module->GetNodeId());
  161.                 node->ResetTimeout();
  162.                
  163.                 this->signal_on_module_message_(module->GetFullId(), payload->GetCommandName(), payload->GetVariables());
  164.             }
  165.         }
  166.     }
  167. }
  168.  
  169. void Manager::SlotOnNewState(Node::Id node_id, Node::State current_state, Node::State target_state)
  170. {
  171.     if (target_state != Node::STATE_NORM_INITIALIZED)
  172.     {
  173.         this->RemoveModules(node_id);
  174.     }
  175.    
  176.     if (current_state != target_state)
  177.     {
  178.         this->signal_on_node_change_(node_id, (target_state == Node::STATE_NORM_INITIALIZED || target_state == Node::STATE_NORM_LIST || target_state == Node::STATE_NORM_ONLINE));
  179.     }
  180.    
  181.     if (target_state == Node::STATE_BPGM_OFFLINE || target_state == Node::STATE_APGM_OFFLINE)
  182.     {
  183.         this->active_programming_node_id_ = node_id;
  184.     }
  185.     else if (target_state == Node::STATE_NORM_OFFLINE)
  186.     {
  187.         this->active_programming_node_id_ = "";
  188.     }
  189. }
  190.  
  191. void Manager::SendMessageHandler(std::string full_id, std::string command, common::StringMap variables)
  192. {
  193.     ModuleList::iterator it = this->modules_.find(full_id);
  194.    
  195.     if (it == this->modules_.end())
  196.     {
  197.         LOG.Warning("Can not send message to " + full_id + ", it is not available");
  198.         return;
  199.     }
  200.    
  201.     try
  202.     {
  203.         can::Message* payload = new can::Message(it->second->GetClassName(), "To_Owner", it->second->GetName(), it->second->GetId(), command);
  204.         payload->SetVariables(variables);
  205.        
  206.         broker::Manager::Instance()->Post(broker::Message::Pointer(new broker::Message(broker::Message::CAN_MESSAGE, broker::Message::PayloadPointer(payload), this)));
  207.         //LOG.Debug("Command " + command + " sent to " + it->second->GetName());
  208.     }
  209.     catch (std::runtime_error& e)
  210.     {
  211.         LOG.Error("Failed to send message, " + std::string(e.what()));
  212.     }
  213. }
  214.  
  215. void Manager::SendMessage(std::string full_id, std::string command, common::StringMap variables)
  216. {
  217.     this->io_service_.post(boost::bind(&Manager::SendMessageHandler, this, full_id, command, variables));
  218. }
  219.  
  220. common::StringList Manager::GetAvailableModules()
  221. {
  222.     common::StringList available_modules;
  223.    
  224.     for (ModuleList::iterator it = this->modules_.begin(); it != this->modules_.end(); it++)
  225.     {
  226.         available_modules.push_back(it->first);
  227.     }
  228.    
  229.     return available_modules;
  230. }
  231.  
  232. common::StringList Manager::GetAvailableNodes()
  233. {
  234.     common::StringList available_nodes;
  235.    
  236.     for (NodeList::iterator it = this->nodes_.begin(); it != this->nodes_.end(); it++)
  237.     {
  238.         std::string node = it->first;
  239.  
  240.         for (ModuleList::iterator it2 = this->modules_.begin(); it2 != this->modules_.end(); it2++)
  241.         {
  242.             if (it2->second->GetNodeId() == it->first)
  243.             {
  244.                 node += "," + it2->first;
  245.             }
  246.         }
  247.        
  248.         available_nodes.push_back(node);
  249.     }
  250.    
  251.     return available_nodes;
  252. }
  253.  
  254. bool Manager::ResetNode(Node::Id node_id)
  255. {
  256.     NodeList::iterator it = this->nodes_.find(node_id);
  257.    
  258.     if (it == this->nodes_.end())
  259.     {
  260.         LOG.Error("Could not find node " +  node_id);
  261.         return false;
  262.     }
  263.    
  264.     it->second->Reset();
  265.     return true;
  266. }
  267.  
  268. bool Manager::ProgramNode(Node::Id node_id, bool is_bios, std::string filename)
  269. {
  270.     NodeList::iterator it = this->nodes_.find(node_id);
  271.    
  272.     if (it == this->nodes_.end())
  273.     {
  274.         LOG.Error("Could not find node " +  node_id);
  275.         return false;
  276.     }
  277.    
  278.     Code::Pointer code = Code::Pointer(new Code());
  279.     if (!code->LoadIntelHexFile(filename))
  280.     {
  281.         LOG.Error("Failed to parse " + filename);
  282.         return false;
  283.     }
  284.    
  285.     if (is_bios)
  286.     {
  287.         LOG.Debug("is_bios true");
  288.         it->second->ProgramBios(code);
  289.     }
  290.     else
  291.     {
  292.         LOG.Debug("is_bios false");
  293.         it->second->ProgramApplication(code);
  294.     }
  295.    
  296.     return true;
  297. }
  298.  
  299. /* Program node with hexdata as argument */
  300. bool Manager::ProgramNodeHex(Node::Id node_id, bool is_bios, std::string hex_data)
  301. {
  302.     NodeList::iterator it = this->nodes_.find(node_id);
  303.    
  304.     if (it == this->nodes_.end())
  305.     {
  306.         LOG.Error("Could not find node " +  node_id);
  307.         return false;
  308.     }
  309.    
  310.     Code::Pointer code = Code::Pointer(new Code());
  311.     if (!code->ParseIntelHex(hex_data))
  312.     {
  313.         LOG.Error("Failed to parse hexdata " + hex_data);
  314.         return false;
  315.     }
  316.    
  317.     if (is_bios)
  318.     {
  319.         LOG.Debug("is_bios true");
  320.         it->second->ProgramBios(code);
  321.     }
  322.     else
  323.     {
  324.         LOG.Debug("is_bios false");
  325.         it->second->ProgramApplication(code);
  326.     }
  327.    
  328.     return true;
  329. }
  330.  
  331. Node::Information Manager::GetNodeInformation(Node::Id node_id)
  332. {
  333.     NodeList::iterator it = this->nodes_.find(node_id);
  334.    
  335.     if (it == this->nodes_.end())
  336.     {
  337.         throw std::runtime_error("No such node exists, " + node_id);
  338.     }
  339.        
  340.     return it->second->GetInformation();
  341. }
  342.  
  343. Node::Pointer Manager::GetNode(Node::Id node_id)
  344. {
  345.     Node::Pointer node;
  346.     NodeList::iterator it = this->nodes_.find(node_id);
  347.    
  348.     if (it == this->nodes_.end())
  349.     {
  350.         node = Node::Pointer(new Node(node_id));
  351.         node->ConnectSlots(Node::SignalOnNewState::slot_type(&Manager::SlotOnNewState, this, _1, _2, _3).track(this->tracker_));
  352.         this->nodes_[node_id] = node;
  353.     }
  354.     else
  355.     {
  356.         node = it->second;
  357.     }
  358.    
  359.     return node;
  360. }
  361.  
  362. Module::Pointer Manager::GetModule(Module::Id module_id, std::string module_name, std::string class_name)
  363. {
  364.     Module::Pointer module;
  365.     ModuleList::iterator it = this->modules_.find(Module::MakeFullId(module_id, module_name));
  366.    
  367.     if (it == this->modules_.end())
  368.     {
  369.         module = Module::Pointer(new Module(module_id, module_name, class_name));
  370.         this->modules_[module->GetFullId()] = module;
  371.     }
  372.     else
  373.     {
  374.         module = it->second;
  375.     }
  376.    
  377.     return module;
  378. }
  379.  
  380. void Manager::RemoveModules(Node::Id node_id)
  381. {
  382.     for (ModuleList::iterator it = this->modules_.begin(); it != this->modules_.end(); it++)
  383.     {
  384.         if (it->second->GetNodeId() == node_id)
  385.         {
  386.             LOG.Info("Module " + it->second->GetFullId() + " is unavailable.");
  387.             this->signal_on_module_change_(it->second->GetFullId(), false);
  388.            
  389.             this->modules_.erase(it);
  390.         }
  391.     }
  392. }
  393.  
  394. unsigned int Manager::GetNumberOfModules(Node::Id node_id)
  395. {
  396.     unsigned int number_of_modules = 0;
  397.    
  398.     for (ModuleList::iterator it = this->modules_.begin(); it != this->modules_.end(); it++)
  399.     {
  400.         if (it->second->GetNodeId() == node_id)
  401.         {
  402.             number_of_modules++;
  403.         }
  404.     }
  405.    
  406.     return number_of_modules;
  407. }
  408.  
  409. }; // namespace control
  410. }; // namespace atom
  411.