/* * Copyright (c) 2020 AIIT XUOS Lab * XiUOS is licensed under Mulan PSL v2. * You can use this software according to the terms and conditions of the Mulan PSL v2. * You may obtain a copy of Mulan PSL v2 at: * http://license.coscl.org.cn/MulanPSL2 * THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, * EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, * MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE. * See the Mulan PSL v2 for more details. */ /** * @file dev_rtc.c * @brief register rtc dev function using bus driver framework * @version 1.0 * @author AIIT XUOS Lab * @date 2021-04-24 */ #include #include static DoubleLinklistType rtcdev_linklist; /*Create the rtc device linklist*/ static void RtcDeviceLinkInit() { InitDoubleLinkList(&rtcdev_linklist); } HardwareDevType RtcDeviceFind(const char *dev_name, enum DevType dev_type) { NULL_PARAM_CHECK(dev_name); struct HardwareDev *device = NONE; DoubleLinklistType *node = NONE; DoubleLinklistType *head = &rtcdev_linklist; for (node = head->node_next; node != head; node = node->node_next) { device = SYS_DOUBLE_LINKLIST_ENTRY(node, struct HardwareDev, dev_link); if ((!strcmp(device->dev_name, dev_name)) && (dev_type == device->dev_type)) { return device; } } KPrintf("RtcDeviceFind cannot find the %s device.return NULL\n", dev_name); return NONE; } int RtcDeviceRegister(struct RtcHardwareDevice *rtc_device, void *rtc_param, const char *device_name) { NULL_PARAM_CHECK(rtc_device); NULL_PARAM_CHECK(device_name); x_err_t ret = EOK; static x_bool dev_link_flag = RET_FALSE; if (!dev_link_flag) { RtcDeviceLinkInit(); dev_link_flag = RET_TRUE; } if (DEV_INSTALL != rtc_device->haldev.dev_state) { strncpy(rtc_device->haldev.dev_name, device_name, NAME_NUM_MAX); rtc_device->haldev.dev_type = TYPE_RTC_DEV; rtc_device->haldev.dev_state = DEV_INSTALL; rtc_device->haldev.dev_done = (struct HalDevDone *)rtc_device->dev_done; rtc_device->haldev.private_data = rtc_param; DoubleLinkListInsertNodeAfter(&rtcdev_linklist, &(rtc_device->haldev.dev_link)); } else { KPrintf("RtcDeviceRegister device has been register state%u\n", rtc_device->haldev.dev_state); } return ret; } int RtcDeviceAttachToBus(const char *dev_name, const char *bus_name) { NULL_PARAM_CHECK(dev_name); NULL_PARAM_CHECK(bus_name); x_err_t ret = EOK; struct Bus *bus; struct HardwareDev *device; bus = BusFind(bus_name); if (NONE == bus) { KPrintf("RtcDeviceAttachToBus find rtc bus error!name %s\n", bus_name); return ERROR; } if (TYPE_RTC_BUS == bus->bus_type) { device = RtcDeviceFind(dev_name, TYPE_RTC_DEV); if (NONE == device) { KPrintf("RtcDeviceAttachToBus find rtc device error!name %s\n", dev_name); return ERROR; } if (TYPE_RTC_DEV == device->dev_type) { ret = DeviceRegisterToBus(bus, device); if (EOK != ret) { KPrintf("RtcDeviceAttachToBus DeviceRegisterToBus error %u\n", ret); return ERROR; } } } return EOK; }