#define T_RESET_US 10
#define T_FAULT_RECOVER msecs_to_jiffies(1000)
+/* N_FAULT_INIT is the number of recovery attempts at module initialisation
+ * time. If the TX_FAULT signal is not deasserted after this number of
+ * attempts at clearing it, we decide that the module is faulty.
+ * N_FAULT is the same but after the module has initialised.
+ */
+#define N_FAULT_INIT 5
+#define N_FAULT 5
+
/* SFP module presence detection is poor: the three MOD DEF signals are
* the same length on the PCB, which means it's possible for MOD DEF 0 to
* connect before the I2C bus on MOD DEF 1/2.
sfp_module_tx_enable(sfp);
/* Initialise the fault clearance retries */
- sfp->sm_retries = 5;
+ sfp->sm_retries = N_FAULT_INIT;
/* We need to check the TX_FAULT state, which is not defined
* while TX_DISABLE is asserted. The earliest we want to do
* or t_start_up, so assume there is a fault.
*/
sfp_sm_fault(sfp, SFP_S_INIT_TX_FAULT,
- sfp->sm_retries == 5);
+ sfp->sm_retries == N_FAULT_INIT);
} else if (event == SFP_E_TIMEOUT || event == SFP_E_TX_CLEAR) {
init_done: /* TX_FAULT deasserted or we timed out with TX_FAULT
* clear. Probe for the PHY and check the LOS state.
sfp_sm_link_check_los(sfp);
/* Reset the fault retry count */
- sfp->sm_retries = 5;
+ sfp->sm_retries = N_FAULT;
}
break;