Subversion Repositories HomeAutomation

Rev

Rev 1642 | Rev 1689 | Go to most recent revision | Only display areas with differences | Regard whitespace | Details | Blame | Last modification | View Log | SVN | RSS feed

Rev 1642 Rev 1646
1
/*
1
/*
2
 *
2
 *
3
 *  Copyright (C) 2010  Mattias Runge
3
 *  Copyright (C) 2010  Mattias Runge
4
 *
4
 *
5
 *  This program is free software; you can redistribute it and/or modify
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
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
7
 *  the Free Software Foundation; either version 2 of the License, or
8
 *  (at your option) any later version.
8
 *  (at your option) any later version.
9
 *
9
 *
10
 *  This program is distributed in the hope that it will be useful,
10
 *  This program is distributed in the hope that it will be useful,
11
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
11
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
12
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13
 *  GNU General Public License for more details.
13
 *  GNU General Public License for more details.
14
 *
14
 *
15
 *  You should have received a copy of the GNU General Public License along
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.,
16
 *  with this program; if not, write to the Free Software Foundation, Inc.,
17
 *  51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
17
 *  51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
18
 *
18
 *
19
 */
19
 */
20
 
20
 
21
#include "Protocol.h"
21
#include "Protocol.h"
22
 
22
 
23
#include <stdexcept>
23
#include <stdexcept>
24
#include <string.h>
24
#include <string.h>
25
 
25
 
26
#include <boost/lexical_cast.hpp>
26
#include <boost/lexical_cast.hpp>
27
 
27
 
28
namespace atom {
28
namespace atom {
29
namespace can {
29
namespace can {
30
 
30
 
31
Protocol::Pointer Protocol::instance_;
31
Protocol::Pointer Protocol::instance_;
32
 
32
 
33
Protocol::Protocol() : LOG("can::Protocol")
33
Protocol::Protocol() : LOG("can::Protocol")
34
{
34
{
35
}
35
}
36
 
36
 
37
Protocol::~Protocol()
37
Protocol::~Protocol()
38
{
38
{
39
}
39
}
40
 
40
 
41
void Protocol::Create()
41
void Protocol::Create()
42
{
42
{
43
    Protocol::instance_ = Protocol::Pointer(new Protocol());
43
    Protocol::instance_ = Protocol::Pointer(new Protocol());
44
}
44
}
45
 
45
 
46
Protocol::Pointer Protocol::Instance()
46
Protocol::Pointer Protocol::Instance()
47
{
47
{
48
    return Protocol::instance_;
48
    return Protocol::instance_;
49
}
49
}
50
 
50
 
51
void Protocol::Delete()
51
void Protocol::Delete()
52
{
52
{
53
    Protocol::instance_.reset();
53
    Protocol::instance_.reset();
54
}
54
}
55
   
55
   
56
bool Protocol::Load(std::string filename)
56
bool Protocol::Load(std::string filename)
57
{
57
{
58
    try
58
    try
59
    {
59
    {
60
        this->root_node_.LoadFile(filename);
60
        this->root_node_.LoadFile(filename);
61
    }
61
    }
62
    catch (std::runtime_error& e)
62
    catch (std::runtime_error& e)
63
    {
63
    {
64
        LOG.Error(e.what());
64
        LOG.Error(e.what());
65
        return false;
65
        return false;
66
    }
66
    }
67
   
67
   
68
    LOG.Info("Protocol loaded successfully.");
68
    LOG.Info("Protocol loaded successfully.");
69
    return true;
69
    return true;
70
}
70
}
71
 
71
 
72
std::string Protocol::LookupClassName(unsigned int class_id)
72
std::string Protocol::LookupClassName(unsigned int class_id)
73
{
73
{
74
    try
74
    try
75
    {
75
    {
76
        return this->root_node_.FindChild("classes").SelectChild("id", boost::lexical_cast<std::string>(class_id)).GetAttributeValue("name");
76
        return this->root_node_.FindChild("classes").SelectChild("id", boost::lexical_cast<std::string>(class_id)).GetAttributeValue("name");
77
    }
77
    }
78
    catch (std::runtime_error& e)
78
    catch (std::runtime_error& e)
79
    {
79
    {
80
        LOG.Error(e.what());
80
        LOG.Error(e.what());
81
        throw std::runtime_error("No such class_id found, " + boost::lexical_cast<std::string>(class_id));
81
        throw std::runtime_error("No such class_id found, " + boost::lexical_cast<std::string>(class_id));
82
    }
82
    }
83
}
83
}
84
 
84
 
85
unsigned int Protocol::ResolveClassId(std::string class_name)
85
unsigned int Protocol::ResolveClassId(std::string class_name)
86
{
86
{
87
    try
87
    try
88
    {
88
    {
89
        return boost::lexical_cast<unsigned int>(this->root_node_.FindChild("classes").SelectChild("name", class_name).GetAttributeValue("id"));
89
        return boost::lexical_cast<unsigned int>(this->root_node_.FindChild("classes").SelectChild("name", class_name).GetAttributeValue("id"));
90
    }
90
    }
91
    catch (std::runtime_error& e)
91
    catch (std::runtime_error& e)
92
    {
92
    {
93
        LOG.Error(e.what());
93
        LOG.Error(e.what());
94
        throw std::runtime_error("No such class_name found, " + class_name);
94
        throw std::runtime_error("No such class_name found, " + class_name);
95
    }
95
    }
96
}
96
}
97
 
97
 
98
std::string Protocol::LookupCommandName(unsigned int command_id, std::string module_name)
98
std::string Protocol::LookupCommandName(unsigned int command_id, std::string module_name)
99
{
99
{
100
    try
100
    try
101
    {
101
    {
102
        if (command_id >= 128)
102
        if (command_id >= 128)
103
        {
103
        {
104
            return this->root_node_.FindChild("commands").SelectChild("id", boost::lexical_cast<std::string>(command_id), "module", module_name).GetAttributeValue("name");
104
            return this->root_node_.FindChild("commands").SelectChild("id", boost::lexical_cast<std::string>(command_id), "module", module_name).GetAttributeValue("name");
105
        }
105
        }
106
   
106
   
107
        return this->root_node_.FindChild("commands").SelectChild("id", boost::lexical_cast<std::string>(command_id)).GetAttributeValue("name");
107
        return this->root_node_.FindChild("commands").SelectChild("id", boost::lexical_cast<std::string>(command_id)).GetAttributeValue("name");
108
    }
108
    }
109
    catch (std::runtime_error& e)
109
    catch (std::runtime_error& e)
110
    {
110
    {
111
        LOG.Error(e.what());
111
        LOG.Error(e.what());
112
        throw std::runtime_error("No such command found, id = " + boost::lexical_cast<std::string>(command_id) + ", module = " + module_name);
112
        throw std::runtime_error("No such command found, id = " + boost::lexical_cast<std::string>(command_id) + ", module = " + module_name);
113
    }
113
    }
114
}
114
}
115
 
115
 
116
unsigned int Protocol::ResolveCommandId(std::string command_name, std::string module_name)
116
unsigned int Protocol::ResolveCommandId(std::string command_name, std::string module_name)
117
{
117
{
118
    try
118
    try
119
    {
119
    {
120
        return boost::lexical_cast<unsigned int >(this->root_node_.FindChild("commands").SelectChild("name", command_name, "module", module_name).GetAttributeValue("id"));
120
        return boost::lexical_cast<unsigned int >(this->root_node_.FindChild("commands").SelectChild("name", command_name, "module", module_name).GetAttributeValue("id"));
121
    }
121
    }
122
    catch (std::runtime_error& e)
122
    catch (std::runtime_error& e)
123
    {
123
    {
124
    }
124
    }
125
   
125
   
126
    try
126
    try
127
    {
127
    {
128
        return boost::lexical_cast<unsigned int >(this->root_node_.FindChild("commands").SelectChild("name", command_name).GetAttributeValue("id"));
128
        return boost::lexical_cast<unsigned int >(this->root_node_.FindChild("commands").SelectChild("name", command_name).GetAttributeValue("id"));
129
    }
129
    }
130
    catch (std::runtime_error& e)
130
    catch (std::runtime_error& e)
131
    {
131
    {
132
        LOG.Error(e.what());
132
        LOG.Error(e.what());
133
        throw std::runtime_error("No such command found, name = " + command_name + ", module = " + module_name);
133
        throw std::runtime_error("No such command found, name = " + command_name + ", module = " + module_name);
134
    }
134
    }
135
}
135
}
136
 
136
 
137
std::string Protocol::LookupNMTCommandName(unsigned int command_id)
137
std::string Protocol::LookupNMTCommandName(unsigned int command_id)
138
{
138
{
139
    try
139
    try
140
    {
140
    {
141
        return this->root_node_.FindChild("nmt_messages").SelectChild("id", boost::lexical_cast<std::string>(command_id)).GetAttributeValue("name");
141
        return this->root_node_.FindChild("nmt_messages").SelectChild("id", boost::lexical_cast<std::string>(command_id)).GetAttributeValue("name");
142
    }
142
    }
143
    catch (std::runtime_error& e)
143
    catch (std::runtime_error& e)
144
    {
144
    {
145
        LOG.Error(e.what());
145
        LOG.Error(e.what());
146
        throw std::runtime_error("No such nmt command found, id = " + boost::lexical_cast<std::string>(command_id));
146
        throw std::runtime_error("No such nmt command found, id = " + boost::lexical_cast<std::string>(command_id));
147
    }
147
    }
148
}
148
}
149
 
149
 
150
unsigned int Protocol::ResolveNMTCommandId(std::string command_name)
150
unsigned int Protocol::ResolveNMTCommandId(std::string command_name)
151
{
151
{
152
    try
152
    try
153
    {
153
    {
154
        return boost::lexical_cast<unsigned int >(this->root_node_.FindChild("nmt_messages").SelectChild("name", command_name).GetAttributeValue("id"));
154
        return boost::lexical_cast<unsigned int >(this->root_node_.FindChild("nmt_messages").SelectChild("name", command_name).GetAttributeValue("id"));
155
    }
155
    }
156
    catch (std::runtime_error& e)
156
    catch (std::runtime_error& e)
157
    {
157
    {
158
        LOG.Error(e.what());
158
        LOG.Error(e.what());
159
        throw std::runtime_error("No such nmt command found, name = " + command_name);
159
        throw std::runtime_error("No such nmt command found, name = " + command_name);
160
    }
160
    }
161
}
161
}
162
 
162
 
163
std::string Protocol::GetDefineId(std::string name, std::string group)
163
std::string Protocol::GetDefineId(std::string name, std::string group)
164
{
164
{
165
    try
165
    try
166
    {
166
    {
167
        return this->root_node_.FindChild("defines").SelectChild("name", name, "group", group).GetAttributeValue("id");
167
        return this->root_node_.FindChild("defines").SelectChild("name", name, "group", group).GetAttributeValue("id");
168
    }
168
    }
169
    catch (std::runtime_error& e)
169
    catch (std::runtime_error& e)
170
    {
170
    {
171
        LOG.Error(e.what());
171
        LOG.Error(e.what());
172
        throw std::runtime_error("No such define found, name = " + name + ", group = " + group);
172
        throw std::runtime_error("No such define found, name = " + name + ", group = " + group);
173
    }
173
    }
174
}
174
}
175
 
175
 
176
std::string Protocol::LookupDirectionFlag(unsigned int direction_flag)
176
std::string Protocol::LookupDirectionFlag(unsigned int direction_flag)
177
{
177
{
178
    try
178
    try
179
    {
179
    {
180
        return this->root_node_.FindChild("defines").SelectChild("id", boost::lexical_cast<std::string>(direction_flag), "group", "DirectionFlag").GetAttributeValue("name");
180
        return this->root_node_.FindChild("defines").SelectChild("id", boost::lexical_cast<std::string>(direction_flag), "group", "DirectionFlag").GetAttributeValue("name");
181
    }
181
    }
182
    catch (std::runtime_error& e)
182
    catch (std::runtime_error& e)
183
    {
183
    {
184
        LOG.Error(e.what());
184
        LOG.Error(e.what());
185
        throw std::runtime_error("No such direction flag found, direction_flag = " + boost::lexical_cast<std::string>(direction_flag));
185
        throw std::runtime_error("No such direction flag found, direction_flag = " + boost::lexical_cast<std::string>(direction_flag));
186
    }
186
    }
187
}
187
}
188
 
188
 
189
unsigned int Protocol::ResolveDirectionFlag(std::string direction_name)
189
unsigned int Protocol::ResolveDirectionFlag(std::string direction_name)
190
{
190
{
191
    try
191
    try
192
    {
192
    {
193
        return boost::lexical_cast<unsigned int>(this->root_node_.FindChild("defines").SelectChild("name", direction_name, "group", "DirectionFlag").GetAttributeValue("id"));
193
        return boost::lexical_cast<unsigned int>(this->root_node_.FindChild("defines").SelectChild("name", direction_name, "group", "DirectionFlag").GetAttributeValue("id"));
194
    }
194
    }
195
    catch (std::runtime_error& e)
195
    catch (std::runtime_error& e)
196
    {
196
    {
197
        LOG.Error(e.what());
197
        LOG.Error(e.what());
198
        throw std::runtime_error("No such direction flag found, direction_name = " + direction_name);
198
        throw std::runtime_error("No such direction flag found, direction_name = " + direction_name);
199
    }
199
    }
200
}
200
}
201
 
201
 
202
std::string Protocol::LookupModuleName(unsigned int module_id)
202
std::string Protocol::LookupModuleName(unsigned int module_id)
203
{
203
{
204
    if (module_id == 0)
-
 
205
    {
-
 
206
        return "";
-
 
207
    }
-
 
208
   
-
 
209
    try
204
    try
210
    {
205
    {
211
        return this->root_node_.FindChild("modules").SelectChild("id", boost::lexical_cast<std::string>(module_id)).GetAttributeValue("name");
206
        return this->root_node_.FindChild("modules").SelectChild("id", boost::lexical_cast<std::string>(module_id)).GetAttributeValue("name");
212
    }
207
    }
213
    catch (std::runtime_error& e)
208
    catch (std::runtime_error& e)
214
    {
209
    {
215
        LOG.Error(e.what());
210
        LOG.Error(e.what());
216
        throw std::runtime_error("No such module id found, " + boost::lexical_cast<std::string>(module_id));
211
        throw std::runtime_error("No such module id found, " + boost::lexical_cast<std::string>(module_id));
217
    }
212
    }
218
}
213
}
219
 
214
 
220
unsigned int Protocol::ResolveModuleId(std::string module_name)
215
unsigned int Protocol::ResolveModuleId(std::string module_name)
221
{
216
{
222
    if (module_name == "")
217
    if (module_name == "")
223
    {
218
    {
224
        return 0;
219
        return 0;
225
    }
220
    }
226
   
221
   
227
    try
222
    try
228
    {
223
    {
229
        return boost::lexical_cast<unsigned int>(this->root_node_.FindChild("modules").SelectChild("name", module_name).GetAttributeValue("id"));
224
        return boost::lexical_cast<unsigned int>(this->root_node_.FindChild("modules").SelectChild("name", module_name).GetAttributeValue("id"));
230
    }
225
    }
231
    catch (std::runtime_error& e)
226
    catch (std::runtime_error& e)
232
    {
227
    {
233
        LOG.Error(e.what());
228
        LOG.Error(e.what());
234
        throw std::runtime_error("No such module name found, " + module_name);
229
        throw std::runtime_error("No such module name found, " + module_name);
235
    }
230
    }
236
}
231
}
237
 
232
 
238
xml::Node::NodeList Protocol::GetCommandVariables(std::string command_name, std::string module_name)
233
xml::Node::NodeList Protocol::GetCommandVariables(std::string command_name, std::string module_name)
239
{
234
{
240
    xml::Node node;
235
    xml::Node node;
241
   
236
   
242
    try
237
    try
243
    {
238
    {
244
        node = this->root_node_.FindChild("commands").SelectChild("name", command_name, "module", module_name);
239
        node = this->root_node_.FindChild("commands").SelectChild("name", command_name, "module", module_name);
245
       
240
       
246
        try
241
        try
247
        {
242
        {
248
            return node.FindChild("variables").GetChildren();
243
            return node.FindChild("variables").GetChildren();
249
        }
244
        }
250
        catch (std::runtime_error& e)
245
        catch (std::runtime_error& e)
251
        {
246
        {
252
            return xml::Node::NodeList();
247
            return xml::Node::NodeList();
253
        }
248
        }
254
    }
249
    }
255
    catch (std::runtime_error& e)
250
    catch (std::runtime_error& e)
256
    {
251
    {
257
    }
252
    }
258
 
253
 
259
   
254
   
260
    try
255
    try
261
    {
256
    {
262
        node = this->root_node_.FindChild("commands").SelectChild("name", command_name);
257
        node = this->root_node_.FindChild("commands").SelectChild("name", command_name);
263
       
258
       
264
        try
259
        try
265
        {
260
        {
266
            return node.FindChild("variables").GetChildren();
261
            return node.FindChild("variables").GetChildren();
267
        }
262
        }
268
        catch (std::runtime_error& e)
263
        catch (std::runtime_error& e)
269
        {
264
        {
270
            return xml::Node::NodeList();
265
            return xml::Node::NodeList();
271
        }
266
        }
272
    }
267
    }
273
    catch (std::runtime_error& e)
268
    catch (std::runtime_error& e)
274
    {
269
    {
275
        LOG.Error(e.what());
270
        LOG.Error(e.what());
276
        throw std::runtime_error("Could not find variables for command, name = " + command_name + ", module = " + module_name);
271
        throw std::runtime_error("Could not find variables for command, name = " + command_name + ", module = " + module_name);
277
    }
272
    }
278
   
273
   
279
    return xml::Node::NodeList();
274
    return xml::Node::NodeList();
280
}
275
}
281
 
276
 
282
xml::Node::NodeList Protocol::GetNMTCommandVariables(std::string command_name)
277
xml::Node::NodeList Protocol::GetNMTCommandVariables(std::string command_name)
283
{
278
{
284
    xml::Node node;
279
    xml::Node node;
285
   
280
   
286
    try
281
    try
287
    {
282
    {
288
        node = this->root_node_.FindChild("nmt_messages").SelectChild("name", command_name);
283
        node = this->root_node_.FindChild("nmt_messages").SelectChild("name", command_name);
289
       
284
       
290
        try
285
        try
291
        {
286
        {
292
            return node.FindChild("variables").GetChildren();
287
            return node.FindChild("variables").GetChildren();
293
        }
288
        }
294
        catch (std::runtime_error& e)
289
        catch (std::runtime_error& e)
295
        {
290
        {
296
            return xml::Node::NodeList();
291
            return xml::Node::NodeList();
297
        }
292
        }
298
    }
293
    }
299
    catch (std::runtime_error& e)
294
    catch (std::runtime_error& e)
300
    {
295
    {
301
        LOG.Error(e.what());
296
        LOG.Error(e.what());
302
        throw std::runtime_error("Could not find variables for nmt command, name = " + command_name);
297
        throw std::runtime_error("Could not find variables for nmt command, name = " + command_name);
303
    }
298
    }
304
   
299
   
305
    return xml::Node::NodeList();
300
    return xml::Node::NodeList();
306
}
301
}
307
 
302
 
308
std::string Protocol::DecodeInt(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
303
std::string Protocol::DecodeInt(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
309
{
304
{
310
    unsigned long raw_bit_value = bitset.Read(start_bit, bit_length);
305
    unsigned long raw_bit_value = bitset.Read(start_bit, bit_length);
311
    int raw_value = 0;
306
    int raw_value = 0;
312
   
307
   
313
    memcpy(&raw_value, &raw_bit_value, sizeof(raw_value));
308
    memcpy(&raw_value, &raw_bit_value, sizeof(raw_value));
314
   
309
   
315
    return boost::lexical_cast<std::string>(raw_value);
310
    return boost::lexical_cast<std::string>(raw_value);
316
}
311
}
317
 
312
 
318
void Protocol::EncodeInt(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
313
void Protocol::EncodeInt(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
319
{
314
{
320
    unsigned long raw_bit_value = 0;
315
    unsigned long raw_bit_value = 0;
321
    int raw_value = boost::lexical_cast<int>(value);
316
    int raw_value = boost::lexical_cast<int>(value);
322
   
317
   
323
    memcpy(&raw_bit_value, &raw_value, sizeof(raw_value));
318
    memcpy(&raw_bit_value, &raw_value, sizeof(raw_value));
324
   
319
   
325
    bitset.Write(start_bit, bit_length, raw_bit_value);
320
    bitset.Write(start_bit, bit_length, raw_bit_value);
326
}
321
}
327
 
322
 
328
std::string Protocol::DecodeUint(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
323
std::string Protocol::DecodeUint(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
329
{
324
{
330
    unsigned long raw_bit_value = bitset.Read(start_bit, bit_length);
325
    unsigned long raw_bit_value = bitset.Read(start_bit, bit_length);
331
   
326
   
332
    //LOG.Debug("DecodeUint: raw_bit_value=" + boost::lexical_cast<std::string>(raw_bit_value));
327
    //LOG.Debug("DecodeUint: raw_bit_value=" + boost::lexical_cast<std::string>(raw_bit_value));
333
   
328
   
334
    return boost::lexical_cast<std::string>((unsigned int)raw_bit_value);
329
    return boost::lexical_cast<std::string>((unsigned int)raw_bit_value);
335
}
330
}
336
 
331
 
337
void Protocol::EncodeUint(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
332
void Protocol::EncodeUint(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
338
{
333
{
339
    unsigned long raw_bit_value = boost::lexical_cast<unsigned int>(value);
334
    unsigned long raw_bit_value = boost::lexical_cast<unsigned int>(value);
340
   
335
   
341
    bitset.Write(start_bit, bit_length, raw_bit_value);
336
    bitset.Write(start_bit, bit_length, raw_bit_value);
342
}
337
}
343
 
338
 
344
std::string Protocol::DecodeFloat(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
339
std::string Protocol::DecodeFloat(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
345
{
340
{
346
    float float_value = boost::lexical_cast<float>(this->DecodeInt(bitset, start_bit, bit_length)) / 64.0f;
341
    float float_value = boost::lexical_cast<float>(this->DecodeInt(bitset, start_bit, bit_length)) / 64.0f;
347
   
342
   
348
    return boost::lexical_cast<std::string>(float_value);
343
    return boost::lexical_cast<std::string>(float_value);
349
}
344
}
350
 
345
 
351
void Protocol::EncodeFloat(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
346
void Protocol::EncodeFloat(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
352
{
347
{
353
    int int_value = boost::lexical_cast<float>(value) * 64.0f;
348
    int int_value = boost::lexical_cast<float>(value) * 64.0f;
354
   
349
   
355
    this->EncodeInt(bitset, start_bit, bit_length, boost::lexical_cast<std::string>(int_value));
350
    this->EncodeInt(bitset, start_bit, bit_length, boost::lexical_cast<std::string>(int_value));
356
}
351
}
357
 
352
 
358
std::string Protocol::DecodeAscii(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
353
std::string Protocol::DecodeAscii(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
359
{
354
{
360
    std::string value;
355
    std::string value;
361
   
356
   
362
    for (unsigned int n = 0; n < bit_length; n += 8)
357
    for (unsigned int n = 0; n < bit_length; n += 8)
363
    {
358
    {
364
        unsigned long raw_value = bitset.Read(start_bit + n, 8);
359
        unsigned long raw_value = bitset.Read(start_bit + n, 8);
365
        value += (char)raw_value;
360
        value += (char)raw_value;
366
    }
361
    }
367
   
362
   
368
    return value;
363
    return value;
369
}
364
}
370
 
365
 
371
void Protocol::EncodeAscii(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
366
void Protocol::EncodeAscii(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
372
{
367
{
373
    //LOG.Debug("EncodeAscii: " + value + ", length=" + boost::lexical_cast<std::string>(value.length()) + ", bit_length=" + boost::lexical_cast<std::string>(bit_length));
368
    //LOG.Debug("EncodeAscii: " + value + ", length=" + boost::lexical_cast<std::string>(value.length()) + ", bit_length=" + boost::lexical_cast<std::string>(bit_length));
374
   
369
   
375
    for (unsigned int n = 0; n < bit_length; n += 8)
370
    for (unsigned int n = 0; n < bit_length; n += 8)
376
    {
371
    {
377
        if (n / 8 >= value.length())
372
        if (n / 8 >= value.length())
378
        {
373
        {
379
            break;
374
            break;
380
        }
375
        }
381
       
376
       
382
        //LOG.Debug(boost::lexical_cast<std::string>((unsigned int)value[n / 8]));
377
        //LOG.Debug(boost::lexical_cast<std::string>((unsigned int)value[n / 8]));
383
       
378
       
384
        bitset.Write(start_bit + n, 8, value[n / 8]);
379
        bitset.Write(start_bit + n, 8, value[n / 8]);
385
    }
380
    }
386
}
381
}
387
 
382
 
388
std::string Protocol::DecodeHexstring(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
383
std::string Protocol::DecodeHexstring(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length)
389
{
384
{
390
    std::string value;
385
    std::string value;
391
    char hex[] = { '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F' };
386
    char hex[] = { '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F' };
392
   
387
   
393
    for (unsigned int n = 0; n < bit_length; n += 4)
388
    for (unsigned int n = 0; n < bit_length; n += 4)
394
    {
389
    {
395
        unsigned long raw_bit_value = bitset.Read(start_bit + n, 4);
390
        unsigned long raw_bit_value = bitset.Read(start_bit + n, 4);
396
       
391
       
397
        if (raw_bit_value >= sizeof(hex))
392
        if (raw_bit_value >= sizeof(hex))
398
        {
393
        {
399
            value += '-';
394
            value += '-';
400
        }
395
        }
401
        else
396
        else
402
        {
397
        {
403
            value += hex[raw_bit_value];
398
            value += hex[raw_bit_value];
404
        }
399
        }
405
    }
400
    }
406
   
401
   
407
    return value;
402
    return value;
408
}
403
}
409
 
404
 
410
void Protocol::EncodeHexstring(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
405
void Protocol::EncodeHexstring(common::Bitset& bitset, unsigned int start_bit, unsigned int bit_length, std::string value)
411
{
406
{
412
    int ascii_value;
407
    int ascii_value;
413
   
408
   
414
    for (unsigned int n = 0; n < bit_length; n += 4)
409
    for (unsigned int n = 0; n < bit_length; n += 4)
415
    {
410
    {
416
        ascii_value = boost::lexical_cast<int>((int)std::toupper(value[n / 4]));
411
        ascii_value = boost::lexical_cast<int>((int)std::toupper(value[n / 4]));
417
       
412
       
418
        if (48 <= ascii_value && ascii_value <= 57)
413
        if (48 <= ascii_value && ascii_value <= 57)
419
        {
414
        {
420
            bitset.Write(start_bit + n, 4, ascii_value - 48);
415
            bitset.Write(start_bit + n, 4, ascii_value - 48);
421
        }
416
        }
422
        else if (65 <= ascii_value && ascii_value <= 70)
417
        else if (65 <= ascii_value && ascii_value <= 70)
423
        {
418
        {
424
            bitset.Write(start_bit + n, 4, ascii_value - 65);
419
            bitset.Write(start_bit + n, 4, ascii_value - 65);
425
        }
420
        }
426
        else
421
        else
427
        {
422
        {
428
            throw std::runtime_error("This is not an hex string, " + value);
423
            throw std::runtime_error("This is not an hex string, " + value);
429
        }
424
        }
430
    }
425
    }
431
}
426
}
432
 
427
 
433
}; // namespace can
428
}; // namespace can
434
}; // namespace atom
429
}; // namespace atom
435
 
430