00001 """autogenerated by genpy from object_manipulation_msgs/FindClusterBoundingBox2Request.msg. Do not edit."""
00002 import sys
00003 python3 = True if sys.hexversion > 0x03000000 else False
00004 import genpy
00005 import struct
00006
00007 import std_msgs.msg
00008 import sensor_msgs.msg
00009
00010 class FindClusterBoundingBox2Request(genpy.Message):
00011 _md5sum = "526994c9d06037106595eb6bae52d4e8"
00012 _type = "object_manipulation_msgs/FindClusterBoundingBox2Request"
00013 _has_header = False
00014 _full_text = """sensor_msgs/PointCloud2 cluster
00015
00016
00017 ================================================================================
00018 MSG: sensor_msgs/PointCloud2
00019 # This message holds a collection of N-dimensional points, which may
00020 # contain additional information such as normals, intensity, etc. The
00021 # point data is stored as a binary blob, its layout described by the
00022 # contents of the "fields" array.
00023
00024 # The point cloud data may be organized 2d (image-like) or 1d
00025 # (unordered). Point clouds organized as 2d images may be produced by
00026 # camera depth sensors such as stereo or time-of-flight.
00027
00028 # Time of sensor data acquisition, and the coordinate frame ID (for 3d
00029 # points).
00030 Header header
00031
00032 # 2D structure of the point cloud. If the cloud is unordered, height is
00033 # 1 and width is the length of the point cloud.
00034 uint32 height
00035 uint32 width
00036
00037 # Describes the channels and their layout in the binary data blob.
00038 PointField[] fields
00039
00040 bool is_bigendian # Is this data bigendian?
00041 uint32 point_step # Length of a point in bytes
00042 uint32 row_step # Length of a row in bytes
00043 uint8[] data # Actual point data, size is (row_step*height)
00044
00045 bool is_dense # True if there are no invalid points
00046
00047 ================================================================================
00048 MSG: std_msgs/Header
00049 # Standard metadata for higher-level stamped data types.
00050 # This is generally used to communicate timestamped data
00051 # in a particular coordinate frame.
00052 #
00053 # sequence ID: consecutively increasing ID
00054 uint32 seq
00055 #Two-integer timestamp that is expressed as:
00056 # * stamp.secs: seconds (stamp_secs) since epoch
00057 # * stamp.nsecs: nanoseconds since stamp_secs
00058 # time-handling sugar is provided by the client library
00059 time stamp
00060 #Frame this data is associated with
00061 # 0: no frame
00062 # 1: global frame
00063 string frame_id
00064
00065 ================================================================================
00066 MSG: sensor_msgs/PointField
00067 # This message holds the description of one point entry in the
00068 # PointCloud2 message format.
00069 uint8 INT8 = 1
00070 uint8 UINT8 = 2
00071 uint8 INT16 = 3
00072 uint8 UINT16 = 4
00073 uint8 INT32 = 5
00074 uint8 UINT32 = 6
00075 uint8 FLOAT32 = 7
00076 uint8 FLOAT64 = 8
00077
00078 string name # Name of field
00079 uint32 offset # Offset from start of point struct
00080 uint8 datatype # Datatype enumeration, see above
00081 uint32 count # How many elements in the field
00082
00083 """
00084 __slots__ = ['cluster']
00085 _slot_types = ['sensor_msgs/PointCloud2']
00086
00087 def __init__(self, *args, **kwds):
00088 """
00089 Constructor. Any message fields that are implicitly/explicitly
00090 set to None will be assigned a default value. The recommend
00091 use is keyword arguments as this is more robust to future message
00092 changes. You cannot mix in-order arguments and keyword arguments.
00093
00094 The available fields are:
00095 cluster
00096
00097 :param args: complete set of field values, in .msg order
00098 :param kwds: use keyword arguments corresponding to message field names
00099 to set specific fields.
00100 """
00101 if args or kwds:
00102 super(FindClusterBoundingBox2Request, self).__init__(*args, **kwds)
00103
00104 if self.cluster is None:
00105 self.cluster = sensor_msgs.msg.PointCloud2()
00106 else:
00107 self.cluster = sensor_msgs.msg.PointCloud2()
00108
00109 def _get_types(self):
00110 """
00111 internal API method
00112 """
00113 return self._slot_types
00114
00115 def serialize(self, buff):
00116 """
00117 serialize message into buffer
00118 :param buff: buffer, ``StringIO``
00119 """
00120 try:
00121 _x = self
00122 buff.write(_struct_3I.pack(_x.cluster.header.seq, _x.cluster.header.stamp.secs, _x.cluster.header.stamp.nsecs))
00123 _x = self.cluster.header.frame_id
00124 length = len(_x)
00125 if python3 or type(_x) == unicode:
00126 _x = _x.encode('utf-8')
00127 length = len(_x)
00128 buff.write(struct.pack('<I%ss'%length, length, _x))
00129 _x = self
00130 buff.write(_struct_2I.pack(_x.cluster.height, _x.cluster.width))
00131 length = len(self.cluster.fields)
00132 buff.write(_struct_I.pack(length))
00133 for val1 in self.cluster.fields:
00134 _x = val1.name
00135 length = len(_x)
00136 if python3 or type(_x) == unicode:
00137 _x = _x.encode('utf-8')
00138 length = len(_x)
00139 buff.write(struct.pack('<I%ss'%length, length, _x))
00140 _x = val1
00141 buff.write(_struct_IBI.pack(_x.offset, _x.datatype, _x.count))
00142 _x = self
00143 buff.write(_struct_B2I.pack(_x.cluster.is_bigendian, _x.cluster.point_step, _x.cluster.row_step))
00144 _x = self.cluster.data
00145 length = len(_x)
00146
00147 if type(_x) in [list, tuple]:
00148 buff.write(struct.pack('<I%sB'%length, length, *_x))
00149 else:
00150 buff.write(struct.pack('<I%ss'%length, length, _x))
00151 buff.write(_struct_B.pack(self.cluster.is_dense))
00152 except struct.error as se: self._check_types(se)
00153 except TypeError as te: self._check_types(te)
00154
00155 def deserialize(self, str):
00156 """
00157 unpack serialized message in str into this message instance
00158 :param str: byte array of serialized message, ``str``
00159 """
00160 try:
00161 if self.cluster is None:
00162 self.cluster = sensor_msgs.msg.PointCloud2()
00163 end = 0
00164 _x = self
00165 start = end
00166 end += 12
00167 (_x.cluster.header.seq, _x.cluster.header.stamp.secs, _x.cluster.header.stamp.nsecs,) = _struct_3I.unpack(str[start:end])
00168 start = end
00169 end += 4
00170 (length,) = _struct_I.unpack(str[start:end])
00171 start = end
00172 end += length
00173 if python3:
00174 self.cluster.header.frame_id = str[start:end].decode('utf-8')
00175 else:
00176 self.cluster.header.frame_id = str[start:end]
00177 _x = self
00178 start = end
00179 end += 8
00180 (_x.cluster.height, _x.cluster.width,) = _struct_2I.unpack(str[start:end])
00181 start = end
00182 end += 4
00183 (length,) = _struct_I.unpack(str[start:end])
00184 self.cluster.fields = []
00185 for i in range(0, length):
00186 val1 = sensor_msgs.msg.PointField()
00187 start = end
00188 end += 4
00189 (length,) = _struct_I.unpack(str[start:end])
00190 start = end
00191 end += length
00192 if python3:
00193 val1.name = str[start:end].decode('utf-8')
00194 else:
00195 val1.name = str[start:end]
00196 _x = val1
00197 start = end
00198 end += 9
00199 (_x.offset, _x.datatype, _x.count,) = _struct_IBI.unpack(str[start:end])
00200 self.cluster.fields.append(val1)
00201 _x = self
00202 start = end
00203 end += 9
00204 (_x.cluster.is_bigendian, _x.cluster.point_step, _x.cluster.row_step,) = _struct_B2I.unpack(str[start:end])
00205 self.cluster.is_bigendian = bool(self.cluster.is_bigendian)
00206 start = end
00207 end += 4
00208 (length,) = _struct_I.unpack(str[start:end])
00209 start = end
00210 end += length
00211 if python3:
00212 self.cluster.data = str[start:end].decode('utf-8')
00213 else:
00214 self.cluster.data = str[start:end]
00215 start = end
00216 end += 1
00217 (self.cluster.is_dense,) = _struct_B.unpack(str[start:end])
00218 self.cluster.is_dense = bool(self.cluster.is_dense)
00219 return self
00220 except struct.error as e:
00221 raise genpy.DeserializationError(e)
00222
00223
00224 def serialize_numpy(self, buff, numpy):
00225 """
00226 serialize message with numpy array types into buffer
00227 :param buff: buffer, ``StringIO``
00228 :param numpy: numpy python module
00229 """
00230 try:
00231 _x = self
00232 buff.write(_struct_3I.pack(_x.cluster.header.seq, _x.cluster.header.stamp.secs, _x.cluster.header.stamp.nsecs))
00233 _x = self.cluster.header.frame_id
00234 length = len(_x)
00235 if python3 or type(_x) == unicode:
00236 _x = _x.encode('utf-8')
00237 length = len(_x)
00238 buff.write(struct.pack('<I%ss'%length, length, _x))
00239 _x = self
00240 buff.write(_struct_2I.pack(_x.cluster.height, _x.cluster.width))
00241 length = len(self.cluster.fields)
00242 buff.write(_struct_I.pack(length))
00243 for val1 in self.cluster.fields:
00244 _x = val1.name
00245 length = len(_x)
00246 if python3 or type(_x) == unicode:
00247 _x = _x.encode('utf-8')
00248 length = len(_x)
00249 buff.write(struct.pack('<I%ss'%length, length, _x))
00250 _x = val1
00251 buff.write(_struct_IBI.pack(_x.offset, _x.datatype, _x.count))
00252 _x = self
00253 buff.write(_struct_B2I.pack(_x.cluster.is_bigendian, _x.cluster.point_step, _x.cluster.row_step))
00254 _x = self.cluster.data
00255 length = len(_x)
00256
00257 if type(_x) in [list, tuple]:
00258 buff.write(struct.pack('<I%sB'%length, length, *_x))
00259 else:
00260 buff.write(struct.pack('<I%ss'%length, length, _x))
00261 buff.write(_struct_B.pack(self.cluster.is_dense))
00262 except struct.error as se: self._check_types(se)
00263 except TypeError as te: self._check_types(te)
00264
00265 def deserialize_numpy(self, str, numpy):
00266 """
00267 unpack serialized message in str into this message instance using numpy for array types
00268 :param str: byte array of serialized message, ``str``
00269 :param numpy: numpy python module
00270 """
00271 try:
00272 if self.cluster is None:
00273 self.cluster = sensor_msgs.msg.PointCloud2()
00274 end = 0
00275 _x = self
00276 start = end
00277 end += 12
00278 (_x.cluster.header.seq, _x.cluster.header.stamp.secs, _x.cluster.header.stamp.nsecs,) = _struct_3I.unpack(str[start:end])
00279 start = end
00280 end += 4
00281 (length,) = _struct_I.unpack(str[start:end])
00282 start = end
00283 end += length
00284 if python3:
00285 self.cluster.header.frame_id = str[start:end].decode('utf-8')
00286 else:
00287 self.cluster.header.frame_id = str[start:end]
00288 _x = self
00289 start = end
00290 end += 8
00291 (_x.cluster.height, _x.cluster.width,) = _struct_2I.unpack(str[start:end])
00292 start = end
00293 end += 4
00294 (length,) = _struct_I.unpack(str[start:end])
00295 self.cluster.fields = []
00296 for i in range(0, length):
00297 val1 = sensor_msgs.msg.PointField()
00298 start = end
00299 end += 4
00300 (length,) = _struct_I.unpack(str[start:end])
00301 start = end
00302 end += length
00303 if python3:
00304 val1.name = str[start:end].decode('utf-8')
00305 else:
00306 val1.name = str[start:end]
00307 _x = val1
00308 start = end
00309 end += 9
00310 (_x.offset, _x.datatype, _x.count,) = _struct_IBI.unpack(str[start:end])
00311 self.cluster.fields.append(val1)
00312 _x = self
00313 start = end
00314 end += 9
00315 (_x.cluster.is_bigendian, _x.cluster.point_step, _x.cluster.row_step,) = _struct_B2I.unpack(str[start:end])
00316 self.cluster.is_bigendian = bool(self.cluster.is_bigendian)
00317 start = end
00318 end += 4
00319 (length,) = _struct_I.unpack(str[start:end])
00320 start = end
00321 end += length
00322 if python3:
00323 self.cluster.data = str[start:end].decode('utf-8')
00324 else:
00325 self.cluster.data = str[start:end]
00326 start = end
00327 end += 1
00328 (self.cluster.is_dense,) = _struct_B.unpack(str[start:end])
00329 self.cluster.is_dense = bool(self.cluster.is_dense)
00330 return self
00331 except struct.error as e:
00332 raise genpy.DeserializationError(e)
00333
00334 _struct_I = genpy.struct_I
00335 _struct_IBI = struct.Struct("<IBI")
00336 _struct_3I = struct.Struct("<3I")
00337 _struct_B = struct.Struct("<B")
00338 _struct_2I = struct.Struct("<2I")
00339 _struct_B2I = struct.Struct("<B2I")
00340 """autogenerated by genpy from object_manipulation_msgs/FindClusterBoundingBox2Response.msg. Do not edit."""
00341 import sys
00342 python3 = True if sys.hexversion > 0x03000000 else False
00343 import genpy
00344 import struct
00345
00346 import geometry_msgs.msg
00347 import std_msgs.msg
00348
00349 class FindClusterBoundingBox2Response(genpy.Message):
00350 _md5sum = "981e2c8ffa160e77589dcf98a63a81cd"
00351 _type = "object_manipulation_msgs/FindClusterBoundingBox2Response"
00352 _has_header = False
00353 _full_text = """
00354
00355 geometry_msgs/PoseStamped pose
00356
00357
00358 geometry_msgs/Vector3 box_dims
00359
00360
00361 int32 SUCCESS=0
00362 int32 TF_ERROR=1
00363 int32 error_code
00364
00365 ================================================================================
00366 MSG: geometry_msgs/PoseStamped
00367 # A Pose with reference coordinate frame and timestamp
00368 Header header
00369 Pose pose
00370
00371 ================================================================================
00372 MSG: std_msgs/Header
00373 # Standard metadata for higher-level stamped data types.
00374 # This is generally used to communicate timestamped data
00375 # in a particular coordinate frame.
00376 #
00377 # sequence ID: consecutively increasing ID
00378 uint32 seq
00379 #Two-integer timestamp that is expressed as:
00380 # * stamp.secs: seconds (stamp_secs) since epoch
00381 # * stamp.nsecs: nanoseconds since stamp_secs
00382 # time-handling sugar is provided by the client library
00383 time stamp
00384 #Frame this data is associated with
00385 # 0: no frame
00386 # 1: global frame
00387 string frame_id
00388
00389 ================================================================================
00390 MSG: geometry_msgs/Pose
00391 # A representation of pose in free space, composed of postion and orientation.
00392 Point position
00393 Quaternion orientation
00394
00395 ================================================================================
00396 MSG: geometry_msgs/Point
00397 # This contains the position of a point in free space
00398 float64 x
00399 float64 y
00400 float64 z
00401
00402 ================================================================================
00403 MSG: geometry_msgs/Quaternion
00404 # This represents an orientation in free space in quaternion form.
00405
00406 float64 x
00407 float64 y
00408 float64 z
00409 float64 w
00410
00411 ================================================================================
00412 MSG: geometry_msgs/Vector3
00413 # This represents a vector in free space.
00414
00415 float64 x
00416 float64 y
00417 float64 z
00418 """
00419
00420 SUCCESS = 0
00421 TF_ERROR = 1
00422
00423 __slots__ = ['pose','box_dims','error_code']
00424 _slot_types = ['geometry_msgs/PoseStamped','geometry_msgs/Vector3','int32']
00425
00426 def __init__(self, *args, **kwds):
00427 """
00428 Constructor. Any message fields that are implicitly/explicitly
00429 set to None will be assigned a default value. The recommend
00430 use is keyword arguments as this is more robust to future message
00431 changes. You cannot mix in-order arguments and keyword arguments.
00432
00433 The available fields are:
00434 pose,box_dims,error_code
00435
00436 :param args: complete set of field values, in .msg order
00437 :param kwds: use keyword arguments corresponding to message field names
00438 to set specific fields.
00439 """
00440 if args or kwds:
00441 super(FindClusterBoundingBox2Response, self).__init__(*args, **kwds)
00442
00443 if self.pose is None:
00444 self.pose = geometry_msgs.msg.PoseStamped()
00445 if self.box_dims is None:
00446 self.box_dims = geometry_msgs.msg.Vector3()
00447 if self.error_code is None:
00448 self.error_code = 0
00449 else:
00450 self.pose = geometry_msgs.msg.PoseStamped()
00451 self.box_dims = geometry_msgs.msg.Vector3()
00452 self.error_code = 0
00453
00454 def _get_types(self):
00455 """
00456 internal API method
00457 """
00458 return self._slot_types
00459
00460 def serialize(self, buff):
00461 """
00462 serialize message into buffer
00463 :param buff: buffer, ``StringIO``
00464 """
00465 try:
00466 _x = self
00467 buff.write(_struct_3I.pack(_x.pose.header.seq, _x.pose.header.stamp.secs, _x.pose.header.stamp.nsecs))
00468 _x = self.pose.header.frame_id
00469 length = len(_x)
00470 if python3 or type(_x) == unicode:
00471 _x = _x.encode('utf-8')
00472 length = len(_x)
00473 buff.write(struct.pack('<I%ss'%length, length, _x))
00474 _x = self
00475 buff.write(_struct_10di.pack(_x.pose.pose.position.x, _x.pose.pose.position.y, _x.pose.pose.position.z, _x.pose.pose.orientation.x, _x.pose.pose.orientation.y, _x.pose.pose.orientation.z, _x.pose.pose.orientation.w, _x.box_dims.x, _x.box_dims.y, _x.box_dims.z, _x.error_code))
00476 except struct.error as se: self._check_types(se)
00477 except TypeError as te: self._check_types(te)
00478
00479 def deserialize(self, str):
00480 """
00481 unpack serialized message in str into this message instance
00482 :param str: byte array of serialized message, ``str``
00483 """
00484 try:
00485 if self.pose is None:
00486 self.pose = geometry_msgs.msg.PoseStamped()
00487 if self.box_dims is None:
00488 self.box_dims = geometry_msgs.msg.Vector3()
00489 end = 0
00490 _x = self
00491 start = end
00492 end += 12
00493 (_x.pose.header.seq, _x.pose.header.stamp.secs, _x.pose.header.stamp.nsecs,) = _struct_3I.unpack(str[start:end])
00494 start = end
00495 end += 4
00496 (length,) = _struct_I.unpack(str[start:end])
00497 start = end
00498 end += length
00499 if python3:
00500 self.pose.header.frame_id = str[start:end].decode('utf-8')
00501 else:
00502 self.pose.header.frame_id = str[start:end]
00503 _x = self
00504 start = end
00505 end += 84
00506 (_x.pose.pose.position.x, _x.pose.pose.position.y, _x.pose.pose.position.z, _x.pose.pose.orientation.x, _x.pose.pose.orientation.y, _x.pose.pose.orientation.z, _x.pose.pose.orientation.w, _x.box_dims.x, _x.box_dims.y, _x.box_dims.z, _x.error_code,) = _struct_10di.unpack(str[start:end])
00507 return self
00508 except struct.error as e:
00509 raise genpy.DeserializationError(e)
00510
00511
00512 def serialize_numpy(self, buff, numpy):
00513 """
00514 serialize message with numpy array types into buffer
00515 :param buff: buffer, ``StringIO``
00516 :param numpy: numpy python module
00517 """
00518 try:
00519 _x = self
00520 buff.write(_struct_3I.pack(_x.pose.header.seq, _x.pose.header.stamp.secs, _x.pose.header.stamp.nsecs))
00521 _x = self.pose.header.frame_id
00522 length = len(_x)
00523 if python3 or type(_x) == unicode:
00524 _x = _x.encode('utf-8')
00525 length = len(_x)
00526 buff.write(struct.pack('<I%ss'%length, length, _x))
00527 _x = self
00528 buff.write(_struct_10di.pack(_x.pose.pose.position.x, _x.pose.pose.position.y, _x.pose.pose.position.z, _x.pose.pose.orientation.x, _x.pose.pose.orientation.y, _x.pose.pose.orientation.z, _x.pose.pose.orientation.w, _x.box_dims.x, _x.box_dims.y, _x.box_dims.z, _x.error_code))
00529 except struct.error as se: self._check_types(se)
00530 except TypeError as te: self._check_types(te)
00531
00532 def deserialize_numpy(self, str, numpy):
00533 """
00534 unpack serialized message in str into this message instance using numpy for array types
00535 :param str: byte array of serialized message, ``str``
00536 :param numpy: numpy python module
00537 """
00538 try:
00539 if self.pose is None:
00540 self.pose = geometry_msgs.msg.PoseStamped()
00541 if self.box_dims is None:
00542 self.box_dims = geometry_msgs.msg.Vector3()
00543 end = 0
00544 _x = self
00545 start = end
00546 end += 12
00547 (_x.pose.header.seq, _x.pose.header.stamp.secs, _x.pose.header.stamp.nsecs,) = _struct_3I.unpack(str[start:end])
00548 start = end
00549 end += 4
00550 (length,) = _struct_I.unpack(str[start:end])
00551 start = end
00552 end += length
00553 if python3:
00554 self.pose.header.frame_id = str[start:end].decode('utf-8')
00555 else:
00556 self.pose.header.frame_id = str[start:end]
00557 _x = self
00558 start = end
00559 end += 84
00560 (_x.pose.pose.position.x, _x.pose.pose.position.y, _x.pose.pose.position.z, _x.pose.pose.orientation.x, _x.pose.pose.orientation.y, _x.pose.pose.orientation.z, _x.pose.pose.orientation.w, _x.box_dims.x, _x.box_dims.y, _x.box_dims.z, _x.error_code,) = _struct_10di.unpack(str[start:end])
00561 return self
00562 except struct.error as e:
00563 raise genpy.DeserializationError(e)
00564
00565 _struct_I = genpy.struct_I
00566 _struct_3I = struct.Struct("<3I")
00567 _struct_10di = struct.Struct("<10di")
00568 class FindClusterBoundingBox2(object):
00569 _type = 'object_manipulation_msgs/FindClusterBoundingBox2'
00570 _md5sum = 'e44a593509bdc6447cb33bb20d08e973'
00571 _request_class = FindClusterBoundingBox2Request
00572 _response_class = FindClusterBoundingBox2Response