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usb: chipidea: OTG HNP and SRP fsm implementation
USB OTG interrupt handling and fsm transitions according to USB OTG and EH 2.0. Signed-off-by: Peter Chen <peter.chen@freescale.com> Signed-off-by: Li Jun <b47624@freescale.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
parent
e287b67b00
commit
4dcf720c5d
@ -42,7 +42,6 @@
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* - Not Supported: 15 & 16 (ISO)
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*
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* TODO List
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* - OTG
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* - Interrupt Traffic
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* - GET_STATUS(device) - always reports 0
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* - Gadget API (majority of optional features)
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@ -74,6 +73,7 @@
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#include "host.h"
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#include "debug.h"
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#include "otg.h"
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#include "otg_fsm.h"
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/* Controller register map */
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static const u8 ci_regs_nolpm[] = {
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@ -411,8 +411,14 @@ static irqreturn_t ci_irq(int irq, void *data)
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irqreturn_t ret = IRQ_NONE;
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u32 otgsc = 0;
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if (ci->is_otg)
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if (ci->is_otg) {
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otgsc = hw_read_otgsc(ci, ~0);
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if (ci_otg_is_fsm_mode(ci)) {
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ret = ci_otg_fsm_irq(ci);
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if (ret == IRQ_HANDLED)
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return ret;
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}
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}
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/*
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* Handle id change interrupt, it indicates device/host function
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@ -691,10 +697,13 @@ static int ci_hdrc_probe(struct platform_device *pdev)
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if (ci->role == CI_ROLE_GADGET)
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ci_handle_vbus_change(ci);
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ret = ci_role_start(ci, ci->role);
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if (ret) {
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dev_err(dev, "can't start %s role\n", ci_role(ci)->name);
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goto stop;
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if (!ci_otg_is_fsm_mode(ci)) {
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ret = ci_role_start(ci, ci->role);
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if (ret) {
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dev_err(dev, "can't start %s role\n",
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ci_role(ci)->name);
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goto stop;
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}
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}
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platform_set_drvdata(pdev, ci);
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@ -703,6 +712,9 @@ static int ci_hdrc_probe(struct platform_device *pdev)
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if (ret)
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goto stop;
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if (ci_otg_is_fsm_mode(ci))
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ci_hdrc_otg_fsm_start(ci);
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ret = dbg_create_files(ci);
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if (!ret)
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return 0;
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@ -11,8 +11,8 @@
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*/
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/*
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* This file mainly handles otgsc register, it may include OTG operation
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* in the future.
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* This file mainly handles otgsc register, OTG fsm operations for HNP and SRP
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* are also included.
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*/
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#include <linux/usb/otg.h>
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@ -91,6 +91,11 @@ static void ci_otg_work(struct work_struct *work)
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{
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struct ci_hdrc *ci = container_of(work, struct ci_hdrc, work);
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if (ci_otg_is_fsm_mode(ci) && !ci_otg_fsm_work(ci)) {
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enable_irq(ci->irq);
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return;
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}
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if (ci->id_event) {
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ci->id_event = false;
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ci_handle_id_switch(ci);
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@ -13,6 +13,10 @@
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/*
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* This file mainly handles OTG fsm, it includes OTG fsm operations
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* for HNP and SRP.
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*
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* TODO List
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* - ADP
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* - OTG test device
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*/
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#include <linux/usb/otg.h>
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@ -93,6 +97,33 @@ static void ci_otg_del_timer(struct ci_hdrc *ci, enum ci_otg_fsm_timer_index t)
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hw_write_otgsc(ci, OTGSC_1MSIE, 0);
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}
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/*
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* Reduce timer count by 1, and find timeout conditions.
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* Called by otg 1ms timer interrupt
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*/
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static inline int ci_otg_tick_timer(struct ci_hdrc *ci)
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{
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struct ci_otg_fsm_timer *tmp_timer, *del_tmp;
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struct list_head *active_timers = &ci->fsm_timer->active_timers;
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int expired = 0;
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list_for_each_entry_safe(tmp_timer, del_tmp, active_timers, list) {
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tmp_timer->count--;
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/* check if timer expires */
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if (!tmp_timer->count) {
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list_del(&tmp_timer->list);
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tmp_timer->function(ci, tmp_timer->data);
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expired = 1;
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}
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}
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/* disable 1ms irq if there is no any timer active */
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if ((expired == 1) && list_empty(active_timers))
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hw_write_otgsc(ci, OTGSC_1MSIE, 0);
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return expired;
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}
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/* The timeout callback function to set time out bit */
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static void set_tmout(void *ptr, unsigned long indicator)
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{
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@ -394,6 +425,218 @@ static struct otg_fsm_ops ci_otg_ops = {
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.start_gadget = ci_otg_start_gadget,
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};
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int ci_otg_fsm_work(struct ci_hdrc *ci)
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{
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/*
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* Don't do fsm transition for B device
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* when there is no gadget class driver
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*/
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if (ci->fsm.id && !(ci->driver) &&
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ci->transceiver->state < OTG_STATE_A_IDLE)
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return 0;
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if (otg_statemachine(&ci->fsm)) {
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if (ci->transceiver->state == OTG_STATE_A_IDLE) {
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/*
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* Further state change for cases:
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* a_idle to b_idle; or
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* a_idle to a_wait_vrise due to ID change(1->0), so
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* B-dev becomes A-dev can try to start new session
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* consequently; or
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* a_idle to a_wait_vrise when power up
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*/
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if ((ci->fsm.id) || (ci->id_event) ||
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(ci->fsm.power_up)) {
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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}
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if (ci->id_event)
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ci->id_event = false;
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} else if (ci->transceiver->state == OTG_STATE_B_IDLE) {
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if (ci->fsm.b_sess_vld) {
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ci->fsm.power_up = 0;
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/*
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* Further transite to b_periphearl state
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* when register gadget driver with vbus on
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*/
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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}
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}
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}
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return 0;
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}
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/*
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* Update fsm variables in each state if catching expected interrupts,
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* called by otg fsm isr.
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*/
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static void ci_otg_fsm_event(struct ci_hdrc *ci)
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{
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u32 intr_sts, otg_bsess_vld, port_conn;
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struct otg_fsm *fsm = &ci->fsm;
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intr_sts = hw_read_intr_status(ci);
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otg_bsess_vld = hw_read_otgsc(ci, OTGSC_BSV);
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port_conn = hw_read(ci, OP_PORTSC, PORTSC_CCS);
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switch (ci->transceiver->state) {
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case OTG_STATE_A_WAIT_BCON:
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if (port_conn) {
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fsm->b_conn = 1;
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fsm->a_bus_req = 1;
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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}
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break;
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case OTG_STATE_B_IDLE:
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if (otg_bsess_vld && (intr_sts & USBi_PCI) && port_conn) {
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fsm->b_sess_vld = 1;
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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}
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break;
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case OTG_STATE_B_PERIPHERAL:
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if ((intr_sts & USBi_SLI) && port_conn && otg_bsess_vld) {
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fsm->a_bus_suspend = 1;
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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} else if (intr_sts & USBi_PCI) {
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if (fsm->a_bus_suspend == 1)
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fsm->a_bus_suspend = 0;
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}
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break;
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case OTG_STATE_B_HOST:
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if ((intr_sts & USBi_PCI) && !port_conn) {
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fsm->a_conn = 0;
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fsm->b_bus_req = 0;
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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ci_otg_add_timer(ci, B_SESS_VLD);
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}
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break;
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case OTG_STATE_A_PERIPHERAL:
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if (intr_sts & USBi_SLI) {
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fsm->b_bus_suspend = 1;
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/*
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* Init a timer to know how long this suspend
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* will contine, if time out, indicates B no longer
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* wants to be host role
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*/
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ci_otg_add_timer(ci, A_BIDL_ADIS);
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}
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if (intr_sts & USBi_URI)
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ci_otg_del_timer(ci, A_BIDL_ADIS);
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if (intr_sts & USBi_PCI) {
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if (fsm->b_bus_suspend == 1) {
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ci_otg_del_timer(ci, A_BIDL_ADIS);
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fsm->b_bus_suspend = 0;
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}
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}
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break;
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case OTG_STATE_A_SUSPEND:
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if ((intr_sts & USBi_PCI) && !port_conn) {
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fsm->b_conn = 0;
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/* if gadget driver is binded */
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if (ci->driver) {
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/* A device to be peripheral mode */
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ci->gadget.is_a_peripheral = 1;
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}
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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}
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break;
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case OTG_STATE_A_HOST:
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if ((intr_sts & USBi_PCI) && !port_conn) {
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fsm->b_conn = 0;
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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}
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break;
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case OTG_STATE_B_WAIT_ACON:
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if ((intr_sts & USBi_PCI) && port_conn) {
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fsm->a_conn = 1;
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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}
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break;
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default:
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break;
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}
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}
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/*
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* ci_otg_irq - otg fsm related irq handling
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* and also update otg fsm variable by monitoring usb host and udc
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* state change interrupts.
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* @ci: ci_hdrc
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*/
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irqreturn_t ci_otg_fsm_irq(struct ci_hdrc *ci)
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{
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irqreturn_t retval = IRQ_NONE;
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u32 otgsc, otg_int_src = 0;
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struct otg_fsm *fsm = &ci->fsm;
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otgsc = hw_read_otgsc(ci, ~0);
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otg_int_src = otgsc & OTGSC_INT_STATUS_BITS & (otgsc >> 8);
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fsm->id = (otgsc & OTGSC_ID) ? 1 : 0;
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if (otg_int_src) {
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if (otg_int_src & OTGSC_1MSIS) {
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hw_write_otgsc(ci, OTGSC_1MSIS, OTGSC_1MSIS);
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retval = ci_otg_tick_timer(ci);
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return IRQ_HANDLED;
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} else if (otg_int_src & OTGSC_DPIS) {
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hw_write_otgsc(ci, OTGSC_DPIS, OTGSC_DPIS);
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fsm->a_srp_det = 1;
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fsm->a_bus_drop = 0;
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} else if (otg_int_src & OTGSC_IDIS) {
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hw_write_otgsc(ci, OTGSC_IDIS, OTGSC_IDIS);
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if (fsm->id == 0) {
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fsm->a_bus_drop = 0;
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fsm->a_bus_req = 1;
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ci->id_event = true;
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}
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} else if (otg_int_src & OTGSC_BSVIS) {
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hw_write_otgsc(ci, OTGSC_BSVIS, OTGSC_BSVIS);
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if (otgsc & OTGSC_BSV) {
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fsm->b_sess_vld = 1;
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ci_otg_del_timer(ci, B_SSEND_SRP);
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ci_otg_del_timer(ci, B_SRP_FAIL);
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fsm->b_ssend_srp = 0;
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} else {
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fsm->b_sess_vld = 0;
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if (fsm->id)
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ci_otg_add_timer(ci, B_SSEND_SRP);
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}
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} else if (otg_int_src & OTGSC_AVVIS) {
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hw_write_otgsc(ci, OTGSC_AVVIS, OTGSC_AVVIS);
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if (otgsc & OTGSC_AVV) {
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fsm->a_vbus_vld = 1;
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} else {
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fsm->a_vbus_vld = 0;
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fsm->b_conn = 0;
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}
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}
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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return IRQ_HANDLED;
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}
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ci_otg_fsm_event(ci);
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return retval;
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}
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void ci_hdrc_otg_fsm_start(struct ci_hdrc *ci)
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{
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disable_irq_nosync(ci->irq);
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queue_work(ci->wq, &ci->work);
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}
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int ci_hdrc_otg_fsm_init(struct ci_hdrc *ci)
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{
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int retval = 0;
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@ -92,6 +92,9 @@ struct ci_otg_fsm_timer_list {
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#ifdef CONFIG_USB_OTG_FSM
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int ci_hdrc_otg_fsm_init(struct ci_hdrc *ci);
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int ci_otg_fsm_work(struct ci_hdrc *ci);
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irqreturn_t ci_otg_fsm_irq(struct ci_hdrc *ci);
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void ci_hdrc_otg_fsm_start(struct ci_hdrc *ci);
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#else
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@ -100,6 +103,21 @@ static inline int ci_hdrc_otg_fsm_init(struct ci_hdrc *ci)
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return 0;
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}
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static inline int ci_otg_fsm_work(struct ci_hdrc *ci)
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{
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return -ENXIO;
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}
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static inline irqreturn_t ci_otg_fsm_irq(struct ci_hdrc *ci)
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{
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return IRQ_NONE;
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}
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static inline void ci_hdrc_otg_fsm_start(struct ci_hdrc *ci)
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{
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}
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#endif
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#endif /* __DRIVERS_USB_CHIPIDEA_OTG_FSM_H */
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@ -28,6 +28,7 @@
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#include "bits.h"
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#include "debug.h"
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#include "otg.h"
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#include "otg_fsm.h"
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/* control endpoint description */
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static const struct usb_endpoint_descriptor
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@ -1644,6 +1645,13 @@ static int ci_udc_start(struct usb_gadget *gadget,
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return retval;
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ci->driver = driver;
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/* Start otg fsm for B-device */
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if (ci_otg_is_fsm_mode(ci) && ci->fsm.id) {
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ci_hdrc_otg_fsm_start(ci);
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return retval;
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}
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pm_runtime_get_sync(&ci->gadget.dev);
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if (ci->vbus_active) {
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spin_lock_irqsave(&ci->lock, flags);
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