Class/Object

com.intel.analytics.bigdl.nn

SpatialShareConvolution

Related Docs: object SpatialShareConvolution | package nn

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class SpatialShareConvolution[T] extends SpatialConvolution[T]

Annotations
@SerialVersionUID()
Linear Supertypes
SpatialConvolution[T], MklInt8Convertible, Initializable, TensorModule[T], AbstractModule[Tensor[T], Tensor[T], T], InferShape, Serializable, Serializable, AnyRef, Any
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Inherited
  1. SpatialShareConvolution
  2. SpatialConvolution
  3. MklInt8Convertible
  4. Initializable
  5. TensorModule
  6. AbstractModule
  7. InferShape
  8. Serializable
  9. Serializable
  10. AnyRef
  11. Any
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Visibility
  1. Public
  2. All

Instance Constructors

  1. new SpatialShareConvolution(nInputPlane: Int, nOutputPlane: Int, kernelW: Int, kernelH: Int, strideW: Int = 1, strideH: Int = 1, padW: Int = 0, padH: Int = 0, nGroup: Int = 1, propagateBack: Boolean = true, wRegularizer: Regularizer[T] = null, bRegularizer: Regularizer[T] = null, initWeight: Tensor[T] = null, initBias: Tensor[T] = null, initGradWeight: Tensor[T] = null, initGradBias: Tensor[T] = null, withBias: Boolean = true)(implicit arg0: ClassTag[T], ev: TensorNumeric[T])

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Value Members

  1. final def !=(arg0: Any): Boolean

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    Definition Classes
    AnyRef → Any
  2. final def ##(): Int

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    Definition Classes
    AnyRef → Any
  3. final def ==(arg0: Any): Boolean

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    Definition Classes
    AnyRef → Any
  4. val _1x1: Boolean

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  5. def accGradParameters(input: Tensor[T], gradOutput: Tensor[T]): Unit

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    Computing the gradient of the module with respect to its own parameters.

    Computing the gradient of the module with respect to its own parameters. Many modules do not perform this step as they do not have any parameters. The state variable name for the parameters is module dependent. The module is expected to accumulate the gradients with respect to the parameters in some variable.

    Definition Classes
    SpatialShareConvolutionSpatialConvolutionAbstractModule
  6. def accGradParametersFrame(gradOutput: Tensor[T], gradWeight: Tensor[T], gradBias: Tensor[T], fInput: Tensor[T], scaleW: T, scaleB: T)(implicit ev: TensorNumeric[T]): Unit

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  7. def apply(name: String): Option[AbstractModule[Activity, Activity, T]]

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    Find a module with given name.

    Find a module with given name. If there is no module with given name, it will return None. If there are multiple modules with the given name, an exception will be thrown.

    Definition Classes
    AbstractModule
  8. final def asInstanceOf[T0]: T0

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    Definition Classes
    Any
  9. var bRegularizer: Regularizer[T]

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    Definition Classes
    SpatialConvolution
  10. def backward(input: Tensor[T], gradOutput: Tensor[T]): Tensor[T]

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    Performs a back-propagation step through the module, with respect to the given input.

    Performs a back-propagation step through the module, with respect to the given input. In general this method makes the assumption forward(input) has been called before, with the same input. This is necessary for optimization reasons. If you do not respect this rule, backward() will compute incorrect gradients.

    input

    input data

    gradOutput

    gradient of next layer

    returns

    gradient corresponding to input data

    Definition Classes
    AbstractModule
  11. var backwardTime: Long

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    Attributes
    protected
    Definition Classes
    AbstractModule
  12. val bias: Tensor[T]

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    Definition Classes
    SpatialConvolution
  13. var biasInitMethod: InitializationMethod

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    Attributes
    protected
    Definition Classes
    Initializable
  14. def calcGradParametersFrame(gradOutput: Tensor[T], gradWeight: Tensor[T], gradBias: Tensor[T], fInput: Tensor[T], scaleW: T, scaleB: T)(implicit ev: TensorNumeric[T]): Unit

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  15. def calcScales(inputActvt: Activity): Unit

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    Calculate the required scales for converting int8 modules Currently there are four type of modules should be supported: 1) Graph: calculate scales for input and output 2) Linear: calculate scales for input, output and weight 3) Spatial Convolution: calculate scales for input, output and weight 4) Sequential: calculate scales for input, output as well as the scales of submodules 5) ConcatTable: calculate scales for input, output as well as the scales of submodules

    Calculate the required scales for converting int8 modules Currently there are four type of modules should be supported: 1) Graph: calculate scales for input and output 2) Linear: calculate scales for input, output and weight 3) Spatial Convolution: calculate scales for input, output and weight 4) Sequential: calculate scales for input, output as well as the scales of submodules 5) ConcatTable: calculate scales for input, output as well as the scales of submodules

    inputActvt

    input activity

    Definition Classes
    MklInt8Convertible
  16. def clearState(): SpatialShareConvolution.this.type

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    Clear cached activities to save storage space or network bandwidth.

    Clear cached activities to save storage space or network bandwidth. Note that we use Tensor.set to keep some information like tensor share

    The subclass should override this method if it allocate some extra resource, and call the super.clearState in the override method

    Definition Classes
    SpatialConvolutionAbstractModule
  17. final def clone(deepCopy: Boolean): AbstractModule[Tensor[T], Tensor[T], T]

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    Clone the module, deep or shallow copy

    Clone the module, deep or shallow copy

    Definition Classes
    AbstractModule
  18. def clone(): AnyRef

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    Attributes
    protected[java.lang]
    Definition Classes
    AnyRef
    Annotations
    @throws( ... )
  19. final def cloneModule(): SpatialShareConvolution.this.type

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    Clone the model

    Clone the model

    Definition Classes
    AbstractModule
  20. var col2imTime: Long

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  21. def computeOutputShape(inputShape: Shape): Shape

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    We suppose the first dim is batch

    We suppose the first dim is batch

    Definition Classes
    SpatialConvolutionInferShape
  22. final def eq(arg0: AnyRef): Boolean

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    Definition Classes
    AnyRef
  23. def equals(obj: Any): Boolean

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    Definition Classes
    SpatialConvolutionAbstractModule → AnyRef → Any
  24. final def evaluate(dataSet: LocalDataSet[MiniBatch[T]], vMethods: Array[_ <: ValidationMethod[T]]): Array[(ValidationResult, ValidationMethod[T])]

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    use ValidationMethod to evaluate module on the given local dataset

    use ValidationMethod to evaluate module on the given local dataset

    Definition Classes
    AbstractModule
  25. final def evaluate(dataset: RDD[MiniBatch[T]], vMethods: Array[_ <: ValidationMethod[T]]): Array[(ValidationResult, ValidationMethod[T])]

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    use ValidationMethod to evaluate module on the given rdd dataset

    use ValidationMethod to evaluate module on the given rdd dataset

    Definition Classes
    AbstractModule
  26. final def evaluate(dataset: RDD[Sample[T]], vMethods: Array[_ <: ValidationMethod[T]], batchSize: Option[Int] = None): Array[(ValidationResult, ValidationMethod[T])]

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    use ValidationMethod to evaluate module on the given rdd dataset

    use ValidationMethod to evaluate module on the given rdd dataset

    dataset

    dataset for test

    vMethods

    validation methods

    batchSize

    total batchsize of all partitions, optional param and default 4 * partitionNum of dataset

    Definition Classes
    AbstractModule
  27. def evaluate(): SpatialShareConvolution.this.type

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    Set the module to evaluate mode

    Set the module to evaluate mode

    Definition Classes
    AbstractModule
  28. final def evaluateImage(imageFrame: ImageFrame, vMethods: Array[_ <: ValidationMethod[T]], batchSize: Option[Int] = None): Array[(ValidationResult, ValidationMethod[T])]

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    use ValidationMethod to evaluate module on the given ImageFrame

    use ValidationMethod to evaluate module on the given ImageFrame

    imageFrame

    ImageFrame for valudation

    vMethods

    validation methods

    batchSize

    total batch size of all partitions

    Definition Classes
    AbstractModule
  29. var fGradInput: Tensor[T]

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    Definition Classes
    SpatialConvolution
  30. var fInput: Tensor[T]

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    Definition Classes
    SpatialConvolution
  31. def finalize(): Unit

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    Attributes
    protected[java.lang]
    Definition Classes
    AnyRef
    Annotations
    @throws( classOf[java.lang.Throwable] )
  32. val format: DataFormat

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    Definition Classes
    SpatialConvolution
  33. final def forward(input: Tensor[T]): Tensor[T]

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    Takes an input object, and computes the corresponding output of the module.

    Takes an input object, and computes the corresponding output of the module. After a forward, the output state variable should have been updated to the new value.

    input

    input data

    returns

    output data

    Definition Classes
    AbstractModule
  34. var forwardTime: Long

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    Attributes
    protected
    Definition Classes
    AbstractModule
  35. def freeze(names: String*): SpatialShareConvolution.this.type

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    freeze the module, i.e.

    freeze the module, i.e. their parameters(weight/bias, if exists) are not changed in training process if names is not empty, set an array of layers that match the given names to be "freezed",

    names

    an array of layer names

    returns

    current graph model

    Definition Classes
    AbstractModule
  36. final def getClass(): Class[_]

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    Definition Classes
    AnyRef → Any
  37. def getCol2ImgTime(): Double

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    Definition Classes
    SpatialConvolution
  38. def getExtraParameter(): Array[Tensor[T]]

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    Get extra parameter in this module.

    Get extra parameter in this module. Extra parameter means the trainable parameters beside weight and bias. Such as runningMean and runningVar in BatchNormalization.

    The subclass should override this method if it has some parameters besides weight and bias.

    returns

    an array of tensor

    Definition Classes
    AbstractModule
  39. def getIm2ColTime(): Double

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    Definition Classes
    SpatialConvolution
  40. def getInputDimMask(): Int

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    Get dimension mask of input

    Get dimension mask of input

    returns

    inputDimMask field which stores value of input dimension mask

    Definition Classes
    MklInt8Convertible
  41. def getInputScales(): Array[Array[Float]]

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    Get input scales

    Get input scales

    returns

    field which stores value of input scales

    Definition Classes
    MklInt8Convertible
  42. final def getInputShape(): Shape

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    Return the inputShape for the current Layer and the first dim is batch.

    Return the inputShape for the current Layer and the first dim is batch.

    Definition Classes
    InferShape
  43. final def getName(): String

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    Get the module name, default name is className@namePostfix

    Get the module name, default name is className@namePostfix

    Definition Classes
    AbstractModule
  44. final def getNumericType(): TensorDataType

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    Get numeric type of module parameters

    Get numeric type of module parameters

    Definition Classes
    AbstractModule
  45. def getOutputScales(): Array[Array[Float]]

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    Get output scales

    Get output scales

    returns

    field which stores value of output scales

    Definition Classes
    MklInt8Convertible
  46. final def getOutputShape(): Shape

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    Return the outputShape for the current Layer and the first dim is batch.

    Return the outputShape for the current Layer and the first dim is batch.

    Definition Classes
    InferShape
  47. def getPadding(inputHeight: Int, inputWidth: Int): (Int, Int, Int, Int)

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  48. def getParametersTable(): Table

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    This function returns a table contains ModuleName, the parameter names and parameter value in this module.

    This function returns a table contains ModuleName, the parameter names and parameter value in this module.

    The result table is a structure of Table(ModuleName -> Table(ParameterName -> ParameterValue)), and the type is Table[String, Table[String, Tensor[T]]].

    For example, get the weight of a module named conv1: table[Table]("conv1")[Tensor[T]]("weight").

    The names of the parameters follow such convention:

    1. If there's one parameter, the parameter is named as "weight", the gradient is named as "gradWeight"

    2. If there're two parameters, the first parameter is named as "weight", the first gradient is named as "gradWeight"; the second parameter is named as "bias", the seconcd gradient is named as "gradBias"

    3. If there're more parameters, the weight is named as "weight" with a seq number as suffix, the gradient is named as "gradient" with a seq number as suffix

    Custom modules should override this function the default impl if the convention doesn't meet the requirement.

    returns

    Table

    Definition Classes
    AbstractModule
  49. final def getPrintName(): String

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    Attributes
    protected
    Definition Classes
    AbstractModule
  50. final def getScaleB(): Double

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    Get the scale of gradientBias

    Get the scale of gradientBias

    Definition Classes
    AbstractModule
  51. final def getScaleW(): Double

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    Get the scale of gradientWeight

    Get the scale of gradientWeight

    Definition Classes
    AbstractModule
  52. def getTimes(): Array[(AbstractModule[_ <: Activity, _ <: Activity, T], Long, Long)]

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    Get the forward/backward cost time for the module or its submodules

    Get the forward/backward cost time for the module or its submodules

    Definition Classes
    AbstractModule
  53. final def getTimesGroupByModuleType(): Array[(String, Long, Long)]

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    Get the forward/backward cost time for the module or its submodules and group by module type.

    Get the forward/backward cost time for the module or its submodules and group by module type.

    returns

    (module type name, forward time, backward time)

    Definition Classes
    AbstractModule
  54. def getWeightDimMask(): Int

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    Get dimension mask of weight

    Get dimension mask of weight

    returns

    weightDimMask which stores value of weight mask

    Definition Classes
    MklInt8Convertible
  55. def getWeightScales(): Array[Array[Float]]

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    Get weight scales

    Get weight scales

    returns

    field which stores value of weight scales

    Definition Classes
    MklInt8Convertible
  56. final def getWeightsBias(): Array[Tensor[T]]

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    Get weight and bias for the module

    Get weight and bias for the module

    returns

    array of weights and bias

    Definition Classes
    AbstractModule
  57. val gradBias: Tensor[T]

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    Definition Classes
    SpatialConvolution
  58. var gradInput: Tensor[T]

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    The cached gradient of activities.

    The cached gradient of activities. So we don't compute it again when need it

    Definition Classes
    AbstractModule
  59. val gradWeight: Tensor[T]

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    Definition Classes
    SpatialConvolution
  60. var gradWeightMM: Tensor[T]

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  61. var gradWeightMMInBatch: Tensor[T]

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  62. val gradientBiasMT: Tensor[T]

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  63. final def hasName: Boolean

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    Whether user set a name to the module before

    Whether user set a name to the module before

    Definition Classes
    AbstractModule
  64. def hashCode(): Int

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    Definition Classes
    SpatialConvolutionAbstractModule → AnyRef → Any
  65. var im2colTime: Long

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  66. val initBias: Tensor[T]

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    Definition Classes
    SpatialConvolution
  67. val initGradBias: Tensor[T]

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    Definition Classes
    SpatialConvolution
  68. val initGradWeight: Tensor[T]

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    Definition Classes
    SpatialConvolution
  69. val initWeight: Tensor[T]

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    Definition Classes
    SpatialConvolution
  70. var inputDimMask: Int

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    Attributes
    protected
    Definition Classes
    MklInt8Convertible
  71. def inputs(first: (ModuleNode[T], Int), nodesWithIndex: (ModuleNode[T], Int)*): ModuleNode[T]

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    Build graph: some other modules point to current module

    Build graph: some other modules point to current module

    first

    distinguish from another inputs when input parameter list is empty

    nodesWithIndex

    upstream module nodes and the output tensor index. The start index is 1.

    returns

    node containing current module

    Definition Classes
    AbstractModule
  72. def inputs(nodes: Array[ModuleNode[T]]): ModuleNode[T]

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    Build graph: some other modules point to current module

    Build graph: some other modules point to current module

    nodes

    upstream module nodes in an array

    returns

    node containing current module

    Definition Classes
    AbstractModule
  73. def inputs(nodes: ModuleNode[T]*): ModuleNode[T]

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    Build graph: some other modules point to current module

    Build graph: some other modules point to current module

    nodes

    upstream module nodes

    returns

    node containing current module

    Definition Classes
    AbstractModule
  74. var inputsFormats: Seq[Int]

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    Attributes
    protected
    Definition Classes
    AbstractModule
  75. final def isInstanceOf[T0]: Boolean

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    Definition Classes
    Any
  76. final def isTraining(): Boolean

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    Check if the model is in training mode

    Check if the model is in training mode

    Definition Classes
    AbstractModule
  77. val kernelH: Int

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    Definition Classes
    SpatialConvolution
  78. val kernelW: Int

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    Definition Classes
    SpatialConvolution
  79. var line: String

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    Attributes
    protected
    Definition Classes
    AbstractModule
  80. final def loadModelWeights(srcModel: Module[Float], matchAll: Boolean = true): SpatialShareConvolution.this.type

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    copy weights from another model, mapping by layer name

    copy weights from another model, mapping by layer name

    srcModel

    model to copy from

    matchAll

    whether to match all layers' weights and bias,

    returns

    current module

    Definition Classes
    AbstractModule
  81. final def loadWeights(weightPath: String, matchAll: Boolean = true): SpatialShareConvolution.this.type

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    load pretrained weights and bias to current module

    load pretrained weights and bias to current module

    weightPath

    file to store weights and bias

    matchAll

    whether to match all layers' weights and bias, if not, only load existing pretrained weights and bias

    returns

    current module

    Definition Classes
    AbstractModule
  82. val nGroup: Int

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    Definition Classes
    SpatialConvolution
  83. val nInputPlane: Int

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    Definition Classes
    SpatialConvolution
  84. val nOutputPlane: Int

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    Definition Classes
    SpatialConvolution
  85. final def ne(arg0: AnyRef): Boolean

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    Definition Classes
    AnyRef
  86. final def notify(): Unit

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    Definition Classes
    AnyRef
  87. final def notifyAll(): Unit

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    Definition Classes
    AnyRef
  88. val ones: Tensor[T]

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  89. val onesBatch: Tensor[T]

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  90. val onesBias: Tensor[T]

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  91. var output: Tensor[T]

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    The cached output.

    The cached output. So we don't compute it again when need it

    Definition Classes
    AbstractModule
  92. var outputDimMask: Int

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    Attributes
    protected
    Definition Classes
    MklInt8Convertible
  93. var outputsFormats: Seq[Int]

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    Attributes
    protected
    Definition Classes
    AbstractModule
  94. val padH: Int

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    Definition Classes
    SpatialConvolution
  95. val padW: Int

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    Definition Classes
    SpatialConvolution
  96. def parameters(): (Array[Tensor[T]], Array[Tensor[T]])

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    This function returns two arrays.

    This function returns two arrays. One for the weights and the other the gradients Custom modules should override this function if they have parameters

    returns

    (Array of weights, Array of grad)

    Definition Classes
    SpatialConvolutionAbstractModule
  97. final def predict(dataset: RDD[Sample[T]], batchSize: Int = 1, shareBuffer: Boolean = false): RDD[Activity]

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    module predict, return the probability distribution

    module predict, return the probability distribution

    dataset

    dataset for prediction

    batchSize

    total batchSize for all partitions. if -1, default is 4 * partitionNumber of datatset

    shareBuffer

    whether to share same memory for each batch predict results

    Definition Classes
    AbstractModule
  98. final def predictClass(dataset: RDD[Sample[T]], batchSize: Int = 1): RDD[Int]

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    module predict, return the predict label

    module predict, return the predict label

    dataset

    dataset for prediction

    batchSize

    total batchSize for all partitions. if -1, default is 4 * partitionNumber of dataset

    Definition Classes
    AbstractModule
  99. final def predictImage(imageFrame: ImageFrame, outputLayer: String = null, shareBuffer: Boolean = false, batchPerPartition: Int = 4, predictKey: String = ImageFeature.predict, featurePaddingParam: Option[PaddingParam[T]] = None): ImageFrame

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    model predict images, return imageFrame with predicted tensor, if you want to call predictImage multiple times, it is recommended to use Predictor for DistributedImageFrame or LocalPredictor for LocalImageFrame

    model predict images, return imageFrame with predicted tensor, if you want to call predictImage multiple times, it is recommended to use Predictor for DistributedImageFrame or LocalPredictor for LocalImageFrame

    imageFrame

    imageFrame that contains images

    outputLayer

    if outputLayer is not null, the output of layer that matches outputLayer will be used as predicted output

    shareBuffer

    whether to share same memory for each batch predict results

    batchPerPartition

    batch size per partition, default is 4

    predictKey

    key to store predicted result

    featurePaddingParam

    featurePaddingParam if the inputs have variant size

    Definition Classes
    AbstractModule
  100. def processInputs(first: (ModuleNode[T], Int), nodesWithIndex: (ModuleNode[T], Int)*): ModuleNode[T]

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    Attributes
    protected
    Definition Classes
    AbstractModule
  101. def processInputs(nodes: Seq[ModuleNode[T]]): ModuleNode[T]

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    Attributes
    protected
    Definition Classes
    AbstractModule
  102. val propagateBack: Boolean

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    Definition Classes
    SpatialConvolution
  103. final def quantize(): Module[T]

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    Quantize this module, which reduces the precision of the parameter.

    Quantize this module, which reduces the precision of the parameter. Get a higher speed with a little accuracy cost.

    Definition Classes
    AbstractModule
  104. def release(): Unit

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    if the model contains native resources such as aligned memory, we should release it by manual.

    if the model contains native resources such as aligned memory, we should release it by manual. JVM GC can't release them reliably.

    Definition Classes
    AbstractModule
  105. def reset(): Unit

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    Reset module parameters, which is re-initialize the parameter with given initMethod

    Reset module parameters, which is re-initialize the parameter with given initMethod

    Definition Classes
    SpatialConvolutionInitializableAbstractModule
  106. def resetTimes(): Unit

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    Reset the forward/backward record time for the module or its submodules

    Reset the forward/backward record time for the module or its submodules

    Definition Classes
    AbstractModule
  107. var results: Array[Future[Unit]]

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  108. final def saveCaffe(prototxtPath: String, modelPath: String, useV2: Boolean = true, overwrite: Boolean = false): SpatialShareConvolution.this.type

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    Save this module to path in caffe readable format

    Save this module to path in caffe readable format

    Definition Classes
    AbstractModule
  109. final def saveDefinition(path: String, overWrite: Boolean = false): SpatialShareConvolution.this.type

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    Save this module definition to path.

    Save this module definition to path.

    path

    path to save module, local file system, HDFS and Amazon S3 is supported. HDFS path should be like "hdfs://[host]:[port]/xxx" Amazon S3 path should be like "s3a://bucket/xxx"

    overWrite

    if overwrite

    returns

    self

    Definition Classes
    AbstractModule
  110. final def saveModule(path: String, weightPath: String = null, overWrite: Boolean = false): SpatialShareConvolution.this.type

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    Save this module to path with protobuf format

    Save this module to path with protobuf format

    path

    path to save module, local file system, HDFS and Amazon S3 is supported. HDFS path should be like "hdfs://[host]:[port]/xxx" Amazon S3 path should be like "s3a://bucket/xxx"

    weightPath

    where to store weight

    overWrite

    if overwrite

    returns

    self

    Definition Classes
    AbstractModule
  111. final def saveTF(inputs: Seq[(String, Seq[Int])], path: String, byteOrder: ByteOrder = ByteOrder.LITTLE_ENDIAN, dataFormat: TensorflowDataFormat = TensorflowDataFormat.NHWC): SpatialShareConvolution.this.type

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    Save this module to path in tensorflow readable format

    Save this module to path in tensorflow readable format

    Definition Classes
    AbstractModule
  112. final def saveTorch(path: String, overWrite: Boolean = false): SpatialShareConvolution.this.type

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    Save this module to path in torch7 readable format

    Save this module to path in torch7 readable format

    Definition Classes
    AbstractModule
  113. final def saveWeights(path: String, overWrite: Boolean): Unit

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    save weights and bias to file

    save weights and bias to file

    path

    file to save

    overWrite

    whether to overwrite or not

    Definition Classes
    AbstractModule
  114. var scaleB: Double

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    Attributes
    protected
    Definition Classes
    AbstractModule
  115. var scaleW: Double

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    The scale of gradient weight and gradient bias before gradParameters being accumulated.

    The scale of gradient weight and gradient bias before gradParameters being accumulated.

    Attributes
    protected
    Definition Classes
    AbstractModule
  116. def setExtraParameter(extraParam: Array[Tensor[T]]): SpatialShareConvolution.this.type

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    Set extra parameter to this module.

    Set extra parameter to this module. Extra parameter means the trainable parameters beside weight and bias. Such as runningMean and runningVar in BatchNormalization.

    returns

    this

    Definition Classes
    AbstractModule
  117. def setInitMethod(initMethod: Array[InitializationMethod]): SpatialShareConvolution.this.type

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    Definition Classes
    Initializable
  118. def setInitMethod(weightInitMethod: InitializationMethod = null, biasInitMethod: InitializationMethod = null): SpatialShareConvolution.this.type

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    Definition Classes
    Initializable
  119. def setInputDimMask(mask: Int, overrideSubmodules: Boolean = false): Unit

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    Set dimension mask of input

    Set dimension mask of input

    mask

    value of input dimension mask to be set

    overrideSubmodules

    when set it to true, update mask including itself and submodules, otherwise only update mask to module itself.

    returns

    Unit

    Definition Classes
    MklInt8Convertible
  120. def setInputFormats(formats: Seq[Int]): SpatialShareConvolution.this.type

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    set input formats for graph

    set input formats for graph

    Definition Classes
    AbstractModule
  121. def setInputScales(inScales: Array[Array[Float]]): Unit

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    Set input scales Clear existing buffer of input scales, and place updated scales into the cleared buffer

    Set input scales Clear existing buffer of input scales, and place updated scales into the cleared buffer

    inScales

    value of input scales to be set

    returns

    Unit

    Definition Classes
    MklInt8Convertible
  122. final def setLine(line: String): SpatialShareConvolution.this.type

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    Set the line separator when print the module

    Set the line separator when print the module

    Definition Classes
    AbstractModule
  123. final def setName(name: String): SpatialShareConvolution.this.type

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    Set the module name

    Set the module name

    Definition Classes
    AbstractModule
  124. def setOutputDimMask(mask: Int, overrideSubmodules: Boolean = false): Unit

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    Set dimension mask of output

    Set dimension mask of output

    mask

    value of output dimension mask to be set

    overrideSubmodules

    when set it to true, update mask in full scope including itself and submodules, otherwise only update mask to module itself.

    returns

    Unit

    Definition Classes
    MklInt8Convertible
  125. def setOutputFormats(formats: Seq[Int]): SpatialShareConvolution.this.type

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    set output formats for graph

    set output formats for graph

    Definition Classes
    AbstractModule
  126. def setOutputScales(outScales: Array[Array[Float]]): Unit

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    Set output scales Clear existing buffer of output scales, and place updated scales into the cleared buffer

    Set output scales Clear existing buffer of output scales, and place updated scales into the cleared buffer

    outScales

    value of output scales to be set

    returns

    Unit

    Definition Classes
    MklInt8Convertible
  127. def setScaleB(b: Double): SpatialShareConvolution.this.type

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    Set the scale of gradientBias

    Set the scale of gradientBias

    b

    the value of the scale of gradientBias

    returns

    this

    Definition Classes
    AbstractModule
  128. def setScaleW(w: Double): SpatialShareConvolution.this.type

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    Set the scale of gradientWeight

    Set the scale of gradientWeight

    w

    the value of the scale of gradientWeight

    returns

    this

    Definition Classes
    AbstractModule
  129. def setWeightDimMask(mask: Int, overrideSubmodules: Boolean = false): Unit

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    Set dimension mask for weight

    Set dimension mask for weight

    mask

    value of weight mask to be set

    overrideSubmodules

    when set it to true, update mask in full scope including itself and submodules, otherwise only update mask to module itself.

    returns

    Unit

    Definition Classes
    MklInt8Convertible
  130. def setWeightScales(weightScales: Array[Array[Float]]): Unit

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    Set weight scales Clear existing buffer of weight scales, and place updated scales into the cleared buffer

    Set weight scales Clear existing buffer of weight scales, and place updated scales into the cleared buffer

    weightScales

    value of weight scales to be set

    returns

    Unit

    Definition Classes
    MklInt8Convertible
  131. final def setWeightsBias(newWeights: Array[Tensor[T]]): SpatialShareConvolution.this.type

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    Set weight and bias for the module

    Set weight and bias for the module

    newWeights

    array of weights and bias

    Definition Classes
    AbstractModule
  132. val strideH: Int

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    Definition Classes
    SpatialConvolution
  133. val strideW: Int

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    Definition Classes
    SpatialConvolution
  134. final def synchronized[T0](arg0: ⇒ T0): T0

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    Definition Classes
    AnyRef
  135. def toGraph(startNodes: ModuleNode[T]*): Graph[T]

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    Generate graph module with start nodes

    Generate graph module with start nodes

    Definition Classes
    AbstractModule
  136. def toString(): String

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    Definition Classes
    SpatialConvolutionAbstractModule → AnyRef → Any
  137. var train: Boolean

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    Module status.

    Module status. It is useful for modules like dropout/batch normalization

    Attributes
    protected
    Definition Classes
    AbstractModule
  138. def training(): SpatialShareConvolution.this.type

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    Set the module to training mode

    Set the module to training mode

    Definition Classes
    AbstractModule
  139. def unFreeze(names: String*): SpatialShareConvolution.this.type

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    "unfreeze" module, i.e.

    "unfreeze" module, i.e. make the module parameters(weight/bias, if exists) to be trained(updated) in training process if names is not empty, unfreeze layers that match given names

    names

    array of module names to unFreeze

    Definition Classes
    AbstractModule
  140. def updateGradInput(input: Tensor[T], gradOutput: Tensor[T]): Tensor[T]

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    Computing the gradient of the module with respect to its own input.

    Computing the gradient of the module with respect to its own input. This is returned in gradInput. Also, the gradInput state variable is updated accordingly.

    Definition Classes
    SpatialShareConvolutionSpatialConvolutionAbstractModule
  141. def updateGradInputFrame(gradInput: Tensor[T], gradOutput: Tensor[T], weight: Tensor[T], fgradInput: Tensor[T], kW: Int, kH: Int, dW: Int, dH: Int, padLeft: Int, padTop: Int, padRight: Int, padBottom: Int)(implicit ev: TensorNumeric[T]): Unit

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  142. def updateOutput(input: Tensor[T]): Tensor[T]

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    Computes the output using the current parameter set of the class and input.

    Computes the output using the current parameter set of the class and input. This function returns the result which is stored in the output field.

    Definition Classes
    SpatialShareConvolutionSpatialConvolutionAbstractModule
  143. def updateOutputFrame(input: Tensor[T], output: Tensor[T], weight: Tensor[T], bias: Tensor[T], fInput: Tensor[T], kW: Int, kH: Int, dW: Int, dH: Int, padLeft: Int, padTop: Int, padRight: Int, padBottom: Int, nInputPlane: Int, inputWidth: Int, inputHeight: Int, nOutputPlane: Int, outputWidth: Int, outputHeight: Int)(implicit ev: TensorNumeric[T]): Unit

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  144. var wRegularizer: Regularizer[T]

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    Definition Classes
    SpatialConvolution
  145. final def wait(): Unit

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    Definition Classes
    AnyRef
    Annotations
    @throws( ... )
  146. final def wait(arg0: Long, arg1: Int): Unit

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    Definition Classes
    AnyRef
    Annotations
    @throws( ... )
  147. final def wait(arg0: Long): Unit

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    Definition Classes
    AnyRef
    Annotations
    @throws( ... )
  148. val weight: Tensor[T]

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    Definition Classes
    SpatialConvolution
  149. var weightDimMask: Int

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    Attributes
    protected
    Definition Classes
    MklInt8Convertible
  150. var weightInitMethod: InitializationMethod

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    Attributes
    protected
    Definition Classes
    Initializable
  151. var weightMM: Tensor[T]

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    Attributes
    protected
    Definition Classes
    SpatialConvolution
  152. val withBias: Boolean

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    Definition Classes
    SpatialConvolution
  153. def zeroGradParameters(): Unit

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    If the module has parameters, this will zero the accumulation of the gradients with respect to these parameters.

    If the module has parameters, this will zero the accumulation of the gradients with respect to these parameters. Otherwise, it does nothing.

    Definition Classes
    AbstractModule

Deprecated Value Members

  1. def save(path: String, overWrite: Boolean = false): SpatialShareConvolution.this.type

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    Save this module to path.

    Save this module to path.

    path

    path to save module, local file system, HDFS and Amazon S3 is supported. HDFS path should be like "hdfs://[host]:[port]/xxx" Amazon S3 path should be like "s3a://bucket/xxx"

    overWrite

    if overwrite

    returns

    self

    Definition Classes
    AbstractModule
    Annotations
    @deprecated
    Deprecated

    (Since version 0.3.0) please use recommended saveModule(path, overWrite)

Inherited from SpatialConvolution[T]

Inherited from MklInt8Convertible

Inherited from Initializable

Inherited from TensorModule[T]

Inherited from AbstractModule[Tensor[T], Tensor[T], T]

Inherited from InferShape

Inherited from Serializable

Inherited from Serializable

Inherited from AnyRef

Inherited from Any

Ungrouped