dre: Move GNSS files back to proprietary-files.txt
They won't be edited, so don't store them locally. Change-Id: I4fb340553442e1ddaf09c9ea81743c0745999e1a
This commit is contained in:
parent
61cd2f935a
commit
fa0473e516
8 changed files with 7 additions and 762 deletions
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@ -233,13 +233,7 @@ PRODUCT_PACKAGES += \
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android.hardware.gnss@2.1.vendor
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PRODUCT_COPY_FILES += \
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$(LOCAL_PATH)/gps/flp.conf:$(TARGET_COPY_OUT_VENDOR)/etc/flp.conf \
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$(LOCAL_PATH)/gps/gnss_antenna_info.conf:$(TARGET_COPY_OUT_VENDOR)/etc/gnss_antenna_info.conf \
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$(LOCAL_PATH)/gps/gps.conf:$(TARGET_COPY_OUT_ODM)/etc/gps.conf \
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$(LOCAL_PATH)/gps/izat.conf:$(TARGET_COPY_OUT_VENDOR)/etc/izat.conf \
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$(LOCAL_PATH)/gps/lowi.conf:$(TARGET_COPY_OUT_VENDOR)/etc/lowi.conf \
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$(LOCAL_PATH)/gps/sap.conf:$(TARGET_COPY_OUT_VENDOR)/etc/sap.conf \
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$(LOCAL_PATH)/gps/xtwifi.conf:$(TARGET_COPY_OUT_VENDOR)/etc/xtwifi.conf
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$(LOCAL_PATH)/gps/gps.conf:$(TARGET_COPY_OUT_ODM)/etc/gps.conf
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PRODUCT_COPY_FILES += \
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frameworks/native/data/etc/android.hardware.location.gps.xml:$(TARGET_COPY_OUT_VENDOR)/etc/permissions/android.hardware.location.gps.xml
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60
gps/flp.conf
60
gps/flp.conf
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@ -1,60 +0,0 @@
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###################################
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##### FLP settings #####
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###################################
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###################################
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# FLP BATCH SIZE
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###################################
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# The number of batched locations
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# requested to modem. The desired number
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# defined below may not be satisfied, as
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# the modem can only return the number
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# of batched locations that can be allocated,
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# which is limited by memory. The default
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# batch size defined as 20 as below.
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BATCH_SIZE=20
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###################################
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# FLP OUTDOOR TRIP BATCH SIZE
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###################################
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# The number of batched locations
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# requested to modem for outdoor
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# trip batching. The desired number
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# defined below may not be satisfied, as
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# the modem can only return the number
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# of batched locations that can be allocated,
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# which is limited by memory. The default
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# trip batch size defined as 600 as below.
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OUTDOOR_TRIP_BATCH_SIZE=600
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###################################
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# FLP BATCHING SESSION TIMEOUT
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###################################
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# Duration with which batch session timeout
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# happens in milliseconds. If not specified
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# or set to zero, batching session timeout
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# defaults to 20 seconds by the modem.
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# BATCH_SESSION_TIMEOUT=20000
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###################################
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# FLP BATCHING ACCURACY
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###################################
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# Set to one of the defined values below
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# to define the accuracy of batching.
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# If not specified, accuracy defaults
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# to LOW.
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# FLP BATCHING ACCURACY values:
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# Low accuracy = 0
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# Medium accuracy = 1
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# High accuracy = 2
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ACCURACY=1
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####################################
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# By default if network fixes are not sensor assisted
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# these fixes must be dropped. This parameter adds an exception
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# for targets where there is no PDR and we still want to
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# report out network fixes
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# 0: MUST NOT ALLOW NETWORK FIXES
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# 1: ALLOW NETWORK FIXES
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####################################
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ALLOW_NETWORK_FIXES = 0
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@ -1,134 +0,0 @@
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###################################
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##### ANTENNA INFORMATION #####
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###################################
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###################################
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# ANTENNA INFO VECTOR SIZE
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###################################
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# The number of antenna info
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# structures in the vector. Each
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# entry in this vector is a structure
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# with the following elements:
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#
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# - CARRIER_FREQUENCY
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# - PC_OFFSET
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# - PC_VARIATION_CORRECTION
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# - PC_VARIATION_CORRECTION_UNC
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# - SIGNAL_GAIN_CORRECTION
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# - SIGNAL_GAIN_CORRECTION_UNC
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#
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# Notes:
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# CARRIER_FREQUENCY
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# The carrier frequency in MHz.
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#
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# PC = PHASE CENTER
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# PC_OFFSET is a structure with six
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# elements: x, y, z and their associated uncertainties
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# Phase center offset (PCO) is defined with
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# respect to the origin of the Android sensor coordinate system, e.g.,
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# center of primary screen for mobiles
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#
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# PC_VARIATION_CORRECTION
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# 2D vectors representing the phase center variation (PCV) corrections,
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# in millimeters, at regularly spaced azimuthal angle (theta) and zenith angle
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# (phi). The PCV correction is added to the phase measurement to obtain the
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# corrected value.
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# The azimuthal angle, theta, is defined with respect to the X axis of the
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# Android sensor coordinate system, increasing toward the Y axis. The zenith
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# angle, phi, is defined with respect to the Z axis of the Android Sensor
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# coordinate system, increasing toward the X-Y plane.
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# Each row vector (outer vectors) represents a fixed theta. The first row
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# corresponds to a theta angle of 0 degrees. The last row corresponds to a
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# theta angle of (360 - deltaTheta) degrees, where deltaTheta is the regular
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# spacing between azimuthal angles, i.e., deltaTheta = 360 / (number of rows).
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# The columns (inner vectors) represent fixed zenith angles, beginning at 0
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# degrees and ending at 180 degrees. They are separated by deltaPhi, the regular
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# spacing between zenith angles, i.e., deltaPhi = 180 / (number of columns - 1).
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#
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# PC_VARIATION_CORRECTION_UNC
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# 2D vectors of 1-sigma uncertainty in millimeters associated with the PCV
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# correction values.
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#
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# SIGNAL_GAIN_CORRECTION
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# 2D vectors representing the signal gain corrections at regularly spaced
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# azimuthal angle (theta) and zenith angle (phi). The values are calculated or
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# measured at the antenna feed point without considering the radio and receiver
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# noise figure and path loss contribution, in dBi, i.e., decibel over isotropic
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# antenna with the same total power. The signal gain correction is added the
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# signal gain measurement to obtain the corrected value.
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# The azimuthal angle, theta, is defined with respect to the X axis of the
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# Android sensor coordinate system, increasing toward the Y axis. The zenith
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# angle, phi, is defined with respect to the Z axis of the Android Sensor
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# coordinate system, increasing toward the X-Y plane.
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# Each row vector (outer vectors) represents a fixed theta. The first row
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# corresponds to a theta angle of 0 degrees. The last row corresponds to a
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# theta angle of (360 - deltaTheta) degrees, where deltaTheta is the regular
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# spacing between azimuthal angles, i.e., deltaTheta = 360 / (number of rows).
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# The columns (inner vectors) represent fixed zenith angles, beginning at 0
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# degrees and ending at 180 degrees. They are separated by deltaPhi, the regular
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# spacing between zenith angles, i.e., deltaPhi = 180 / (number of columns - 1).
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#
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# SIGNAL_GAIN_CORRECTION_UNC
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# 2D vectors of 1-sigma uncertainty in dBi associated with the signal
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# gain correction values.
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#
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# The number of rows and columns could be the same for PC variation correction
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# and signal gain corrections, or could be different
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# If the former then NUMBER_OF_ROWS_ and NUMBER_OF_COLUMNS_ are specified once
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# only, if the latter then NUMBER_OF_ROWS_ and NUMBER_OF_COLUMNS_ represent
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# the number of rows/columns for PC variation correction and
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# NUMBER_OF_ROWS_SGC_ and NUMBER_OF_COLUMNS_SGC_ represent the number of
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# rows/columns for signal gain corrections
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ANTENNA_INFO_VECTOR_SIZE = 2
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CARRIER_FREQUENCY_0 = 1575.42
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PC_OFFSET_0 = 1.2 0.1 3.4 0.2 5.6 0.3
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NUMBER_OF_ROWS_0 = 3
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NUMBER_OF_COLUMNS_0 = 4
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PC_VARIATION_CORRECTION_0_ROW_0 = 11.22 33.44 55.66 77.88
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PC_VARIATION_CORRECTION_0_ROW_1 = 10.2 30.4 50.6 70.8
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PC_VARIATION_CORRECTION_0_ROW_2 = 12.2 34.4 56.6 78.8
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PC_VARIATION_CORRECTION_UNC_0_ROW_0 = 0.1 0.2 0.3 0.4
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PC_VARIATION_CORRECTION_UNC_0_ROW_1 = 1.1 1.2 1.3 1.4
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PC_VARIATION_CORRECTION_UNC_0_ROW_2 = 2.1 2.2 2.3 2.4
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SIGNAL_GAIN_CORRECTION_0_ROW_0 = 9.8 8.7 7.6 6.5
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SIGNAL_GAIN_CORRECTION_0_ROW_1 = 5.4 4.3 3.2 2.1
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SIGNAL_GAIN_CORRECTION_0_ROW_2 = 1.3 2.4 3.5 4.6
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SIGNAL_GAIN_CORRECTION_UNC_0_ROW_0 = 0.11 0.22 0.33 0.44
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SIGNAL_GAIN_CORRECTION_UNC_0_ROW_1 = 0.55 0.66 0.77 0.88
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SIGNAL_GAIN_CORRECTION_UNC_0_ROW_2 = 0.91 0.92 0.93 0.94
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CARRIER_FREQUENCY_1 = 1227.6
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PC_OFFSET_1 = 3.4 0.2 5.6 0.3 1.2 0.1
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NUMBER_OF_ROWS_1 = 4
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NUMBER_OF_COLUMNS_1 = 2
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NUMBER_OF_ROWS_SGC_1 = 3
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NUMBER_OF_COLUMNS_SGC_1 = 4
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PC_VARIATION_CORRECTION_1_ROW_0 = 55.66 77.88
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PC_VARIATION_CORRECTION_1_ROW_1 = 11.22 33.44
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PC_VARIATION_CORRECTION_1_ROW_2 = 56.6 78.8
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PC_VARIATION_CORRECTION_1_ROW_3 = 12.2 34.4
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PC_VARIATION_CORRECTION_UNC_1_ROW_0 = 0.3 0.4
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PC_VARIATION_CORRECTION_UNC_1_ROW_1 = 1.1 1.2
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PC_VARIATION_CORRECTION_UNC_1_ROW_2 = 2.1 2.2
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PC_VARIATION_CORRECTION_UNC_1_ROW_3 = 0.1 0.2
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SIGNAL_GAIN_CORRECTION_1_ROW_0 = 7.6 6.5 5.4 4.3
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SIGNAL_GAIN_CORRECTION_1_ROW_1 = 1.3 2.4 9.8 8.7
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SIGNAL_GAIN_CORRECTION_1_ROW_2 = 1.4 2.5 3.6 4.7
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SIGNAL_GAIN_CORRECTION_UNC_1_ROW_0 = 0.91 0.92 0.55 0.66
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SIGNAL_GAIN_CORRECTION_UNC_1_ROW_1 = 0.11 0.22 0.93 0.94
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SIGNAL_GAIN_CORRECTION_UNC_1_ROW_2 = 0.95 0.96 0.33 0.44
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277
gps/izat.conf
277
gps/izat.conf
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@ -1,277 +0,0 @@
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#########################################
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# Log verbosity control for izat modules
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#########################################
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# OFF = 0, ERROR = 1, WARNING = 2, INFO = 3, DEBUG = 4, VERBOSE = 5
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IZAT_DEBUG_LEVEL = 2
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##################################################
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# Select WIFI Wait Timeout value in seconds for SUPL
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##################################################
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WIFI_WAIT_TIMEOUT_SELECT = 0
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##################################################
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# Time interval of injecting SRN scan data to modem
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# time in seconds.
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# Note: recommended value is between 1-5 sec
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##################################################
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LPPE_SRN_DATA_SCAN_INJECT_TIME=2
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################################
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# NLP Settings
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################################
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# NLP_MODE 1: OSNLP Only, 2: QNP Only, 3: Combo, 4: QNP preferred
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# For Automotive products, please use NLP_MODE = 4 only.
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# NLP_TOLERANCE_TIME_FIRST: Time in ms used in Combo mode
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# to determine how much Tolerance for first position
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# NLP_TOLERANCE_TIME_AFTER: Time in ms used in Combo mode
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# to determine how much Tolerance for positions after first
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# NLP_THRESHOLD: Sets how many failures needed before
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# switching preferred NLP in Combo mode
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# NLP_ACCURACY_MULTIPLE: Determines how far off the accuracy
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# must be, in multiples, between two NLP location reports to
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# be considered much worse accuracy. Used in switching logic
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# NLP COMBO MODE USES QNP WITH NO EULA CONSENT: Determines
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# whether or not to still send network location requests to
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# QNP when the EULA is not consented to by the user. QNP can
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# still return ZPP locations or injected locations even
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# without EULA consent, but the uncertainty can be high.
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# QNP preferred mode prefers QNP when there is EULA consent,
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# otherwise OSNLP is used.
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NLP_MODE = 1
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NLP_MODE_EMERGENCY = 2
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NLP_TOLERANCE_TIME_FIRST = 5000
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NLP_TOLERANCE_TIME_AFTER = 20000
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NLP_THRESHOLD = 3
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NLP_ACCURACY_MULTIPLE = 2
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NLP_COMBO_MODE_USES_QNP_WITH_NO_EULA_CONSENT = 1
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#########################################
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# NLP PACKAGE SETTINGS
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#########################################
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# OSNLP_PACKAGE: name of default NLP package
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OSNLP_PACKAGE = com.google.android.gms
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# REGION_OSNLP_PACKAGE:
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# This value will be used as alternative
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# for particular region where default NLP is not functional.
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#REGION_OSNLP_PACKAGE =
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###################################
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# GEOFENCE SERVICES
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###################################
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# If set to one of the defined values below, it will override
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# the responsiveness for geofence services, which implements
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# the Proximity Alert API. If not set to a value defined below,
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# which is default, it will not override the responsivness.
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# The geofence HAL API is unaffected by this value.
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# GEOFENCE_SERVICES_RESPONSIVENESS_OVERRIDE Values:
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# 1: LOW responsiveness
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# 2: MEDIUM responsiveness
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# 3: HIGH responsiveness
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GEOFENCE_SERVICES_RESPONSIVENESS_OVERRIDE = 0
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#####################################
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#GTP Opt-In app
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#####################################
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#GTP privacy policy version url
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#https support is required
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GTP_PRIVACY_VERSION_URL = https://info.izatcloud.net/privacy/version.html
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#GTP privacy policy version download retry interval
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#unit is second. default is 86400
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GTP_PRIVACY_RETRY_INTERVAL = 86400
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#####################################
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# IZAT PREMIUM FEATURE SETTINGS
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#####################################
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#Possible states of a feature:
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#DISABLED
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#BASIC
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#PREMIUM
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#GTP_MODE valid modes:
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# DISABLED
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# LEGACY_WWAN
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# SDK (WWAN not available for Modems before LocTech 10.0)
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# SDK_WIFI (WWAN provided by legacy Modem)
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GTP_MODE=DISABLED
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#GTP_WAA valid modes:
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# DISABLED
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# BASIC
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GTP_WAA=DISABLED
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#SAP valid modes:
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# DISABLED
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# BASIC
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# PREMIUM
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# PREMIUM_ENV_AIDING
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# MODEM_DEFAULT
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SAP=PREMIUM
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#FREE_WIFI_SCAN_INJECT valid modes:
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#DISABLED
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#BASIC
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FREE_WIFI_SCAN_INJECT=BASIC
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#SUPL_WIFI valid modes:
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#DISABLED
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#BASIC
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SUPL_WIFI=BASIC
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#WIFI_SUPPLICANT_INFO valid modes:
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#DISABLED
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#BASIC
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WIFI_SUPPLICANT_INFO=BASIC
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#####################################
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# Location process launcher settings
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#####################################
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# DO NOT MODIFY
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# Modifying below attributes without
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# caution can have serious implications.
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#Values for PROCESS_STATE:
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# ENABLED
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# DISABLED
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#Values for LOW_RAM_TARGETS:
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# ENABLED
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# DISABLED
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# Property to enable/disable processes for low ram targets. Uses ro.config.low_ram property
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# to identify low ram targets.
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#PROCESS_NAME
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# Name of the executable file.
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#FEATURE MASKS:
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# GTP-WIFI 0X03
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# GTP-MP-CELL 0xc00
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# GTP-WAA 0x100
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# SAP 0Xc0
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# ODCPI 0x1000
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# FREE_WIFI_SCAN_INJECT 0x2000
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# SUPL_WIFI 0x4000
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# WIFI_SUPPLICANT_INFO 0x8000
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#Values for PLATFORMS can be:
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#1. Any valid values obtained from ro.board.platform separated by single space. For example: msm8960 msm8226
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#2. 'all' or 'all exclude' -> for All platforms
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#3. 'all exclude XXXX' -> All platforms exclude XXXX. For example: all exclude msm8937
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#Values for SOC_IDS can be:
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#1. Any valid values obtained from soc_id node separated by single space. For example: 339 386 436
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## soc_id value can be obtained from any one of below node:
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## - /sys/devices/soc0/soc_id
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## - /sys/devices/system/soc/soc0/id
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#2. 'all' or 'all exclude' -> for All soc id's
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#3. 'all exclude XXXX' -> All soc id's exclude XXXX. For example: all exclude 339 386
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#Values for BASEBAND can be:
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#1. Any valid values obtained from ro.baseband separated by single space. For example: sglte sglte2
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#2. 'all' or 'all exclude' -> for all basebands
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#3. 'all exclude XXXX' -> All basebands exclude XXXX. For example: all exclude sglte
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PROCESS_NAME=lowi-server
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PROCESS_ARGUMENT=
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PROCESS_STATE=ENABLED
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PROCESS_GROUPS=gps wifi inet oem_2901
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PREMIUM_FEATURE=0
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IZAT_FEATURE_MASK=0xf303
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PLATFORMS=all
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SOC_IDS=all
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BASEBAND=all
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LOW_RAM_TARGETS=DISABLED
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HARDWARE_TYPE=all
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VENDOR_ENHANCED_PROCESS=0
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PROCESS_NAME=xtwifi-inet-agent
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PROCESS_ARGUMENT=
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PROCESS_STATE=ENABLED
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PROCESS_GROUPS=inet gps
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PREMIUM_FEATURE=1
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IZAT_FEATURE_MASK=0xc03
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PLATFORMS=all
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SOC_IDS=all exclude 386 436
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BASEBAND=all
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LOW_RAM_TARGETS=DISABLED
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HARDWARE_TYPE=all
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VENDOR_ENHANCED_PROCESS=1
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PROCESS_NAME=xtwifi-client
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PROCESS_ARGUMENT=
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PROCESS_STATE=ENABLED
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||||
PROCESS_GROUPS=wifi inet gps system oem_2904
|
||||
PREMIUM_FEATURE=1
|
||||
IZAT_FEATURE_MASK=0xd03
|
||||
PLATFORMS=all
|
||||
SOC_IDS=all exclude 386 436
|
||||
BASEBAND=all
|
||||
LOW_RAM_TARGETS=DISABLED
|
||||
HARDWARE_TYPE=all
|
||||
VENDOR_ENHANCED_PROCESS=1
|
||||
|
||||
PROCESS_NAME=slim_daemon
|
||||
PROCESS_ARGUMENT=
|
||||
PROCESS_STATE=DISABLED
|
||||
PROCESS_GROUPS=gps oem_2901 can plugdev diag sensors
|
||||
PREMIUM_FEATURE=1
|
||||
IZAT_FEATURE_MASK=0xf0
|
||||
PLATFORMS=all
|
||||
SOC_IDS=all exclude 386 436
|
||||
BASEBAND=all
|
||||
LOW_RAM_TARGETS=DISABLED
|
||||
HARDWARE_TYPE=all
|
||||
VENDOR_ENHANCED_PROCESS=1
|
||||
|
||||
PROCESS_NAME=xtra-daemon
|
||||
PROCESS_ARGUMENT=
|
||||
PROCESS_STATE=ENABLED
|
||||
PROCESS_GROUPS=inet gps system
|
||||
PREMIUM_FEATURE=0
|
||||
IZAT_FEATURE_MASK=0
|
||||
PLATFORMS=all
|
||||
SOC_IDS=all
|
||||
BASEBAND=all
|
||||
LOW_RAM_TARGETS=ENABLED
|
||||
HARDWARE_TYPE=all
|
||||
VENDOR_ENHANCED_PROCESS=0
|
||||
|
||||
########################################
|
||||
# Engine Service which host DRE module #
|
||||
# To enable DRE engine service, change #
|
||||
# PROCESS_STATE=ENABLED #
|
||||
########################################
|
||||
PROCESS_NAME=engine-service
|
||||
PROCESS_ARGUMENT=DRE-INT libloc_epDr.so
|
||||
PROCESS_STATE=DISABLED
|
||||
PROCESS_GROUPS=gps diag inet qwes oem_2901 system
|
||||
PREMIUM_FEATURE=0
|
||||
IZAT_FEATURE_MASK=0
|
||||
PLATFORMS=all
|
||||
SOC_IDS=all
|
||||
BASEBAND=all
|
||||
LOW_RAM_TARGETS=DISABLED
|
||||
HARDWARE_TYPE=all
|
||||
VENDOR_ENHANCED_PROCESS=1
|
||||
|
||||
########################################
|
||||
# Engine Service which host PPE module #
|
||||
# To enable PPE engine service, change #
|
||||
# PROCESS_STATE=ENABLED #
|
||||
# and update process arugements #
|
||||
# with PPE library name #
|
||||
#PROCESS_ARGUMENT=PPE libepsimulator.so#
|
||||
########################################
|
||||
PROCESS_NAME=engine-service
|
||||
PROCESS_ARGUMENT=PPE libepsimulator.so
|
||||
PROCESS_STATE=DISABLED
|
||||
PROCESS_GROUPS=gps diag inet qwes oem_2901 system
|
||||
PREMIUM_FEATURE=0
|
||||
IZAT_FEATURE_MASK=0
|
||||
PLATFORMS=all
|
||||
SOC_IDS=all
|
||||
BASEBAND=all
|
||||
LOW_RAM_TARGETS=DISABLED
|
||||
HARDWARE_TYPE=all
|
||||
VENDOR_ENHANCED_PROCESS=1
|
|
@ -1,27 +0,0 @@
|
|||
#*====*====*====*====*====*====*====*====*====*====*====*====*====*====*====*
|
||||
#
|
||||
# LOWI Config file - default
|
||||
#
|
||||
# GENERAL DESCRIPTION
|
||||
# This file contains the config params for LOWI
|
||||
#
|
||||
# Copyright (c) 2019 Qualcomm Technologies, Inc.
|
||||
# All Rights Reserved.
|
||||
# Confidential and Proprietary - Qualcomm Technologies, Inc.
|
||||
#
|
||||
# 2012-2013 Qualcomm Atheros, Inc.
|
||||
# All Rights Reserved.
|
||||
# Qualcomm Atheros Confidential and Proprietary.
|
||||
#
|
||||
# Export of this technology or software is regulated by the U.S. Government.
|
||||
# Diversion contrary to U.S. law prohibited.
|
||||
#=============================================================================*/
|
||||
|
||||
# X86 ONLY - UBUNTU:
|
||||
# Copy this file in the same directory where the executable is
|
||||
|
||||
# Log level
|
||||
# EL_LOG_OFF = 0, EL_ERROR = 1, EL_WARNING = 2, EL_INFO = 3, EL_DEBUG = 4, EL_VERBOSE = 5, EL_LOG_ALL = 100
|
||||
LOWI_LOG_LEVEL = 2
|
||||
LOWI_USE_LOWI_LP = 0
|
||||
|
179
gps/sap.conf
179
gps/sap.conf
|
@ -1,179 +0,0 @@
|
|||
################################
|
||||
# Sensor Settings
|
||||
################################
|
||||
#The following parameters are optional.
|
||||
#Internal defaults support MEMS sensors
|
||||
#native to most handset devices.
|
||||
#Device specific sensor characterization
|
||||
#for improved performance is possible as
|
||||
#described in SAP application notes.
|
||||
#GYRO_BIAS_RANDOM_WALK=
|
||||
#ACCEL_RANDOM_WALK_SPECTRAL_DENSITY=
|
||||
#ANGLE_RANDOM_WALK_SPECTRAL_DENSITY=
|
||||
#RATE_RANDOM_WALK_SPECTRAL_DENSITY=
|
||||
#VELOCITY_RANDOM_WALK_SPECTRAL_DENSITY=
|
||||
|
||||
# DEBUG LEVELS: 0 - none, 1 - Error, 2 - Warning, 3 - Info
|
||||
# 4 - Debug, 5 - Verbose
|
||||
# If DEBUG_LEVEL is commented, Android's logging levels will be used
|
||||
DEBUG_LEVEL = 0
|
||||
# Sensor Sampling Rate Parameters for Low-Data Rate Filter (should be greater than 0)
|
||||
# used in loc_eng_reinit
|
||||
SENSOR_ACCEL_BATCHES_PER_SEC=2
|
||||
SENSOR_ACCEL_SAMPLES_PER_BATCH=5
|
||||
SENSOR_GYRO_BATCHES_PER_SEC=2
|
||||
SENSOR_GYRO_SAMPLES_PER_BATCH=5
|
||||
# Sensor Sampling Rate Parameters for High-Data Rate Filter (should be greater than 0)
|
||||
SENSOR_ACCEL_BATCHES_PER_SEC_HIGH=4
|
||||
SENSOR_ACCEL_SAMPLES_PER_BATCH_HIGH=25
|
||||
SENSOR_GYRO_BATCHES_PER_SEC_HIGH=4
|
||||
SENSOR_GYRO_SAMPLES_PER_BATCH_HIGH=25
|
||||
|
||||
# Sensor Control Mode (0=AUTO, 1=FORCE_ON, 2=MODEM_DEFAULT)
|
||||
# used in loc_eng_reinit
|
||||
SENSOR_CONTROL_MODE=2
|
||||
|
||||
# Bit mask used to define which sensor algorithms are used.
|
||||
# Setting each bit has the following definition:
|
||||
# 0x1 - DISABLE_INS_POSITIONING_FILTER
|
||||
# 0x0 - ENABLE_INS_POSITIONING_FILTER
|
||||
SENSOR_ALGORITHM_CONFIG_MASK=0x0
|
||||
|
||||
#Vehicle Network Provider configuration
|
||||
|
||||
#Service configuration strings
|
||||
#The number before colon in VN_X items defines version of the format of the rest of the string
|
||||
#VN_ACCEL_CFG=0:5
|
||||
#VN_GYRO_CFG=0:5.5
|
||||
#VN_ODOMETRY_CFG=0:2,4.5
|
||||
|
||||
################################################
|
||||
# QDR3 configurations #
|
||||
################################################
|
||||
#VN_SPEED_CFG=1:131,5,8,1,2,3,1,1,9,2,14,2
|
||||
#VN_GEAR_CFG=1:422,20,4,0,4,1,9,0,1,2,3,4,5,6,7,8
|
||||
VN_SPEED_CFG=1:777,0,0,1,3,1,0.002778,0,40,8,32,8
|
||||
VN_GEAR_CFG=1:422,20,4,0,4,1,9,0,1,2,3,4,5,6,7,8
|
||||
|
||||
################################################
|
||||
# QDR2-Gyro configurations #
|
||||
################################################
|
||||
#VN_GYRO_CFG=1:555,0,1,0,0,0,0,-6.5,6.6066,-6.5,-1.00,2,6.607,6.6068,0,0,16,0.0002,0,16,0.0002,0,16,0.0002
|
||||
#VN_SPEED_CFG=1:555,0,0,1,2,1,0.01,0,56,8,48,8
|
||||
#VN_GEAR_CFG=1:555,16,4,0,1,1,9,0,1,2,3,4,5,6,7,8
|
||||
|
||||
################################################
|
||||
# QDR2-DWT configurations #
|
||||
################################################
|
||||
#VN_SPEED_CFG=1:555,22,1,2,1,1,1,0,8,8,23,1,2,0,1,0,8,8,23,1
|
||||
#VN_GEAR_CFG=1:555,12,4,16,14,16,8,1,2,3,4,5,6,7,8
|
||||
#VN_DWS_CFG=1:555,0,0,1,3,1,1,0,0,8,0,0,8,8,0,0,16,8,0,0,24,8,0,0
|
||||
#VN_GYRO_CFG=1:555,40,16,1.0,40,16,1.0,40,16,1.0
|
||||
|
||||
#####################################################################################
|
||||
# VNW service batching configuration strings #
|
||||
# VNW provider will initialize default type as Time based batching #
|
||||
# Each service batch value is configured to be 100 #
|
||||
# VN_ACCEL_CFG_BATCH_VALUE will be treated as time in Ms if VN_CFG_BATCH_TYPE #
|
||||
# is set to time based batching #
|
||||
# VN_ACCEL_CFG_BATCH_VALUE will be treated as sample count if VN_CFG_BATCH_TYPE #
|
||||
# is set to count based batching #
|
||||
# Uncomment and update batch time /sample count as per selected batching type #
|
||||
#####################################################################################
|
||||
# Batching type
|
||||
# 1 - Time based (default)
|
||||
# 2 - Count based
|
||||
VN_CFG_BATCH_TYPE=1
|
||||
|
||||
#Vehicle Accel batching value, it can either accept time in milli seconds or sample count
|
||||
#VN_ACCEL_CFG_BATCH_VALUE=100
|
||||
|
||||
#Vehicle Gyro batching value, it can either accept time in milli seconds or sample count
|
||||
VN_GYRO_CFG_BATCH_VALUE=50
|
||||
|
||||
#Vehicle Odo batching value, it can either accept time in milli seconds or sample count
|
||||
#VN_ODOMETRY_CFG_BATCH_VALUE=100
|
||||
|
||||
#Vehicle Speed batching value, it can either accept time in milli seconds or sample count
|
||||
VN_SPEED_CFG_BATCH_VALUE=50
|
||||
|
||||
#Vehicle Gear batching value, it can either accept time in milli seconds or sample count
|
||||
VN_GEAR_CFG_BATCH_VALUE=50
|
||||
|
||||
#Vehicle DWS batching value, it can either accept time in milli seconds or sample count
|
||||
#VN_DWS_CFG_BATCH_VALUE=100
|
||||
####################################################################################
|
||||
|
||||
#Procesors clock ratio: AP and CAN bus microcontroller
|
||||
################################################
|
||||
# QDR3 configurations #
|
||||
################################################
|
||||
VN_PROC_CLOCK_RATIO=1.0
|
||||
|
||||
################################################
|
||||
# QDR2-DWT OR QDR2-Gyro configurations #
|
||||
################################################
|
||||
#VN_PROC_CLOCK_RATIO = 1.0
|
||||
|
||||
# Time source used by Sensor HAL
|
||||
# Setting this value controls accuracy of location sensor services.
|
||||
# 0 - Unknown
|
||||
# 1 - CLOCK_BOOTTIME
|
||||
# 2 - CLOCK_MONOTONIC
|
||||
# 3 - CLOCK_REALTIME
|
||||
# 4 - CLOCK_BOOTTIME using Alarm timer interface
|
||||
NDK_PROVIDER_TIME_SOURCE=1
|
||||
|
||||
# Sensor Batching Configuration
|
||||
# 0 - Time based
|
||||
# 1 - Fixed count based
|
||||
# 2 - Variable count based
|
||||
COUNT_BASED_BATCHING=1
|
||||
SYNC_ONCE=0
|
||||
|
||||
# Vehicle Network Data optimization
|
||||
# Default value: 0
|
||||
# Value 0x40000 - Speed(bit 18 eSLIM_SERVICE_VEHICLE_SPEED)
|
||||
# Value 0x80000 - Speed(bit 19 eSLIM_SERVICE_VEHICLE_DWS)
|
||||
# Value 0x100000 - Speed(bit 20 eSLIM_SERVICE_VEHICLE_GEAR)
|
||||
VN_ENABLE_DATA_OPTIMIZATION=0x100000
|
||||
|
||||
# Vehicle Network Data Routing time interval
|
||||
# This is applicable only if VN_ENABLE_DATA_OPTIMIZATION value is set
|
||||
# Default value: 5000 msec
|
||||
VN_DATA_ROUTING_TIME_INTERVAL_MSEC=3000
|
||||
|
||||
#Sensor HAL Provider Configuration HAL Library name including path
|
||||
################################################
|
||||
# #
|
||||
# Configuration for BMI 160 Sensor #
|
||||
# #
|
||||
################################################
|
||||
#SENSOR_TYPE=2
|
||||
#SENSOR_HAL_LIB_PATH=/usr/lib/libbmi160sensors.so.1
|
||||
|
||||
################################################
|
||||
# #
|
||||
# Configuration for ASM330 Sensor #
|
||||
# #
|
||||
################################################
|
||||
SENSOR_TYPE=1
|
||||
SENSOR_HAL_LIB_PATH=/usr/lib/libasm330sensors.so.1
|
||||
|
||||
|
||||
################################################
|
||||
# #
|
||||
# Configuration for IAM20680 Sensor #
|
||||
# #
|
||||
################################################
|
||||
#SENSOR_TYPE=3
|
||||
#SENSOR_HAL_LIB_PATH=/usr/lib/libiam20680sensors.so.1
|
||||
|
||||
|
||||
################################################
|
||||
# #
|
||||
# Configuration for SMI130 Sensor #
|
||||
# #
|
||||
################################################
|
||||
#SENSOR_TYPE=4
|
||||
#SENSOR_HAL_LIB_PATH=/usr/lib/libsmi130sensors.so.1
|
|
@ -1,78 +0,0 @@
|
|||
#GTP AP Project client core config file
|
||||
#
|
||||
#GENERAL DESCRIPTION
|
||||
#This is used by client core
|
||||
#
|
||||
#Copyright (c) 2012-2014 Qualcomm Atheros, Inc.
|
||||
#All Rights Reserved.
|
||||
#Qualcomm Atheros Confidential and Proprietary.
|
||||
#
|
||||
#Copyright (c) 2017 Qualcomm Technologies, Inc.
|
||||
#All Rights Reserved.
|
||||
#Confidential and Proprietary - Qualcomm Technologies, Inc.
|
||||
|
||||
##############################################################################
|
||||
# non-IOT devices configuration items #
|
||||
# For non-IOT devices, configure below configuration items #
|
||||
# according to the app note: 80-NK218-1 and remove the configuration items #
|
||||
# in section of "IOT devices configuration items". #
|
||||
##############################################################################
|
||||
|
||||
# ASN URI v2 to be used by some GTP AP modules that
|
||||
# need to run with ASN URI v2 protocol.
|
||||
XT_SERVER_ROOT_URL = https://gtp1.izatcloud.net:443/uds/v2
|
||||
|
||||
# ASN URI v3 to be used by GTP AP modules that
|
||||
# can support ASN URI v3 protocol.
|
||||
XT_SERVER_ROOT_URL_V3 = https://gtp1.izatcloud.net:443/uds/v3
|
||||
|
||||
# size, in bytes, of the cache on device
|
||||
SIZE_BYTE_TOTAL_CACHE = 5000000
|
||||
|
||||
##############################################################################
|
||||
# IOT devices configuration items #
|
||||
# For IOT devices, configure below configuration items #
|
||||
# according to the app note and remove the configuration items in section of #
|
||||
# "non-IOT devices configuration items". #
|
||||
##############################################################################
|
||||
|
||||
# ASN URI v3 to be used by GTP AP modules that
|
||||
# can support ASN URI v3 protocol.
|
||||
# XT_SERVER_ROOT_URL_V3 = https://gtpma1.izatcloud.net:443/uds/v3
|
||||
|
||||
# 3: Wi-Fi APDB injection via Izat SDK. GTP server is not accessed
|
||||
# for any GTP requests, instead notification is sent to Izat SDK.
|
||||
# WiFi crowdsourcing module is disabled.
|
||||
# 4: Wi-Fi APDB injection via Izat SDK. GTP server is not accessed
|
||||
# for any GTP requests, instead notification is sent to Izat SDK.
|
||||
# WiFi crowdsourcing module is active, also accessed via Izat SDK.
|
||||
# GTP_AP_MODE = 4
|
||||
|
||||
# 1: MP cell features relies on GTP AP for either download or upload
|
||||
# 0: MP cell features does not rely on GTP AP
|
||||
# GTP_AP_NEEDED_BY_MP_CELL = 1
|
||||
|
||||
##############################################################################
|
||||
# Configuration items applicable to all devices #
|
||||
##############################################################################
|
||||
|
||||
# Log verbosity control for most of the GTP WiFi system, including native and
|
||||
# Java componenets
|
||||
# OFF = 0, ERROR = 1, WARNING = 2, INFO = 3, DEBUG = 4, VERBOSE = 5, ALL = 100
|
||||
DEBUG_GLOBAL_LOG_LEVEL = 2
|
||||
|
||||
# this is used at the server side to distinguish uploads from different maker/model
|
||||
# default "Qualcomm"
|
||||
OEM_ID_IN_REQUEST_TO_SERVER = "Qualcomm"
|
||||
|
||||
# this is used at the server side to distinguish uploads from different maker/model
|
||||
# default "UNKNOWN"
|
||||
MODEL_ID_IN_REQUEST_TO_SERVER = "UNKNOWN"
|
||||
|
||||
##############################################################################
|
||||
# Qualcomm Network Location Provider config #
|
||||
##############################################################################
|
||||
|
||||
# Accuracy Threshold for NLP position. Position exceeds thsi threshold will be filtered out.
|
||||
# Default is 25000 meters.
|
||||
LARGE_ACCURACY_THRESHOLD_TO_FILTER_NLP_POSITION = 25000
|
|
@ -1044,6 +1044,8 @@ vendor/lib/hw/vulkan.adreno.so
|
|||
vendor/lib64/hw/vulkan.adreno.so
|
||||
|
||||
# GNSS
|
||||
odm/etc/izat.conf
|
||||
odm/etc/sap.conf
|
||||
vendor/bin/hw/android.hardware.gnss@2.1-service-qti
|
||||
vendor/bin/loc_launcher
|
||||
vendor/bin/lowi-server
|
||||
|
@ -1056,7 +1058,11 @@ vendor/etc/init/android.hardware.gnss@2.1-service-qti.rc
|
|||
-vendor/etc/vintf/manifest/android.hardware.gnss@2.1-service-qti.xml
|
||||
-vendor/etc/vintf/manifest/vendor.qti.gnss@4.0-service.xml
|
||||
vendor/etc/cacert_location.pem
|
||||
vendor/etc/flp.conf
|
||||
vendor/etc/gnss_antenna_info.conf
|
||||
vendor/etc/lowi.conf
|
||||
vendor/etc/xtra_root_cert.pem
|
||||
vendor/etc/xtwifi.conf
|
||||
vendor/lib64/hw/android.hardware.gnss@2.1-impl-qti.so
|
||||
vendor/lib64/hw/vendor.qti.gnss@4.0-impl.so
|
||||
vendor/lib64/libaoa.so
|
||||
|
|
Loading…
Reference in a new issue