Merge branch 'ib-extcon-mfd-4.16' into extcon-next
This commit is contained in:
commit
d61b814ab9
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@ -24,8 +24,6 @@
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#include <linux/notifier.h>
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#include <linux/extcon-provider.h>
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#include <linux/regmap.h>
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#include <linux/gpio.h>
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#include <linux/gpio/consumer.h>
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#include <linux/mfd/axp20x.h>
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/* Power source status register */
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@ -79,11 +77,6 @@ enum axp288_extcon_reg {
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AXP288_BC_DET_STAT_REG = 0x2f,
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};
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enum axp288_mux_select {
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EXTCON_GPIO_MUX_SEL_PMIC = 0,
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EXTCON_GPIO_MUX_SEL_SOC,
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};
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enum axp288_extcon_irq {
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VBUS_FALLING_IRQ = 0,
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VBUS_RISING_IRQ,
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@ -104,10 +97,8 @@ struct axp288_extcon_info {
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struct device *dev;
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struct regmap *regmap;
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struct regmap_irq_chip_data *regmap_irqc;
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struct gpio_desc *gpio_mux_cntl;
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int irq[EXTCON_IRQ_END];
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struct extcon_dev *edev;
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struct notifier_block extcon_nb;
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unsigned int previous_cable;
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};
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@ -197,15 +188,6 @@ static int axp288_handle_chrg_det_event(struct axp288_extcon_info *info)
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}
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no_vbus:
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/*
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* If VBUS is absent Connect D+/D- lines to PMIC for BC
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* detection. Else connect them to SOC for USB communication.
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*/
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if (info->gpio_mux_cntl)
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gpiod_set_value(info->gpio_mux_cntl,
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vbus_attach ? EXTCON_GPIO_MUX_SEL_SOC
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: EXTCON_GPIO_MUX_SEL_PMIC);
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extcon_set_state_sync(info->edev, info->previous_cable, false);
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if (info->previous_cable == EXTCON_CHG_USB_SDP)
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extcon_set_state_sync(info->edev, EXTCON_USB, false);
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@ -253,8 +235,7 @@ static int axp288_extcon_probe(struct platform_device *pdev)
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{
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struct axp288_extcon_info *info;
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struct axp20x_dev *axp20x = dev_get_drvdata(pdev->dev.parent);
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struct axp288_extcon_pdata *pdata = pdev->dev.platform_data;
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int ret, i, pirq, gpio;
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int ret, i, pirq;
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info = devm_kzalloc(&pdev->dev, sizeof(*info), GFP_KERNEL);
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if (!info)
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@ -264,8 +245,6 @@ static int axp288_extcon_probe(struct platform_device *pdev)
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info->regmap = axp20x->regmap;
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info->regmap_irqc = axp20x->regmap_irqc;
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info->previous_cable = EXTCON_NONE;
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if (pdata)
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info->gpio_mux_cntl = pdata->gpio_mux_cntl;
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platform_set_drvdata(pdev, info);
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@ -286,21 +265,11 @@ static int axp288_extcon_probe(struct platform_device *pdev)
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return ret;
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}
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/* Set up gpio control for USB Mux */
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if (info->gpio_mux_cntl) {
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gpio = desc_to_gpio(info->gpio_mux_cntl);
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ret = devm_gpio_request(&pdev->dev, gpio, "USB_MUX");
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if (ret < 0) {
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dev_err(&pdev->dev,
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"failed to request the gpio=%d\n", gpio);
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return ret;
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}
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gpiod_direction_output(info->gpio_mux_cntl,
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EXTCON_GPIO_MUX_SEL_PMIC);
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}
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for (i = 0; i < EXTCON_IRQ_END; i++) {
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pirq = platform_get_irq(pdev, i);
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if (pirq < 0)
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return pirq;
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info->irq[i] = regmap_irq_get_virq(info->regmap_irqc, pirq);
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if (info->irq[i] < 0) {
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dev_err(&pdev->dev,
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@ -34,16 +34,26 @@ struct cros_ec_extcon_info {
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struct notifier_block notifier;
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unsigned int dr; /* data role */
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bool pr; /* power role (true if VBUS enabled) */
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bool dp; /* DisplayPort enabled */
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bool mux; /* SuperSpeed (usb3) enabled */
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unsigned int power_type;
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};
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static const unsigned int usb_type_c_cable[] = {
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EXTCON_USB,
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EXTCON_USB_HOST,
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EXTCON_DISP_DP,
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EXTCON_NONE,
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};
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enum usb_data_roles {
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DR_NONE,
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DR_HOST,
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DR_DEVICE,
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};
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/**
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* cros_ec_pd_command() - Send a command to the EC.
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* @info: pointer to struct cros_ec_extcon_info
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@ -150,6 +160,7 @@ static int cros_ec_usb_get_role(struct cros_ec_extcon_info *info,
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pd_control.port = info->port_id;
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pd_control.role = USB_PD_CTRL_ROLE_NO_CHANGE;
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pd_control.mux = USB_PD_CTRL_MUX_NO_CHANGE;
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pd_control.swap = USB_PD_CTRL_SWAP_NONE;
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ret = cros_ec_pd_command(info, EC_CMD_USB_PD_CONTROL, 1,
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&pd_control, sizeof(pd_control),
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&resp, sizeof(resp));
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@ -183,11 +194,72 @@ static int cros_ec_pd_get_num_ports(struct cros_ec_extcon_info *info)
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return resp.num_ports;
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}
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static const char *cros_ec_usb_role_string(unsigned int role)
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{
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return role == DR_NONE ? "DISCONNECTED" :
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(role == DR_HOST ? "DFP" : "UFP");
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}
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static const char *cros_ec_usb_power_type_string(unsigned int type)
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{
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switch (type) {
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case USB_CHG_TYPE_NONE:
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return "USB_CHG_TYPE_NONE";
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case USB_CHG_TYPE_PD:
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return "USB_CHG_TYPE_PD";
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case USB_CHG_TYPE_PROPRIETARY:
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return "USB_CHG_TYPE_PROPRIETARY";
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case USB_CHG_TYPE_C:
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return "USB_CHG_TYPE_C";
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case USB_CHG_TYPE_BC12_DCP:
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return "USB_CHG_TYPE_BC12_DCP";
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case USB_CHG_TYPE_BC12_CDP:
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return "USB_CHG_TYPE_BC12_CDP";
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case USB_CHG_TYPE_BC12_SDP:
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return "USB_CHG_TYPE_BC12_SDP";
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case USB_CHG_TYPE_OTHER:
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return "USB_CHG_TYPE_OTHER";
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case USB_CHG_TYPE_VBUS:
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return "USB_CHG_TYPE_VBUS";
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case USB_CHG_TYPE_UNKNOWN:
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return "USB_CHG_TYPE_UNKNOWN";
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default:
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return "USB_CHG_TYPE_UNKNOWN";
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}
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}
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static bool cros_ec_usb_power_type_is_wall_wart(unsigned int type,
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unsigned int role)
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{
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switch (type) {
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/* FIXME : Guppy, Donnettes, and other chargers will be miscategorized
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* because they identify with USB_CHG_TYPE_C, but we can't return true
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* here from that code because that breaks Suzy-Q and other kinds of
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* USB Type-C cables and peripherals.
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*/
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case USB_CHG_TYPE_PROPRIETARY:
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case USB_CHG_TYPE_BC12_DCP:
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return true;
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case USB_CHG_TYPE_PD:
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case USB_CHG_TYPE_C:
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case USB_CHG_TYPE_BC12_CDP:
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case USB_CHG_TYPE_BC12_SDP:
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case USB_CHG_TYPE_OTHER:
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case USB_CHG_TYPE_VBUS:
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case USB_CHG_TYPE_UNKNOWN:
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case USB_CHG_TYPE_NONE:
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default:
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return false;
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}
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}
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static int extcon_cros_ec_detect_cable(struct cros_ec_extcon_info *info,
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bool force)
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{
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struct device *dev = info->dev;
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int role, power_type;
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unsigned int dr = DR_NONE;
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bool pr = false;
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bool polarity = false;
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bool dp = false;
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bool mux = false;
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@ -206,9 +278,12 @@ static int extcon_cros_ec_detect_cable(struct cros_ec_extcon_info *info,
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dev_err(dev, "failed getting role err = %d\n", role);
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return role;
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}
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dev_dbg(dev, "disconnected\n");
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} else {
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int pd_mux_state;
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dr = (role & PD_CTRL_RESP_ROLE_DATA) ? DR_HOST : DR_DEVICE;
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pr = (role & PD_CTRL_RESP_ROLE_POWER);
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pd_mux_state = cros_ec_usb_get_pd_mux_state(info);
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if (pd_mux_state < 0)
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pd_mux_state = USB_PD_MUX_USB_ENABLED;
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dp = pd_mux_state & USB_PD_MUX_DP_ENABLED;
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mux = pd_mux_state & USB_PD_MUX_USB_ENABLED;
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hpd = pd_mux_state & USB_PD_MUX_HPD_IRQ;
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dev_dbg(dev,
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"connected role 0x%x pwr type %d dr %d pr %d pol %d mux %d dp %d hpd %d\n",
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role, power_type, dr, pr, polarity, mux, dp, hpd);
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}
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if (force || info->dp != dp || info->mux != mux ||
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info->power_type != power_type) {
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/*
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* When there is no USB host (e.g. USB PD charger),
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* we are not really a UFP for the AP.
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*/
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if (dr == DR_DEVICE &&
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cros_ec_usb_power_type_is_wall_wart(power_type, role))
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dr = DR_NONE;
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if (force || info->dr != dr || info->pr != pr || info->dp != dp ||
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info->mux != mux || info->power_type != power_type) {
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bool host_connected = false, device_connected = false;
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dev_dbg(dev, "Type/Role switch! type = %s role = %s\n",
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cros_ec_usb_power_type_string(power_type),
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cros_ec_usb_role_string(dr));
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info->dr = dr;
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info->pr = pr;
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info->dp = dp;
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info->mux = mux;
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info->power_type = power_type;
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extcon_set_state(info->edev, EXTCON_DISP_DP, dp);
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if (dr == DR_DEVICE)
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device_connected = true;
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else if (dr == DR_HOST)
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host_connected = true;
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extcon_set_state(info->edev, EXTCON_USB, device_connected);
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extcon_set_state(info->edev, EXTCON_USB_HOST, host_connected);
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extcon_set_state(info->edev, EXTCON_DISP_DP, dp);
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extcon_set_property(info->edev, EXTCON_USB,
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EXTCON_PROP_USB_VBUS,
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(union extcon_property_value)(int)pr);
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extcon_set_property(info->edev, EXTCON_USB_HOST,
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EXTCON_PROP_USB_VBUS,
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(union extcon_property_value)(int)pr);
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extcon_set_property(info->edev, EXTCON_USB,
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EXTCON_PROP_USB_TYPEC_POLARITY,
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(union extcon_property_value)(int)polarity);
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extcon_set_property(info->edev, EXTCON_USB_HOST,
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EXTCON_PROP_USB_TYPEC_POLARITY,
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(union extcon_property_value)(int)polarity);
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extcon_set_property(info->edev, EXTCON_DISP_DP,
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EXTCON_PROP_USB_TYPEC_POLARITY,
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(union extcon_property_value)(int)polarity);
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extcon_set_property(info->edev, EXTCON_USB,
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EXTCON_PROP_USB_SS,
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(union extcon_property_value)(int)mux);
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extcon_set_property(info->edev, EXTCON_USB_HOST,
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EXTCON_PROP_USB_SS,
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(union extcon_property_value)(int)mux);
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extcon_set_property(info->edev, EXTCON_DISP_DP,
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EXTCON_PROP_USB_SS,
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(union extcon_property_value)(int)mux);
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@ -237,6 +354,8 @@ static int extcon_cros_ec_detect_cable(struct cros_ec_extcon_info *info,
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EXTCON_PROP_DISP_HPD,
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(union extcon_property_value)(int)hpd);
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extcon_sync(info->edev, EXTCON_USB);
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extcon_sync(info->edev, EXTCON_USB_HOST);
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extcon_sync(info->edev, EXTCON_DISP_DP);
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} else if (hpd) {
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@ -322,13 +441,28 @@ static int extcon_cros_ec_probe(struct platform_device *pdev)
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return ret;
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}
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extcon_set_property_capability(info->edev, EXTCON_USB,
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EXTCON_PROP_USB_VBUS);
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extcon_set_property_capability(info->edev, EXTCON_USB_HOST,
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EXTCON_PROP_USB_VBUS);
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extcon_set_property_capability(info->edev, EXTCON_USB,
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EXTCON_PROP_USB_TYPEC_POLARITY);
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extcon_set_property_capability(info->edev, EXTCON_USB_HOST,
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EXTCON_PROP_USB_TYPEC_POLARITY);
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extcon_set_property_capability(info->edev, EXTCON_DISP_DP,
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EXTCON_PROP_USB_TYPEC_POLARITY);
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extcon_set_property_capability(info->edev, EXTCON_USB,
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EXTCON_PROP_USB_SS);
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extcon_set_property_capability(info->edev, EXTCON_USB_HOST,
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EXTCON_PROP_USB_SS);
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extcon_set_property_capability(info->edev, EXTCON_DISP_DP,
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EXTCON_PROP_USB_SS);
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extcon_set_property_capability(info->edev, EXTCON_DISP_DP,
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EXTCON_PROP_DISP_HPD);
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info->dr = DR_NONE;
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info->pr = false;
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platform_set_drvdata(pdev, info);
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/* Get PD events from the EC */
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@ -645,11 +645,6 @@ struct axp20x_dev {
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const struct regmap_irq_chip *regmap_irq_chip;
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};
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struct axp288_extcon_pdata {
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/* GPIO pin control to switch D+/D- lines b/w PMIC and SOC */
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struct gpio_desc *gpio_mux_cntl;
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};
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/* generic helper function for reading 9-16 bit wide regs */
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static inline int axp20x_read_variable_width(struct regmap *regmap,
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unsigned int reg, unsigned int width)
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@ -2904,16 +2904,33 @@ enum usb_pd_control_mux {
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USB_PD_CTRL_MUX_AUTO = 5,
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};
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enum usb_pd_control_swap {
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USB_PD_CTRL_SWAP_NONE = 0,
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USB_PD_CTRL_SWAP_DATA = 1,
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USB_PD_CTRL_SWAP_POWER = 2,
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USB_PD_CTRL_SWAP_VCONN = 3,
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USB_PD_CTRL_SWAP_COUNT
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};
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struct ec_params_usb_pd_control {
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uint8_t port;
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uint8_t role;
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uint8_t mux;
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uint8_t swap;
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} __packed;
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#define PD_CTRL_RESP_ENABLED_COMMS (1 << 0) /* Communication enabled */
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#define PD_CTRL_RESP_ENABLED_CONNECTED (1 << 1) /* Device connected */
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#define PD_CTRL_RESP_ENABLED_PD_CAPABLE (1 << 2) /* Partner is PD capable */
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#define PD_CTRL_RESP_ROLE_POWER BIT(0) /* 0=SNK/1=SRC */
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#define PD_CTRL_RESP_ROLE_DATA BIT(1) /* 0=UFP/1=DFP */
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#define PD_CTRL_RESP_ROLE_VCONN BIT(2) /* Vconn status */
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#define PD_CTRL_RESP_ROLE_DR_POWER BIT(3) /* Partner is dualrole power */
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#define PD_CTRL_RESP_ROLE_DR_DATA BIT(4) /* Partner is dualrole data */
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#define PD_CTRL_RESP_ROLE_USB_COMM BIT(5) /* Partner USB comm capable */
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#define PD_CTRL_RESP_ROLE_EXT_POWERED BIT(6) /* Partner externally powerd */
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struct ec_response_usb_pd_control_v1 {
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uint8_t enabled;
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uint8_t role;
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