# automatically generated by the FlatBuffers compiler, do not modify # namespace: NetEncoding import flatbuffers class Int32Array(object): __slots__ = ['_tab'] @classmethod def GetRootAsInt32Array(cls, buf, offset): n = flatbuffers.encode.Get(flatbuffers.packer.uoffset, buf, offset) x = Int32Array() x.Init(buf, n + offset) return x # Int32Array def Init(self, buf, pos): self._tab = flatbuffers.table.Table(buf, pos) # Int32Array def Data(self, j): o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(4)) if o != 0: a = self._tab.Vector(o) return self._tab.Get(flatbuffers.number_types.Int32Flags, a + flatbuffers.number_types.UOffsetTFlags.py_type(j * 4)) return 0 # Int32Array def DataAsNumpy(self): o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(4)) if o != 0: return self._tab.GetVectorAsNumpy(flatbuffers.number_types.Int32Flags, o) return 0 # Int32Array def DataLength(self): o = flatbuffers.number_types.UOffsetTFlags.py_type(self._tab.Offset(4)) if o != 0: return self._tab.VectorLen(o) return 0 def Int32ArrayStart(builder): builder.StartObject(1) def Int32ArrayAddData(builder, data): builder.PrependUOffsetTRelativeSlot(0, flatbuffers.number_types.UOffsetTFlags.py_type(data), 0) def Int32ArrayStartDataVector(builder, numElems): return builder.StartVector(4, numElems, 4) def Int32ArrayEnd(builder): return builder.EndObject()