| Line | Branch | Exec | Source |
|---|---|---|---|
| 1 | // ====================================================================== | ||
| 2 | // \title DpCompressProc.cpp | ||
| 3 | // \author kubiak | ||
| 4 | // \brief cpp file for DpCompressProc component implementation class | ||
| 5 | // ====================================================================== | ||
| 6 | |||
| 7 | #include <cstring> | ||
| 8 | |||
| 9 | #include "Svc/DpCompressProc/DpCompressProc.hpp" | ||
| 10 | |||
| 11 | #include <Fw/Dp/DpContainer.hpp> | ||
| 12 | #include <Fw/Prm/ParamValid.hpp> | ||
| 13 | |||
| 14 | namespace Svc { | ||
| 15 | |||
| 16 | // ---------------------------------------------------------------------- | ||
| 17 | // Component construction and destruction | ||
| 18 | // ---------------------------------------------------------------------- | ||
| 19 | |||
| 20 | 1 | DpCompressProc ::DpCompressProc(const char* const compName) : DpCompressProcComponentBase(compName) {} | |
| 21 | |||
| 22 | 2 | DpCompressProc ::~DpCompressProc() {} | |
| 23 | |||
| 24 | // ---------------------------------------------------------------------- | ||
| 25 | // Handler implementations for typed input ports | ||
| 26 | // ---------------------------------------------------------------------- | ||
| 27 | |||
| 28 | 473103 | void DpCompressProc::serializeCompressionHeader(Fw::LinearBufferBase& serializer, | |
| 29 | const FwSizeStoreType compressed_payload_size, | ||
| 30 | const CompressionMetadata& metadata) { | ||
| 31 | 473103 | const FwDpIdType record_id = this->getIdBase() + RecordId::CompressionRecord; | |
| 32 | |||
| 33 | Fw::SerializeStatus ok; | ||
| 34 | |||
| 35 | 473103 | ok = serializer.serializeFrom(record_id); | |
| 36 | 473103 | FW_ASSERT(ok == Fw::FW_SERIALIZE_OK, ok); | |
| 37 | 473103 | ok = serializer.serializeFrom( | |
| 38 | 473103 | static_cast<FwSizeStoreType>(compressed_payload_size + CompressionMetadata::SERIALIZED_SIZE)); | |
| 39 | 473103 | FW_ASSERT(ok == Fw::FW_SERIALIZE_OK, ok); | |
| 40 | 473103 | ok = serializer.serializeFrom(metadata); | |
| 41 | 473103 | FW_ASSERT(ok == Fw::FW_SERIALIZE_OK, ok); | |
| 42 | 473103 | } | |
| 43 | |||
| 44 | 10012 | void DpCompressProc ::procRequest_handler(FwIndexType portNum, Fw::Buffer& fwBuffer) { | |
| 45 |
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10012 | Fw::ParamValid param_valid; |
| 46 |
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10012 | Fw::Enabled en_compression = paramGet_ENABLE(param_valid); |
| 47 | 10012 | FW_ASSERT(FW_PARAM_OK(param_valid), param_valid); | |
| 48 |
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10012 | if (en_compression == Fw::Enabled::DISABLED) { |
| 49 | // Bypass compression | ||
| 50 | 1 | return; | |
| 51 | } | ||
| 52 | |||
| 53 |
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10011 | if (!isConnected_compressChunk_OutputPort(0)) { |
| 54 | ✗ | return; | |
| 55 | } | ||
| 56 | |||
| 57 | // Check that the buffer is large enough to hold a data product packet | ||
| 58 |
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10011 | if (fwBuffer.getSize() < Fw::DpContainer::MIN_PACKET_SIZE) { |
| 59 |
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1 | this->log_WARNING_HI_BufferTooSmallForPacket(fwBuffer.getSize(), Fw::DpContainer::MIN_PACKET_SIZE); |
| 60 | 1 | return; | |
| 61 | } | ||
| 62 | |||
| 63 |
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10010 | Fw::DpContainer container(0, fwBuffer); |
| 64 |
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10010 | const Fw::SerializeStatus desStat = container.deserializeHeader(); |
| 65 |
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10010 | if (desStat != Fw::FW_SERIALIZE_OK) { |
| 66 | // Cannot process a container with an invalid header. Give up | ||
| 67 | ✗ | this->log_WARNING_HI_InvalidHeader(fwBuffer.getSize(), static_cast<U32>(desStat)); | |
| 68 | ✗ | return; | |
| 69 | } | ||
| 70 | |||
| 71 | // Record sizes are stored as FwSizeStoreType. Give up on any buffer | ||
| 72 | // whose contents could overflow a record size field | ||
| 73 |
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10010 | if (fwBuffer.getSize() >= std::numeric_limits<FwSizeStoreType>::max()) { |
| 74 |
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1 | this->log_WARNING_HI_ContainerTooLarge(container.getId(), container.getDataSize()); |
| 75 | 1 | return; | |
| 76 | } | ||
| 77 | // Consistency check: the header's data size must fit within the buffer | ||
| 78 |
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10009 | if (container.getDataSize() > fwBuffer.getSize() - Fw::DpContainer::MIN_PACKET_SIZE) { |
| 79 | ✗ | this->log_WARNING_HI_BufferTooSmallForPacket(fwBuffer.getSize(), | |
| 80 | ✗ | Fw::DpContainer::MIN_PACKET_SIZE + container.getDataSize()); | |
| 81 | ✗ | return; | |
| 82 | } | ||
| 83 | |||
| 84 |
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10009 | FwSizeType prm_chunk_size = paramGet_CHUNK_SIZE(param_valid); |
| 85 | 10009 | FW_ASSERT(FW_PARAM_OK(param_valid), param_valid); | |
| 86 | |||
| 87 |
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10009 | if (prm_chunk_size > container.getDataSize()) { |
| 88 | ✗ | prm_chunk_size = container.getDataSize(); | |
| 89 | } | ||
| 90 | 10009 | const FwSizeType max_chunk_size = prm_chunk_size; | |
| 91 | 10009 | FW_ASSERT(max_chunk_size <= std::numeric_limits<FwSizeStoreType>::max(), | |
| 92 | static_cast<FwAssertArgType>(max_chunk_size)); | ||
| 93 |
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10009 | if (max_chunk_size <= 0) { |
| 94 | // Chunk size is invalid. Give up | ||
| 95 | ✗ | return; | |
| 96 | } | ||
| 97 | |||
| 98 |
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20018 | Fw::Buffer data_buffer(fwBuffer.getData() + Fw::DpContainer::DATA_OFFSET, |
| 99 |
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20018 | fwBuffer.getSize() - Fw::DpContainer::MIN_PACKET_SIZE); |
| 100 | 10009 | FW_ASSERT(data_buffer.getSize() > 0, static_cast<FwAssertArgType>(data_buffer.getSize())); | |
| 101 | |||
| 102 |
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10009 | auto data_deser = data_buffer.getDeserializer(); |
| 103 |
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10009 | auto data_reser = data_buffer.getSerializer(); |
| 104 | |||
| 105 | // Compression record serialized size | ||
| 106 | 10009 | const FwSizeType compression_header_size = | |
| 107 | sizeof(FwDpIdType) + sizeof(FwSizeStoreType) + CompressionMetadata::SERIALIZED_SIZE; | ||
| 108 | |||
| 109 | // DpCompressProc processing state machine. | ||
| 110 | // Tracks the processing steps that need to occur for | ||
| 111 | // each chunk, whether is is compressed or not | ||
| 112 | enum { | ||
| 113 | // Initial state. First processing state will | ||
| 114 | // either be PRE_COMMIT or LAST_COMPRESSED depending | ||
| 115 | // on the compression of the first chunk. | ||
| 116 | INIT, | ||
| 117 | |||
| 118 | // Have not committed to returning a compressed | ||
| 119 | // data product. Stay in this state until at least | ||
| 120 | // one chunk is found to be compressible | ||
| 121 | PRE_COMMIT, | ||
| 122 | |||
| 123 | // The last chunk was compressed. | ||
| 124 | // The next chunk will need to have its own | ||
| 125 | // header prepended | ||
| 126 | LAST_COMPRESSED, | ||
| 127 | |||
| 128 | // The last chunk was uncompressed. | ||
| 129 | // If more uncompressed chunks are found then the | ||
| 130 | // size of the last uncompressed segment needs to | ||
| 131 | // grow to accommodate this segment | ||
| 132 | LAST_UNCOMPRESSED | ||
| 133 | } state; | ||
| 134 | |||
| 135 | 10009 | state = INIT; | |
| 136 | |||
| 137 | 10009 | FwSizeType uncompressed_size = 0; | |
| 138 | 10009 | U8* uncompressed_head = nullptr; | |
| 139 | 10009 | Fw::SerializeStatus ser_stat = Fw::FW_SERIALIZE_OK; | |
| 140 | |||
| 141 |
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514266 | while (data_deser.getDeserializeSizeLeft() > 0) { |
| 142 | // Chunk size for this iteration | ||
| 143 |
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504257 | const FwSizeType chunk_size_tmp = (data_deser.getDeserializeSizeLeft() < max_chunk_size) |
| 144 |
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504257 | ? static_cast<FwSizeType>(data_deser.getDeserializeSizeLeft()) |
| 145 | 504257 | : max_chunk_size; | |
| 146 | |||
| 147 | // Ensure that FwSizeStoreType is large enough to hold the chunk_size | ||
| 148 | 504257 | FW_ASSERT(chunk_size_tmp > 0, static_cast<FwAssertArgType>(chunk_size_tmp)); | |
| 149 | 504257 | FW_ASSERT(chunk_size_tmp <= std::numeric_limits<FwSizeStoreType>::max(), | |
| 150 | static_cast<FwAssertArgType>(chunk_size_tmp)); | ||
| 151 | 504257 | const FwSizeStoreType chunk_size = static_cast<FwSizeStoreType>(chunk_size_tmp); | |
| 152 | // a const U8 * and I need to mutable U8* | ||
| 153 |
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504257 | U8* data_offset = data_buffer.getData() + (data_buffer.getSize() - data_deser.getDeserializeSizeLeft()); |
| 154 | |||
| 155 |
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504257 | Fw::Buffer compression_buffer(data_offset, chunk_size); |
| 156 | |||
| 157 | // Jump the deserializer to mark the data as read | ||
| 158 |
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504257 | ser_stat = data_deser.deserializeSkip(chunk_size); |
| 159 | 504257 | FW_ASSERT(ser_stat == Fw::FW_SERIALIZE_OK, ser_stat); | |
| 160 | |||
| 161 |
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504257 | CompressionAlgorithm alg = CompressionAlgorithm::UNCOMPRESSED; |
| 162 | 504257 | FwSizeType min_compression = 0; | |
| 163 | 504257 | FwSizeType compression_offset = 0; | |
| 164 | |||
| 165 | // Only attempt compression on chunks larger than | ||
| 166 | // 4 times the header size. Sizes below 3 times the header | ||
| 167 | // size could trigger negative sizes in the min_compression | ||
| 168 | // calculation | ||
| 169 |
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504257 | if (chunk_size > 4 * compression_header_size) { |
| 170 |
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504257 | switch (state) { |
| 171 | 10009 | case INIT: | |
| 172 | // Need room for two headers. | ||
| 173 | // 1. This compressed chunk | ||
| 174 | // 2. A potential uncompressed chunk that follows | ||
| 175 | // This is assuming that the initial chunk can be compressed | ||
| 176 | 10009 | min_compression = chunk_size - 2 * compression_header_size; | |
| 177 | |||
| 178 | // Compression needs to occur in the buffer with enough | ||
| 179 | // space for the this header | ||
| 180 | 10009 | compression_offset = compression_header_size; | |
| 181 | 10009 | break; | |
| 182 | 3325 | case PRE_COMMIT: | |
| 183 | // Need room for three headers. | ||
| 184 | // 1. The initial uncompressed chunk | ||
| 185 | // 2. This compressed chunk | ||
| 186 | // 3. A potential uncompressed chunk that follows | ||
| 187 | 3325 | min_compression = chunk_size - 3 * compression_header_size; | |
| 188 | |||
| 189 | // Compression needs to occur in the buffer with enough | ||
| 190 | // space for the this header AND the initial uncompressed header | ||
| 191 | 3325 | compression_offset = 2 * compression_header_size; | |
| 192 | 3325 | break; | |
| 193 | 490923 | case LAST_UNCOMPRESSED: | |
| 194 | case LAST_COMPRESSED: | ||
| 195 | // Need room for two headers. | ||
| 196 | // 1. The next compressed chunk | ||
| 197 | // 2. A potential uncompressed chunk | ||
| 198 | // Can take advantage of compression that has occurred | ||
| 199 | // before this point | ||
| 200 | // Note: Could keep track of the number of available spare bytes | ||
| 201 | // in the buffer, but that adds a complexity for very little benefit | ||
| 202 | 490923 | min_compression = chunk_size - (2 * compression_header_size); | |
| 203 | // Compression needs to occur in the buffer with enough | ||
| 204 | // space for the this header | ||
| 205 | 490923 | compression_offset = compression_header_size; | |
| 206 | 490923 | break; | |
| 207 | ✗ | default: | |
| 208 | ✗ | FW_ASSERT(false, state); | |
| 209 | ✗ | break; | |
| 210 | } | ||
| 211 | |||
| 212 |
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504257 | if (min_compression > chunk_size - compression_offset) { |
| 213 | ✗ | min_compression = chunk_size - compression_offset; | |
| 214 | } | ||
| 215 | |||
| 216 | 504257 | FW_ASSERT(min_compression <= chunk_size, static_cast<FwAssertArgType>(min_compression), | |
| 217 | static_cast<FwAssertArgType>(chunk_size)); | ||
| 218 | |||
| 219 | 504257 | FW_ASSERT(compression_offset <= chunk_size, static_cast<FwAssertArgType>(compression_offset), | |
| 220 | static_cast<FwAssertArgType>(chunk_size)); | ||
| 221 | |||
| 222 |
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504257 | alg = compressChunk_out(0, compression_buffer, min_compression, compression_offset); |
| 223 | |||
| 224 |
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504257 | if (alg != CompressionAlgorithm::UNCOMPRESSED) { |
| 225 | // The compressor writes up to min_compression bytes of compressed | ||
| 226 | // data after write_offset bytes of reserved space | ||
| 227 | 377388 | FW_ASSERT(compression_buffer.getSize() <= min_compression + compression_offset, | |
| 228 | static_cast<FwAssertArgType>(compression_buffer.getSize()), | ||
| 229 | static_cast<FwAssertArgType>(min_compression), | ||
| 230 | static_cast<FwAssertArgType>(compression_offset)); | ||
| 231 | } | ||
| 232 | } | ||
| 233 | |||
| 234 |
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504257 | if (alg != CompressionAlgorithm::UNCOMPRESSED) { |
| 235 | // Data was compressed | ||
| 236 | |||
| 237 |
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377388 | U8* const comp_data_ptr = compression_buffer.getData() + compression_offset; |
| 238 | |||
| 239 | const FwSizeType compressed_size_tmp = | ||
| 240 |
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377388 | static_cast<FwSizeType>(compression_buffer.getSize()) - static_cast<FwSizeType>(compression_offset); |
| 241 | 377388 | FW_ASSERT(compressed_size_tmp <= std::numeric_limits<FwSizeStoreType>::max()); | |
| 242 | 377388 | FW_ASSERT(compressed_size_tmp < chunk_size); | |
| 243 | 377388 | const FwSizeStoreType compressed_size = static_cast<FwSizeStoreType>(compressed_size_tmp); | |
| 244 | |||
| 245 | // If the first chunk is compressible treat the state as | ||
| 246 | // if it was LAST_COMPRESSED. No need to perform the special | ||
| 247 | // move and header serialization in PRE_COMMIT | ||
| 248 |
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377388 | if (state == INIT) { |
| 249 | 7456 | state = LAST_COMPRESSED; | |
| 250 | } | ||
| 251 | |||
| 252 |
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377388 | const FwSizeType deser_loc = data_deser.getSize() - data_deser.getDeserializeSizeLeft(); |
| 253 |
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377388 | switch (state) { |
| 254 | 2516 | case PRE_COMMIT: | |
| 255 | // Case A. | ||
| 256 | // 1. Memmove uncompressed data so far by the size of compressed header | ||
| 257 | // 2. Prepend a header to the uncompressed data | ||
| 258 | // 3. Write a compressed header to the compressed data | ||
| 259 | // 4. Serialize compressed data | ||
| 260 | |||
| 261 | // Assert that the serialization operations in Case A will stay within deser_loc bounds | ||
| 262 | 2516 | FW_ASSERT(deser_loc >= (uncompressed_size + 2 * compression_header_size + compressed_size), | |
| 263 | static_cast<FwAssertArgType>(deser_loc), static_cast<FwAssertArgType>(uncompressed_size), | ||
| 264 | static_cast<FwAssertArgType>(compressed_size)); | ||
| 265 |
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2516 | (void)std::memmove(data_buffer.getData() + compression_header_size, data_buffer.getData(), |
| 266 | uncompressed_size); | ||
| 267 | |||
| 268 | // Serialize the header bytes to the front of the data | ||
| 269 |
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5032 | serializeCompressionHeader(data_reser, static_cast<FwSizeStoreType>(uncompressed_size), |
| 270 |
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5032 | CompressionMetadata(CompressionAlgorithm::UNCOMPRESSED)); |
| 271 | |||
| 272 | // Move the serializer past the uncompressed chunk manually | ||
| 273 |
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2516 | ser_stat = data_reser.serializeSkip(uncompressed_size); |
| 274 | 2516 | FW_ASSERT(ser_stat == Fw::FW_SERIALIZE_OK, ser_stat); | |
| 275 | |||
| 276 |
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2516 | serializeCompressionHeader(data_reser, compressed_size, CompressionMetadata(alg)); |
| 277 | |||
| 278 |
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2516 | ser_stat = data_reser.serializeFrom(comp_data_ptr, compressed_size, Fw::Serialization::OMIT_LENGTH); |
| 279 | 2516 | FW_ASSERT(ser_stat == Fw::FW_SERIALIZE_OK, ser_stat); | |
| 280 | 2516 | break; | |
| 281 | 284120 | case LAST_COMPRESSED: | |
| 282 | // Case B | ||
| 283 | // 1. Write header at data_reser location | ||
| 284 | // 2. Serialize compressed data | ||
| 285 |
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284120 | serializeCompressionHeader(data_reser, compressed_size, CompressionMetadata(alg)); |
| 286 | |||
| 287 |
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284120 | ser_stat = data_reser.serializeFrom(comp_data_ptr, compressed_size, Fw::Serialization::OMIT_LENGTH); |
| 288 | 284120 | FW_ASSERT(ser_stat == Fw::FW_SERIALIZE_OK, ser_stat); | |
| 289 | 284120 | break; | |
| 290 | 90752 | case LAST_UNCOMPRESSED: | |
| 291 | // Case E | ||
| 292 | // 1. Write header for uncompressed data. | ||
| 293 | // data_reser has been kept at this location | ||
| 294 | // 2. Serialize uncompressed data | ||
| 295 | // 3. Write header for compressed data at data_reser location | ||
| 296 | // 4. Serialize compressed data | ||
| 297 | |||
| 298 | // Assert that the serialization operations in Case E will stay within deser_loc bounds | ||
| 299 | 90752 | FW_ASSERT( | |
| 300 | deser_loc >= | ||
| 301 | (data_reser.getSize() + uncompressed_size + 2 * compression_header_size + compressed_size), | ||
| 302 | static_cast<FwAssertArgType>(deser_loc), static_cast<FwAssertArgType>(data_reser.getSize()), | ||
| 303 | static_cast<FwAssertArgType>(uncompressed_size), static_cast<FwAssertArgType>(compressed_size)); | ||
| 304 |
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181504 | serializeCompressionHeader(data_reser, static_cast<FwSizeStoreType>(uncompressed_size), |
| 305 |
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181504 | CompressionMetadata(CompressionAlgorithm::UNCOMPRESSED)); |
| 306 | |||
| 307 | 90752 | FW_ASSERT(uncompressed_head != nullptr); | |
| 308 | ser_stat = | ||
| 309 |
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90752 | data_reser.serializeFrom(uncompressed_head, uncompressed_size, Fw::Serialization::OMIT_LENGTH); |
| 310 | 90752 | FW_ASSERT(ser_stat == Fw::FW_SERIALIZE_OK, ser_stat); | |
| 311 | |||
| 312 |
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90752 | serializeCompressionHeader(data_reser, compressed_size, CompressionMetadata(alg)); |
| 313 | |||
| 314 |
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90752 | ser_stat = data_reser.serializeFrom(comp_data_ptr, compressed_size, Fw::Serialization::OMIT_LENGTH); |
| 315 | 90752 | FW_ASSERT(ser_stat == Fw::FW_SERIALIZE_OK, ser_stat); | |
| 316 | 90752 | break; | |
| 317 | ✗ | default: | |
| 318 | ✗ | FW_ASSERT(false, state); | |
| 319 | ✗ | break; | |
| 320 | } | ||
| 321 | |||
| 322 | // Last chunk was compressed. Remove history of uncompressed data | ||
| 323 | 377388 | uncompressed_size = 0; | |
| 324 | 377388 | uncompressed_head = nullptr; | |
| 325 | 377388 | state = LAST_COMPRESSED; | |
| 326 | } else { | ||
| 327 | // Data was uncompressed | ||
| 328 | |||
| 329 | // If the first chunk is not compressible treat the state as | ||
| 330 | // if it was PRE_COMMIT | ||
| 331 |
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126869 | if (state == INIT) { |
| 332 | 2553 | state = PRE_COMMIT; | |
| 333 | } | ||
| 334 | |||
| 335 |
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126869 | switch (state) { |
| 336 | 3362 | case PRE_COMMIT: | |
| 337 | // No work. | ||
| 338 | // Keep looking for a compressible chunk in order to commit | ||
| 339 | // to a compressed structure | ||
| 340 | 3362 | state = PRE_COMMIT; | |
| 341 | 3362 | break; | |
| 342 | 93199 | case LAST_COMPRESSED: | |
| 343 | // Case C - First incompressible chunk | ||
| 344 | // | ||
| 345 | // 1. Mark the location of the start of incompressible chunks | ||
| 346 |
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93199 | uncompressed_head = compression_buffer.getData(); |
| 347 | |||
| 348 | 93199 | state = LAST_UNCOMPRESSED; | |
| 349 | 93199 | break; | |
| 350 | 30308 | case LAST_UNCOMPRESSED: | |
| 351 | // Case D - Continued sequence of incompressible chunks | ||
| 352 | // No work. Keep increasing track of uncompressed_size | ||
| 353 | 30308 | state = LAST_UNCOMPRESSED; | |
| 354 | 30308 | break; | |
| 355 | ✗ | default: | |
| 356 | ✗ | FW_ASSERT(false, state); | |
| 357 | ✗ | break; | |
| 358 | } | ||
| 359 | 126869 | uncompressed_size += chunk_size; | |
| 360 | } | ||
| 361 | |||
| 362 | // Confirm that the serialized location has not jumped ahead of the deserialize location | ||
| 363 |
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504257 | const FwSizeType ser_loc = data_reser.getSize(); |
| 364 |
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504257 | const FwSizeType deser_loc = static_cast<uintptr_t>(data_deser.getBuffAddrLeft() - data_buffer.getData()); |
| 365 | 504257 | FW_ASSERT(ser_loc <= deser_loc, static_cast<FwAssertArgType>(ser_loc), static_cast<FwAssertArgType>(deser_loc)); | |
| 366 | 504257 | } | |
| 367 | |||
| 368 |
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10009 | switch (state) { |
| 369 | 37 | case PRE_COMMIT: | |
| 370 | // Never compressed a chunk. Return the buffer | ||
| 371 | // unchanged | ||
| 372 |
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37 | log_ACTIVITY_LO_DidNotCompress(container.getId(), container.getDataSize()); |
| 373 | 37 | break; | |
| 374 | 2447 | case LAST_UNCOMPRESSED: | |
| 375 | // Need to serialize the last bit of uncompressed data | ||
| 376 | // 1. Write header for uncompressed data. | ||
| 377 | // data_reser has been kept at this location | ||
| 378 | // 2. Serialize uncompressed data | ||
| 379 |
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4894 | serializeCompressionHeader(data_reser, static_cast<FwSizeStoreType>(uncompressed_size), |
| 380 |
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4894 | CompressionMetadata(CompressionAlgorithm::UNCOMPRESSED)); |
| 381 | |||
| 382 | 2447 | FW_ASSERT(uncompressed_head != nullptr); | |
| 383 |
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2447 | ser_stat = data_reser.serializeFrom(uncompressed_head, uncompressed_size, Fw::Serialization::OMIT_LENGTH); |
| 384 | 2447 | FW_ASSERT(ser_stat == Fw::FW_SERIALIZE_OK, ser_stat); | |
| 385 | |||
| 386 | /* FALLTHRU */ | ||
| 387 | case LAST_COMPRESSED: | ||
| 388 | // Update buffer and header size to be consistent | ||
| 389 | // with the compression achieved | ||
| 390 | |||
| 391 | { | ||
| 392 |
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9972 | FwSizeType comp_data_size = data_reser.getSize(); |
| 393 |
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9972 | log_DIAGNOSTIC_CompressionComplete(container.getId(), container.getDataSize(), comp_data_size); |
| 394 | |||
| 395 | 9972 | container.setDataSize(comp_data_size); | |
| 396 |
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9972 | container.serializeHeader(); |
| 397 | } | ||
| 398 | 9972 | break; | |
| 399 | ✗ | default: | |
| 400 | ✗ | FW_ASSERT(false, state); | |
| 401 | } | ||
| 402 | 10016 | } | |
| 403 | |||
| 404 | } // namespace Svc | ||
| 405 |