velodyne_config.pb.cc 114 KB

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  1. // Generated by the protocol buffer compiler. DO NOT EDIT!
  2. // source: velodyne_config.proto
  3. #include "velodyne_config.pb.h"
  4. #include <algorithm>
  5. #include <google/protobuf/io/coded_stream.h>
  6. #include <google/protobuf/extension_set.h>
  7. #include <google/protobuf/wire_format_lite.h>
  8. #include <google/protobuf/descriptor.h>
  9. #include <google/protobuf/generated_message_reflection.h>
  10. #include <google/protobuf/reflection_ops.h>
  11. #include <google/protobuf/wire_format.h>
  12. // @@protoc_insertion_point(includes)
  13. #include <google/protobuf/port_def.inc>
  14. extern PROTOBUF_INTERNAL_EXPORT_velodyne_5fconfig_2eproto ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<0> scc_info_CalibParameter_velodyne_5fconfig_2eproto;
  15. extern PROTOBUF_INTERNAL_EXPORT_velodyne_5fconfig_2eproto ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<1> scc_info_Region_velodyne_5fconfig_2eproto;
  16. extern PROTOBUF_INTERNAL_EXPORT_velodyne_5fconfig_2eproto ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<1> scc_info_lidarExtrinsic_velodyne_5fconfig_2eproto;
  17. extern PROTOBUF_INTERNAL_EXPORT_velodyne_5fconfig_2eproto ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<1> scc_info_velodyneLidarParams_velodyne_5fconfig_2eproto;
  18. namespace velodyne {
  19. class velodyneManagerParamsDefaultTypeInternal {
  20. public:
  21. ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<velodyneManagerParams> _instance;
  22. } _velodyneManagerParams_default_instance_;
  23. class velodyneLidarParamsDefaultTypeInternal {
  24. public:
  25. ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<velodyneLidarParams> _instance;
  26. } _velodyneLidarParams_default_instance_;
  27. class CalibParameterDefaultTypeInternal {
  28. public:
  29. ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<CalibParameter> _instance;
  30. } _CalibParameter_default_instance_;
  31. class lidarExtrinsicDefaultTypeInternal {
  32. public:
  33. ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<lidarExtrinsic> _instance;
  34. } _lidarExtrinsic_default_instance_;
  35. class RegionDefaultTypeInternal {
  36. public:
  37. ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<Region> _instance;
  38. } _Region_default_instance_;
  39. } // namespace velodyne
  40. static void InitDefaultsscc_info_CalibParameter_velodyne_5fconfig_2eproto() {
  41. GOOGLE_PROTOBUF_VERIFY_VERSION;
  42. {
  43. void* ptr = &::velodyne::_CalibParameter_default_instance_;
  44. new (ptr) ::velodyne::CalibParameter();
  45. ::PROTOBUF_NAMESPACE_ID::internal::OnShutdownDestroyMessage(ptr);
  46. }
  47. ::velodyne::CalibParameter::InitAsDefaultInstance();
  48. }
  49. ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<0> scc_info_CalibParameter_velodyne_5fconfig_2eproto =
  50. {{ATOMIC_VAR_INIT(::PROTOBUF_NAMESPACE_ID::internal::SCCInfoBase::kUninitialized), 0, 0, InitDefaultsscc_info_CalibParameter_velodyne_5fconfig_2eproto}, {}};
  51. static void InitDefaultsscc_info_Region_velodyne_5fconfig_2eproto() {
  52. GOOGLE_PROTOBUF_VERIFY_VERSION;
  53. {
  54. void* ptr = &::velodyne::_Region_default_instance_;
  55. new (ptr) ::velodyne::Region();
  56. ::PROTOBUF_NAMESPACE_ID::internal::OnShutdownDestroyMessage(ptr);
  57. }
  58. ::velodyne::Region::InitAsDefaultInstance();
  59. }
  60. ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<1> scc_info_Region_velodyne_5fconfig_2eproto =
  61. {{ATOMIC_VAR_INIT(::PROTOBUF_NAMESPACE_ID::internal::SCCInfoBase::kUninitialized), 1, 0, InitDefaultsscc_info_Region_velodyne_5fconfig_2eproto}, {
  62. &scc_info_lidarExtrinsic_velodyne_5fconfig_2eproto.base,}};
  63. static void InitDefaultsscc_info_lidarExtrinsic_velodyne_5fconfig_2eproto() {
  64. GOOGLE_PROTOBUF_VERIFY_VERSION;
  65. {
  66. void* ptr = &::velodyne::_lidarExtrinsic_default_instance_;
  67. new (ptr) ::velodyne::lidarExtrinsic();
  68. ::PROTOBUF_NAMESPACE_ID::internal::OnShutdownDestroyMessage(ptr);
  69. }
  70. ::velodyne::lidarExtrinsic::InitAsDefaultInstance();
  71. }
  72. ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<1> scc_info_lidarExtrinsic_velodyne_5fconfig_2eproto =
  73. {{ATOMIC_VAR_INIT(::PROTOBUF_NAMESPACE_ID::internal::SCCInfoBase::kUninitialized), 1, 0, InitDefaultsscc_info_lidarExtrinsic_velodyne_5fconfig_2eproto}, {
  74. &scc_info_CalibParameter_velodyne_5fconfig_2eproto.base,}};
  75. static void InitDefaultsscc_info_velodyneLidarParams_velodyne_5fconfig_2eproto() {
  76. GOOGLE_PROTOBUF_VERIFY_VERSION;
  77. ::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.DefaultConstruct();
  78. *::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.get_mutable() = std::string("VLP16", 5);
  79. ::PROTOBUF_NAMESPACE_ID::internal::OnShutdownDestroyString(
  80. ::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.get_mutable());
  81. {
  82. void* ptr = &::velodyne::_velodyneLidarParams_default_instance_;
  83. new (ptr) ::velodyne::velodyneLidarParams();
  84. ::PROTOBUF_NAMESPACE_ID::internal::OnShutdownDestroyMessage(ptr);
  85. }
  86. ::velodyne::velodyneLidarParams::InitAsDefaultInstance();
  87. }
  88. ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<1> scc_info_velodyneLidarParams_velodyne_5fconfig_2eproto =
  89. {{ATOMIC_VAR_INIT(::PROTOBUF_NAMESPACE_ID::internal::SCCInfoBase::kUninitialized), 1, 0, InitDefaultsscc_info_velodyneLidarParams_velodyne_5fconfig_2eproto}, {
  90. &scc_info_CalibParameter_velodyne_5fconfig_2eproto.base,}};
  91. static void InitDefaultsscc_info_velodyneManagerParams_velodyne_5fconfig_2eproto() {
  92. GOOGLE_PROTOBUF_VERIFY_VERSION;
  93. {
  94. void* ptr = &::velodyne::_velodyneManagerParams_default_instance_;
  95. new (ptr) ::velodyne::velodyneManagerParams();
  96. ::PROTOBUF_NAMESPACE_ID::internal::OnShutdownDestroyMessage(ptr);
  97. }
  98. ::velodyne::velodyneManagerParams::InitAsDefaultInstance();
  99. }
  100. ::PROTOBUF_NAMESPACE_ID::internal::SCCInfo<2> scc_info_velodyneManagerParams_velodyne_5fconfig_2eproto =
  101. {{ATOMIC_VAR_INIT(::PROTOBUF_NAMESPACE_ID::internal::SCCInfoBase::kUninitialized), 2, 0, InitDefaultsscc_info_velodyneManagerParams_velodyne_5fconfig_2eproto}, {
  102. &scc_info_velodyneLidarParams_velodyne_5fconfig_2eproto.base,
  103. &scc_info_Region_velodyne_5fconfig_2eproto.base,}};
  104. static ::PROTOBUF_NAMESPACE_ID::Metadata file_level_metadata_velodyne_5fconfig_2eproto[5];
  105. static constexpr ::PROTOBUF_NAMESPACE_ID::EnumDescriptor const** file_level_enum_descriptors_velodyne_5fconfig_2eproto = nullptr;
  106. static constexpr ::PROTOBUF_NAMESPACE_ID::ServiceDescriptor const** file_level_service_descriptors_velodyne_5fconfig_2eproto = nullptr;
  107. const ::PROTOBUF_NAMESPACE_ID::uint32 TableStruct_velodyne_5fconfig_2eproto::offsets[] PROTOBUF_SECTION_VARIABLE(protodesc_cold) = {
  108. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, _has_bits_),
  109. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, _internal_metadata_),
  110. ~0u, // no _extensions_
  111. ~0u, // no _oneof_case_
  112. ~0u, // no _weak_field_map_
  113. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, velodyne_lidars_),
  114. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, region_),
  115. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, fence_data_path_),
  116. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, fence_log_path_),
  117. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, left_model_path_),
  118. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, right_model_path_),
  119. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneManagerParams, distribution_mode_),
  120. ~0u,
  121. ~0u,
  122. 0,
  123. 1,
  124. 2,
  125. 3,
  126. 4,
  127. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, _has_bits_),
  128. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, _internal_metadata_),
  129. ~0u, // no _extensions_
  130. ~0u, // no _oneof_case_
  131. ~0u, // no _weak_field_map_
  132. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, ip_),
  133. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, port_),
  134. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, model_),
  135. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, calibrationfile_),
  136. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, lidar_id_),
  137. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, max_range_),
  138. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, min_range_),
  139. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, min_angle_),
  140. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, max_angle_),
  141. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, rpm_),
  142. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, calib_),
  143. PROTOBUF_FIELD_OFFSET(::velodyne::velodyneLidarParams, difop_),
  144. 0,
  145. 6,
  146. 1,
  147. 2,
  148. 4,
  149. 7,
  150. 8,
  151. 5,
  152. 9,
  153. 10,
  154. 3,
  155. 11,
  156. PROTOBUF_FIELD_OFFSET(::velodyne::CalibParameter, _has_bits_),
  157. PROTOBUF_FIELD_OFFSET(::velodyne::CalibParameter, _internal_metadata_),
  158. ~0u, // no _extensions_
  159. ~0u, // no _oneof_case_
  160. ~0u, // no _weak_field_map_
  161. PROTOBUF_FIELD_OFFSET(::velodyne::CalibParameter, r_),
  162. PROTOBUF_FIELD_OFFSET(::velodyne::CalibParameter, p_),
  163. PROTOBUF_FIELD_OFFSET(::velodyne::CalibParameter, y_),
  164. PROTOBUF_FIELD_OFFSET(::velodyne::CalibParameter, cx_),
  165. PROTOBUF_FIELD_OFFSET(::velodyne::CalibParameter, cy_),
  166. PROTOBUF_FIELD_OFFSET(::velodyne::CalibParameter, cz_),
  167. 0,
  168. 1,
  169. 2,
  170. 3,
  171. 4,
  172. 5,
  173. PROTOBUF_FIELD_OFFSET(::velodyne::lidarExtrinsic, _has_bits_),
  174. PROTOBUF_FIELD_OFFSET(::velodyne::lidarExtrinsic, _internal_metadata_),
  175. ~0u, // no _extensions_
  176. ~0u, // no _oneof_case_
  177. ~0u, // no _weak_field_map_
  178. PROTOBUF_FIELD_OFFSET(::velodyne::lidarExtrinsic, lidar_id_),
  179. PROTOBUF_FIELD_OFFSET(::velodyne::lidarExtrinsic, calib_),
  180. 1,
  181. 0,
  182. PROTOBUF_FIELD_OFFSET(::velodyne::Region, _has_bits_),
  183. PROTOBUF_FIELD_OFFSET(::velodyne::Region, _internal_metadata_),
  184. ~0u, // no _extensions_
  185. ~0u, // no _oneof_case_
  186. ~0u, // no _weak_field_map_
  187. PROTOBUF_FIELD_OFFSET(::velodyne::Region, minx_),
  188. PROTOBUF_FIELD_OFFSET(::velodyne::Region, maxx_),
  189. PROTOBUF_FIELD_OFFSET(::velodyne::Region, miny_),
  190. PROTOBUF_FIELD_OFFSET(::velodyne::Region, maxy_),
  191. PROTOBUF_FIELD_OFFSET(::velodyne::Region, minz_),
  192. PROTOBUF_FIELD_OFFSET(::velodyne::Region, maxz_),
  193. PROTOBUF_FIELD_OFFSET(::velodyne::Region, region_id_),
  194. PROTOBUF_FIELD_OFFSET(::velodyne::Region, lidar_exts_),
  195. PROTOBUF_FIELD_OFFSET(::velodyne::Region, turnplate_cx_),
  196. PROTOBUF_FIELD_OFFSET(::velodyne::Region, turnplate_cy_),
  197. PROTOBUF_FIELD_OFFSET(::velodyne::Region, border_minx_),
  198. PROTOBUF_FIELD_OFFSET(::velodyne::Region, border_maxx_),
  199. PROTOBUF_FIELD_OFFSET(::velodyne::Region, plc_offsetx_),
  200. PROTOBUF_FIELD_OFFSET(::velodyne::Region, plc_offsety_),
  201. PROTOBUF_FIELD_OFFSET(::velodyne::Region, plc_offset_degree_),
  202. PROTOBUF_FIELD_OFFSET(::velodyne::Region, plc_border_miny_),
  203. PROTOBUF_FIELD_OFFSET(::velodyne::Region, plc_border_maxy_),
  204. PROTOBUF_FIELD_OFFSET(::velodyne::Region, car_min_width_),
  205. PROTOBUF_FIELD_OFFSET(::velodyne::Region, car_max_width_),
  206. PROTOBUF_FIELD_OFFSET(::velodyne::Region, car_min_wheelbase_),
  207. PROTOBUF_FIELD_OFFSET(::velodyne::Region, car_max_wheelbase_),
  208. PROTOBUF_FIELD_OFFSET(::velodyne::Region, turnplate_angle_limit_anti_clockwise_),
  209. PROTOBUF_FIELD_OFFSET(::velodyne::Region, turnplate_angle_limit_clockwise_),
  210. 0,
  211. 1,
  212. 2,
  213. 3,
  214. 4,
  215. 5,
  216. 6,
  217. ~0u,
  218. 7,
  219. 8,
  220. 9,
  221. 10,
  222. 11,
  223. 12,
  224. 13,
  225. 14,
  226. 15,
  227. 16,
  228. 17,
  229. 18,
  230. 19,
  231. 20,
  232. 21,
  233. };
  234. static const ::PROTOBUF_NAMESPACE_ID::internal::MigrationSchema schemas[] PROTOBUF_SECTION_VARIABLE(protodesc_cold) = {
  235. { 0, 12, sizeof(::velodyne::velodyneManagerParams)},
  236. { 19, 36, sizeof(::velodyne::velodyneLidarParams)},
  237. { 48, 59, sizeof(::velodyne::CalibParameter)},
  238. { 65, 72, sizeof(::velodyne::lidarExtrinsic)},
  239. { 74, 102, sizeof(::velodyne::Region)},
  240. };
  241. static ::PROTOBUF_NAMESPACE_ID::Message const * const file_default_instances[] = {
  242. reinterpret_cast<const ::PROTOBUF_NAMESPACE_ID::Message*>(&::velodyne::_velodyneManagerParams_default_instance_),
  243. reinterpret_cast<const ::PROTOBUF_NAMESPACE_ID::Message*>(&::velodyne::_velodyneLidarParams_default_instance_),
  244. reinterpret_cast<const ::PROTOBUF_NAMESPACE_ID::Message*>(&::velodyne::_CalibParameter_default_instance_),
  245. reinterpret_cast<const ::PROTOBUF_NAMESPACE_ID::Message*>(&::velodyne::_lidarExtrinsic_default_instance_),
  246. reinterpret_cast<const ::PROTOBUF_NAMESPACE_ID::Message*>(&::velodyne::_Region_default_instance_),
  247. };
  248. const char descriptor_table_protodef_velodyne_5fconfig_2eproto[] PROTOBUF_SECTION_VARIABLE(protodesc_cold) =
  249. "\n\025velodyne_config.proto\022\010velodyne\"\377\001\n\025ve"
  250. "lodyneManagerParams\0226\n\017velodyne_lidars\030\001"
  251. " \003(\0132\035.velodyne.velodyneLidarParams\022 \n\006r"
  252. "egion\030\002 \003(\0132\020.velodyne.Region\022\031\n\017fence_d"
  253. "ata_path\030\003 \001(\t:\000\022\030\n\016fence_log_path\030\004 \001(\t"
  254. ":\000\022\031\n\017left_model_path\030\005 \001(\t:\000\022\032\n\020right_m"
  255. "odel_path\030\006 \001(\t:\000\022 \n\021distribution_mode\030\007"
  256. " \002(\010:\005false\"\253\002\n\023velodyneLidarParams\022\014\n\002i"
  257. "p\030\001 \002(\t:\000\022\022\n\004port\030\002 \002(\005:\0042368\022\024\n\005model\030\003"
  258. " \002(\t:\005VLP16\022\031\n\017calibrationFile\030\004 \002(\t:\000\022\023"
  259. "\n\010lidar_id\030\005 \002(\005:\0010\022\025\n\tmax_range\030\006 \001(\002:\002"
  260. "10\022\027\n\tmin_range\030\007 \001(\002:\0040.15\022\024\n\tmin_angle"
  261. "\030\010 \001(\005:\0010\022\026\n\tmax_angle\030\t \001(\005:\003360\022\020\n\003rpm"
  262. "\030\n \001(\005:\003600\022\'\n\005calib\030\013 \001(\0132\030.velodyne.Ca"
  263. "libParameter\022\023\n\005difop\030\014 \001(\005:\0047788\"g\n\016Cal"
  264. "ibParameter\022\014\n\001r\030\001 \001(\002:\0010\022\014\n\001p\030\002 \001(\002:\0010\022"
  265. "\014\n\001y\030\003 \001(\002:\0010\022\r\n\002cx\030\004 \001(\002:\0010\022\r\n\002cy\030\005 \001(\002"
  266. ":\0010\022\r\n\002cz\030\006 \001(\002:\0010\"K\n\016lidarExtrinsic\022\020\n\010"
  267. "lidar_id\030\001 \002(\005\022\'\n\005calib\030\002 \001(\0132\030.velodyne"
  268. ".CalibParameter\"\245\004\n\006Region\022\014\n\004minx\030\001 \002(\002"
  269. "\022\014\n\004maxx\030\002 \002(\002\022\014\n\004miny\030\003 \002(\002\022\014\n\004maxy\030\004 \002"
  270. "(\002\022\014\n\004minz\030\005 \002(\002\022\014\n\004maxz\030\006 \002(\002\022\021\n\tregion"
  271. "_id\030\007 \002(\005\022,\n\nlidar_exts\030\010 \003(\0132\030.velodyne"
  272. ".lidarExtrinsic\022\024\n\014turnplate_cx\030\t \002(\002\022\024\n"
  273. "\014turnplate_cy\030\n \002(\002\022\023\n\013border_minx\030\013 \002(\002"
  274. "\022\023\n\013border_maxx\030\014 \002(\002\022\023\n\013plc_offsetx\030\r \002"
  275. "(\002\022\023\n\013plc_offsety\030\016 \002(\002\022\031\n\021plc_offset_de"
  276. "gree\030\017 \002(\002\022\027\n\017plc_border_miny\030\020 \002(\002\022\027\n\017p"
  277. "lc_border_maxy\030\021 \002(\002\022\025\n\rcar_min_width\030\022 "
  278. "\002(\002\022\025\n\rcar_max_width\030\023 \002(\002\022\031\n\021car_min_wh"
  279. "eelbase\030\024 \002(\002\022\031\n\021car_max_wheelbase\030\025 \002(\002"
  280. "\022,\n$turnplate_angle_limit_anti_clockwise"
  281. "\030\026 \002(\002\022\'\n\037turnplate_angle_limit_clockwis"
  282. "e\030\027 \002(\002"
  283. ;
  284. static const ::PROTOBUF_NAMESPACE_ID::internal::DescriptorTable*const descriptor_table_velodyne_5fconfig_2eproto_deps[1] = {
  285. };
  286. static ::PROTOBUF_NAMESPACE_ID::internal::SCCInfoBase*const descriptor_table_velodyne_5fconfig_2eproto_sccs[5] = {
  287. &scc_info_CalibParameter_velodyne_5fconfig_2eproto.base,
  288. &scc_info_Region_velodyne_5fconfig_2eproto.base,
  289. &scc_info_lidarExtrinsic_velodyne_5fconfig_2eproto.base,
  290. &scc_info_velodyneLidarParams_velodyne_5fconfig_2eproto.base,
  291. &scc_info_velodyneManagerParams_velodyne_5fconfig_2eproto.base,
  292. };
  293. static ::PROTOBUF_NAMESPACE_ID::internal::once_flag descriptor_table_velodyne_5fconfig_2eproto_once;
  294. const ::PROTOBUF_NAMESPACE_ID::internal::DescriptorTable descriptor_table_velodyne_5fconfig_2eproto = {
  295. false, false, descriptor_table_protodef_velodyne_5fconfig_2eproto, "velodyne_config.proto", 1327,
  296. &descriptor_table_velodyne_5fconfig_2eproto_once, descriptor_table_velodyne_5fconfig_2eproto_sccs, descriptor_table_velodyne_5fconfig_2eproto_deps, 5, 0,
  297. schemas, file_default_instances, TableStruct_velodyne_5fconfig_2eproto::offsets,
  298. file_level_metadata_velodyne_5fconfig_2eproto, 5, file_level_enum_descriptors_velodyne_5fconfig_2eproto, file_level_service_descriptors_velodyne_5fconfig_2eproto,
  299. };
  300. // Force running AddDescriptors() at dynamic initialization time.
  301. static bool dynamic_init_dummy_velodyne_5fconfig_2eproto = (static_cast<void>(::PROTOBUF_NAMESPACE_ID::internal::AddDescriptors(&descriptor_table_velodyne_5fconfig_2eproto)), true);
  302. namespace velodyne {
  303. // ===================================================================
  304. void velodyneManagerParams::InitAsDefaultInstance() {
  305. }
  306. class velodyneManagerParams::_Internal {
  307. public:
  308. using HasBits = decltype(std::declval<velodyneManagerParams>()._has_bits_);
  309. static void set_has_fence_data_path(HasBits* has_bits) {
  310. (*has_bits)[0] |= 1u;
  311. }
  312. static void set_has_fence_log_path(HasBits* has_bits) {
  313. (*has_bits)[0] |= 2u;
  314. }
  315. static void set_has_left_model_path(HasBits* has_bits) {
  316. (*has_bits)[0] |= 4u;
  317. }
  318. static void set_has_right_model_path(HasBits* has_bits) {
  319. (*has_bits)[0] |= 8u;
  320. }
  321. static void set_has_distribution_mode(HasBits* has_bits) {
  322. (*has_bits)[0] |= 16u;
  323. }
  324. static bool MissingRequiredFields(const HasBits& has_bits) {
  325. return ((has_bits[0] & 0x00000010) ^ 0x00000010) != 0;
  326. }
  327. };
  328. velodyneManagerParams::velodyneManagerParams(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  329. : ::PROTOBUF_NAMESPACE_ID::Message(arena),
  330. velodyne_lidars_(arena),
  331. region_(arena) {
  332. SharedCtor();
  333. RegisterArenaDtor(arena);
  334. // @@protoc_insertion_point(arena_constructor:velodyne.velodyneManagerParams)
  335. }
  336. velodyneManagerParams::velodyneManagerParams(const velodyneManagerParams& from)
  337. : ::PROTOBUF_NAMESPACE_ID::Message(),
  338. _has_bits_(from._has_bits_),
  339. velodyne_lidars_(from.velodyne_lidars_),
  340. region_(from.region_) {
  341. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  342. fence_data_path_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  343. if (from._internal_has_fence_data_path()) {
  344. fence_data_path_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), from._internal_fence_data_path(),
  345. GetArena());
  346. }
  347. fence_log_path_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  348. if (from._internal_has_fence_log_path()) {
  349. fence_log_path_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), from._internal_fence_log_path(),
  350. GetArena());
  351. }
  352. left_model_path_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  353. if (from._internal_has_left_model_path()) {
  354. left_model_path_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), from._internal_left_model_path(),
  355. GetArena());
  356. }
  357. right_model_path_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  358. if (from._internal_has_right_model_path()) {
  359. right_model_path_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), from._internal_right_model_path(),
  360. GetArena());
  361. }
  362. distribution_mode_ = from.distribution_mode_;
  363. // @@protoc_insertion_point(copy_constructor:velodyne.velodyneManagerParams)
  364. }
  365. void velodyneManagerParams::SharedCtor() {
  366. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&scc_info_velodyneManagerParams_velodyne_5fconfig_2eproto.base);
  367. fence_data_path_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  368. fence_log_path_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  369. left_model_path_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  370. right_model_path_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  371. distribution_mode_ = false;
  372. }
  373. velodyneManagerParams::~velodyneManagerParams() {
  374. // @@protoc_insertion_point(destructor:velodyne.velodyneManagerParams)
  375. SharedDtor();
  376. _internal_metadata_.Delete<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  377. }
  378. void velodyneManagerParams::SharedDtor() {
  379. GOOGLE_DCHECK(GetArena() == nullptr);
  380. fence_data_path_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  381. fence_log_path_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  382. left_model_path_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  383. right_model_path_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  384. }
  385. void velodyneManagerParams::ArenaDtor(void* object) {
  386. velodyneManagerParams* _this = reinterpret_cast< velodyneManagerParams* >(object);
  387. (void)_this;
  388. }
  389. void velodyneManagerParams::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) {
  390. }
  391. void velodyneManagerParams::SetCachedSize(int size) const {
  392. _cached_size_.Set(size);
  393. }
  394. const velodyneManagerParams& velodyneManagerParams::default_instance() {
  395. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&::scc_info_velodyneManagerParams_velodyne_5fconfig_2eproto.base);
  396. return *internal_default_instance();
  397. }
  398. void velodyneManagerParams::Clear() {
  399. // @@protoc_insertion_point(message_clear_start:velodyne.velodyneManagerParams)
  400. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  401. // Prevent compiler warnings about cached_has_bits being unused
  402. (void) cached_has_bits;
  403. velodyne_lidars_.Clear();
  404. region_.Clear();
  405. cached_has_bits = _has_bits_[0];
  406. if (cached_has_bits & 0x0000000fu) {
  407. if (cached_has_bits & 0x00000001u) {
  408. fence_data_path_.ClearNonDefaultToEmpty();
  409. }
  410. if (cached_has_bits & 0x00000002u) {
  411. fence_log_path_.ClearNonDefaultToEmpty();
  412. }
  413. if (cached_has_bits & 0x00000004u) {
  414. left_model_path_.ClearNonDefaultToEmpty();
  415. }
  416. if (cached_has_bits & 0x00000008u) {
  417. right_model_path_.ClearNonDefaultToEmpty();
  418. }
  419. }
  420. distribution_mode_ = false;
  421. _has_bits_.Clear();
  422. _internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  423. }
  424. const char* velodyneManagerParams::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) {
  425. #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  426. _Internal::HasBits has_bits{};
  427. ::PROTOBUF_NAMESPACE_ID::Arena* arena = GetArena(); (void)arena;
  428. while (!ctx->Done(&ptr)) {
  429. ::PROTOBUF_NAMESPACE_ID::uint32 tag;
  430. ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag);
  431. CHK_(ptr);
  432. switch (tag >> 3) {
  433. // repeated .velodyne.velodyneLidarParams velodyne_lidars = 1;
  434. case 1:
  435. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 10)) {
  436. ptr -= 1;
  437. do {
  438. ptr += 1;
  439. ptr = ctx->ParseMessage(_internal_add_velodyne_lidars(), ptr);
  440. CHK_(ptr);
  441. if (!ctx->DataAvailable(ptr)) break;
  442. } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<10>(ptr));
  443. } else goto handle_unusual;
  444. continue;
  445. // repeated .velodyne.Region region = 2;
  446. case 2:
  447. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 18)) {
  448. ptr -= 1;
  449. do {
  450. ptr += 1;
  451. ptr = ctx->ParseMessage(_internal_add_region(), ptr);
  452. CHK_(ptr);
  453. if (!ctx->DataAvailable(ptr)) break;
  454. } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<18>(ptr));
  455. } else goto handle_unusual;
  456. continue;
  457. // optional string fence_data_path = 3 [default = ""];
  458. case 3:
  459. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 26)) {
  460. auto str = _internal_mutable_fence_data_path();
  461. ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx);
  462. #ifndef NDEBUG
  463. ::PROTOBUF_NAMESPACE_ID::internal::VerifyUTF8(str, "velodyne.velodyneManagerParams.fence_data_path");
  464. #endif // !NDEBUG
  465. CHK_(ptr);
  466. } else goto handle_unusual;
  467. continue;
  468. // optional string fence_log_path = 4 [default = ""];
  469. case 4:
  470. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 34)) {
  471. auto str = _internal_mutable_fence_log_path();
  472. ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx);
  473. #ifndef NDEBUG
  474. ::PROTOBUF_NAMESPACE_ID::internal::VerifyUTF8(str, "velodyne.velodyneManagerParams.fence_log_path");
  475. #endif // !NDEBUG
  476. CHK_(ptr);
  477. } else goto handle_unusual;
  478. continue;
  479. // optional string left_model_path = 5 [default = ""];
  480. case 5:
  481. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 42)) {
  482. auto str = _internal_mutable_left_model_path();
  483. ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx);
  484. #ifndef NDEBUG
  485. ::PROTOBUF_NAMESPACE_ID::internal::VerifyUTF8(str, "velodyne.velodyneManagerParams.left_model_path");
  486. #endif // !NDEBUG
  487. CHK_(ptr);
  488. } else goto handle_unusual;
  489. continue;
  490. // optional string right_model_path = 6 [default = ""];
  491. case 6:
  492. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 50)) {
  493. auto str = _internal_mutable_right_model_path();
  494. ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx);
  495. #ifndef NDEBUG
  496. ::PROTOBUF_NAMESPACE_ID::internal::VerifyUTF8(str, "velodyne.velodyneManagerParams.right_model_path");
  497. #endif // !NDEBUG
  498. CHK_(ptr);
  499. } else goto handle_unusual;
  500. continue;
  501. // required bool distribution_mode = 7 [default = false];
  502. case 7:
  503. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 56)) {
  504. _Internal::set_has_distribution_mode(&has_bits);
  505. distribution_mode_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  506. CHK_(ptr);
  507. } else goto handle_unusual;
  508. continue;
  509. default: {
  510. handle_unusual:
  511. if ((tag & 7) == 4 || tag == 0) {
  512. ctx->SetLastTag(tag);
  513. goto success;
  514. }
  515. ptr = UnknownFieldParse(tag,
  516. _internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
  517. ptr, ctx);
  518. CHK_(ptr != nullptr);
  519. continue;
  520. }
  521. } // switch
  522. } // while
  523. success:
  524. _has_bits_.Or(has_bits);
  525. return ptr;
  526. failure:
  527. ptr = nullptr;
  528. goto success;
  529. #undef CHK_
  530. }
  531. ::PROTOBUF_NAMESPACE_ID::uint8* velodyneManagerParams::_InternalSerialize(
  532. ::PROTOBUF_NAMESPACE_ID::uint8* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  533. // @@protoc_insertion_point(serialize_to_array_start:velodyne.velodyneManagerParams)
  534. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  535. (void) cached_has_bits;
  536. // repeated .velodyne.velodyneLidarParams velodyne_lidars = 1;
  537. for (unsigned int i = 0,
  538. n = static_cast<unsigned int>(this->_internal_velodyne_lidars_size()); i < n; i++) {
  539. target = stream->EnsureSpace(target);
  540. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
  541. InternalWriteMessage(1, this->_internal_velodyne_lidars(i), target, stream);
  542. }
  543. // repeated .velodyne.Region region = 2;
  544. for (unsigned int i = 0,
  545. n = static_cast<unsigned int>(this->_internal_region_size()); i < n; i++) {
  546. target = stream->EnsureSpace(target);
  547. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
  548. InternalWriteMessage(2, this->_internal_region(i), target, stream);
  549. }
  550. cached_has_bits = _has_bits_[0];
  551. // optional string fence_data_path = 3 [default = ""];
  552. if (cached_has_bits & 0x00000001u) {
  553. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::VerifyUTF8StringNamedField(
  554. this->_internal_fence_data_path().data(), static_cast<int>(this->_internal_fence_data_path().length()),
  555. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::SERIALIZE,
  556. "velodyne.velodyneManagerParams.fence_data_path");
  557. target = stream->WriteStringMaybeAliased(
  558. 3, this->_internal_fence_data_path(), target);
  559. }
  560. // optional string fence_log_path = 4 [default = ""];
  561. if (cached_has_bits & 0x00000002u) {
  562. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::VerifyUTF8StringNamedField(
  563. this->_internal_fence_log_path().data(), static_cast<int>(this->_internal_fence_log_path().length()),
  564. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::SERIALIZE,
  565. "velodyne.velodyneManagerParams.fence_log_path");
  566. target = stream->WriteStringMaybeAliased(
  567. 4, this->_internal_fence_log_path(), target);
  568. }
  569. // optional string left_model_path = 5 [default = ""];
  570. if (cached_has_bits & 0x00000004u) {
  571. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::VerifyUTF8StringNamedField(
  572. this->_internal_left_model_path().data(), static_cast<int>(this->_internal_left_model_path().length()),
  573. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::SERIALIZE,
  574. "velodyne.velodyneManagerParams.left_model_path");
  575. target = stream->WriteStringMaybeAliased(
  576. 5, this->_internal_left_model_path(), target);
  577. }
  578. // optional string right_model_path = 6 [default = ""];
  579. if (cached_has_bits & 0x00000008u) {
  580. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::VerifyUTF8StringNamedField(
  581. this->_internal_right_model_path().data(), static_cast<int>(this->_internal_right_model_path().length()),
  582. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::SERIALIZE,
  583. "velodyne.velodyneManagerParams.right_model_path");
  584. target = stream->WriteStringMaybeAliased(
  585. 6, this->_internal_right_model_path(), target);
  586. }
  587. // required bool distribution_mode = 7 [default = false];
  588. if (cached_has_bits & 0x00000010u) {
  589. target = stream->EnsureSpace(target);
  590. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteBoolToArray(7, this->_internal_distribution_mode(), target);
  591. }
  592. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  593. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::InternalSerializeUnknownFieldsToArray(
  594. _internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
  595. }
  596. // @@protoc_insertion_point(serialize_to_array_end:velodyne.velodyneManagerParams)
  597. return target;
  598. }
  599. size_t velodyneManagerParams::ByteSizeLong() const {
  600. // @@protoc_insertion_point(message_byte_size_start:velodyne.velodyneManagerParams)
  601. size_t total_size = 0;
  602. // required bool distribution_mode = 7 [default = false];
  603. if (_internal_has_distribution_mode()) {
  604. total_size += 1 + 1;
  605. }
  606. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  607. // Prevent compiler warnings about cached_has_bits being unused
  608. (void) cached_has_bits;
  609. // repeated .velodyne.velodyneLidarParams velodyne_lidars = 1;
  610. total_size += 1UL * this->_internal_velodyne_lidars_size();
  611. for (const auto& msg : this->velodyne_lidars_) {
  612. total_size +=
  613. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg);
  614. }
  615. // repeated .velodyne.Region region = 2;
  616. total_size += 1UL * this->_internal_region_size();
  617. for (const auto& msg : this->region_) {
  618. total_size +=
  619. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg);
  620. }
  621. cached_has_bits = _has_bits_[0];
  622. if (cached_has_bits & 0x0000000fu) {
  623. // optional string fence_data_path = 3 [default = ""];
  624. if (cached_has_bits & 0x00000001u) {
  625. total_size += 1 +
  626. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  627. this->_internal_fence_data_path());
  628. }
  629. // optional string fence_log_path = 4 [default = ""];
  630. if (cached_has_bits & 0x00000002u) {
  631. total_size += 1 +
  632. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  633. this->_internal_fence_log_path());
  634. }
  635. // optional string left_model_path = 5 [default = ""];
  636. if (cached_has_bits & 0x00000004u) {
  637. total_size += 1 +
  638. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  639. this->_internal_left_model_path());
  640. }
  641. // optional string right_model_path = 6 [default = ""];
  642. if (cached_has_bits & 0x00000008u) {
  643. total_size += 1 +
  644. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  645. this->_internal_right_model_path());
  646. }
  647. }
  648. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  649. return ::PROTOBUF_NAMESPACE_ID::internal::ComputeUnknownFieldsSize(
  650. _internal_metadata_, total_size, &_cached_size_);
  651. }
  652. int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size);
  653. SetCachedSize(cached_size);
  654. return total_size;
  655. }
  656. void velodyneManagerParams::MergeFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  657. // @@protoc_insertion_point(generalized_merge_from_start:velodyne.velodyneManagerParams)
  658. GOOGLE_DCHECK_NE(&from, this);
  659. const velodyneManagerParams* source =
  660. ::PROTOBUF_NAMESPACE_ID::DynamicCastToGenerated<velodyneManagerParams>(
  661. &from);
  662. if (source == nullptr) {
  663. // @@protoc_insertion_point(generalized_merge_from_cast_fail:velodyne.velodyneManagerParams)
  664. ::PROTOBUF_NAMESPACE_ID::internal::ReflectionOps::Merge(from, this);
  665. } else {
  666. // @@protoc_insertion_point(generalized_merge_from_cast_success:velodyne.velodyneManagerParams)
  667. MergeFrom(*source);
  668. }
  669. }
  670. void velodyneManagerParams::MergeFrom(const velodyneManagerParams& from) {
  671. // @@protoc_insertion_point(class_specific_merge_from_start:velodyne.velodyneManagerParams)
  672. GOOGLE_DCHECK_NE(&from, this);
  673. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  674. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  675. (void) cached_has_bits;
  676. velodyne_lidars_.MergeFrom(from.velodyne_lidars_);
  677. region_.MergeFrom(from.region_);
  678. cached_has_bits = from._has_bits_[0];
  679. if (cached_has_bits & 0x0000001fu) {
  680. if (cached_has_bits & 0x00000001u) {
  681. _internal_set_fence_data_path(from._internal_fence_data_path());
  682. }
  683. if (cached_has_bits & 0x00000002u) {
  684. _internal_set_fence_log_path(from._internal_fence_log_path());
  685. }
  686. if (cached_has_bits & 0x00000004u) {
  687. _internal_set_left_model_path(from._internal_left_model_path());
  688. }
  689. if (cached_has_bits & 0x00000008u) {
  690. _internal_set_right_model_path(from._internal_right_model_path());
  691. }
  692. if (cached_has_bits & 0x00000010u) {
  693. distribution_mode_ = from.distribution_mode_;
  694. }
  695. _has_bits_[0] |= cached_has_bits;
  696. }
  697. }
  698. void velodyneManagerParams::CopyFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  699. // @@protoc_insertion_point(generalized_copy_from_start:velodyne.velodyneManagerParams)
  700. if (&from == this) return;
  701. Clear();
  702. MergeFrom(from);
  703. }
  704. void velodyneManagerParams::CopyFrom(const velodyneManagerParams& from) {
  705. // @@protoc_insertion_point(class_specific_copy_from_start:velodyne.velodyneManagerParams)
  706. if (&from == this) return;
  707. Clear();
  708. MergeFrom(from);
  709. }
  710. bool velodyneManagerParams::IsInitialized() const {
  711. if (_Internal::MissingRequiredFields(_has_bits_)) return false;
  712. if (!::PROTOBUF_NAMESPACE_ID::internal::AllAreInitialized(velodyne_lidars_)) return false;
  713. if (!::PROTOBUF_NAMESPACE_ID::internal::AllAreInitialized(region_)) return false;
  714. return true;
  715. }
  716. void velodyneManagerParams::InternalSwap(velodyneManagerParams* other) {
  717. using std::swap;
  718. _internal_metadata_.Swap<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(&other->_internal_metadata_);
  719. swap(_has_bits_[0], other->_has_bits_[0]);
  720. velodyne_lidars_.InternalSwap(&other->velodyne_lidars_);
  721. region_.InternalSwap(&other->region_);
  722. fence_data_path_.Swap(&other->fence_data_path_, &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), GetArena());
  723. fence_log_path_.Swap(&other->fence_log_path_, &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), GetArena());
  724. left_model_path_.Swap(&other->left_model_path_, &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), GetArena());
  725. right_model_path_.Swap(&other->right_model_path_, &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), GetArena());
  726. swap(distribution_mode_, other->distribution_mode_);
  727. }
  728. ::PROTOBUF_NAMESPACE_ID::Metadata velodyneManagerParams::GetMetadata() const {
  729. return GetMetadataStatic();
  730. }
  731. // ===================================================================
  732. void velodyneLidarParams::InitAsDefaultInstance() {
  733. ::velodyne::_velodyneLidarParams_default_instance_._instance.get_mutable()->calib_ = const_cast< ::velodyne::CalibParameter*>(
  734. ::velodyne::CalibParameter::internal_default_instance());
  735. }
  736. class velodyneLidarParams::_Internal {
  737. public:
  738. using HasBits = decltype(std::declval<velodyneLidarParams>()._has_bits_);
  739. static void set_has_ip(HasBits* has_bits) {
  740. (*has_bits)[0] |= 1u;
  741. }
  742. static void set_has_port(HasBits* has_bits) {
  743. (*has_bits)[0] |= 64u;
  744. }
  745. static void set_has_model(HasBits* has_bits) {
  746. (*has_bits)[0] |= 2u;
  747. }
  748. static void set_has_calibrationfile(HasBits* has_bits) {
  749. (*has_bits)[0] |= 4u;
  750. }
  751. static void set_has_lidar_id(HasBits* has_bits) {
  752. (*has_bits)[0] |= 16u;
  753. }
  754. static void set_has_max_range(HasBits* has_bits) {
  755. (*has_bits)[0] |= 128u;
  756. }
  757. static void set_has_min_range(HasBits* has_bits) {
  758. (*has_bits)[0] |= 256u;
  759. }
  760. static void set_has_min_angle(HasBits* has_bits) {
  761. (*has_bits)[0] |= 32u;
  762. }
  763. static void set_has_max_angle(HasBits* has_bits) {
  764. (*has_bits)[0] |= 512u;
  765. }
  766. static void set_has_rpm(HasBits* has_bits) {
  767. (*has_bits)[0] |= 1024u;
  768. }
  769. static const ::velodyne::CalibParameter& calib(const velodyneLidarParams* msg);
  770. static void set_has_calib(HasBits* has_bits) {
  771. (*has_bits)[0] |= 8u;
  772. }
  773. static void set_has_difop(HasBits* has_bits) {
  774. (*has_bits)[0] |= 2048u;
  775. }
  776. static bool MissingRequiredFields(const HasBits& has_bits) {
  777. return ((has_bits[0] & 0x00000057) ^ 0x00000057) != 0;
  778. }
  779. };
  780. const ::velodyne::CalibParameter&
  781. velodyneLidarParams::_Internal::calib(const velodyneLidarParams* msg) {
  782. return *msg->calib_;
  783. }
  784. ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed<std::string> velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_;
  785. velodyneLidarParams::velodyneLidarParams(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  786. : ::PROTOBUF_NAMESPACE_ID::Message(arena) {
  787. SharedCtor();
  788. RegisterArenaDtor(arena);
  789. // @@protoc_insertion_point(arena_constructor:velodyne.velodyneLidarParams)
  790. }
  791. velodyneLidarParams::velodyneLidarParams(const velodyneLidarParams& from)
  792. : ::PROTOBUF_NAMESPACE_ID::Message(),
  793. _has_bits_(from._has_bits_) {
  794. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  795. ip_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  796. if (from._internal_has_ip()) {
  797. ip_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), from._internal_ip(),
  798. GetArena());
  799. }
  800. model_.UnsafeSetDefault(&::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.get());
  801. if (from._internal_has_model()) {
  802. model_.Set(&::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.get(), from._internal_model(),
  803. GetArena());
  804. }
  805. calibrationfile_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  806. if (from._internal_has_calibrationfile()) {
  807. calibrationfile_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), from._internal_calibrationfile(),
  808. GetArena());
  809. }
  810. if (from._internal_has_calib()) {
  811. calib_ = new ::velodyne::CalibParameter(*from.calib_);
  812. } else {
  813. calib_ = nullptr;
  814. }
  815. ::memcpy(&lidar_id_, &from.lidar_id_,
  816. static_cast<size_t>(reinterpret_cast<char*>(&difop_) -
  817. reinterpret_cast<char*>(&lidar_id_)) + sizeof(difop_));
  818. // @@protoc_insertion_point(copy_constructor:velodyne.velodyneLidarParams)
  819. }
  820. void velodyneLidarParams::SharedCtor() {
  821. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&scc_info_velodyneLidarParams_velodyne_5fconfig_2eproto.base);
  822. ip_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  823. model_.UnsafeSetDefault(&::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.get());
  824. calibrationfile_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  825. ::memset(&calib_, 0, static_cast<size_t>(
  826. reinterpret_cast<char*>(&min_angle_) -
  827. reinterpret_cast<char*>(&calib_)) + sizeof(min_angle_));
  828. port_ = 2368;
  829. max_range_ = 10;
  830. min_range_ = 0.15f;
  831. max_angle_ = 360;
  832. rpm_ = 600;
  833. difop_ = 7788;
  834. }
  835. velodyneLidarParams::~velodyneLidarParams() {
  836. // @@protoc_insertion_point(destructor:velodyne.velodyneLidarParams)
  837. SharedDtor();
  838. _internal_metadata_.Delete<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  839. }
  840. void velodyneLidarParams::SharedDtor() {
  841. GOOGLE_DCHECK(GetArena() == nullptr);
  842. ip_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  843. model_.DestroyNoArena(&::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.get());
  844. calibrationfile_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited());
  845. if (this != internal_default_instance()) delete calib_;
  846. }
  847. void velodyneLidarParams::ArenaDtor(void* object) {
  848. velodyneLidarParams* _this = reinterpret_cast< velodyneLidarParams* >(object);
  849. (void)_this;
  850. }
  851. void velodyneLidarParams::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) {
  852. }
  853. void velodyneLidarParams::SetCachedSize(int size) const {
  854. _cached_size_.Set(size);
  855. }
  856. const velodyneLidarParams& velodyneLidarParams::default_instance() {
  857. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&::scc_info_velodyneLidarParams_velodyne_5fconfig_2eproto.base);
  858. return *internal_default_instance();
  859. }
  860. void velodyneLidarParams::Clear() {
  861. // @@protoc_insertion_point(message_clear_start:velodyne.velodyneLidarParams)
  862. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  863. // Prevent compiler warnings about cached_has_bits being unused
  864. (void) cached_has_bits;
  865. cached_has_bits = _has_bits_[0];
  866. if (cached_has_bits & 0x0000000fu) {
  867. if (cached_has_bits & 0x00000001u) {
  868. ip_.ClearNonDefaultToEmpty();
  869. }
  870. if (cached_has_bits & 0x00000002u) {
  871. model_.ClearToDefault(&::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.get(), GetArena());
  872. }
  873. if (cached_has_bits & 0x00000004u) {
  874. calibrationfile_.ClearNonDefaultToEmpty();
  875. }
  876. if (cached_has_bits & 0x00000008u) {
  877. GOOGLE_DCHECK(calib_ != nullptr);
  878. calib_->Clear();
  879. }
  880. }
  881. if (cached_has_bits & 0x000000f0u) {
  882. ::memset(&lidar_id_, 0, static_cast<size_t>(
  883. reinterpret_cast<char*>(&min_angle_) -
  884. reinterpret_cast<char*>(&lidar_id_)) + sizeof(min_angle_));
  885. port_ = 2368;
  886. max_range_ = 10;
  887. }
  888. if (cached_has_bits & 0x00000f00u) {
  889. min_range_ = 0.15f;
  890. max_angle_ = 360;
  891. rpm_ = 600;
  892. difop_ = 7788;
  893. }
  894. _has_bits_.Clear();
  895. _internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  896. }
  897. const char* velodyneLidarParams::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) {
  898. #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  899. _Internal::HasBits has_bits{};
  900. ::PROTOBUF_NAMESPACE_ID::Arena* arena = GetArena(); (void)arena;
  901. while (!ctx->Done(&ptr)) {
  902. ::PROTOBUF_NAMESPACE_ID::uint32 tag;
  903. ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag);
  904. CHK_(ptr);
  905. switch (tag >> 3) {
  906. // required string ip = 1 [default = ""];
  907. case 1:
  908. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 10)) {
  909. auto str = _internal_mutable_ip();
  910. ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx);
  911. #ifndef NDEBUG
  912. ::PROTOBUF_NAMESPACE_ID::internal::VerifyUTF8(str, "velodyne.velodyneLidarParams.ip");
  913. #endif // !NDEBUG
  914. CHK_(ptr);
  915. } else goto handle_unusual;
  916. continue;
  917. // required int32 port = 2 [default = 2368];
  918. case 2:
  919. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 16)) {
  920. _Internal::set_has_port(&has_bits);
  921. port_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  922. CHK_(ptr);
  923. } else goto handle_unusual;
  924. continue;
  925. // required string model = 3 [default = "VLP16"];
  926. case 3:
  927. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 26)) {
  928. auto str = _internal_mutable_model();
  929. ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx);
  930. #ifndef NDEBUG
  931. ::PROTOBUF_NAMESPACE_ID::internal::VerifyUTF8(str, "velodyne.velodyneLidarParams.model");
  932. #endif // !NDEBUG
  933. CHK_(ptr);
  934. } else goto handle_unusual;
  935. continue;
  936. // required string calibrationFile = 4 [default = ""];
  937. case 4:
  938. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 34)) {
  939. auto str = _internal_mutable_calibrationfile();
  940. ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx);
  941. #ifndef NDEBUG
  942. ::PROTOBUF_NAMESPACE_ID::internal::VerifyUTF8(str, "velodyne.velodyneLidarParams.calibrationFile");
  943. #endif // !NDEBUG
  944. CHK_(ptr);
  945. } else goto handle_unusual;
  946. continue;
  947. // required int32 lidar_id = 5 [default = 0];
  948. case 5:
  949. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 40)) {
  950. _Internal::set_has_lidar_id(&has_bits);
  951. lidar_id_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  952. CHK_(ptr);
  953. } else goto handle_unusual;
  954. continue;
  955. // optional float max_range = 6 [default = 10];
  956. case 6:
  957. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 53)) {
  958. _Internal::set_has_max_range(&has_bits);
  959. max_range_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  960. ptr += sizeof(float);
  961. } else goto handle_unusual;
  962. continue;
  963. // optional float min_range = 7 [default = 0.15];
  964. case 7:
  965. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 61)) {
  966. _Internal::set_has_min_range(&has_bits);
  967. min_range_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  968. ptr += sizeof(float);
  969. } else goto handle_unusual;
  970. continue;
  971. // optional int32 min_angle = 8 [default = 0];
  972. case 8:
  973. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 64)) {
  974. _Internal::set_has_min_angle(&has_bits);
  975. min_angle_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  976. CHK_(ptr);
  977. } else goto handle_unusual;
  978. continue;
  979. // optional int32 max_angle = 9 [default = 360];
  980. case 9:
  981. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 72)) {
  982. _Internal::set_has_max_angle(&has_bits);
  983. max_angle_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  984. CHK_(ptr);
  985. } else goto handle_unusual;
  986. continue;
  987. // optional int32 rpm = 10 [default = 600];
  988. case 10:
  989. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 80)) {
  990. _Internal::set_has_rpm(&has_bits);
  991. rpm_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  992. CHK_(ptr);
  993. } else goto handle_unusual;
  994. continue;
  995. // optional .velodyne.CalibParameter calib = 11;
  996. case 11:
  997. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 90)) {
  998. ptr = ctx->ParseMessage(_internal_mutable_calib(), ptr);
  999. CHK_(ptr);
  1000. } else goto handle_unusual;
  1001. continue;
  1002. // optional int32 difop = 12 [default = 7788];
  1003. case 12:
  1004. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 96)) {
  1005. _Internal::set_has_difop(&has_bits);
  1006. difop_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  1007. CHK_(ptr);
  1008. } else goto handle_unusual;
  1009. continue;
  1010. default: {
  1011. handle_unusual:
  1012. if ((tag & 7) == 4 || tag == 0) {
  1013. ctx->SetLastTag(tag);
  1014. goto success;
  1015. }
  1016. ptr = UnknownFieldParse(tag,
  1017. _internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
  1018. ptr, ctx);
  1019. CHK_(ptr != nullptr);
  1020. continue;
  1021. }
  1022. } // switch
  1023. } // while
  1024. success:
  1025. _has_bits_.Or(has_bits);
  1026. return ptr;
  1027. failure:
  1028. ptr = nullptr;
  1029. goto success;
  1030. #undef CHK_
  1031. }
  1032. ::PROTOBUF_NAMESPACE_ID::uint8* velodyneLidarParams::_InternalSerialize(
  1033. ::PROTOBUF_NAMESPACE_ID::uint8* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  1034. // @@protoc_insertion_point(serialize_to_array_start:velodyne.velodyneLidarParams)
  1035. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1036. (void) cached_has_bits;
  1037. cached_has_bits = _has_bits_[0];
  1038. // required string ip = 1 [default = ""];
  1039. if (cached_has_bits & 0x00000001u) {
  1040. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::VerifyUTF8StringNamedField(
  1041. this->_internal_ip().data(), static_cast<int>(this->_internal_ip().length()),
  1042. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::SERIALIZE,
  1043. "velodyne.velodyneLidarParams.ip");
  1044. target = stream->WriteStringMaybeAliased(
  1045. 1, this->_internal_ip(), target);
  1046. }
  1047. // required int32 port = 2 [default = 2368];
  1048. if (cached_has_bits & 0x00000040u) {
  1049. target = stream->EnsureSpace(target);
  1050. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(2, this->_internal_port(), target);
  1051. }
  1052. // required string model = 3 [default = "VLP16"];
  1053. if (cached_has_bits & 0x00000002u) {
  1054. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::VerifyUTF8StringNamedField(
  1055. this->_internal_model().data(), static_cast<int>(this->_internal_model().length()),
  1056. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::SERIALIZE,
  1057. "velodyne.velodyneLidarParams.model");
  1058. target = stream->WriteStringMaybeAliased(
  1059. 3, this->_internal_model(), target);
  1060. }
  1061. // required string calibrationFile = 4 [default = ""];
  1062. if (cached_has_bits & 0x00000004u) {
  1063. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::VerifyUTF8StringNamedField(
  1064. this->_internal_calibrationfile().data(), static_cast<int>(this->_internal_calibrationfile().length()),
  1065. ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::SERIALIZE,
  1066. "velodyne.velodyneLidarParams.calibrationFile");
  1067. target = stream->WriteStringMaybeAliased(
  1068. 4, this->_internal_calibrationfile(), target);
  1069. }
  1070. // required int32 lidar_id = 5 [default = 0];
  1071. if (cached_has_bits & 0x00000010u) {
  1072. target = stream->EnsureSpace(target);
  1073. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(5, this->_internal_lidar_id(), target);
  1074. }
  1075. // optional float max_range = 6 [default = 10];
  1076. if (cached_has_bits & 0x00000080u) {
  1077. target = stream->EnsureSpace(target);
  1078. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(6, this->_internal_max_range(), target);
  1079. }
  1080. // optional float min_range = 7 [default = 0.15];
  1081. if (cached_has_bits & 0x00000100u) {
  1082. target = stream->EnsureSpace(target);
  1083. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(7, this->_internal_min_range(), target);
  1084. }
  1085. // optional int32 min_angle = 8 [default = 0];
  1086. if (cached_has_bits & 0x00000020u) {
  1087. target = stream->EnsureSpace(target);
  1088. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(8, this->_internal_min_angle(), target);
  1089. }
  1090. // optional int32 max_angle = 9 [default = 360];
  1091. if (cached_has_bits & 0x00000200u) {
  1092. target = stream->EnsureSpace(target);
  1093. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(9, this->_internal_max_angle(), target);
  1094. }
  1095. // optional int32 rpm = 10 [default = 600];
  1096. if (cached_has_bits & 0x00000400u) {
  1097. target = stream->EnsureSpace(target);
  1098. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(10, this->_internal_rpm(), target);
  1099. }
  1100. // optional .velodyne.CalibParameter calib = 11;
  1101. if (cached_has_bits & 0x00000008u) {
  1102. target = stream->EnsureSpace(target);
  1103. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
  1104. InternalWriteMessage(
  1105. 11, _Internal::calib(this), target, stream);
  1106. }
  1107. // optional int32 difop = 12 [default = 7788];
  1108. if (cached_has_bits & 0x00000800u) {
  1109. target = stream->EnsureSpace(target);
  1110. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(12, this->_internal_difop(), target);
  1111. }
  1112. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  1113. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::InternalSerializeUnknownFieldsToArray(
  1114. _internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
  1115. }
  1116. // @@protoc_insertion_point(serialize_to_array_end:velodyne.velodyneLidarParams)
  1117. return target;
  1118. }
  1119. size_t velodyneLidarParams::RequiredFieldsByteSizeFallback() const {
  1120. // @@protoc_insertion_point(required_fields_byte_size_fallback_start:velodyne.velodyneLidarParams)
  1121. size_t total_size = 0;
  1122. if (_internal_has_ip()) {
  1123. // required string ip = 1 [default = ""];
  1124. total_size += 1 +
  1125. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  1126. this->_internal_ip());
  1127. }
  1128. if (_internal_has_model()) {
  1129. // required string model = 3 [default = "VLP16"];
  1130. total_size += 1 +
  1131. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  1132. this->_internal_model());
  1133. }
  1134. if (_internal_has_calibrationfile()) {
  1135. // required string calibrationFile = 4 [default = ""];
  1136. total_size += 1 +
  1137. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  1138. this->_internal_calibrationfile());
  1139. }
  1140. if (_internal_has_lidar_id()) {
  1141. // required int32 lidar_id = 5 [default = 0];
  1142. total_size += 1 +
  1143. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1144. this->_internal_lidar_id());
  1145. }
  1146. if (_internal_has_port()) {
  1147. // required int32 port = 2 [default = 2368];
  1148. total_size += 1 +
  1149. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1150. this->_internal_port());
  1151. }
  1152. return total_size;
  1153. }
  1154. size_t velodyneLidarParams::ByteSizeLong() const {
  1155. // @@protoc_insertion_point(message_byte_size_start:velodyne.velodyneLidarParams)
  1156. size_t total_size = 0;
  1157. if (((_has_bits_[0] & 0x00000057) ^ 0x00000057) == 0) { // All required fields are present.
  1158. // required string ip = 1 [default = ""];
  1159. total_size += 1 +
  1160. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  1161. this->_internal_ip());
  1162. // required string model = 3 [default = "VLP16"];
  1163. total_size += 1 +
  1164. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  1165. this->_internal_model());
  1166. // required string calibrationFile = 4 [default = ""];
  1167. total_size += 1 +
  1168. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
  1169. this->_internal_calibrationfile());
  1170. // required int32 lidar_id = 5 [default = 0];
  1171. total_size += 1 +
  1172. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1173. this->_internal_lidar_id());
  1174. // required int32 port = 2 [default = 2368];
  1175. total_size += 1 +
  1176. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1177. this->_internal_port());
  1178. } else {
  1179. total_size += RequiredFieldsByteSizeFallback();
  1180. }
  1181. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1182. // Prevent compiler warnings about cached_has_bits being unused
  1183. (void) cached_has_bits;
  1184. // optional .velodyne.CalibParameter calib = 11;
  1185. cached_has_bits = _has_bits_[0];
  1186. if (cached_has_bits & 0x00000008u) {
  1187. total_size += 1 +
  1188. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(
  1189. *calib_);
  1190. }
  1191. // optional int32 min_angle = 8 [default = 0];
  1192. if (cached_has_bits & 0x00000020u) {
  1193. total_size += 1 +
  1194. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1195. this->_internal_min_angle());
  1196. }
  1197. // optional float max_range = 6 [default = 10];
  1198. if (cached_has_bits & 0x00000080u) {
  1199. total_size += 1 + 4;
  1200. }
  1201. if (cached_has_bits & 0x00000f00u) {
  1202. // optional float min_range = 7 [default = 0.15];
  1203. if (cached_has_bits & 0x00000100u) {
  1204. total_size += 1 + 4;
  1205. }
  1206. // optional int32 max_angle = 9 [default = 360];
  1207. if (cached_has_bits & 0x00000200u) {
  1208. total_size += 1 +
  1209. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1210. this->_internal_max_angle());
  1211. }
  1212. // optional int32 rpm = 10 [default = 600];
  1213. if (cached_has_bits & 0x00000400u) {
  1214. total_size += 1 +
  1215. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1216. this->_internal_rpm());
  1217. }
  1218. // optional int32 difop = 12 [default = 7788];
  1219. if (cached_has_bits & 0x00000800u) {
  1220. total_size += 1 +
  1221. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1222. this->_internal_difop());
  1223. }
  1224. }
  1225. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  1226. return ::PROTOBUF_NAMESPACE_ID::internal::ComputeUnknownFieldsSize(
  1227. _internal_metadata_, total_size, &_cached_size_);
  1228. }
  1229. int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size);
  1230. SetCachedSize(cached_size);
  1231. return total_size;
  1232. }
  1233. void velodyneLidarParams::MergeFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  1234. // @@protoc_insertion_point(generalized_merge_from_start:velodyne.velodyneLidarParams)
  1235. GOOGLE_DCHECK_NE(&from, this);
  1236. const velodyneLidarParams* source =
  1237. ::PROTOBUF_NAMESPACE_ID::DynamicCastToGenerated<velodyneLidarParams>(
  1238. &from);
  1239. if (source == nullptr) {
  1240. // @@protoc_insertion_point(generalized_merge_from_cast_fail:velodyne.velodyneLidarParams)
  1241. ::PROTOBUF_NAMESPACE_ID::internal::ReflectionOps::Merge(from, this);
  1242. } else {
  1243. // @@protoc_insertion_point(generalized_merge_from_cast_success:velodyne.velodyneLidarParams)
  1244. MergeFrom(*source);
  1245. }
  1246. }
  1247. void velodyneLidarParams::MergeFrom(const velodyneLidarParams& from) {
  1248. // @@protoc_insertion_point(class_specific_merge_from_start:velodyne.velodyneLidarParams)
  1249. GOOGLE_DCHECK_NE(&from, this);
  1250. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  1251. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1252. (void) cached_has_bits;
  1253. cached_has_bits = from._has_bits_[0];
  1254. if (cached_has_bits & 0x000000ffu) {
  1255. if (cached_has_bits & 0x00000001u) {
  1256. _internal_set_ip(from._internal_ip());
  1257. }
  1258. if (cached_has_bits & 0x00000002u) {
  1259. _internal_set_model(from._internal_model());
  1260. }
  1261. if (cached_has_bits & 0x00000004u) {
  1262. _internal_set_calibrationfile(from._internal_calibrationfile());
  1263. }
  1264. if (cached_has_bits & 0x00000008u) {
  1265. _internal_mutable_calib()->::velodyne::CalibParameter::MergeFrom(from._internal_calib());
  1266. }
  1267. if (cached_has_bits & 0x00000010u) {
  1268. lidar_id_ = from.lidar_id_;
  1269. }
  1270. if (cached_has_bits & 0x00000020u) {
  1271. min_angle_ = from.min_angle_;
  1272. }
  1273. if (cached_has_bits & 0x00000040u) {
  1274. port_ = from.port_;
  1275. }
  1276. if (cached_has_bits & 0x00000080u) {
  1277. max_range_ = from.max_range_;
  1278. }
  1279. _has_bits_[0] |= cached_has_bits;
  1280. }
  1281. if (cached_has_bits & 0x00000f00u) {
  1282. if (cached_has_bits & 0x00000100u) {
  1283. min_range_ = from.min_range_;
  1284. }
  1285. if (cached_has_bits & 0x00000200u) {
  1286. max_angle_ = from.max_angle_;
  1287. }
  1288. if (cached_has_bits & 0x00000400u) {
  1289. rpm_ = from.rpm_;
  1290. }
  1291. if (cached_has_bits & 0x00000800u) {
  1292. difop_ = from.difop_;
  1293. }
  1294. _has_bits_[0] |= cached_has_bits;
  1295. }
  1296. }
  1297. void velodyneLidarParams::CopyFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  1298. // @@protoc_insertion_point(generalized_copy_from_start:velodyne.velodyneLidarParams)
  1299. if (&from == this) return;
  1300. Clear();
  1301. MergeFrom(from);
  1302. }
  1303. void velodyneLidarParams::CopyFrom(const velodyneLidarParams& from) {
  1304. // @@protoc_insertion_point(class_specific_copy_from_start:velodyne.velodyneLidarParams)
  1305. if (&from == this) return;
  1306. Clear();
  1307. MergeFrom(from);
  1308. }
  1309. bool velodyneLidarParams::IsInitialized() const {
  1310. if (_Internal::MissingRequiredFields(_has_bits_)) return false;
  1311. return true;
  1312. }
  1313. void velodyneLidarParams::InternalSwap(velodyneLidarParams* other) {
  1314. using std::swap;
  1315. _internal_metadata_.Swap<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(&other->_internal_metadata_);
  1316. swap(_has_bits_[0], other->_has_bits_[0]);
  1317. ip_.Swap(&other->ip_, &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), GetArena());
  1318. model_.Swap(&other->model_, &::velodyne::velodyneLidarParams::_i_give_permission_to_break_this_code_default_model_.get(), GetArena());
  1319. calibrationfile_.Swap(&other->calibrationfile_, &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), GetArena());
  1320. ::PROTOBUF_NAMESPACE_ID::internal::memswap<
  1321. PROTOBUF_FIELD_OFFSET(velodyneLidarParams, min_angle_)
  1322. + sizeof(velodyneLidarParams::min_angle_)
  1323. - PROTOBUF_FIELD_OFFSET(velodyneLidarParams, calib_)>(
  1324. reinterpret_cast<char*>(&calib_),
  1325. reinterpret_cast<char*>(&other->calib_));
  1326. swap(port_, other->port_);
  1327. swap(max_range_, other->max_range_);
  1328. swap(min_range_, other->min_range_);
  1329. swap(max_angle_, other->max_angle_);
  1330. swap(rpm_, other->rpm_);
  1331. swap(difop_, other->difop_);
  1332. }
  1333. ::PROTOBUF_NAMESPACE_ID::Metadata velodyneLidarParams::GetMetadata() const {
  1334. return GetMetadataStatic();
  1335. }
  1336. // ===================================================================
  1337. void CalibParameter::InitAsDefaultInstance() {
  1338. }
  1339. class CalibParameter::_Internal {
  1340. public:
  1341. using HasBits = decltype(std::declval<CalibParameter>()._has_bits_);
  1342. static void set_has_r(HasBits* has_bits) {
  1343. (*has_bits)[0] |= 1u;
  1344. }
  1345. static void set_has_p(HasBits* has_bits) {
  1346. (*has_bits)[0] |= 2u;
  1347. }
  1348. static void set_has_y(HasBits* has_bits) {
  1349. (*has_bits)[0] |= 4u;
  1350. }
  1351. static void set_has_cx(HasBits* has_bits) {
  1352. (*has_bits)[0] |= 8u;
  1353. }
  1354. static void set_has_cy(HasBits* has_bits) {
  1355. (*has_bits)[0] |= 16u;
  1356. }
  1357. static void set_has_cz(HasBits* has_bits) {
  1358. (*has_bits)[0] |= 32u;
  1359. }
  1360. };
  1361. CalibParameter::CalibParameter(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  1362. : ::PROTOBUF_NAMESPACE_ID::Message(arena) {
  1363. SharedCtor();
  1364. RegisterArenaDtor(arena);
  1365. // @@protoc_insertion_point(arena_constructor:velodyne.CalibParameter)
  1366. }
  1367. CalibParameter::CalibParameter(const CalibParameter& from)
  1368. : ::PROTOBUF_NAMESPACE_ID::Message(),
  1369. _has_bits_(from._has_bits_) {
  1370. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  1371. ::memcpy(&r_, &from.r_,
  1372. static_cast<size_t>(reinterpret_cast<char*>(&cz_) -
  1373. reinterpret_cast<char*>(&r_)) + sizeof(cz_));
  1374. // @@protoc_insertion_point(copy_constructor:velodyne.CalibParameter)
  1375. }
  1376. void CalibParameter::SharedCtor() {
  1377. ::memset(&r_, 0, static_cast<size_t>(
  1378. reinterpret_cast<char*>(&cz_) -
  1379. reinterpret_cast<char*>(&r_)) + sizeof(cz_));
  1380. }
  1381. CalibParameter::~CalibParameter() {
  1382. // @@protoc_insertion_point(destructor:velodyne.CalibParameter)
  1383. SharedDtor();
  1384. _internal_metadata_.Delete<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  1385. }
  1386. void CalibParameter::SharedDtor() {
  1387. GOOGLE_DCHECK(GetArena() == nullptr);
  1388. }
  1389. void CalibParameter::ArenaDtor(void* object) {
  1390. CalibParameter* _this = reinterpret_cast< CalibParameter* >(object);
  1391. (void)_this;
  1392. }
  1393. void CalibParameter::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) {
  1394. }
  1395. void CalibParameter::SetCachedSize(int size) const {
  1396. _cached_size_.Set(size);
  1397. }
  1398. const CalibParameter& CalibParameter::default_instance() {
  1399. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&::scc_info_CalibParameter_velodyne_5fconfig_2eproto.base);
  1400. return *internal_default_instance();
  1401. }
  1402. void CalibParameter::Clear() {
  1403. // @@protoc_insertion_point(message_clear_start:velodyne.CalibParameter)
  1404. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1405. // Prevent compiler warnings about cached_has_bits being unused
  1406. (void) cached_has_bits;
  1407. cached_has_bits = _has_bits_[0];
  1408. if (cached_has_bits & 0x0000003fu) {
  1409. ::memset(&r_, 0, static_cast<size_t>(
  1410. reinterpret_cast<char*>(&cz_) -
  1411. reinterpret_cast<char*>(&r_)) + sizeof(cz_));
  1412. }
  1413. _has_bits_.Clear();
  1414. _internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  1415. }
  1416. const char* CalibParameter::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) {
  1417. #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  1418. _Internal::HasBits has_bits{};
  1419. ::PROTOBUF_NAMESPACE_ID::Arena* arena = GetArena(); (void)arena;
  1420. while (!ctx->Done(&ptr)) {
  1421. ::PROTOBUF_NAMESPACE_ID::uint32 tag;
  1422. ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag);
  1423. CHK_(ptr);
  1424. switch (tag >> 3) {
  1425. // optional float r = 1 [default = 0];
  1426. case 1:
  1427. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 13)) {
  1428. _Internal::set_has_r(&has_bits);
  1429. r_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  1430. ptr += sizeof(float);
  1431. } else goto handle_unusual;
  1432. continue;
  1433. // optional float p = 2 [default = 0];
  1434. case 2:
  1435. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 21)) {
  1436. _Internal::set_has_p(&has_bits);
  1437. p_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  1438. ptr += sizeof(float);
  1439. } else goto handle_unusual;
  1440. continue;
  1441. // optional float y = 3 [default = 0];
  1442. case 3:
  1443. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 29)) {
  1444. _Internal::set_has_y(&has_bits);
  1445. y_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  1446. ptr += sizeof(float);
  1447. } else goto handle_unusual;
  1448. continue;
  1449. // optional float cx = 4 [default = 0];
  1450. case 4:
  1451. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 37)) {
  1452. _Internal::set_has_cx(&has_bits);
  1453. cx_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  1454. ptr += sizeof(float);
  1455. } else goto handle_unusual;
  1456. continue;
  1457. // optional float cy = 5 [default = 0];
  1458. case 5:
  1459. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 45)) {
  1460. _Internal::set_has_cy(&has_bits);
  1461. cy_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  1462. ptr += sizeof(float);
  1463. } else goto handle_unusual;
  1464. continue;
  1465. // optional float cz = 6 [default = 0];
  1466. case 6:
  1467. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 53)) {
  1468. _Internal::set_has_cz(&has_bits);
  1469. cz_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  1470. ptr += sizeof(float);
  1471. } else goto handle_unusual;
  1472. continue;
  1473. default: {
  1474. handle_unusual:
  1475. if ((tag & 7) == 4 || tag == 0) {
  1476. ctx->SetLastTag(tag);
  1477. goto success;
  1478. }
  1479. ptr = UnknownFieldParse(tag,
  1480. _internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
  1481. ptr, ctx);
  1482. CHK_(ptr != nullptr);
  1483. continue;
  1484. }
  1485. } // switch
  1486. } // while
  1487. success:
  1488. _has_bits_.Or(has_bits);
  1489. return ptr;
  1490. failure:
  1491. ptr = nullptr;
  1492. goto success;
  1493. #undef CHK_
  1494. }
  1495. ::PROTOBUF_NAMESPACE_ID::uint8* CalibParameter::_InternalSerialize(
  1496. ::PROTOBUF_NAMESPACE_ID::uint8* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  1497. // @@protoc_insertion_point(serialize_to_array_start:velodyne.CalibParameter)
  1498. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1499. (void) cached_has_bits;
  1500. cached_has_bits = _has_bits_[0];
  1501. // optional float r = 1 [default = 0];
  1502. if (cached_has_bits & 0x00000001u) {
  1503. target = stream->EnsureSpace(target);
  1504. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(1, this->_internal_r(), target);
  1505. }
  1506. // optional float p = 2 [default = 0];
  1507. if (cached_has_bits & 0x00000002u) {
  1508. target = stream->EnsureSpace(target);
  1509. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(2, this->_internal_p(), target);
  1510. }
  1511. // optional float y = 3 [default = 0];
  1512. if (cached_has_bits & 0x00000004u) {
  1513. target = stream->EnsureSpace(target);
  1514. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(3, this->_internal_y(), target);
  1515. }
  1516. // optional float cx = 4 [default = 0];
  1517. if (cached_has_bits & 0x00000008u) {
  1518. target = stream->EnsureSpace(target);
  1519. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(4, this->_internal_cx(), target);
  1520. }
  1521. // optional float cy = 5 [default = 0];
  1522. if (cached_has_bits & 0x00000010u) {
  1523. target = stream->EnsureSpace(target);
  1524. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(5, this->_internal_cy(), target);
  1525. }
  1526. // optional float cz = 6 [default = 0];
  1527. if (cached_has_bits & 0x00000020u) {
  1528. target = stream->EnsureSpace(target);
  1529. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(6, this->_internal_cz(), target);
  1530. }
  1531. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  1532. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::InternalSerializeUnknownFieldsToArray(
  1533. _internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
  1534. }
  1535. // @@protoc_insertion_point(serialize_to_array_end:velodyne.CalibParameter)
  1536. return target;
  1537. }
  1538. size_t CalibParameter::ByteSizeLong() const {
  1539. // @@protoc_insertion_point(message_byte_size_start:velodyne.CalibParameter)
  1540. size_t total_size = 0;
  1541. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1542. // Prevent compiler warnings about cached_has_bits being unused
  1543. (void) cached_has_bits;
  1544. cached_has_bits = _has_bits_[0];
  1545. if (cached_has_bits & 0x0000003fu) {
  1546. // optional float r = 1 [default = 0];
  1547. if (cached_has_bits & 0x00000001u) {
  1548. total_size += 1 + 4;
  1549. }
  1550. // optional float p = 2 [default = 0];
  1551. if (cached_has_bits & 0x00000002u) {
  1552. total_size += 1 + 4;
  1553. }
  1554. // optional float y = 3 [default = 0];
  1555. if (cached_has_bits & 0x00000004u) {
  1556. total_size += 1 + 4;
  1557. }
  1558. // optional float cx = 4 [default = 0];
  1559. if (cached_has_bits & 0x00000008u) {
  1560. total_size += 1 + 4;
  1561. }
  1562. // optional float cy = 5 [default = 0];
  1563. if (cached_has_bits & 0x00000010u) {
  1564. total_size += 1 + 4;
  1565. }
  1566. // optional float cz = 6 [default = 0];
  1567. if (cached_has_bits & 0x00000020u) {
  1568. total_size += 1 + 4;
  1569. }
  1570. }
  1571. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  1572. return ::PROTOBUF_NAMESPACE_ID::internal::ComputeUnknownFieldsSize(
  1573. _internal_metadata_, total_size, &_cached_size_);
  1574. }
  1575. int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size);
  1576. SetCachedSize(cached_size);
  1577. return total_size;
  1578. }
  1579. void CalibParameter::MergeFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  1580. // @@protoc_insertion_point(generalized_merge_from_start:velodyne.CalibParameter)
  1581. GOOGLE_DCHECK_NE(&from, this);
  1582. const CalibParameter* source =
  1583. ::PROTOBUF_NAMESPACE_ID::DynamicCastToGenerated<CalibParameter>(
  1584. &from);
  1585. if (source == nullptr) {
  1586. // @@protoc_insertion_point(generalized_merge_from_cast_fail:velodyne.CalibParameter)
  1587. ::PROTOBUF_NAMESPACE_ID::internal::ReflectionOps::Merge(from, this);
  1588. } else {
  1589. // @@protoc_insertion_point(generalized_merge_from_cast_success:velodyne.CalibParameter)
  1590. MergeFrom(*source);
  1591. }
  1592. }
  1593. void CalibParameter::MergeFrom(const CalibParameter& from) {
  1594. // @@protoc_insertion_point(class_specific_merge_from_start:velodyne.CalibParameter)
  1595. GOOGLE_DCHECK_NE(&from, this);
  1596. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  1597. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1598. (void) cached_has_bits;
  1599. cached_has_bits = from._has_bits_[0];
  1600. if (cached_has_bits & 0x0000003fu) {
  1601. if (cached_has_bits & 0x00000001u) {
  1602. r_ = from.r_;
  1603. }
  1604. if (cached_has_bits & 0x00000002u) {
  1605. p_ = from.p_;
  1606. }
  1607. if (cached_has_bits & 0x00000004u) {
  1608. y_ = from.y_;
  1609. }
  1610. if (cached_has_bits & 0x00000008u) {
  1611. cx_ = from.cx_;
  1612. }
  1613. if (cached_has_bits & 0x00000010u) {
  1614. cy_ = from.cy_;
  1615. }
  1616. if (cached_has_bits & 0x00000020u) {
  1617. cz_ = from.cz_;
  1618. }
  1619. _has_bits_[0] |= cached_has_bits;
  1620. }
  1621. }
  1622. void CalibParameter::CopyFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  1623. // @@protoc_insertion_point(generalized_copy_from_start:velodyne.CalibParameter)
  1624. if (&from == this) return;
  1625. Clear();
  1626. MergeFrom(from);
  1627. }
  1628. void CalibParameter::CopyFrom(const CalibParameter& from) {
  1629. // @@protoc_insertion_point(class_specific_copy_from_start:velodyne.CalibParameter)
  1630. if (&from == this) return;
  1631. Clear();
  1632. MergeFrom(from);
  1633. }
  1634. bool CalibParameter::IsInitialized() const {
  1635. return true;
  1636. }
  1637. void CalibParameter::InternalSwap(CalibParameter* other) {
  1638. using std::swap;
  1639. _internal_metadata_.Swap<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(&other->_internal_metadata_);
  1640. swap(_has_bits_[0], other->_has_bits_[0]);
  1641. ::PROTOBUF_NAMESPACE_ID::internal::memswap<
  1642. PROTOBUF_FIELD_OFFSET(CalibParameter, cz_)
  1643. + sizeof(CalibParameter::cz_)
  1644. - PROTOBUF_FIELD_OFFSET(CalibParameter, r_)>(
  1645. reinterpret_cast<char*>(&r_),
  1646. reinterpret_cast<char*>(&other->r_));
  1647. }
  1648. ::PROTOBUF_NAMESPACE_ID::Metadata CalibParameter::GetMetadata() const {
  1649. return GetMetadataStatic();
  1650. }
  1651. // ===================================================================
  1652. void lidarExtrinsic::InitAsDefaultInstance() {
  1653. ::velodyne::_lidarExtrinsic_default_instance_._instance.get_mutable()->calib_ = const_cast< ::velodyne::CalibParameter*>(
  1654. ::velodyne::CalibParameter::internal_default_instance());
  1655. }
  1656. class lidarExtrinsic::_Internal {
  1657. public:
  1658. using HasBits = decltype(std::declval<lidarExtrinsic>()._has_bits_);
  1659. static void set_has_lidar_id(HasBits* has_bits) {
  1660. (*has_bits)[0] |= 2u;
  1661. }
  1662. static const ::velodyne::CalibParameter& calib(const lidarExtrinsic* msg);
  1663. static void set_has_calib(HasBits* has_bits) {
  1664. (*has_bits)[0] |= 1u;
  1665. }
  1666. static bool MissingRequiredFields(const HasBits& has_bits) {
  1667. return ((has_bits[0] & 0x00000002) ^ 0x00000002) != 0;
  1668. }
  1669. };
  1670. const ::velodyne::CalibParameter&
  1671. lidarExtrinsic::_Internal::calib(const lidarExtrinsic* msg) {
  1672. return *msg->calib_;
  1673. }
  1674. lidarExtrinsic::lidarExtrinsic(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  1675. : ::PROTOBUF_NAMESPACE_ID::Message(arena) {
  1676. SharedCtor();
  1677. RegisterArenaDtor(arena);
  1678. // @@protoc_insertion_point(arena_constructor:velodyne.lidarExtrinsic)
  1679. }
  1680. lidarExtrinsic::lidarExtrinsic(const lidarExtrinsic& from)
  1681. : ::PROTOBUF_NAMESPACE_ID::Message(),
  1682. _has_bits_(from._has_bits_) {
  1683. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  1684. if (from._internal_has_calib()) {
  1685. calib_ = new ::velodyne::CalibParameter(*from.calib_);
  1686. } else {
  1687. calib_ = nullptr;
  1688. }
  1689. lidar_id_ = from.lidar_id_;
  1690. // @@protoc_insertion_point(copy_constructor:velodyne.lidarExtrinsic)
  1691. }
  1692. void lidarExtrinsic::SharedCtor() {
  1693. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&scc_info_lidarExtrinsic_velodyne_5fconfig_2eproto.base);
  1694. ::memset(&calib_, 0, static_cast<size_t>(
  1695. reinterpret_cast<char*>(&lidar_id_) -
  1696. reinterpret_cast<char*>(&calib_)) + sizeof(lidar_id_));
  1697. }
  1698. lidarExtrinsic::~lidarExtrinsic() {
  1699. // @@protoc_insertion_point(destructor:velodyne.lidarExtrinsic)
  1700. SharedDtor();
  1701. _internal_metadata_.Delete<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  1702. }
  1703. void lidarExtrinsic::SharedDtor() {
  1704. GOOGLE_DCHECK(GetArena() == nullptr);
  1705. if (this != internal_default_instance()) delete calib_;
  1706. }
  1707. void lidarExtrinsic::ArenaDtor(void* object) {
  1708. lidarExtrinsic* _this = reinterpret_cast< lidarExtrinsic* >(object);
  1709. (void)_this;
  1710. }
  1711. void lidarExtrinsic::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) {
  1712. }
  1713. void lidarExtrinsic::SetCachedSize(int size) const {
  1714. _cached_size_.Set(size);
  1715. }
  1716. const lidarExtrinsic& lidarExtrinsic::default_instance() {
  1717. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&::scc_info_lidarExtrinsic_velodyne_5fconfig_2eproto.base);
  1718. return *internal_default_instance();
  1719. }
  1720. void lidarExtrinsic::Clear() {
  1721. // @@protoc_insertion_point(message_clear_start:velodyne.lidarExtrinsic)
  1722. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1723. // Prevent compiler warnings about cached_has_bits being unused
  1724. (void) cached_has_bits;
  1725. cached_has_bits = _has_bits_[0];
  1726. if (cached_has_bits & 0x00000001u) {
  1727. GOOGLE_DCHECK(calib_ != nullptr);
  1728. calib_->Clear();
  1729. }
  1730. lidar_id_ = 0;
  1731. _has_bits_.Clear();
  1732. _internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  1733. }
  1734. const char* lidarExtrinsic::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) {
  1735. #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  1736. _Internal::HasBits has_bits{};
  1737. ::PROTOBUF_NAMESPACE_ID::Arena* arena = GetArena(); (void)arena;
  1738. while (!ctx->Done(&ptr)) {
  1739. ::PROTOBUF_NAMESPACE_ID::uint32 tag;
  1740. ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag);
  1741. CHK_(ptr);
  1742. switch (tag >> 3) {
  1743. // required int32 lidar_id = 1;
  1744. case 1:
  1745. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 8)) {
  1746. _Internal::set_has_lidar_id(&has_bits);
  1747. lidar_id_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  1748. CHK_(ptr);
  1749. } else goto handle_unusual;
  1750. continue;
  1751. // optional .velodyne.CalibParameter calib = 2;
  1752. case 2:
  1753. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 18)) {
  1754. ptr = ctx->ParseMessage(_internal_mutable_calib(), ptr);
  1755. CHK_(ptr);
  1756. } else goto handle_unusual;
  1757. continue;
  1758. default: {
  1759. handle_unusual:
  1760. if ((tag & 7) == 4 || tag == 0) {
  1761. ctx->SetLastTag(tag);
  1762. goto success;
  1763. }
  1764. ptr = UnknownFieldParse(tag,
  1765. _internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
  1766. ptr, ctx);
  1767. CHK_(ptr != nullptr);
  1768. continue;
  1769. }
  1770. } // switch
  1771. } // while
  1772. success:
  1773. _has_bits_.Or(has_bits);
  1774. return ptr;
  1775. failure:
  1776. ptr = nullptr;
  1777. goto success;
  1778. #undef CHK_
  1779. }
  1780. ::PROTOBUF_NAMESPACE_ID::uint8* lidarExtrinsic::_InternalSerialize(
  1781. ::PROTOBUF_NAMESPACE_ID::uint8* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  1782. // @@protoc_insertion_point(serialize_to_array_start:velodyne.lidarExtrinsic)
  1783. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1784. (void) cached_has_bits;
  1785. cached_has_bits = _has_bits_[0];
  1786. // required int32 lidar_id = 1;
  1787. if (cached_has_bits & 0x00000002u) {
  1788. target = stream->EnsureSpace(target);
  1789. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(1, this->_internal_lidar_id(), target);
  1790. }
  1791. // optional .velodyne.CalibParameter calib = 2;
  1792. if (cached_has_bits & 0x00000001u) {
  1793. target = stream->EnsureSpace(target);
  1794. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
  1795. InternalWriteMessage(
  1796. 2, _Internal::calib(this), target, stream);
  1797. }
  1798. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  1799. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::InternalSerializeUnknownFieldsToArray(
  1800. _internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
  1801. }
  1802. // @@protoc_insertion_point(serialize_to_array_end:velodyne.lidarExtrinsic)
  1803. return target;
  1804. }
  1805. size_t lidarExtrinsic::ByteSizeLong() const {
  1806. // @@protoc_insertion_point(message_byte_size_start:velodyne.lidarExtrinsic)
  1807. size_t total_size = 0;
  1808. // required int32 lidar_id = 1;
  1809. if (_internal_has_lidar_id()) {
  1810. total_size += 1 +
  1811. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  1812. this->_internal_lidar_id());
  1813. }
  1814. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1815. // Prevent compiler warnings about cached_has_bits being unused
  1816. (void) cached_has_bits;
  1817. // optional .velodyne.CalibParameter calib = 2;
  1818. cached_has_bits = _has_bits_[0];
  1819. if (cached_has_bits & 0x00000001u) {
  1820. total_size += 1 +
  1821. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(
  1822. *calib_);
  1823. }
  1824. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  1825. return ::PROTOBUF_NAMESPACE_ID::internal::ComputeUnknownFieldsSize(
  1826. _internal_metadata_, total_size, &_cached_size_);
  1827. }
  1828. int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size);
  1829. SetCachedSize(cached_size);
  1830. return total_size;
  1831. }
  1832. void lidarExtrinsic::MergeFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  1833. // @@protoc_insertion_point(generalized_merge_from_start:velodyne.lidarExtrinsic)
  1834. GOOGLE_DCHECK_NE(&from, this);
  1835. const lidarExtrinsic* source =
  1836. ::PROTOBUF_NAMESPACE_ID::DynamicCastToGenerated<lidarExtrinsic>(
  1837. &from);
  1838. if (source == nullptr) {
  1839. // @@protoc_insertion_point(generalized_merge_from_cast_fail:velodyne.lidarExtrinsic)
  1840. ::PROTOBUF_NAMESPACE_ID::internal::ReflectionOps::Merge(from, this);
  1841. } else {
  1842. // @@protoc_insertion_point(generalized_merge_from_cast_success:velodyne.lidarExtrinsic)
  1843. MergeFrom(*source);
  1844. }
  1845. }
  1846. void lidarExtrinsic::MergeFrom(const lidarExtrinsic& from) {
  1847. // @@protoc_insertion_point(class_specific_merge_from_start:velodyne.lidarExtrinsic)
  1848. GOOGLE_DCHECK_NE(&from, this);
  1849. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  1850. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  1851. (void) cached_has_bits;
  1852. cached_has_bits = from._has_bits_[0];
  1853. if (cached_has_bits & 0x00000003u) {
  1854. if (cached_has_bits & 0x00000001u) {
  1855. _internal_mutable_calib()->::velodyne::CalibParameter::MergeFrom(from._internal_calib());
  1856. }
  1857. if (cached_has_bits & 0x00000002u) {
  1858. lidar_id_ = from.lidar_id_;
  1859. }
  1860. _has_bits_[0] |= cached_has_bits;
  1861. }
  1862. }
  1863. void lidarExtrinsic::CopyFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  1864. // @@protoc_insertion_point(generalized_copy_from_start:velodyne.lidarExtrinsic)
  1865. if (&from == this) return;
  1866. Clear();
  1867. MergeFrom(from);
  1868. }
  1869. void lidarExtrinsic::CopyFrom(const lidarExtrinsic& from) {
  1870. // @@protoc_insertion_point(class_specific_copy_from_start:velodyne.lidarExtrinsic)
  1871. if (&from == this) return;
  1872. Clear();
  1873. MergeFrom(from);
  1874. }
  1875. bool lidarExtrinsic::IsInitialized() const {
  1876. if (_Internal::MissingRequiredFields(_has_bits_)) return false;
  1877. return true;
  1878. }
  1879. void lidarExtrinsic::InternalSwap(lidarExtrinsic* other) {
  1880. using std::swap;
  1881. _internal_metadata_.Swap<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(&other->_internal_metadata_);
  1882. swap(_has_bits_[0], other->_has_bits_[0]);
  1883. ::PROTOBUF_NAMESPACE_ID::internal::memswap<
  1884. PROTOBUF_FIELD_OFFSET(lidarExtrinsic, lidar_id_)
  1885. + sizeof(lidarExtrinsic::lidar_id_)
  1886. - PROTOBUF_FIELD_OFFSET(lidarExtrinsic, calib_)>(
  1887. reinterpret_cast<char*>(&calib_),
  1888. reinterpret_cast<char*>(&other->calib_));
  1889. }
  1890. ::PROTOBUF_NAMESPACE_ID::Metadata lidarExtrinsic::GetMetadata() const {
  1891. return GetMetadataStatic();
  1892. }
  1893. // ===================================================================
  1894. void Region::InitAsDefaultInstance() {
  1895. }
  1896. class Region::_Internal {
  1897. public:
  1898. using HasBits = decltype(std::declval<Region>()._has_bits_);
  1899. static void set_has_minx(HasBits* has_bits) {
  1900. (*has_bits)[0] |= 1u;
  1901. }
  1902. static void set_has_maxx(HasBits* has_bits) {
  1903. (*has_bits)[0] |= 2u;
  1904. }
  1905. static void set_has_miny(HasBits* has_bits) {
  1906. (*has_bits)[0] |= 4u;
  1907. }
  1908. static void set_has_maxy(HasBits* has_bits) {
  1909. (*has_bits)[0] |= 8u;
  1910. }
  1911. static void set_has_minz(HasBits* has_bits) {
  1912. (*has_bits)[0] |= 16u;
  1913. }
  1914. static void set_has_maxz(HasBits* has_bits) {
  1915. (*has_bits)[0] |= 32u;
  1916. }
  1917. static void set_has_region_id(HasBits* has_bits) {
  1918. (*has_bits)[0] |= 64u;
  1919. }
  1920. static void set_has_turnplate_cx(HasBits* has_bits) {
  1921. (*has_bits)[0] |= 128u;
  1922. }
  1923. static void set_has_turnplate_cy(HasBits* has_bits) {
  1924. (*has_bits)[0] |= 256u;
  1925. }
  1926. static void set_has_border_minx(HasBits* has_bits) {
  1927. (*has_bits)[0] |= 512u;
  1928. }
  1929. static void set_has_border_maxx(HasBits* has_bits) {
  1930. (*has_bits)[0] |= 1024u;
  1931. }
  1932. static void set_has_plc_offsetx(HasBits* has_bits) {
  1933. (*has_bits)[0] |= 2048u;
  1934. }
  1935. static void set_has_plc_offsety(HasBits* has_bits) {
  1936. (*has_bits)[0] |= 4096u;
  1937. }
  1938. static void set_has_plc_offset_degree(HasBits* has_bits) {
  1939. (*has_bits)[0] |= 8192u;
  1940. }
  1941. static void set_has_plc_border_miny(HasBits* has_bits) {
  1942. (*has_bits)[0] |= 16384u;
  1943. }
  1944. static void set_has_plc_border_maxy(HasBits* has_bits) {
  1945. (*has_bits)[0] |= 32768u;
  1946. }
  1947. static void set_has_car_min_width(HasBits* has_bits) {
  1948. (*has_bits)[0] |= 65536u;
  1949. }
  1950. static void set_has_car_max_width(HasBits* has_bits) {
  1951. (*has_bits)[0] |= 131072u;
  1952. }
  1953. static void set_has_car_min_wheelbase(HasBits* has_bits) {
  1954. (*has_bits)[0] |= 262144u;
  1955. }
  1956. static void set_has_car_max_wheelbase(HasBits* has_bits) {
  1957. (*has_bits)[0] |= 524288u;
  1958. }
  1959. static void set_has_turnplate_angle_limit_anti_clockwise(HasBits* has_bits) {
  1960. (*has_bits)[0] |= 1048576u;
  1961. }
  1962. static void set_has_turnplate_angle_limit_clockwise(HasBits* has_bits) {
  1963. (*has_bits)[0] |= 2097152u;
  1964. }
  1965. static bool MissingRequiredFields(const HasBits& has_bits) {
  1966. return ((has_bits[0] & 0x003fffff) ^ 0x003fffff) != 0;
  1967. }
  1968. };
  1969. Region::Region(::PROTOBUF_NAMESPACE_ID::Arena* arena)
  1970. : ::PROTOBUF_NAMESPACE_ID::Message(arena),
  1971. lidar_exts_(arena) {
  1972. SharedCtor();
  1973. RegisterArenaDtor(arena);
  1974. // @@protoc_insertion_point(arena_constructor:velodyne.Region)
  1975. }
  1976. Region::Region(const Region& from)
  1977. : ::PROTOBUF_NAMESPACE_ID::Message(),
  1978. _has_bits_(from._has_bits_),
  1979. lidar_exts_(from.lidar_exts_) {
  1980. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  1981. ::memcpy(&minx_, &from.minx_,
  1982. static_cast<size_t>(reinterpret_cast<char*>(&turnplate_angle_limit_clockwise_) -
  1983. reinterpret_cast<char*>(&minx_)) + sizeof(turnplate_angle_limit_clockwise_));
  1984. // @@protoc_insertion_point(copy_constructor:velodyne.Region)
  1985. }
  1986. void Region::SharedCtor() {
  1987. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&scc_info_Region_velodyne_5fconfig_2eproto.base);
  1988. ::memset(&minx_, 0, static_cast<size_t>(
  1989. reinterpret_cast<char*>(&turnplate_angle_limit_clockwise_) -
  1990. reinterpret_cast<char*>(&minx_)) + sizeof(turnplate_angle_limit_clockwise_));
  1991. }
  1992. Region::~Region() {
  1993. // @@protoc_insertion_point(destructor:velodyne.Region)
  1994. SharedDtor();
  1995. _internal_metadata_.Delete<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  1996. }
  1997. void Region::SharedDtor() {
  1998. GOOGLE_DCHECK(GetArena() == nullptr);
  1999. }
  2000. void Region::ArenaDtor(void* object) {
  2001. Region* _this = reinterpret_cast< Region* >(object);
  2002. (void)_this;
  2003. }
  2004. void Region::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) {
  2005. }
  2006. void Region::SetCachedSize(int size) const {
  2007. _cached_size_.Set(size);
  2008. }
  2009. const Region& Region::default_instance() {
  2010. ::PROTOBUF_NAMESPACE_ID::internal::InitSCC(&::scc_info_Region_velodyne_5fconfig_2eproto.base);
  2011. return *internal_default_instance();
  2012. }
  2013. void Region::Clear() {
  2014. // @@protoc_insertion_point(message_clear_start:velodyne.Region)
  2015. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  2016. // Prevent compiler warnings about cached_has_bits being unused
  2017. (void) cached_has_bits;
  2018. lidar_exts_.Clear();
  2019. cached_has_bits = _has_bits_[0];
  2020. if (cached_has_bits & 0x000000ffu) {
  2021. ::memset(&minx_, 0, static_cast<size_t>(
  2022. reinterpret_cast<char*>(&turnplate_cx_) -
  2023. reinterpret_cast<char*>(&minx_)) + sizeof(turnplate_cx_));
  2024. }
  2025. if (cached_has_bits & 0x0000ff00u) {
  2026. ::memset(&turnplate_cy_, 0, static_cast<size_t>(
  2027. reinterpret_cast<char*>(&plc_border_maxy_) -
  2028. reinterpret_cast<char*>(&turnplate_cy_)) + sizeof(plc_border_maxy_));
  2029. }
  2030. if (cached_has_bits & 0x003f0000u) {
  2031. ::memset(&car_min_width_, 0, static_cast<size_t>(
  2032. reinterpret_cast<char*>(&turnplate_angle_limit_clockwise_) -
  2033. reinterpret_cast<char*>(&car_min_width_)) + sizeof(turnplate_angle_limit_clockwise_));
  2034. }
  2035. _has_bits_.Clear();
  2036. _internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
  2037. }
  2038. const char* Region::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) {
  2039. #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
  2040. _Internal::HasBits has_bits{};
  2041. ::PROTOBUF_NAMESPACE_ID::Arena* arena = GetArena(); (void)arena;
  2042. while (!ctx->Done(&ptr)) {
  2043. ::PROTOBUF_NAMESPACE_ID::uint32 tag;
  2044. ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag);
  2045. CHK_(ptr);
  2046. switch (tag >> 3) {
  2047. // required float minx = 1;
  2048. case 1:
  2049. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 13)) {
  2050. _Internal::set_has_minx(&has_bits);
  2051. minx_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2052. ptr += sizeof(float);
  2053. } else goto handle_unusual;
  2054. continue;
  2055. // required float maxx = 2;
  2056. case 2:
  2057. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 21)) {
  2058. _Internal::set_has_maxx(&has_bits);
  2059. maxx_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2060. ptr += sizeof(float);
  2061. } else goto handle_unusual;
  2062. continue;
  2063. // required float miny = 3;
  2064. case 3:
  2065. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 29)) {
  2066. _Internal::set_has_miny(&has_bits);
  2067. miny_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2068. ptr += sizeof(float);
  2069. } else goto handle_unusual;
  2070. continue;
  2071. // required float maxy = 4;
  2072. case 4:
  2073. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 37)) {
  2074. _Internal::set_has_maxy(&has_bits);
  2075. maxy_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2076. ptr += sizeof(float);
  2077. } else goto handle_unusual;
  2078. continue;
  2079. // required float minz = 5;
  2080. case 5:
  2081. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 45)) {
  2082. _Internal::set_has_minz(&has_bits);
  2083. minz_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2084. ptr += sizeof(float);
  2085. } else goto handle_unusual;
  2086. continue;
  2087. // required float maxz = 6;
  2088. case 6:
  2089. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 53)) {
  2090. _Internal::set_has_maxz(&has_bits);
  2091. maxz_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2092. ptr += sizeof(float);
  2093. } else goto handle_unusual;
  2094. continue;
  2095. // required int32 region_id = 7;
  2096. case 7:
  2097. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 56)) {
  2098. _Internal::set_has_region_id(&has_bits);
  2099. region_id_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
  2100. CHK_(ptr);
  2101. } else goto handle_unusual;
  2102. continue;
  2103. // repeated .velodyne.lidarExtrinsic lidar_exts = 8;
  2104. case 8:
  2105. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 66)) {
  2106. ptr -= 1;
  2107. do {
  2108. ptr += 1;
  2109. ptr = ctx->ParseMessage(_internal_add_lidar_exts(), ptr);
  2110. CHK_(ptr);
  2111. if (!ctx->DataAvailable(ptr)) break;
  2112. } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<66>(ptr));
  2113. } else goto handle_unusual;
  2114. continue;
  2115. // required float turnplate_cx = 9;
  2116. case 9:
  2117. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 77)) {
  2118. _Internal::set_has_turnplate_cx(&has_bits);
  2119. turnplate_cx_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2120. ptr += sizeof(float);
  2121. } else goto handle_unusual;
  2122. continue;
  2123. // required float turnplate_cy = 10;
  2124. case 10:
  2125. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 85)) {
  2126. _Internal::set_has_turnplate_cy(&has_bits);
  2127. turnplate_cy_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2128. ptr += sizeof(float);
  2129. } else goto handle_unusual;
  2130. continue;
  2131. // required float border_minx = 11;
  2132. case 11:
  2133. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 93)) {
  2134. _Internal::set_has_border_minx(&has_bits);
  2135. border_minx_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2136. ptr += sizeof(float);
  2137. } else goto handle_unusual;
  2138. continue;
  2139. // required float border_maxx = 12;
  2140. case 12:
  2141. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 101)) {
  2142. _Internal::set_has_border_maxx(&has_bits);
  2143. border_maxx_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2144. ptr += sizeof(float);
  2145. } else goto handle_unusual;
  2146. continue;
  2147. // required float plc_offsetx = 13;
  2148. case 13:
  2149. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 109)) {
  2150. _Internal::set_has_plc_offsetx(&has_bits);
  2151. plc_offsetx_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2152. ptr += sizeof(float);
  2153. } else goto handle_unusual;
  2154. continue;
  2155. // required float plc_offsety = 14;
  2156. case 14:
  2157. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 117)) {
  2158. _Internal::set_has_plc_offsety(&has_bits);
  2159. plc_offsety_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2160. ptr += sizeof(float);
  2161. } else goto handle_unusual;
  2162. continue;
  2163. // required float plc_offset_degree = 15;
  2164. case 15:
  2165. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 125)) {
  2166. _Internal::set_has_plc_offset_degree(&has_bits);
  2167. plc_offset_degree_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2168. ptr += sizeof(float);
  2169. } else goto handle_unusual;
  2170. continue;
  2171. // required float plc_border_miny = 16;
  2172. case 16:
  2173. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 133)) {
  2174. _Internal::set_has_plc_border_miny(&has_bits);
  2175. plc_border_miny_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2176. ptr += sizeof(float);
  2177. } else goto handle_unusual;
  2178. continue;
  2179. // required float plc_border_maxy = 17;
  2180. case 17:
  2181. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 141)) {
  2182. _Internal::set_has_plc_border_maxy(&has_bits);
  2183. plc_border_maxy_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2184. ptr += sizeof(float);
  2185. } else goto handle_unusual;
  2186. continue;
  2187. // required float car_min_width = 18;
  2188. case 18:
  2189. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 149)) {
  2190. _Internal::set_has_car_min_width(&has_bits);
  2191. car_min_width_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2192. ptr += sizeof(float);
  2193. } else goto handle_unusual;
  2194. continue;
  2195. // required float car_max_width = 19;
  2196. case 19:
  2197. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 157)) {
  2198. _Internal::set_has_car_max_width(&has_bits);
  2199. car_max_width_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2200. ptr += sizeof(float);
  2201. } else goto handle_unusual;
  2202. continue;
  2203. // required float car_min_wheelbase = 20;
  2204. case 20:
  2205. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 165)) {
  2206. _Internal::set_has_car_min_wheelbase(&has_bits);
  2207. car_min_wheelbase_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2208. ptr += sizeof(float);
  2209. } else goto handle_unusual;
  2210. continue;
  2211. // required float car_max_wheelbase = 21;
  2212. case 21:
  2213. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 173)) {
  2214. _Internal::set_has_car_max_wheelbase(&has_bits);
  2215. car_max_wheelbase_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2216. ptr += sizeof(float);
  2217. } else goto handle_unusual;
  2218. continue;
  2219. // required float turnplate_angle_limit_anti_clockwise = 22;
  2220. case 22:
  2221. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 181)) {
  2222. _Internal::set_has_turnplate_angle_limit_anti_clockwise(&has_bits);
  2223. turnplate_angle_limit_anti_clockwise_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2224. ptr += sizeof(float);
  2225. } else goto handle_unusual;
  2226. continue;
  2227. // required float turnplate_angle_limit_clockwise = 23;
  2228. case 23:
  2229. if (PROTOBUF_PREDICT_TRUE(static_cast<::PROTOBUF_NAMESPACE_ID::uint8>(tag) == 189)) {
  2230. _Internal::set_has_turnplate_angle_limit_clockwise(&has_bits);
  2231. turnplate_angle_limit_clockwise_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr);
  2232. ptr += sizeof(float);
  2233. } else goto handle_unusual;
  2234. continue;
  2235. default: {
  2236. handle_unusual:
  2237. if ((tag & 7) == 4 || tag == 0) {
  2238. ctx->SetLastTag(tag);
  2239. goto success;
  2240. }
  2241. ptr = UnknownFieldParse(tag,
  2242. _internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
  2243. ptr, ctx);
  2244. CHK_(ptr != nullptr);
  2245. continue;
  2246. }
  2247. } // switch
  2248. } // while
  2249. success:
  2250. _has_bits_.Or(has_bits);
  2251. return ptr;
  2252. failure:
  2253. ptr = nullptr;
  2254. goto success;
  2255. #undef CHK_
  2256. }
  2257. ::PROTOBUF_NAMESPACE_ID::uint8* Region::_InternalSerialize(
  2258. ::PROTOBUF_NAMESPACE_ID::uint8* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
  2259. // @@protoc_insertion_point(serialize_to_array_start:velodyne.Region)
  2260. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  2261. (void) cached_has_bits;
  2262. cached_has_bits = _has_bits_[0];
  2263. // required float minx = 1;
  2264. if (cached_has_bits & 0x00000001u) {
  2265. target = stream->EnsureSpace(target);
  2266. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(1, this->_internal_minx(), target);
  2267. }
  2268. // required float maxx = 2;
  2269. if (cached_has_bits & 0x00000002u) {
  2270. target = stream->EnsureSpace(target);
  2271. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(2, this->_internal_maxx(), target);
  2272. }
  2273. // required float miny = 3;
  2274. if (cached_has_bits & 0x00000004u) {
  2275. target = stream->EnsureSpace(target);
  2276. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(3, this->_internal_miny(), target);
  2277. }
  2278. // required float maxy = 4;
  2279. if (cached_has_bits & 0x00000008u) {
  2280. target = stream->EnsureSpace(target);
  2281. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(4, this->_internal_maxy(), target);
  2282. }
  2283. // required float minz = 5;
  2284. if (cached_has_bits & 0x00000010u) {
  2285. target = stream->EnsureSpace(target);
  2286. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(5, this->_internal_minz(), target);
  2287. }
  2288. // required float maxz = 6;
  2289. if (cached_has_bits & 0x00000020u) {
  2290. target = stream->EnsureSpace(target);
  2291. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(6, this->_internal_maxz(), target);
  2292. }
  2293. // required int32 region_id = 7;
  2294. if (cached_has_bits & 0x00000040u) {
  2295. target = stream->EnsureSpace(target);
  2296. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(7, this->_internal_region_id(), target);
  2297. }
  2298. // repeated .velodyne.lidarExtrinsic lidar_exts = 8;
  2299. for (unsigned int i = 0,
  2300. n = static_cast<unsigned int>(this->_internal_lidar_exts_size()); i < n; i++) {
  2301. target = stream->EnsureSpace(target);
  2302. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
  2303. InternalWriteMessage(8, this->_internal_lidar_exts(i), target, stream);
  2304. }
  2305. // required float turnplate_cx = 9;
  2306. if (cached_has_bits & 0x00000080u) {
  2307. target = stream->EnsureSpace(target);
  2308. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(9, this->_internal_turnplate_cx(), target);
  2309. }
  2310. // required float turnplate_cy = 10;
  2311. if (cached_has_bits & 0x00000100u) {
  2312. target = stream->EnsureSpace(target);
  2313. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(10, this->_internal_turnplate_cy(), target);
  2314. }
  2315. // required float border_minx = 11;
  2316. if (cached_has_bits & 0x00000200u) {
  2317. target = stream->EnsureSpace(target);
  2318. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(11, this->_internal_border_minx(), target);
  2319. }
  2320. // required float border_maxx = 12;
  2321. if (cached_has_bits & 0x00000400u) {
  2322. target = stream->EnsureSpace(target);
  2323. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(12, this->_internal_border_maxx(), target);
  2324. }
  2325. // required float plc_offsetx = 13;
  2326. if (cached_has_bits & 0x00000800u) {
  2327. target = stream->EnsureSpace(target);
  2328. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(13, this->_internal_plc_offsetx(), target);
  2329. }
  2330. // required float plc_offsety = 14;
  2331. if (cached_has_bits & 0x00001000u) {
  2332. target = stream->EnsureSpace(target);
  2333. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(14, this->_internal_plc_offsety(), target);
  2334. }
  2335. // required float plc_offset_degree = 15;
  2336. if (cached_has_bits & 0x00002000u) {
  2337. target = stream->EnsureSpace(target);
  2338. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(15, this->_internal_plc_offset_degree(), target);
  2339. }
  2340. // required float plc_border_miny = 16;
  2341. if (cached_has_bits & 0x00004000u) {
  2342. target = stream->EnsureSpace(target);
  2343. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(16, this->_internal_plc_border_miny(), target);
  2344. }
  2345. // required float plc_border_maxy = 17;
  2346. if (cached_has_bits & 0x00008000u) {
  2347. target = stream->EnsureSpace(target);
  2348. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(17, this->_internal_plc_border_maxy(), target);
  2349. }
  2350. // required float car_min_width = 18;
  2351. if (cached_has_bits & 0x00010000u) {
  2352. target = stream->EnsureSpace(target);
  2353. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(18, this->_internal_car_min_width(), target);
  2354. }
  2355. // required float car_max_width = 19;
  2356. if (cached_has_bits & 0x00020000u) {
  2357. target = stream->EnsureSpace(target);
  2358. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(19, this->_internal_car_max_width(), target);
  2359. }
  2360. // required float car_min_wheelbase = 20;
  2361. if (cached_has_bits & 0x00040000u) {
  2362. target = stream->EnsureSpace(target);
  2363. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(20, this->_internal_car_min_wheelbase(), target);
  2364. }
  2365. // required float car_max_wheelbase = 21;
  2366. if (cached_has_bits & 0x00080000u) {
  2367. target = stream->EnsureSpace(target);
  2368. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(21, this->_internal_car_max_wheelbase(), target);
  2369. }
  2370. // required float turnplate_angle_limit_anti_clockwise = 22;
  2371. if (cached_has_bits & 0x00100000u) {
  2372. target = stream->EnsureSpace(target);
  2373. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(22, this->_internal_turnplate_angle_limit_anti_clockwise(), target);
  2374. }
  2375. // required float turnplate_angle_limit_clockwise = 23;
  2376. if (cached_has_bits & 0x00200000u) {
  2377. target = stream->EnsureSpace(target);
  2378. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(23, this->_internal_turnplate_angle_limit_clockwise(), target);
  2379. }
  2380. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  2381. target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormat::InternalSerializeUnknownFieldsToArray(
  2382. _internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
  2383. }
  2384. // @@protoc_insertion_point(serialize_to_array_end:velodyne.Region)
  2385. return target;
  2386. }
  2387. size_t Region::RequiredFieldsByteSizeFallback() const {
  2388. // @@protoc_insertion_point(required_fields_byte_size_fallback_start:velodyne.Region)
  2389. size_t total_size = 0;
  2390. if (_internal_has_minx()) {
  2391. // required float minx = 1;
  2392. total_size += 1 + 4;
  2393. }
  2394. if (_internal_has_maxx()) {
  2395. // required float maxx = 2;
  2396. total_size += 1 + 4;
  2397. }
  2398. if (_internal_has_miny()) {
  2399. // required float miny = 3;
  2400. total_size += 1 + 4;
  2401. }
  2402. if (_internal_has_maxy()) {
  2403. // required float maxy = 4;
  2404. total_size += 1 + 4;
  2405. }
  2406. if (_internal_has_minz()) {
  2407. // required float minz = 5;
  2408. total_size += 1 + 4;
  2409. }
  2410. if (_internal_has_maxz()) {
  2411. // required float maxz = 6;
  2412. total_size += 1 + 4;
  2413. }
  2414. if (_internal_has_region_id()) {
  2415. // required int32 region_id = 7;
  2416. total_size += 1 +
  2417. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  2418. this->_internal_region_id());
  2419. }
  2420. if (_internal_has_turnplate_cx()) {
  2421. // required float turnplate_cx = 9;
  2422. total_size += 1 + 4;
  2423. }
  2424. if (_internal_has_turnplate_cy()) {
  2425. // required float turnplate_cy = 10;
  2426. total_size += 1 + 4;
  2427. }
  2428. if (_internal_has_border_minx()) {
  2429. // required float border_minx = 11;
  2430. total_size += 1 + 4;
  2431. }
  2432. if (_internal_has_border_maxx()) {
  2433. // required float border_maxx = 12;
  2434. total_size += 1 + 4;
  2435. }
  2436. if (_internal_has_plc_offsetx()) {
  2437. // required float plc_offsetx = 13;
  2438. total_size += 1 + 4;
  2439. }
  2440. if (_internal_has_plc_offsety()) {
  2441. // required float plc_offsety = 14;
  2442. total_size += 1 + 4;
  2443. }
  2444. if (_internal_has_plc_offset_degree()) {
  2445. // required float plc_offset_degree = 15;
  2446. total_size += 1 + 4;
  2447. }
  2448. if (_internal_has_plc_border_miny()) {
  2449. // required float plc_border_miny = 16;
  2450. total_size += 2 + 4;
  2451. }
  2452. if (_internal_has_plc_border_maxy()) {
  2453. // required float plc_border_maxy = 17;
  2454. total_size += 2 + 4;
  2455. }
  2456. if (_internal_has_car_min_width()) {
  2457. // required float car_min_width = 18;
  2458. total_size += 2 + 4;
  2459. }
  2460. if (_internal_has_car_max_width()) {
  2461. // required float car_max_width = 19;
  2462. total_size += 2 + 4;
  2463. }
  2464. if (_internal_has_car_min_wheelbase()) {
  2465. // required float car_min_wheelbase = 20;
  2466. total_size += 2 + 4;
  2467. }
  2468. if (_internal_has_car_max_wheelbase()) {
  2469. // required float car_max_wheelbase = 21;
  2470. total_size += 2 + 4;
  2471. }
  2472. if (_internal_has_turnplate_angle_limit_anti_clockwise()) {
  2473. // required float turnplate_angle_limit_anti_clockwise = 22;
  2474. total_size += 2 + 4;
  2475. }
  2476. if (_internal_has_turnplate_angle_limit_clockwise()) {
  2477. // required float turnplate_angle_limit_clockwise = 23;
  2478. total_size += 2 + 4;
  2479. }
  2480. return total_size;
  2481. }
  2482. size_t Region::ByteSizeLong() const {
  2483. // @@protoc_insertion_point(message_byte_size_start:velodyne.Region)
  2484. size_t total_size = 0;
  2485. if (((_has_bits_[0] & 0x003fffff) ^ 0x003fffff) == 0) { // All required fields are present.
  2486. // required float minx = 1;
  2487. total_size += 1 + 4;
  2488. // required float maxx = 2;
  2489. total_size += 1 + 4;
  2490. // required float miny = 3;
  2491. total_size += 1 + 4;
  2492. // required float maxy = 4;
  2493. total_size += 1 + 4;
  2494. // required float minz = 5;
  2495. total_size += 1 + 4;
  2496. // required float maxz = 6;
  2497. total_size += 1 + 4;
  2498. // required int32 region_id = 7;
  2499. total_size += 1 +
  2500. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size(
  2501. this->_internal_region_id());
  2502. // required float turnplate_cx = 9;
  2503. total_size += 1 + 4;
  2504. // required float turnplate_cy = 10;
  2505. total_size += 1 + 4;
  2506. // required float border_minx = 11;
  2507. total_size += 1 + 4;
  2508. // required float border_maxx = 12;
  2509. total_size += 1 + 4;
  2510. // required float plc_offsetx = 13;
  2511. total_size += 1 + 4;
  2512. // required float plc_offsety = 14;
  2513. total_size += 1 + 4;
  2514. // required float plc_offset_degree = 15;
  2515. total_size += 1 + 4;
  2516. // required float plc_border_miny = 16;
  2517. total_size += 2 + 4;
  2518. // required float plc_border_maxy = 17;
  2519. total_size += 2 + 4;
  2520. // required float car_min_width = 18;
  2521. total_size += 2 + 4;
  2522. // required float car_max_width = 19;
  2523. total_size += 2 + 4;
  2524. // required float car_min_wheelbase = 20;
  2525. total_size += 2 + 4;
  2526. // required float car_max_wheelbase = 21;
  2527. total_size += 2 + 4;
  2528. // required float turnplate_angle_limit_anti_clockwise = 22;
  2529. total_size += 2 + 4;
  2530. // required float turnplate_angle_limit_clockwise = 23;
  2531. total_size += 2 + 4;
  2532. } else {
  2533. total_size += RequiredFieldsByteSizeFallback();
  2534. }
  2535. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  2536. // Prevent compiler warnings about cached_has_bits being unused
  2537. (void) cached_has_bits;
  2538. // repeated .velodyne.lidarExtrinsic lidar_exts = 8;
  2539. total_size += 1UL * this->_internal_lidar_exts_size();
  2540. for (const auto& msg : this->lidar_exts_) {
  2541. total_size +=
  2542. ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg);
  2543. }
  2544. if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
  2545. return ::PROTOBUF_NAMESPACE_ID::internal::ComputeUnknownFieldsSize(
  2546. _internal_metadata_, total_size, &_cached_size_);
  2547. }
  2548. int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size);
  2549. SetCachedSize(cached_size);
  2550. return total_size;
  2551. }
  2552. void Region::MergeFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  2553. // @@protoc_insertion_point(generalized_merge_from_start:velodyne.Region)
  2554. GOOGLE_DCHECK_NE(&from, this);
  2555. const Region* source =
  2556. ::PROTOBUF_NAMESPACE_ID::DynamicCastToGenerated<Region>(
  2557. &from);
  2558. if (source == nullptr) {
  2559. // @@protoc_insertion_point(generalized_merge_from_cast_fail:velodyne.Region)
  2560. ::PROTOBUF_NAMESPACE_ID::internal::ReflectionOps::Merge(from, this);
  2561. } else {
  2562. // @@protoc_insertion_point(generalized_merge_from_cast_success:velodyne.Region)
  2563. MergeFrom(*source);
  2564. }
  2565. }
  2566. void Region::MergeFrom(const Region& from) {
  2567. // @@protoc_insertion_point(class_specific_merge_from_start:velodyne.Region)
  2568. GOOGLE_DCHECK_NE(&from, this);
  2569. _internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
  2570. ::PROTOBUF_NAMESPACE_ID::uint32 cached_has_bits = 0;
  2571. (void) cached_has_bits;
  2572. lidar_exts_.MergeFrom(from.lidar_exts_);
  2573. cached_has_bits = from._has_bits_[0];
  2574. if (cached_has_bits & 0x000000ffu) {
  2575. if (cached_has_bits & 0x00000001u) {
  2576. minx_ = from.minx_;
  2577. }
  2578. if (cached_has_bits & 0x00000002u) {
  2579. maxx_ = from.maxx_;
  2580. }
  2581. if (cached_has_bits & 0x00000004u) {
  2582. miny_ = from.miny_;
  2583. }
  2584. if (cached_has_bits & 0x00000008u) {
  2585. maxy_ = from.maxy_;
  2586. }
  2587. if (cached_has_bits & 0x00000010u) {
  2588. minz_ = from.minz_;
  2589. }
  2590. if (cached_has_bits & 0x00000020u) {
  2591. maxz_ = from.maxz_;
  2592. }
  2593. if (cached_has_bits & 0x00000040u) {
  2594. region_id_ = from.region_id_;
  2595. }
  2596. if (cached_has_bits & 0x00000080u) {
  2597. turnplate_cx_ = from.turnplate_cx_;
  2598. }
  2599. _has_bits_[0] |= cached_has_bits;
  2600. }
  2601. if (cached_has_bits & 0x0000ff00u) {
  2602. if (cached_has_bits & 0x00000100u) {
  2603. turnplate_cy_ = from.turnplate_cy_;
  2604. }
  2605. if (cached_has_bits & 0x00000200u) {
  2606. border_minx_ = from.border_minx_;
  2607. }
  2608. if (cached_has_bits & 0x00000400u) {
  2609. border_maxx_ = from.border_maxx_;
  2610. }
  2611. if (cached_has_bits & 0x00000800u) {
  2612. plc_offsetx_ = from.plc_offsetx_;
  2613. }
  2614. if (cached_has_bits & 0x00001000u) {
  2615. plc_offsety_ = from.plc_offsety_;
  2616. }
  2617. if (cached_has_bits & 0x00002000u) {
  2618. plc_offset_degree_ = from.plc_offset_degree_;
  2619. }
  2620. if (cached_has_bits & 0x00004000u) {
  2621. plc_border_miny_ = from.plc_border_miny_;
  2622. }
  2623. if (cached_has_bits & 0x00008000u) {
  2624. plc_border_maxy_ = from.plc_border_maxy_;
  2625. }
  2626. _has_bits_[0] |= cached_has_bits;
  2627. }
  2628. if (cached_has_bits & 0x003f0000u) {
  2629. if (cached_has_bits & 0x00010000u) {
  2630. car_min_width_ = from.car_min_width_;
  2631. }
  2632. if (cached_has_bits & 0x00020000u) {
  2633. car_max_width_ = from.car_max_width_;
  2634. }
  2635. if (cached_has_bits & 0x00040000u) {
  2636. car_min_wheelbase_ = from.car_min_wheelbase_;
  2637. }
  2638. if (cached_has_bits & 0x00080000u) {
  2639. car_max_wheelbase_ = from.car_max_wheelbase_;
  2640. }
  2641. if (cached_has_bits & 0x00100000u) {
  2642. turnplate_angle_limit_anti_clockwise_ = from.turnplate_angle_limit_anti_clockwise_;
  2643. }
  2644. if (cached_has_bits & 0x00200000u) {
  2645. turnplate_angle_limit_clockwise_ = from.turnplate_angle_limit_clockwise_;
  2646. }
  2647. _has_bits_[0] |= cached_has_bits;
  2648. }
  2649. }
  2650. void Region::CopyFrom(const ::PROTOBUF_NAMESPACE_ID::Message& from) {
  2651. // @@protoc_insertion_point(generalized_copy_from_start:velodyne.Region)
  2652. if (&from == this) return;
  2653. Clear();
  2654. MergeFrom(from);
  2655. }
  2656. void Region::CopyFrom(const Region& from) {
  2657. // @@protoc_insertion_point(class_specific_copy_from_start:velodyne.Region)
  2658. if (&from == this) return;
  2659. Clear();
  2660. MergeFrom(from);
  2661. }
  2662. bool Region::IsInitialized() const {
  2663. if (_Internal::MissingRequiredFields(_has_bits_)) return false;
  2664. if (!::PROTOBUF_NAMESPACE_ID::internal::AllAreInitialized(lidar_exts_)) return false;
  2665. return true;
  2666. }
  2667. void Region::InternalSwap(Region* other) {
  2668. using std::swap;
  2669. _internal_metadata_.Swap<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(&other->_internal_metadata_);
  2670. swap(_has_bits_[0], other->_has_bits_[0]);
  2671. lidar_exts_.InternalSwap(&other->lidar_exts_);
  2672. ::PROTOBUF_NAMESPACE_ID::internal::memswap<
  2673. PROTOBUF_FIELD_OFFSET(Region, turnplate_angle_limit_clockwise_)
  2674. + sizeof(Region::turnplate_angle_limit_clockwise_)
  2675. - PROTOBUF_FIELD_OFFSET(Region, minx_)>(
  2676. reinterpret_cast<char*>(&minx_),
  2677. reinterpret_cast<char*>(&other->minx_));
  2678. }
  2679. ::PROTOBUF_NAMESPACE_ID::Metadata Region::GetMetadata() const {
  2680. return GetMetadataStatic();
  2681. }
  2682. // @@protoc_insertion_point(namespace_scope)
  2683. } // namespace velodyne
  2684. PROTOBUF_NAMESPACE_OPEN
  2685. template<> PROTOBUF_NOINLINE ::velodyne::velodyneManagerParams* Arena::CreateMaybeMessage< ::velodyne::velodyneManagerParams >(Arena* arena) {
  2686. return Arena::CreateMessageInternal< ::velodyne::velodyneManagerParams >(arena);
  2687. }
  2688. template<> PROTOBUF_NOINLINE ::velodyne::velodyneLidarParams* Arena::CreateMaybeMessage< ::velodyne::velodyneLidarParams >(Arena* arena) {
  2689. return Arena::CreateMessageInternal< ::velodyne::velodyneLidarParams >(arena);
  2690. }
  2691. template<> PROTOBUF_NOINLINE ::velodyne::CalibParameter* Arena::CreateMaybeMessage< ::velodyne::CalibParameter >(Arena* arena) {
  2692. return Arena::CreateMessageInternal< ::velodyne::CalibParameter >(arena);
  2693. }
  2694. template<> PROTOBUF_NOINLINE ::velodyne::lidarExtrinsic* Arena::CreateMaybeMessage< ::velodyne::lidarExtrinsic >(Arena* arena) {
  2695. return Arena::CreateMessageInternal< ::velodyne::lidarExtrinsic >(arena);
  2696. }
  2697. template<> PROTOBUF_NOINLINE ::velodyne::Region* Arena::CreateMaybeMessage< ::velodyne::Region >(Arena* arena) {
  2698. return Arena::CreateMessageInternal< ::velodyne::Region >(arena);
  2699. }
  2700. PROTOBUF_NAMESPACE_CLOSE
  2701. // @@protoc_insertion_point(global_scope)
  2702. #include <google/protobuf/port_undef.inc>