提交 7b798658 编写于 作者: H Hans de Goede

sunxi: usb: Rename sunxi_usbc_foo functions to sunxi_usb_phy_bar

Rename the sunxi_usbc_foo functions to sunxi_usb_phy_bar to make it clear
that these are usb-phy functions. Also change the verbs & nouns in the suffix
to match the verbs & nouns used in the Linux kernels generic phy framework.

This patch purely renames things, it contains no functional changes.
Signed-off-by: NHans de Goede <hdegoede@redhat.com>
Acked-by: NIan Campbell <ijc@hellion.org.uk>
上级 a781c97a
/*
* Sunxi usb-controller code shared between the ehci and musb controllers
* Sunxi usb-phy code
*
* Copyright (C) 2014 Roman Byshko
*
* Roman Byshko <rbyshko@gmail.com>
* Copyright (C) 2015 Hans de Goede <hdegoede@redhat.com>
* Copyright (C) 2014 Roman Byshko <rbyshko@gmail.com>
*
* Based on code from
* Allwinner Technology Co., Ltd. <www.allwinnertech.com>
......@@ -41,13 +40,12 @@
#define SUNXI_EHCI_AHB_INCRX_ALIGN_EN (1 << 8)
#define SUNXI_EHCI_ULPI_BYPASS_EN (1 << 0)
static struct sunxi_usbc_hcd {
struct usb_hcd *hcd;
static struct sunxi_usb_phy {
int usb_rst_mask;
int gpio_vbus;
int gpio_vbus_det;
int id;
} sunxi_usbc_hcd[] = {
} sunxi_usb_phy[] = {
{
.usb_rst_mask = CCM_USB_CTRL_PHY0_RST | CCM_USB_CTRL_PHY0_CLK,
.id = 0,
......@@ -64,7 +62,7 @@ static struct sunxi_usbc_hcd {
#endif
};
static int enabled_hcd_count;
static int sunxi_usb_phy_enabled_count;
static int get_vbus_gpio(int index)
{
......@@ -84,7 +82,7 @@ static int get_vbus_detect_gpio(int index)
return -EINVAL;
}
static void usb_phy_write(struct sunxi_usbc_hcd *sunxi_usbc, int addr,
static void usb_phy_write(struct sunxi_usb_phy *phy, int addr,
int data, int len)
{
int j = 0, usbc_bit = 0;
......@@ -95,7 +93,7 @@ static void usb_phy_write(struct sunxi_usbc_hcd *sunxi_usbc, int addr,
writel(0, dest);
#endif
usbc_bit = 1 << (sunxi_usbc->id * 2);
usbc_bit = 1 << (phy->id * 2);
for (j = 0; j < len; j++) {
/* set the bit address to be written */
clrbits_le32(dest, 0xff << 8);
......@@ -116,24 +114,24 @@ static void usb_phy_write(struct sunxi_usbc_hcd *sunxi_usbc, int addr,
}
}
static void sunxi_usb_phy_init(struct sunxi_usbc_hcd *sunxi_usbc)
static void sunxi_usb_phy_config(struct sunxi_usb_phy *phy)
{
/* The following comments are machine
* translated from Chinese, you have been warned!
*/
/* Regulation 45 ohms */
if (sunxi_usbc->id == 0)
usb_phy_write(sunxi_usbc, 0x0c, 0x01, 1);
if (phy->id == 0)
usb_phy_write(phy, 0x0c, 0x01, 1);
/* adjust PHY's magnitude and rate */
usb_phy_write(sunxi_usbc, 0x20, 0x14, 5);
usb_phy_write(phy, 0x20, 0x14, 5);
/* threshold adjustment disconnect */
#if defined CONFIG_MACH_SUN4I || defined CONFIG_MACH_SUN6I
usb_phy_write(sunxi_usbc, 0x2a, 3, 2);
usb_phy_write(phy, 0x2a, 3, 2);
#else
usb_phy_write(sunxi_usbc, 0x2a, 2, 2);
usb_phy_write(phy, 0x2a, 2, 2);
#endif
return;
......@@ -162,110 +160,110 @@ static void sunxi_usb_phy_passby(int index, int enable)
return;
}
void sunxi_usbc_enable_squelch_detect(int index, int enable)
void sunxi_usb_phy_enable_squelch_detect(int index, int enable)
{
struct sunxi_usbc_hcd *sunxi_usbc = &sunxi_usbc_hcd[index];
struct sunxi_usb_phy *phy = &sunxi_usb_phy[index];
usb_phy_write(sunxi_usbc, 0x3c, enable ? 0 : 2, 2);
usb_phy_write(phy, 0x3c, enable ? 0 : 2, 2);
}
int sunxi_usbc_request_resources(int index)
int sunxi_usb_phy_probe(int index)
{
struct sunxi_usbc_hcd *sunxi_usbc = &sunxi_usbc_hcd[index];
struct sunxi_usb_phy *phy = &sunxi_usb_phy[index];
int ret = 0;
sunxi_usbc->gpio_vbus = get_vbus_gpio(index);
if (sunxi_usbc->gpio_vbus >= 0) {
ret |= gpio_request(sunxi_usbc->gpio_vbus, "usbc_vbus");
ret |= gpio_direction_output(sunxi_usbc->gpio_vbus, 0);
phy->gpio_vbus = get_vbus_gpio(index);
if (phy->gpio_vbus >= 0) {
ret |= gpio_request(phy->gpio_vbus, "usbc_vbus");
ret |= gpio_direction_output(phy->gpio_vbus, 0);
}
sunxi_usbc->gpio_vbus_det = get_vbus_detect_gpio(index);
if (sunxi_usbc->gpio_vbus_det >= 0) {
ret |= gpio_request(sunxi_usbc->gpio_vbus_det, "usbc_vbus_det");
ret |= gpio_direction_input(sunxi_usbc->gpio_vbus_det);
phy->gpio_vbus_det = get_vbus_detect_gpio(index);
if (phy->gpio_vbus_det >= 0) {
ret |= gpio_request(phy->gpio_vbus_det, "usbc_vbus_det");
ret |= gpio_direction_input(phy->gpio_vbus_det);
}
return ret;
}
int sunxi_usbc_free_resources(int index)
int sunxi_usb_phy_remove(int index)
{
struct sunxi_usbc_hcd *sunxi_usbc = &sunxi_usbc_hcd[index];
struct sunxi_usb_phy *phy = &sunxi_usb_phy[index];
int ret = 0;
if (sunxi_usbc->gpio_vbus >= 0)
ret |= gpio_free(sunxi_usbc->gpio_vbus);
if (phy->gpio_vbus >= 0)
ret |= gpio_free(phy->gpio_vbus);
if (sunxi_usbc->gpio_vbus_det >= 0)
ret |= gpio_free(sunxi_usbc->gpio_vbus_det);
if (phy->gpio_vbus_det >= 0)
ret |= gpio_free(phy->gpio_vbus_det);
return ret;
}
void sunxi_usbc_enable(int index)
void sunxi_usb_phy_init(int index)
{
struct sunxi_usbc_hcd *sunxi_usbc = &sunxi_usbc_hcd[index];
struct sunxi_usb_phy *phy = &sunxi_usb_phy[index];
struct sunxi_ccm_reg *ccm = (struct sunxi_ccm_reg *)SUNXI_CCM_BASE;
/* enable common PHY only once */
if (enabled_hcd_count == 0)
if (sunxi_usb_phy_enabled_count == 0)
setbits_le32(&ccm->usb_clk_cfg, CCM_USB_CTRL_PHYGATE);
setbits_le32(&ccm->usb_clk_cfg, sunxi_usbc->usb_rst_mask);
setbits_le32(&ccm->usb_clk_cfg, phy->usb_rst_mask);
sunxi_usb_phy_init(sunxi_usbc);
sunxi_usb_phy_config(phy);
if (sunxi_usbc->id != 0)
if (phy->id != 0)
sunxi_usb_phy_passby(index, SUNXI_USB_PASSBY_EN);
enabled_hcd_count++;
sunxi_usb_phy_enabled_count++;
}
void sunxi_usbc_disable(int index)
void sunxi_usb_phy_exit(int index)
{
struct sunxi_usbc_hcd *sunxi_usbc = &sunxi_usbc_hcd[index];
struct sunxi_usb_phy *phy = &sunxi_usb_phy[index];
struct sunxi_ccm_reg *ccm = (struct sunxi_ccm_reg *)SUNXI_CCM_BASE;
if (sunxi_usbc->id != 0)
if (phy->id != 0)
sunxi_usb_phy_passby(index, !SUNXI_USB_PASSBY_EN);
clrbits_le32(&ccm->usb_clk_cfg, sunxi_usbc->usb_rst_mask);
clrbits_le32(&ccm->usb_clk_cfg, phy->usb_rst_mask);
/* disable common PHY only once, for the last enabled hcd */
if (enabled_hcd_count == 1)
/* disable common PHY only once, for the last enabled phy */
if (sunxi_usb_phy_enabled_count == 1)
clrbits_le32(&ccm->usb_clk_cfg, CCM_USB_CTRL_PHYGATE);
enabled_hcd_count--;
sunxi_usb_phy_enabled_count--;
}
void sunxi_usbc_vbus_enable(int index)
void sunxi_usb_phy_power_on(int index)
{
struct sunxi_usbc_hcd *sunxi_usbc = &sunxi_usbc_hcd[index];
struct sunxi_usb_phy *phy = &sunxi_usb_phy[index];
if (sunxi_usbc->gpio_vbus >= 0)
gpio_set_value(sunxi_usbc->gpio_vbus, 1);
if (phy->gpio_vbus >= 0)
gpio_set_value(phy->gpio_vbus, 1);
}
void sunxi_usbc_vbus_disable(int index)
void sunxi_usb_phy_power_off(int index)
{
struct sunxi_usbc_hcd *sunxi_usbc = &sunxi_usbc_hcd[index];
struct sunxi_usb_phy *phy = &sunxi_usb_phy[index];
if (sunxi_usbc->gpio_vbus >= 0)
gpio_set_value(sunxi_usbc->gpio_vbus, 0);
if (phy->gpio_vbus >= 0)
gpio_set_value(phy->gpio_vbus, 0);
}
int sunxi_usbc_vbus_detect(int index)
int sunxi_usb_phy_vbus_detect(int index)
{
struct sunxi_usbc_hcd *sunxi_usbc = &sunxi_usbc_hcd[index];
struct sunxi_usb_phy *phy = &sunxi_usb_phy[index];
int err, retries = 3;
if (sunxi_usbc->gpio_vbus_det < 0) {
if (phy->gpio_vbus_det < 0) {
eprintf("Error: invalid vbus detection pin\n");
return sunxi_usbc->gpio_vbus_det;
return phy->gpio_vbus_det;
}
err = gpio_get_value(sunxi_usbc->gpio_vbus_det);
err = gpio_get_value(phy->gpio_vbus_det);
/*
* Vbus may have been provided by the board and just been turned of
* some milliseconds ago on reset, what we're measuring then is a
......@@ -273,7 +271,7 @@ int sunxi_usbc_vbus_detect(int index)
*/
while (err > 0 && retries--) {
mdelay(100);
err = gpio_get_value(sunxi_usbc->gpio_vbus_det);
err = gpio_get_value(phy->gpio_vbus_det);
}
return err;
......
/*
* Sunxi usb-controller code shared between the ehci and musb controllers
* Sunxi usb-phy code
*
* Copyright (C) 2014 Roman Byshko
*
* Roman Byshko <rbyshko@gmail.com>
* Copyright (C) 2015 Hans de Goede <hdegoede@redhat.com>
* Copyright (C) 2014 Roman Byshko <rbyshko@gmail.com>
*
* Based on code from
* Allwinner Technology Co., Ltd. <www.allwinnertech.com>
......@@ -11,13 +10,11 @@
* SPDX-License-Identifier: GPL-2.0+
*/
extern const struct musb_platform_ops sunxi_musb_ops;
int sunxi_usbc_request_resources(int index);
int sunxi_usbc_free_resources(int index);
void sunxi_usbc_enable(int index);
void sunxi_usbc_disable(int index);
void sunxi_usbc_vbus_enable(int index);
void sunxi_usbc_vbus_disable(int index);
int sunxi_usbc_vbus_detect(int index);
void sunxi_usbc_enable_squelch_detect(int index, int enable);
int sunxi_usb_phy_probe(int index);
int sunxi_usb_phy_remove(int index);
void sunxi_usb_phy_init(int index);
void sunxi_usb_phy_exit(int index);
void sunxi_usb_phy_power_on(int index);
void sunxi_usb_phy_power_off(int index);
int sunxi_usb_phy_vbus_detect(int index);
void sunxi_usb_phy_enable_squelch_detect(int index, int enable);
......@@ -452,6 +452,8 @@ void sunxi_board_init(void)
#endif
#if defined(CONFIG_MUSB_HOST) || defined(CONFIG_MUSB_GADGET)
extern const struct musb_platform_ops sunxi_musb_ops;
static struct musb_hdrc_config musb_config = {
.multipoint = 1,
.dyn_fifo = 1,
......
/*
* Copyright (C) 2014 Roman Byshko
* Sunxi ehci glue
*
* Roman Byshko <rbyshko@gmail.com>
* Copyright (C) 2015 Hans de Goede <hdegoede@redhat.com>
* Copyright (C) 2014 Roman Byshko <rbyshko@gmail.com>
*
* Based on code from
* Allwinner Technology Co., Ltd. <www.allwinnertech.com>
......@@ -21,7 +22,7 @@ int ehci_hcd_init(int index, enum usb_init_type init, struct ehci_hccr **hccr,
struct sunxi_ccm_reg *ccm = (struct sunxi_ccm_reg *)SUNXI_CCM_BASE;
int ahb_gate_offset, err;
err = sunxi_usbc_request_resources(index + 1);
err = sunxi_usb_phy_probe(index + 1);
if (err)
return err;
......@@ -32,8 +33,8 @@ int ehci_hcd_init(int index, enum usb_init_type init, struct ehci_hccr **hccr,
setbits_le32(&ccm->ahb_reset0_cfg, 1 << ahb_gate_offset);
#endif
sunxi_usbc_enable(index + 1);
sunxi_usbc_vbus_enable(index + 1);
sunxi_usb_phy_init(index + 1);
sunxi_usb_phy_power_on(index + 1);
if (index == 0)
*hccr = (void *)SUNXI_USB1_BASE;
......@@ -55,8 +56,8 @@ int ehci_hcd_stop(int index)
struct sunxi_ccm_reg *ccm = (struct sunxi_ccm_reg *)SUNXI_CCM_BASE;
int ahb_gate_offset;
sunxi_usbc_vbus_disable(index + 1);
sunxi_usbc_disable(index + 1);
sunxi_usb_phy_power_off(index + 1);
sunxi_usb_phy_exit(index + 1);
ahb_gate_offset = index ? AHB_GATE_OFFSET_USB_EHCI1 :
AHB_GATE_OFFSET_USB_EHCI0;
......@@ -65,5 +66,5 @@ int ehci_hcd_stop(int index)
#endif
clrbits_le32(&ccm->ahb_gate0, 1 << ahb_gate_offset);
return sunxi_usbc_free_resources(index + 1);
return sunxi_usb_phy_remove(index + 1);
}
......@@ -195,12 +195,12 @@ int usb_reset_root_port(void)
* when clearing reset on low-speed devices, temporary disable
* squelch detection to work around this.
*/
sunxi_usbc_enable_squelch_detect(0, 0);
sunxi_usb_phy_enable_squelch_detect(0, 0);
#endif
power = musb_readb(mbase, MUSB_POWER);
musb_writeb(mbase, MUSB_POWER, ~MUSB_POWER_RESET & power);
#ifdef CONFIG_ARCH_SUNXI
sunxi_usbc_enable_squelch_detect(0, 1);
sunxi_usb_phy_enable_squelch_detect(0, 1);
#endif
host->isr(0, host);
host_speed = (musb_readb(mbase, MUSB_POWER) & MUSB_POWER_HSMODE) ?
......
......@@ -214,7 +214,7 @@ static void sunxi_musb_enable(struct musb *musb)
if (is_host_enabled(musb)) {
/* port power on */
sunxi_usbc_vbus_enable(0);
sunxi_usb_phy_power_on(0);
}
}
......@@ -226,7 +226,7 @@ static void sunxi_musb_disable(struct musb *musb)
/* Put the controller back in a pristane state for "usb reset" */
if (musb->is_active) {
sunxi_usbc_disable(0);
sunxi_usb_phy_exit(0);
#ifdef CONFIG_SUNXI_GEN_SUN6I
clrbits_le32(&ccm->ahb_reset0_cfg, 1 << AHB_GATE_OFFSET_USB0);
#endif
......@@ -238,7 +238,7 @@ static void sunxi_musb_disable(struct musb *musb)
#ifdef CONFIG_SUNXI_GEN_SUN6I
setbits_le32(&ccm->ahb_reset0_cfg, 1 << AHB_GATE_OFFSET_USB0);
#endif
sunxi_usbc_enable(0);
sunxi_usb_phy_init(0);
musb->is_active = 0;
}
}
......@@ -250,15 +250,15 @@ static int sunxi_musb_init(struct musb *musb)
pr_debug("%s():\n", __func__);
err = sunxi_usbc_request_resources(0);
err = sunxi_usb_phy_probe(0);
if (err)
return err;
if (is_host_enabled(musb)) {
err = sunxi_usbc_vbus_detect(0);
err = sunxi_usb_phy_vbus_detect(0);
if (err) {
eprintf("Error: A charger is plugged into the OTG\n");
sunxi_usbc_free_resources(0);
sunxi_usb_phy_remove(0);
return -EIO;
}
}
......@@ -269,7 +269,7 @@ static int sunxi_musb_init(struct musb *musb)
#ifdef CONFIG_SUNXI_GEN_SUN6I
setbits_le32(&ccm->ahb_reset0_cfg, 1 << AHB_GATE_OFFSET_USB0);
#endif
sunxi_usbc_enable(0);
sunxi_usb_phy_init(0);
USBC_ConfigFIFO_Base();
USBC_EnableDpDmPullUp(musb->mregs);
......@@ -293,10 +293,10 @@ static int sunxi_musb_exit(struct musb *musb)
USBC_DisableDpDmPullUp(musb->mregs);
USBC_DisableIdPullUp(musb->mregs);
sunxi_usbc_vbus_disable(0);
sunxi_usbc_disable(0);
sunxi_usb_phy_power_off(0);
sunxi_usb_phy_exit(0);
return sunxi_usbc_free_resources(0);
return sunxi_usb_phy_remove(0);
}
const struct musb_platform_ops sunxi_musb_ops = {
......
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