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- #include "mb.h"
- #include "cfg.h"
- #include "web.h"
- #include "lock.h"
- #include "list.h"
- #include "paras.h"
- #include "power.h"
- #include "thread.h"
- #include "datadef.h"
- #define BRD_NUM 3 //BRD_MAX
- typedef struct {
- void* mb;
- lock_t lck;
- uint8_t cur_addr;
-
- uint8_t chs; //所有控制板的总通道数
- power_ch_t **pch; //动态指针
-
- uint8_t cnt; //实际扫到的板子个数,不可大于BRD_MAX
- uint8_t brd_max;
- board_data_t *pbrd[BRD_MAX+1]; //通过modbus地址索引
-
- board_key_t key[BRD_MAX+1];
- power_total_t ttl;
-
- product_data_t *prod;
- }power_handle_t;
- power_handle_t pwrHandle={0};
- static void memswap(uint8_t *buf, int len)
- {
- int i;
- uint8_t tmp;
- for(i=0; i<len; i+=2) {
- tmp = buf[i];
- buf[i] = buf[i+1];
- buf[i+1] = tmp;
- }
- }
- static int read_reg(power_handle_t *h, uint8_t addr, uint16_t reg, uint16_t *data, int cnt)
- {
- return mb_read(h->mb, addr, reg, data, cnt, 800);
- }
- static int write_reg(power_handle_t *h, uint8_t addr, uint16_t reg, uint16_t *data, int cnt)
- {
- return mb_write(h->mb, addr, reg, data, cnt);
- }
- ////////////////////////////////////////////////////////////////////
- static int get_key(power_handle_t *h, uint8_t addr, board_key_t *key)
- {
- int i,r=-1;
- uint16_t tmp[2];
-
- r = read_reg(h, addr, POWER_DC_INFO, tmp, 2);
- if(r==0) {
- key->type = (tmp[0]>>8)&0xFF;
- key->chs = tmp[0]&0xFF;
- return 0;
- }
-
- r = read_reg(h, addr, POWER_AC_GET_INFO, tmp, 2);
- if(r==0) {
- key->type = (tmp[0]>>8)&0xFF;
- key->chs = tmp[0]&0xFF;
- }
-
- return r;
- }
- ////////////////////////////////////////////////////////////////
- static int set_kb_value(power_handle_t *h, int type, int addr, kb_val_t *kv)
- {
- switch(type) {
- case AC_SINGLE_S_TYPE:
- {
- /*
- unsigned int offset = 0;
- unsigned int rval = 0 ;
- unsigned short data_temp[8] = {0};
- if(chn>=8)
- return -1;
- offset = _SWITCH_AC_SINGLE_S_KB_VAL+chn*8;
- data_temp[0] = (unsigned short)_kb_val->voltage_k;
- data_temp[1] = (unsigned short)((_kb_val->voltage_k-data_temp[0])*1000);
- data_temp[2] = (unsigned short)_kb_val->voltage_b;
- data_temp[3] = (unsigned short)((_kb_val->voltage_b-data_temp[2])*1000);
- data_temp[4] = (unsigned short)_kb_val->current_k;
- data_temp[5] = (unsigned short)((_kb_val->current_k-data_temp[4])*1000);
- data_temp[6] = (unsigned short)_kb_val->current_b;
- data_temp[7] = (unsigned short)((_kb_val->current_b-data_temp[6])*1000);
- g_modbus_write_x_reg(manger,saddr,offset,8,data_temp);
- */
- }
- break;
-
- case AC_SINGLE_B_TYPE:
- {
- /*
- unsigned int offset = 0;
- unsigned int rval = 0 ;
- unsigned short data_temp[8] = {0};
- if(pch->info.>=4)
- return -1;
- offset = _SWITCH_AC_SINGLE_B_KB_VAL+chn*8;
- data_temp[0] = (unsigned short)_kb_val->voltage_k;
- data_temp[1] = (unsigned short)((_kb_val->voltage_k-data_temp[0])*1000);
- data_temp[2] = (unsigned short)_kb_val->voltage_b;
- data_temp[3] = (unsigned short)((_kb_val->voltage_b-data_temp[2])*1000);
- data_temp[4] = (unsigned short)_kb_val->current_k;
- data_temp[5] = (unsigned short)((_kb_val->current_k-data_temp[4])*1000);
- data_temp[6] = (unsigned short)_kb_val->current_b;
- data_temp[7] = (unsigned short)((_kb_val->current_b-data_temp[6])*1000);
- g_modbus_write_x_reg(manger,saddr,offset,8,data_temp);
- */
- }
- break;
- case DCPDU_TYPE:
- {/*
- unsigned short offset = 0;
- unsigned short data_temp[8] = {0};
- offset = _SWITCH_DC_KB_VAL;
- data_temp[0] = (unsigned short)_kb_val->voltage_k;
- data_temp[1] = (unsigned short)((_kb_val->voltage_k-data_temp[0])*1000);
- data_temp[2] = (unsigned short)_kb_val->voltage_b;
- data_temp[3] = (unsigned short)((_kb_val->voltage_b-data_temp[2])*1000);
- data_temp[4] = (unsigned short)_kb_val->current_k;
- data_temp[5] = (unsigned short)((_kb_val->current_k-data_temp[4])*1000);
- data_temp[6] = (unsigned short)_kb_val->current_b;
- data_temp[7] = (unsigned short)((_kb_val->current_b-data_temp[6])*1000);
- g_modbus_write_x_reg(manger,saddr,offset,8, data_temp);
- */
- }
- break;
-
- case TREE_AC_TYPE:
- {
-
- }
- break;
-
- case AC_MULTI_S_TYPE:
- case AC_MULTI_B_TYPE:
- case DC_OUT_TYPE:
- case DC_IN_TYPE:
- default:
- return -1;
- }
- }
- static int reset_consump(power_handle_t *h, int type, int addr)
- {
- switch(type) {
- case AC_SINGLE_S_TYPE:
- case AC_SINGLE_B_TYPE:
- {
-
- }
- break;
- case DCPDU_TYPE:
- {
-
- }
- break;
-
- case TREE_AC_TYPE:
- {
-
- }
- break;
-
- case AC_MULTI_S_TYPE:
- case AC_MULTI_B_TYPE:
- case DC_OUT_TYPE:
- case DC_IN_TYPE:
- default:
- return -1;
- }
- }
- //////////////////////////////////////////////////////////////////
- static board_data_t* board_next(power_handle_t *h)
- {
- uint8_t addr=h->cur_addr;
- while(1) {
- h->cur_addr++;
- if(h->cur_addr>h->brd_max) {
- h->cur_addr = 1;
- }
- else if(h->cur_addr==addr) {
- break;
- }
- if(h->pbrd[h->cur_addr]) {
- return h->pbrd[h->cur_addr];
- }
- }
- return NULL;
- }
- static uint8_t get_ch_idx(board_data_t *pbrd, uint8_t sch)
- {
- uint8_t ch=0;
- uint8_t pwr_type=paras_get()->prod.pwr_type;
- if(pbrd->type==TREE_AC_TYPE) {
- if(pwr_type == PDU_AC_I3O3) {
- ch = pbrd->ch0 + sch/3;
- }
- else {
- ch = pbrd->ch0 + sch;
- }
- }
- else {
- ch = pbrd->ch0 + sch;
- }
-
- return ch;
- }
- static int threshold_proc(board_data_t *pbrd)
- {
- int i,j,r=-1;
-
-
-
- return 0;
- }
- static board_data_t* board_query(power_handle_t *h)
- {
- int i,j,r=-1;
- uint16_t offset,tmp[144];
- board_data_t *pbrd=NULL;
-
- lock_d_hold(h->lck);
- pbrd = board_next(h);
- if(pbrd) {
- switch(pbrd->type) {
- case AC_SINGLE_S_TYPE:
- case AC_SINGLE_B_TYPE:
- {
- uint32_t val;
- r = read_reg(h, pbrd->addr, POWER_AC_CUR_INFO_L, tmp, pbrd->chs);
- if (r<0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
-
- for (i=0; i<pbrd->chs; i++) {
- int idx = i * 12;
- // 解电压数据
- val = (tmp[1 + idx] << 16) | tmp[0 + idx];
- pbrd->pch[i].power[0].voltage = val / 1000.0;
- // 解电流数据
- val = (tmp[3 + idx] << 16) | tmp[2 + idx];
- pbrd->pch[i].power[0].current = val / 1000.0;
- // 解功率数据
- val = (tmp[5 + idx] << 16) | tmp[4 + idx];
- pbrd->pch[i].power[0].power = val / 1000.0;
- // 解频率数据
- val = (tmp[7 + idx] << 16) | tmp[6 + idx];
- pbrd->pch[i].power[0].freq = val / 1000.0;
- // 解耗电量数据
- val = (tmp[9 + idx] << 16) | tmp[8 + idx];
- pbrd->pch[i].power[0].consump = val / 1000.0;
- // 解功率因素数据
- val = (tmp[11 + idx] << 16) | tmp[10 + idx];
- pbrd->pch[i].power[0].factor = val / 1000.0;
- }
-
- r = read_reg(h, pbrd->addr, POWER_AC_STAT_INFO_L, tmp, pbrd->chs);
- if (r<0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
-
- for (i=0; i<pbrd->chs; i++) {
- pbrd->pch[i].power[0].status = tmp[i] & (0x01);
- pbrd->pch[i].alarm.v_upper = tmp[i] & ALARM_V_UPPER;
- pbrd->pch[i].alarm.v_lower = tmp[i] & ALARM_V_LOWER;
- pbrd->pch[i].alarm.c_upper = tmp[i] & ALARM_C_UPPER;
- pbrd->pch[i].alarm.p_upper = tmp[i] & ALARM_P_UPPER;
- pbrd->pch[i].alarm.w_upper = tmp[i] & ALARM_W_UPPER;
- pbrd->pch[i].alarm.ph_loss = 0;
- }
- }
- break;
- case DCPDU_TYPE:
- {
- uint32_t flag;
- offset = POWER_DC_OUT_INFO + 16;
- uint16_t *ptmp = tmp + 32;
- r = read_reg(h, pbrd->addr, offset, ptmp, 32);
- if (r<0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
-
- for (i = 0; i < pbrd->chs; i++) {
- int Index = i * 8;
- // 解电压数据
- float value = (tmp[1 + Index] << 16) + tmp[0 + Index];
- pbrd->pch[i].power[0].voltage = value / 1000.0;
- // 解电流数据
- value = (tmp[3 + Index] << 16) + tmp[2 + Index];
- pbrd->pch[i].power[0].current = value / 1000.0;
- // 解功率数据
- value = (tmp[5 + Index] << 16) + tmp[4 + Index];
- pbrd->pch[i].power[0].power = value / 1000.0;
- value = (tmp[7 + Index] << 16) + tmp[6 + Index];
- pbrd->pch[i].power[0].consump = value / 1000.0;
- pbrd->pch[i].power[0].freq = 0;
- pbrd->pch[i].power[0].factor = 1;
- }
- offset = POWER_DC_STAT_INFO;
- r = read_reg(h, pbrd->addr, offset, tmp, 2);
- if (r<0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
-
- for (i = 0; i < pbrd->chs; i++) {
- flag = (tmp[1] << 16) + tmp[0];
- pbrd->pch[i].power[0].status = (flag >> i) & 0x1;
- }
-
-
- // 获取报警状态
- offset = POWER_DC_WARNING;
- r = read_reg(h, pbrd->addr, offset, tmp, 16);
- if (r<0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
-
- for (i = 0; i < pbrd->chs; i++) {
- int Index = i * 2;
- pbrd->pch[i].alarm.v_upper = tmp[0+Index] & BIT(0);
- pbrd->pch[i].alarm.v_lower = tmp[0+Index] & BIT(1);
- pbrd->pch[i].alarm.c_upper = tmp[0+Index] & BIT(2);
- pbrd->pch[i].alarm.p_upper = tmp[0+Index] & BIT(3);
- pbrd->pch[i].alarm.w_upper = tmp[0+Index] & BIT(4);
- }
- }
- break;
-
- case TREE_AC_TYPE:
- {
- uint8_t v=0;
-
- offset = POWER_AC3_OUT_INFO;
- r = read_reg(h, pbrd->addr, offset, tmp, 80);
- if (r < 0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
-
- offset = POWER_AC3_OUT_INFO+40;
- uint16_t* ptmp=tmp+80;
- r = read_reg(h, pbrd->addr, offset, ptmp, 64);
- if (r < 0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
-
- for (i=0; i<pbrd->chs; i++) {
- int Index = i * 16;
- // 解电压数据
- float value = (tmp[1+Index] << 16) + tmp[0+Index];
- pbrd->pch[i].power[0].voltage = value / 1000.0f;
- // 解电流数据
- value = (tmp[3+Index] << 16) + tmp[2+Index];
- pbrd->pch[i].power[0].current = value / 1000.0f;
- // 解功率数据
- value = (tmp[5+Index] << 16) + tmp[4+Index];
- pbrd->pch[i].power[0].power = value / 1000.0f;
- // 无功
- value = (tmp[7+Index] << 16) + tmp[6+Index];
- // 视在功率
- value = (tmp[9+Index] << 16) + tmp[8+Index];
- // 解频率数据
- value = (tmp[11+Index] << 16) + tmp[10+Index];
- pbrd->pch[i].power[0].freq = value / 1000.0f;
- // 解耗电量数据
- value = (tmp[13+Index] << 16) + tmp[12+Index];
- pbrd->pch[i].power[0].consump = value / 1000.0f;
- // 解功率因素数据
- value = (tmp[15+Index] << 16) + tmp[14+Index];
- pbrd->pch[i].power[0].factor = value / 1023.0f;
- }
-
- //获取通道开关状态及零线状态
- offset = POWER_AC3_OUT_ENABLE;
- r = read_reg(h, pbrd->addr, offset, tmp, 20);
- if (r < 0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
- for (i=0; i<pbrd->chs; i++) {
- int Index = i * 2;
- pbrd->pch[i].power[0].status = tmp[0+Index] & 0x01;
- pbrd->pch[i].power[0].nwire = tmp[18] & 0x01;
- }
-
- //获取故障状态
- offset = POWER_AC3_OUT_ERROR;
- r = read_reg(h, pbrd->addr, offset, tmp, 18);
- if (r < 0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
- for (i=0; i<pbrd->chs; i++) {
- int Index = i * 2;
- pbrd->pch[i].alarm.v_upper = tmp[0+Index] & BIT(0);
- pbrd->pch[i].alarm.v_lower = tmp[0+Index] & BIT(1);
- pbrd->pch[i].alarm.c_upper = tmp[0+Index] & BIT(2);
- pbrd->pch[i].alarm.p_upper = tmp[0+Index] & BIT(3);
- pbrd->pch[i].alarm.w_upper = tmp[0+Index] & BIT(4);
- }
-
- offset = POWER_AC3_ALARM_MISSING_PH;
- r = read_reg(h, pbrd->addr, offset, tmp, pbrd->chs);
- if (r < 0) {
- LOGE("get_board, addr:%d offset:%d r=%d\n", pbrd->addr, offset, r);
- break;
- }
-
- v = 0;
- for(i = 0; i < 3; i++) {
- if(tmp[i * 2]>0) {
- v |= 1<<i;
- }
- }
- pbrd->ph_loss = v;
- }
- break;
-
- case AC_MULTI_S_TYPE:
- case AC_MULTI_B_TYPE:
- case DC_OUT_TYPE:
- case DC_IN_TYPE:
- default:
- break;
- }
-
- if(r==0) {
- threshold_proc(pbrd);
- }
- }
- lock_d_release(h->lck);
-
- return pbrd;
- }
- static void *power_thread(void *arg)
- {
- int r;
- board_data_t *pbrd=NULL;
- thread_handle_t *th=(thread_handle_t*)arg;
- power_handle_t *h=(power_handle_t*)th->arg;;
-
- power_scan();
- while(th->quit==0) {
- board_query(h);
- sleep(1);
- }
- pthread_exit(NULL);
- }
- int power_init(void)
- {
- power_handle_t *h=&pwrHandle;
- mb_para_t para={
- .mode = MB_MODE_MASTER,
- .type = MB_TYPE_RTU,
-
- .para = {
- .rtu = {
- .dev = POWER_PORT, //设备名
- .baudrate = 115200, //波特率
- .parity = 0, //校验位
- .pin = 1, //收发控制引脚, <0 表示不使用
- .lvl = 0, //发送控制电平
- }
- }
- };
-
- memset(h, 0, sizeof(power_handle_t));
- h->lck = lock_d_init();
- h->mb = mb_init(¶);
- if(!h->mb) {
- return -1;
- }
- h->cur_addr = 0;
- h->brd_max = BRD_NUM;
- h->prod = ¶s_get()->prod;
- thread_start(THREAD_ID_POWER, power_thread, h);
-
- return 0;
- }
- int power_deinit(void)
- {
- power_handle_t *h=&pwrHandle;
-
- lock_d_deinit(h->lck);
- mb_deinit(h->mb);
-
- return 0;
- }
- int power_get_ch(int ch, power_ch_t *pch)
- {
- power_handle_t *h=&pwrHandle;
-
- lock_d_hold(h->lck);
- if(!pch || !h->pch || !h->chs || !h->pch[ch]) {
- lock_d_release(h->lck);
- return -1;
- }
- *pch = *h->pch[ch];
- lock_d_release(h->lck);
-
- return 0;
- }
- int power_get_board(board_data_t *pb)
- {
- power_handle_t *h=&pwrHandle;
-
- lock_d_hold(h->lck);
- if(!pb || !h->pch || !h->cnt || !h->pbrd[pb->addr]) {
- lock_d_release(h->lck);
- return -1;
- }
- *pb = *h->pbrd[pb->addr];
- lock_d_release(h->lck);
-
- return 0;
- }
- int power_set(int ch, power_ch_t *pch)
- {
- power_handle_t *h=&pwrHandle;
-
- lock_d_hold(h->lck);
- if(!pch || !h->pch || !h->chs || !h->pch[pch->info.ch]) {
- lock_d_release(h->lck);
- return -1;
- }
- *h->pch[pch->info.ch] = *pch;
- lock_d_release(h->lck);
-
- return 0;
- }
- static int pch_map(power_handle_t *h, int chs)
- {
- int i,j,r,idx=0;
- board_data_t *pbrd=NULL;
- uint8_t pwr_type=paras_get()->prod.pwr_type;
-
- if(chs>0) {
- h->chs = 0;
- h->pch = (power_ch_t**)calloc(1, sizeof(power_ch_t*)*chs);
- if(h->pch) {
- h->chs = chs;
- for(i=1; i<=h->brd_max; i++) {
- pbrd = h->pbrd[i];
- if(pbrd) {
- for(j=0; j<pbrd->chs; j++) {
- h->pch[idx++] = &h->pbrd[i]->pch[j];
- }
- }
- }
- }
- }
-
- return 0;
- }
- int power_scan(void)
- {
- int r,i,j,chs=0;
- int ch_idx=0,brd_idx=0;
- power_handle_t *h=&pwrHandle;
- board_key_t *pkey=NULL;
- uint16_t times,nGroups=h->prod->ch_delay;
-
- power_clear();
-
- lock_d_hold(h->lck);
- h->cur_addr = 0;
- for(i=1; i<=h->brd_max; i++) {
- r = get_key(h, i, &h->key[i]);
- if(r==0) {
- LOGD("___ power_scan addr %d ok, type: %d, chs: %d\n", i, h->key[i].type, h->key[i].chs);
- }
- else {
- LOGE("___ power_scan addr %d failed\n", i);
- }
- }
-
- for(i=1; i<h->brd_max; i++) {
- pkey = &h->key[i];
- if(pkey->chs>0) {
- h->pbrd[i] = (board_data_t*)calloc(1, sizeof(board_data_t));
- if(h->pbrd[i]) {
- h->pbrd[i]->type = pkey->type;
- h->pbrd[i]->chs = pkey->chs;
- h->pbrd[i]->addr = i;
- h->pbrd[i]->ch0 = ch_idx;
- h->pbrd[i]->pch = (power_ch_t*)calloc(1, sizeof(power_ch_t)*pkey->chs);
- if(h->pbrd[i]->pch) {
- times = (ch_idx+1)%nGroups?(ch_idx+1):nGroups;
- for(j=0; j<pkey->chs; j++) {
- h->pbrd[i]->pch[j].info.addr = i;
- h->pbrd[i]->pch[j].info.sch = j; //序号从0开始
- h->pbrd[i]->pch[j].info.type = pkey->type;
- h->pbrd[i]->pch[j].info.start_delay = 1000*times;
- h->pbrd[i]->pch[j].info.stop_delay = 1000*times;
-
- if(h->prod->pwr_type==PDU_AC_I3O3) {
- h->pbrd[i]->pch[j].info.ch = ch_idx+j/3; //序号程序从0开始
- h->pbrd[i]->pch[j].info.pid = j%3;
- }
- else {
- h->pbrd[i]->pch[j].info.ch = ch_idx+j; //序号程序从0开始
- h->pbrd[i]->pch[j].info.pid = 0;
- }
- }
-
- if(h->prod->pwr_type==PDU_AC_I3O3) {
- ch_idx += pkey->chs/3;
- }
- else {
- ch_idx += pkey->chs;
- }
- }
- brd_idx++;
- }
- chs += pkey->chs;
- }
- }
- pch_map(h, chs);
- lock_d_release(h->lck);
-
- return 0;
- }
- int power_clear(void)
- {
- int i,j;
- power_handle_t *h=&pwrHandle;
-
- lock_d_hold(h->lck);
- for(i=0; i<=h->brd_max; i++) {
- if(h->pbrd[i]) {
- for(j=0; j<h->pbrd[i]->chs; j++) {
- if(h->pbrd[i]->pch) {
- free(h->pbrd[i]->pch);
- h->pbrd[i]->pch = NULL;
- }
- h->pbrd[i]->chs = 0;
- }
- free(h->pbrd[i]);
- h->pbrd[i] = NULL;
- }
- }
- memset(h->key, 0, sizeof(h->key));
- h->cnt = 0;
- lock_d_release(h->lck);
-
- return 0;
- }
- int power_reset_consump(uint8_t addr)
- {
- int i,r=-1;
- uint16_t offset = 0;
- power_handle_t *h=&pwrHandle;
- board_data_t *pb=NULL;
-
- if(addr>h->brd_max) {
- return -1;
- }
- pb = h->pbrd[addr];
- if(!pb) {
- return -1;
- }
-
- switch(pb->type) {
- case AC_SINGLE_S_TYPE:
- case AC_SINGLE_B_TYPE:
- {
- uint16_t tmp[8];
- offset = POWER_AC_CH_STAT_L;
- for(i=0; i<pb->chs; i++) {
- tmp[i] = pb->pch[i].power[0].status;
- }
- r = write_reg(h, pb->addr, offset, tmp, pb->chs);
- }
- break;
-
- case DCPDU_TYPE:
- {
- offset = POWER_DC_ALARM_CTRL_TOTAL;
- }
- break;
-
- case TREE_AC_TYPE:
- {
- uint16_t data_temp[20];
-
- offset = POWER_AC3_RESET_CONSUMP;
- data_temp[0] = data_temp[1] = data_temp[2] = 1;
- r = write_reg(h, pb->addr, offset, data_temp, 3);
- if (r<0) {
- return r;
- }
-
- //初始化报警阈值
- uint32_t value = 0;
- memset(data_temp, 0, sizeof(data_temp));
- offset = POWER_AC3_THRESHOLD_VOL_MAX;
- r = write_reg(h, pb->addr, offset, data_temp, 18);
- if (r<0) {
- return r;
- }
- offset = POWER_AC3_THRESHOLD_VOL_MIN;
- r = write_reg(h, pb->addr, offset, data_temp, 18);
- if (r<0) {
- return r;
- }
-
- offset = POWER_AC3_THRESHOLD_CUR_MAX;
- r = write_reg(h, pb->addr, offset, data_temp, 18);
- if (r<0) {
- return r;
- }
- offset = POWER_AC3_THRESHOLD_PWR_MAX;
- r = write_reg(h, pb->addr, offset, data_temp, 18);
- if (r<0) {
- return r;
- }
- offset = POWER_AC3_THRESHOLD_PWRCON_MAX;
- r = write_reg(h, pb->addr, offset, data_temp, 18);
- if (r<0) {
- return r;
- }
-
- for (i = 0; i < pb->chs; i++) {
- memset(data_temp, 0, sizeof(data_temp));
- offset = POWER_AC3_OUT_ENABLE + i;
- data_temp[0] = pb->pch[i].power[0].status;
- r = write_reg(h, pb->addr, offset, data_temp, 2);
- if (r<0) {
- return r;
- }
- }
- }
- break;
-
- default:
- return -1;
- }
-
- return 0;
- }
- int power_set_sw(power_ch_t *pch)
- {
- int r;
- power_ch_t pc;
- power_handle_t *h=&pwrHandle;
- uint16_t offset,tmp[2]={0},st=pch->power[0].status;
-
- if (pch->thr.v_upper.en == 1)
- st |= ENABLE_AC3_V_UP;
- if (pch->thr.v_lower.en == 1)
- st |= ENABLE_AC3_V_DOWN;
- if (pch->thr.c_upper.en == 1)
- st |= ENABLE_AC3_C_UP;
- if (pch->thr.p_upper.en == 1)
- st |= ENABLE_AC3_P_UP;
- if (pch->thr.w_upper.en == 1)
- st |= ENABLE_AC3_W_UP;
-
- switch(pch->info.type) {
- case AC_SINGLE_S_TYPE:
- case AC_SINGLE_B_TYPE:
- {
- offset = POWER_AC_CH_STAT_L + pch->info.ch;
- tmp[0] = pch->power[0].status; tmp[1] = 0;
- }
- break;
-
- case DCPDU_TYPE:
- {
- uint16_t mask;
- offset = POWER_DC_STAT_INFO+pch->info.ch;
-
- mask = ~(1 << pch->info.ch);
- tmp[0] &= mask;
- tmp[0] |= (st << pch->info.ch);
- }
- break;
-
- case TREE_AC_TYPE:
- {
- uint16_t reg;
- uint8_t pwr_type=paras_get()->prod.pwr_type;
- if(pwr_type==PDU_AC_I3O3 || pwr_type==PDU_AC_I3O1) {
- reg = POWER_AC3_OUT_ENABLE;
- }
- else {
- reg = POWER_AC3_CH_OUT_ENABLE;
- }
-
- tmp[0] = st;
- offset = reg + +pch->info.ch;
- }
- break;
-
- default:
- return -1;
- }
- r = write_reg(h, pc.info.addr, offset, tmp, 2);
-
- return r;
- }
- int power_set_alarm(power_ch_t *pch)
- {
- int r=-1;
- uint16_t offset = 0;
- uint16_t nStatus = 0;
- power_handle_t *h=&pwrHandle;
-
- switch(pch->info.type) {
- case AC_SINGLE_S_TYPE:
- case AC_SINGLE_B_TYPE:
- {
- if (pch->info.ch<0) {
- offset = POWER_AC_ALARM_CTRL_TOTAL;
- }
- else {
- offset = POWER_AC_ALARM_CTRL + pch->info.ch;
- }
- }
- break;
-
- case DCPDU_TYPE:
- {
- if (pch->info.ch<0) {
- offset = POWER_DC_ALARM_CTRL_TOTAL;
- }
- else {
- offset = POWER_DC_ALARM_CTRL + pch->info.ch;
- }
- }
- break;
-
- case TREE_AC_TYPE:
- {
- if (pch->info.ch<0) {
- offset = POWER_AC3_ALARM_CTRL_TOTAL;
- }
- else {
- offset = POWER_AC3_ALARM_CTRL + pch->info.ch;
- }
- }
- break;
-
- default:
- return -1;
- }
-
- if(pch->thr.v_upper.act==1) nStatus |= BIT(1);
- if(pch->thr.v_lower.act==1) nStatus |= BIT(2);
- if(pch->thr.c_upper.act==1) nStatus |= BIT(0);
- if(pch->thr.p_upper.act==1) nStatus |= BIT(3);
- if(pch->thr.w_upper.act==1) nStatus |= BIT(4);
- r = write_reg(h, pch->info.addr, offset, &nStatus, 1);
-
- return r;
- }
- int power_set_threshold(power_ch_t *pch)
- {
- int r=-1;
- uint16_t offset;
- power_handle_t *h=&pwrHandle;
-
- switch(pch->info.type) {
- case AC_SINGLE_S_TYPE:
- case AC_SINGLE_B_TYPE:
- {
- uint16_t offset = 0;
- uint32_t data_temp = 0 ;
- uint16_t data_buf[16] = {0};
- //电压上限
- data_temp = (pch->thr.v_upper.val*1000);
- data_buf[0] = data_temp;
- data_buf[1] = data_temp>>16;
- //电压下限
- data_temp = (pch->thr.v_upper.val*1000);
- data_buf[2] = data_temp;
- data_buf[3] = data_temp>>16;
- //电流上限
- data_temp = (pch->thr.v_upper.val*1000);
- data_buf[4] = data_temp;
- data_buf[5] = data_temp>>16;
- //电流下限
- data_temp = (0);
- data_buf[6] = data_temp;
- data_buf[7] = data_temp>>16;
- //功率上限
- data_temp = (pch->thr.v_upper.val*1000);
- data_buf[8] = data_temp;
- data_buf[9] = data_temp>>16;
- //功率下限
- data_temp = 0;
- data_buf[10] = data_temp;
- data_buf[11] = data_temp>>16;
- //电能上限
- data_temp = (pch->thr.v_upper.val*1000);
- data_buf[12] = data_temp;
- data_buf[13] = data_temp>>16;
- //电能下限
- data_temp = 0;
- data_buf[14] = data_temp;
- data_buf[15] = data_temp>>16;
- if(pch->info.ch<0) {
- offset = POWER_AC_TOTAL_THRESHOLD;
- }
- else {
- offset = POWER_AC_THRESHOLD_L+pch->info.ch*16;
- }
- r = write_reg(h, pch->info.addr, offset, data_buf, 16);
- //power_set_alarm();
- }
- break;
-
- case DCPDU_TYPE:
- {
- uint16_t data_temp[4];
- uint32_t value;
-
- offset = (pch->info.ch<0)?POWER_DC_THRESHOLD_TOTAL_VOL_MAX:POWER_DC_THRESHOLD_VOL_MAX;
- value = pch->thr.v_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- offset = (pch->info.ch<0)?POWER_DC_THRESHOLD_TOTAL_VOL_MIN:POWER_DC_THRESHOLD_VOL_MIN;
- value = pch->thr.v_lower.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- offset = (pch->info.ch<0)?POWER_DC_THRESHOLD_TOTAL_CUR_MAX:POWER_DC_THRESHOLD_CUR_MAX;
- value = pch->thr.c_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- offset = (pch->info.ch<0)?POWER_DC_THRESHOLD_TOTAL_PWR_MAX:POWER_DC_THRESHOLD_POWER_MAX;
- value = pch->thr.p_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- offset = (pch->info.ch<0)?POWER_DC_THRESHOLD_TOTAL_PWRCON_MAX:POWER_DC_THRESHOLD_POWERCON_MAX;
- value = pch->thr.w_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- //power_set_alarm();
- }
- break;
-
- case TREE_AC_TYPE:
- {
- uint16_t data_temp[4];
- uint32_t value;
-
- if(pch->info.ch<0) {
- offset = POWER_AC3_THRESHOLD_IN;
- value = pch->thr.v_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- value = pch->thr.v_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset+1, data_temp, 2);
-
- value = pch->thr.c_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset+2, data_temp, 2);
-
- value = pch->thr.p_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset+3, data_temp, 2);
-
- value = pch->thr.w_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset+4, data_temp, 2);
- }
- else {
- offset = POWER_AC3_THRESHOLD_VOL_MAX;
- value = pch->thr.v_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- offset = POWER_AC3_THRESHOLD_VOL_MIN;
- value = pch->thr.v_lower.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- offset = POWER_AC3_THRESHOLD_CUR_MAX;
- value = pch->thr.c_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- offset = POWER_AC3_THRESHOLD_PWR_MAX;
- value = pch->thr.p_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
-
- offset = POWER_AC3_THRESHOLD_VOL_MAX;
- value = pch->thr.w_upper.val * 1000;
- data_temp[0] = value & 0XFFFF;
- data_temp[1] = (value >> 16) & 0xFFFF;
- r = write_reg(h, pch->info.addr, offset, data_temp, 2);
- }
- }
- break;
- }
-
- return r;
- }
- int power_set_start_delay(power_ch_t *pch)
- {
- int r=-1;
- uint16_t tmp[2],reg,offset;
- power_handle_t *h=&pwrHandle;
-
- switch(pch->info.type) {
- case AC_SINGLE_S_TYPE:
- case AC_SINGLE_B_TYPE:
- {
- tmp[0] = pch->info.start_delay;
- offset = POWER_AC_START_DELAY_TIME_L+pch->info.ch;
- r = write_reg(h, pch->info.addr, offset, tmp, 1);
- }
- break;
- case DCPDU_TYPE:
- {
- uint32_t time=pch->info.start_delay/1000;
- tmp[0] = time & 0xffff;
- tmp[1] = (time >> 16) & 0xffff;
- offset = POWER_DC_SET_START_DELAY+pch->info.ch;
- r = write_reg(h, pch->info.addr, offset, tmp, 2);
- }
- break;
-
- case TREE_AC_TYPE:
- {
- uint32_t time=pch->info.start_delay/1000;
- tmp[0] = time & 0xffff;
- tmp[1] = (time >> 16) & 0xffff;
- if(h->prod->pwr_type==PDU_AC_I3O3) {
- offset = POWER_AC3_START_DELAY_TIME+pch->info.sch*3;
- r = write_reg(h, pch->info.addr, offset+0, tmp, 2);
- if(r) break;
- r = write_reg(h, pch->info.addr, offset+1, tmp, 2);
- if(r) break;
- r = write_reg(h, pch->info.addr, offset+2, tmp, 2);
- if(r) break;
- }
- else {
- offset = POWER_AC3_START_DELAY_TIME+pch->info.sch;
- r = write_reg(h, pch->info.addr, offset, tmp, 2);
- }
- }
- break;
-
- case AC_MULTI_S_TYPE:
- case AC_MULTI_B_TYPE:
- case DC_OUT_TYPE:
- case DC_IN_TYPE:
- default:
- return -1;
- }
-
- return r;
- }
- int power_set_stop_delay(power_ch_t *pch)
- {
- int r=-1;
- uint16_t tmp[2],reg,offset;
- power_handle_t *h=&pwrHandle;
-
- switch(pch->info.type) {
- case AC_SINGLE_S_TYPE:
- case AC_SINGLE_B_TYPE:
- {
- tmp[0] = pch->info.start_delay;
- offset = POWER_AC_STOP_DELAY_TIME_L+pch->info.ch;
- r = write_reg(h, pch->info.addr, offset, tmp, 1);
- }
- break;
- case DCPDU_TYPE:
- {
- uint32_t time=pch->info.stop_delay/1000;
- tmp[0] = time & 0xffff;
- tmp[1] = (time >> 16) & 0xffff;
- offset = POWER_DC_SET_STOP_DELAY+pch->info.ch;
- //r = write_reg(h, pch->info.addr, offset, tmp, 2);
- }
- break;
-
- case TREE_AC_TYPE:
- {
- uint32_t time=pch->info.stop_delay/1000;
- if(h->prod->pwr_type==PDU_AC_I3O3) {
- offset = POWER_AC3_STOP_DELAY_TIME+pch->info.sch*3;
- r = write_reg(h, pch->info.addr, offset+0, tmp, 2);
- if(r) break;
- r = write_reg(h, pch->info.addr, offset+1, tmp, 2);
- if(r) break;
- r = write_reg(h, pch->info.addr, offset+2, tmp, 2);
- if(r) break;
- }
- else {
- offset = POWER_AC3_START_DELAY_TIME+pch->info.sch;
- r = write_reg(h, pch->info.addr, offset, tmp, 2);
- }
- }
- break;
-
- case AC_MULTI_S_TYPE:
- case AC_MULTI_B_TYPE:
- case DC_OUT_TYPE:
- case DC_IN_TYPE:
- default:
- return -1;
- }
-
- return r;
- }
- int power_data_clone(power_data_t *pd)
- {
- int i,r=-1;
- power_handle_t *h=&pwrHandle;
-
- lock_d_hold(h->lck);
- if(h->chs>0) {
- if(!pd->pch || pd->chs!=h->chs) {
- if(pd->pch) free(pd->pch);
- pd->chs = 0;
- pd->pch = malloc(sizeof(power_ch_t)*h->chs);
- }
-
- if(pd->pch) {
- pd->chs = h->chs;
- for(i=0; i<pd->chs; i++) {
- pd->pch[i] = *h->pch[i];
- }
- }
- }
- lock_d_release(h->lck);
-
- return 0;
- }
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