mirror of
https://github.com/introlab/rtabmap.git
synced 2026-10-06 18:17:47 +08:00
Keep already compressed user_data and laser_scan if possible
This commit is contained in:
+20
-12
@@ -6672,6 +6672,10 @@ Signature * Memory::createSignature(const SensorData & inputData, const Transfor
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bool reuseCompressedDepthConfidence =
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depthConfidence.data == data.depthConfidenceRaw().data &&
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!data.depthConfidenceCompressed().empty();
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bool reuseCompressedUserData = !data.userDataCompressed().empty();
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bool reuseCompressedScan =
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laserScan.data().data == data.laserScanRaw().data().data &&
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!data.laserScanCompressed().isEmpty();
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cv::Mat compressedImage;
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cv::Mat compressedDepth;
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@@ -6697,11 +6701,11 @@ Signature * Memory::createSignature(const SensorData & inputData, const Transfor
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{
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ctDepthConfidence.start();
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}
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if(!laserScan.isEmpty())
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if(!laserScan.isEmpty() && !reuseCompressedScan)
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{
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ctLaserScan.start();
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}
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if(!data.userDataRaw().empty())
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if(!data.userDataRaw().empty() && !reuseCompressedUserData)
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{
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ctUserData.start();
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}
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@@ -6714,16 +6718,16 @@ Signature * Memory::createSignature(const SensorData & inputData, const Transfor
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compressedImage = ctImage.getCompressedData();
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compressedDepth = ctDepth.getCompressedData();
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compressedDepthConfidence = ctDepthConfidence.getCompressedData();
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compressedScan = ctLaserScan.getCompressedData();
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compressedUserData = ctUserData.getCompressedData();
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compressedScan = reuseCompressedScan?data.laserScanCompressed().data():ctLaserScan.getCompressedData();
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compressedUserData = reuseCompressedUserData?data.userDataCompressed():ctUserData.getCompressedData();
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}
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else
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{
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compressedImage = reuseCompressedImage?cv::Mat():compressImage2(image, _rgbCompressionFormat);
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compressedDepth = reuseCompressedDepth?cv::Mat():compressImage2(depthOrRightImage, depthOrRightImage.type() == CV_32FC1 || depthOrRightImage.type() == CV_16UC1?_depthCompressionFormat:_rgbCompressionFormat);
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compressedDepthConfidence = reuseCompressedDepthConfidence?cv::Mat():compressData2(depthConfidence);
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compressedScan = compressData2(laserScan.data());
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compressedUserData = compressData2(data.userDataRaw());
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compressedScan = reuseCompressedScan?data.laserScanCompressed().data():compressData2(laserScan.data());
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compressedUserData = reuseCompressedUserData?data.userDataCompressed():compressData2(data.userDataRaw());
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}
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s = new Signature(id,
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@@ -6787,28 +6791,32 @@ Signature * Memory::createSignature(const SensorData & inputData, const Transfor
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// just compress user data and laser scan (scans can be used for local scan matching)
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cv::Mat compressedScan;
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cv::Mat compressedUserData;
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bool reuseCompressedUserData = !data.userDataCompressed().empty();
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bool reuseCompressedScan =
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laserScan.data().data == data.laserScanRaw().data().data &&
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!data.laserScanCompressed().isEmpty();
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if(_compressionParallelized)
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{
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rtabmap::CompressionThread ctUserData(data.userDataRaw());
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rtabmap::CompressionThread ctLaserScan(laserScan.data());
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if(!data.userDataRaw().empty() && !isIntermediateNode)
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if(!data.userDataRaw().empty() && !isIntermediateNode && !reuseCompressedUserData)
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{
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ctUserData.start();
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}
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if(!laserScan.isEmpty() && !isIntermediateNode)
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if(!laserScan.isEmpty() && !isIntermediateNode && !reuseCompressedScan)
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{
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ctLaserScan.start();
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}
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ctUserData.join();
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ctLaserScan.join();
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compressedScan = ctLaserScan.getCompressedData();
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compressedUserData = ctUserData.getCompressedData();
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compressedScan = reuseCompressedScan?data.laserScanCompressed().data():ctLaserScan.getCompressedData();
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compressedUserData = reuseCompressedUserData && !isIntermediateNode?data.userDataCompressed():ctUserData.getCompressedData();
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}
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else
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{
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compressedScan = compressData2(laserScan.data());
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compressedUserData = compressData2(data.userDataRaw());
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compressedScan = reuseCompressedScan?data.laserScanCompressed().data():compressData2(laserScan.data());
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compressedUserData = reuseCompressedUserData?data.userDataCompressed():compressData2(data.userDataRaw());
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}
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s = new Signature(id,
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@@ -3131,6 +3131,94 @@ TEST(MemoryTest, GetNodeDataReturnsInMemoryPayloadsWhenSignatureNotSaved)
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EXPECT_EQ(r.imageCompressed().cols, s->sensorData().imageCompressed().cols);
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}
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TEST(MemoryTest, UpdateKeepsUserDataThatArrivesCompressed)
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{
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// User data can reach update() already compressed, with no raw copy -- as it does
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// from a serialized SensorData (e.g., rtabmap_ros's SensorData messages). It must be
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// stored as it is, like already-compressed images, rather than dropped for lack of
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// raw data to compress. Checked with and without Mem/BinDataKept, which build the
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// signature in two different branches, and with and without parallel compression.
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const cv::Mat userData = (cv::Mat_<float>(1, 4) << 1.0f, 2.0f, 3.0f, 4.0f);
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for(const char * binDataKept : {"true", "false"})
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{
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for(const char * parallel : {"true", "false"})
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{
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SCOPED_TRACE(std::string("Mem/BinDataKept=") + binDataKept +
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" Mem/CompressionParallelized=" + parallel);
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ParametersMap params = defaultMemoryParams();
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params[Parameters::kMemBinDataKept()] = binDataKept;
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params[Parameters::kMemCompressionParallelized()] = parallel;
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Memory memory(params);
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SensorData data(cv::Mat(8, 8, CV_8UC1, cv::Scalar(128)));
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data.setUserData(compressData2(userData)); // bytes: taken as already compressed
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ASSERT_TRUE(data.userDataRaw().empty());
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ASSERT_FALSE(data.userDataCompressed().empty());
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ASSERT_TRUE(memory.update(data, Transform(0, 0, 0, 0, 0, 0), cv::Mat::eye(6, 6, CV_64FC1) * 0.01));
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const Signature * s = memory.getSignature(memory.getLastSignatureId());
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ASSERT_NE(s, nullptr);
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ASSERT_FALSE(s->sensorData().userDataCompressed().empty());
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const cv::Mat stored = uncompressData(s->sensorData().userDataCompressed());
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ASSERT_EQ(stored.size(), userData.size());
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ASSERT_EQ(stored.type(), userData.type());
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EXPECT_EQ(0.0, cv::norm(stored, userData, cv::NORM_INF));
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}
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}
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}
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TEST(MemoryTest, UpdateReusesTheGivenCompressedScanUnlessItFiltersIt)
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{
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// A scan given both raw and compressed is not compressed again: the compressed copy
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// given is stored as is, sharing its buffer -- but only while Memory has not filtered
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// the scan, since a filtered scan no longer matches the compressed one given.
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cv::Mat points(1, 10, CV_32FC3);
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for(int i = 0; i < points.cols; ++i)
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{
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points.at<cv::Vec3f>(0, i) = cv::Vec3f(1.0f + i, 0.5f * i, 0.0f);
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}
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for(const char * binDataKept : {"true", "false"})
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{
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for(const char * parallel : {"true", "false"})
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{
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for(const char * downsample : {"1", "2"})
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{
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SCOPED_TRACE(std::string("Mem/BinDataKept=") + binDataKept +
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" Mem/CompressionParallelized=" + parallel +
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" Mem/LaserScanDownsampleStepSize=" + downsample);
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ParametersMap params = defaultMemoryParams();
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params[Parameters::kMemBinDataKept()] = binDataKept;
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params[Parameters::kMemCompressionParallelized()] = parallel;
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params[Parameters::kMemLaserScanDownsampleStepSize()] = downsample;
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Memory memory(params);
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SensorData data(cv::Mat(8, 8, CV_8UC1, cv::Scalar(128)));
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const LaserScan compressedScan(compressData2(points), points.cols, 10.0f, LaserScan::kXYZ);
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data.setLaserScan(compressedScan);
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data.setLaserScan(LaserScan(points, points.cols, 10.0f, LaserScan::kXYZ), false);
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ASSERT_FALSE(data.laserScanRaw().isEmpty());
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ASSERT_FALSE(data.laserScanCompressed().isEmpty());
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ASSERT_TRUE(memory.update(data, Transform(0, 0, 0, 0, 0, 0), cv::Mat::eye(6, 6, CV_64FC1) * 0.01));
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const Signature * s = memory.getSignature(memory.getLastSignatureId());
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ASSERT_NE(s, nullptr);
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const LaserScan & stored = s->sensorData().laserScanCompressed();
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ASSERT_FALSE(stored.isEmpty());
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if(std::string(downsample) == "1")
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{
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EXPECT_EQ(stored.data().data, compressedScan.data().data);
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}
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else
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{
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EXPECT_NE(stored.data().data, compressedScan.data().data);
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EXPECT_EQ(uncompressData(stored.data()).cols, points.cols / 2);
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}
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}
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}
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}
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}
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TEST(MemoryTest, GetNodeDataLoadsTheGridOfASavedSignatureFromDatabase)
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{
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// Once a signature still in WM is saved (Rtabmap::process() does it right after
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