* [PATCH 2/4] usb: typec: ucpd: Add ST UCPD driver
2026-08-19 16:33 [PATCH 1/4] dt-bindings: usb: Document ST UCPD Marek Vasut
@ 2026-08-19 16:33 ` Marek Vasut
2026-08-19 16:47 ` sashiko-bot
2026-08-19 16:33 ` [PATCH 3/4] arm64: dts: st: Add UCPD node on stm32mp231 Marek Vasut
` (2 subsequent siblings)
3 siblings, 1 reply; 7+ messages in thread
From: Marek Vasut @ 2026-08-19 16:33 UTC (permalink / raw)
To: linux-usb
Cc: fabrice.gasnier, Marek Vasut, Alexandre Torgue, Conor Dooley,
Greg Kroah-Hartman, Heikki Krogerus, Krzysztof Kozlowski,
Maxime Coquelin, Rob Herring, Sebastian Reichel, devicetree,
kernel, linux-arm-kernel, linux-kernel, linux-stm32
Add ST UCPD Type-C block driver. The UCPD integrates the physical
layer of the Power Delivery (PD), with CC signaling method, for
operation with Type-C cables. Vbus and Vconn control is performed
using an external chip, usually ST TCPP01/TCPP02/TCPP03 or similar.
Signed-off-by: Marek Vasut <marex@nabladev.com>
---
Cc: Alexandre Torgue <alexandre.torgue@foss.st.com>
Cc: Conor Dooley <conor+dt@kernel.org>
Cc: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
Cc: Heikki Krogerus <heikki.krogerus@linux.intel.com>
Cc: Krzysztof Kozlowski <krzk+dt@kernel.org>
Cc: Maxime Coquelin <mcoquelin.stm32@gmail.com>
Cc: Rob Herring <robh@kernel.org>
Cc: Sebastian Reichel <sebastian.reichel@collabora.com>
Cc: devicetree@vger.kernel.org
Cc: kernel@dh-electronics.com
Cc: linux-arm-kernel@lists.infradead.org
Cc: linux-kernel@vger.kernel.org
Cc: linux-stm32@st-md-mailman.stormreply.com
Cc: linux-usb@vger.kernel.org
---
drivers/usb/typec/tcpm/Kconfig | 9 +
drivers/usb/typec/tcpm/Makefile | 1 +
drivers/usb/typec/tcpm/ucpd.c | 951 ++++++++++++++++++++++++++++++++
3 files changed, 961 insertions(+)
create mode 100644 drivers/usb/typec/tcpm/ucpd.c
diff --git a/drivers/usb/typec/tcpm/Kconfig b/drivers/usb/typec/tcpm/Kconfig
index 00baa7503d452..eeab366ae08a8 100644
--- a/drivers/usb/typec/tcpm/Kconfig
+++ b/drivers/usb/typec/tcpm/Kconfig
@@ -91,4 +91,13 @@ config TYPEC_QCOM_PMIC
This driver enables Type-C role switching, orientation, Alternate
mode and Power Delivery support both for VBUS and VCONN.
+config TYPEC_ST_UCPD
+ tristate "ST UCPD Type-C Port Controller Manager driver"
+ depends on ARCH_STM32 || COMPILE_TEST
+ help
+ The ST UCPD Type-C block integrates the physical layer of the
+ Power Delivery (PD), with CC signaling method, for operation
+ with Type-C cables. Vbus and Vconn control is performed using
+ an external chip, usually ST TCPP01/TCPP02/TCPP03 or similar.
+
endif # TYPEC_TCPM
diff --git a/drivers/usb/typec/tcpm/Makefile b/drivers/usb/typec/tcpm/Makefile
index 7a8cad0c0bdb4..5cde6d9aedb2e 100644
--- a/drivers/usb/typec/tcpm/Makefile
+++ b/drivers/usb/typec/tcpm/Makefile
@@ -10,3 +10,4 @@ obj-$(CONFIG_TYPEC_TCPCI_MT6370) += tcpci_mt6370.o
obj-$(CONFIG_TYPEC_TCPCI_MAXIM) += tcpci_maxim.o
tcpci_maxim-y += tcpci_maxim_core.o maxim_contaminant.o
obj-$(CONFIG_TYPEC_QCOM_PMIC) += qcom/
+obj-$(CONFIG_TYPEC_ST_UCPD) += ucpd.o
diff --git a/drivers/usb/typec/tcpm/ucpd.c b/drivers/usb/typec/tcpm/ucpd.c
new file mode 100644
index 0000000000000..fa7c0ffbfd577
--- /dev/null
+++ b/drivers/usb/typec/tcpm/ucpd.c
@@ -0,0 +1,951 @@
+// SPDX-License-Identifier: GPL-2.0+
+/*
+ * Copyright 2026 Marek Vasut
+ *
+ * STM32MP2 UCPD Type-C Driver
+ */
+
+#include <linux/clk.h>
+#include <linux/delay.h>
+#include <linux/errno.h>
+#include <linux/gpio/consumer.h>
+#include <linux/interrupt.h>
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/mutex.h>
+#include <linux/nvmem-consumer.h>
+#include <linux/of.h>
+#include <linux/pinctrl/consumer.h>
+#include <linux/platform_device.h>
+#include <linux/regmap.h>
+#include <linux/regulator/consumer.h>
+#include <linux/reset.h>
+#include <linux/spinlock.h>
+#include <linux/types.h>
+#include <linux/usb.h>
+#include <linux/usb/pd.h>
+#include <linux/usb/tcpm.h>
+#include <linux/usb/typec.h>
+#include <linux/usb/typec_mux.h>
+
+#define UCPD_CFGR1 0x00
+#define UCPD_CFGR1_UCPDEN BIT(31)
+#define UCPD_CFGR1_RXDMAEN BIT(30)
+#define UCPD_CFGR1_TXDMAEN BIT(29)
+#define UCPD_CFGR1_RXORDSETEN GENMASK(28, 20)
+#define UCPD_CFGR1_RXORDSETEN_SOP BIT(20)
+#define UCPD_CFGR1_RXORDSETEN_SOP_PRIME BIT(21)
+#define UCPD_CFGR1_RXORDSETEN_SOP_PRIME_PRIME BIT(22)
+#define UCPD_CFGR1_RXORDSETEN_HRST BIT(23)
+#define UCPD_CFGR1_RXORDSETEN_CRST BIT(24)
+#define UCPD_CFGR1_RXORDSETEN_SOP_PRIME_DEBUG BIT(25)
+#define UCPD_CFGR1_RXORDSETEN_SOP_PRIME_PRIME_DEBUG BIT(26)
+#define UCPD_CFGR1_RXORDSETEN_SOP_EXT1 BIT(27)
+#define UCPD_CFGR1_RXORDSETEN_SOP_EXT2 BIT(28)
+#define UCPD_CFGR1_PSC_UCPDCLK GENMASK(19, 17)
+#define UCPD_CFGR1_TRANSWIN GENMASK(15, 11)
+#define UCPD_CFGR1_IFRGAP GENMASK(10, 6)
+#define UCPD_CFGR1_HBITCLKDIV GENMASK(5, 0)
+
+#define UCPD_CFGR2 0x04
+#define UCPD_CFGR2_WUPEN BIT(3)
+#define UCPD_CFGR2_FORCECLK BIT(2)
+#define UCPD_CFGR2_RXFILT2N3 BIT(1)
+#define UCPD_CFGR2_RXFILTDIS BIT(0)
+
+#define UCPD_CFGR3 0x08
+#define UCPD_CFGR3_TRIM_CC2_RP GENMASK(28, 25)
+#define UCPD_CFGR3_TRIM_CC2_RD GENMASK(19, 16)
+#define UCPD_CFGR3_TRIM_CC1_RP GENMASK(12, 9)
+#define UCPD_CFGR3_TRIM_CC1_RD GENMASK(3, 0)
+
+#define UCPD_CR 0x0c
+#define UCPD_CR_CC2TCDIS BIT(21)
+#define UCPD_CR_CC1TCDIS BIT(20)
+#define UCPD_CR_RDCH BIT(18)
+#define UCPD_CR_CCENABLE_CC2 BIT(11)
+#define UCPD_CR_CCENABLE_CC1 BIT(10)
+#define UCPD_CR_ANAMODE BIT(9) /* 0:SRC 1:SNK */
+#define UCPD_CR_ANASUBMODE GENMASK(8, 7)
+#define UCPD_CR_PHYCCSEL BIT(6) /* 0:CC1 1:CC2 */
+#define UCPD_CR_PHYRXEN BIT(5)
+#define UCPD_CR_RXMODE BIT(4)
+#define UCPD_CR_TXHRST BIT(3)
+#define UCPD_CR_TXSEND BIT(2)
+#define UCPD_CR_TXMODE GENMASK(1, 0)
+#define UCPD_CR_TXMODE_PACKET 0
+#define UCPD_CR_TXMODE_CABLE 1
+#define UCPD_CR_TXMODE_BIST 2
+
+#define UCPD_IMR 0x10
+#define UCPD_IMR_TYPECEVT2IE BIT(15)
+#define UCPD_IMR_TYPECEVT1IE BIT(14)
+#define UCPD_IMR_RXMSGENDIE BIT(12)
+#define UCPD_IMR_RXOVRIE BIT(11)
+#define UCPD_IMR_RXHRSTDETIE BIT(10)
+#define UCPD_IMR_RXORDDETIE BIT(9)
+#define UCPD_IMR_RXNEIE BIT(8)
+#define UCPD_IMR_TXUNDIE BIT(6)
+#define UCPD_IMR_HRSTSENTIE BIT(5)
+#define UCPD_IMR_HRSTDISCIE BIT(4)
+#define UCPD_IMR_TXMSGABTIE BIT(3)
+#define UCPD_IMR_TXMSGSENTIE BIT(2)
+#define UCPD_IMR_TXMSGDISCIE BIT(1)
+#define UCPD_IMR_TXISIE BIT(0)
+
+#define UCPD_SR 0x14
+#define UCPD_SR_TYPEC_VSTATE_CC2 GENMASK(19, 18)
+#define UCPD_SR_TYPEC_VSTATE_CC1 GENMASK(17, 16)
+#define UCPD_SR_TYPEC_VSTATE_CC_LOWEST 0
+#define UCPD_SR_TYPEC_VSTATE_CC_LOW 1
+#define UCPD_SR_TYPEC_VSTATE_CC_HIGH 2
+#define UCPD_SR_TYPEC_VSTATE_CC_HIGHEST 3
+#define UCPD_SR_TYPECEVT2 BIT(15)
+#define UCPD_SR_TYPECEVT1 BIT(14)
+#define UCPD_SR_RXERR BIT(13)
+#define UCPD_SR_RXMSGEND BIT(12)
+#define UCPD_SR_RXOVR BIT(11)
+#define UCPD_SR_RXHRSTDET BIT(10)
+#define UCPD_SR_RXORDDET BIT(9)
+#define UCPD_SR_RXNE BIT(8)
+#define UCPD_SR_TXUND BIT(6)
+#define UCPD_SR_HRSTSENT BIT(5)
+#define UCPD_SR_HRSTDISC BIT(4)
+#define UCPD_SR_TXMSGABT BIT(3)
+#define UCPD_SR_TXMSGSENT BIT(2)
+#define UCPD_SR_TXMSGDISC BIT(1)
+#define UCPD_SR_TXIS BIT(0)
+
+#define UCPD_ICR 0x18
+#define UCPD_ICR_TYPECEVT2CF BIT(15)
+#define UCPD_ICR_TYPECEVT1CF BIT(14)
+#define UCPD_ICR_RXMSGENDCF BIT(12)
+#define UCPD_ICR_RXOVRCF BIT(11)
+#define UCPD_ICR_RXHRSTDETCF BIT(10)
+#define UCPD_ICR_RXORDDETCF BIT(9)
+#define UCPD_ICR_TXUNDCF BIT(6)
+#define UCPD_ICR_HRSTSENTCF BIT(5)
+#define UCPD_ICR_HRSTDISCCF BIT(4)
+#define UCPD_ICR_TXMSGABTCF BIT(3)
+#define UCPD_ICR_TXMSGSENTCF BIT(2)
+#define UCPD_ICR_TXMSGDISCCF BIT(1)
+
+#define UCPD_TX_ORDSETR 0x1c
+#define UCPD_TX_ORDSETR_TXORDSET GENMASK(19, 0)
+#define SYNC1 0x18
+#define SYNC2 0x11
+#define SYNC3 0x06
+#define RST1 0x07
+#define RST2 0x19
+#define EOP 0x0d
+#define ORDSET(x, y, z, w) ((x) | ((x) << 5) | ((x) << 10) | ((x) << 15))
+#define UCPD_TX_ORDSETR_TXORDSET_SOP ORDSET(SYNC1, SYNC1, SYNC1, SYNC2)
+#define UCPD_TX_ORDSETR_TXORDSET_SOP_PRIME ORDSET(SYNC1, SYNC1, SYNC3, SYNC3)
+#define UCPD_TX_ORDSETR_TXORDSET_SOP_PRIME_PRIME ORDSET(SYNC1, SYNC3, SYNC1, SYNC3)
+#define UCPD_TX_ORDSETR_TXORDSET_HRST ORDSET(RST1, RST1, RST1, RST2)
+#define UCPD_TX_ORDSETR_TXORDSET_CRST ORDSET(RST1, SYNC1, RST1, RST3)
+#define UCPD_TX_ORDSETR_TXORDSET_SOP_PRIME_DEBUG ORDSET(SYNC1, RST2, RST2, SYNC3)
+#define UCPD_TX_ORDSETR_TXORDSET_SOP_PRIME_PRIME_DEBUG ORDSET(SYNC1, RST2, SYNC3, SYNC2)
+
+#define UCPD_TX_PAYSZR 0x20
+#define UCPD_TX_PAYSZR_TXPAYSZ GENMASK(9, 0)
+
+#define UCPD_TXDR 0x24
+#define UCPD_TXDR_TXDATA GENMASK(7, 0)
+
+#define UCPD_RX_ORDSETR 0x28
+#define UCPD_RX_ORDSETR_RXSOPKINVALID GENMASK(6, 4)
+#define UCPD_RX_ORDSETR_RXSOP3OF4 BIT(3)
+#define UCPD_RX_ORDSETR_RXORDSET GENMASK(2, 0)
+
+#define UCPD_RX_PAYSZR 0x2c
+#define UCPD_RX_PAYSZR_RXPAYSZ GENMASK(9, 0)
+
+#define UCPD_RXDR 0x30
+#define UCPD_RXDR_RXDATA GENMASK(7, 0)
+
+#define UCPD_RX_ORDEXTR1 0x34
+#define UCPD_RX_ORDEXTR1_RXSOPX1 GENMASK(19, 0)
+
+#define UCPD_RX_ORDEXTR2 0x38
+#define UCPD_RX_ORDEXTR2_RXSOPX2 GENMASK(19, 0)
+
+/* IDs that have no impact on the IP operation */
+#define UCPD_VERR 0x3f4
+#define UCPD_IPIDR 0x3f8
+#define UCPD_SIDR 0x3fc
+
+/* OTP trim offsets (base offset is handled by NVMEM) */
+#define OTP_TRIM_1A5_RP GENMASK(15, 12)
+#define OTP_TRIM_CC2_RD GENMASK(11, 8)
+#define OTP_TRIM_3A0_RP GENMASK(7, 4)
+#define OTP_TRIM_CC1_RD GENMASK(3, 0)
+
+static const struct regmap_range ucpd_readable_ranges[] = {
+ regmap_reg_range(UCPD_CFGR1, UCPD_SR),
+ regmap_reg_range(UCPD_TX_ORDSETR, UCPD_RX_ORDEXTR2),
+ regmap_reg_range(UCPD_VERR, UCPD_SIDR),
+};
+
+static const struct regmap_access_table ucpd_readable_table = {
+ .yes_ranges = ucpd_readable_ranges,
+ .n_yes_ranges = ARRAY_SIZE(ucpd_readable_ranges),
+};
+
+static const struct regmap_range ucpd_writeable_ranges[] = {
+ regmap_reg_range(UCPD_CFGR1, UCPD_IMR),
+ regmap_reg_range(UCPD_ICR, UCPD_TXDR),
+ regmap_reg_range(UCPD_RX_ORDEXTR1, UCPD_RX_ORDEXTR2),
+};
+
+static const struct regmap_access_table ucpd_writeable_table = {
+ .yes_ranges = ucpd_writeable_ranges,
+ .n_yes_ranges = ARRAY_SIZE(ucpd_writeable_ranges),
+};
+
+static const struct regmap_range ucpd_volatile_ranges[] = {
+ regmap_reg_range(UCPD_SR, UCPD_SR),
+ regmap_reg_range(UCPD_TXDR, UCPD_TXDR),
+ regmap_reg_range(UCPD_RX_ORDSETR, UCPD_RXDR),
+};
+
+static const struct regmap_access_table ucpd_volatile_table = {
+ .yes_ranges = ucpd_volatile_ranges,
+ .n_yes_ranges = ARRAY_SIZE(ucpd_volatile_ranges),
+};
+
+static const struct regmap_config ucpd_regmap_config = {
+ .reg_bits = 32,
+ .reg_stride = 4,
+ .val_bits = 32,
+ .max_register = UCPD_SIDR,
+ .rd_table = &ucpd_readable_table,
+ .wr_table = &ucpd_writeable_table,
+ .volatile_table = &ucpd_volatile_table,
+ .cache_type = REGCACHE_NONE/*FLAT*/,
+};
+
+struct ucpd {
+ struct device *dev;
+ struct tcpm_port *tcpm_port;
+ struct tcpc_dev tcpc_dev;
+ struct regmap *regmap;
+ struct reset_control *phy_reset;
+ struct regulator *vbus;
+ struct gpio_desc *vbus_in;
+ struct gpio_descs *vconn_gpios;
+ struct typec_switch *orient_sw;
+
+ /* Rp/Rd trimming */
+ u32 trim;
+
+ /* lock for sharing ucpd states */
+ struct mutex lock;
+
+ /* port status */
+ bool vconn_on;
+ bool vbus_on;
+ bool tx_pending;
+ enum typec_cc_polarity cc_polarity;
+ enum typec_cc_status cc1;
+ enum typec_cc_status cc2;
+ enum typec_role pwr_role;
+ enum typec_data_role data_role;
+};
+
+static struct ucpd *tcpm_to_ucpd(struct tcpc_dev *dev)
+{
+ return container_of(dev, struct ucpd, tcpc_dev);
+}
+
+static void tcpm_load_trim_rd(struct ucpd *ucpd)
+{
+ const u32 rd_cc1 = FIELD_GET(OTP_TRIM_CC1_RD, ucpd->trim);
+ const u32 rd_cc2 = FIELD_GET(OTP_TRIM_CC2_RD, ucpd->trim);
+ const u32 msk = UCPD_CFGR3_TRIM_CC2_RD | UCPD_CFGR3_TRIM_CC1_RD;
+ const u32 val = FIELD_PREP(UCPD_CFGR3_TRIM_CC1_RD, rd_cc1) |
+ FIELD_PREP(UCPD_CFGR3_TRIM_CC2_RD, rd_cc2);
+
+ regmap_update_bits(ucpd->regmap, UCPD_CFGR3, msk, val);
+}
+
+static void tcpm_load_trim_rp(struct ucpd *ucpd, bool rp3a0)
+{
+ const u32 rp_1a5 = FIELD_GET(OTP_TRIM_1A5_RP, ucpd->trim);
+ const u32 rp_3a0 = FIELD_GET(OTP_TRIM_3A0_RP, ucpd->trim);
+ const u32 msk = UCPD_CFGR3_TRIM_CC2_RP | UCPD_CFGR3_TRIM_CC1_RP;
+ const u32 val = FIELD_PREP(UCPD_CFGR3_TRIM_CC1_RP, rp3a0 ? rp_1a5 : rp_3a0) |
+ FIELD_PREP(UCPD_CFGR3_TRIM_CC2_RP, rp3a0 ? rp_1a5 : rp_3a0);
+
+ regmap_update_bits(ucpd->regmap, UCPD_CFGR3, msk, val);
+}
+
+static int tcpm_init(struct tcpc_dev *dev)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+
+ reset_control_assert(ucpd->phy_reset);
+ reset_control_status(ucpd->phy_reset);
+ fsleep(1000);
+ reset_control_deassert(ucpd->phy_reset);
+
+ /*
+ * UCPD clock is 16 MHz / 2 = 8 MHz
+ * Bit clock is 16 MHz / 2 / (13 + 1) ~= 570 kHz
+ */
+ regmap_write(ucpd->regmap, UCPD_CFGR1,
+ UCPD_CFGR1_RXORDSETEN_SOP |
+ UCPD_CFGR1_RXORDSETEN_SOP_PRIME |
+ UCPD_CFGR1_RXORDSETEN_SOP_PRIME_PRIME |
+ UCPD_CFGR1_RXORDSETEN_HRST |
+ UCPD_CFGR1_RXORDSETEN_CRST |
+ FIELD_PREP(UCPD_CFGR1_PSC_UCPDCLK, 1) |
+ FIELD_PREP(UCPD_CFGR1_TRANSWIN, 7) |
+ FIELD_PREP(UCPD_CFGR1_IFRGAP, 0x1f) |
+ FIELD_PREP(UCPD_CFGR1_HBITCLKDIV, 13));
+
+ regmap_set_bits(ucpd->regmap, UCPD_CFGR1, UCPD_CFGR1_UCPDEN);
+
+ tcpm_load_trim_rd(ucpd);
+ tcpm_load_trim_rp(ucpd, true);
+
+ regmap_set_bits(ucpd->regmap, UCPD_CR, UCPD_CR_CCENABLE_CC1 | UCPD_CR_CCENABLE_CC2);
+
+ regmap_write(ucpd->regmap, UCPD_ICR,
+ UCPD_IMR_TYPECEVT2IE | UCPD_IMR_TYPECEVT1IE |
+ UCPD_IMR_HRSTSENTIE | UCPD_IMR_HRSTDISCIE);
+ regmap_write(ucpd->regmap, UCPD_IMR,
+ UCPD_IMR_TYPECEVT2IE | UCPD_IMR_TYPECEVT1IE |
+ UCPD_IMR_HRSTSENTIE | UCPD_IMR_HRSTDISCIE);
+
+ return 0;
+}
+
+static int tcpm_get_vbus(struct tcpc_dev *dev)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+
+ return gpiod_get_value_cansleep(ucpd->vbus_in);
+}
+
+static int tcpm_set_cc(struct tcpc_dev *dev, enum typec_cc_status cc)
+{
+ const u32 ccmsk = UCPD_CR_CCENABLE_CC2 | UCPD_CR_CCENABLE_CC1 | UCPD_CR_ANASUBMODE;
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+ int ret = 0;
+ u32 ccset;
+
+ mutex_lock(&ucpd->lock);
+
+ if (ucpd->vconn_on) {
+ if (ucpd->cc_polarity == TYPEC_POLARITY_CC1)
+ ccset = UCPD_CR_CCENABLE_CC1;
+ if (ucpd->cc_polarity == TYPEC_POLARITY_CC2)
+ ccset = UCPD_CR_CCENABLE_CC2;
+ } else {
+ ccset = UCPD_CR_CCENABLE_CC1 | UCPD_CR_CCENABLE_CC2;
+ }
+
+ switch (cc) {
+ case TYPEC_CC_OPEN:
+ regmap_clear_bits(ucpd->regmap, UCPD_CR, ccmsk);
+ break;
+ case TYPEC_CC_RA:
+ regmap_update_bits(ucpd->regmap, UCPD_CR, ccmsk,
+ ccset | FIELD_PREP(UCPD_CR_ANASUBMODE, 0));
+ break;
+ case TYPEC_CC_RD:
+ regmap_update_bits(ucpd->regmap, UCPD_CR, ccmsk | UCPD_CR_ANAMODE,
+ ccset | UCPD_CR_ANAMODE | FIELD_PREP(UCPD_CR_ANASUBMODE, 1));
+ break;
+ case TYPEC_CC_RP_DEF:
+ case TYPEC_CC_RP_1_5:
+ tcpm_load_trim_rp(ucpd, false);
+ regmap_update_bits(ucpd->regmap, UCPD_CR, ccmsk | UCPD_CR_ANAMODE,
+ ccset | FIELD_PREP(UCPD_CR_ANASUBMODE, 2));
+ break;
+ case TYPEC_CC_RP_3_0:
+ tcpm_load_trim_rp(ucpd, true);
+ regmap_update_bits(ucpd->regmap, UCPD_CR, ccmsk | UCPD_CR_ANAMODE,
+ ccset | FIELD_PREP(UCPD_CR_ANASUBMODE, 3));
+ break;
+ default:
+ dev_err(ucpd->dev, "unsupported cc value %d", cc);
+ ret = -EINVAL;
+ break;
+ }
+
+ mutex_unlock(&ucpd->lock);
+
+ return ret;
+}
+
+static enum typec_cc_status tcpm_decode_cc(const int cr, const int cc)
+{
+ bool sink = !!(cr & UCPD_CR_ANAMODE);
+
+ switch (cc) {
+ case UCPD_SR_TYPEC_VSTATE_CC_LOWEST:
+ return TYPEC_CC_RA;
+ case UCPD_SR_TYPEC_VSTATE_CC_LOW:
+ return TYPEC_CC_RD;
+ case UCPD_SR_TYPEC_VSTATE_CC_HIGH:
+ return sink ? TYPEC_CC_RP_1_5 : TYPEC_CC_OPEN;
+ default:
+ return sink ? TYPEC_CC_RP_3_0 : TYPEC_CC_OPEN;
+ }
+}
+
+static int tcpm_get_cc(struct tcpc_dev *dev,
+ enum typec_cc_status *cc1,
+ enum typec_cc_status *cc2)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+ int cr, sr;
+
+ mutex_lock(&ucpd->lock);
+
+ regmap_read(ucpd->regmap, UCPD_CR, &cr);
+ regmap_read(ucpd->regmap, UCPD_SR, &sr);
+
+ if (cr & UCPD_CR_CCENABLE_CC1)
+ ucpd->cc1 = tcpm_decode_cc(cr, FIELD_GET(UCPD_SR_TYPEC_VSTATE_CC1, sr));
+ *cc1 = ucpd->cc1;
+
+ if (cr & UCPD_CR_CCENABLE_CC2)
+ ucpd->cc2 = tcpm_decode_cc(cr, FIELD_GET(UCPD_SR_TYPEC_VSTATE_CC2, sr));
+ *cc2 = ucpd->cc2;
+
+ mutex_unlock(&ucpd->lock);
+
+ return 0;
+}
+
+static int tcpm_set_polarity(struct tcpc_dev *dev,
+ enum typec_cc_polarity polarity)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+ int ret;
+
+ regmap_update_bits(ucpd->regmap, UCPD_CR, UCPD_CR_PHYCCSEL,
+ (polarity == TYPEC_POLARITY_CC1) ? 0 : UCPD_CR_PHYCCSEL);
+
+ if (!ucpd->orient_sw)
+ return 0;
+
+ if (polarity == TYPEC_POLARITY_CC1)
+ ret = typec_switch_set(ucpd->orient_sw, TYPEC_ORIENTATION_NORMAL);
+ else if (polarity == TYPEC_POLARITY_CC2)
+ ret = typec_switch_set(ucpd->orient_sw, TYPEC_ORIENTATION_REVERSE);
+ else
+ ret = typec_switch_set(ucpd->orient_sw, TYPEC_ORIENTATION_NONE);
+ if (ret)
+ dev_err(ucpd->dev, "failed to set orientation %d\n", ret);
+
+ return ret;
+}
+
+static int tcpm_set_vconn(struct tcpc_dev *dev, bool on)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+ DECLARE_BITMAP(bitmap, 2) = { };
+ enum typec_cc_status cc1, cc2;
+ int cr, sr;
+ int ret;
+
+ mutex_lock(&ucpd->lock);
+ if (ucpd->vconn_on == on) {
+ dev_err(ucpd->dev, "vconn is already %d\n", on);
+ goto done;
+ }
+
+ regmap_read(ucpd->regmap, UCPD_CR, &cr);
+ regmap_read(ucpd->regmap, UCPD_SR, &sr);
+
+ if (cr & UCPD_CR_CCENABLE_CC1)
+ cc1 = tcpm_decode_cc(cr, FIELD_GET(UCPD_SR_TYPEC_VSTATE_CC1, sr));
+ else
+ cc1 = TYPEC_CC_RA;
+
+ if (cr & UCPD_CR_CCENABLE_CC2)
+ cc2 = tcpm_decode_cc(cr, FIELD_GET(UCPD_SR_TYPEC_VSTATE_CC2, sr));
+ else
+ cc2 = TYPEC_CC_RA;
+
+ if (cc1 == TYPEC_CC_OPEN || cc1 == TYPEC_CC_RA) {
+ ucpd->cc_polarity = TYPEC_POLARITY_CC2;
+ } else if (cc2 == TYPEC_CC_OPEN || cc2 == TYPEC_CC_RA) {
+ ucpd->cc_polarity = TYPEC_POLARITY_CC1;
+ } else {
+ dev_err(ucpd->dev, "unknown CC polarity %d %d\n", cc1, cc2);
+ goto done;
+ }
+
+ if (on) {
+ regmap_update_bits(ucpd->regmap, UCPD_CR,
+ UCPD_CR_CCENABLE_CC2 | UCPD_CR_CCENABLE_CC1,
+ (ucpd->cc_polarity == TYPEC_POLARITY_CC1) ?
+ UCPD_CR_CCENABLE_CC1 : UCPD_CR_CCENABLE_CC2);
+ bitmap_write(bitmap, (ucpd->cc_polarity == TYPEC_POLARITY_CC1) ? 2 : 1, 0, 2);
+ ret = gpiod_multi_set_value_cansleep(ucpd->vconn_gpios, bitmap);
+ } else {
+ bitmap_write(bitmap, 0, 0, 2);
+ ret = gpiod_multi_set_value_cansleep(ucpd->vconn_gpios, bitmap);
+ regmap_set_bits(ucpd->regmap, UCPD_CR,
+ UCPD_CR_CCENABLE_CC2 | UCPD_CR_CCENABLE_CC1);
+ }
+
+ ucpd->vconn_on = on;
+
+done:
+ mutex_unlock(&ucpd->lock);
+
+ return ret;
+}
+
+static int tcpm_set_vbus(struct tcpc_dev *dev, bool on, bool charge)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+ int i, ret = 0;
+
+ mutex_lock(&ucpd->lock);
+ if (ucpd->vbus_on == on) {
+ dev_err(ucpd->dev, "vbus is already %d\n", on);
+ goto done;
+ }
+
+ if (on)
+ ret = regulator_enable(ucpd->vbus);
+ else
+ ret = regulator_disable(ucpd->vbus);
+
+ /* Wait a bit for the regulator and readback to sync. */
+ for (i = 0; i < 10; i++) {
+ if (regulator_is_enabled(ucpd->vbus) == gpiod_get_value_cansleep(ucpd->vbus_in))
+ break;
+ fsleep(100);
+ }
+ tcpm_vbus_change(ucpd->tcpm_port);
+
+ if (ret < 0) {
+ dev_err(ucpd->dev, "cannot set vbus regulator %d, ret=%d",
+ on, ret);
+ goto done;
+ }
+
+ ucpd->vbus_on = on;
+
+done:
+ mutex_unlock(&ucpd->lock);
+
+ return ret;
+}
+
+static int tcpm_set_pd_rx(struct tcpc_dev *dev, bool on)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+ const u32 rx_imr_mask = UCPD_IMR_RXNEIE | UCPD_IMR_RXORDDETIE |
+ UCPD_IMR_RXHRSTDETIE | UCPD_IMR_RXOVRIE;
+ const u32 rx_icr_mask = UCPD_ICR_RXORDDETCF | UCPD_ICR_RXHRSTDETCF |
+ UCPD_ICR_RXOVRCF;
+
+ mutex_lock(&ucpd->lock);
+
+ if (on) {
+ /* Clear out stale bits, unmask and enable PHY PD RX */
+ regmap_set_bits(ucpd->regmap, UCPD_ICR, rx_icr_mask);
+ regmap_set_bits(ucpd->regmap, UCPD_IMR, rx_imr_mask);
+ regmap_set_bits(ucpd->regmap, UCPD_CR, UCPD_CR_PHYRXEN);
+ } else {
+ /* Disable PHY PD RX and clear out stale bits. */
+ regmap_clear_bits(ucpd->regmap, UCPD_CR, UCPD_CR_PHYRXEN);
+ regmap_clear_bits(ucpd->regmap, UCPD_IMR, rx_imr_mask);
+ }
+
+ mutex_unlock(&ucpd->lock);
+
+ return 0;
+}
+
+static int tcpm_set_roles(struct tcpc_dev *dev, bool attached,
+ enum typec_role pwr, enum typec_data_role data)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+
+ ucpd->pwr_role = pwr;
+ ucpd->data_role = data;
+
+ return 0;
+}
+
+static int ucpd_pd_get_ordset(enum tcpm_transmit_type type, u32 *ordset)
+{
+ if (type == TCPC_TX_SOP)
+ *ordset = UCPD_TX_ORDSETR_TXORDSET_SOP;
+ else if (type == TCPC_TX_SOP_PRIME)
+ *ordset = UCPD_TX_ORDSETR_TXORDSET_SOP_PRIME;
+ else if (type == TCPC_TX_SOP_PRIME_PRIME)
+ *ordset = UCPD_TX_ORDSETR_TXORDSET_SOP_PRIME_PRIME;
+ else if (type == TCPC_TX_HARD_RESET)
+ *ordset = UCPD_TX_ORDSETR_TXORDSET_HRST;
+ else if (type == TCPC_TX_CABLE_RESET)
+ *ordset = UCPD_TX_ORDSETR_TXORDSET_CRST;
+ else if (type == TCPC_TX_SOP_DEBUG_PRIME)
+ *ordset = UCPD_TX_ORDSETR_TXORDSET_SOP_PRIME_DEBUG;
+ else if (type == TCPC_TX_SOP_DEBUG_PRIME_PRIME)
+ *ordset = UCPD_TX_ORDSETR_TXORDSET_SOP_PRIME_PRIME_DEBUG;
+ else
+ return -EINVAL;
+
+ return 0;
+}
+
+static int ucpd_pd_send_message(struct ucpd *ucpd, enum tcpm_transmit_type type,
+ const struct pd_message *msg)
+{
+ const int len = (pd_header_cnt_le(msg->header) * 4) + 2;
+ u8 *mh = (u8 *)(&msg->header);
+ u8 *mp = (u8 *)(msg->payload);
+ int count = 0, ret;
+ u32 ordset, val;
+
+ regmap_update_bits(ucpd->regmap, UCPD_CR,
+ UCPD_CR_TXHRST | UCPD_CR_TXSEND | UCPD_CR_TXMODE,
+ UCPD_CR_TXMODE_PACKET);
+
+ ret = ucpd_pd_get_ordset(type, &ordset);
+ if (ret)
+ return ret;
+
+ regmap_write(ucpd->regmap, UCPD_TX_ORDSETR, ordset);
+ regmap_write(ucpd->regmap, UCPD_TX_PAYSZR, len);
+
+ if (ucpd->tx_pending) {
+ regmap_read_poll_timeout(ucpd->regmap, UCPD_SR,
+ val, val & UCPD_SR_TXMSGSENT,
+ 0, 100000);
+ regmap_write(ucpd->regmap, UCPD_ICR, UCPD_ICR_TXMSGSENTCF);
+ ucpd->tx_pending = false;
+ }
+
+ /* Start the transfer */
+ regmap_set_bits(ucpd->regmap, UCPD_CR, UCPD_CR_TXSEND);
+
+ while (count < len) {
+ ret = regmap_read_poll_timeout(ucpd->regmap, UCPD_SR,
+ val, val & UCPD_SR_TXIS,
+ 0, 1000000);
+ if (ret)
+ return ret;
+
+ /* First two bytes are header, rest is message */
+ if (count < 2)
+ regmap_write(ucpd->regmap, UCPD_TXDR, mh[count]);
+ else
+ regmap_write(ucpd->regmap, UCPD_TXDR, mp[count - 2]);
+
+ count++;
+ }
+
+ ucpd->tx_pending = true;
+
+ return 0;
+}
+
+static int tcpm_pd_transmit(struct tcpc_dev *dev, enum tcpm_transmit_type type,
+ const struct pd_message *msg, unsigned int negotiated_rev)
+{
+ struct ucpd *ucpd = tcpm_to_ucpd(dev);
+ u32 ordset;
+ int ret;
+
+ mutex_lock(&ucpd->lock);
+ switch (type) {
+ case TCPC_TX_SOP:
+ ret = ucpd_pd_send_message(ucpd, type, msg);
+ break;
+ case TCPC_TX_HARD_RESET:
+ ret = ucpd_pd_get_ordset(type, &ordset);
+ if (ret)
+ return ret;
+
+ regmap_write(ucpd->regmap, UCPD_TX_ORDSETR, ordset);
+ regmap_update_bits(ucpd->regmap, UCPD_CR,
+ UCPD_CR_TXHRST | UCPD_CR_TXSEND | UCPD_CR_TXMODE,
+ UCPD_CR_TXHRST | UCPD_CR_TXMODE_PACKET);
+ break;
+ case TCPC_TX_CABLE_RESET:
+ ret = ucpd_pd_get_ordset(type, &ordset);
+ if (ret)
+ return ret;
+
+ regmap_write(ucpd->regmap, UCPD_TX_ORDSETR, ordset);
+ regmap_update_bits(ucpd->regmap, UCPD_CR,
+ UCPD_CR_TXHRST | UCPD_CR_TXSEND | UCPD_CR_TXMODE,
+ UCPD_CR_TXHRST | UCPD_CR_TXMODE_CABLE);
+ break;
+ case TCPC_TX_BIST_MODE_2:
+ regmap_update_bits(ucpd->regmap, UCPD_CR,
+ UCPD_CR_TXHRST | UCPD_CR_TXSEND | UCPD_CR_TXMODE,
+ UCPD_CR_TXHRST | UCPD_CR_TXMODE_BIST);
+ ret = 0;
+ break;
+ default:
+ dev_err(ucpd->dev, "type %d not supported", type);
+ ret = -EINVAL;
+ }
+ mutex_unlock(&ucpd->lock);
+
+ return ret;
+}
+
+static void ucpd_pd_read_message(struct ucpd *ucpd)
+{
+ const u32 mask = UCPD_SR_RXORDDET | UCPD_SR_RXNE | UCPD_SR_RXMSGEND;
+ struct pd_message pd_msg = { 0 };
+ u8 *mh = (u8 *)(&(pd_msg.header));
+ u8 *mp = (u8 *)(pd_msg.payload);
+ u32 val, rxdata;
+ int count = 0;
+ int len, ret;
+
+ /* RX */
+ for (;;) {
+ ret = regmap_read_poll_timeout(ucpd->regmap, UCPD_SR,
+ val, val & mask,
+ 0, PD_T_RECEIVER_RESPONSE * 1000);
+ if (ret) {
+ dev_err(ucpd->dev, "PD RX timeout (SR 0x%x, ret=%d)\n",
+ val, ret);
+ return;
+ }
+
+ if (val & UCPD_SR_RXORDDET)
+ regmap_write(ucpd->regmap, UCPD_ICR, UCPD_ICR_RXORDDETCF);
+
+ if (val & UCPD_SR_RXNE) {
+ regmap_read(ucpd->regmap, UCPD_RXDR, &rxdata);
+
+ /* First two bytes are header, rest is message */
+ if (count < 2)
+ mh[count] = rxdata & 0xff;
+ else
+ mp[count - 2] = rxdata & 0xff;
+ count++;
+ }
+
+ if (val & UCPD_SR_RXMSGEND) {
+ regmap_write(ucpd->regmap, UCPD_ICR, UCPD_ICR_RXMSGENDCF);
+ break;
+ }
+ }
+
+ len = pd_header_cnt_le(pd_msg.header) * 4;
+
+ /* Add 4 to length to include the CRC */
+ if (len > PD_MAX_PAYLOAD * 4) {
+ dev_err(ucpd->dev, "PD RX message too long %d", len);
+ return;
+ }
+
+ /*
+ * Check if we've read off a GoodCRC message. If so then indicate to
+ * TCPM that the previous transmission has completed. Otherwise we pass
+ * the received message over to TCPM for processing.
+ *
+ * We make this check here instead of basing the reporting decision on
+ * the IRQ event type, as it's possible for the ucpd to report the
+ * TX_SUCCESS and GCRCSENT events out of order on occasion, so we need
+ * to check the message type to ensure correct reporting to TCPM.
+ */
+ if (!len && (pd_header_type_le(pd_msg.header) == PD_CTRL_GOOD_CRC)) {
+ tcpm_pd_transmit_complete(ucpd->tcpm_port, TCPC_TX_SUCCESS);
+ } else {
+ struct pd_message msg = {
+ .header = PD_HEADER_LE(PD_CTRL_GOOD_CRC,
+ ucpd->pwr_role,
+ ucpd->data_role,
+ pd_header_rev_le(pd_msg.header),
+ pd_header_msgid_le(pd_msg.header),
+ 0),
+ };
+ ucpd_pd_send_message(ucpd, TCPC_TX_SOP, &msg);
+ tcpm_pd_receive(ucpd->tcpm_port, &pd_msg, TCPC_TX_SOP);
+ }
+}
+
+static irqreturn_t ucpd_irq(int irq, void *dev_id)
+{
+ struct ucpd *ucpd = dev_id;
+ int sr, mr;
+
+ mutex_lock(&ucpd->lock);
+
+ regmap_read(ucpd->regmap, UCPD_SR, &sr);
+ regmap_read(ucpd->regmap, UCPD_IMR, &mr);
+ sr &= mr;
+
+ if (sr & UCPD_SR_RXOVR) {
+ regmap_write(ucpd->regmap, UCPD_ICR, UCPD_ICR_RXOVRCF);
+ dev_warn_ratelimited(ucpd->dev, "PD RX overflow\n");
+ }
+
+ /* Received hard reset */
+ if (sr & UCPD_SR_RXHRSTDET) {
+ regmap_write(ucpd->regmap, UCPD_ICR, UCPD_ICR_RXHRSTDETCF);
+ tcpm_pd_hard_reset(ucpd->tcpm_port);
+ }
+
+ /* Received ordered set received or data, RX PD message */
+ if (sr & (UCPD_SR_RXORDDET | UCPD_SR_RXNE))
+ ucpd_pd_read_message(ucpd);
+
+ /* Handle CC line changes only for the enabled CC lines */
+ if (sr & (UCPD_SR_TYPECEVT2 | UCPD_SR_TYPECEVT1)) {
+ regmap_write(ucpd->regmap, UCPD_ICR,
+ sr & (UCPD_ICR_TYPECEVT2CF | UCPD_ICR_TYPECEVT1CF));
+
+ tcpm_cc_change(ucpd->tcpm_port);
+ tcpm_vbus_change(ucpd->tcpm_port);
+ }
+
+ mutex_unlock(&ucpd->lock);
+ return IRQ_HANDLED;
+}
+
+static int ucpd_probe(struct platform_device *pdev)
+{
+ struct device *dev = &pdev->dev;
+ struct clk_bulk_data *clk;
+ void __iomem *mmio;
+ struct ucpd *ucpd;
+ int irq, ret;
+
+ ucpd = devm_kzalloc(dev, sizeof(*ucpd), GFP_KERNEL);
+ if (!ucpd)
+ return -ENOMEM;
+
+ ret = nvmem_cell_read_variable_le_u32(dev, "trim", &ucpd->trim);
+ if (ret)
+ return dev_err_probe(dev, ret, "Failed to access nvmem\n");
+
+ mmio = devm_platform_ioremap_resource(pdev, 0);
+ if (IS_ERR(mmio))
+ return PTR_ERR(mmio);
+
+ irq = platform_get_irq(pdev, 0);
+ if (irq < 0)
+ return irq;
+
+ ucpd->dev = dev;
+ mutex_init(&ucpd->lock);
+
+ ret = devm_regulator_get_enable(ucpd->dev, "vdd33");
+ if (ret)
+ return ret;
+
+ ucpd->vconn_gpios = devm_gpiod_get_array(dev, "vconn", GPIOD_OUT_LOW);
+ if (IS_ERR(ucpd->vconn_gpios))
+ return PTR_ERR(ucpd->vconn_gpios);
+
+ if (ucpd->vconn_gpios->ndescs != 2)
+ return -EINVAL;
+
+ ucpd->phy_reset = devm_reset_control_get_exclusive(dev, "phy");
+ if (IS_ERR(ucpd->phy_reset))
+ return dev_err_probe(dev, PTR_ERR(ucpd->phy_reset),
+ "Failed to get PHY reset\n");
+
+ ret = devm_clk_bulk_get_all_enabled(dev, &clk);
+ if (ret < 0)
+ return dev_err_probe(dev, ret, "Failed to get clocks\n");
+
+ ucpd->regmap = devm_regmap_init_mmio(dev, mmio, &ucpd_regmap_config);
+ if (IS_ERR(ucpd->regmap))
+ return dev_err_probe(dev, PTR_ERR(ucpd->regmap),
+ "Failed to initialize regmap\n");
+
+ /* Set TCPC callbacks */
+ ucpd->tcpc_dev.init = tcpm_init;
+ ucpd->tcpc_dev.get_vbus = tcpm_get_vbus;
+ ucpd->tcpc_dev.set_vbus = tcpm_set_vbus;
+ ucpd->tcpc_dev.set_vconn = tcpm_set_vconn;
+ ucpd->tcpc_dev.set_cc = tcpm_set_cc;
+ ucpd->tcpc_dev.get_cc = tcpm_get_cc;
+ ucpd->tcpc_dev.set_polarity = tcpm_set_polarity;
+ ucpd->tcpc_dev.set_pd_rx = tcpm_set_pd_rx;
+ ucpd->tcpc_dev.set_roles = tcpm_set_roles;
+ ucpd->tcpc_dev.pd_transmit = tcpm_pd_transmit;
+
+ ucpd->tcpc_dev.fwnode = device_get_named_child_node(dev, "connector");
+ if (IS_ERR(ucpd->tcpc_dev.fwnode))
+ return PTR_ERR(ucpd->tcpc_dev.fwnode);
+
+ platform_set_drvdata(pdev, ucpd);
+
+ /* Vbus input GPIO is on the connector subnode. */
+ ucpd->vbus_in = devm_fwnode_gpiod_get(dev, ucpd->tcpc_dev.fwnode,
+ "vbus", GPIOD_IN, "vbus");
+ if (IS_ERR(ucpd->vbus_in)) {
+ ret = PTR_ERR(ucpd->vbus_in);
+ goto tcpm_put_fwnode;
+ }
+
+ ucpd->vbus = devm_regulator_get(ucpd->dev, "vbus");
+ if (IS_ERR(ucpd->vbus)) {
+ ret = PTR_ERR(ucpd->vbus);
+ goto tcpm_put_fwnode;
+ }
+
+ ucpd->orient_sw = fwnode_typec_switch_get(ucpd->tcpc_dev.fwnode);
+ if (IS_ERR(ucpd->orient_sw)) {
+ return dev_err_probe(dev, PTR_ERR(ucpd->orient_sw),
+ "Failed to get orientation switch\n");
+ }
+
+ ret = devm_request_threaded_irq(dev, irq, NULL, ucpd_irq,
+ IRQF_ONESHOT, "ucpd", ucpd);
+ if (ret < 0)
+ goto tcpm_put_fwnode;
+
+ ucpd->tcpm_port = tcpm_register_port(dev, &ucpd->tcpc_dev);
+ if (IS_ERR(ucpd->tcpm_port)) {
+ ret = PTR_ERR(ucpd->tcpm_port);
+ goto tcpm_put_fwnode;
+ }
+
+ return ret;
+
+tcpm_put_fwnode:
+ fwnode_handle_put(ucpd->tcpc_dev.fwnode);
+
+ return ret;
+}
+
+static void ucpd_remove(struct platform_device *pdev)
+{
+ struct ucpd *ucpd = platform_get_drvdata(pdev);
+
+ tcpm_unregister_port(ucpd->tcpm_port);
+ fwnode_handle_put(ucpd->tcpc_dev.fwnode);
+}
+
+static const struct of_device_id ucpd_dt_match[] = {
+ { .compatible = "st,stm32mp25-ucpd" },
+ {},
+};
+MODULE_DEVICE_TABLE(of, ucpd_dt_match);
+
+static struct platform_driver ucpd_driver = {
+ .probe = ucpd_probe,
+ .remove = ucpd_remove,
+ .driver = {
+ .name = "ucpd",
+ .of_match_table = ucpd_dt_match,
+ },
+};
+module_platform_driver(ucpd_driver);
+
+MODULE_AUTHOR("Marek Vasut");
+MODULE_DESCRIPTION("ST UCPD Type-C Chip Driver");
+MODULE_LICENSE("GPL");
--
2.53.0
^ permalink raw reply related [flat|nested] 7+ messages in thread