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phy-tx-stats-calculator.cc
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1 /* -*- Mode: C++; c-file-style: "gnu"; indent-tabs-mode:nil; -*- */
2 /*
3  * Copyright (c) 2011 Centre Tecnologic de Telecomunicacions de Catalunya (CTTC)
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 version 2 as
7  * published by the Free Software Foundation;
8  *
9  * This program is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12  * GNU General Public License for more details.
13  *
14  * You should have received a copy of the GNU General Public License
15  * along with this program; if not, write to the Free Software
16  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
17  *
18  * Author: Jaume Nin <jnin@cttc.es>
19  * modified by: Marco Miozzo <mmiozzo@cttc.es>
20  * Convert MacStatsCalculator in PhyTxStatsCalculator
21  */
22 
24 #include "ns3/string.h"
25 #include <ns3/simulator.h>
26 #include <ns3/log.h>
27 
28 namespace ns3 {
29 
30 NS_LOG_COMPONENT_DEFINE ("PhyTxStatsCalculator");
31 
32 NS_OBJECT_ENSURE_REGISTERED (PhyTxStatsCalculator);
33 
35  : m_dlTxFirstWrite (true),
36  m_ulTxFirstWrite (true)
37 {
38  NS_LOG_FUNCTION (this);
39 
40 }
41 
43 {
44  NS_LOG_FUNCTION (this);
45 }
46 
47 TypeId
49 {
50  static TypeId tid = TypeId ("ns3::PhyTxStatsCalculator")
52  .AddConstructor<PhyTxStatsCalculator> ()
53  .AddAttribute ("DlTxOutputFilename",
54  "Name of the file where the downlink results will be saved.",
55  StringValue ("DlTxPhyStats.txt"),
56  MakeStringAccessor (&PhyTxStatsCalculator::SetDlTxOutputFilename),
57  MakeStringChecker ())
58  .AddAttribute ("UlTxOutputFilename",
59  "Name of the file where the uplink results will be saved.",
60  StringValue ("UlTxPhyStats.txt"),
61  MakeStringAccessor (&PhyTxStatsCalculator::SetUlTxOutputFilename),
62  MakeStringChecker ())
63  ;
64  return tid;
65 }
66 
67 void
68 PhyTxStatsCalculator::SetUlTxOutputFilename (std::string outputFilename)
69 {
71 }
72 
73 std::string
75 {
77 }
78 
79 void
80 PhyTxStatsCalculator::SetDlTxOutputFilename (std::string outputFilename)
81 {
83 }
84 
85 std::string
87 {
89 }
90 
91 void
93 {
94  NS_LOG_FUNCTION (this << params.m_cellId << params.m_imsi << params.m_timestamp << params.m_rnti << params.m_layer << params.m_mcs << params.m_size << params.m_rv << params.m_ndi);
95  NS_LOG_INFO ("Write DL Tx Phy Stats in " << GetDlTxOutputFilename ().c_str ());
96 
97  std::ofstream outFile;
98  if ( m_dlTxFirstWrite == true )
99  {
100  outFile.open (GetDlOutputFilename ().c_str ());
101  if (!outFile.is_open ())
102  {
103  NS_LOG_ERROR ("Can't open file " << GetDlTxOutputFilename ().c_str ());
104  return;
105  }
106  m_dlTxFirstWrite = false;
107  //outFile << "% time\tcellId\tIMSI\tRNTI\tlayer\tmcs\tsize\trv\tndi"; // txMode is not available at dl tx side
108  outFile << "% time\tcellId\tIMSI\tRNTI\tlayer\tmcs\tsize\trv\tndi";
109  outFile << std::endl;
110  }
111  else
112  {
113  outFile.open (GetDlTxOutputFilename ().c_str (), std::ios_base::app);
114  if (!outFile.is_open ())
115  {
116  NS_LOG_ERROR ("Can't open file " << GetDlTxOutputFilename ().c_str ());
117  return;
118  }
119  }
120 
121 // outFile << Simulator::Now ().GetNanoSeconds () / (double) 1e9 << "\t";
122  outFile << params.m_timestamp << "\t";
123  outFile << (uint32_t) params.m_cellId << "\t";
124  outFile << params.m_imsi << "\t";
125  outFile << params.m_rnti << "\t";
126  //outFile << (uint32_t) params.m_txMode << "\t"; // txMode is not available at dl tx side
127  outFile << (uint32_t) params.m_layer << "\t";
128  outFile << (uint32_t) params.m_mcs << "\t";
129  outFile << params.m_size << "\t";
130  outFile << (uint32_t) params.m_rv << "\t";
131  outFile << (uint32_t) params.m_ndi << std::endl;
132  outFile.close ();
133 }
134 
135 void
137 {
138  NS_LOG_FUNCTION (this << params.m_cellId << params.m_imsi << params.m_timestamp << params.m_rnti << params.m_layer << params.m_mcs << params.m_size << params.m_rv << params.m_ndi);
139  NS_LOG_INFO ("Write UL Tx Phy Stats in " << GetUlTxOutputFilename ().c_str ());
140 
141  std::ofstream outFile;
142  if ( m_ulTxFirstWrite == true )
143  {
144  outFile.open (GetUlTxOutputFilename ().c_str ());
145  if (!outFile.is_open ())
146  {
147  NS_LOG_ERROR ("Can't open file " << GetUlTxOutputFilename ().c_str ());
148  return;
149  }
150  m_ulTxFirstWrite = false;
151 // outFile << "% time\tcellId\tIMSI\tRNTI\ttxMode\tlayer\tmcs\tsize\trv\tndi";
152  outFile << "% time\tcellId\tIMSI\tRNTI\tlayer\tmcs\tsize\trv\tndi";
153  outFile << std::endl;
154  }
155  else
156  {
157  outFile.open (GetUlTxOutputFilename ().c_str (), std::ios_base::app);
158  if (!outFile.is_open ())
159  {
160  NS_LOG_ERROR ("Can't open file " << GetUlTxOutputFilename ().c_str ());
161  return;
162  }
163  }
164 
165 // outFile << Simulator::Now ().GetNanoSeconds () / (double) 1e9 << "\t";
166  outFile << params.m_timestamp << "\t";
167  outFile << (uint32_t) params.m_cellId << "\t";
168  outFile << params.m_imsi << "\t";
169  outFile << params.m_rnti << "\t";
170  //outFile << (uint32_t) params.m_txMode << "\t";
171  outFile << (uint32_t) params.m_layer << "\t";
172  outFile << (uint32_t) params.m_mcs << "\t";
173  outFile << params.m_size << "\t";
174  outFile << (uint32_t) params.m_rv << "\t";
175  outFile << (uint32_t) params.m_ndi << std::endl;
176  outFile.close ();
177 }
178 
179 void
181  std::string path, PhyTransmissionStatParameters params)
182 {
183  NS_LOG_FUNCTION (phyTxStats << path);
184  uint64_t imsi = 0;
185  std::ostringstream pathAndRnti;
186  pathAndRnti << path << "/" << params.m_rnti;
187  if (phyTxStats->ExistsImsiPath (pathAndRnti.str ()) == true)
188  {
189  imsi = phyTxStats->GetImsiPath (pathAndRnti.str ());
190  }
191  else
192  {
193  imsi = FindImsiForEnb (path, params.m_rnti);
194  phyTxStats->SetImsiPath (pathAndRnti.str (), imsi);
195  }
196 
197  params.m_imsi = imsi;
198  phyTxStats->DlPhyTransmission (params);
199 }
200 
201 void
203  std::string path, PhyTransmissionStatParameters params)
204 {
205  NS_LOG_FUNCTION (phyTxStats << path);
206  uint64_t imsi = 0;
207  std::ostringstream pathAndRnti;
208  pathAndRnti << path << "/" << params.m_rnti;
209  if (phyTxStats->ExistsImsiPath (pathAndRnti.str ()) == true)
210  {
211  imsi = phyTxStats->GetImsiPath (pathAndRnti.str ());
212  }
213  else
214  {
215  imsi = FindImsiForUe (path, params.m_rnti);
216  phyTxStats->SetImsiPath (pathAndRnti.str (), imsi);
217  }
218 
219  params.m_imsi = imsi;
220  phyTxStats->UlPhyTransmission (params);
221 }
222 
223 
224 } // namespace ns3
225 
Doxygen introspection did not find any typical Config paths.
smart pointer class similar to boost::intrusive_ptr
Definition: ptr.h:60
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by "...
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register the class in the ns-3 factory.
Definition: object-base.h:38
hold variables of type string
Definition: string.h:18
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:170
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
Definition: log.h:223
uint8_t m_rv
the redundancy version (HARQ)
Definition: lte-common.h:128
void SetUlOutputFilename(std::string outputFilename)
Set the name of the file where the uplink statistics will be stored.
uint64_t m_imsi
IMSI of the scheduled UE.
Definition: lte-common.h:122
static uint64_t FindImsiForEnb(std::string path, uint16_t rnti)
void SetDlTxOutputFilename(std::string outputFilename)
Set the name of the file where the DL TX PHY statistics will be stored.
std::string GetDlTxOutputFilename(void)
Get the name of the file where the DL TX PHY statistics will be stored.
void DlPhyTransmission(PhyTransmissionStatParameters params)
Notifies the stats calculator that an downlink trasmission has occurred.
uint8_t m_mcs
MCS for transport block.
Definition: lte-common.h:126
std::string GetUlTxOutputFilename(void)
Get the name of the file where the UL RX PHY statistics will be stored.
std::string GetUlOutputFilename(void)
Get the name of the file where the uplink statistics will be stored.
static void DlPhyTransmissionCallback(Ptr< PhyTxStatsCalculator > phyTxStats, std::string path, PhyTransmissionStatParameters params)
trace sink
void SetDlOutputFilename(std::string outputFilename)
Set the name of the file where the downlink statistics will be stored.
static uint64_t FindImsiForUe(std::string path, uint16_t rnti)
uint16_t m_size
Size of transport block.
Definition: lte-common.h:127
virtual ~PhyTxStatsCalculator()
Destructor.
uint8_t m_ndi
new data indicator flag
Definition: lte-common.h:129
static void UlPhyTransmissionCallback(Ptr< PhyTxStatsCalculator > phyTxStats, std::string path, PhyTransmissionStatParameters params)
trace sink
uint16_t m_cellId
Cell ID of the attached Enb.
Definition: lte-common.h:121
uint8_t m_layer
the layer (cw) of the transmission
Definition: lte-common.h:125
void SetUlTxOutputFilename(std::string outputFilename)
Set the name of the file where the UL Tx PHY statistics will be stored.
#define NS_LOG_ERROR(msg)
Use NS_LOG to output a message of level LOG_ERROR.
Definition: log.h:193
a unique identifier for an interface.
Definition: type-id.h:49
TypeId SetParent(TypeId tid)
Definition: type-id.cc:610
uint16_t m_rnti
C-RNTI scheduled.
Definition: lte-common.h:123
void UlPhyTransmission(PhyTransmissionStatParameters params)
Notifies the stats calculator that an uplink trasmission has occurred.
std::string GetDlOutputFilename(void)
Get the name of the file where the downlink statistics will be stored.