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@@ -72,37 +72,113 @@ enum otg_fsm_timer {
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NUM_OTG_FSM_TIMERS,
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NUM_OTG_FSM_TIMERS,
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};
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};
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-/* OTG state machine according to the OTG spec */
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+/**
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+ * struct otg_fsm - OTG state machine according to the OTG spec
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+ *
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+ * OTG hardware Inputs
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+ *
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+ * Common inputs for A and B device
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+ * @id: TRUE for B-device, FALSE for A-device.
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+ * @adp_change: TRUE when current ADP measurement (n) value, compared to the
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+ * ADP measurement taken at n-2, differs by more than CADP_THR
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+ * @power_up: TRUE when the OTG device first powers up its USB system and
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+ * ADP measurement taken if ADP capable
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+ *
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+ * A-Device state inputs
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+ * @a_srp_det: TRUE if the A-device detects SRP
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+ * @a_vbus_vld: TRUE when VBUS voltage is in regulation
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+ * @b_conn: TRUE if the A-device detects connection from the B-device
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+ * @a_bus_resume: TRUE when the B-device detects that the A-device is signaling
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+ * a resume (K state)
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+ * B-Device state inputs
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+ * @a_bus_suspend: TRUE when the B-device detects that the A-device has put the
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+ * bus into suspend
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+ * @a_conn: TRUE if the B-device detects a connection from the A-device
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+ * @b_se0_srp: TRUE when the line has been at SE0 for more than the minimum
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+ * time before generating SRP
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+ * @b_ssend_srp: TRUE when the VBUS has been below VOTG_SESS_VLD for more than
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+ * the minimum time before generating SRP
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+ * @b_sess_vld: TRUE when the B-device detects that the voltage on VBUS is
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+ * above VOTG_SESS_VLD
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+ * @test_device: TRUE when the B-device switches to B-Host and detects an OTG
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+ * test device. This must be set by host/hub driver
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+ *
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+ * Application inputs (A-Device)
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+ * @a_bus_drop: TRUE when A-device application needs to power down the bus
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+ * @a_bus_req: TRUE when A-device application wants to use the bus.
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+ * FALSE to suspend the bus
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+ *
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+ * Application inputs (B-Device)
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+ * @b_bus_req: TRUE during the time that the Application running on the
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+ * B-device wants to use the bus
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+ *
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+ * Auxilary inputs (OTG v1.3 only. Obsolete now.)
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+ * @a_sess_vld: TRUE if the A-device detects that VBUS is above VA_SESS_VLD
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+ * @b_bus_suspend: TRUE when the A-device detects that the B-device has put
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+ * the bus into suspend
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+ * @b_bus_resume: TRUE when the A-device detects that the B-device is signaling
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+ * resume on the bus
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+ *
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+ * OTG Output status. Read only for users. Updated by OTG FSM helpers defined
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+ * in this file
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+ *
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+ * Outputs for Both A and B device
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+ * @drv_vbus: TRUE when A-device is driving VBUS
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+ * @loc_conn: TRUE when the local device has signaled that it is connected
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+ * to the bus
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+ * @loc_sof: TRUE when the local device is generating activity on the bus
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+ * @adp_prb: TRUE when the local device is in the process of doing
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+ * ADP probing
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+ *
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+ * Outputs for B-device state
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+ * @adp_sns: TRUE when the B-device is in the process of carrying out
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+ * ADP sensing
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+ * @data_pulse: TRUE when the B-device is performing data line pulsing
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+ *
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+ * Internal Variables
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+ *
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+ * a_set_b_hnp_en: TRUE when the A-device has successfully set the
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+ * b_hnp_enable bit in the B-device.
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+ * Unused as OTG fsm uses otg->host->b_hnp_enable instead
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+ * b_srp_done: TRUE when the B-device has completed initiating SRP
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+ * b_hnp_enable: TRUE when the B-device has accepted the
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+ * SetFeature(b_hnp_enable) B-device.
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+ * Unused as OTG fsm uses otg->gadget->b_hnp_enable instead
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+ * a_clr_err: Asserted (by application ?) to clear a_vbus_err due to an
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+ * overcurrent condition and causes the A-device to transition
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+ * to a_wait_vfall
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+ */
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struct otg_fsm {
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struct otg_fsm {
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/* Input */
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/* Input */
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int id;
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int id;
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int adp_change;
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int adp_change;
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int power_up;
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int power_up;
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- int test_device;
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- int a_bus_drop;
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- int a_bus_req;
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int a_srp_det;
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int a_srp_det;
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int a_vbus_vld;
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int a_vbus_vld;
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int b_conn;
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int b_conn;
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int a_bus_resume;
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int a_bus_resume;
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int a_bus_suspend;
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int a_bus_suspend;
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int a_conn;
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int a_conn;
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- int b_bus_req;
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int b_se0_srp;
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int b_se0_srp;
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int b_ssend_srp;
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int b_ssend_srp;
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int b_sess_vld;
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int b_sess_vld;
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+ int test_device;
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+ int a_bus_drop;
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+ int a_bus_req;
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+ int b_bus_req;
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+
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/* Auxilary inputs */
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/* Auxilary inputs */
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int a_sess_vld;
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int a_sess_vld;
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int b_bus_resume;
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int b_bus_resume;
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int b_bus_suspend;
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int b_bus_suspend;
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/* Output */
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/* Output */
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- int data_pulse;
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int drv_vbus;
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int drv_vbus;
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int loc_conn;
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int loc_conn;
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int loc_sof;
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int loc_sof;
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int adp_prb;
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int adp_prb;
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int adp_sns;
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int adp_sns;
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+ int data_pulse;
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/* Internal variables */
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/* Internal variables */
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int a_set_b_hnp_en;
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int a_set_b_hnp_en;
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@@ -110,7 +186,7 @@ struct otg_fsm {
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int b_hnp_enable;
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int b_hnp_enable;
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int a_clr_err;
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int a_clr_err;
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- /* Informative variables */
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+ /* Informative variables. All unused as of now */
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int a_bus_drop_inf;
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int a_bus_drop_inf;
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int a_bus_req_inf;
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int a_bus_req_inf;
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int a_clr_err_inf;
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int a_clr_err_inf;
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@@ -134,6 +210,7 @@ struct otg_fsm {
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struct mutex lock;
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struct mutex lock;
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u8 *host_req_flag;
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u8 *host_req_flag;
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struct delayed_work hnp_polling_work;
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struct delayed_work hnp_polling_work;
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+ bool state_changed;
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};
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};
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struct otg_fsm_ops {
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struct otg_fsm_ops {
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