3 Commits
13 changed files with 280 additions and 400 deletions
+25
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@@ -38,3 +38,28 @@ stream_ctrl (
enum STREAMRESOLUTION res, enum STREAMRESOLUTION res,
enum STREAMCTRL ctrl ); enum STREAMCTRL ctrl );
static const uint8_t VISION_HOST = 17;
static const uint8_t VISION_INDEX = 7;
#define VISION_DETECT_ENABLE_CMD 0xA30A
#define VISION_DETECT_ENABLE_PERSON 2
#define VISION_DETECT_ENABLE_GESTURE 4
#define VISION_DETECT_ENABLE_LINE 16
#define VISION_DETECT_ENABLE_MARKER 32
#define VISION_DETECT_ENABLE_ROBOT 128
void
vision_enable (
union Request* req,
uint16_t seq,
bool ack );
#define VISION_DETECT_INFO_CMD 0xA40A
enum VISIONTYPE {
VISIONTYPE_SHOULDER,
VISIONTYPE_PERSON,
VISIONTYPE_GESTURE,
VISIONTYPE_LINE,
VISIONTYPE_MARKER,
VISIONTYPE_ROBOT
};
-18
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@@ -18,21 +18,3 @@ gimbal_ctrl_speed (
int16_t p, int16_t p,
int16_t y, int16_t y,
int16_t r ); int16_t r );
#define GIMBAL_ROTATE_CMD 0xb03f
void
gimbal_rotate (
union Request* req,
uint16_t seq,
bool ack,
int16_t p,
int16_t y );
void
gimbal_rotate_to (
union Request* req,
uint16_t seq,
bool ack,
int16_t p,
int16_t y );
#define GIMBAL_ACTION_PUSH_CMD 0xb13f
+45 -109
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@@ -185,73 +185,6 @@ struct PACKED GimbalCtrlSpeedReq
struct Footer footer; struct Footer footer;
}; };
struct PACKED GimbalActionPush {
struct Header header;
uint8_t id;
uint8_t progress;
uint8_t state;
int16_t yaw;
int16_t roll;
int16_t pitch;
};
struct PACKED GimbalRotateReq {
struct Header header;
uint8_t id;
//union {
uint8_t control_bitfield;
// struct {
// // always 0 for start
// uint8_t control : 1;
// uint8_t frequency : 2;
// };
//};
//union {
uint8_t coord_bitfield;
// struct {
// uint8_t coordinate : 3;
// // always true
// uint8_t pitch_valid : 1;
// // always false
// uint8_t roll_valid : 1;
// // always true
// uint8_t yaw_valid : 1;
// };
//};
union {
int16_t yaw;
struct {
int8_t l_yaw;
int8_t h_yaw;
};
};
int16_t roll;
union {
int16_t pitch;
struct {
int8_t l_pitch;
int8_t h_pitch;
};
};
uint16_t error;
uint16_t yaw_speed;
uint16_t roll_speed;
uint16_t pitch_speed;
struct Footer footer;
};
struct PACKED GimbalRotateResp {
struct Header header;
uint8_t retcode;
uint8_t accept;
struct Footer footer;
};
struct PACKED GimbalCtrlSpeedResp struct PACKED GimbalCtrlSpeedResp
{ {
struct Header header; struct Header header;
@@ -347,49 +280,52 @@ struct PACKED StreamCtrlResp {
struct Footer footer; struct Footer footer;
}; };
struct PACKED AddSubMsgReq { struct PACKED VisionRect {
struct Header header;
uint8_t node_id;
uint8_t msg_id;
uint8_t reserved;
uint8_t sub_mode;
uint8_t subject_count;
uint64_t subject_uuid;
uint16_t freq;
struct Footer footer;
};
struct PACKED AddSubMsgResp {
struct Header header;
uint8_t retcode;
uint8_t pub_node_id;
uint8_t ack_sub_mode;
uint8_t ack_msg_id;
uint16_t ack_err_uid_data;
struct Footer footer;
};
struct PACKED PushPeriodMsg {
struct Header header;
uint8_t sub_mode;
uint8_t msg_id;
union { union {
struct { struct {
float x; float x;
float y; float y;
float z; float w;
} position; float h;
uint32_t info;
} rect;
struct { struct {
uint16_t yaw_ground; float x;
uint16_t pitch_ground; float y;
uint16_t yaw; float theta;
uint16_t pitch; float c;
uint32_t info;
} line;
struct { struct {
uint8_t option_mode : 2; float x;
uint8_t return_center : 1; float y;
}; float w;
} gimbal; float h;
uint16_t info;
uint16_t distance;
} marker;
}; };
};
struct PACKED VisionDetectInfo {
struct Header header;
uint8_t type;
uint8_t status;
uint16_t errcode;
uint8_t count;
struct VisionRect rects[];
};
struct PACKED VisionDetectEnableReq {
struct Header header;
uint16_t type;
struct Footer footer;
};
struct PACKED VisionDetectEnableResp {
struct Header header;
uint8_t retcode;
uint16_t error;
struct Footer footer; struct Footer footer;
}; };
@@ -406,10 +342,9 @@ union Request {
struct SubNodeResetReq subnodereset; struct SubNodeResetReq subnodereset;
struct SubscribeAddNodeReq subnodeadd; struct SubscribeAddNodeReq subnodeadd;
struct GimbalCtrlSpeedReq gimbspeed; struct GimbalCtrlSpeedReq gimbspeed;
struct GimbalRotateReq gimbalrot;
struct BlasterFireReq blaster; struct BlasterFireReq blaster;
struct StreamCtrlReq stream; struct StreamCtrlReq stream;
struct AddSubMsgReq sub; struct VisionDetectEnableReq enablevision;
}; };
union Response { union Response {
struct Header header; struct Header header;
@@ -424,17 +359,18 @@ union Response {
struct SubNodeResetResp subnodereset; struct SubNodeResetResp subnodereset;
struct SubscribeAddNodeResp subnodeadd; struct SubscribeAddNodeResp subnodeadd;
struct GimbalCtrlSpeedResp gimbspeed; struct GimbalCtrlSpeedResp gimbspeed;
struct GimbalRotateResp gimbalrot;
struct BlasterFireResp blaster; struct BlasterFireResp blaster;
struct StreamCtrlResp stream; struct StreamCtrlResp stream;
struct AddSubMsgResp sub; struct VisionDetectEnableResp enablevision;
struct PushPeriodMsg push; };
struct GimbalActionPush gimbalaction; union Push {
struct VisionDetectInfo vision;
}; };
union Message { union Message {
struct Header header; struct Header header;
union Request req; union Request req;
union Response resp; union Response resp;
union Push push;
}; };
enum MESSAGEERR { enum MESSAGEERR {
+17 -3
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@@ -1,11 +1,28 @@
#pragma once #pragma once
#include "message.h"
#include <stdbool.h> #include <stdbool.h>
// Handle for the high level robot interface // Handle for the high level robot interface
struct RobotImp; struct RobotImp;
typedef struct RobotImp* Robot; typedef struct RobotImp* Robot;
#define FRAGMENT_MESSAGE 1
#define FRAGMENT_RECTANGLE 2
#define FRAGMENT_LINE 3
#define FRAGMENT_MARKER 4
struct Fragment {
int type;
union {
union Message message;
struct VisionRect rect;
};
};
int robot_poll(Robot robot, struct Fragment* fragment);
/* /*
* Return a handle to the high level robot interface, or NULL on error. * Return a handle to the high level robot interface, or NULL on error.
*/ */
@@ -42,9 +59,6 @@ int robot_stop(Robot robot);
*/ */
int robot_aim(Robot, float p, float y); int robot_aim(Robot, float p, float y);
int robot_target(Robot robot, float pitch, float yaw);
int robot_target_to(Robot robot, float pitch, float yaw);
/* /*
* Set the velocity of the robot chassis. A packet will be sent to the robot on * Set the velocity of the robot chassis. A packet will be sent to the robot on
* the next ready tick of the work function. * the next ready tick of the work function.
-31
View File
@@ -108,34 +108,3 @@ subscribe_add_node (
uint16_t seq, uint16_t seq,
bool ack ); bool ack );
#define ADD_SUB_MSG_CMD 0x0348
#define PUSH_PERIOD_MSG_CMD 0x0848
#define DDS_BATTERY 0x000200096862229f
#define DDS_GIMBAL_BASE 0x00020009f5882874
#define DDS_VELOCITY 0x0002000949a4009c
#define DDS_ESC 0x00020009c14cb7c5
#define DDS_ATTITUDE 0x000200096b986306
#define DDS_IMU 0x00020009a7985b8d
#define DDS_POSITION 0x00020009eeb7cece
#define DDS_SA_STATUS 0x000200094a2c6d55
#define DDS_CHASSIS_MODE 0x000200094fcb1146
#define DDS_SBUS 0x0002000988223568
#define DDS_SERVO 0x000200095f0059e7
#define DDS_ARM 0x0002000926abd64d
#define DDS_GRIPPER 0x00020009124d156a
#define DDS_GIMBAL_POS 0x00020009f79b3c97
#define DDS_STICK 0x0002000955e9a0fa
#define DDS_MOVE_MODE 0x00020009784c7bfd
#define DDS_TOF 0x0002000986e4c05a
#define DDS_PINBOARD 0x00020009eebb9ffc
void
add_sub_msg (
union Request* req,
uint16_t seq,
bool ack,
uint8_t msg_id,
uint8_t freq,
uint64_t subject_uuid );
+24 -30
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@@ -7,6 +7,7 @@
#include <sys/socket.h> #include <sys/socket.h>
#include <sys/select.h> #include <sys/select.h>
#include <netinet/in.h> #include <netinet/in.h>
#include <arpa/inet.h>
#include <string.h> #include <string.h>
#include <fcntl.h> #include <fcntl.h>
#include <stdio.h> #include <stdio.h>
@@ -36,14 +37,12 @@ message_length(int cmd) {
return sizeof(struct ChassisSpeedModeReq); return sizeof(struct ChassisSpeedModeReq);
case GIMBAL_CTRL_SPEED_CMD: case GIMBAL_CTRL_SPEED_CMD:
return sizeof(struct GimbalCtrlSpeedReq); return sizeof(struct GimbalCtrlSpeedReq);
case GIMBAL_ROTATE_CMD:
return sizeof(struct GimbalRotateReq);
case BLASTER_FIRE_CMD: case BLASTER_FIRE_CMD:
return sizeof(struct BlasterFireReq); return sizeof(struct BlasterFireReq);
case STREAM_CTRL_CMD: case STREAM_CTRL_CMD:
return sizeof(struct StreamCtrlReq); return sizeof(struct StreamCtrlReq);
case ADD_SUB_MSG_CMD: case VISION_DETECT_ENABLE_CMD:
return sizeof(struct AddSubMsgReq); return sizeof(struct VisionDetectEnableReq);
default: default:
return 0; return 0;
} }
@@ -61,18 +60,18 @@ message_module(int cmd) {
case SET_ROBOT_MODE_CMD: case SET_ROBOT_MODE_CMD:
case SUBNODE_RESET_CMD: case SUBNODE_RESET_CMD:
case SUBSCRIBE_ADD_NODE_CMD: case SUBSCRIBE_ADD_NODE_CMD:
case ADD_SUB_MSG_CMD:
return host2byte(SDK_HOST, SDK_INDEX); return host2byte(SDK_HOST, SDK_INDEX);
case SET_WHEEL_SPEED_CMD: case SET_WHEEL_SPEED_CMD:
case CHASSIS_SPEED_MODE_CMD: case CHASSIS_SPEED_MODE_CMD:
return host2byte(CHASSIS_HOST, CHASSIS_INDEX); return host2byte(CHASSIS_HOST, CHASSIS_INDEX);
case GIMBAL_CTRL_SPEED_CMD: case GIMBAL_CTRL_SPEED_CMD:
case GIMBAL_ROTATE_CMD:
return host2byte(GIMBAL_HOST, GIMBAL_INDEX); return host2byte(GIMBAL_HOST, GIMBAL_INDEX);
case BLASTER_FIRE_CMD: case BLASTER_FIRE_CMD:
return host2byte(BLASTER_HOST, BLASTER_INDEX); return host2byte(BLASTER_HOST, BLASTER_INDEX);
case STREAM_CTRL_CMD: case STREAM_CTRL_CMD:
return host2byte(STREAM_HOST, STREAM_INDEX); return host2byte(STREAM_HOST, STREAM_INDEX);
case VISION_DETECT_ENABLE_CMD:
return host2byte(VISION_HOST, VISION_INDEX);
default: default:
return 0; return 0;
} }
@@ -84,49 +83,44 @@ int max_fd = -1;
// TODO: Close the socket and return NULL on error // TODO: Close the socket and return NULL on error
struct Connection* struct Connection*
connection_new(uint16_t source_port, uint32_t source_ip, uint16_t dest_port, uint32_t dest_ip) connection_new(unsigned int source_port, const char* source_ip, unsigned int dest_port, const char* dest_ip)
{ {
struct Connection* conn = malloc(sizeof(struct Connection)); struct Connection* conn = malloc(sizeof(struct Connection));
memset(conn, 0, sizeof(struct Connection)); memset(conn, 0, sizeof(struct Connection));
// Request a UDP socket
conn->sockfd = socket(AF_INET, SOCK_DGRAM, 0);
// Set the source address and port if they are provided // Set the source address and port if they are provided
if(source_port && source_ip) { if(source_port && source_ip) {
conn->local_addr.sin_family = AF_INET; struct sockaddr_in loc_addr;
conn->local_addr.sin_port = htons(source_port); loc_addr.sin_family = AF_INET;
conn->local_addr.sin_addr.s_addr = source_ip; loc_addr.sin_port = htons(source_port);
loc_addr.sin_addr.s_addr = inet_addr(source_ip);
if(bind(conn->sockfd, (struct sockaddr*)&loc_addr, sizeof(loc_addr)) < 0)
{
perror("unable to bind local port");
exit(EXIT_FAILURE);
} }
}
// Make the socket non-blocking
int flags = fcntl(conn->sockfd, F_GETFL);
fcntl(conn->sockfd, F_SETFL, flags | O_NONBLOCK);
// Set the address of the drone // Set the address of the drone
memset(&conn->remote_addr, 0, sizeof(conn->remote_addr)); memset(&conn->remote_addr, 0, sizeof(conn->remote_addr));
conn->addrlen = sizeof(conn->remote_addr); conn->addrlen = sizeof(conn->remote_addr);
conn->remote_addr.sin_family = AF_INET; conn->remote_addr.sin_family = AF_INET;
conn->remote_addr.sin_port = htons(dest_port); conn->remote_addr.sin_port = htons(dest_port);
conn->remote_addr.sin_addr.s_addr = dest_ip; conn->remote_addr.sin_addr.s_addr = inet_addr(dest_ip);
return conn;
}
enum connection_error
connection_connect(struct Connection* conn) {
// Request a UDP socket
conn->sockfd = socket(AF_INET, SOCK_DGRAM, 0);
if(conn->local_addr.sin_addr.s_addr
&& bind(conn->sockfd, (struct sockaddr*)&conn->local_addr, sizeof(conn->local_addr)) < 0)
return CONNECTION_LOCAL_BIND;
// Make the socket non-blocking
int flags = fcntl(conn->sockfd, F_GETFL);
fcntl(conn->sockfd, F_SETFL, flags | O_NONBLOCK);
// File descriptors are numbers that count up sequentially, // File descriptors are numbers that count up sequentially,
// so save the last one as the greatest file descriptor. // so save the last one as the greatest file descriptor.
// This is needed for polling the sockets later. // This is needed for polling the sockets later.
max_fd = conn->sockfd; max_fd = conn->sockfd;
return CONNECTION_NO_ERROR; return conn;
} }
struct Connection* struct Connection*
+1 -12
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@@ -6,25 +6,14 @@
#include <stddef.h> #include <stddef.h>
#include <netinet/in.h> #include <netinet/in.h>
#define ROBOT_DEFAULT_WIFI_ADDR 0X102A8C0
struct Connection { struct Connection {
int sockfd; int sockfd;
socklen_t addrlen; socklen_t addrlen;
struct sockaddr_in remote_addr; struct sockaddr_in remote_addr;
struct sockaddr_in local_addr;
}; };
struct Connection* struct Connection*
connection_new(uint16_t source_port, uint32_t source_ip, uint16_t dest_port, uint32_t dest_ip); connection_new(unsigned int source_port, const char* source_ip, unsigned int dest_port, const char* dest_ip);
enum connection_error {
CONNECTION_NO_ERROR,
CONNECTION_LOCAL_BIND
};
enum connection_error
connection_connect();
struct Connection* struct Connection*
connection_poll_ready(struct Client* client); connection_poll_ready(struct Client* client);
+5
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@@ -1,9 +1,14 @@
#include "message.h" #include "message.h"
#include "camera.h" // FIXME: hack
#include "crc.h" #include "crc.h"
enum MESSAGEERR enum MESSAGEERR
message_validate(const union Message* message) { message_validate(const union Message* message) {
// FIXME: hack
if(message->header.cmd == VISION_DETECT_INFO_CMD)
return MESSAGEERR_NONE;
uint16_t length = message->header.length & 0x1FFF & ~0x400; uint16_t length = message->header.length & 0x1FFF & ~0x400;
if(message->header.crc != crc8(message, 3)) if(message->header.crc != crc8(message, 3))
+8
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@@ -17,4 +17,12 @@ stream_ctrl (
req_finalize(seq, STREAM_CTRL_CMD, ack, req); req_finalize(seq, STREAM_CTRL_CMD, ack, req);
} }
void
vision_enable (
union Request* req,
uint16_t seq,
bool ack ) {
req->enablevision.type = VISION_DETECT_ENABLE_PERSON;
req_finalize(seq, VISION_DETECT_ENABLE_CMD, ack, req);
}
-64
View File
@@ -16,67 +16,3 @@ gimbal_ctrl_speed (
req->gimbspeed.ctrl = 0xDC; req->gimbspeed.ctrl = 0xDC;
req_finalize(seq, GIMBAL_CTRL_SPEED_CMD, ack, req); req_finalize(seq, GIMBAL_CTRL_SPEED_CMD, ack, req);
} }
void
gimbal_rotate (
union Request* req,
uint16_t seq,
bool ack,
int16_t p,
int16_t y ) {
//req->gimbalrot.coordinate = 1;
//req->gimbalrot.yaw_valid = 1;
//req->gimbalrot.pitch_valid = 1;
//req->gimbalrot.roll_valid = 0;
req->gimbalrot.coord_bitfield = 0;
req->gimbalrot.coord_bitfield = 1 | 0 << 1 | 1 << 2 | 1 << 3;
//req->gimbalrot.frequency = 2;
//req->gimbalrot.control = 0;
req->gimbalrot.control_bitfield = 0;
req->gimbalrot.control_bitfield = 0 | 1 << 2;
req->gimbalrot.id = 33;
req->gimbalrot.yaw = 0;
req->gimbalrot.yaw = y;// >> 8;//(y >> 8 | y << 8);
req->gimbalrot.roll = 0;
req->gimbalrot.pitch = 0;
req->gimbalrot.pitch = p;// >> 8;//(p >> 8 | y << 8);
req->gimbalrot.error = 0;
req->gimbalrot.yaw_speed = 30;
req->gimbalrot.roll_speed = 0;
req->gimbalrot.pitch_speed = 30;
req_finalize(seq, GIMBAL_ROTATE_CMD, ack, req);
}
void
gimbal_rotate_to (
union Request* req,
uint16_t seq,
bool ack,
int16_t p,
int16_t y ) {
//req->gimbalrot.coordinate = 1;
//req->gimbalrot.yaw_valid = 1;
//req->gimbalrot.pitch_valid = 1;
//req->gimbalrot.roll_valid = 0;
req->gimbalrot.coord_bitfield = 0;
req->gimbalrot.coord_bitfield = 1 | 0 << 1 | 1 << 2 | 4 << 3;
//req->gimbalrot.frequency = 2;
//req->gimbalrot.control = 0;
req->gimbalrot.control_bitfield = 0;
req->gimbalrot.control_bitfield = 0 | 1 << 2;
req->gimbalrot.id = 33;
req->gimbalrot.yaw = 0;
req->gimbalrot.yaw = y;// >> 8;//(y >> 8 | y << 8);
req->gimbalrot.roll = 0;
req->gimbalrot.pitch = 0;
req->gimbalrot.pitch = p;// >> 8;//(p >> 8 | y << 8);
req->gimbalrot.error = 0;
req->gimbalrot.yaw_speed = 30;
req->gimbalrot.roll_speed = 0;
req->gimbalrot.pitch_speed = 30;
req_finalize(seq, GIMBAL_ROTATE_CMD, ack, req);
}
-21
View File
@@ -96,24 +96,3 @@ set_system_led (
req_finalize(seq, SET_SYSTEM_LED_CMD, ack, req); req_finalize(seq, SET_SYSTEM_LED_CMD, ack, req);
} }
void
add_sub_msg (
union Request* req,
uint16_t seq,
bool ack,
uint8_t msg_id,
uint8_t freq,
uint64_t subject_uuid ) {
req->sub.node_id = host2byte(CLIENT_HOST, CLIENT_INDEX);
req->sub.msg_id = msg_id;
req->sub.reserved = 0; // NOTE: Always 0
req->sub.sub_mode = 0; // NOTE: Always 0
req->sub.subject_count = 1; // TODO: Add support for multiple
req->sub.subject_uuid = subject_uuid; // TODO: Add support for multiple
req->sub.freq = freq;
req_finalize(seq, ADD_SUB_MSG_CMD, ack, req);
}
+95 -111
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@@ -4,13 +4,21 @@
#include <string.h> #include <string.h>
#include <stdlib.h> #include <stdlib.h>
#include <arpa/inet.h>
#include <math.h>
#include <stdio.h> #include <stdio.h>
struct FragmentLink {
struct Fragment fragment;
struct FragmentLink *next;
};
struct RobotImp { struct RobotImp {
struct {
struct FragmentLink *head;
struct FragmentLink *free;
} frag_queue;
struct Client* client; struct Client* client;
uint16_t seq; uint16_t seq;
@@ -30,18 +38,6 @@ struct RobotImp {
bool sdk_mode; bool sdk_mode;
float x, y, z;
uint16_t yaw_ground;
uint16_t pitch_ground;
uint16_t yaw;
uint16_t pitch;
enum {
TARGET_NONE,
TARGET_REL,
TARGET_ABS
} dirty_target;
enum { enum {
CONNECTING_TO_PROXY_PORT, CONNECTING_TO_PROXY_PORT,
SETTING_SDK_CONNECTION, SETTING_SDK_CONNECTION,
@@ -50,8 +46,6 @@ struct RobotImp {
RESETTING_SUBNODE, RESETTING_SUBNODE,
SUSBCRIBING_SUBNODE, SUSBCRIBING_SUBNODE,
SETTING_MOVEMENT_MODE, SETTING_MOVEMENT_MODE,
SUBSCRIBING_POSITION_STATUS,
SUBSCRIBING_GIMBAL_STATUS,
SENDING_HEARTBEAT, SENDING_HEARTBEAT,
WAITING, WAITING,
READY, READY,
@@ -93,44 +87,6 @@ robot_aim(Robot robot, float p, float y) {
return 1; return 1;
} }
int
robot_target(Robot robot, float pitch, float yaw) {
// Get the FOV angle of the point in radians
float FOV = 120 * (M_PI / 180);
yaw = yaw * (FOV / 2);
pitch = pitch * (FOV / 2);
// Convert to degrees
yaw = yaw * (180 / M_PI);
pitch = pitch * (180 / M_PI);
// Convert for Robomaster
robot->yaw = yaw * 10;
robot->pitch = -pitch * 10;
robot->dirty_target = TARGET_REL;
return 1;
};
int
robot_target_to(Robot robot, float pitch, float yaw) {
// Get the FOV angle of the point in radians
float FOV = 120 * (M_PI / 180);
yaw = yaw * (FOV / 2);
pitch = pitch * (FOV / 2);
// Convert to degrees
yaw = yaw * (180 / M_PI);
pitch = pitch * (180 / M_PI);
// Convert for Robomaster
robot->yaw = yaw * 10;
robot->pitch = -pitch * 10;
robot->dirty_target = TARGET_ABS;
return 1;
};
int int
robot_led(Robot robot, unsigned char r, unsigned char g, unsigned char b) { robot_led(Robot robot, unsigned char r, unsigned char g, unsigned char b) {
robot->colors[0] = r; robot->colors[0] = r;
@@ -152,6 +108,61 @@ robot_heartbeat(Robot robot) {
} }
inline
static
void
enqueue_fragment (
Robot robot,
const struct Fragment fragment ) {
struct FragmentLink *link;
if(robot->frag_queue.free) {
link = robot->frag_queue.free;
robot->frag_queue.free = link->next;
} else {
link = malloc(sizeof(struct FragmentLink));
link->next = NULL;
}
link->fragment = fragment;
if(robot->frag_queue.head) {
robot->frag_queue.head->next = link;
} else {
robot->frag_queue.head = link;
}
}
inline
static
void
dequeue_fragment (
Robot robot,
struct Fragment *fragment ) {
fragment->type = 0;
if(!robot->frag_queue.head)
return;
struct FragmentLink *link = robot->frag_queue.head;
*fragment = link->fragment;
robot->frag_queue.head = link->next;
link->next = NULL;
if(robot->frag_queue.free) {
robot->frag_queue.free->next = link;
} else {
robot->frag_queue.free = link;
}
}
int robot_poll(Robot robot, struct Fragment* fragment) {
dequeue_fragment(robot, fragment);
return fragment->type;
}
int int
robot_work(Robot robot) { robot_work(Robot robot) {
@@ -164,8 +175,7 @@ robot_work(Robot robot) {
case CONNECTING_TO_PROXY_PORT: case CONNECTING_TO_PROXY_PORT:
{ {
robot->client->sdk_conn = connection_new(0, 0, 30030, ROBOT_DEFAULT_WIFI_ADDR); robot->client->sdk_conn = connection_new(0, 0, 30030, "192.168.2.1");
connection_connect(robot->client->sdk_conn);
robot->state = SETTING_SDK_CONNECTION; robot->state = SETTING_SDK_CONNECTION;
break; break;
} }
@@ -180,8 +190,7 @@ robot_work(Robot robot) {
case CONNECTING_TO_DEVICE_PORT: case CONNECTING_TO_DEVICE_PORT:
{ {
if(connection_connect(robot->client->dev_conn)) robot->client->dev_conn = connection_new(10010, "192.168.2.24", 20020, "192.168.2.1");
robot->state = STOPPED;
robot->state = SETTING_SDK_MODE; robot->state = SETTING_SDK_MODE;
break; break;
} }
@@ -226,22 +235,6 @@ robot_work(Robot robot) {
break; break;
} }
case SUBSCRIBING_POSITION_STATUS:
{
add_sub_msg ( &req, robot->seq++, true, 20, 1, DDS_POSITION );
req_send(robot->client->dev_conn, &req);
robot->state = SUBSCRIBING_GIMBAL_STATUS;
break;
}
case SUBSCRIBING_GIMBAL_STATUS:
{
add_sub_msg ( &req, robot->seq++, true, 21, 1, DDS_GIMBAL_POS );
req_send(robot->client->dev_conn, &req);
robot->state = WAITING;
break;
}
case READY: case READY:
{ {
if(robot->dirty_wheels) { if(robot->dirty_wheels) {
@@ -263,20 +256,6 @@ robot_work(Robot robot) {
req_send(robot->client->dev_conn, &req); req_send(robot->client->dev_conn, &req);
robot->dirty_gimbal = false; robot->dirty_gimbal = false;
} }
if(robot->dirty_target) {
if(robot->dirty_target == TARGET_REL)
gimbal_rotate (
&req, robot->seq++, true,
robot->pitch,
robot->yaw );
else if(robot->dirty_target == TARGET_ABS)
gimbal_rotate_to (
&req, robot->seq++, true,
robot->pitch,
robot->yaw );
req_send(robot->client->dev_conn, &req);
robot->dirty_target = TARGET_NONE;
}
if(robot->dirty_colors) { if(robot->dirty_colors) {
set_system_led ( set_system_led (
&req, robot->seq++, false, &req, robot->seq++, false,
@@ -327,10 +306,37 @@ robot_work(Robot robot) {
union Message resp; union Message resp;
poll_message(robot->client, &resp); poll_message(robot->client, &resp);
if(resp.header.cmd) {
const struct Fragment fragment = {
.type = FRAGMENT_MESSAGE,
.message = resp
};
enqueue_fragment(robot, fragment);
}
switch(resp.header.cmd) { switch(resp.header.cmd) {
case 0: case 0:
break; break;
default: case VISION_DETECT_INFO_CMD:
// enqueue rectangles
for(int i = 0; i < resp.push.vision.count; i++) {
int type;
switch(resp.push.vision.type) {
case VISIONTYPE_SHOULDER:
case VISIONTYPE_PERSON:
case VISIONTYPE_GESTURE:
case VISIONTYPE_ROBOT:
type = FRAGMENT_RECTANGLE;
case VISIONTYPE_LINE:
type = FRAGMENT_LINE;
case VISIONTYPE_MARKER:
type = FRAGMENT_MARKER;
}
const struct Fragment fragment = {
.type = type,
.rect = resp.push.vision.rects[i]
};
enqueue_fragment(robot, fragment);
}
break; break;
case SET_SDK_CONNECTION_CMD: case SET_SDK_CONNECTION_CMD:
// TODO: Do more with this // TODO: Do more with this
@@ -338,7 +344,6 @@ robot_work(Robot robot) {
robot->state = STOPPED; robot->state = STOPPED;
break; break;
} }
robot->client->dev_conn = connection_new(10010, resp.resp.sdkconn.config_ip, 20020, ROBOT_DEFAULT_WIFI_ADDR);
robot->state = CONNECTING_TO_DEVICE_PORT; robot->state = CONNECTING_TO_DEVICE_PORT;
break; break;
case SET_SDK_MODE_CMD: case SET_SDK_MODE_CMD:
@@ -368,13 +373,6 @@ robot_work(Robot robot) {
robot->state = STOPPED; robot->state = STOPPED;
break; break;
} }
robot->state = SUBSCRIBING_POSITION_STATUS;
break;
case ADD_SUB_MSG_CMD:
if(resp.resp.sub.retcode) {
robot->state = STOPPED;
break;
}
robot->state = SENDING_HEARTBEAT; robot->state = SENDING_HEARTBEAT;
break; break;
case SDK_HEARTBEAT_CMD: case SDK_HEARTBEAT_CMD:
@@ -384,20 +382,6 @@ robot_work(Robot robot) {
} }
robot->state = READY; robot->state = READY;
break; break;
case PUSH_PERIOD_MSG_CMD:
switch(resp.resp.push.msg_id) {
case 20:
robot->x = resp.resp.push.position.x;
robot->y = resp.resp.push.position.y;
robot->z = resp.resp.push.position.z;
break;
case 21:
robot->yaw_ground = resp.resp.push.gimbal.yaw_ground;
robot->pitch_ground = resp.resp.push.gimbal.pitch_ground;
robot->yaw = resp.resp.push.gimbal.yaw;
robot->pitch = resp.resp.push.gimbal.pitch;
}
break;
} }
return 1; return 1;
+59
View File
@@ -1,3 +1,4 @@
#include "robomaster.h"
#include "roboeasy.h" #include "roboeasy.h"
#include "SDL2/SDL.h" #include "SDL2/SDL.h"
@@ -60,6 +61,64 @@ int main(int argc, char* argv[]) {
SDL_GetWindowSize(win, &w, &h); SDL_GetWindowSize(win, &w, &h);
while(robot_work(robot)) { while(robot_work(robot)) {
struct Fragment fragment;
while(robot_poll(robot, &fragment)) {
switch(fragment.type) {
case FRAGMENT_RECTANGLE:
case FRAGMENT_LINE:
case FRAGMENT_MARKER:
printf("Rect(%f,%f,%f,%f)\n",
fragment.rect.rect.x,
fragment.rect.rect.y,
fragment.rect.rect.w,
fragment.rect.rect.h );
break;
case FRAGMENT_MESSAGE:
switch(fragment.message.header.cmd) {
case VISION_DETECT_INFO_CMD:
if(fragment.message.push.vision.errcode) {
printf("Vision error %d\n", fragment.message.push.vision.errcode);
break;
}
printf("Received %d rectangles\n", fragment.message.push.vision.count);
printf("\tVision type %d\n", fragment.message.push.vision.type);
printf("\tVision status %d\n", fragment.message.push.vision.status);
break;
case SDK_HEARTBEAT_CMD:
if(fragment.message.resp.heartbeat.retcode) {
printf("ERROR: Heartbeat error\n");
break;
}
printf("Heartbeat\n");
break;
case STREAM_CTRL_CMD:
if(fragment.message.resp.stream.retcode) {
printf("ERROR: Stream not enabled\n");
break;
}
printf("Stream enabled\n");
break;
case VISION_DETECT_ENABLE_CMD:
if(fragment.message.resp.enablevision.retcode) {
printf("ERROR: Vision not enabled\n");
break;
}
if(fragment.message.resp.enablevision.error) {
printf("ERROR: Vision not enabled %d\n",
fragment.message.resp.enablevision.error);
break;
}
printf("Vision enabled\n");
break;
}
break;
default:
printf("Unhandled fragment type\n");
break;
}
}
SDL_Event event; SDL_Event event;
while(SDL_PollEvent(&event)) { while(SDL_PollEvent(&event)) {
switch(event.type) { switch(event.type) {