203 lines
5.3 KiB
C
203 lines
5.3 KiB
C
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// SPDX-License-Identifier: GPL-2.0
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/*
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* drd.c - DesignWare USB2 DRD Controller Dual-role support
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*
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* Copyright (C) 2020 STMicroelectronics
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*
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* Author(s): Amelie Delaunay <amelie.delaunay@st.com>
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*/
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#include <linux/clk.h>
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#include <linux/iopoll.h>
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#include <linux/platform_device.h>
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#include <linux/usb/role.h>
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#include "core.h"
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static void dwc2_ovr_init(struct dwc2_hsotg *hsotg)
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{
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unsigned long flags;
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u32 gotgctl;
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spin_lock_irqsave(&hsotg->lock, flags);
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gotgctl = dwc2_readl(hsotg, GOTGCTL);
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gotgctl |= GOTGCTL_BVALOEN | GOTGCTL_AVALOEN | GOTGCTL_VBVALOEN;
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gotgctl |= GOTGCTL_DBNCE_FLTR_BYPASS;
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gotgctl &= ~(GOTGCTL_BVALOVAL | GOTGCTL_AVALOVAL | GOTGCTL_VBVALOVAL);
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dwc2_writel(hsotg, gotgctl, GOTGCTL);
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spin_unlock_irqrestore(&hsotg->lock, flags);
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dwc2_force_mode(hsotg, (hsotg->dr_mode == USB_DR_MODE_HOST));
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}
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static int dwc2_ovr_avalid(struct dwc2_hsotg *hsotg, bool valid)
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{
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u32 gotgctl = dwc2_readl(hsotg, GOTGCTL);
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/* Check if A-Session is already in the right state */
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if ((valid && (gotgctl & GOTGCTL_ASESVLD)) ||
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(!valid && !(gotgctl & GOTGCTL_ASESVLD)))
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return -EALREADY;
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gotgctl &= ~GOTGCTL_BVALOVAL;
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if (valid)
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gotgctl |= GOTGCTL_AVALOVAL | GOTGCTL_VBVALOVAL;
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else
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gotgctl &= ~(GOTGCTL_AVALOVAL | GOTGCTL_VBVALOVAL);
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dwc2_writel(hsotg, gotgctl, GOTGCTL);
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return 0;
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}
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static int dwc2_ovr_bvalid(struct dwc2_hsotg *hsotg, bool valid)
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{
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u32 gotgctl = dwc2_readl(hsotg, GOTGCTL);
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/* Check if B-Session is already in the right state */
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if ((valid && (gotgctl & GOTGCTL_BSESVLD)) ||
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(!valid && !(gotgctl & GOTGCTL_BSESVLD)))
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return -EALREADY;
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gotgctl &= ~GOTGCTL_AVALOVAL;
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if (valid)
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gotgctl |= GOTGCTL_BVALOVAL | GOTGCTL_VBVALOVAL;
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else
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gotgctl &= ~(GOTGCTL_BVALOVAL | GOTGCTL_VBVALOVAL);
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dwc2_writel(hsotg, gotgctl, GOTGCTL);
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return 0;
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}
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static int dwc2_drd_role_sw_set(struct usb_role_switch *sw, enum usb_role role)
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{
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struct dwc2_hsotg *hsotg = usb_role_switch_get_drvdata(sw);
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unsigned long flags;
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int already = 0;
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/* Skip session not in line with dr_mode */
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if ((role == USB_ROLE_DEVICE && hsotg->dr_mode == USB_DR_MODE_HOST) ||
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(role == USB_ROLE_HOST && hsotg->dr_mode == USB_DR_MODE_PERIPHERAL))
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return -EINVAL;
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#if IS_ENABLED(CONFIG_USB_DWC2_PERIPHERAL) || \
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IS_ENABLED(CONFIG_USB_DWC2_DUAL_ROLE)
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/* Skip session if core is in test mode */
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if (role == USB_ROLE_NONE && hsotg->test_mode) {
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dev_dbg(hsotg->dev, "Core is in test mode\n");
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return -EBUSY;
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}
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#endif
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/*
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* In case of USB_DR_MODE_PERIPHERAL, clock is disabled at the end of
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* the probe and enabled on udc_start.
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* If role-switch set is called before the udc_start, we need to enable
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* the clock to read/write GOTGCTL and GUSBCFG registers to override
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* mode and sessions. It is the case if cable is plugged at boot.
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*/
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if (!hsotg->ll_hw_enabled && hsotg->clk) {
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int ret = clk_prepare_enable(hsotg->clk);
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if (ret)
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return ret;
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}
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spin_lock_irqsave(&hsotg->lock, flags);
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if (role == USB_ROLE_HOST) {
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already = dwc2_ovr_avalid(hsotg, true);
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} else if (role == USB_ROLE_DEVICE) {
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already = dwc2_ovr_bvalid(hsotg, true);
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if (dwc2_is_device_enabled(hsotg)) {
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/* This clear DCTL.SFTDISCON bit */
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dwc2_hsotg_core_connect(hsotg);
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}
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} else {
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if (dwc2_is_device_mode(hsotg)) {
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if (!dwc2_ovr_bvalid(hsotg, false))
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/* This set DCTL.SFTDISCON bit */
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dwc2_hsotg_core_disconnect(hsotg);
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} else {
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dwc2_ovr_avalid(hsotg, false);
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}
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}
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spin_unlock_irqrestore(&hsotg->lock, flags);
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if (!already && hsotg->dr_mode == USB_DR_MODE_OTG)
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/* This will raise a Connector ID Status Change Interrupt */
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dwc2_force_mode(hsotg, role == USB_ROLE_HOST);
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if (!hsotg->ll_hw_enabled && hsotg->clk)
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clk_disable_unprepare(hsotg->clk);
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dev_dbg(hsotg->dev, "%s-session valid\n",
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role == USB_ROLE_NONE ? "No" :
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role == USB_ROLE_HOST ? "A" : "B");
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return 0;
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}
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int dwc2_drd_init(struct dwc2_hsotg *hsotg)
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{
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struct usb_role_switch_desc role_sw_desc = {0};
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struct usb_role_switch *role_sw;
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int ret;
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if (!device_property_read_bool(hsotg->dev, "usb-role-switch"))
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return 0;
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role_sw_desc.driver_data = hsotg;
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role_sw_desc.fwnode = dev_fwnode(hsotg->dev);
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role_sw_desc.set = dwc2_drd_role_sw_set;
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role_sw_desc.allow_userspace_control = true;
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role_sw = usb_role_switch_register(hsotg->dev, &role_sw_desc);
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if (IS_ERR(role_sw)) {
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ret = PTR_ERR(role_sw);
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dev_err(hsotg->dev,
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"failed to register role switch: %d\n", ret);
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return ret;
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}
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hsotg->role_sw = role_sw;
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/* Enable override and initialize values */
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dwc2_ovr_init(hsotg);
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return 0;
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}
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void dwc2_drd_suspend(struct dwc2_hsotg *hsotg)
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{
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u32 gintsts, gintmsk;
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if (hsotg->role_sw && !hsotg->params.external_id_pin_ctl) {
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gintmsk = dwc2_readl(hsotg, GINTMSK);
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gintmsk &= ~GINTSTS_CONIDSTSCHNG;
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dwc2_writel(hsotg, gintmsk, GINTMSK);
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gintsts = dwc2_readl(hsotg, GINTSTS);
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dwc2_writel(hsotg, gintsts | GINTSTS_CONIDSTSCHNG, GINTSTS);
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}
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}
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void dwc2_drd_resume(struct dwc2_hsotg *hsotg)
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{
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u32 gintsts, gintmsk;
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if (hsotg->role_sw && !hsotg->params.external_id_pin_ctl) {
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gintsts = dwc2_readl(hsotg, GINTSTS);
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dwc2_writel(hsotg, gintsts | GINTSTS_CONIDSTSCHNG, GINTSTS);
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gintmsk = dwc2_readl(hsotg, GINTMSK);
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gintmsk |= GINTSTS_CONIDSTSCHNG;
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dwc2_writel(hsotg, gintmsk, GINTMSK);
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}
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}
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void dwc2_drd_exit(struct dwc2_hsotg *hsotg)
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{
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if (hsotg->role_sw)
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usb_role_switch_unregister(hsotg->role_sw);
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}
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