#include "flipper.pb.h" #include "rpc_i.h" #include "status.pb.h" #include #include void rpc_system_system_ping_process(const PB_Main* msg_request, void* context) { furi_assert(msg_request); furi_assert(msg_request->which_content == PB_Main_system_ping_request_tag); furi_assert(context); Rpc* rpc = context; if(msg_request->has_next) { rpc_send_and_release_empty( rpc, msg_request->command_id, PB_CommandStatus_ERROR_INVALID_PARAMETERS); return; } PB_Main msg_response = PB_Main_init_default; msg_response.has_next = false; msg_response.command_status = PB_CommandStatus_OK; msg_response.command_id = msg_request->command_id; msg_response.which_content = PB_Main_system_ping_response_tag; const PB_System_PingRequest* request = &msg_request->content.system_ping_request; PB_System_PingResponse* response = &msg_response.content.system_ping_response; if(request->data && (request->data->size > 0)) { response->data = furi_alloc(PB_BYTES_ARRAY_T_ALLOCSIZE(request->data->size)); memcpy(response->data->bytes, request->data->bytes, request->data->size); response->data->size = request->data->size; } rpc_send_and_release(rpc, &msg_response); } void rpc_system_system_reboot_process(const PB_Main* request, void* context) { furi_assert(request); furi_assert(request->which_content == PB_Main_system_reboot_request_tag); furi_assert(context); Rpc* rpc = context; const int mode = request->content.system_reboot_request.mode; if(mode == PB_System_RebootRequest_RebootMode_OS) { power_reboot(PowerBootModeNormal); } else if(mode == PB_System_RebootRequest_RebootMode_DFU) { power_reboot(PowerBootModeDfu); } else { rpc_send_and_release_empty( rpc, request->command_id, PB_CommandStatus_ERROR_INVALID_PARAMETERS); } } typedef struct { Rpc* rpc; PB_Main* response; } RpcSystemSystemDeviceInfoContext; void rpc_system_system_device_info_callback( const char* key, const char* value, bool last, void* context) { furi_assert(key); furi_assert(value); furi_assert(context); RpcSystemSystemDeviceInfoContext* ctx = context; char* str_key = strdup(key); char* str_value = strdup(value); ctx->response->has_next = !last; ctx->response->content.system_device_info_response.key = str_key; ctx->response->content.system_device_info_response.value = str_value; rpc_send_and_release(ctx->rpc, ctx->response); } void rpc_system_system_device_info_process(const PB_Main* request, void* context) { furi_assert(request); furi_assert(request->which_content == PB_Main_system_device_info_request_tag); furi_assert(context); Rpc* rpc = context; PB_Main* response = furi_alloc(sizeof(PB_Main)); response->command_id = request->command_id; response->which_content = PB_Main_system_device_info_response_tag; response->command_status = PB_CommandStatus_OK; RpcSystemSystemDeviceInfoContext device_info_context = { .rpc = rpc, .response = response, }; furi_hal_info_get(rpc_system_system_device_info_callback, &device_info_context); free(response); } void* rpc_system_system_alloc(Rpc* rpc) { RpcHandler rpc_handler = { .message_handler = NULL, .decode_submessage = NULL, .context = rpc, }; rpc_handler.message_handler = rpc_system_system_ping_process; rpc_add_handler(rpc, PB_Main_system_ping_request_tag, &rpc_handler); rpc_handler.message_handler = rpc_system_system_reboot_process; rpc_add_handler(rpc, PB_Main_system_reboot_request_tag, &rpc_handler); rpc_handler.message_handler = rpc_system_system_device_info_process; rpc_add_handler(rpc, PB_Main_system_device_info_request_tag, &rpc_handler); return NULL; }