lm_wait_state_change
lm_status = lm_wait_state_change(pdev, &pdev->eq_info.function_state, FUNCTION_STOP_COMPLETED);
lm_status = lm_wait_state_change(pdev, &pdev->eq_info.function_state, FUNCTION_START_COMPLETED);
lm_status = lm_wait_state_change(pdev, &pdev->client_info[LM_SW_VF_CLI_ID(vf_info, q_idx)].update.state, LM_CLI_UPDATE_RECV);
return lm_wait_state_change(pdev, &vf_info->vf_stats.vf_stats_state, VF_STATS_REQ_READY);
lm_status = lm_wait_state_change(pdev,
return lm_wait_state_change(pdev, &cid_resc->con_state, new_state);
lm_status = lm_wait_state_change(pdev, &pdev->client_info[client_idx].update.state, LM_CLI_UPDATE_RECV);
lm_status = lm_wait_state_change(pdev, &pdev->client_info[client_idx].update.state, LM_CLI_UPDATE_RECV);
lm_status = lm_wait_state_change(pdev, &tpa_info->state, TPA_STATE_NONE);
lm_status = lm_wait_state_change(pdev,
lm_status_t lm_wait_state_change(struct _lm_device_t *pdev, volatile u32_t * curr_state, u32_t new_state);
lm_status_t lm_wait_state_change(struct _lm_device_t *pdev, volatile u32_t * curr_state, u32_t new_state);
lm_status = lm_wait_state_change(pdev, &vf_info->vf_tpa_info.ramrod_recv_cnt, 0);