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Fork of rosserial_mbed_lib by
nav_msgs/GridCells.h
- Committer:
- garyservin
- Date:
- 2014-05-01
- Revision:
- 5:19c5437ed9fe
- Parent:
- 3:1cf99502f396
File content as of revision 5:19c5437ed9fe:
#ifndef _ROS_nav_msgs_GridCells_h #define _ROS_nav_msgs_GridCells_h #include <stdint.h> #include <string.h> #include <stdlib.h> #include "ros/msg.h" #include "std_msgs/Header.h" #include "geometry_msgs/Point.h" namespace nav_msgs { class GridCells : public ros::Msg { public: std_msgs::Header header; float cell_width; float cell_height; uint8_t cells_length; geometry_msgs::Point st_cells; geometry_msgs::Point * cells; virtual int serialize(unsigned char *outbuffer) const { int offset = 0; offset += this->header.serialize(outbuffer + offset); union { float real; uint32_t base; } u_cell_width; u_cell_width.real = this->cell_width; *(outbuffer + offset + 0) = (u_cell_width.base >> (8 * 0)) & 0xFF; *(outbuffer + offset + 1) = (u_cell_width.base >> (8 * 1)) & 0xFF; *(outbuffer + offset + 2) = (u_cell_width.base >> (8 * 2)) & 0xFF; *(outbuffer + offset + 3) = (u_cell_width.base >> (8 * 3)) & 0xFF; offset += sizeof(this->cell_width); union { float real; uint32_t base; } u_cell_height; u_cell_height.real = this->cell_height; *(outbuffer + offset + 0) = (u_cell_height.base >> (8 * 0)) & 0xFF; *(outbuffer + offset + 1) = (u_cell_height.base >> (8 * 1)) & 0xFF; *(outbuffer + offset + 2) = (u_cell_height.base >> (8 * 2)) & 0xFF; *(outbuffer + offset + 3) = (u_cell_height.base >> (8 * 3)) & 0xFF; offset += sizeof(this->cell_height); *(outbuffer + offset++) = cells_length; *(outbuffer + offset++) = 0; *(outbuffer + offset++) = 0; *(outbuffer + offset++) = 0; for( uint8_t i = 0; i < cells_length; i++){ offset += this->cells[i].serialize(outbuffer + offset); } return offset; } virtual int deserialize(unsigned char *inbuffer) { int offset = 0; offset += this->header.deserialize(inbuffer + offset); union { float real; uint32_t base; } u_cell_width; u_cell_width.base = 0; u_cell_width.base |= ((uint32_t) (*(inbuffer + offset + 0))) << (8 * 0); u_cell_width.base |= ((uint32_t) (*(inbuffer + offset + 1))) << (8 * 1); u_cell_width.base |= ((uint32_t) (*(inbuffer + offset + 2))) << (8 * 2); u_cell_width.base |= ((uint32_t) (*(inbuffer + offset + 3))) << (8 * 3); this->cell_width = u_cell_width.real; offset += sizeof(this->cell_width); union { float real; uint32_t base; } u_cell_height; u_cell_height.base = 0; u_cell_height.base |= ((uint32_t) (*(inbuffer + offset + 0))) << (8 * 0); u_cell_height.base |= ((uint32_t) (*(inbuffer + offset + 1))) << (8 * 1); u_cell_height.base |= ((uint32_t) (*(inbuffer + offset + 2))) << (8 * 2); u_cell_height.base |= ((uint32_t) (*(inbuffer + offset + 3))) << (8 * 3); this->cell_height = u_cell_height.real; offset += sizeof(this->cell_height); uint8_t cells_lengthT = *(inbuffer + offset++); if(cells_lengthT > cells_length) this->cells = (geometry_msgs::Point*)realloc(this->cells, cells_lengthT * sizeof(geometry_msgs::Point)); offset += 3; cells_length = cells_lengthT; for( uint8_t i = 0; i < cells_length; i++){ offset += this->st_cells.deserialize(inbuffer + offset); memcpy( &(this->cells[i]), &(this->st_cells), sizeof(geometry_msgs::Point)); } return offset; } virtual const char * getType(){ return "nav_msgs/GridCells"; }; virtual const char * getMD5(){ return "b9e4f5df6d28e272ebde00a3994830f5"; }; }; } #endif