| | |
| | | #include "global_param.h" |
| | | #include "board.h" |
| | | #include "lib_aoa.h" |
| | | |
| | | #include <serial_at_cmd_app.h> |
| | | extern int simple_main(void); |
| | | extern int temp_main(void); |
| | | void Calibration_Time(void); |
| | |
| | | #define RANGING_PERIOD_MS (1000) |
| | | |
| | | /* This is the delay from Frame RX POLL frame to send RESP Frame */ |
| | | #define POLL_RX_TO_RESP_TX_DLY_US 2000U //yuan670 with urt 3000success |
| | | #define POLL_RX_TO_RESP_TX_DLY_US 550U //yuan600 success 并且不卡busy |
| | | |
| | | #define RESP_TX_TO_FINAL_RX_DLY_US 500U |
| | | |
| | |
| | | /* RX window open in advance */ |
| | | #define RX_WIN_IN_ADVANCE_US (150) |
| | | |
| | | #define DELAY_BETWEEN_TWO_FRAME_UUS 300 //yuan1400 |
| | | #define DELAY_BETWEEN_TWO_FRAME_UUS 500 //yuan1400 |
| | | |
| | | /* Field index in frame */ |
| | | #define MSG_SEQ_NUM_IDX 2 |
| | |
| | | uint8_t phy_work_mode; /* PHY_TX / PHY_RX / PHT_TX|PHY_RX */ |
| | | struct UWB_CONFIG_T phy_cfg; |
| | | }; |
| | | |
| | | ///* Default communication configuration. */ |
| | | //static struct mk_uwb_configure config = {//原来的基站非110k代码 |
| | | // .phy_work_mode = (uint8_t)(PHY_TX | PHY_RX), |
| | | // .phy_cfg.ch_num = 5, /* Channel number. */ |
| | | // .phy_cfg.code_index = 9, /* TX preamble code. */ |
| | | // .phy_cfg.mean_prf = MEAN_PRF_64M, /* Data rate 6.8M */ |
| | | // .phy_cfg.data_bit_rate = DATA_BR_6M8, /* data rate 6.8M. */ |
| | | // .phy_cfg.sync_sym = PREAM_LEN_128, /* Preamble duration, length of preamble 128 */ |
| | | // .phy_cfg.sfd_sym = BPRF_NSFD2_8, /* Identifier for SFD sequence */ |
| | | // .phy_cfg.ranging_bit = 1, /* ranging bit set. */ |
| | | // .phy_cfg.trx_mode = TRX_MODE_15_4Z_BPRF, /* IEEE802.15.4z - BPRF mode */ |
| | | // .phy_cfg.sts_pkt_cfg = STS_PKT_CFG_0, /* SP0 Frame */ |
| | | // .phy_cfg.sts_segnum = STS_SEGNUM_BPRF_1, /* Number of STS segments in the frame */ |
| | | // .phy_cfg.sts_seglen = STS_SEGLEN_BPRF_64, /* Number of symbols in an STS segment */ |
| | | // .phy_cfg.rx_ant_id = UWB_RX_ANT_3, /* UWB RX antenna port */ |
| | | //}; |
| | | #ifndef STS_MODE |
| | | extern uint8_t uwb_ch; |
| | | static struct mk_uwb_configure config = { |
| | | .phy_work_mode = (uint8_t)(PHY_TX | PHY_RX), |
| | | .phy_cfg.ch_num = 5, /* Channel number. */ |
| | |
| | | .phy_cfg.sts_seglen = STS_SEGLEN_BPRF_64, /* Number of symbols in an STS segment */ |
| | | .phy_cfg.rx_ant_id = UWB_RX_ANT_3, /* UWB RX antenna port */ |
| | | }; |
| | | #else |
| | | static struct mk_uwb_configure config = { |
| | | .phy_work_mode = (uint8_t)(PHY_TX | PHY_RX), |
| | | .phy_cfg.ch_num = 5, /* Channel number. */ |
| | | .phy_cfg.code_index = 9, /* TRX preamble code */ |
| | | .phy_cfg.mean_prf = MEAN_PRF_64M, /* Mean prf 64/128/256M */ |
| | | .phy_cfg.data_bit_rate = DATA_BR_6M8, /* Data rate 6.8M */ |
| | | .phy_cfg.sync_sym = PREAM_LEN_128, /* Preamble duration, length of preamble 128 */ |
| | | .phy_cfg.sfd_sym = BPRF_NSFD2_8, /* Identifier for SFD sequence */ |
| | | .phy_cfg.ranging_bit = 1, /* ranging bit set 1 */ |
| | | .phy_cfg.trx_mode = TRX_MODE_15_4Z_BPRF, /* IEEE802.15.4z - BPRF mode */ |
| | | .phy_cfg.sts_pkt_cfg = STS_PKT_CFG_1, /* SP1 Frame */ |
| | | .phy_cfg.sts_segnum = STS_SEGNUM_BPRF_1, /* Number of STS segments in the frame */ |
| | | .phy_cfg.sts_seglen = STS_SEGLEN_BPRF_64, /* Number of symbols in an STS segment */ |
| | | .phy_cfg.rx_ant_id = UWB_RX_ANT_3, /* UWB RX antenna port */ |
| | | }; |
| | | #endif |
| | | /* Use the default key and IV specified in the IEEE 802.15.4z attachment */ |
| | | static struct UWB_STS_KEY_CONFIG_T sts_iv_key = { |
| | | .sts_vcounter = 0x1F9A3DE4, |
| | | .sts_vupper0 = 0xD37EC3CA, |
| | | .sts_vupper1 = 0xC44FA8FB, |
| | | .sts_vupper2 = 0x362EEB34, |
| | | .sts_key0 = 0x14EB220F, |
| | | .sts_key1 = 0xF86050A8, |
| | | .sts_key2 = 0xD1D336AA, |
| | | .sts_key3 = 0x14148674, |
| | | }; |
| | | |
| | | |
| | | static struct anchor_id_car{ |
| | | uint16_t anchor_new_id; |
| | | uint16_t change_num; |
| | |
| | | uint32_t range_timeout_us = 2000000;//yuan5000 |
| | | uint8_t flag_temp2,flag_temp1; |
| | | uint16_t uwb_losttimer; |
| | | uint8_t lorarec_usart_send[200]={0x55,0xaa}; |
| | | uint16_t lorarec_tagid; |
| | | extern uint8_t send_lora_data[250]; |
| | | uint8_t Lora_upanc_time; |
| | | uint8_t update_tag_time; |
| | | extern uint16_t mubiao_anchor_ID; |
| | | uint8_t Lora_qingqiu_flag; |
| | | extern uint16_t Lora_qingqiu_bao; |
| | | uint8_t shengji_flag; |
| | | extern uint8_t Dtu_shengji_jindu[20]; |
| | | static void rx_int_callback(struct MAC_HW_REPORT_T *rx_report) |
| | | { uint8_t valid_sts=0; |
| | | uint16_t checksum1 = 0,dest_id; |
| | | // Power off radio |
| | | power_off_radio(); |
| | | |
| | |
| | | poll_rx_num++; |
| | | rssi = rx_report->rssi; |
| | | receive_flag=1; |
| | | Anchor_App(); |
| | | // uart_send(UART_ID0, rx_buf,rx_length, NULL); |
| | | gpio_pin_toggle(IO_PIN_4); |
| | | if(rx_buf[MESSAGE_TYPE_IDX]==MBX_POLL&&!shengji_flag) |
| | | { |
| | | Anchor_App(); |
| | | } |
| | | else |
| | | { |
| | | memcpy(&lorarec_tagid,&rx_buf[SOURCE_ID_IDX],2); |
| | | memcpy(&dest_id,&rx_buf[DEST_ID_IDX],2); |
| | | checksum1=Checksum_u16(rx_buf,rx_length-4); |
| | | if(!memcmp(&checksum1,&rx_buf[rx_length-4],2)) //CRC16校验是否通过 |
| | | { |
| | | if(!memcmp(&dev_id,&dest_id,2)/*||dest_id==0xffff||(dest_id==0xfffe&&get_channel==5)*/) |
| | | { |
| | | shengji_flag=1; |
| | | switch(rx_buf[MSG_TYPE_IDX]) |
| | | { |
| | | case LORA_MSGTYPE_UPDATE_CONFIRM: |
| | | memset(&send_lora_data,0,sizeof(send_lora_data)); |
| | | // Lora_upanc_flag=1; //升级信号启动 |
| | | update_tag_time=20; |
| | | mubiao_anchor_ID=lorarec_tagid; |
| | | LOG_INFO(TRACE_MODULE_APP, "收到基站发送来的升级请求\r\n"); |
| | | break; |
| | | case LORA_MSGTYPE_UPDATEFILE_REQUEST: |
| | | Lora_upanc_time=0;//数清零,不清零10次后重启 |
| | | |
| | | memcpy(&Lora_qingqiu_bao,&rx_buf[MUQIAN_BAG],2); |
| | | // Lora_qingqiu_bao=rx_buffer[MUQIAN_BAG];//看基站请求的哪一包 |
| | | Lora_qingqiu_flag= 1; //准备发送标志位1 |
| | | update_tag_time=20; |
| | | // LOG_INFO(TRACE_MODULE_APP, "标签正在请求第%d包\r\n",Lora_qingqiu_bao); |
| | | Lora_upanc_ing_Poll(); |
| | | break; |
| | | |
| | | case 0x99: |
| | | // LOG_INFO(TRACE_MODULE_APP, "收到结束升级请求\r\n",Lora_qingqiu_bao); |
| | | delay_ms(200); |
| | | Dtu_shengji_jindu[4]=100; |
| | | memcpy(&Dtu_shengji_jindu[5],&mubiao_anchor_ID,2); |
| | | uart_send(UART_ID0, Dtu_shengji_jindu,9, NULL); |
| | | |
| | | delay_ms(1000); |
| | | // Lora_upanc_flag=0; |
| | | Lora_qingqiu_flag=0; |
| | | NVIC_SystemReset(); |
| | | break; |
| | | |
| | | } |
| | | } |
| | | } |
| | | else |
| | | { |
| | | // switch(rx_buf[MSG_TYPE_IDX]) |
| | | // { |
| | | // case LORA_MSGTYPE_READPARARESP: |
| | | if(rx_buf[MSG_TYPE_IDX]==LORA_MSGTYPE_READPARARESP) |
| | | { |
| | | memcpy(&lorarec_usart_send[2],rx_buf,rx_length); |
| | | uart_send(UART_ID0, lorarec_usart_send,rx_length+2, NULL); |
| | | for(uint8_t i=0; i<PWTAG_MAXGROUPNUM; i++) |
| | | { |
| | | if(pwtag.groupid[i][0]<=lorarec_tagid&&lorarec_tagid<=pwtag.groupid[i][1]) |
| | | { |
| | | pwtag.remain_time[i] = 0; |
| | | } |
| | | } |
| | | // break; |
| | | } |
| | | |
| | | // } |
| | | } |
| | | } |
| | | |
| | | #ifdef STS_MODE |
| | | valid_sts= sts_valid_check(); |
| | | if (valid_sts) |
| | |
| | | temp_count= phy_timer_count_get(); |
| | | memcpy(&rx_rpt, rx_report, sizeof(struct MAC_HW_REPORT_T)); |
| | | rx_length = 0; |
| | | |
| | | // OpenUWB();//再次开启UWB接收 |
| | | } |
| | | OpenUWB();//再次开启UWB接收 |
| | | // LOG_INFO(TRACE_MODULE_APP,"RXdone_uwb_rx打开\r\n"); |
| | | } |
| | | |
| | | /* TX done process handler. */ |
| | |
| | | temp_count= phy_timer_count_get(); |
| | | temp_internal=temp_count; |
| | | resp_tx_num++; |
| | | // if(update_tag_time>0) |
| | | // { |
| | | // OpenUWB();//再次开启UWB接收 |
| | | // LOG_INFO(TRACE_MODULE_APP,"TXdone_uwb_rx打开\r\n"); |
| | | // } |
| | | //LOG_INFO(TRACE_MODULE_APP, "poll_rx_num is %d,resp_tx_num is %d\r\n",poll_rx_num,resp_tx_num); |
| | | } |
| | | } |
| | | uint32_t start_receive_count,end_receive_count,poll_timeout,current_count,temp_resp; |
| | | uint16_t anchordata_id[TAG_NUM_IN_SYS],anchordata_dist[TAG_NUM_IN_SYS]; |
| | | int16_t anchordata_id[TAG_NUM_IN_SYS],anchordata_dist[TAG_NUM_IN_SYS]; |
| | | static uint8_t anchordata_bat[TAG_NUM_IN_SYS]; |
| | | static uint16_t anchordata_version[TAG_NUM_IN_SYS]; |
| | | uint8_t anchordata_num = 0; |
| | | static int32_t tagdist_list[TAG_NUM_IN_SYS]; |
| | | static int16_t tagdist_list[TAG_NUM_IN_SYS]; |
| | | uint16_t random_time; |
| | | //anchor |
| | | int32_t hist_dist; |
| | |
| | | { uint16_t i; |
| | | for(i=0; i<taglist_num; i++) |
| | | { |
| | | if(memcmp(&tagid,&anchordata_id[i],2)==0) |
| | | if(memcmp(&tagid,&tagid_list[i],2)==0) |
| | | break; |
| | | } |
| | | if(i==taglist_num) |
| | |
| | | return i; |
| | | } |
| | | |
| | | uint16_t ExistInTagList(uint16_t tagid) |
| | | { uint16_t i; |
| | | for(i=0; i<taglist_num; i++) |
| | | { |
| | | if(memcmp(&tagid,&tagid_list[i],2)==0) |
| | | return 1; |
| | | } |
| | | return 0; |
| | | } |
| | | uint16_t CmpCarInExistList(uint16_t tagid) |
| | | { uint16_t i; |
| | | for(i=0; i<anchordata_num; i++) |
| | |
| | | } |
| | | } |
| | | |
| | | //void TagListUpdate(void) |
| | | //{ |
| | | // uint8_t i,j=0; |
| | | // for(i=0; i<taglist_num; i++) |
| | | // { |
| | | // if(tagofflinetime[i]++<QUIT_SLOT_TIME) |
| | | // { |
| | | // anchordata_id[j]=anchordata_id[i]; |
| | | // tagofflinetime[j++]=tagofflinetime[i]; |
| | | // } |
| | | // } |
| | | // taglist_num=j; |
| | | //} |
| | | void TagListUpdate(void) |
| | | { |
| | | uint8_t i,j=0; |
| | | for(i=0; i<anchordata_num; i++) |
| | | uint16_t i,j=0,k=0; |
| | | for(i=0; i<taglist_num; i++) |
| | | { |
| | | if(tagofflinetime[i]++<QUIT_SLOT_TIME) |
| | | if(tagofflinetime[i]++<10) |
| | | { |
| | | anchordata_id[j]=anchordata_id[i]; |
| | | tagid_list[j]=tagid_list[i]; |
| | | tagdist_list[j] = tagdist_list[i]; |
| | | anchordata_bat[j]=anchordata_bat[i];//电量随之更新 |
| | | anchordata_version[j]=anchordata_version[i]; |
| | | tagofflinetime[j++]=tagofflinetime[i]; |
| | | } |
| | | } |
| | | anchordata_num=j; |
| | | } |
| | | taglist_num=j; |
| | | } |
| | | |
| | | |
| | | |
| | | uint16_t g_com_receive_id; |
| | | uint8_t cmd_flag,position;; |
| | | uint8_t Anchor_RecNearPoll(uint8_t ancrec_nearbasepos)//根据自己是否为新基站定制消息去发送,根据是否抢占判断 |
| | | { |
| | | cmd_flag=0; |
| | | uint16_t checksum1 = 0; |
| | | for(uint8_t i=0; i<PWTAG_MAXGROUPNUM; i++) |
| | | { |
| | | if(pwtag.remain_time[i]!=0) |
| | | { |
| | | lorarec_tagid=g_com_receive_id; |
| | | if(pwtag.groupid[i][0]<=lorarec_tagid&&lorarec_tagid<=pwtag.groupid[i][1]) |
| | | { |
| | | send_buffer[MSG_TYPE_IDX] = LORA_MSGTYPE_WGRESPTAG; |
| | | send_buffer[MSG_LENGTH] = 14; |
| | | memcpy(&send_buffer[SOURCE_ID_IDX],&dev_id,2); |
| | | memcpy(&send_buffer[DEST_ID_IDX],&lorarec_tagid,2); |
| | | send_buffer[RW_FLAG_IDX] = pwtag.duorxie[i]; |
| | | send_buffer[WRITE_IDX_IDX] = pwtag.index[i]; |
| | | memcpy(&send_buffer[WRITE_VALUE_IDX],pwtag.value[i],pwtag.len[i]); |
| | | |
| | | checksum1=Checksum_u16(send_buffer,pwtag.len[i]+WRITE_VALUE_IDX); |
| | | memcpy(&send_buffer[pwtag.len[i]+WRITE_VALUE_IDX],&checksum1,2); |
| | | resp_tx_en_start_u32 = poll_rx_en_start_u32+US_TO_PHY_TIMER_COUNT(POLL_RX_TO_RESP_TX_DLY_US); |
| | | flag_temp2=uwb_tx(send_buffer, pwtag.len[i]+WRITE_VALUE_IDX+2,1 ,resp_tx_en_start_u32);//立即发送测试size大小 |
| | | // temp_count1=phy_timer_count_get(); |
| | | //while(mac_is_busy()); |
| | | gpio_pin_clr(SCL_PIN); |
| | | cmd_flag=1; |
| | | if(send_buffer[RW_FLAG_IDX]==0x01) |
| | | { |
| | | delay_ms(100); |
| | | NVIC_SystemReset(); |
| | | } |
| | | break; |
| | | } |
| | | } |
| | | } |
| | | if(cmd_flag==0) |
| | | { |
| | | temp_count2=poll_rx_en_start_u32; |
| | | |
| | | memcpy(&send_buffer[GROUP_ID_IDX],&group_id,1);//组id |
| | |
| | | // resp_tx_en_start_u32 = phy_timer_count_get()+US_TO_PHY_TIMER_COUNT(20*rec_nearbase_num+POLL_RX_TO_RESP_TX_DLY_US+ancrec_nearbasepos*DELAY_BETWEEN_TWO_FRAME_UUS);//后面的需要根据已有基站数量进行更改,如果是抢占自己最后一个回复,要有底数 |
| | | // //这里应该有问题问一下钟工 |
| | | // }//此处设置绝对时间将poll u32改为phy_timer_count_get() |
| | | resp_tx_en_start_u32 = poll_rx_en_start_u32+US_TO_PHY_TIMER_COUNT(POLL_RX_TO_RESP_TX_DLY_US); |
| | | position=ancrec_nearbasepos; |
| | | resp_tx_en_start_u32 = poll_rx_en_start_u32+US_TO_PHY_TIMER_COUNT(POLL_RX_TO_RESP_TX_DLY_US)+ancrec_nearbasepos*US_TO_PHY_TIMER_COUNT(DELAY_BETWEEN_TWO_FRAME_UUS);//加入帧间隔 |
| | | resp_tx_ts_i64 = ranging_tx_time_correct(resp_tx_en_start_u32 + phy_shr_duration());//修正时间戳 |
| | | /* Write all timestamps in the final message. See NOTE 8 below. */ |
| | | resp_msg_set_ts(&send_buffer[RESP_MSG_POLL_RX_TS_IDX], poll_rx_ts_i64); |
| | |
| | | temp_resp_i64=resp_tx_ts_i64; |
| | | temp_count3= phy_timer_count_get(); |
| | | flag_temp2=uwb_tx(send_buffer, 40,1 ,resp_tx_en_start_u32);//立即发送测试size大小 |
| | | temp_count1=phy_timer_count_get(); |
| | | tagofflinetime[taglist_pos] = 0;//更新标签通信 |
| | | // temp_count1=phy_timer_count_get(); |
| | | //while(mac_is_busy()); |
| | | gpio_pin_clr(SCL_PIN); |
| | | //gpio_pin_clr(SCL_PIN); |
| | | } |
| | | |
| | | } |
| | | |
| | | uint16_t uwb_searchcount; |
| | |
| | | // update_led_power_state();//更新等状态防止震动卡死在搜索 |
| | | } |
| | | } |
| | | uint16_t g_com_receive_id; |
| | | |
| | | void CloseUWB(void) |
| | | { |
| | | uwb_rx_force_off(1); |
| | | uwb_rx_flag=0; |
| | | LOG_INFO(TRACE_MODULE_APP,"关闭uwb_rx\r\n"); |
| | | // LOG_INFO(TRACE_MODULE_APP,"关闭uwb_rx\r\n"); |
| | | } |
| | | void OpenUWB(void) |
| | | { |
| | | flag_temp1=uwb_rx(0, 0,range_timeout_us);//提交接收请求 |
| | | uwb_rx_flag=1; |
| | | LOG_INFO(TRACE_MODULE_APP,"打开uwb_rx\r\n"); |
| | | // LOG_INFO(TRACE_MODULE_APP,"打开uwb_rx\r\n"); |
| | | } |
| | | void UWBOneSecondTask(void) |
| | | { |
| | | uwb_losttimer++; |
| | | TagListUpdate(); |
| | | if(uwb_losttimer>g_com_map[UWB_RNAGE_TIME]) |
| | | uwb_losttimer=g_com_map[UWB_RNAGE_TIME]+1;//防止溢出 |
| | | } |
| | | uint8_t uwbsend[1000]; |
| | | |
| | | void UWBIdleTask(void) |
| | | { |
| | | |
| | | if(HIDO_TimerGetTick()-uwbtasktimer >=1) |
| | | { |
| | | |
| | | for(uint16_t i=0;i<taglist_num-1;i++) |
| | | { |
| | | for(uint16_t j=0;j<taglist_num-1-i;j++) |
| | | { |
| | | if(tagdist_list[j]>tagdist_list[j+1]) |
| | | { |
| | | uint16_t id,dist,version; |
| | | uint8_t bat; |
| | | id = tagid_list[j]; |
| | | dist = tagdist_list[j]; |
| | | version = anchordata_version[j]; |
| | | tagid_list[j] = tagid_list[j+1]; |
| | | tagdist_list[j] = tagdist_list[j+1]; |
| | | anchordata_version[j] = anchordata_version[j+1]; |
| | | tagid_list[j+1] = id; |
| | | tagdist_list[j+1] = dist; |
| | | anchordata_version[j+1] = version; |
| | | } |
| | | } |
| | | |
| | | } |
| | | |
| | | // if(taglist_num>6) |
| | | // { |
| | | // taglist_num=6; |
| | | // } |
| | | uwbtasktimer = HIDO_TimerGetTick(); |
| | | UWBOneSecondTask(); |
| | | uwbsend[0]=0x55; |
| | | uwbsend[1]=0xaa; |
| | | uwbsend[2]=0x40; |
| | | uwbsend[3]=taglist_num; |
| | | memcpy(&uwbsend[4],&tagid_list,taglist_num*2); |
| | | memcpy(&uwbsend[4+taglist_num*2],&tagdist_list,taglist_num*2); |
| | | memcpy(&uwbsend[4+taglist_num*4],&anchordata_version,taglist_num*2); |
| | | // uart_send(UART_ID0, uwbsend,taglist_num*6+4, NULL); |
| | | // taglist_num=0; |
| | | LOG_INFO(TRACE_MODULE_APP,"当前测距基站数量%d.\r\n",taglist_num); |
| | | for(int i=0;i<taglist_num;i++) |
| | | { |
| | | LOG_INFO(TRACE_MODULE_APP,"当前测距基站ID:%x,距离:%d.\r\n",tagid_list[i],tagdist_list[i]); |
| | | } |
| | | } |
| | | } |
| | | int uwb_app_poll(void) |
| | | { |
| | | switch(wltag_state) |
| | | { |
| | | case RANGE: |
| | | if(HIDO_TimerGetTick()-wltag_uwbtimer>2&&uwb_rx_flag==0) |
| | | { |
| | | wltag_uwbtimer = HIDO_TimerGetTick(); |
| | | OpenUWB(); |
| | | } |
| | | else if(HIDO_TimerGetTick()-wltag_uwbtimer>1&&uwb_rx_flag==1) |
| | | { |
| | | wltag_uwbtimer = HIDO_TimerGetTick(); |
| | | CloseUWB(); |
| | | } |
| | | if(uwb_losttimer>g_com_map[UWB_RNAGE_TIME]) |
| | | { |
| | | wltag_statetimer = HIDO_TimerGetTick(); |
| | | if(uwb_rx_flag==0)//若要切换到搜索模式时没有开启则开启UWB |
| | | { |
| | | OpenUWB(); |
| | | } |
| | | wltag_state = SEARCH; |
| | | } |
| | | break; |
| | | case SEARCH: |
| | | if(HIDO_TimerGetTick()-wltag_statetimer>1) |
| | | { |
| | | wltag_statetimer = HIDO_TimerGetTick(); |
| | | wltag_state = CLOSE; |
| | | CloseUWB(); |
| | | } |
| | | break; |
| | | case CLOSE: |
| | | if(HIDO_TimerGetTick()-wltag_statetimer>g_com_map[UWB_WAIT_TIME]) |
| | | { |
| | | wltag_statetimer = HIDO_TimerGetTick(); |
| | | wltag_state = SEARCH; |
| | | OpenUWB(); |
| | | } |
| | | break; |
| | | } |
| | | UWBIdleTask(); |
| | | } |
| | | int Anchor_App(void) |
| | | { |
| | | uint8_t i; |
| | | uint8_t i; |
| | | uint16_t tempid; |
| | | if(group_id==rx_buf[GROUP_ID_IDX]&&rx_buf[MESSAGE_TYPE_IDX] == MBX_POLL)//判断是否是和自己是同一组通讯的且为poll包 |
| | | { flag_recsuccess = 1; |
| | | wltag_state=RANGE;//成功后从search切换为range |
| | | memcpy(&g_com_receive_id,&rx_buf[TAG_ID_IDX],2); |
| | | temp_count2=phy_timer_count_get(); |
| | | //temp_count2=phy_timer_count_get(); |
| | | uwb_losttimer=0;//成功测距清0 lost时间 |
| | | frame_seq_nb2 = rx_buf[SEQUENCE_IDX];//获取包序 |
| | | battary = rx_buf[BATTARY_IDX]; |
| | |
| | | memcpy(rec_ancidlist,&rx_buf[FZ_NEARBASEID_INDEX],2*rec_nearbase_num); |
| | | memcpy(rec_ancdistlist,&rx_buf[FZ_NEARBASEID_INDEX+2*rec_nearbase_num],2*rec_nearbase_num); |
| | | memcpy(&rec_antdelay,&rx_buf[FZ_NEARBASEID_INDEX+rec_nearbase_num*4],2); |
| | | for(i=0; i<rec_nearbase_num; i++) |
| | | { |
| | | if(rec_ancidlist[i] == dev_id) |
| | | { temp_recdist_before_offset=rec_ancdistlist[i]; |
| | | rec_ancdistlist[i]+=(int16_t)g_com_map[DIST_OFFSET]; |
| | | PushAnchorDataArray(tag_id_recv,rec_ancdistlist[i],battary); |
| | | } |
| | | } |
| | | for(i=0; i<rec_nearbase_num; i++) |
| | | { |
| | | memcpy(&tempid,&rx_buf[FZ_NEARBASEID_INDEX+i*2],2); |
| | | if(tempid==dev_id)//也是比id如果有就更新没有就抢占 |
| | | { |
| | | seize_anchor=0; //非抢占。已存在列表中 |
| | | Anchor_RecNearPoll(i); |
| | | break; |
| | | } |
| | | } |
| | | // for(i=0; i<rec_nearbase_num; i++) |
| | | // { |
| | | // if(rec_ancidlist[i] == dev_id) |
| | | // { temp_recdist_before_offset=rec_ancdistlist[i]; |
| | | // rec_ancdistlist[i]+=(int16_t)g_com_map[DIST_OFFSET]; |
| | | // PushAnchorDataArray(tag_id_recv,rec_ancdistlist[i],battary); |
| | | // } |
| | | // } |
| | | // for(i=0; i<rec_nearbase_num; i++) |
| | | // { |
| | | // memcpy(&tempid,&rx_buf[FZ_NEARBASEID_INDEX+i*2],2); |
| | | // if(tempid==dev_id)//也是比id如果有就更新没有就抢占 |
| | | // { |
| | | // seize_anchor=0; //非抢占。已存在列表中 |
| | | // Anchor_RecNearPoll(i); |
| | | // break; |
| | | // } |
| | | // } |
| | | |
| | | if(i==rec_nearbase_num) |
| | | { |
| | | seize_anchor=1; //抢占anchor |
| | | Anchor_RecNearPoll(i); |
| | | } |
| | | // if(i==rec_nearbase_num) |
| | | // { |
| | | // seize_anchor=1; //抢占anchor |
| | | // Anchor_RecNearPoll(i); |
| | | // } |
| | | taglist_pos=CmpTagInList(tag_id_recv); |
| | | if(taglist_num>=ANC_MAX_NUM) |
| | | return 0; |
| | | for(i=0; i<rec_nearbase_num; i++) |
| | | { |
| | | memcpy(&tempid,&rx_buf[FZ_NEARBASEID_INDEX+i*2],2); |
| | | if(tempid==dev_id) |
| | | { |
| | | Anchor_RecNearPoll(i); |
| | | tagdist_list[taglist_pos]=rec_ancdistlist[i]; |
| | | anchordata_bat[taglist_pos] = battary;//保存该基站电量 |
| | | // anchordata_version[taglist_pos] = battary;//保存该基站版本号 |
| | | memcpy(& anchordata_version[taglist_pos],&rx_buf[7],2); |
| | | if(taglist_pos==taglist_num)// taglist_pos==taglist_num 说明这个基站不在当前列表中 |
| | | { //tempid==dev_id 说明基站下发测距报文有这个标签的信息 |
| | | taglist_num++; //满足上述两种情况才会添加基站ID进入列表中,否则会出现标签不在基站列表中,标签也不响应的情况 |
| | | tagid_list[taglist_pos] = tag_id_recv; |
| | | |
| | | } |
| | | break; |
| | | } |
| | | } |
| | | if((i==rec_nearbase_num&&taglist_pos==taglist_num)||(rec_nearbase_num==0&&!ExistInTagList(tag_id_recv)))//当基站不在标签列表中,标签也不在基站列表中时,随机找个时间片回复基站。 |
| | | { |
| | | Anchor_RecNearPoll(rec_nearbase_num); |
| | | } |
| | | } |
| | | } |
| | | int UwbRange(void) |
| | |
| | | current_count=phy_timer_count_get(); |
| | | while(mac_is_busy()) |
| | | { |
| | | Calibration_Time(); |
| | | // Calibration_Time(); |
| | | IdleTask(); |
| | | current_count=phy_timer_count_get(); |
| | | if(current_count>end_receive_count&¤t_count<end_receive_count+HALF_SECOND_TIME) |
| | |
| | | phy_rx_ant_mode_set(RX_ANT_PORTS_COMBINATION); |
| | | #endif |
| | | // Set calibration parameters |
| | | // config.phy_cfg.ch_num=g_com_map[NEARBASE_ID1]; |
| | | uwb_calibration_params_set(config.phy_cfg.ch_num); |
| | | #ifndef STS_MODE |
| | | // set advanced parameters |
| | |
| | | |
| | | // uwb configure |
| | | uwb_configure(config.phy_work_mode, board_param.tx_power_fcc[CALIB_CH(config.phy_cfg.ch_num)], &config.phy_cfg); |
| | | #ifdef STS_MODE |
| | | #if (defined STS_MODE) || (defined MK_MODE) |
| | | ranging_lib_init(); |
| | | #endif |
| | | ranging_frame_type_set(config.phy_cfg.sts_pkt_cfg); |