# automatically generated by the FlatBuffers compiler, do not modify

# namespace: fbs

import flatbuffers
from flatbuffers.compat import import_numpy
np = import_numpy()

class Tensor(object):
    __slots__ = ['_tab']

    @classmethod
    def GetRootAs(cls, buf, offset=0):
        n = flatbuffers.encode.Get(flatbuffers.packer.uoffset, buf, offset)
        x = Tensor()
        x.Init(buf, n + offset)
        return x

    @classmethod
    def GetRootAsTensor(cls, buf, offset=0):
        """This method is deprecated. Please switch to GetRootAs."""
        return cls.GetRootAs(buf, offset)
    @classmethod
    def TensorBufferHasIdentifier(cls, buf, offset, size_prefixed=False):
        return flatbuffers.util.BufferHasIdentifier(buf, offset, b"\x4F\x52\x54\x4D", size_prefixed=size_prefixed)

    # Tensor
    def Init(self, buf, pos):
        self._tab = flatbuffers.table.Table(buf, pos)

    # Tensor
    def Name(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(4))
        if o != 0:
            return self._tab.String(o + self._tab.Pos)
        return None

    # Tensor
    def DocString(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(6))
        if o != 0:
            return self._tab.String(o + self._tab.Pos)
        return None

    # Tensor
    def Dims(self, j):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(8))
        if o != 0:
            a = self._tab.Vector(o)
            return self._tab.Get(flatbuffers.number_types.Int64Flags, a + flatbuffers.number_types.UOffsetTFlags.py_type(j * 8))
        return 0

    # Tensor
    def DimsAsNumpy(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(8))
        if o != 0:
            return self._tab.GetVectorAsNumpy(flatbuffers.number_types.Int64Flags, o)
        return 0

    # Tensor
    def DimsLength(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(8))
        if o != 0:
            return self._tab.VectorLen(o)
        return 0

    # Tensor
    def DimsIsNone(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(8))
        return o == 0

    # Tensor
    def DataType(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(10))
        if o != 0:
            return self._tab.Get(flatbuffers.number_types.Int32Flags, o + self._tab.Pos)
        return 0

    # Tensor
    def RawData(self, j):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(12))
        if o != 0:
            a = self._tab.Vector(o)
            return self._tab.Get(flatbuffers.number_types.Uint8Flags, a + flatbuffers.number_types.UOffsetTFlags.py_type(j * 1))
        return 0

    # Tensor
    def RawDataAsNumpy(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(12))
        if o != 0:
            return self._tab.GetVectorAsNumpy(flatbuffers.number_types.Uint8Flags, o)
        return 0

    # Tensor
    def RawDataLength(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(12))
        if o != 0:
            return self._tab.VectorLen(o)
        return 0

    # Tensor
    def RawDataIsNone(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(12))
        return o == 0

    # Tensor
    def StringData(self, j):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(14))
        if o != 0:
            a = self._tab.Vector(o)
            return self._tab.String(a + flatbuffers.number_types.UOffsetTFlags.py_type(j * 4))
        return ""

    # Tensor
    def StringDataLength(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(14))
        if o != 0:
            return self._tab.VectorLen(o)
        return 0

    # Tensor
    def StringDataIsNone(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(14))
        return o == 0

    # Tensor
    def ExternalDataOffset(self):
        o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(16))
        if o != 0:
            return self._tab.Get(flatbuffers.number_types.Int64Flags, o + self._tab.Pos)
        return -1

def TensorStart(builder):
    builder.StartObject(7)

def Start(builder):
    TensorStart(builder)

def TensorAddName(builder, name):
    builder.PrependUOffsetTRelativeSlot(0, flatbuffers.number_types.UOffsetTFlags.py_type(name), 0)

def AddName(builder, name):
    TensorAddName(builder, name)

def TensorAddDocString(builder, docString):
    builder.PrependUOffsetTRelativeSlot(1, flatbuffers.number_types.UOffsetTFlags.py_type(docString), 0)

def AddDocString(builder, docString):
    TensorAddDocString(builder, docString)

def TensorAddDims(builder, dims):
    builder.PrependUOffsetTRelativeSlot(2, flatbuffers.number_types.UOffsetTFlags.py_type(dims), 0)

def AddDims(builder, dims):
    TensorAddDims(builder, dims)

def TensorStartDimsVector(builder, numElems):
    return builder.StartVector(8, numElems, 8)

def StartDimsVector(builder, numElems: int) -> int:
    return TensorStartDimsVector(builder, numElems)

def TensorAddDataType(builder, dataType):
    builder.PrependInt32Slot(3, dataType, 0)

def AddDataType(builder, dataType):
    TensorAddDataType(builder, dataType)

def TensorAddRawData(builder, rawData):
    builder.PrependUOffsetTRelativeSlot(4, flatbuffers.number_types.UOffsetTFlags.py_type(rawData), 0)

def AddRawData(builder, rawData):
    TensorAddRawData(builder, rawData)

def TensorStartRawDataVector(builder, numElems):
    return builder.StartVector(1, numElems, 1)

def StartRawDataVector(builder, numElems: int) -> int:
    return TensorStartRawDataVector(builder, numElems)

def TensorAddStringData(builder, stringData):
    builder.PrependUOffsetTRelativeSlot(5, flatbuffers.number_types.UOffsetTFlags.py_type(stringData), 0)

def AddStringData(builder, stringData):
    TensorAddStringData(builder, stringData)

def TensorStartStringDataVector(builder, numElems):
    return builder.StartVector(4, numElems, 4)

def StartStringDataVector(builder, numElems: int) -> int:
    return TensorStartStringDataVector(builder, numElems)

def TensorAddExternalDataOffset(builder, externalDataOffset):
    builder.PrependInt64Slot(6, externalDataOffset, -1)

def AddExternalDataOffset(builder, externalDataOffset):
    TensorAddExternalDataOffset(builder, externalDataOffset)

def TensorEnd(builder):
    return builder.EndObject()

def End(builder):
    return TensorEnd(builder)
