GCC Code Coverage Report


Directory: /home/runner/work/fprime/fprime/Svc/ComLogger/
File: ComLogger.cpp
Date: 2026-09-23 22:12:50
Exec Total Coverage
Lines: 0 115 0.0%
Functions: 0 12 0.0%
Branches: 0 64 0.0%

Line Branch Exec Source
1 // ----------------------------------------------------------------------
2 //
3 // ComLogger.cpp
4 //
5 // ----------------------------------------------------------------------
6
7 #include <Fw/FPrimeBasicTypes.hpp>
8 #include <Fw/Types/SerialBuffer.hpp>
9 #include <Fw/Types/StringUtils.hpp>
10 #include <Os/ValidateFile.hpp>
11 #include <Svc/ComLogger/ComLogger.hpp>
12 #include <cstdio>
13
14 namespace Svc {
15 static_assert(std::numeric_limits<U16>::max() <= std::numeric_limits<FwSizeType>::max(),
16 "U16 must fit in the positive range of FwSizeType");
17 // ----------------------------------------------------------------------
18 // Construction, initialization, and destruction
19 // ----------------------------------------------------------------------
20
21 ✗ ComLogger ::ComLogger(const char* compName, const char* incomingFilePrefix, U32 maxFileSize, bool storeBufferLength)
22 : ComLoggerComponentBase(compName),
23 ✗ m_maxFileSize(maxFileSize),
24 ✗ m_fileMode(CLOSED),
25 ✗ m_byteCount(0),
26 ✗ m_writeErrorOccurred(false),
27 ✗ m_openErrorOccurred(false),
28 ✗ m_storeBufferLength(storeBufferLength),
29 ✗ m_initialized(true) {
30 ✗ this->init_log_file(incomingFilePrefix, maxFileSize, storeBufferLength);
31 ✗ }
32
33 ✗ ComLogger ::ComLogger(const char* compName)
34 : ComLoggerComponentBase(compName),
35 ✗ m_filePrefix(),
36 ✗ m_maxFileSize(0),
37 ✗ m_fileMode(CLOSED),
38 ✗ m_fileName(),
39 ✗ m_hashFileName(),
40 ✗ m_byteCount(0),
41 ✗ m_writeErrorOccurred(false),
42 ✗ m_openErrorOccurred(false),
43 ✗ m_storeBufferLength(),
44 ✗ m_initialized(false) {}
45
46 ✗ void ComLogger ::init_log_file(const char* incomingFilePrefix, U32 maxFileSize, bool storeBufferLength) {
47 ✗ FW_ASSERT(incomingFilePrefix != nullptr);
48 ✗ this->m_maxFileSize = maxFileSize;
49 ✗ this->m_storeBufferLength = storeBufferLength;
50 ✗ if (this->m_storeBufferLength) {
51 ✗ FW_ASSERT(maxFileSize > sizeof(U16), static_cast<FwAssertArgType>(maxFileSize));
52 }
53 // Assign the prefix checking if it is too big
54 ✗ Fw::FormatStatus formatStatus = this->m_filePrefix.format("%s", incomingFilePrefix);
55 ✗ FW_ASSERT(formatStatus == Fw::FormatStatus::SUCCESS);
56 ✗ this->m_initialized = true;
57 ✗ }
58
59 ✗ ComLogger ::~ComLogger() {
60 // Close file:
61 // this->closeFile();
62 // NOTE: the above did not work because we don't want to issue an event
63 // in the destructor. This can cause "virtual method called" segmentation
64 // faults.
65 // So I am copying part of that function here.
66 ✗ if (OPEN == this->m_fileMode) {
67 // Close file:
68 ✗ this->m_file.close();
69
70 // Write out the hash file to disk:
71 ✗ this->writeHashFile();
72
73 // Update mode:
74 ✗ this->m_fileMode = CLOSED;
75 }
76 ✗ }
77
78 // ----------------------------------------------------------------------
79 // Handler implementations
80 // ----------------------------------------------------------------------
81
82 ✗ void ComLogger ::comIn_handler(FwIndexType portNum, Fw::ComBuffer& data, U32 context) {
83 ✗ FW_ASSERT(portNum == 0);
84
85 // Get length of buffer:
86 ✗ FwSizeType sizeNative = data.getSize();
87 // ComLogger only writes 16-bit sizes to save space
88 // on disk:
89 ✗ FW_ASSERT(sizeNative < 65536, static_cast<FwAssertArgType>(sizeNative));
90 ✗ U16 size = sizeNative & 0xFFFF;
91
92 // Close the file if it will be too big:
93 ✗ if (OPEN == this->m_fileMode) {
94 ✗ U32 projectedByteCount = this->m_byteCount + size;
95 ✗ if (this->m_storeBufferLength) {
96 ✗ projectedByteCount += static_cast<U32>(sizeof(size));
97 }
98 ✗ if (projectedByteCount > this->m_maxFileSize) {
99 ✗ this->closeFile();
100 }
101 }
102
103 // Open the file if it there is not one open:
104 ✗ if (CLOSED == this->m_fileMode) {
105 ✗ this->openFile();
106 }
107
108 // Write to the file if it is open:
109 ✗ if (OPEN == this->m_fileMode) {
110 ✗ this->writeComBufferToFile(data, size);
111 }
112 ✗ }
113
114 ✗ void ComLogger ::CloseFile_cmdHandler(FwOpcodeType opCode, U32 cmdSeq) {
115 ✗ this->closeFile();
116 ✗ this->cmdResponse_out(opCode, cmdSeq, Fw::CmdResponse::OK);
117 ✗ }
118
119 ✗ void ComLogger ::pingIn_handler(const FwIndexType portNum, U32 key) {
120 // return key
121 ✗ this->pingOut_out(0, key);
122 ✗ }
123
124 ✗ void ComLogger ::openFile() {
125 ✗ FW_ASSERT(CLOSED == this->m_fileMode);
126
127 ✗ if (!this->m_initialized) {
128 ✗ this->log_WARNING_LO_FileNotInitialized();
129 ✗ return;
130 }
131
132 // Create filename:
133 ✗ Fw::Time timestamp = getTime();
134 ✗ Fw::FormatStatus formatStatus = this->m_fileName.format(
135 "%s_%" PRI_FwTimeBaseStoreType "_%" PRIu32 "_%06" PRIu32 ".com", this->m_filePrefix.toChar(),
136 ✗ static_cast<FwTimeBaseStoreType>(timestamp.getTimeBase()), timestamp.getSeconds(), timestamp.getUSeconds());
137 ✗ FW_ASSERT(formatStatus == Fw::FormatStatus::SUCCESS);
138 formatStatus =
139 ✗ this->m_hashFileName.format("%s%s", this->m_fileName.toChar(), Utils::Hash::getFileExtensionString());
140 ✗ FW_ASSERT(formatStatus == Fw::FormatStatus::SUCCESS);
141
142 ✗ Os::File::Status ret = m_file.open(this->m_fileName.toChar(), Os::File::OPEN_WRITE);
143 ✗ if (Os::File::OP_OK != ret) {
144 ✗ if (!this->m_openErrorOccurred) { // throttle this event, otherwise a positive
145 // feedback event loop can occur!
146 ✗ this->log_WARNING_HI_FileOpenError(ret, this->m_fileName);
147 }
148 ✗ this->m_openErrorOccurred = true;
149 } else {
150 // Reset event throttle:
151 ✗ this->m_openErrorOccurred = false;
152
153 // Reset byte count:
154 ✗ this->m_byteCount = 0;
155
156 // Set mode:
157 ✗ this->m_fileMode = OPEN;
158 }
159 ✗ }
160
161 ✗ void ComLogger ::closeFile() {
162 ✗ if (OPEN == this->m_fileMode) {
163 // Close file:
164 ✗ this->m_file.close();
165
166 // Write out the hash file to disk:
167 ✗ this->writeHashFile();
168
169 // Update mode:
170 ✗ this->m_fileMode = CLOSED;
171
172 // Send event:
173 ✗ this->log_DIAGNOSTIC_FileClosed(this->m_fileName);
174 }
175 ✗ }
176
177 ✗ void ComLogger ::writeComBufferToFile(Fw::ComBuffer& data, U16 size) {
178 ✗ if (this->m_storeBufferLength) {
179 U8 buffer[sizeof(size)];
180 ✗ Fw::SerialBuffer serialLength(&buffer[0], sizeof(size));
181 ✗ Fw::SerializeStatus serStatus = serialLength.serializeFrom(size);
182 ✗ FW_ASSERT(serStatus == Fw::FW_SERIALIZE_OK, serStatus);
183 const bool lengthWritten =
184 ✗ this->writeToFile(serialLength.getBuffAddr(), static_cast<U16>(serialLength.getSize()));
185 ✗ if (lengthWritten) {
186 ✗ this->m_byteCount += static_cast<U32>(serialLength.getSize());
187 } else {
188 ✗ return;
189 }
190 ✗ }
191
192 // Write buffer to file:
193 ✗ const bool dataWritten = this->writeToFile(data.getBuffAddr(), size);
194 ✗ if (dataWritten) {
195 ✗ this->m_byteCount += size;
196 }
197 }
198
199 ✗ bool ComLogger ::writeToFile(void* data, U16 length) {
200 ✗ FwSizeType size = length;
201 ✗ Os::File::Status ret = m_file.write(reinterpret_cast<const U8*>(data), size);
202 ✗ if ((Os::File::OP_OK != ret) || (size != length)) {
203 ✗ if (!this->m_writeErrorOccurred) { // throttle this event, otherwise a positive
204 // feedback event loop can occur!
205 ✗ this->log_WARNING_HI_FileWriteError(ret, static_cast<U32>(size), length, this->m_fileName);
206 }
207 ✗ this->m_writeErrorOccurred = true;
208 ✗ return false;
209 }
210
211 ✗ this->m_writeErrorOccurred = false;
212 ✗ return true;
213 }
214
215 ✗ void ComLogger ::writeHashFile() {
216 Os::ValidateFile::Status validateStatus;
217 ✗ validateStatus = Os::ValidateFile::createValidation(this->m_fileName.toChar(), this->m_hashFileName.toChar());
218 ✗ if (Os::ValidateFile::VALIDATION_OK != validateStatus) {
219 ✗ this->log_WARNING_LO_FileValidationError(this->m_hashFileName, this->m_fileName, validateStatus);
220 }
221 ✗ }
222 } // namespace Svc
223