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https://codeberg.org/Freeyourgadget/Gadgetbridge
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Zepp OS: Attempt to parse raw sensor values
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@ -150,6 +150,9 @@ public abstract class Huami2021Support extends HuamiSupport implements ZeppOsFil
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// send CONTINUE commands
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// send CONTINUE commands
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private boolean heartRateRealtimeStarted;
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private boolean heartRateRealtimeStarted;
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// Keep track of whether the rawSensor is enabled
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private boolean rawSensor = false;
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// Services
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// Services
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private final ZeppOsServicesService servicesService = new ZeppOsServicesService(this);
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private final ZeppOsServicesService servicesService = new ZeppOsServicesService(this);
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private final ZeppOsFileTransferService fileTransferService = new ZeppOsFileTransferService(this);
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private final ZeppOsFileTransferService fileTransferService = new ZeppOsFileTransferService(this);
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@ -242,13 +245,7 @@ public abstract class Huami2021Support extends HuamiSupport implements ZeppOsFil
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@Override
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@Override
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public void onTestNewFunction() {
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public void onTestNewFunction() {
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try {
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setRawSensor(!rawSensor);
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final TransactionBuilder builder = performInitialized("test");
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//requestMTU(247);
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builder.queue(getQueue());
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} catch (final Exception e) {
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LOG.error("Failed to test new function", e);
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}
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}
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}
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@Override
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@Override
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@ -977,6 +974,8 @@ public abstract class Huami2021Support extends HuamiSupport implements ZeppOsFil
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@Override
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@Override
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protected void setRawSensor(final boolean enable) {
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protected void setRawSensor(final boolean enable) {
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LOG.info("Set raw sensor to {}", enable);
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LOG.info("Set raw sensor to {}", enable);
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rawSensor = enable;
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try {
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try {
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final TransactionBuilder builder = performInitialized("set raw sensor");
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final TransactionBuilder builder = performInitialized("set raw sensor");
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if (enable) {
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if (enable) {
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@ -995,7 +994,51 @@ public abstract class Huami2021Support extends HuamiSupport implements ZeppOsFil
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@Override
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@Override
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protected void handleRawSensorData(final byte[] value) {
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protected void handleRawSensorData(final byte[] value) {
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LOG.debug("Raw sensor: {}", GB.hexdump(value));
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// The g values seem to vary between -4100 and 4100, so we scale them
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final float scaleFactor = 4100f;
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final float gravity = -9.81f;
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final ByteBuffer buf = ByteBuffer.wrap(value).order(ByteOrder.LITTLE_ENDIAN);
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final byte type = buf.get();
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final int index = buf.get() & 0xff; // always incrementing, for each type
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if (type == 0x00) {
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// g-sensor x y z values, per second
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if ((value.length - 2) % 6 != 0) {
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LOG.warn("Raw sensor value for type 0 not divisible by 6");
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return;
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}
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for (int i = 2; i < value.length; i += 6) {
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final int x = (BLETypeConversions.toUint16(value, i) << 16) >> 16;
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final int y = (BLETypeConversions.toUint16(value, i + 2) << 16) >> 16;
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final int z = (BLETypeConversions.toUint16(value, i + 4) << 16) >> 16;
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final float gx = (x * gravity) / scaleFactor;
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final float gy = (y * gravity) / scaleFactor;
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final float gz = (z * gravity) / scaleFactor;
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LOG.info("Raw sensor g: x={} y={} z={}", gx, gy, gz);
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}
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} else if (type == 0x01) {
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// TODO not sure what this is?
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if ((value.length - 2) % 4 != 0) {
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LOG.warn("Raw sensor value for type 1 not divisible by 4");
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return;
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}
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for (int i = 2; i < value.length; i += 4) {
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int val = BLETypeConversions.toUint32(value, i);
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LOG.info("Raw sensor 1: {}", val);
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}
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} else if (type == 0x07) {
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// Timestamp for the targetType, sent in intervals of ~10 seconds
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final int targetType = buf.get() & 0xff;
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final long tsMillis = buf.getLong();
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LOG.debug("Raw sensor timestamp for type={} index={}: {}", targetType, index, new Date(tsMillis));
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} else {
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LOG.warn("Unknown raw sensor type: {}", GB.hexdump(value));
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}
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}
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}
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@Override
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@Override
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