diff options
author | Linus Torvalds <torvalds@linux-foundation.org> | 2024-03-21 22:35:20 +0300 |
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committer | Linus Torvalds <torvalds@linux-foundation.org> | 2024-03-21 22:35:20 +0300 |
commit | e09bf86f3d53ecf4da61163d88036c4c16419d70 (patch) | |
tree | 48993f46e882041015edb54c0f9ef7e7f98bd5e0 /drivers/usb/typec | |
parent | 2ac2b1665d3fbec6ca709dd6ef3ea05f4a51ee4c (diff) | |
parent | a788e53c05aee6e3d60792a59e10c0fac56b5086 (diff) | |
download | linux-e09bf86f3d53ecf4da61163d88036c4c16419d70.tar.xz |
Merge tag 'usb-6.9-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/gregkh/usb
Pull USB / Thunderbolt updates from Greg KH:
"Here is the big set of USB and Thunderbolt changes for 6.9-rc1. Lots
of tiny changes and forward progress to support new hardware and
better support for existing devices. Included in here are:
- Thunderbolt (i.e. USB4) updates for newer hardware and uses as more
people start to use the hardware
- default USB authentication mode Kconfig and documentation update to
make it more obvious what is going on
- USB typec updates and enhancements
- usual dwc3 driver updates
- usual xhci driver updates
- function USB (i.e. gadget) driver updates and additions
- new device ids for lots of drivers
- loads of other small updates, full details in the shortlog
All of these, including a "last minute regression fix" have been in
linux-next with no reported issues"
* tag 'usb-6.9-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/gregkh/usb: (185 commits)
usb: usb-acpi: Fix oops due to freeing uninitialized pld pointer
usb: gadget: net2272: Use irqflags in the call to net2272_probe_fin
usb: gadget: tegra-xudc: Fix USB3 PHY retrieval logic
phy: tegra: xusb: Add API to retrieve the port number of phy
USB: gadget: pxa27x_udc: Remove unused of_gpio.h
usb: gadget/snps_udc_plat: Remove unused of_gpio.h
usb: ohci-pxa27x: Remove unused of_gpio.h
usb: sl811-hcd: only defined function checkdone if QUIRK2 is defined
usb: Clarify expected behavior of dev_bin_attrs_are_visible()
xhci: Allow RPM on the USB controller (1022:43f7) by default
usb: isp1760: remove SLAB_MEM_SPREAD flag usage
usb: misc: onboard_hub: use pointer consistently in the probe function
usb: gadget: fsl: Increase size of name buffer for endpoints
usb: gadget: fsl: Add of device table to enable module autoloading
usb: typec: tcpm: add support to set tcpc connector orientatition
usb: typec: tcpci: add generic tcpci fallback compatible
dt-bindings: usb: typec-tcpci: add tcpci fallback binding
usb: gadget: fsl-udc: Replace custom log wrappers by dev_{err,warn,dbg,vdbg}
usb: core: Set connect_type of ports based on DT node
dt-bindings: usb: Add downstream facing ports to realtek binding
...
Diffstat (limited to 'drivers/usb/typec')
28 files changed, 2647 insertions, 722 deletions
diff --git a/drivers/usb/typec/altmodes/displayport.c b/drivers/usb/typec/altmodes/displayport.c index f8ea3054be54..038dc51f429d 100644 --- a/drivers/usb/typec/altmodes/displayport.c +++ b/drivers/usb/typec/altmodes/displayport.c @@ -50,13 +50,17 @@ enum { enum dp_state { DP_STATE_IDLE, DP_STATE_ENTER, + DP_STATE_ENTER_PRIME, DP_STATE_UPDATE, DP_STATE_CONFIGURE, + DP_STATE_CONFIGURE_PRIME, DP_STATE_EXIT, + DP_STATE_EXIT_PRIME, }; struct dp_altmode { struct typec_displayport_data data; + struct typec_displayport_data data_prime; enum dp_state state; bool hpd; @@ -67,6 +71,7 @@ struct dp_altmode { struct typec_altmode *alt; const struct typec_altmode *port; struct fwnode_handle *connector_fwnode; + struct typec_altmode *plug_prime; }; static int dp_altmode_notify(struct dp_altmode *dp) @@ -99,12 +104,18 @@ static int dp_altmode_configure(struct dp_altmode *dp, u8 con) conf |= DP_CONF_UFP_U_AS_DFP_D; pin_assign = DP_CAP_UFP_D_PIN_ASSIGN(dp->alt->vdo) & DP_CAP_DFP_D_PIN_ASSIGN(dp->port->vdo); + /* Account for active cable capabilities */ + if (dp->plug_prime) + pin_assign &= DP_CAP_DFP_D_PIN_ASSIGN(dp->plug_prime->vdo); break; case DP_STATUS_CON_UFP_D: case DP_STATUS_CON_BOTH: /* NOTE: First acting as DP source */ conf |= DP_CONF_UFP_U_AS_UFP_D; pin_assign = DP_CAP_PIN_ASSIGN_UFP_D(dp->alt->vdo) & DP_CAP_PIN_ASSIGN_DFP_D(dp->port->vdo); + /* Account for active cable capabilities */ + if (dp->plug_prime) + pin_assign &= DP_CAP_UFP_D_PIN_ASSIGN(dp->plug_prime->vdo); break; default: break; @@ -130,6 +141,8 @@ static int dp_altmode_configure(struct dp_altmode *dp, u8 con) } dp->data.conf = conf; + if (dp->plug_prime) + dp->data_prime.conf = conf; return 0; } @@ -143,13 +156,16 @@ static int dp_altmode_status_update(struct dp_altmode *dp) if (configured && (dp->data.status & DP_STATUS_SWITCH_TO_USB)) { dp->data.conf = 0; - dp->state = DP_STATE_CONFIGURE; + dp->data_prime.conf = 0; + dp->state = dp->plug_prime ? DP_STATE_CONFIGURE_PRIME : + DP_STATE_CONFIGURE; } else if (dp->data.status & DP_STATUS_EXIT_DP_MODE) { dp->state = DP_STATE_EXIT; } else if (!(con & DP_CONF_CURRENTLY(dp->data.conf))) { ret = dp_altmode_configure(dp, con); if (!ret) { - dp->state = DP_STATE_CONFIGURE; + dp->state = dp->plug_prime ? DP_STATE_CONFIGURE_PRIME : + DP_STATE_CONFIGURE; if (dp->hpd != hpd) { dp->hpd = hpd; dp->pending_hpd = true; @@ -209,6 +225,19 @@ static int dp_altmode_configure_vdm(struct dp_altmode *dp, u32 conf) return ret; } +static int dp_altmode_configure_vdm_cable(struct dp_altmode *dp, u32 conf) +{ + int svdm_version = typec_altmode_get_cable_svdm_version(dp->plug_prime); + u32 header; + + if (svdm_version < 0) + return svdm_version; + + header = DP_HEADER(dp, svdm_version, DP_CMD_CONFIGURE); + + return typec_cable_altmode_vdm(dp->plug_prime, TYPEC_PLUG_SOP_P, header, &conf, 2); +} + static void dp_altmode_work(struct work_struct *work) { struct dp_altmode *dp = container_of(work, struct dp_altmode, work); @@ -225,6 +254,19 @@ static void dp_altmode_work(struct work_struct *work) if (ret && ret != -EBUSY) dev_err(&dp->alt->dev, "failed to enter mode\n"); break; + case DP_STATE_ENTER_PRIME: + ret = typec_cable_altmode_enter(dp->alt, TYPEC_PLUG_SOP_P, NULL); + /* + * If we fail to enter Alt Mode on SOP', then we should drop the + * plug from the driver and attempt to run the driver without + * it. + */ + if (ret && ret != -EBUSY) { + dev_err(&dp->alt->dev, "plug failed to enter mode\n"); + dp->state = DP_STATE_ENTER; + goto disable_prime; + } + break; case DP_STATE_UPDATE: svdm_version = typec_altmode_get_svdm_version(dp->alt); if (svdm_version < 0) @@ -243,10 +285,24 @@ static void dp_altmode_work(struct work_struct *work) dev_err(&dp->alt->dev, "unable to send Configure command (%d)\n", ret); break; + case DP_STATE_CONFIGURE_PRIME: + ret = dp_altmode_configure_vdm_cable(dp, dp->data_prime.conf); + if (ret) { + dev_err(&dp->plug_prime->dev, + "unable to send Configure command (%d)\n", + ret); + dp->state = DP_STATE_CONFIGURE; + goto disable_prime; + } + break; case DP_STATE_EXIT: if (typec_altmode_exit(dp->alt)) dev_err(&dp->alt->dev, "Exit Mode Failed!\n"); break; + case DP_STATE_EXIT_PRIME: + if (typec_cable_altmode_exit(dp->plug_prime, TYPEC_PLUG_SOP_P)) + dev_err(&dp->plug_prime->dev, "Exit Mode Failed!\n"); + break; default: break; } @@ -254,6 +310,13 @@ static void dp_altmode_work(struct work_struct *work) dp->state = DP_STATE_IDLE; mutex_unlock(&dp->lock); + return; + +disable_prime: + typec_altmode_put_plug(dp->plug_prime); + dp->plug_prime = NULL; + schedule_work(&dp->work); + mutex_unlock(&dp->lock); } static void dp_altmode_attention(struct typec_altmode *alt, const u32 vdo) @@ -314,6 +377,8 @@ static int dp_altmode_vdm(struct typec_altmode *alt, dp->hpd = false; sysfs_notify(&dp->alt->dev.kobj, "displayport", "hpd"); } + if (dp->plug_prime) + dp->state = DP_STATE_EXIT_PRIME; break; case DP_CMD_STATUS_UPDATE: dp->data.status = *vdo; @@ -348,10 +413,84 @@ err_unlock: return ret; } +static int dp_cable_altmode_vdm(struct typec_altmode *alt, enum typec_plug_index sop, + const u32 hdr, const u32 *vdo, int count) +{ + struct dp_altmode *dp = typec_altmode_get_drvdata(alt); + int cmd_type = PD_VDO_CMDT(hdr); + int cmd = PD_VDO_CMD(hdr); + int ret = 0; + + mutex_lock(&dp->lock); + + if (dp->state != DP_STATE_IDLE) { + ret = -EBUSY; + goto err_unlock; + } + + switch (cmd_type) { + case CMDT_RSP_ACK: + switch (cmd) { + case CMD_ENTER_MODE: + typec_altmode_update_active(dp->plug_prime, true); + dp->state = DP_STATE_ENTER; + break; + case CMD_EXIT_MODE: + dp->data_prime.status = 0; + dp->data_prime.conf = 0; + typec_altmode_update_active(dp->plug_prime, false); + break; + case DP_CMD_CONFIGURE: + dp->state = DP_STATE_CONFIGURE; + break; + default: + break; + } + break; + case CMDT_RSP_NAK: + switch (cmd) { + case DP_CMD_CONFIGURE: + dp->data_prime.conf = 0; + /* Attempt to configure on SOP, drop plug */ + typec_altmode_put_plug(dp->plug_prime); + dp->plug_prime = NULL; + dp->state = DP_STATE_CONFIGURE; + break; + default: + break; + } + break; + default: + break; + } + + if (dp->state != DP_STATE_IDLE) + schedule_work(&dp->work); + +err_unlock: + mutex_unlock(&dp->lock); + return ret; +} + static int dp_altmode_activate(struct typec_altmode *alt, int activate) { - return activate ? typec_altmode_enter(alt, NULL) : - typec_altmode_exit(alt); + struct dp_altmode *dp = typec_altmode_get_drvdata(alt); + int ret; + + if (activate) { + if (dp->plug_prime) { + ret = typec_cable_altmode_enter(alt, TYPEC_PLUG_SOP_P, NULL); + if (ret < 0) { + typec_altmode_put_plug(dp->plug_prime); + dp->plug_prime = NULL; + } else { + return ret; + } + } + return typec_altmode_enter(alt, NULL); + } else { + return typec_altmode_exit(alt); + } } static const struct typec_altmode_ops dp_altmode_ops = { @@ -360,6 +499,10 @@ static const struct typec_altmode_ops dp_altmode_ops = { .activate = dp_altmode_activate, }; +static const struct typec_cable_ops dp_cable_ops = { + .vdm = dp_cable_altmode_vdm, +}; + static const char * const configurations[] = { [DP_CONF_USB] = "USB", [DP_CONF_DFP_D] = "source", @@ -501,6 +644,7 @@ pin_assignment_store(struct device *dev, struct device_attribute *attr, /* Only send Configure command if a configuration has been set */ if (dp->alt->active && DP_CONF_CURRENTLY(dp->data.conf)) { + /* todo: send manual configure over SOP'*/ ret = dp_altmode_configure_vdm(dp, conf); if (ret) goto out_unlock; @@ -579,6 +723,7 @@ static const struct attribute_group *displayport_groups[] = { int dp_altmode_probe(struct typec_altmode *alt) { const struct typec_altmode *port = typec_altmode_get_partner(alt); + struct typec_altmode *plug = typec_altmode_get_plug(alt, TYPEC_PLUG_SOP_P); struct fwnode_handle *fwnode; struct dp_altmode *dp; @@ -603,6 +748,13 @@ int dp_altmode_probe(struct typec_altmode *alt) alt->desc = "DisplayPort"; alt->ops = &dp_altmode_ops; + if (plug) { + plug->desc = "Displayport"; + plug->cable_ops = &dp_cable_ops; + } + + dp->plug_prime = plug; + fwnode = dev_fwnode(alt->dev.parent->parent); /* typec_port fwnode */ if (fwnode_property_present(fwnode, "displayport")) dp->connector_fwnode = fwnode_find_reference(fwnode, "displayport", 0); @@ -612,8 +764,10 @@ int dp_altmode_probe(struct typec_altmode *alt) dp->connector_fwnode = NULL; typec_altmode_set_drvdata(alt, dp); + if (plug) + typec_altmode_set_drvdata(plug, dp); - dp->state = DP_STATE_ENTER; + dp->state = plug ? DP_STATE_ENTER_PRIME : DP_STATE_ENTER; schedule_work(&dp->work); return 0; @@ -625,6 +779,7 @@ void dp_altmode_remove(struct typec_altmode *alt) struct dp_altmode *dp = typec_altmode_get_drvdata(alt); cancel_work_sync(&dp->work); + typec_altmode_put_plug(dp->plug_prime); if (dp->connector_fwnode) { drm_connector_oob_hotplug_event(dp->connector_fwnode, diff --git a/drivers/usb/typec/bus.c b/drivers/usb/typec/bus.c index e95ec7e382bb..6ea103e1abae 100644 --- a/drivers/usb/typec/bus.c +++ b/drivers/usb/typec/bus.c @@ -245,6 +245,108 @@ typec_altmode_get_partner(struct typec_altmode *adev) EXPORT_SYMBOL_GPL(typec_altmode_get_partner); /* -------------------------------------------------------------------------- */ +/* API for cable alternate modes */ + +/** + * typec_cable_altmode_enter - Enter Mode + * @adev: The alternate mode + * @sop: Cable plug target for Enter Mode command + * @vdo: VDO for the Enter Mode command + * + * Alternate mode drivers use this function to enter mode on the cable plug. + * If the alternate mode does not require VDO, @vdo must be NULL. + */ +int typec_cable_altmode_enter(struct typec_altmode *adev, enum typec_plug_index sop, u32 *vdo) +{ + struct altmode *partner = to_altmode(adev)->partner; + struct typec_altmode *pdev; + + if (!adev || adev->active) + return 0; + + if (!partner) + return -ENODEV; + + pdev = &partner->adev; + + if (!pdev->active) + return -EPERM; + + if (!pdev->cable_ops || !pdev->cable_ops->enter) + return -EOPNOTSUPP; + + return pdev->cable_ops->enter(pdev, sop, vdo); +} +EXPORT_SYMBOL_GPL(typec_cable_altmode_enter); + +/** + * typec_cable_altmode_exit - Exit Mode + * @adev: The alternate mode + * @sop: Cable plug target for Exit Mode command + * + * The alternate mode drivers use this function to exit mode on the cable plug. + */ +int typec_cable_altmode_exit(struct typec_altmode *adev, enum typec_plug_index sop) +{ + struct altmode *partner = to_altmode(adev)->partner; + struct typec_altmode *pdev; + + if (!adev || !adev->active) + return 0; + + if (!partner) + return -ENODEV; + + pdev = &partner->adev; + + if (!pdev->cable_ops || !pdev->cable_ops->exit) + return -EOPNOTSUPP; + + return pdev->cable_ops->exit(pdev, sop); +} +EXPORT_SYMBOL_GPL(typec_cable_altmode_exit); + +/** + * typec_cable_altmode_vdm - Send Vendor Defined Messages (VDM) between the cable plug and port. + * @adev: Alternate mode handle + * @sop: Cable plug target for VDM + * @header: VDM Header + * @vdo: Array of Vendor Defined Data Objects + * @count: Number of Data Objects + * + * The alternate mode drivers use this function for SVID specific communication + * with the cable plugs. The port drivers use it to deliver the Structured VDMs + * received from the cable plugs to the alternate mode drivers. + */ +int typec_cable_altmode_vdm(struct typec_altmode *adev, enum typec_plug_index sop, + const u32 header, const u32 *vdo, int count) +{ + struct altmode *altmode; + struct typec_altmode *pdev; + + if (!adev) + return 0; + + altmode = to_altmode(adev); + + if (is_typec_plug(adev->dev.parent)) { + if (!altmode->partner) + return -ENODEV; + pdev = &altmode->partner->adev; + } else { + if (!altmode->plug[sop]) + return -ENODEV; + pdev = &altmode->plug[sop]->adev; + } + + if (!pdev->cable_ops || !pdev->cable_ops->vdm) + return -EOPNOTSUPP; + + return pdev->cable_ops->vdm(pdev, sop, header, vdo, count); +} +EXPORT_SYMBOL_GPL(typec_cable_altmode_vdm); + +/* -------------------------------------------------------------------------- */ /* API for the alternate mode drivers */ /** diff --git a/drivers/usb/typec/class.c b/drivers/usb/typec/class.c index 015aa9253353..389c7f0b8d93 100644 --- a/drivers/usb/typec/class.c +++ b/drivers/usb/typec/class.c @@ -21,7 +21,7 @@ static DEFINE_IDA(typec_index_ida); -struct class typec_class = { +const struct class typec_class = { .name = "typec", }; @@ -2132,6 +2132,46 @@ int typec_get_negotiated_svdm_version(struct typec_port *port) EXPORT_SYMBOL_GPL(typec_get_negotiated_svdm_version); /** + * typec_get_cable_svdm_version - Get cable negotiated SVDM Version + * @port: USB Type-C Port. + * + * Get the negotiated SVDM Version for the cable. The Version is set to the port + * default value based on the PD Revision during cable registration, and updated + * after a successful Discover Identity if the negotiated value is less than the + * default. + * + * Returns usb_pd_svdm_ver if the cable has been registered otherwise -ENODEV. + */ +int typec_get_cable_svdm_version(struct typec_port *port) +{ + enum usb_pd_svdm_ver svdm_version; + struct device *cable_dev; + + cable_dev = device_find_child(&port->dev, NULL, cable_match); + if (!cable_dev) + return -ENODEV; + + svdm_version = to_typec_cable(cable_dev)->svdm_version; + put_device(cable_dev); + + return svdm_version; +} +EXPORT_SYMBOL_GPL(typec_get_cable_svdm_version); + +/** + * typec_cable_set_svdm_version - Set negotiated Structured VDM (SVDM) Version + * @cable: USB Type-C Active Cable that supports SVDM + * @svdm_version: Negotiated SVDM Version + * + * This routine is used to save the negotiated SVDM Version. + */ +void typec_cable_set_svdm_version(struct typec_cable *cable, enum usb_pd_svdm_ver svdm_version) +{ + cable->svdm_version = svdm_version; +} +EXPORT_SYMBOL_GPL(typec_cable_set_svdm_version); + +/** * typec_get_drvdata - Return private driver data pointer * @port: USB Type-C port */ @@ -2281,6 +2321,25 @@ void typec_port_register_altmodes(struct typec_port *port, EXPORT_SYMBOL_GPL(typec_port_register_altmodes); /** + * typec_port_register_cable_ops - Register typec_cable_ops to port altmodes + * @altmodes: USB Type-C Port's altmode vector + * @max_altmodes: The maximum number of alt modes supported by the port + * @ops: Cable alternate mode vector + */ +void typec_port_register_cable_ops(struct typec_altmode **altmodes, int max_altmodes, + const struct typec_cable_ops *ops) +{ + int i; + + for (i = 0; i < max_altmodes; i++) { + if (!altmodes[i]) + return; + altmodes[i]->cable_ops = ops; + } +} +EXPORT_SYMBOL_GPL(typec_port_register_cable_ops); + +/** * typec_register_port - Register a USB Type-C Port * @parent: Parent device * @cap: Description of the port diff --git a/drivers/usb/typec/class.h b/drivers/usb/typec/class.h index c36761ba3f59..7485cdb9dd20 100644 --- a/drivers/usb/typec/class.h +++ b/drivers/usb/typec/class.h @@ -23,6 +23,7 @@ struct typec_cable { struct usb_pd_identity *identity; unsigned int active:1; u16 pd_revision; /* 0300H = "3.0" */ + enum usb_pd_svdm_ver svdm_version; }; struct typec_partner { @@ -92,9 +93,9 @@ extern const struct device_type typec_port_dev_type; #define is_typec_plug(dev) ((dev)->type == &typec_plug_dev_type) #define is_typec_port(dev) ((dev)->type == &typec_port_dev_type) -extern struct class typec_mux_class; -extern struct class retimer_class; -extern struct class typec_class; +extern const struct class typec_mux_class; +extern const struct class retimer_class; +extern const struct class typec_class; #if defined(CONFIG_ACPI) int typec_link_ports(struct typec_port *connector); diff --git a/drivers/usb/typec/mux.c b/drivers/usb/typec/mux.c index 80dd91938d96..49926d6e72c7 100644 --- a/drivers/usb/typec/mux.c +++ b/drivers/usb/typec/mux.c @@ -469,6 +469,6 @@ void *typec_mux_get_drvdata(struct typec_mux_dev *mux_dev) } EXPORT_SYMBOL_GPL(typec_mux_get_drvdata); -struct class typec_mux_class = { +const struct class typec_mux_class = { .name = "typec_mux", }; diff --git a/drivers/usb/typec/mux/Kconfig b/drivers/usb/typec/mux/Kconfig index d2cb5e733e57..399c7b0983df 100644 --- a/drivers/usb/typec/mux/Kconfig +++ b/drivers/usb/typec/mux/Kconfig @@ -36,6 +36,16 @@ config TYPEC_MUX_INTEL_PMC control the USB role switch and also the multiplexer/demultiplexer switches used with USB Type-C Alternate Modes. +config TYPEC_MUX_IT5205 + tristate "ITE IT5205 Type-C USB Alt Mode Passive MUX driver" + depends on I2C + select REGMAP_I2C + help + Driver for the ITE IT5205 Type-C USB Alternate Mode Passive MUX + which provides support for muxing DisplayPort and sideband signals + on a common USB Type-C connector. + If compiled as a module, the module will be named it5205. + config TYPEC_MUX_NB7VPQ904M tristate "On Semiconductor NB7VPQ904M Type-C redriver driver" depends on I2C diff --git a/drivers/usb/typec/mux/Makefile b/drivers/usb/typec/mux/Makefile index 57dc9ac6f8dc..bb96f30267af 100644 --- a/drivers/usb/typec/mux/Makefile +++ b/drivers/usb/typec/mux/Makefile @@ -4,6 +4,7 @@ obj-$(CONFIG_TYPEC_MUX_FSA4480) += fsa4480.o obj-$(CONFIG_TYPEC_MUX_GPIO_SBU) += gpio-sbu-mux.o obj-$(CONFIG_TYPEC_MUX_PI3USB30532) += pi3usb30532.o obj-$(CONFIG_TYPEC_MUX_INTEL_PMC) += intel_pmc_mux.o +obj-$(CONFIG_TYPEC_MUX_IT5205) += it5205.o obj-$(CONFIG_TYPEC_MUX_NB7VPQ904M) += nb7vpq904m.o obj-$(CONFIG_TYPEC_MUX_PTN36502) += ptn36502.o obj-$(CONFIG_TYPEC_MUX_WCD939X_USBSS) += wcd939x-usbss.o diff --git a/drivers/usb/typec/mux/it5205.c b/drivers/usb/typec/mux/it5205.c new file mode 100644 index 000000000000..5535932e42cd --- /dev/null +++ b/drivers/usb/typec/mux/it5205.c @@ -0,0 +1,294 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * ITE IT5205 Type-C USB alternate mode passive mux + * + * Copyright (c) 2020 MediaTek Inc. + * Copyright (c) 2024 Collabora Ltd. + * AngeloGioacchino Del Regno <angelogioacchino.delregno@collabora.com> + * + */ + +#include <linux/delay.h> +#include <linux/i2c.h> +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/of_platform.h> +#include <linux/platform_device.h> +#include <linux/regmap.h> +#include <linux/regulator/consumer.h> +#include <linux/usb/tcpm.h> +#include <linux/usb/typec.h> +#include <linux/usb/typec_dp.h> +#include <linux/usb/typec_mux.h> + +#define IT5205_REG_CHIP_ID(x) (0x4 + (x)) +#define IT5205FN_CHIP_ID 0x35323035 /* "5205" */ + +/* MUX power down register */ +#define IT5205_REG_MUXPDR 0x10 +#define IT5205_MUX_POWER_DOWN BIT(0) + +/* MUX control register */ +#define IT5205_REG_MUXCR 0x11 +#define IT5205_POLARITY_INVERTED BIT(4) +#define IT5205_DP_USB_CTRL_MASK GENMASK(3, 0) +#define IT5205_DP 0x0f +#define IT5205_DP_USB 0x03 +#define IT5205_USB 0x07 + +/* Vref Select Register */ +#define IT5205_REG_VSR 0x10 +#define IT5205_VREF_SELECT_MASK GENMASK(5, 4) +#define IT5205_VREF_SELECT_3_3V 0x00 +#define IT5205_VREF_SELECT_OFF 0x20 + +/* CSBU Over Voltage Protection Register */ +#define IT5205_REG_CSBUOVPSR 0x1e +#define IT5205_OVP_SELECT_MASK GENMASK(5, 4) +#define IT5205_OVP_3_90V 0x00 +#define IT5205_OVP_3_68V 0x10 +#define IT5205_OVP_3_62V 0x20 +#define IT5205_OVP_3_57V 0x30 + +/* CSBU Switch Register */ +#define IT5205_REG_CSBUSR 0x22 +#define IT5205_CSBUSR_SWITCH BIT(0) + +/* Interrupt Switch Register */ +#define IT5205_REG_ISR 0x25 +#define IT5205_ISR_CSBU_MASK BIT(4) +#define IT5205_ISR_CSBU_OVP BIT(0) + +struct it5205 { + struct i2c_client *client; + struct regmap *regmap; + struct typec_switch_dev *sw; + struct typec_mux_dev *mux; +}; + +static int it5205_switch_set(struct typec_switch_dev *sw, enum typec_orientation orientation) +{ + struct it5205 *it = typec_switch_get_drvdata(sw); + + switch (orientation) { + case TYPEC_ORIENTATION_NORMAL: + regmap_update_bits(it->regmap, IT5205_REG_MUXCR, + IT5205_POLARITY_INVERTED, 0); + break; + case TYPEC_ORIENTATION_REVERSE: + regmap_update_bits(it->regmap, IT5205_REG_MUXCR, + IT5205_POLARITY_INVERTED, IT5205_POLARITY_INVERTED); + break; + case TYPEC_ORIENTATION_NONE: + fallthrough; + default: + regmap_write(it->regmap, IT5205_REG_MUXCR, 0); + break; + } + + return 0; +} + +static int it5205_mux_set(struct typec_mux_dev *mux, struct typec_mux_state *state) +{ + struct it5205 *it = typec_mux_get_drvdata(mux); + u8 val; + + if (state->mode >= TYPEC_STATE_MODAL && + state->alt->svid != USB_TYPEC_DP_SID) + return -EINVAL; + + switch (state->mode) { + case TYPEC_STATE_USB: + val = IT5205_USB; + break; + case TYPEC_DP_STATE_C: + fallthrough; + case TYPEC_DP_STATE_E: + val = IT5205_DP; + break; + case TYPEC_DP_STATE_D: + val = IT5205_DP_USB; + break; + case TYPEC_STATE_SAFE: + fallthrough; + default: + val = 0; + break; + } + + return regmap_update_bits(it->regmap, IT5205_REG_MUXCR, + IT5205_DP_USB_CTRL_MASK, val); +} + +static irqreturn_t it5205_irq_handler(int irq, void *data) +{ + struct it5205 *it = data; + int ret; + u32 val; + + ret = regmap_read(it->regmap, IT5205_REG_ISR, &val); + if (ret) + return IRQ_NONE; + + if (val & IT5205_ISR_CSBU_OVP) { + dev_warn(&it->client->dev, "Overvoltage detected!\n"); + + /* Reset CSBU */ + regmap_update_bits(it->regmap, IT5205_REG_CSBUSR, + IT5205_CSBUSR_SWITCH, 0); + regmap_update_bits(it->regmap, IT5205_REG_CSBUSR, + IT5205_CSBUSR_SWITCH, IT5205_CSBUSR_SWITCH); + } + + return IRQ_HANDLED; +} + +static void it5205_enable_ovp(struct it5205 *it) +{ + /* Select Vref 3.3v */ + regmap_update_bits(it->regmap, IT5205_REG_VSR, + IT5205_VREF_SELECT_MASK, IT5205_VREF_SELECT_3_3V); + + /* Trigger OVP at 3.68V */ + regmap_update_bits(it->regmap, IT5205_REG_CSBUOVPSR, + IT5205_OVP_SELECT_MASK, IT5205_OVP_3_68V); + + /* Unmask OVP interrupt */ + regmap_update_bits(it->regmap, IT5205_REG_ISR, + IT5205_ISR_CSBU_MASK, 0); + + /* Enable CSBU Interrupt */ + regmap_update_bits(it->regmap, IT5205_REG_CSBUSR, + IT5205_CSBUSR_SWITCH, IT5205_CSBUSR_SWITCH); +} + +static const struct regmap_config it5205_regmap = { + .max_register = 0x2f, + .reg_bits = 8, + .val_bits = 8, +}; + +static int it5205_probe(struct i2c_client *client) +{ + struct typec_switch_desc sw_desc = { }; + struct typec_mux_desc mux_desc = { }; + struct device *dev = &client->dev; + struct it5205 *it; + u32 val, chipid = 0; + int i, ret; + + it = devm_kzalloc(dev, sizeof(*it), GFP_KERNEL); + if (!it) + return -ENOMEM; + + ret = devm_regulator_get_enable(dev, "vcc"); + if (ret) + return dev_err_probe(dev, ret, "Failed to get regulator\n"); + + it->client = client; + + it->regmap = devm_regmap_init_i2c(client, &it5205_regmap); + if (IS_ERR(it->regmap)) + return dev_err_probe(dev, PTR_ERR(it->regmap), + "Failed to init regmap\n"); + + /* IT5205 needs a long time to power up after enabling regulator */ + msleep(50); + + /* Unset poweroff bit */ + ret = regmap_write(it->regmap, IT5205_REG_MUXPDR, 0); + if (ret) + return dev_err_probe(dev, ret, "Failed to set power on\n"); + + /* Read the 32 bits ChipID */ + for (i = 3; i >= 0; i--) { + ret = regmap_read(it->regmap, IT5205_REG_CHIP_ID(i), &val); + if (ret) + return ret; + + chipid |= val << (i * 8); + } + + if (chipid != IT5205FN_CHIP_ID) + return dev_err_probe(dev, -EINVAL, + "Unknown ChipID 0x%x\n", chipid); + + /* Initialize as USB mode with default (non-inverted) polarity */ + ret = regmap_write(it->regmap, IT5205_REG_MUXCR, IT5205_USB); + if (ret) + return dev_err_probe(dev, ret, "Cannot set mode to USB\n"); + + sw_desc.drvdata = it; + sw_desc.fwnode = dev_fwnode(dev); + sw_desc.set = it5205_switch_set; + + it->sw = typec_switch_register(dev, &sw_desc); + if (IS_ERR(it->sw)) + return dev_err_probe(dev, PTR_ERR(it->sw), + "failed to register typec switch\n"); + + mux_desc.drvdata = it; + mux_desc.fwnode = dev_fwnode(dev); + mux_desc.set = it5205_mux_set; + + it->mux = typec_mux_register(dev, &mux_desc); + if (IS_ERR(it->mux)) { + typec_switch_unregister(it->sw); + return dev_err_probe(dev, PTR_ERR(it->mux), + "failed to register typec mux\n"); + } + + i2c_set_clientdata(client, it); + + if (of_property_read_bool(dev->of_node, "ite,ovp-enable") && client->irq) { + it5205_enable_ovp(it); + + ret = devm_request_threaded_irq(dev, client->irq, NULL, + it5205_irq_handler, + IRQF_ONESHOT, dev_name(dev), it); + if (ret) { + typec_mux_unregister(it->mux); + typec_switch_unregister(it->sw); + return dev_err_probe(dev, ret, "Failed to request irq\n"); + } + } + + return 0; +} + +static void it5205_remove(struct i2c_client *client) +{ + struct it5205 *it = i2c_get_clientdata(client); + + typec_mux_unregister(it->mux); + typec_switch_unregister(it->sw); +} + +static const struct i2c_device_id it5205_table[] = { + { "it5205" }, + { /* sentinel */ } +}; +MODULE_DEVICE_TABLE(i2c, it5205_table); + +static const struct of_device_id it5205_of_table[] = { + { .compatible = "ite,it5205" }, + { /* sentinel */ } +}; +MODULE_DEVICE_TABLE(of, it5205_of_table); + +static struct i2c_driver it5205_driver = { + .driver = { + .name = "it5205", + .of_match_table = it5205_of_table, + }, + .probe = it5205_probe, + .remove = it5205_remove, + .id_table = it5205_table, +}; +module_i2c_driver(it5205_driver); + +MODULE_AUTHOR("Tianping Fang <tianping.fang@mediatek.com>"); +MODULE_AUTHOR("AngeloGioacchino Del Regno <angelogioacchino.delregno@collabora.com>"); +MODULE_DESCRIPTION("ITE IT5205 alternate mode passive MUX driver"); +MODULE_LICENSE("GPL"); diff --git a/drivers/usb/typec/pd.c b/drivers/usb/typec/pd.c index b9cca2be76fc..d78c04a421bc 100644 --- a/drivers/usb/typec/pd.c +++ b/drivers/usb/typec/pd.c @@ -157,7 +157,7 @@ static const struct attribute_group source_fixed_supply_group = { }; __ATTRIBUTE_GROUPS(source_fixed_supply); -static struct device_type source_fixed_supply_type = { +static const struct device_type source_fixed_supply_type = { .name = "pdo", .release = pdo_release, .groups = source_fixed_supply_groups, @@ -182,7 +182,7 @@ static const struct attribute_group sink_fixed_supply_group = { }; __ATTRIBUTE_GROUPS(sink_fixed_supply); -static struct device_type sink_fixed_supply_type = { +static const struct device_type sink_fixed_supply_type = { .name = "pdo", .release = pdo_release, .groups = sink_fixed_supply_groups, @@ -213,7 +213,7 @@ static struct attribute *source_variable_supply_attrs[] = { }; ATTRIBUTE_GROUPS(source_variable_supply); -static struct device_type source_variable_supply_type = { +static const struct device_type source_variable_supply_type = { .name = "pdo", .release = pdo_release, .groups = source_variable_supply_groups, @@ -227,7 +227,7 @@ static struct attribute *sink_variable_supply_attrs[] = { }; ATTRIBUTE_GROUPS(sink_variable_supply); -static struct device_type sink_variable_supply_type = { +static const struct device_type sink_variable_supply_type = { .name = "pdo", .release = pdo_release, .groups = sink_variable_supply_groups, @@ -258,7 +258,7 @@ static struct attribute *source_battery_attrs[] = { }; ATTRIBUTE_GROUPS(source_battery); -static struct device_type source_battery_type = { +static const struct device_type source_battery_type = { .name = "pdo", .release = pdo_release, .groups = source_battery_groups, @@ -272,7 +272,7 @@ static struct attribute *sink_battery_attrs[] = { }; ATTRIBUTE_GROUPS(sink_battery); -static struct device_type sink_battery_type = { +static const struct device_type sink_battery_type = { .name = "pdo", .release = pdo_release, .groups = sink_battery_groups, @@ -339,7 +339,7 @@ static struct attribute *source_pps_attrs[] = { }; ATTRIBUTE_GROUPS(source_pps); -static struct device_type source_pps_type = { +static const struct device_type source_pps_type = { .name = "pdo", .release = pdo_release, .groups = source_pps_groups, @@ -353,7 +353,7 @@ static struct attribute *sink_pps_attrs[] = { }; ATTRIBUTE_GROUPS(sink_pps); -static struct device_type sink_pps_type = { +static const struct device_type sink_pps_type = { .name = "pdo", .release = pdo_release, .groups = sink_pps_groups, @@ -371,30 +371,30 @@ static const char * const apdo_supply_name[] = { [APDO_TYPE_PPS] = "programmable_supply", }; -static struct device_type *source_type[] = { +static const struct device_type *source_type[] = { [PDO_TYPE_FIXED] = &source_fixed_supply_type, [PDO_TYPE_BATT] = &source_battery_type, [PDO_TYPE_VAR] = &source_variable_supply_type, }; -static struct device_type *source_apdo_type[] = { +static const struct device_type *source_apdo_type[] = { [APDO_TYPE_PPS] = &source_pps_type, }; -static struct device_type *sink_type[] = { +static const struct device_type *sink_type[] = { [PDO_TYPE_FIXED] = &sink_fixed_supply_type, [PDO_TYPE_BATT] = &sink_battery_type, [PDO_TYPE_VAR] = &sink_variable_supply_type, }; -static struct device_type *sink_apdo_type[] = { +static const struct device_type *sink_apdo_type[] = { [APDO_TYPE_PPS] = &sink_pps_type, }; /* REVISIT: Export when EPR_*_Capabilities need to be supported. */ static int add_pdo(struct usb_power_delivery_capabilities *cap, u32 pdo, int position) { - struct device_type *type; + const struct device_type *type; const char *name; struct pdo *p; int ret; @@ -460,7 +460,7 @@ static void pd_capabilities_release(struct device *dev) kfree(to_usb_power_delivery_capabilities(dev)); } -static struct device_type pd_capabilities_type = { +static const struct device_type pd_capabilities_type = { .name = "capabilities", .release = pd_capabilities_release, }; @@ -575,7 +575,7 @@ static void pd_release(struct device *dev) kfree(pd); } -static struct device_type pd_type = { +static const struct device_type pd_type = { .name = "usb_power_delivery", .release = pd_release, .groups = pd_groups, diff --git a/drivers/usb/typec/retimer.c b/drivers/usb/typec/retimer.c index 4a7d1b5c4d86..b519fcf358ca 100644 --- a/drivers/usb/typec/retimer.c +++ b/drivers/usb/typec/retimer.c @@ -155,6 +155,6 @@ void *typec_retimer_get_drvdata(struct typec_retimer *retimer) } EXPORT_SYMBOL_GPL(typec_retimer_get_drvdata); -struct class retimer_class = { +const struct class retimer_class = { .name = "retimer", }; diff --git a/drivers/usb/typec/tcpm/fusb302.c b/drivers/usb/typec/tcpm/fusb302.c index bc21006e979c..ef18a448b740 100644 --- a/drivers/usb/typec/tcpm/fusb302.c +++ b/drivers/usb/typec/tcpm/fusb302.c @@ -1467,7 +1467,7 @@ static int fusb302_pd_read_message(struct fusb302_chip *chip, if ((!len) && (pd_header_type_le(msg->header) == PD_CTRL_GOOD_CRC)) tcpm_pd_transmit_complete(chip->tcpm_port, TCPC_TX_SUCCESS); else - tcpm_pd_receive(chip->tcpm_port, msg); + tcpm_pd_receive(chip->tcpm_port, msg, TCPC_TX_SOP); return ret; } diff --git a/drivers/usb/typec/tcpm/qcom/Makefile b/drivers/usb/typec/tcpm/qcom/Makefile index dc1e8832e197..cc23042b9487 100644 --- a/drivers/usb/typec/tcpm/qcom/Makefile +++ b/drivers/usb/typec/tcpm/qcom/Makefile @@ -3,4 +3,5 @@ obj-$(CONFIG_TYPEC_QCOM_PMIC) += qcom_pmic_tcpm.o qcom_pmic_tcpm-y += qcom_pmic_typec.o \ qcom_pmic_typec_port.o \ - qcom_pmic_typec_pdphy.o + qcom_pmic_typec_pdphy.o \ + qcom_pmic_typec_pdphy_stub.o \ diff --git a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec.c b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec.c index 1a2b4bddaa97..e48412cdcb0f 100644 --- a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec.c +++ b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec.c @@ -20,130 +20,15 @@ #include <drm/bridge/aux-bridge.h> +#include "qcom_pmic_typec.h" #include "qcom_pmic_typec_pdphy.h" #include "qcom_pmic_typec_port.h" struct pmic_typec_resources { - struct pmic_typec_pdphy_resources *pdphy_res; - struct pmic_typec_port_resources *port_res; + const struct pmic_typec_pdphy_resources *pdphy_res; + const struct pmic_typec_port_resources *port_res; }; -struct pmic_typec { - struct device *dev; - struct tcpm_port *tcpm_port; - struct tcpc_dev tcpc; - struct pmic_typec_pdphy *pmic_typec_pdphy; - struct pmic_typec_port *pmic_typec_port; - bool vbus_enabled; - struct mutex lock; /* VBUS state serialization */ -}; - -#define tcpc_to_tcpm(_tcpc_) container_of(_tcpc_, struct pmic_typec, tcpc) - -static int qcom_pmic_typec_get_vbus(struct tcpc_dev *tcpc) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - int ret; - - mutex_lock(&tcpm->lock); - ret = tcpm->vbus_enabled || qcom_pmic_typec_port_get_vbus(tcpm->pmic_typec_port); - mutex_unlock(&tcpm->lock); - - return ret; -} - -static int qcom_pmic_typec_set_vbus(struct tcpc_dev *tcpc, bool on, bool sink) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - int ret = 0; - - mutex_lock(&tcpm->lock); - if (tcpm->vbus_enabled == on) - goto done; - - ret = qcom_pmic_typec_port_set_vbus(tcpm->pmic_typec_port, on); - if (ret) - goto done; - - tcpm->vbus_enabled = on; - tcpm_vbus_change(tcpm->tcpm_port); - -done: - dev_dbg(tcpm->dev, "set_vbus set: %d result %d\n", on, ret); - mutex_unlock(&tcpm->lock); - - return ret; -} - -static int qcom_pmic_typec_set_vconn(struct tcpc_dev *tcpc, bool on) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - - return qcom_pmic_typec_port_set_vconn(tcpm->pmic_typec_port, on); -} - -static int qcom_pmic_typec_get_cc(struct tcpc_dev *tcpc, - enum typec_cc_status *cc1, - enum typec_cc_status *cc2) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - - return qcom_pmic_typec_port_get_cc(tcpm->pmic_typec_port, cc1, cc2); -} - -static int qcom_pmic_typec_set_cc(struct tcpc_dev *tcpc, - enum typec_cc_status cc) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - - return qcom_pmic_typec_port_set_cc(tcpm->pmic_typec_port, cc); -} - -static int qcom_pmic_typec_set_polarity(struct tcpc_dev *tcpc, - enum typec_cc_polarity pol) -{ - /* Polarity is set separately by phy-qcom-qmp.c */ - return 0; -} - -static int qcom_pmic_typec_start_toggling(struct tcpc_dev *tcpc, - enum typec_port_type port_type, - enum typec_cc_status cc) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - - return qcom_pmic_typec_port_start_toggling(tcpm->pmic_typec_port, - port_type, cc); -} - -static int qcom_pmic_typec_set_roles(struct tcpc_dev *tcpc, bool attached, - enum typec_role power_role, - enum typec_data_role data_role) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - - return qcom_pmic_typec_pdphy_set_roles(tcpm->pmic_typec_pdphy, - data_role, power_role); -} - -static int qcom_pmic_typec_set_pd_rx(struct tcpc_dev *tcpc, bool on) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - - return qcom_pmic_typec_pdphy_set_pd_rx(tcpm->pmic_typec_pdphy, on); -} - -static int qcom_pmic_typec_pd_transmit(struct tcpc_dev *tcpc, - enum tcpm_transmit_type type, - const struct pd_message *msg, - unsigned int negotiated_rev) -{ - struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); - - return qcom_pmic_typec_pdphy_pd_transmit(tcpm->pmic_typec_pdphy, type, - msg, negotiated_rev); -} - static int qcom_pmic_typec_init(struct tcpc_dev *tcpc) { return 0; @@ -157,7 +42,7 @@ static int qcom_pmic_typec_probe(struct platform_device *pdev) const struct pmic_typec_resources *res; struct regmap *regmap; struct device *bridge_dev; - u32 base[2]; + u32 base; int ret; res = of_device_get_match_data(dev); @@ -170,16 +55,6 @@ static int qcom_pmic_typec_probe(struct platform_device *pdev) tcpm->dev = dev; tcpm->tcpc.init = qcom_pmic_typec_init; - tcpm->tcpc.get_vbus = qcom_pmic_typec_get_vbus; - tcpm->tcpc.set_vbus = qcom_pmic_typec_set_vbus; - tcpm->tcpc.set_cc = qcom_pmic_typec_set_cc; - tcpm->tcpc.get_cc = qcom_pmic_typec_get_cc; - tcpm->tcpc.set_polarity = qcom_pmic_typec_set_polarity; - tcpm->tcpc.set_vconn = qcom_pmic_typec_set_vconn; - tcpm->tcpc.start_toggling = qcom_pmic_typec_start_toggling; - tcpm->tcpc.set_pd_rx = qcom_pmic_typec_set_pd_rx; - tcpm->tcpc.set_roles = qcom_pmic_typec_set_roles; - tcpm->tcpc.pd_transmit = qcom_pmic_typec_pd_transmit; regmap = dev_get_regmap(dev->parent, NULL); if (!regmap) { @@ -187,29 +62,30 @@ static int qcom_pmic_typec_probe(struct platform_device *pdev) return -ENODEV; } - ret = of_property_read_u32_array(np, "reg", base, 2); + ret = of_property_read_u32_index(np, "reg", 0, &base); if (ret) return ret; - tcpm->pmic_typec_port = qcom_pmic_typec_port_alloc(dev); - if (IS_ERR(tcpm->pmic_typec_port)) - return PTR_ERR(tcpm->pmic_typec_port); - - tcpm->pmic_typec_pdphy = qcom_pmic_typec_pdphy_alloc(dev); - if (IS_ERR(tcpm->pmic_typec_pdphy)) - return PTR_ERR(tcpm->pmic_typec_pdphy); - - ret = qcom_pmic_typec_port_probe(pdev, tcpm->pmic_typec_port, - res->port_res, regmap, base[0]); + ret = qcom_pmic_typec_port_probe(pdev, tcpm, + res->port_res, regmap, base); if (ret) return ret; - ret = qcom_pmic_typec_pdphy_probe(pdev, tcpm->pmic_typec_pdphy, - res->pdphy_res, regmap, base[1]); - if (ret) - return ret; + if (res->pdphy_res) { + ret = of_property_read_u32_index(np, "reg", 1, &base); + if (ret) + return ret; + + ret = qcom_pmic_typec_pdphy_probe(pdev, tcpm, + res->pdphy_res, regmap, base); + if (ret) + return ret; + } else { + ret = qcom_pmic_typec_pdphy_stub_probe(pdev, tcpm); + if (ret) + return ret; + } - mutex_init(&tcpm->lock); platform_set_drvdata(pdev, tcpm); tcpm->tcpc.fwnode = device_get_named_child_node(tcpm->dev, "connector"); @@ -226,13 +102,11 @@ static int qcom_pmic_typec_probe(struct platform_device *pdev) goto fwnode_remove; } - ret = qcom_pmic_typec_port_start(tcpm->pmic_typec_port, - tcpm->tcpm_port); + ret = tcpm->port_start(tcpm, tcpm->tcpm_port); if (ret) goto fwnode_remove; - ret = qcom_pmic_typec_pdphy_start(tcpm->pmic_typec_pdphy, - tcpm->tcpm_port); + ret = tcpm->pdphy_start(tcpm, tcpm->tcpm_port); if (ret) goto fwnode_remove; @@ -248,91 +122,25 @@ static void qcom_pmic_typec_remove(struct platform_device *pdev) { struct pmic_typec *tcpm = platform_get_drvdata(pdev); - qcom_pmic_typec_pdphy_stop(tcpm->pmic_typec_pdphy); - qcom_pmic_typec_port_stop(tcpm->pmic_typec_port); + tcpm->pdphy_stop(tcpm); + tcpm->port_stop(tcpm); tcpm_unregister_port(tcpm->tcpm_port); fwnode_remove_software_node(tcpm->tcpc.fwnode); } -static struct pmic_typec_pdphy_resources pm8150b_pdphy_res = { - .irq_params = { - { - .virq = PMIC_PDPHY_SIG_TX_IRQ, - .irq_name = "sig-tx", - }, - { - .virq = PMIC_PDPHY_SIG_RX_IRQ, - .irq_name = "sig-rx", - }, - { - .virq = PMIC_PDPHY_MSG_TX_IRQ, - .irq_name = "msg-tx", - }, - { - .virq = PMIC_PDPHY_MSG_RX_IRQ, - .irq_name = "msg-rx", - }, - { - .virq = PMIC_PDPHY_MSG_TX_FAIL_IRQ, - .irq_name = "msg-tx-failed", - }, - { - .virq = PMIC_PDPHY_MSG_TX_DISCARD_IRQ, - .irq_name = "msg-tx-discarded", - }, - { - .virq = PMIC_PDPHY_MSG_RX_DISCARD_IRQ, - .irq_name = "msg-rx-discarded", - }, - }, - .nr_irqs = 7, -}; - -static struct pmic_typec_port_resources pm8150b_port_res = { - .irq_params = { - { - .irq_name = "vpd-detect", - .virq = PMIC_TYPEC_VPD_IRQ, - }, - - { - .irq_name = "cc-state-change", - .virq = PMIC_TYPEC_CC_STATE_IRQ, - }, - { - .irq_name = "vconn-oc", - .virq = PMIC_TYPEC_VCONN_OC_IRQ, - }, - - { - .irq_name = "vbus-change", - .virq = PMIC_TYPEC_VBUS_IRQ, - }, - - { - .irq_name = "attach-detach", - .virq = PMIC_TYPEC_ATTACH_DETACH_IRQ, - }, - { - .irq_name = "legacy-cable-detect", - .virq = PMIC_TYPEC_LEGACY_CABLE_IRQ, - }, - - { - .irq_name = "try-snk-src-detect", - .virq = PMIC_TYPEC_TRY_SNK_SRC_IRQ, - }, - }, - .nr_irqs = 7, +static const struct pmic_typec_resources pm8150b_typec_res = { + .pdphy_res = &pm8150b_pdphy_res, + .port_res = &pm8150b_port_res, }; -static struct pmic_typec_resources pm8150b_typec_res = { - .pdphy_res = &pm8150b_pdphy_res, +static const struct pmic_typec_resources pmi632_typec_res = { + /* PD PHY not present */ .port_res = &pm8150b_port_res, }; static const struct of_device_id qcom_pmic_typec_table[] = { { .compatible = "qcom,pm8150b-typec", .data = &pm8150b_typec_res }, + { .compatible = "qcom,pmi632-typec", .data = &pmi632_typec_res }, { } }; MODULE_DEVICE_TABLE(of, qcom_pmic_typec_table); diff --git a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec.h b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec.h new file mode 100644 index 000000000000..3c75820c9187 --- /dev/null +++ b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec.h @@ -0,0 +1,27 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (c) 2023, Linaro Ltd. All rights reserved. + */ + +#ifndef __QCOM_PMIC_TYPEC_H__ +#define __QCOM_PMIC_TYPEC_H__ + +struct pmic_typec { + struct device *dev; + struct tcpm_port *tcpm_port; + struct tcpc_dev tcpc; + struct pmic_typec_pdphy *pmic_typec_pdphy; + struct pmic_typec_port *pmic_typec_port; + + int (*pdphy_start)(struct pmic_typec *tcpm, + struct tcpm_port *tcpm_port); + void (*pdphy_stop)(struct pmic_typec *tcpm); + + int (*port_start)(struct pmic_typec *tcpm, + struct tcpm_port *tcpm_port); + void (*port_stop)(struct pmic_typec *tcpm); +}; + +#define tcpc_to_tcpm(_tcpc_) container_of(_tcpc_, struct pmic_typec, tcpc) + +#endif diff --git a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy.c b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy.c index 52c81378e36e..6560f4fc98d5 100644 --- a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy.c +++ b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy.c @@ -14,8 +14,74 @@ #include <linux/slab.h> #include <linux/usb/pd.h> #include <linux/usb/tcpm.h> +#include "qcom_pmic_typec.h" #include "qcom_pmic_typec_pdphy.h" +/* PD PHY register offsets and bit fields */ +#define USB_PDPHY_MSG_CONFIG_REG 0x40 +#define MSG_CONFIG_PORT_DATA_ROLE BIT(3) +#define MSG_CONFIG_PORT_POWER_ROLE BIT(2) +#define MSG_CONFIG_SPEC_REV_MASK (BIT(1) | BIT(0)) + +#define USB_PDPHY_EN_CONTROL_REG 0x46 +#define CONTROL_ENABLE BIT(0) + +#define USB_PDPHY_RX_STATUS_REG 0x4A +#define RX_FRAME_TYPE (BIT(0) | BIT(1) | BIT(2)) + +#define USB_PDPHY_FRAME_FILTER_REG 0x4C +#define FRAME_FILTER_EN_HARD_RESET BIT(5) +#define FRAME_FILTER_EN_SOP BIT(0) + +#define USB_PDPHY_TX_SIZE_REG 0x42 +#define TX_SIZE_MASK 0xF + +#define USB_PDPHY_TX_CONTROL_REG 0x44 +#define TX_CONTROL_RETRY_COUNT(n) (((n) & 0x3) << 5) +#define TX_CONTROL_FRAME_TYPE(n) (((n) & 0x7) << 2) +#define TX_CONTROL_FRAME_TYPE_CABLE_RESET (0x1 << 2) +#define TX_CONTROL_SEND_SIGNAL BIT(1) +#define TX_CONTROL_SEND_MSG BIT(0) + +#define USB_PDPHY_RX_SIZE_REG 0x48 + +#define USB_PDPHY_RX_ACKNOWLEDGE_REG 0x4B +#define RX_BUFFER_TOKEN BIT(0) + +#define USB_PDPHY_BIST_MODE_REG 0x4E +#define BIST_MODE_MASK 0xF +#define BIST_ENABLE BIT(7) +#define PD_MSG_BIST 0x3 +#define PD_BIST_TEST_DATA_MODE 0x8 + +#define USB_PDPHY_TX_BUFFER_HDR_REG 0x60 +#define USB_PDPHY_TX_BUFFER_DATA_REG 0x62 + +#define USB_PDPHY_RX_BUFFER_REG 0x80 + +/* VDD regulator */ +#define VDD_PDPHY_VOL_MIN 2800000 /* uV */ +#define VDD_PDPHY_VOL_MAX 3300000 /* uV */ +#define VDD_PDPHY_HPM_LOAD 3000 /* uA */ + +/* Message Spec Rev field */ +#define PD_MSG_HDR_REV(hdr) (((hdr) >> 6) & 3) + +/* timers */ +#define RECEIVER_RESPONSE_TIME 15 /* tReceiverResponse */ +#define HARD_RESET_COMPLETE_TIME 5 /* tHardResetComplete */ + +/* Interrupt numbers */ +#define PMIC_PDPHY_SIG_TX_IRQ 0x0 +#define PMIC_PDPHY_SIG_RX_IRQ 0x1 +#define PMIC_PDPHY_MSG_TX_IRQ 0x2 +#define PMIC_PDPHY_MSG_RX_IRQ 0x3 +#define PMIC_PDPHY_MSG_TX_FAIL_IRQ 0x4 +#define PMIC_PDPHY_MSG_TX_DISCARD_IRQ 0x5 +#define PMIC_PDPHY_MSG_RX_DISCARD_IRQ 0x6 +#define PMIC_PDPHY_FR_SWAP_IRQ 0x7 + + struct pmic_typec_pdphy_irq_data { int virq; int irq; @@ -231,11 +297,13 @@ done: return ret; } -int qcom_pmic_typec_pdphy_pd_transmit(struct pmic_typec_pdphy *pmic_typec_pdphy, - enum tcpm_transmit_type type, - const struct pd_message *msg, - unsigned int negotiated_rev) +static int qcom_pmic_typec_pdphy_pd_transmit(struct tcpc_dev *tcpc, + enum tcpm_transmit_type type, + const struct pd_message *msg, + unsigned int negotiated_rev) { + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_pdphy *pmic_typec_pdphy = tcpm->pmic_typec_pdphy; struct device *dev = pmic_typec_pdphy->dev; int ret; @@ -299,7 +367,7 @@ done: if (!ret) { dev_vdbg(dev, "pd_receive: handing %d bytes to tcpm\n", size); - tcpm_pd_receive(pmic_typec_pdphy->tcpm_port, &msg); + tcpm_pd_receive(pmic_typec_pdphy->tcpm_port, &msg, TCPC_TX_SOP); } } @@ -336,8 +404,10 @@ static irqreturn_t qcom_pmic_typec_pdphy_isr(int irq, void *dev_id) return IRQ_HANDLED; } -int qcom_pmic_typec_pdphy_set_pd_rx(struct pmic_typec_pdphy *pmic_typec_pdphy, bool on) +static int qcom_pmic_typec_pdphy_set_pd_rx(struct tcpc_dev *tcpc, bool on) { + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_pdphy *pmic_typec_pdphy = tcpm->pmic_typec_pdphy; unsigned long flags; int ret; @@ -353,9 +423,12 @@ int qcom_pmic_typec_pdphy_set_pd_rx(struct pmic_typec_pdphy *pmic_typec_pdphy, b return ret; } -int qcom_pmic_typec_pdphy_set_roles(struct pmic_typec_pdphy *pmic_typec_pdphy, - bool data_role_host, bool power_role_src) +static int qcom_pmic_typec_pdphy_set_roles(struct tcpc_dev *tcpc, bool attached, + enum typec_role power_role, + enum typec_data_role data_role) { + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_pdphy *pmic_typec_pdphy = tcpm->pmic_typec_pdphy; struct device *dev = pmic_typec_pdphy->dev; unsigned long flags; int ret; @@ -366,12 +439,13 @@ int qcom_pmic_typec_pdphy_set_roles(struct pmic_typec_pdphy *pmic_typec_pdphy, pmic_typec_pdphy->base + USB_PDPHY_MSG_CONFIG_REG, MSG_CONFIG_PORT_DATA_ROLE | MSG_CONFIG_PORT_POWER_ROLE, - data_role_host << 3 | power_role_src << 2); + (data_role == TYPEC_HOST ? MSG_CONFIG_PORT_DATA_ROLE : 0) | + (power_role == TYPEC_SOURCE ? MSG_CONFIG_PORT_POWER_ROLE : 0)); spin_unlock_irqrestore(&pmic_typec_pdphy->lock, flags); dev_dbg(dev, "pdphy_set_roles: data_role_host=%d power_role_src=%d\n", - data_role_host, power_role_src); + data_role, power_role); return ret; } @@ -435,9 +509,10 @@ done: return ret; } -int qcom_pmic_typec_pdphy_start(struct pmic_typec_pdphy *pmic_typec_pdphy, - struct tcpm_port *tcpm_port) +static int qcom_pmic_typec_pdphy_start(struct pmic_typec *tcpm, + struct tcpm_port *tcpm_port) { + struct pmic_typec_pdphy *pmic_typec_pdphy = tcpm->pmic_typec_pdphy; int i; int ret; @@ -457,8 +532,9 @@ int qcom_pmic_typec_pdphy_start(struct pmic_typec_pdphy *pmic_typec_pdphy, return 0; } -void qcom_pmic_typec_pdphy_stop(struct pmic_typec_pdphy *pmic_typec_pdphy) +static void qcom_pmic_typec_pdphy_stop(struct pmic_typec *tcpm) { + struct pmic_typec_pdphy *pmic_typec_pdphy = tcpm->pmic_typec_pdphy; int i; for (i = 0; i < pmic_typec_pdphy->nr_irqs; i++) @@ -469,21 +545,21 @@ void qcom_pmic_typec_pdphy_stop(struct pmic_typec_pdphy *pmic_typec_pdphy) regulator_disable(pmic_typec_pdphy->vdd_pdphy); } -struct pmic_typec_pdphy *qcom_pmic_typec_pdphy_alloc(struct device *dev) -{ - return devm_kzalloc(dev, sizeof(struct pmic_typec_pdphy), GFP_KERNEL); -} - int qcom_pmic_typec_pdphy_probe(struct platform_device *pdev, - struct pmic_typec_pdphy *pmic_typec_pdphy, - struct pmic_typec_pdphy_resources *res, + struct pmic_typec *tcpm, + const struct pmic_typec_pdphy_resources *res, struct regmap *regmap, u32 base) { + struct pmic_typec_pdphy *pmic_typec_pdphy; struct device *dev = &pdev->dev; struct pmic_typec_pdphy_irq_data *irq_data; int i, ret, irq; + pmic_typec_pdphy = devm_kzalloc(dev, sizeof(*pmic_typec_pdphy), GFP_KERNEL); + if (!pmic_typec_pdphy) + return -ENOMEM; + if (!res->nr_irqs || res->nr_irqs > PMIC_PDPHY_MAX_IRQS) return -EINVAL; @@ -522,5 +598,48 @@ int qcom_pmic_typec_pdphy_probe(struct platform_device *pdev, return ret; } + tcpm->pmic_typec_pdphy = pmic_typec_pdphy; + + tcpm->tcpc.set_pd_rx = qcom_pmic_typec_pdphy_set_pd_rx; + tcpm->tcpc.set_roles = qcom_pmic_typec_pdphy_set_roles; + tcpm->tcpc.pd_transmit = qcom_pmic_typec_pdphy_pd_transmit; + + tcpm->pdphy_start = qcom_pmic_typec_pdphy_start; + tcpm->pdphy_stop = qcom_pmic_typec_pdphy_stop; + return 0; } + +const struct pmic_typec_pdphy_resources pm8150b_pdphy_res = { + .irq_params = { + { + .virq = PMIC_PDPHY_SIG_TX_IRQ, + .irq_name = "sig-tx", + }, + { + .virq = PMIC_PDPHY_SIG_RX_IRQ, + .irq_name = "sig-rx", + }, + { + .virq = PMIC_PDPHY_MSG_TX_IRQ, + .irq_name = "msg-tx", + }, + { + .virq = PMIC_PDPHY_MSG_RX_IRQ, + .irq_name = "msg-rx", + }, + { + .virq = PMIC_PDPHY_MSG_TX_FAIL_IRQ, + .irq_name = "msg-tx-failed", + }, + { + .virq = PMIC_PDPHY_MSG_TX_DISCARD_IRQ, + .irq_name = "msg-tx-discarded", + }, + { + .virq = PMIC_PDPHY_MSG_RX_DISCARD_IRQ, + .irq_name = "msg-rx-discarded", + }, + }, + .nr_irqs = 7, +}; diff --git a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy.h b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy.h index e67954e31b14..04dee20293cf 100644 --- a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy.h +++ b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy.h @@ -8,74 +8,6 @@ #include <linux/platform_device.h> #include <linux/regmap.h> -#include <linux/usb/tcpm.h> - -#define USB_PDPHY_MAX_DATA_OBJ_LEN 28 -#define USB_PDPHY_MSG_HDR_LEN 2 - -/* PD PHY register offsets and bit fields */ -#define USB_PDPHY_MSG_CONFIG_REG 0x40 -#define MSG_CONFIG_PORT_DATA_ROLE BIT(3) -#define MSG_CONFIG_PORT_POWER_ROLE BIT(2) -#define MSG_CONFIG_SPEC_REV_MASK (BIT(1) | BIT(0)) - -#define USB_PDPHY_EN_CONTROL_REG 0x46 -#define CONTROL_ENABLE BIT(0) - -#define USB_PDPHY_RX_STATUS_REG 0x4A -#define RX_FRAME_TYPE (BIT(0) | BIT(1) | BIT(2)) - -#define USB_PDPHY_FRAME_FILTER_REG 0x4C -#define FRAME_FILTER_EN_HARD_RESET BIT(5) -#define FRAME_FILTER_EN_SOP BIT(0) - -#define USB_PDPHY_TX_SIZE_REG 0x42 -#define TX_SIZE_MASK 0xF - -#define USB_PDPHY_TX_CONTROL_REG 0x44 -#define TX_CONTROL_RETRY_COUNT(n) (((n) & 0x3) << 5) -#define TX_CONTROL_FRAME_TYPE(n) (((n) & 0x7) << 2) -#define TX_CONTROL_FRAME_TYPE_CABLE_RESET (0x1 << 2) -#define TX_CONTROL_SEND_SIGNAL BIT(1) -#define TX_CONTROL_SEND_MSG BIT(0) - -#define USB_PDPHY_RX_SIZE_REG 0x48 - -#define USB_PDPHY_RX_ACKNOWLEDGE_REG 0x4B -#define RX_BUFFER_TOKEN BIT(0) - -#define USB_PDPHY_BIST_MODE_REG 0x4E -#define BIST_MODE_MASK 0xF -#define BIST_ENABLE BIT(7) -#define PD_MSG_BIST 0x3 -#define PD_BIST_TEST_DATA_MODE 0x8 - -#define USB_PDPHY_TX_BUFFER_HDR_REG 0x60 -#define USB_PDPHY_TX_BUFFER_DATA_REG 0x62 - -#define USB_PDPHY_RX_BUFFER_REG 0x80 - -/* VDD regulator */ -#define VDD_PDPHY_VOL_MIN 2800000 /* uV */ -#define VDD_PDPHY_VOL_MAX 3300000 /* uV */ -#define VDD_PDPHY_HPM_LOAD 3000 /* uA */ - -/* Message Spec Rev field */ -#define PD_MSG_HDR_REV(hdr) (((hdr) >> 6) & 3) - -/* timers */ -#define RECEIVER_RESPONSE_TIME 15 /* tReceiverResponse */ -#define HARD_RESET_COMPLETE_TIME 5 /* tHardResetComplete */ - -/* Interrupt numbers */ -#define PMIC_PDPHY_SIG_TX_IRQ 0x0 -#define PMIC_PDPHY_SIG_RX_IRQ 0x1 -#define PMIC_PDPHY_MSG_TX_IRQ 0x2 -#define PMIC_PDPHY_MSG_RX_IRQ 0x3 -#define PMIC_PDPHY_MSG_TX_FAIL_IRQ 0x4 -#define PMIC_PDPHY_MSG_TX_DISCARD_IRQ 0x5 -#define PMIC_PDPHY_MSG_RX_DISCARD_IRQ 0x6 -#define PMIC_PDPHY_FR_SWAP_IRQ 0x7 /* Resources */ #define PMIC_PDPHY_MAX_IRQS 0x08 @@ -87,33 +19,19 @@ struct pmic_typec_pdphy_irq_params { struct pmic_typec_pdphy_resources { unsigned int nr_irqs; - struct pmic_typec_pdphy_irq_params irq_params[PMIC_PDPHY_MAX_IRQS]; + const struct pmic_typec_pdphy_irq_params irq_params[PMIC_PDPHY_MAX_IRQS]; }; /* API */ struct pmic_typec_pdphy; -struct pmic_typec_pdphy *qcom_pmic_typec_pdphy_alloc(struct device *dev); - +extern const struct pmic_typec_pdphy_resources pm8150b_pdphy_res; int qcom_pmic_typec_pdphy_probe(struct platform_device *pdev, - struct pmic_typec_pdphy *pmic_typec_pdphy, - struct pmic_typec_pdphy_resources *res, + struct pmic_typec *tcpm, + const struct pmic_typec_pdphy_resources *res, struct regmap *regmap, u32 base); - -int qcom_pmic_typec_pdphy_start(struct pmic_typec_pdphy *pmic_typec_pdphy, - struct tcpm_port *tcpm_port); - -void qcom_pmic_typec_pdphy_stop(struct pmic_typec_pdphy *pmic_typec_pdphy); - -int qcom_pmic_typec_pdphy_set_roles(struct pmic_typec_pdphy *pmic_typec_pdphy, - bool power_role_src, bool data_role_host); - -int qcom_pmic_typec_pdphy_set_pd_rx(struct pmic_typec_pdphy *pmic_typec_pdphy, bool on); - -int qcom_pmic_typec_pdphy_pd_transmit(struct pmic_typec_pdphy *pmic_typec_pdphy, - enum tcpm_transmit_type type, - const struct pd_message *msg, - unsigned int negotiated_rev); +int qcom_pmic_typec_pdphy_stub_probe(struct platform_device *pdev, + struct pmic_typec *tcpm); #endif /* __QCOM_PMIC_TYPEC_PDPHY_H__ */ diff --git a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy_stub.c b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy_stub.c new file mode 100644 index 000000000000..df79059cda67 --- /dev/null +++ b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_pdphy_stub.c @@ -0,0 +1,80 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (c) 2024, Linaro Ltd. All rights reserved. + */ + +#include <linux/err.h> +#include <linux/interrupt.h> +#include <linux/kernel.h> +#include <linux/mod_devicetable.h> +#include <linux/module.h> +#include <linux/platform_device.h> +#include <linux/regmap.h> +#include <linux/regulator/consumer.h> +#include <linux/slab.h> +#include <linux/usb/pd.h> +#include <linux/usb/tcpm.h> +#include "qcom_pmic_typec.h" +#include "qcom_pmic_typec_pdphy.h" + +static int qcom_pmic_typec_pdphy_stub_pd_transmit(struct tcpc_dev *tcpc, + enum tcpm_transmit_type type, + const struct pd_message *msg, + unsigned int negotiated_rev) +{ + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct device *dev = tcpm->dev; + + dev_dbg(dev, "pdphy_transmit: type=%d\n", type); + + tcpm_pd_transmit_complete(tcpm->tcpm_port, + TCPC_TX_SUCCESS); + + return 0; +} + +static int qcom_pmic_typec_pdphy_stub_set_pd_rx(struct tcpc_dev *tcpc, bool on) +{ + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct device *dev = tcpm->dev; + + dev_dbg(dev, "set_pd_rx: %s\n", on ? "on" : "off"); + + return 0; +} + +static int qcom_pmic_typec_pdphy_stub_set_roles(struct tcpc_dev *tcpc, bool attached, + enum typec_role power_role, + enum typec_data_role data_role) +{ + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct device *dev = tcpm->dev; + + dev_dbg(dev, "pdphy_set_roles: data_role_host=%d power_role_src=%d\n", + data_role, power_role); + + return 0; +} + +static int qcom_pmic_typec_pdphy_stub_start(struct pmic_typec *tcpm, + struct tcpm_port *tcpm_port) +{ + return 0; +} + +static void qcom_pmic_typec_pdphy_stub_stop(struct pmic_typec *tcpm) +{ +} + +int qcom_pmic_typec_pdphy_stub_probe(struct platform_device *pdev, + struct pmic_typec *tcpm) +{ + tcpm->tcpc.set_pd_rx = qcom_pmic_typec_pdphy_stub_set_pd_rx; + tcpm->tcpc.set_roles = qcom_pmic_typec_pdphy_stub_set_roles; + tcpm->tcpc.pd_transmit = qcom_pmic_typec_pdphy_stub_pd_transmit; + + tcpm->pdphy_start = qcom_pmic_typec_pdphy_stub_start; + tcpm->pdphy_stop = qcom_pmic_typec_pdphy_stub_stop; + + return 0; +} diff --git a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_port.c b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_port.c index a8f3f4d3a450..a747baa29784 100644 --- a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_port.c +++ b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_port.c @@ -16,8 +16,147 @@ #include <linux/usb/tcpm.h> #include <linux/usb/typec_mux.h> #include <linux/workqueue.h> + +#include "qcom_pmic_typec.h" #include "qcom_pmic_typec_port.h" +#define TYPEC_SNK_STATUS_REG 0x06 +#define DETECTED_SNK_TYPE_MASK GENMASK(6, 0) +#define SNK_DAM_MASK GENMASK(6, 4) +#define SNK_DAM_500MA BIT(6) +#define SNK_DAM_1500MA BIT(5) +#define SNK_DAM_3000MA BIT(4) +#define SNK_RP_STD BIT(3) +#define SNK_RP_1P5 BIT(2) +#define SNK_RP_3P0 BIT(1) +#define SNK_RP_SHORT BIT(0) + +#define TYPEC_SRC_STATUS_REG 0x08 +#define DETECTED_SRC_TYPE_MASK GENMASK(4, 0) +#define SRC_HIGH_BATT BIT(5) +#define SRC_DEBUG_ACCESS BIT(4) +#define SRC_RD_OPEN BIT(3) +#define SRC_RD_RA_VCONN BIT(2) +#define SRC_RA_OPEN BIT(1) +#define AUDIO_ACCESS_RA_RA BIT(0) + +#define TYPEC_STATE_MACHINE_STATUS_REG 0x09 +#define TYPEC_ATTACH_DETACH_STATE BIT(5) + +#define TYPEC_SM_STATUS_REG 0x0A +#define TYPEC_SM_VBUS_VSAFE5V BIT(5) +#define TYPEC_SM_VBUS_VSAFE0V BIT(6) +#define TYPEC_SM_USBIN_LT_LV BIT(7) + +#define TYPEC_MISC_STATUS_REG 0x0B +#define TYPEC_WATER_DETECTION_STATUS BIT(7) +#define SNK_SRC_MODE BIT(6) +#define TYPEC_VBUS_DETECT BIT(5) +#define TYPEC_VBUS_ERROR_STATUS BIT(4) +#define TYPEC_DEBOUNCE_DONE BIT(3) +#define CC_ORIENTATION BIT(1) +#define CC_ATTACHED BIT(0) + +#define LEGACY_CABLE_STATUS_REG 0x0D +#define TYPEC_LEGACY_CABLE_STATUS BIT(1) +#define TYPEC_NONCOMP_LEGACY_CABLE_STATUS BIT(0) + +#define TYPEC_U_USB_STATUS_REG 0x0F +#define U_USB_GROUND_NOVBUS BIT(6) +#define U_USB_GROUND BIT(4) +#define U_USB_FMB1 BIT(3) +#define U_USB_FLOAT1 BIT(2) +#define U_USB_FMB2 BIT(1) +#define U_USB_FLOAT2 BIT(0) + +#define TYPEC_MODE_CFG_REG 0x44 +#define TYPEC_TRY_MODE_MASK GENMASK(4, 3) +#define EN_TRY_SNK BIT(4) +#define EN_TRY_SRC BIT(3) +#define TYPEC_POWER_ROLE_CMD_MASK GENMASK(2, 0) +#define EN_SRC_ONLY BIT(2) +#define EN_SNK_ONLY BIT(1) +#define TYPEC_DISABLE_CMD BIT(0) + +#define TYPEC_VCONN_CONTROL_REG 0x46 +#define VCONN_EN_ORIENTATION BIT(2) +#define VCONN_EN_VALUE BIT(1) +#define VCONN_EN_SRC BIT(0) + +#define TYPEC_CCOUT_CONTROL_REG 0x48 +#define TYPEC_CCOUT_BUFFER_EN BIT(2) +#define TYPEC_CCOUT_VALUE BIT(1) +#define TYPEC_CCOUT_SRC BIT(0) + +#define DEBUG_ACCESS_SRC_CFG_REG 0x4C +#define EN_UNORIENTED_DEBUG_ACCESS_SRC BIT(0) + +#define TYPE_C_CRUDE_SENSOR_CFG_REG 0x4e +#define EN_SRC_CRUDE_SENSOR BIT(1) +#define EN_SNK_CRUDE_SENSOR BIT(0) + +#define TYPEC_EXIT_STATE_CFG_REG 0x50 +#define BYPASS_VSAFE0V_DURING_ROLE_SWAP BIT(3) +#define SEL_SRC_UPPER_REF BIT(2) +#define USE_TPD_FOR_EXITING_ATTACHSRC BIT(1) +#define EXIT_SNK_BASED_ON_CC BIT(0) + +#define TYPEC_CURRSRC_CFG_REG 0x52 +#define TYPEC_SRC_RP_SEL_330UA BIT(1) +#define TYPEC_SRC_RP_SEL_180UA BIT(0) +#define TYPEC_SRC_RP_SEL_80UA 0 +#define TYPEC_SRC_RP_SEL_MASK GENMASK(1, 0) + +#define TYPEC_INTERRUPT_EN_CFG_1_REG 0x5E +#define TYPEC_LEGACY_CABLE_INT_EN BIT(7) +#define TYPEC_NONCOMPLIANT_LEGACY_CABLE_INT_EN BIT(6) +#define TYPEC_TRYSOURCE_DETECT_INT_EN BIT(5) +#define TYPEC_TRYSINK_DETECT_INT_EN BIT(4) +#define TYPEC_CCOUT_DETACH_INT_EN BIT(3) +#define TYPEC_CCOUT_ATTACH_INT_EN BIT(2) +#define TYPEC_VBUS_DEASSERT_INT_EN BIT(1) +#define TYPEC_VBUS_ASSERT_INT_EN BIT(0) + +#define TYPEC_INTERRUPT_EN_CFG_2_REG 0x60 +#define TYPEC_SRC_BATT_HPWR_INT_EN BIT(6) +#define MICRO_USB_STATE_CHANGE_INT_EN BIT(5) +#define TYPEC_STATE_MACHINE_CHANGE_INT_EN BIT(4) +#define TYPEC_DEBUG_ACCESS_DETECT_INT_EN BIT(3) +#define TYPEC_WATER_DETECTION_INT_EN BIT(2) +#define TYPEC_VBUS_ERROR_INT_EN BIT(1) +#define TYPEC_DEBOUNCE_DONE_INT_EN BIT(0) + +#define TYPEC_DEBOUNCE_OPTION_REG 0x62 +#define REDUCE_TCCDEBOUNCE_TO_2MS BIT(2) + +#define TYPE_C_SBU_CFG_REG 0x6A +#define SEL_SBU1_ISRC_VAL 0x04 +#define SEL_SBU2_ISRC_VAL 0x01 + +#define TYPEC_U_USB_CFG_REG 0x70 +#define EN_MICRO_USB_FACTORY_MODE BIT(1) +#define EN_MICRO_USB_MODE BIT(0) + +#define TYPEC_PMI632_U_USB_WATER_PROTECTION_CFG_REG 0x72 + +#define TYPEC_U_USB_WATER_PROTECTION_CFG_REG 0x73 +#define EN_MICRO_USB_WATER_PROTECTION BIT(4) +#define MICRO_USB_DETECTION_ON_TIME_CFG_MASK GENMASK(3, 2) +#define MICRO_USB_DETECTION_PERIOD_CFG_MASK GENMASK(1, 0) + +#define TYPEC_PMI632_MICRO_USB_MODE_REG 0x73 +#define MICRO_USB_MODE_ONLY BIT(0) + +/* Interrupt numbers */ +#define PMIC_TYPEC_OR_RID_IRQ 0x0 +#define PMIC_TYPEC_VPD_IRQ 0x1 +#define PMIC_TYPEC_CC_STATE_IRQ 0x2 +#define PMIC_TYPEC_VCONN_OC_IRQ 0x3 +#define PMIC_TYPEC_VBUS_IRQ 0x4 +#define PMIC_TYPEC_ATTACH_DETACH_IRQ 0x5 +#define PMIC_TYPEC_LEGACY_CABLE_IRQ 0x6 +#define PMIC_TYPEC_TRY_SNK_SRC_IRQ 0x7 + struct pmic_typec_port_irq_data { int virq; int irq; @@ -33,6 +172,8 @@ struct pmic_typec_port { struct pmic_typec_port_irq_data *irq_data; struct regulator *vdd_vbus; + bool vbus_enabled; + struct mutex vbus_lock; /* VBUS state serialization */ int cc; bool debouncing_cc; @@ -131,7 +272,7 @@ done: return IRQ_HANDLED; } -int qcom_pmic_typec_port_get_vbus(struct pmic_typec_port *pmic_typec_port) +static int qcom_pmic_typec_port_vbus_detect(struct pmic_typec_port *pmic_typec_port) { struct device *dev = pmic_typec_port->dev; unsigned int misc; @@ -148,7 +289,7 @@ int qcom_pmic_typec_port_get_vbus(struct pmic_typec_port *pmic_typec_port) return !!(misc & TYPEC_VBUS_DETECT); } -int qcom_pmic_typec_port_set_vbus(struct pmic_typec_port *pmic_typec_port, bool on) +static int qcom_pmic_typec_port_vbus_toggle(struct pmic_typec_port *pmic_typec_port, bool on) { u32 sm_stat; u32 val; @@ -179,10 +320,49 @@ int qcom_pmic_typec_port_set_vbus(struct pmic_typec_port *pmic_typec_port, bool return 0; } -int qcom_pmic_typec_port_get_cc(struct pmic_typec_port *pmic_typec_port, - enum typec_cc_status *cc1, - enum typec_cc_status *cc2) +static int qcom_pmic_typec_port_get_vbus(struct tcpc_dev *tcpc) +{ + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_port *pmic_typec_port = tcpm->pmic_typec_port; + int ret; + + mutex_lock(&pmic_typec_port->vbus_lock); + ret = pmic_typec_port->vbus_enabled || qcom_pmic_typec_port_vbus_detect(pmic_typec_port); + mutex_unlock(&pmic_typec_port->vbus_lock); + + return ret; +} + +static int qcom_pmic_typec_port_set_vbus(struct tcpc_dev *tcpc, bool on, bool sink) +{ + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_port *pmic_typec_port = tcpm->pmic_typec_port; + int ret = 0; + + mutex_lock(&pmic_typec_port->vbus_lock); + if (pmic_typec_port->vbus_enabled == on) + goto done; + + ret = qcom_pmic_typec_port_vbus_toggle(pmic_typec_port, on); + if (ret) + goto done; + + pmic_typec_port->vbus_enabled = on; + tcpm_vbus_change(tcpm->tcpm_port); + +done: + dev_dbg(tcpm->dev, "set_vbus set: %d result %d\n", on, ret); + mutex_unlock(&pmic_typec_port->vbus_lock); + + return ret; +} + +static int qcom_pmic_typec_port_get_cc(struct tcpc_dev *tcpc, + enum typec_cc_status *cc1, + enum typec_cc_status *cc2) { + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_port *pmic_typec_port = tcpm->pmic_typec_port; struct device *dev = pmic_typec_port->dev; unsigned int misc, val; bool attached; @@ -275,9 +455,11 @@ static void qcom_pmic_set_cc_debounce(struct pmic_typec_port *pmic_typec_port) msecs_to_jiffies(2)); } -int qcom_pmic_typec_port_set_cc(struct pmic_typec_port *pmic_typec_port, - enum typec_cc_status cc) +static int qcom_pmic_typec_port_set_cc(struct tcpc_dev *tcpc, + enum typec_cc_status cc) { + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_port *pmic_typec_port = tcpm->pmic_typec_port; struct device *dev = pmic_typec_port->dev; unsigned int mode, currsrc; unsigned int misc; @@ -341,8 +523,17 @@ done: return ret; } -int qcom_pmic_typec_port_set_vconn(struct pmic_typec_port *pmic_typec_port, bool on) +static int qcom_pmic_typec_port_set_polarity(struct tcpc_dev *tcpc, + enum typec_cc_polarity pol) +{ + /* Polarity is set separately by phy-qcom-qmp.c */ + return 0; +} + +static int qcom_pmic_typec_port_set_vconn(struct tcpc_dev *tcpc, bool on) { + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_port *pmic_typec_port = tcpm->pmic_typec_port; struct device *dev = pmic_typec_port->dev; unsigned int orientation, misc, mask, value; unsigned long flags; @@ -377,10 +568,12 @@ done: return ret; } -int qcom_pmic_typec_port_start_toggling(struct pmic_typec_port *pmic_typec_port, - enum typec_port_type port_type, - enum typec_cc_status cc) +static int qcom_pmic_typec_port_start_toggling(struct tcpc_dev *tcpc, + enum typec_port_type port_type, + enum typec_cc_status cc) { + struct pmic_typec *tcpm = tcpc_to_tcpm(tcpc); + struct pmic_typec_port *pmic_typec_port = tcpm->pmic_typec_port; struct device *dev = pmic_typec_port->dev; unsigned int misc; u8 mode = 0; @@ -441,9 +634,10 @@ done: (TYPEC_STATE_MACHINE_CHANGE_INT_EN | TYPEC_VBUS_ERROR_INT_EN | \ TYPEC_DEBOUNCE_DONE_INT_EN) -int qcom_pmic_typec_port_start(struct pmic_typec_port *pmic_typec_port, - struct tcpm_port *tcpm_port) +static int qcom_pmic_typec_port_start(struct pmic_typec *tcpm, + struct tcpm_port *tcpm_port) { + struct pmic_typec_port *pmic_typec_port = tcpm->pmic_typec_port; int i; int mask; int ret; @@ -491,29 +685,30 @@ done: return ret; } -void qcom_pmic_typec_port_stop(struct pmic_typec_port *pmic_typec_port) +static void qcom_pmic_typec_port_stop(struct pmic_typec *tcpm) { + struct pmic_typec_port *pmic_typec_port = tcpm->pmic_typec_port; int i; for (i = 0; i < pmic_typec_port->nr_irqs; i++) disable_irq(pmic_typec_port->irq_data[i].irq); } -struct pmic_typec_port *qcom_pmic_typec_port_alloc(struct device *dev) -{ - return devm_kzalloc(dev, sizeof(struct pmic_typec_port), GFP_KERNEL); -} - int qcom_pmic_typec_port_probe(struct platform_device *pdev, - struct pmic_typec_port *pmic_typec_port, - struct pmic_typec_port_resources *res, + struct pmic_typec *tcpm, + const struct pmic_typec_port_resources *res, struct regmap *regmap, u32 base) { struct device *dev = &pdev->dev; struct pmic_typec_port_irq_data *irq_data; + struct pmic_typec_port *pmic_typec_port; int i, ret, irq; + pmic_typec_port = devm_kzalloc(dev, sizeof(*pmic_typec_port), GFP_KERNEL); + if (!pmic_typec_port) + return -ENOMEM; + if (!res->nr_irqs || res->nr_irqs > PMIC_TYPEC_MAX_IRQS) return -EINVAL; @@ -522,6 +717,8 @@ int qcom_pmic_typec_port_probe(struct platform_device *pdev, if (!irq_data) return -ENOMEM; + mutex_init(&pmic_typec_port->vbus_lock); + pmic_typec_port->vdd_vbus = devm_regulator_get(dev, "vdd-vbus"); if (IS_ERR(pmic_typec_port->vdd_vbus)) return PTR_ERR(pmic_typec_port->vdd_vbus); @@ -556,5 +753,56 @@ int qcom_pmic_typec_port_probe(struct platform_device *pdev, return ret; } + tcpm->pmic_typec_port = pmic_typec_port; + + tcpm->tcpc.get_vbus = qcom_pmic_typec_port_get_vbus; + tcpm->tcpc.set_vbus = qcom_pmic_typec_port_set_vbus; + tcpm->tcpc.set_cc = qcom_pmic_typec_port_set_cc; + tcpm->tcpc.get_cc = qcom_pmic_typec_port_get_cc; + tcpm->tcpc.set_polarity = qcom_pmic_typec_port_set_polarity; + tcpm->tcpc.set_vconn = qcom_pmic_typec_port_set_vconn; + tcpm->tcpc.start_toggling = qcom_pmic_typec_port_start_toggling; + + tcpm->port_start = qcom_pmic_typec_port_start; + tcpm->port_stop = qcom_pmic_typec_port_stop; + return 0; } + +const struct pmic_typec_port_resources pm8150b_port_res = { + .irq_params = { + { + .irq_name = "vpd-detect", + .virq = PMIC_TYPEC_VPD_IRQ, + }, + + { + .irq_name = "cc-state-change", + .virq = PMIC_TYPEC_CC_STATE_IRQ, + }, + { + .irq_name = "vconn-oc", + .virq = PMIC_TYPEC_VCONN_OC_IRQ, + }, + + { + .irq_name = "vbus-change", + .virq = PMIC_TYPEC_VBUS_IRQ, + }, + + { + .irq_name = "attach-detach", + .virq = PMIC_TYPEC_ATTACH_DETACH_IRQ, + }, + { + .irq_name = "legacy-cable-detect", + .virq = PMIC_TYPEC_LEGACY_CABLE_IRQ, + }, + + { + .irq_name = "try-snk-src-detect", + .virq = PMIC_TYPEC_TRY_SNK_SRC_IRQ, + }, + }, + .nr_irqs = 7, +}; diff --git a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_port.h b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_port.h index d4d358c680b6..2ca83a46cf3b 100644 --- a/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_port.h +++ b/drivers/usb/typec/tcpm/qcom/qcom_pmic_typec_port.h @@ -3,149 +3,12 @@ * Copyright (c) 2018-2019 The Linux Foundation. All rights reserved. * Copyright (c) 2023, Linaro Ltd. All rights reserved. */ -#ifndef __QCOM_PMIC_TYPEC_H__ -#define __QCOM_PMIC_TYPEC_H__ +#ifndef __QCOM_PMIC_TYPEC_PORT_H__ +#define __QCOM_PMIC_TYPEC_PORT_H__ #include <linux/platform_device.h> #include <linux/usb/tcpm.h> -#define TYPEC_SNK_STATUS_REG 0x06 -#define DETECTED_SNK_TYPE_MASK GENMASK(6, 0) -#define SNK_DAM_MASK GENMASK(6, 4) -#define SNK_DAM_500MA BIT(6) -#define SNK_DAM_1500MA BIT(5) -#define SNK_DAM_3000MA BIT(4) -#define SNK_RP_STD BIT(3) -#define SNK_RP_1P5 BIT(2) -#define SNK_RP_3P0 BIT(1) -#define SNK_RP_SHORT BIT(0) - -#define TYPEC_SRC_STATUS_REG 0x08 -#define DETECTED_SRC_TYPE_MASK GENMASK(4, 0) -#define SRC_HIGH_BATT BIT(5) -#define SRC_DEBUG_ACCESS BIT(4) -#define SRC_RD_OPEN BIT(3) -#define SRC_RD_RA_VCONN BIT(2) -#define SRC_RA_OPEN BIT(1) -#define AUDIO_ACCESS_RA_RA BIT(0) - -#define TYPEC_STATE_MACHINE_STATUS_REG 0x09 -#define TYPEC_ATTACH_DETACH_STATE BIT(5) - -#define TYPEC_SM_STATUS_REG 0x0A -#define TYPEC_SM_VBUS_VSAFE5V BIT(5) -#define TYPEC_SM_VBUS_VSAFE0V BIT(6) -#define TYPEC_SM_USBIN_LT_LV BIT(7) - -#define TYPEC_MISC_STATUS_REG 0x0B -#define TYPEC_WATER_DETECTION_STATUS BIT(7) -#define SNK_SRC_MODE BIT(6) -#define TYPEC_VBUS_DETECT BIT(5) -#define TYPEC_VBUS_ERROR_STATUS BIT(4) -#define TYPEC_DEBOUNCE_DONE BIT(3) -#define CC_ORIENTATION BIT(1) -#define CC_ATTACHED BIT(0) - -#define LEGACY_CABLE_STATUS_REG 0x0D -#define TYPEC_LEGACY_CABLE_STATUS BIT(1) -#define TYPEC_NONCOMP_LEGACY_CABLE_STATUS BIT(0) - -#define TYPEC_U_USB_STATUS_REG 0x0F -#define U_USB_GROUND_NOVBUS BIT(6) -#define U_USB_GROUND BIT(4) -#define U_USB_FMB1 BIT(3) -#define U_USB_FLOAT1 BIT(2) -#define U_USB_FMB2 BIT(1) -#define U_USB_FLOAT2 BIT(0) - -#define TYPEC_MODE_CFG_REG 0x44 -#define TYPEC_TRY_MODE_MASK GENMASK(4, 3) -#define EN_TRY_SNK BIT(4) -#define EN_TRY_SRC BIT(3) -#define TYPEC_POWER_ROLE_CMD_MASK GENMASK(2, 0) -#define EN_SRC_ONLY BIT(2) -#define EN_SNK_ONLY BIT(1) -#define TYPEC_DISABLE_CMD BIT(0) - -#define TYPEC_VCONN_CONTROL_REG 0x46 -#define VCONN_EN_ORIENTATION BIT(2) -#define VCONN_EN_VALUE BIT(1) -#define VCONN_EN_SRC BIT(0) - -#define TYPEC_CCOUT_CONTROL_REG 0x48 -#define TYPEC_CCOUT_BUFFER_EN BIT(2) -#define TYPEC_CCOUT_VALUE BIT(1) -#define TYPEC_CCOUT_SRC BIT(0) - -#define DEBUG_ACCESS_SRC_CFG_REG 0x4C -#define EN_UNORIENTED_DEBUG_ACCESS_SRC BIT(0) - -#define TYPE_C_CRUDE_SENSOR_CFG_REG 0x4e -#define EN_SRC_CRUDE_SENSOR BIT(1) -#define EN_SNK_CRUDE_SENSOR BIT(0) - -#define TYPEC_EXIT_STATE_CFG_REG 0x50 -#define BYPASS_VSAFE0V_DURING_ROLE_SWAP BIT(3) -#define SEL_SRC_UPPER_REF BIT(2) -#define USE_TPD_FOR_EXITING_ATTACHSRC BIT(1) -#define EXIT_SNK_BASED_ON_CC BIT(0) - -#define TYPEC_CURRSRC_CFG_REG 0x52 -#define TYPEC_SRC_RP_SEL_330UA BIT(1) -#define TYPEC_SRC_RP_SEL_180UA BIT(0) -#define TYPEC_SRC_RP_SEL_80UA 0 -#define TYPEC_SRC_RP_SEL_MASK GENMASK(1, 0) - -#define TYPEC_INTERRUPT_EN_CFG_1_REG 0x5E -#define TYPEC_LEGACY_CABLE_INT_EN BIT(7) -#define TYPEC_NONCOMPLIANT_LEGACY_CABLE_INT_EN BIT(6) -#define TYPEC_TRYSOURCE_DETECT_INT_EN BIT(5) -#define TYPEC_TRYSINK_DETECT_INT_EN BIT(4) -#define TYPEC_CCOUT_DETACH_INT_EN BIT(3) -#define TYPEC_CCOUT_ATTACH_INT_EN BIT(2) -#define TYPEC_VBUS_DEASSERT_INT_EN BIT(1) -#define TYPEC_VBUS_ASSERT_INT_EN BIT(0) - -#define TYPEC_INTERRUPT_EN_CFG_2_REG 0x60 -#define TYPEC_SRC_BATT_HPWR_INT_EN BIT(6) -#define MICRO_USB_STATE_CHANGE_INT_EN BIT(5) -#define TYPEC_STATE_MACHINE_CHANGE_INT_EN BIT(4) -#define TYPEC_DEBUG_ACCESS_DETECT_INT_EN BIT(3) -#define TYPEC_WATER_DETECTION_INT_EN BIT(2) -#define TYPEC_VBUS_ERROR_INT_EN BIT(1) -#define TYPEC_DEBOUNCE_DONE_INT_EN BIT(0) - -#define TYPEC_DEBOUNCE_OPTION_REG 0x62 -#define REDUCE_TCCDEBOUNCE_TO_2MS BIT(2) - -#define TYPE_C_SBU_CFG_REG 0x6A -#define SEL_SBU1_ISRC_VAL 0x04 -#define SEL_SBU2_ISRC_VAL 0x01 - -#define TYPEC_U_USB_CFG_REG 0x70 -#define EN_MICRO_USB_FACTORY_MODE BIT(1) -#define EN_MICRO_USB_MODE BIT(0) - -#define TYPEC_PMI632_U_USB_WATER_PROTECTION_CFG_REG 0x72 - -#define TYPEC_U_USB_WATER_PROTECTION_CFG_REG 0x73 -#define EN_MICRO_USB_WATER_PROTECTION BIT(4) -#define MICRO_USB_DETECTION_ON_TIME_CFG_MASK GENMASK(3, 2) -#define MICRO_USB_DETECTION_PERIOD_CFG_MASK GENMASK(1, 0) - -#define TYPEC_PMI632_MICRO_USB_MODE_REG 0x73 -#define MICRO_USB_MODE_ONLY BIT(0) - -/* Interrupt numbers */ -#define PMIC_TYPEC_OR_RID_IRQ 0x0 -#define PMIC_TYPEC_VPD_IRQ 0x1 -#define PMIC_TYPEC_CC_STATE_IRQ 0x2 -#define PMIC_TYPEC_VCONN_OC_IRQ 0x3 -#define PMIC_TYPEC_VBUS_IRQ 0x4 -#define PMIC_TYPEC_ATTACH_DETACH_IRQ 0x5 -#define PMIC_TYPEC_LEGACY_CABLE_IRQ 0x6 -#define PMIC_TYPEC_TRY_SNK_SRC_IRQ 0x7 - /* Resources */ #define PMIC_TYPEC_MAX_IRQS 0x08 @@ -156,40 +19,17 @@ struct pmic_typec_port_irq_params { struct pmic_typec_port_resources { unsigned int nr_irqs; - struct pmic_typec_port_irq_params irq_params[PMIC_TYPEC_MAX_IRQS]; + const struct pmic_typec_port_irq_params irq_params[PMIC_TYPEC_MAX_IRQS]; }; /* API */ -struct pmic_typec; -struct pmic_typec_port *qcom_pmic_typec_port_alloc(struct device *dev); +extern const struct pmic_typec_port_resources pm8150b_port_res; int qcom_pmic_typec_port_probe(struct platform_device *pdev, - struct pmic_typec_port *pmic_typec_port, - struct pmic_typec_port_resources *res, + struct pmic_typec *tcpm, + const struct pmic_typec_port_resources *res, struct regmap *regmap, u32 base); -int qcom_pmic_typec_port_start(struct pmic_typec_port *pmic_typec_port, - struct tcpm_port *tcpm_port); - -void qcom_pmic_typec_port_stop(struct pmic_typec_port *pmic_typec_port); - -int qcom_pmic_typec_port_get_cc(struct pmic_typec_port *pmic_typec_port, - enum typec_cc_status *cc1, - enum typec_cc_status *cc2); - -int qcom_pmic_typec_port_set_cc(struct pmic_typec_port *pmic_typec_port, - enum typec_cc_status cc); - -int qcom_pmic_typec_port_get_vbus(struct pmic_typec_port *pmic_typec_port); - -int qcom_pmic_typec_port_set_vconn(struct pmic_typec_port *pmic_typec_port, bool on); - -int qcom_pmic_typec_port_start_toggling(struct pmic_typec_port *pmic_typec_port, - enum typec_port_type port_type, - enum typec_cc_status cc); - -int qcom_pmic_typec_port_set_vbus(struct pmic_typec_port *pmic_typec_port, bool on); - #endif /* __QCOM_PMIC_TYPE_C_PORT_H__ */ diff --git a/drivers/usb/typec/tcpm/tcpci.c b/drivers/usb/typec/tcpm/tcpci.c index 0ee3e6e29bb1..c962014bba4e 100644 --- a/drivers/usb/typec/tcpm/tcpci.c +++ b/drivers/usb/typec/tcpm/tcpci.c @@ -445,8 +445,11 @@ static int tcpci_set_pd_rx(struct tcpc_dev *tcpc, bool enable) unsigned int reg = 0; int ret; - if (enable) + if (enable) { reg = TCPC_RX_DETECT_SOP | TCPC_RX_DETECT_HARD_RESET; + if (tcpci->data->cable_comm_capable) + reg |= TCPC_RX_DETECT_SOP1; + } ret = regmap_write(tcpci->regmap, TCPC_RX_DETECT, reg); if (ret < 0) return ret; @@ -584,6 +587,23 @@ static int tcpci_pd_transmit(struct tcpc_dev *tcpc, enum tcpm_transmit_type type return 0; } +static bool tcpci_cable_comm_capable(struct tcpc_dev *tcpc) +{ + struct tcpci *tcpci = tcpc_to_tcpci(tcpc); + + return tcpci->data->cable_comm_capable; +} + +static bool tcpci_attempt_vconn_swap_discovery(struct tcpc_dev *tcpc) +{ + struct tcpci *tcpci = tcpc_to_tcpci(tcpc); + + if (tcpci->data->attempt_vconn_swap_discovery) + return tcpci->data->attempt_vconn_swap_discovery(tcpci, tcpci->data); + + return false; +} + static int tcpci_init(struct tcpc_dev *tcpc) { struct tcpci *tcpci = tcpc_to_tcpci(tcpc); @@ -712,7 +732,7 @@ irqreturn_t tcpci_irq(struct tcpci *tcpci) /* Read complete, clear RX status alert bit */ tcpci_write16(tcpci, TCPC_ALERT, TCPC_ALERT_RX_STATUS); - tcpm_pd_receive(tcpci->port, &msg); + tcpm_pd_receive(tcpci->port, &msg, TCPC_TX_SOP); } if (tcpci->data->vbus_vsafe0v && (status & TCPC_ALERT_EXTENDED_STATUS)) { @@ -793,6 +813,8 @@ struct tcpci *tcpci_register_port(struct device *dev, struct tcpci_data *data) tcpci->tcpc.enable_frs = tcpci_enable_frs; tcpci->tcpc.frs_sourcing_vbus = tcpci_frs_sourcing_vbus; tcpci->tcpc.set_partner_usb_comm_capable = tcpci_set_partner_usb_comm_capable; + tcpci->tcpc.cable_comm_capable = tcpci_cable_comm_capable; + tcpci->tcpc.attempt_vconn_swap_discovery = tcpci_attempt_vconn_swap_discovery; if (tcpci->data->check_contaminant) tcpci->tcpc.check_contaminant = tcpci_check_contaminant; @@ -889,6 +911,7 @@ MODULE_DEVICE_TABLE(i2c, tcpci_id); #ifdef CONFIG_OF static const struct of_device_id tcpci_of_match[] = { { .compatible = "nxp,ptn5110", }, + { .compatible = "tcpci", }, {}, }; MODULE_DEVICE_TABLE(of, tcpci_of_match); diff --git a/drivers/usb/typec/tcpm/tcpci_maxim.h b/drivers/usb/typec/tcpm/tcpci_maxim.h index 2c1c4d161b0d..78ff3b73ee7e 100644 --- a/drivers/usb/typec/tcpm/tcpci_maxim.h +++ b/drivers/usb/typec/tcpm/tcpci_maxim.h @@ -62,6 +62,7 @@ struct max_tcpci_chip { struct i2c_client *client; struct tcpm_port *port; enum contamiant_state contaminant_state; + bool veto_vconn_swap; }; static inline int max_tcpci_read16(struct max_tcpci_chip *chip, unsigned int reg, u16 *val) diff --git a/drivers/usb/typec/tcpm/tcpci_maxim_core.c b/drivers/usb/typec/tcpm/tcpci_maxim_core.c index 7fb966fd639b..eec3bcec119c 100644 --- a/drivers/usb/typec/tcpm/tcpci_maxim_core.c +++ b/drivers/usb/typec/tcpm/tcpci_maxim_core.c @@ -128,6 +128,7 @@ static void process_rx(struct max_tcpci_chip *chip, u16 status) u8 count, frame_type, rx_buf[TCPC_RECEIVE_BUFFER_LEN]; int ret, payload_index; u8 *rx_buf_ptr; + enum tcpm_transmit_type rx_type; /* * READABLE_BYTE_COUNT: Indicates the number of bytes in the RX_BUF_BYTE_x registers @@ -143,10 +144,23 @@ static void process_rx(struct max_tcpci_chip *chip, u16 status) count = rx_buf[TCPC_RECEIVE_BUFFER_COUNT_OFFSET]; frame_type = rx_buf[TCPC_RECEIVE_BUFFER_FRAME_TYPE_OFFSET]; - if (count == 0 || frame_type != TCPC_RX_BUF_FRAME_TYPE_SOP) { + switch (frame_type) { + case TCPC_RX_BUF_FRAME_TYPE_SOP1: + rx_type = TCPC_TX_SOP_PRIME; + break; + case TCPC_RX_BUF_FRAME_TYPE_SOP: + rx_type = TCPC_TX_SOP; + break; + default: + rx_type = TCPC_TX_SOP; + break; + } + + if (count == 0 || (frame_type != TCPC_RX_BUF_FRAME_TYPE_SOP && + frame_type != TCPC_RX_BUF_FRAME_TYPE_SOP1)) { max_tcpci_write16(chip, TCPC_ALERT, TCPC_ALERT_RX_STATUS); dev_err(chip->dev, "%s\n", count == 0 ? "error: count is 0" : - "error frame_type is not SOP"); + "error frame_type is not SOP/SOP'"); return; } @@ -183,7 +197,7 @@ static void process_rx(struct max_tcpci_chip *chip, u16 status) if (ret < 0) return; - tcpm_pd_receive(chip->port, &msg); + tcpm_pd_receive(chip->port, &msg, rx_type); } static int max_tcpci_set_vbus(struct tcpci *tcpci, struct tcpci_data *tdata, bool source, bool sink) @@ -309,8 +323,10 @@ static irqreturn_t _max_tcpci_irq(struct max_tcpci_chip *chip, u16 status) if (ret < 0) return ret; - if (reg_status & TCPC_FAULT_STATUS_VCONN_OC) + if (reg_status & TCPC_FAULT_STATUS_VCONN_OC) { + chip->veto_vconn_swap = true; tcpm_port_error_recovery(chip->port); + } } if (status & TCPC_ALERT_EXTND) { @@ -444,6 +460,18 @@ static void max_tcpci_check_contaminant(struct tcpci *tcpci, struct tcpci_data * tcpm_port_clean(chip->port); } +static bool max_tcpci_attempt_vconn_swap_discovery(struct tcpci *tcpci, struct tcpci_data *tdata) +{ + struct max_tcpci_chip *chip = tdata_to_max_tcpci(tdata); + + if (chip->veto_vconn_swap) { + chip->veto_vconn_swap = false; + return false; + } + + return true; +} + static int max_tcpci_probe(struct i2c_client *client) { int ret; @@ -478,6 +506,8 @@ static int max_tcpci_probe(struct i2c_client *client) chip->data.vbus_vsafe0v = true; chip->data.set_partner_usb_comm_capable = max_tcpci_set_partner_usb_comm_capable; chip->data.check_contaminant = max_tcpci_check_contaminant; + chip->data.cable_comm_capable = true; + chip->data.attempt_vconn_swap_discovery = max_tcpci_attempt_vconn_swap_discovery; max_tcpci_init_regs(chip); chip->tcpci = tcpci_register_port(chip->dev, &chip->data); diff --git a/drivers/usb/typec/tcpm/tcpm.c b/drivers/usb/typec/tcpm/tcpm.c index 096597231027..ae2b6c94482d 100644 --- a/drivers/usb/typec/tcpm/tcpm.c +++ b/drivers/usb/typec/tcpm/tcpm.c @@ -108,6 +108,7 @@ S(VCONN_SWAP_WAIT_FOR_VCONN), \ S(VCONN_SWAP_TURN_ON_VCONN), \ S(VCONN_SWAP_TURN_OFF_VCONN), \ + S(VCONN_SWAP_SEND_SOFT_RESET), \ \ S(FR_SWAP_SEND), \ S(FR_SWAP_SEND_TIMEOUT), \ @@ -145,7 +146,9 @@ S(PORT_RESET_WAIT_OFF), \ \ S(AMS_START), \ - S(CHUNK_NOT_SUPP) + S(CHUNK_NOT_SUPP), \ + \ + S(SRC_VDM_IDENTITY_REQUEST) #define FOREACH_AMS(S) \ S(NONE_AMS), \ @@ -327,6 +330,12 @@ struct tcpm_port { struct typec_partner_desc partner_desc; struct typec_partner *partner; + struct usb_pd_identity cable_ident; + struct typec_cable_desc cable_desc; + struct typec_cable *cable; + struct typec_plug_desc plug_prime_desc; + struct typec_plug *plug_prime; + enum typec_cc_status cc_req; enum typec_cc_status src_rp; /* work only if pd_supported == false */ @@ -468,7 +477,9 @@ struct tcpm_port { /* Alternate mode data */ struct pd_mode_data mode_data; + struct pd_mode_data mode_data_prime; struct typec_altmode *partner_altmode[ALTMODE_DISCOVERY_MAX]; + struct typec_altmode *plug_prime_altmode[ALTMODE_DISCOVERY_MAX]; struct typec_altmode *port_altmode[ALTMODE_DISCOVERY_MAX]; /* Deadline in jiffies to exit src_try_wait state */ @@ -505,6 +516,41 @@ struct tcpm_port { * transitions. */ bool potential_contaminant; + + /* SOP* Related Fields */ + /* + * Flag to determine if SOP' Discover Identity is available. The flag + * is set if Discover Identity on SOP' does not immediately follow + * Discover Identity on SOP. + */ + bool send_discover_prime; + /* + * tx_sop_type determines which SOP* a message is being sent on. + * For messages that are queued and not sent immediately such as in + * tcpm_queue_message or messages that send after state changes, + * the tx_sop_type is set accordingly. + */ + enum tcpm_transmit_type tx_sop_type; + /* + * Prior to discovering the port partner's Specification Revision, the + * Vconn source and cable plug will use the lower of their two revisions. + * + * When the port partner's Specification Revision is discovered, the following + * rules are put in place. + * 1. If the cable revision (1) is lower than the revision negotiated + * between the port and partner (2), the port and partner will communicate + * on revision (2), but the port and cable will communicate on revision (1). + * 2. If the cable revision (1) is higher than the revision negotiated + * between the port and partner (2), the port and partner will communicate + * on revision (2), and the port and cable will communicate on revision (2) + * as well. + */ + unsigned int negotiated_rev_prime; + /* + * Each SOP* type must maintain their own tx and rx message IDs + */ + unsigned int message_id_prime; + unsigned int rx_msgid_prime; #ifdef CONFIG_DEBUG_FS struct dentry *dentry; struct mutex logbuffer_lock; /* log buffer access lock */ @@ -518,6 +564,7 @@ struct pd_rx_event { struct kthread_work work; struct tcpm_port *port; struct pd_message msg; + enum tcpm_transmit_type rx_sop_type; }; static const char * const pd_rev[] = { @@ -893,19 +940,30 @@ static void tcpm_ams_finish(struct tcpm_port *port) } static int tcpm_pd_transmit(struct tcpm_port *port, - enum tcpm_transmit_type type, + enum tcpm_transmit_type tx_sop_type, const struct pd_message *msg) { unsigned long timeout; int ret; + unsigned int negotiated_rev; + + switch (tx_sop_type) { + case TCPC_TX_SOP_PRIME: + negotiated_rev = port->negotiated_rev_prime; + break; + case TCPC_TX_SOP: + default: + negotiated_rev = port->negotiated_rev; + break; + } if (msg) tcpm_log(port, "PD TX, header: %#x", le16_to_cpu(msg->header)); else - tcpm_log(port, "PD TX, type: %#x", type); + tcpm_log(port, "PD TX, type: %#x", tx_sop_type); reinit_completion(&port->tx_complete); - ret = port->tcpc->pd_transmit(port->tcpc, type, msg, port->negotiated_rev); + ret = port->tcpc->pd_transmit(port->tcpc, tx_sop_type, msg, negotiated_rev); if (ret < 0) return ret; @@ -918,7 +976,17 @@ static int tcpm_pd_transmit(struct tcpm_port *port, switch (port->tx_status) { case TCPC_TX_SUCCESS: - port->message_id = (port->message_id + 1) & PD_HEADER_ID_MASK; + switch (tx_sop_type) { + case TCPC_TX_SOP_PRIME: + port->message_id_prime = (port->message_id_prime + 1) & + PD_HEADER_ID_MASK; + break; + case TCPC_TX_SOP: + default: + port->message_id = (port->message_id + 1) & + PD_HEADER_ID_MASK; + break; + } /* * USB PD rev 2.0, 8.3.2.2.1: * USB PD rev 3.0, 8.3.2.1.3: @@ -1099,6 +1167,12 @@ static int tcpm_set_roles(struct tcpm_port *port, bool attached, if (ret < 0) return ret; + if (port->tcpc->set_orientation) { + ret = port->tcpc->set_orientation(port->tcpc, orientation); + if (ret < 0) + return ret; + } + port->pwr_role = role; port->data_role = data; typec_set_data_role(port->typec_port, data); @@ -1456,7 +1530,7 @@ static int tcpm_ams_start(struct tcpm_port *port, enum tcpm_ams ams) * VDM/VDO handling functions */ static void tcpm_queue_vdm(struct tcpm_port *port, const u32 header, - const u32 *data, int cnt) + const u32 *data, int cnt, enum tcpm_transmit_type tx_sop_type) { u32 vdo_hdr = port->vdo_data[0]; @@ -1464,7 +1538,10 @@ static void tcpm_queue_vdm(struct tcpm_port *port, const u32 header, /* If is sending discover_identity, handle received message first */ if (PD_VDO_SVDM(vdo_hdr) && PD_VDO_CMD(vdo_hdr) == CMD_DISCOVER_IDENT) { - port->send_discover = true; + if (tx_sop_type == TCPC_TX_SOP_PRIME) + port->send_discover_prime = true; + else + port->send_discover = true; mod_send_discover_delayed_work(port, SEND_DISCOVER_RETRY_MS); } else { /* Make sure we are not still processing a previous VDM packet */ @@ -1479,14 +1556,16 @@ static void tcpm_queue_vdm(struct tcpm_port *port, const u32 header, port->vdm_state = VDM_STATE_READY; port->vdm_sm_running = true; + port->tx_sop_type = tx_sop_type; + mod_vdm_delayed_work(port, 0); } static void tcpm_queue_vdm_unlocked(struct tcpm_port *port, const u32 header, - const u32 *data, int cnt) + const u32 *data, int cnt, enum tcpm_transmit_type tx_sop_type) { mutex_lock(&port->lock); - tcpm_queue_vdm(port, header, data, cnt); + tcpm_queue_vdm(port, header, data, cnt, TCPC_TX_SOP); mutex_unlock(&port->lock); } @@ -1508,9 +1587,68 @@ static void svdm_consume_identity(struct tcpm_port *port, const u32 *p, int cnt) PD_PRODUCT_PID(product), product & 0xffff); } -static bool svdm_consume_svids(struct tcpm_port *port, const u32 *p, int cnt) +static void svdm_consume_identity_sop_prime(struct tcpm_port *port, const u32 *p, int cnt) { - struct pd_mode_data *pmdata = &port->mode_data; + u32 idh = p[VDO_INDEX_IDH]; + u32 product = p[VDO_INDEX_PRODUCT]; + int svdm_version; + + /* + * Attempt to consume identity only if cable currently is not set + */ + if (!IS_ERR_OR_NULL(port->cable)) + goto register_plug; + + /* Reset cable identity */ + memset(&port->cable_ident, 0, sizeof(port->cable_ident)); + + /* Fill out id header, cert, product, cable VDO 1 */ + port->cable_ident.id_header = idh; + port->cable_ident.cert_stat = p[VDO_INDEX_CSTAT]; + port->cable_ident.product = product; + port->cable_ident.vdo[0] = p[VDO_INDEX_CABLE_1]; + + /* Fill out cable desc, infer svdm_version from pd revision */ + port->cable_desc.type = (enum typec_plug_type) (VDO_TYPEC_CABLE_TYPE(p[VDO_INDEX_CABLE_1]) + + USB_PLUG_TYPE_A); + port->cable_desc.active = PD_IDH_PTYPE(idh) == IDH_PTYPE_ACABLE ? 1 : 0; + /* Log PD Revision and additional cable VDO from negotiated revision */ + switch (port->negotiated_rev_prime) { + case PD_REV30: + port->cable_desc.pd_revision = 0x0300; + if (port->cable_desc.active) + port->cable_ident.vdo[1] = p[VDO_INDEX_CABLE_2]; + break; + case PD_REV20: + port->cable_desc.pd_revision = 0x0200; + break; + default: + port->cable_desc.pd_revision = 0x0200; + break; + } + port->cable_desc.identity = &port->cable_ident; + /* Register Cable, set identity and svdm_version */ + port->cable = typec_register_cable(port->typec_port, &port->cable_desc); + if (IS_ERR_OR_NULL(port->cable)) + return; + typec_cable_set_identity(port->cable); + /* Get SVDM version */ + svdm_version = PD_VDO_SVDM_VER(p[VDO_INDEX_HDR]); + typec_cable_set_svdm_version(port->cable, svdm_version); + +register_plug: + if (IS_ERR_OR_NULL(port->plug_prime)) { + port->plug_prime_desc.index = TYPEC_PLUG_SOP_P; + port->plug_prime = typec_register_plug(port->cable, + &port->plug_prime_desc); + } +} + +static bool svdm_consume_svids(struct tcpm_port *port, const u32 *p, int cnt, + enum tcpm_transmit_type rx_sop_type) +{ + struct pd_mode_data *pmdata = rx_sop_type == TCPC_TX_SOP_PRIME ? + &port->mode_data_prime : &port->mode_data; int i; for (i = 1; i < cnt; i++) { @@ -1556,14 +1694,29 @@ abort: return false; } -static void svdm_consume_modes(struct tcpm_port *port, const u32 *p, int cnt) +static void svdm_consume_modes(struct tcpm_port *port, const u32 *p, int cnt, + enum tcpm_transmit_type rx_sop_type) { struct pd_mode_data *pmdata = &port->mode_data; struct typec_altmode_desc *paltmode; int i; - if (pmdata->altmodes >= ARRAY_SIZE(port->partner_altmode)) { - /* Already logged in svdm_consume_svids() */ + switch (rx_sop_type) { + case TCPC_TX_SOP_PRIME: + pmdata = &port->mode_data_prime; + if (pmdata->altmodes >= ARRAY_SIZE(port->plug_prime_altmode)) { + /* Already logged in svdm_consume_svids() */ + return; + } + break; + case TCPC_TX_SOP: + pmdata = &port->mode_data; + if (pmdata->altmodes >= ARRAY_SIZE(port->partner_altmode)) { + /* Already logged in svdm_consume_svids() */ + return; + } + break; + default: return; } @@ -1601,20 +1754,129 @@ static void tcpm_register_partner_altmodes(struct tcpm_port *port) } } +static void tcpm_register_plug_altmodes(struct tcpm_port *port) +{ + struct pd_mode_data *modep = &port->mode_data_prime; + struct typec_altmode *altmode; + int i; + + typec_plug_set_num_altmodes(port->plug_prime, modep->altmodes); + + for (i = 0; i < modep->altmodes; i++) { + altmode = typec_plug_register_altmode(port->plug_prime, + &modep->altmode_desc[i]); + if (IS_ERR(altmode)) { + tcpm_log(port, "Failed to register plug SVID 0x%04x", + modep->altmode_desc[i].svid); + altmode = NULL; + } + port->plug_prime_altmode[i] = altmode; + } +} + #define supports_modal(port) PD_IDH_MODAL_SUPP((port)->partner_ident.id_header) +#define supports_modal_cable(port) PD_IDH_MODAL_SUPP((port)->cable_ident.id_header) +#define supports_host(port) PD_IDH_HOST_SUPP((port->partner_ident.id_header)) + +/* + * Helper to determine whether the port is capable of SOP' communication at the + * current point in time. + */ +static bool tcpm_can_communicate_sop_prime(struct tcpm_port *port) +{ + /* Check to see if tcpc supports SOP' communication */ + if (!port->tcpc->cable_comm_capable || !port->tcpc->cable_comm_capable(port->tcpc)) + return false; + /* + * Power Delivery 2.0 Section 6.3.11 + * Before communicating with a Cable Plug a Port Should ensure that it + * is the Vconn Source and that the Cable Plugs are powered by + * performing a Vconn swap if necessary. Since it cannot be guaranteed + * that the present Vconn Source is supplying Vconn, the only means to + * ensure that the Cable Plugs are powered is for a Port wishing to + * communicate with a Cable Plug is to become the Vconn Source. + * + * Power Delivery 3.0 Section 6.3.11 + * Before communicating with a Cable Plug a Port Shall ensure that it + * is the Vconn source. + */ + if (port->vconn_role != TYPEC_SOURCE) + return false; + /* + * Power Delivery 2.0 Section 2.4.4 + * When no Contract or an Implicit Contract is in place the Source can + * communicate with a Cable Plug using SOP' packets in order to discover + * its characteristics. + * + * Power Delivery 3.0 Section 2.4.4 + * When no Contract or an Implicit Contract is in place only the Source + * port that is supplying Vconn is allowed to send packets to a Cable + * Plug and is allowed to respond to packets from the Cable Plug. + */ + if (!port->explicit_contract) + return port->pwr_role == TYPEC_SOURCE; + if (port->negotiated_rev == PD_REV30) + return true; + /* + * Power Delivery 2.0 Section 2.4.4 + * + * When an Explicit Contract is in place the DFP (either the Source or + * the Sink) can communicate with the Cable Plug(s) using SOP’/SOP” + * Packets (see Figure 2-3). + */ + if (port->negotiated_rev == PD_REV20) + return port->data_role == TYPEC_HOST; + return false; +} + +static bool tcpm_attempt_vconn_swap_discovery(struct tcpm_port *port) +{ + if (!port->tcpc->attempt_vconn_swap_discovery) + return false; + + /* Port is already source, no need to perform swap */ + if (port->vconn_role == TYPEC_SOURCE) + return false; + + /* + * Partner needs to support Alternate Modes with modal support. If + * partner is also capable of being a USB Host, it could be a device + * that supports Alternate Modes as the DFP. + */ + if (!supports_modal(port) || supports_host(port)) + return false; + + if ((port->negotiated_rev == PD_REV20 && port->data_role == TYPEC_HOST) || + port->negotiated_rev == PD_REV30) + return port->tcpc->attempt_vconn_swap_discovery(port->tcpc); + + return false; +} + + +static bool tcpm_cable_vdm_supported(struct tcpm_port *port) +{ + return !IS_ERR_OR_NULL(port->cable) && + typec_cable_is_active(port->cable) && + supports_modal_cable(port) && + tcpm_can_communicate_sop_prime(port); +} static int tcpm_pd_svdm(struct tcpm_port *port, struct typec_altmode *adev, const u32 *p, int cnt, u32 *response, - enum adev_actions *adev_action) + enum adev_actions *adev_action, + enum tcpm_transmit_type rx_sop_type, + enum tcpm_transmit_type *response_tx_sop_type) { struct typec_port *typec = port->typec_port; - struct typec_altmode *pdev; - struct pd_mode_data *modep; + struct typec_altmode *pdev, *pdev_prime; + struct pd_mode_data *modep, *modep_prime; int svdm_version; int rlen = 0; int cmd_type; int cmd; int i; + int ret; cmd_type = PD_VDO_CMDT(p[0]); cmd = PD_VDO_CMD(p[0]); @@ -1622,17 +1884,54 @@ static int tcpm_pd_svdm(struct tcpm_port *port, struct typec_altmode *adev, tcpm_log(port, "Rx VDM cmd 0x%x type %d cmd %d len %d", p[0], cmd_type, cmd, cnt); - modep = &port->mode_data; - - pdev = typec_match_altmode(port->partner_altmode, ALTMODE_DISCOVERY_MAX, - PD_VDO_VID(p[0]), PD_VDO_OPOS(p[0])); - - svdm_version = typec_get_negotiated_svdm_version(typec); - if (svdm_version < 0) - return 0; + switch (rx_sop_type) { + case TCPC_TX_SOP_PRIME: + modep_prime = &port->mode_data_prime; + pdev_prime = typec_match_altmode(port->plug_prime_altmode, + ALTMODE_DISCOVERY_MAX, + PD_VDO_VID(p[0]), + PD_VDO_OPOS(p[0])); + svdm_version = typec_get_cable_svdm_version(typec); + /* + * Update SVDM version if cable was discovered before port partner. + */ + if (!IS_ERR_OR_NULL(port->cable) && + PD_VDO_SVDM_VER(p[0]) < svdm_version) + typec_cable_set_svdm_version(port->cable, svdm_version); + break; + case TCPC_TX_SOP: + modep = &port->mode_data; + pdev = typec_match_altmode(port->partner_altmode, + ALTMODE_DISCOVERY_MAX, + PD_VDO_VID(p[0]), + PD_VDO_OPOS(p[0])); + svdm_version = typec_get_negotiated_svdm_version(typec); + if (svdm_version < 0) + return 0; + break; + default: + modep = &port->mode_data; + pdev = typec_match_altmode(port->partner_altmode, + ALTMODE_DISCOVERY_MAX, + PD_VDO_VID(p[0]), + PD_VDO_OPOS(p[0])); + svdm_version = typec_get_negotiated_svdm_version(typec); + if (svdm_version < 0) + return 0; + break; + } switch (cmd_type) { case CMDT_INIT: + /* + * Only the port or port partner is allowed to initialize SVDM + * commands over SOP'. In case the port partner initializes a + * sequence when it is not allowed to send SOP' messages, drop + * the message should the TCPM port try to process it. + */ + if (rx_sop_type == TCPC_TX_SOP_PRIME) + return 0; + switch (cmd) { case CMD_DISCOVER_IDENT: if (PD_VDO_VID(p[0]) != USB_SID_PD) @@ -1699,55 +1998,186 @@ static int tcpm_pd_svdm(struct tcpm_port *port, struct typec_altmode *adev, (VDO_SVDM_VERS(typec_get_negotiated_svdm_version(typec))); break; case CMDT_RSP_ACK: - /* silently drop message if we are not connected */ - if (IS_ERR_OR_NULL(port->partner)) + /* + * Silently drop message if we are not connected, but can process + * if SOP' Discover Identity prior to explicit contract. + */ + if (IS_ERR_OR_NULL(port->partner) && + !(rx_sop_type == TCPC_TX_SOP_PRIME && cmd == CMD_DISCOVER_IDENT)) break; tcpm_ams_finish(port); switch (cmd) { + /* + * SVDM Command Flow for SOP and SOP': + * SOP Discover Identity + * SOP' Discover Identity + * SOP Discover SVIDs + * Discover Modes + * (Active Cables) + * SOP' Discover SVIDs + * Discover Modes + * + * Perform Discover SOP' if the port can communicate with cable + * plug. + */ case CMD_DISCOVER_IDENT: - if (PD_VDO_SVDM_VER(p[0]) < svdm_version) - typec_partner_set_svdm_version(port->partner, - PD_VDO_SVDM_VER(p[0])); - /* 6.4.4.3.1 */ - svdm_consume_identity(port, p, cnt); - response[0] = VDO(USB_SID_PD, 1, typec_get_negotiated_svdm_version(typec), - CMD_DISCOVER_SVID); - rlen = 1; + switch (rx_sop_type) { + case TCPC_TX_SOP: + if (PD_VDO_SVDM_VER(p[0]) < svdm_version) { + typec_partner_set_svdm_version(port->partner, + PD_VDO_SVDM_VER(p[0])); + /* If cable is discovered before partner, downgrade svdm */ + if (!IS_ERR_OR_NULL(port->cable) && + (typec_get_cable_svdm_version(port->typec_port) > + svdm_version)) + typec_cable_set_svdm_version(port->cable, + svdm_version); + } + /* 6.4.4.3.1 */ + svdm_consume_identity(port, p, cnt); + /* Attempt Vconn swap, delay SOP' discovery if necessary */ + if (tcpm_attempt_vconn_swap_discovery(port)) { + port->send_discover_prime = true; + port->upcoming_state = VCONN_SWAP_SEND; + ret = tcpm_ams_start(port, VCONN_SWAP); + if (!ret) + return 0; + /* Cannot perform Vconn swap */ + port->upcoming_state = INVALID_STATE; + port->send_discover_prime = false; + } + + /* + * Attempt Discover Identity on SOP' if the + * cable was not discovered previously, and use + * the SVDM version of the partner to probe. + */ + if (IS_ERR_OR_NULL(port->cable) && + tcpm_can_communicate_sop_prime(port)) { + *response_tx_sop_type = TCPC_TX_SOP_PRIME; + port->send_discover_prime = true; + response[0] = VDO(USB_SID_PD, 1, + typec_get_negotiated_svdm_version(typec), + CMD_DISCOVER_IDENT); + rlen = 1; + } else { + *response_tx_sop_type = TCPC_TX_SOP; + response[0] = VDO(USB_SID_PD, 1, + typec_get_negotiated_svdm_version(typec), + CMD_DISCOVER_SVID); + rlen = 1; + } + break; + case TCPC_TX_SOP_PRIME: + /* + * svdm_consume_identity_sop_prime will determine + * the svdm_version for the cable moving forward. + */ + svdm_consume_identity_sop_prime(port, p, cnt); + + /* + * If received in SRC_VDM_IDENTITY_REQUEST, continue + * to SRC_SEND_CAPABILITIES + */ + if (port->state == SRC_VDM_IDENTITY_REQUEST) { + tcpm_set_state(port, SRC_SEND_CAPABILITIES, 0); + return 0; + } + + *response_tx_sop_type = TCPC_TX_SOP; + response[0] = VDO(USB_SID_PD, 1, + typec_get_negotiated_svdm_version(typec), + CMD_DISCOVER_SVID); + rlen = 1; + break; + default: + return 0; + } break; case CMD_DISCOVER_SVID: + *response_tx_sop_type = rx_sop_type; /* 6.4.4.3.2 */ - if (svdm_consume_svids(port, p, cnt)) { + if (svdm_consume_svids(port, p, cnt, rx_sop_type)) { response[0] = VDO(USB_SID_PD, 1, svdm_version, CMD_DISCOVER_SVID); rlen = 1; - } else if (modep->nsvids && supports_modal(port)) { - response[0] = VDO(modep->svids[0], 1, svdm_version, - CMD_DISCOVER_MODES); - rlen = 1; + } else { + if (rx_sop_type == TCPC_TX_SOP) { + if (modep->nsvids && supports_modal(port)) { + response[0] = VDO(modep->svids[0], 1, svdm_version, + CMD_DISCOVER_MODES); + rlen = 1; + } + } else if (rx_sop_type == TCPC_TX_SOP_PRIME) { + if (modep_prime->nsvids) { + response[0] = VDO(modep_prime->svids[0], 1, + svdm_version, CMD_DISCOVER_MODES); + rlen = 1; + } + } } break; case CMD_DISCOVER_MODES: - /* 6.4.4.3.3 */ - svdm_consume_modes(port, p, cnt); - modep->svid_index++; - if (modep->svid_index < modep->nsvids) { - u16 svid = modep->svids[modep->svid_index]; - response[0] = VDO(svid, 1, svdm_version, CMD_DISCOVER_MODES); - rlen = 1; - } else { - tcpm_register_partner_altmodes(port); + if (rx_sop_type == TCPC_TX_SOP) { + /* 6.4.4.3.3 */ + svdm_consume_modes(port, p, cnt, rx_sop_type); + modep->svid_index++; + if (modep->svid_index < modep->nsvids) { + u16 svid = modep->svids[modep->svid_index]; + *response_tx_sop_type = TCPC_TX_SOP; + response[0] = VDO(svid, 1, svdm_version, + CMD_DISCOVER_MODES); + rlen = 1; + } else if (tcpm_cable_vdm_supported(port)) { + *response_tx_sop_type = TCPC_TX_SOP_PRIME; + response[0] = VDO(USB_SID_PD, 1, + typec_get_cable_svdm_version(typec), + CMD_DISCOVER_SVID); + rlen = 1; + } else { + tcpm_register_partner_altmodes(port); + } + } else if (rx_sop_type == TCPC_TX_SOP_PRIME) { + /* 6.4.4.3.3 */ + svdm_consume_modes(port, p, cnt, rx_sop_type); + modep_prime->svid_index++; + if (modep_prime->svid_index < modep_prime->nsvids) { + u16 svid = modep_prime->svids[modep_prime->svid_index]; + *response_tx_sop_type = TCPC_TX_SOP_PRIME; + response[0] = VDO(svid, 1, + typec_get_cable_svdm_version(typec), + CMD_DISCOVER_MODES); + rlen = 1; + } else { + tcpm_register_plug_altmodes(port); + tcpm_register_partner_altmodes(port); + } } break; case CMD_ENTER_MODE: - if (adev && pdev) - *adev_action = ADEV_QUEUE_VDM_SEND_EXIT_MODE_ON_FAIL; + *response_tx_sop_type = rx_sop_type; + if (rx_sop_type == TCPC_TX_SOP) { + if (adev && pdev) { + typec_altmode_update_active(pdev, true); + *adev_action = ADEV_QUEUE_VDM_SEND_EXIT_MODE_ON_FAIL; + } + } else if (rx_sop_type == TCPC_TX_SOP_PRIME) { + if (adev && pdev_prime) { + typec_altmode_update_active(pdev_prime, true); + *adev_action = ADEV_QUEUE_VDM_SEND_EXIT_MODE_ON_FAIL; + } + } return 0; case CMD_EXIT_MODE: - if (adev && pdev) { - /* Back to USB Operation */ - *adev_action = ADEV_NOTIFY_USB_AND_QUEUE_VDM; - return 0; + *response_tx_sop_type = rx_sop_type; + if (rx_sop_type == TCPC_TX_SOP) { + if (adev && pdev) { + typec_altmode_update_active(pdev, false); + /* Back to USB Operation */ + *adev_action = ADEV_NOTIFY_USB_AND_QUEUE_VDM; + return 0; + } } break; case VDO_CMD_VENDOR(0) ... VDO_CMD_VENDOR(15): @@ -1800,13 +2230,15 @@ static void tcpm_pd_handle_msg(struct tcpm_port *port, enum tcpm_ams ams); static void tcpm_handle_vdm_request(struct tcpm_port *port, - const __le32 *payload, int cnt) + const __le32 *payload, int cnt, + enum tcpm_transmit_type rx_sop_type) { enum adev_actions adev_action = ADEV_NONE; struct typec_altmode *adev; u32 p[PD_MAX_PAYLOAD]; u32 response[8] = { }; int i, rlen = 0; + enum tcpm_transmit_type response_tx_sop_type = TCPC_TX_SOP; for (i = 0; i < cnt; i++) p[i] = le32_to_cpu(payload[i]); @@ -1841,7 +2273,8 @@ static void tcpm_handle_vdm_request(struct tcpm_port *port, * - We will send NAK and the flag will be cleared in the state machine. */ port->vdm_sm_running = true; - rlen = tcpm_pd_svdm(port, adev, p, cnt, response, &adev_action); + rlen = tcpm_pd_svdm(port, adev, p, cnt, response, &adev_action, + rx_sop_type, &response_tx_sop_type); } else { if (port->negotiated_rev >= PD_REV30) tcpm_pd_handle_msg(port, PD_MSG_CTRL_NOT_SUPP, NONE_AMS); @@ -1877,19 +2310,37 @@ static void tcpm_handle_vdm_request(struct tcpm_port *port, typec_altmode_vdm(adev, p[0], &p[1], cnt); break; case ADEV_QUEUE_VDM: - typec_altmode_vdm(adev, p[0], &p[1], cnt); + if (response_tx_sop_type == TCPC_TX_SOP_PRIME) + typec_cable_altmode_vdm(adev, TYPEC_PLUG_SOP_P, p[0], &p[1], cnt); + else + typec_altmode_vdm(adev, p[0], &p[1], cnt); break; case ADEV_QUEUE_VDM_SEND_EXIT_MODE_ON_FAIL: - if (typec_altmode_vdm(adev, p[0], &p[1], cnt)) { - int svdm_version = typec_get_negotiated_svdm_version( - port->typec_port); - if (svdm_version < 0) - break; - - response[0] = VDO(adev->svid, 1, svdm_version, - CMD_EXIT_MODE); - response[0] |= VDO_OPOS(adev->mode); - rlen = 1; + if (response_tx_sop_type == TCPC_TX_SOP_PRIME) { + if (typec_cable_altmode_vdm(adev, TYPEC_PLUG_SOP_P, + p[0], &p[1], cnt)) { + int svdm_version = typec_get_cable_svdm_version( + port->typec_port); + if (svdm_version < 0) + break; + + response[0] = VDO(adev->svid, 1, svdm_version, + CMD_EXIT_MODE); + response[0] |= VDO_OPOS(adev->mode); + rlen = 1; + } + } else { + if (typec_altmode_vdm(adev, p[0], &p[1], cnt)) { + int svdm_version = typec_get_negotiated_svdm_version( + port->typec_port); + if (svdm_version < 0) + break; + + response[0] = VDO(adev->svid, 1, svdm_version, + CMD_EXIT_MODE); + response[0] |= VDO_OPOS(adev->mode); + rlen = 1; + } } break; case ADEV_ATTENTION: @@ -1909,19 +2360,38 @@ static void tcpm_handle_vdm_request(struct tcpm_port *port, mutex_lock(&port->lock); if (rlen > 0) - tcpm_queue_vdm(port, response[0], &response[1], rlen - 1); + tcpm_queue_vdm(port, response[0], &response[1], rlen - 1, response_tx_sop_type); else port->vdm_sm_running = false; } static void tcpm_send_vdm(struct tcpm_port *port, u32 vid, int cmd, - const u32 *data, int count) + const u32 *data, int count, enum tcpm_transmit_type tx_sop_type) { - int svdm_version = typec_get_negotiated_svdm_version(port->typec_port); + int svdm_version; u32 header; - if (svdm_version < 0) - return; + switch (tx_sop_type) { + case TCPC_TX_SOP_PRIME: + /* + * If the port partner is discovered, then the port partner's + * SVDM Version will be returned + */ + svdm_version = typec_get_cable_svdm_version(port->typec_port); + if (svdm_version < 0) + svdm_version = SVDM_VER_MAX; + break; + case TCPC_TX_SOP: + svdm_version = typec_get_negotiated_svdm_version(port->typec_port); + if (svdm_version < 0) + return; + break; + default: + svdm_version = typec_get_negotiated_svdm_version(port->typec_port); + if (svdm_version < 0) + return; + break; + } if (WARN_ON(count > VDO_MAX_SIZE - 1)) count = VDO_MAX_SIZE - 1; @@ -1930,7 +2400,7 @@ static void tcpm_send_vdm(struct tcpm_port *port, u32 vid, int cmd, header = VDO(vid, ((vid & USB_SID_PD) == USB_SID_PD) ? 1 : (PD_VDO_CMD(cmd) <= CMD_ATTENTION), svdm_version, cmd); - tcpm_queue_vdm(port, header, data, count); + tcpm_queue_vdm(port, header, data, count, tx_sop_type); } static unsigned int vdm_ready_timeout(u32 vdm_hdr) @@ -1964,6 +2434,7 @@ static void vdm_run_state_machine(struct tcpm_port *port) struct pd_message msg; int i, res = 0; u32 vdo_hdr = port->vdo_data[0]; + u32 response[8] = { }; switch (port->vdm_state) { case VDM_STATE_READY: @@ -1977,7 +2448,8 @@ static void vdm_run_state_machine(struct tcpm_port *port) * if there's traffic or we're not in PDO ready state don't send * a VDM. */ - if (port->state != SRC_READY && port->state != SNK_READY) { + if (port->state != SRC_READY && port->state != SNK_READY && + port->state != SRC_VDM_IDENTITY_REQUEST) { port->vdm_sm_running = false; break; } @@ -1988,7 +2460,17 @@ static void vdm_run_state_machine(struct tcpm_port *port) case CMD_DISCOVER_IDENT: res = tcpm_ams_start(port, DISCOVER_IDENTITY); if (res == 0) { - port->send_discover = false; + switch (port->tx_sop_type) { + case TCPC_TX_SOP_PRIME: + port->send_discover_prime = false; + break; + case TCPC_TX_SOP: + port->send_discover = false; + break; + default: + port->send_discover = false; + break; + } } else if (res == -EAGAIN) { port->vdo_data[0] = 0; mod_send_discover_delayed_work(port, @@ -2044,12 +2526,21 @@ static void vdm_run_state_machine(struct tcpm_port *port) break; case VDM_STATE_ERR_SEND: /* + * When sending Discover Identity to SOP' before establishing an + * explicit contract, do not retry. Instead, weave sending + * Source_Capabilities over SOP and Discover Identity over SOP'. + */ + if (port->state == SRC_VDM_IDENTITY_REQUEST) { + tcpm_ams_finish(port); + port->vdm_state = VDM_STATE_DONE; + tcpm_set_state(port, SRC_SEND_CAPABILITIES, 0); + /* * A partner which does not support USB PD will not reply, * so this is not a fatal error. At the same time, some * devices may not return GoodCRC under some circumstances, * so we need to retry. */ - if (port->vdm_retries < 3) { + } else if (port->vdm_retries < 3) { tcpm_log(port, "VDM Tx error, retry"); port->vdm_retries++; port->vdm_state = VDM_STATE_READY; @@ -2057,19 +2548,59 @@ static void vdm_run_state_machine(struct tcpm_port *port) tcpm_ams_finish(port); } else { tcpm_ams_finish(port); + if (port->tx_sop_type == TCPC_TX_SOP) + break; + /* Handle SOP' Transmission Errors */ + switch (PD_VDO_CMD(vdo_hdr)) { + /* + * If Discover Identity fails on SOP', then resume + * discovery process on SOP only. + */ + case CMD_DISCOVER_IDENT: + port->vdo_data[0] = 0; + response[0] = VDO(USB_SID_PD, 1, + typec_get_negotiated_svdm_version( + port->typec_port), + CMD_DISCOVER_SVID); + tcpm_queue_vdm(port, response[0], &response[1], + 0, TCPC_TX_SOP); + break; + /* + * If Discover SVIDs or Discover Modes fail, then + * proceed with Alt Mode discovery process on SOP. + */ + case CMD_DISCOVER_SVID: + tcpm_register_partner_altmodes(port); + break; + case CMD_DISCOVER_MODES: + tcpm_register_partner_altmodes(port); + break; + default: + break; + } } break; case VDM_STATE_SEND_MESSAGE: /* Prepare and send VDM */ memset(&msg, 0, sizeof(msg)); - msg.header = PD_HEADER_LE(PD_DATA_VENDOR_DEF, - port->pwr_role, - port->data_role, - port->negotiated_rev, - port->message_id, port->vdo_count); + if (port->tx_sop_type == TCPC_TX_SOP_PRIME) { + msg.header = PD_HEADER_LE(PD_DATA_VENDOR_DEF, + 0, /* Cable Plug Indicator for DFP/UFP */ + 0, /* Reserved */ + port->negotiated_rev_prime, + port->message_id_prime, + port->vdo_count); + } else { + msg.header = PD_HEADER_LE(PD_DATA_VENDOR_DEF, + port->pwr_role, + port->data_role, + port->negotiated_rev, + port->message_id, + port->vdo_count); + } for (i = 0; i < port->vdo_count; i++) msg.payload[i] = cpu_to_le32(port->vdo_data[i]); - res = tcpm_pd_transmit(port, TCPC_TX_SOP, &msg); + res = tcpm_pd_transmit(port, port->tx_sop_type, &msg); if (res < 0) { port->vdm_state = VDM_STATE_ERR_SEND; } else { @@ -2244,7 +2775,7 @@ static int tcpm_altmode_enter(struct typec_altmode *altmode, u32 *vdo) header = VDO(altmode->svid, vdo ? 2 : 1, svdm_version, CMD_ENTER_MODE); header |= VDO_OPOS(altmode->mode); - tcpm_queue_vdm_unlocked(port, header, vdo, vdo ? 1 : 0); + tcpm_queue_vdm_unlocked(port, header, vdo, vdo ? 1 : 0, TCPC_TX_SOP); return 0; } @@ -2261,7 +2792,7 @@ static int tcpm_altmode_exit(struct typec_altmode *altmode) header = VDO(altmode->svid, 1, svdm_version, CMD_EXIT_MODE); header |= VDO_OPOS(altmode->mode); - tcpm_queue_vdm_unlocked(port, header, NULL, 0); + tcpm_queue_vdm_unlocked(port, header, NULL, 0, TCPC_TX_SOP); return 0; } @@ -2270,7 +2801,7 @@ static int tcpm_altmode_vdm(struct typec_altmode *altmode, { struct tcpm_port *port = typec_altmode_get_drvdata(altmode); - tcpm_queue_vdm_unlocked(port, header, data, count - 1); + tcpm_queue_vdm_unlocked(port, header, data, count - 1, TCPC_TX_SOP); return 0; } @@ -2281,6 +2812,58 @@ static const struct typec_altmode_ops tcpm_altmode_ops = { .vdm = tcpm_altmode_vdm, }; + +static int tcpm_cable_altmode_enter(struct typec_altmode *altmode, enum typec_plug_index sop, + u32 *vdo) +{ + struct tcpm_port *port = typec_altmode_get_drvdata(altmode); + int svdm_version; + u32 header; + + svdm_version = typec_get_cable_svdm_version(port->typec_port); + if (svdm_version < 0) + return svdm_version; + + header = VDO(altmode->svid, vdo ? 2 : 1, svdm_version, CMD_ENTER_MODE); + header |= VDO_OPOS(altmode->mode); + + tcpm_queue_vdm_unlocked(port, header, vdo, vdo ? 1 : 0, TCPC_TX_SOP_PRIME); + return 0; +} + +static int tcpm_cable_altmode_exit(struct typec_altmode *altmode, enum typec_plug_index sop) +{ + struct tcpm_port *port = typec_altmode_get_drvdata(altmode); + int svdm_version; + u32 header; + + svdm_version = typec_get_cable_svdm_version(port->typec_port); + if (svdm_version < 0) + return svdm_version; + + header = VDO(altmode->svid, 1, svdm_version, CMD_EXIT_MODE); + header |= VDO_OPOS(altmode->mode); + + tcpm_queue_vdm_unlocked(port, header, NULL, 0, TCPC_TX_SOP_PRIME); + return 0; +} + +static int tcpm_cable_altmode_vdm(struct typec_altmode *altmode, enum typec_plug_index sop, + u32 header, const u32 *data, int count) +{ + struct tcpm_port *port = typec_altmode_get_drvdata(altmode); + + tcpm_queue_vdm_unlocked(port, header, data, count - 1, TCPC_TX_SOP_PRIME); + + return 0; +} + +static const struct typec_cable_ops tcpm_cable_ops = { + .enter = tcpm_cable_altmode_enter, + .exit = tcpm_cable_altmode_exit, + .vdm = tcpm_cable_altmode_vdm, +}; + /* * PD (data, control) command handling functions */ @@ -2293,7 +2876,8 @@ static inline enum tcpm_state ready_state(struct tcpm_port *port) } static int tcpm_pd_send_control(struct tcpm_port *port, - enum pd_ctrl_msg_type type); + enum pd_ctrl_msg_type type, + enum tcpm_transmit_type tx_sop_type); static void tcpm_handle_alert(struct tcpm_port *port, const __le32 *payload, int cnt) @@ -2455,7 +3039,8 @@ static int tcpm_register_sink_caps(struct tcpm_port *port) } static void tcpm_pd_data_request(struct tcpm_port *port, - const struct pd_message *msg) + const struct pd_message *msg, + enum tcpm_transmit_type rx_sop_type) { enum pd_data_msg_type type = pd_header_type_le(msg->header); unsigned int cnt = pd_header_cnt_le(msg->header); @@ -2496,8 +3081,11 @@ static void tcpm_pd_data_request(struct tcpm_port *port, break; } - if (rev < PD_MAX_REV) + if (rev < PD_MAX_REV) { port->negotiated_rev = rev; + if (port->negotiated_rev_prime > port->negotiated_rev) + port->negotiated_rev_prime = port->negotiated_rev; + } if (port->pwr_role == TYPEC_SOURCE) { if (port->ams == GET_SOURCE_CAPABILITIES) @@ -2548,8 +3136,11 @@ static void tcpm_pd_data_request(struct tcpm_port *port, break; } - if (rev < PD_MAX_REV) + if (rev < PD_MAX_REV) { port->negotiated_rev = rev; + if (port->negotiated_rev_prime > port->negotiated_rev) + port->negotiated_rev_prime = port->negotiated_rev; + } if (port->pwr_role != TYPEC_SOURCE || cnt != 1) { tcpm_pd_handle_msg(port, @@ -2605,7 +3196,7 @@ static void tcpm_pd_data_request(struct tcpm_port *port, NONE_AMS); break; case PD_DATA_VENDOR_DEF: - tcpm_handle_vdm_request(port, msg->payload, cnt); + tcpm_handle_vdm_request(port, msg->payload, cnt, rx_sop_type); break; case PD_DATA_BIST: port->bist_request = le32_to_cpu(msg->payload[0]); @@ -2647,10 +3238,12 @@ static void tcpm_pps_complete(struct tcpm_port *port, int result) } static void tcpm_pd_ctrl_request(struct tcpm_port *port, - const struct pd_message *msg) + const struct pd_message *msg, + enum tcpm_transmit_type rx_sop_type) { enum pd_ctrl_msg_type type = pd_header_type_le(msg->header); enum tcpm_state next_state; + unsigned int rev = pd_header_rev_le(msg->header); /* * Stop VDM state machine if interrupted by other Messages while NOT_SUPP is allowed in @@ -2815,6 +3408,16 @@ static void tcpm_pd_ctrl_request(struct tcpm_port *port, case SOFT_RESET_SEND: if (port->ams == SOFT_RESET_AMS) tcpm_ams_finish(port); + /* + * SOP' Soft Reset is done after Vconn Swap, + * which returns to ready state + */ + if (rx_sop_type == TCPC_TX_SOP_PRIME) { + if (rev < port->negotiated_rev_prime) + port->negotiated_rev_prime = rev; + tcpm_set_state(port, ready_state(port), 0); + break; + } if (port->pwr_role == TYPEC_SOURCE) { port->upcoming_state = SRC_SEND_CAPABILITIES; tcpm_ams_start(port, POWER_NEGOTIATION); @@ -2981,6 +3584,7 @@ static void tcpm_pd_rx_handler(struct kthread_work *work) const struct pd_message *msg = &event->msg; unsigned int cnt = pd_header_cnt_le(msg->header); struct tcpm_port *port = event->port; + enum tcpm_transmit_type rx_sop_type = event->rx_sop_type; mutex_lock(&port->lock); @@ -2992,6 +3596,14 @@ static void tcpm_pd_rx_handler(struct kthread_work *work) unsigned int msgid = pd_header_msgid_le(msg->header); /* + * Drop SOP' messages if cannot receive via + * tcpm_can_communicate_sop_prime + */ + if (rx_sop_type == TCPC_TX_SOP_PRIME && + !tcpm_can_communicate_sop_prime(port)) + goto done; + + /* * USB PD standard, 6.6.1.2: * "... if MessageID value in a received Message is the * same as the stored value, the receiver shall return a @@ -3000,16 +3612,26 @@ static void tcpm_pd_rx_handler(struct kthread_work *work) * Message). Note: this shall not apply to the Soft_Reset * Message which always has a MessageID value of zero." */ - if (msgid == port->rx_msgid && type != PD_CTRL_SOFT_RESET) - goto done; - port->rx_msgid = msgid; + switch (rx_sop_type) { + case TCPC_TX_SOP_PRIME: + if (msgid == port->rx_msgid_prime) + goto done; + port->rx_msgid_prime = msgid; + break; + case TCPC_TX_SOP: + default: + if (msgid == port->rx_msgid && type != PD_CTRL_SOFT_RESET) + goto done; + port->rx_msgid = msgid; + break; + } /* * If both ends believe to be DFP/host, we have a data role * mismatch. */ if (!!(le16_to_cpu(msg->header) & PD_HEADER_DATA_ROLE) == - (port->data_role == TYPEC_HOST)) { + (port->data_role == TYPEC_HOST) && rx_sop_type == TCPC_TX_SOP) { tcpm_log(port, "Data role mismatch, initiating error recovery"); tcpm_set_state(port, ERROR_RECOVERY, 0); @@ -3017,9 +3639,9 @@ static void tcpm_pd_rx_handler(struct kthread_work *work) if (le16_to_cpu(msg->header) & PD_HEADER_EXT_HDR) tcpm_pd_ext_msg_request(port, msg); else if (cnt) - tcpm_pd_data_request(port, msg); + tcpm_pd_data_request(port, msg, rx_sop_type); else - tcpm_pd_ctrl_request(port, msg); + tcpm_pd_ctrl_request(port, msg, rx_sop_type); } } @@ -3028,7 +3650,8 @@ done: kfree(event); } -void tcpm_pd_receive(struct tcpm_port *port, const struct pd_message *msg) +void tcpm_pd_receive(struct tcpm_port *port, const struct pd_message *msg, + enum tcpm_transmit_type rx_sop_type) { struct pd_rx_event *event; @@ -3038,23 +3661,47 @@ void tcpm_pd_receive(struct tcpm_port *port, const struct pd_message *msg) kthread_init_work(&event->work, tcpm_pd_rx_handler); event->port = port; + event->rx_sop_type = rx_sop_type; memcpy(&event->msg, msg, sizeof(*msg)); kthread_queue_work(port->wq, &event->work); } EXPORT_SYMBOL_GPL(tcpm_pd_receive); static int tcpm_pd_send_control(struct tcpm_port *port, - enum pd_ctrl_msg_type type) + enum pd_ctrl_msg_type type, + enum tcpm_transmit_type tx_sop_type) { struct pd_message msg; memset(&msg, 0, sizeof(msg)); - msg.header = PD_HEADER_LE(type, port->pwr_role, - port->data_role, - port->negotiated_rev, - port->message_id, 0); + switch (tx_sop_type) { + case TCPC_TX_SOP_PRIME: + msg.header = PD_HEADER_LE(type, + 0, /* Cable Plug Indicator for DFP/UFP */ + 0, /* Reserved */ + port->negotiated_rev, + port->message_id_prime, + 0); + break; + case TCPC_TX_SOP: + msg.header = PD_HEADER_LE(type, + port->pwr_role, + port->data_role, + port->negotiated_rev, + port->message_id, + 0); + break; + default: + msg.header = PD_HEADER_LE(type, + port->pwr_role, + port->data_role, + port->negotiated_rev, + port->message_id, + 0); + break; + } - return tcpm_pd_transmit(port, TCPC_TX_SOP, &msg); + return tcpm_pd_transmit(port, tx_sop_type, &msg); } /* @@ -3073,13 +3720,13 @@ static bool tcpm_send_queued_message(struct tcpm_port *port) switch (queued_message) { case PD_MSG_CTRL_WAIT: - tcpm_pd_send_control(port, PD_CTRL_WAIT); + tcpm_pd_send_control(port, PD_CTRL_WAIT, TCPC_TX_SOP); break; case PD_MSG_CTRL_REJECT: - tcpm_pd_send_control(port, PD_CTRL_REJECT); + tcpm_pd_send_control(port, PD_CTRL_REJECT, TCPC_TX_SOP); break; case PD_MSG_CTRL_NOT_SUPP: - tcpm_pd_send_control(port, PD_CTRL_NOT_SUPP); + tcpm_pd_send_control(port, PD_CTRL_NOT_SUPP, TCPC_TX_SOP); break; case PD_MSG_DATA_SINK_CAP: ret = tcpm_pd_send_sink_caps(port); @@ -3649,6 +4296,7 @@ static int tcpm_src_attach(struct tcpm_port *port) port->attached = true; port->send_discover = true; + port->send_discover_prime = false; return 0; @@ -3665,6 +4313,15 @@ out_disable_mux: static void tcpm_typec_disconnect(struct tcpm_port *port) { + /* + * Unregister plug/cable outside of port->connected because cable can + * be discovered before SRC_READY/SNK_READY states where port->connected + * is set. + */ + typec_unregister_plug(port->plug_prime); + typec_unregister_cable(port->cable); + port->plug_prime = NULL; + port->cable = NULL; if (port->connected) { typec_partner_set_usb_power_delivery(port->partner, NULL); typec_unregister_partner(port->partner); @@ -3676,14 +4333,20 @@ static void tcpm_typec_disconnect(struct tcpm_port *port) static void tcpm_unregister_altmodes(struct tcpm_port *port) { struct pd_mode_data *modep = &port->mode_data; + struct pd_mode_data *modep_prime = &port->mode_data_prime; int i; for (i = 0; i < modep->altmodes; i++) { typec_unregister_altmode(port->partner_altmode[i]); port->partner_altmode[i] = NULL; } + for (i = 0; i < modep_prime->altmodes; i++) { + typec_unregister_altmode(port->plug_prime_altmode[i]); + port->plug_prime_altmode[i] = NULL; + } memset(modep, 0, sizeof(*modep)); + memset(modep_prime, 0, sizeof(*modep_prime)); } static void tcpm_set_partner_usb_comm_capable(struct tcpm_port *port, bool capable) @@ -3712,6 +4375,7 @@ static void tcpm_reset_port(struct tcpm_port *port) * we can check tcpm_pd_rx_handler() if we had seen it before. */ port->rx_msgid = -1; + port->rx_msgid_prime = -1; port->tcpc->set_pd_rx(port->tcpc, false); tcpm_init_vbus(port); /* also disables charging */ @@ -3783,6 +4447,7 @@ static int tcpm_snk_attach(struct tcpm_port *port) port->attached = true; port->send_discover = true; + port->send_discover_prime = false; return 0; } @@ -4023,8 +4688,11 @@ static void run_state_machine(struct tcpm_port *port) port->pwr_opmode = TYPEC_PWR_MODE_USB; port->caps_count = 0; port->negotiated_rev = PD_MAX_REV; + port->negotiated_rev_prime = PD_MAX_REV; port->message_id = 0; + port->message_id_prime = 0; port->rx_msgid = -1; + port->rx_msgid_prime = -1; port->explicit_contract = false; /* SNK -> SRC POWER/FAST_ROLE_SWAP finished */ if (port->ams == POWER_ROLE_SWAP || @@ -4045,8 +4713,12 @@ static void run_state_machine(struct tcpm_port *port) } ret = tcpm_pd_send_source_caps(port); if (ret < 0) { - tcpm_set_state(port, SRC_SEND_CAPABILITIES, - PD_T_SEND_SOURCE_CAP); + if (tcpm_can_communicate_sop_prime(port) && + IS_ERR_OR_NULL(port->cable)) + tcpm_set_state(port, SRC_VDM_IDENTITY_REQUEST, 0); + else + tcpm_set_state(port, SRC_SEND_CAPABILITIES, + PD_T_SEND_SOURCE_CAP); } else { /* * Per standard, we should clear the reset counter here. @@ -4087,7 +4759,7 @@ static void run_state_machine(struct tcpm_port *port) case SRC_NEGOTIATE_CAPABILITIES: ret = tcpm_pd_check_request(port); if (ret < 0) { - tcpm_pd_send_control(port, PD_CTRL_REJECT); + tcpm_pd_send_control(port, PD_CTRL_REJECT, TCPC_TX_SOP); if (!port->explicit_contract) { tcpm_set_state(port, SRC_WAIT_NEW_CAPABILITIES, 0); @@ -4095,7 +4767,7 @@ static void run_state_machine(struct tcpm_port *port) tcpm_set_state(port, SRC_READY, 0); } } else { - tcpm_pd_send_control(port, PD_CTRL_ACCEPT); + tcpm_pd_send_control(port, PD_CTRL_ACCEPT, TCPC_TX_SOP); tcpm_set_partner_usb_comm_capable(port, !!(port->sink_request & RDO_USB_COMM)); tcpm_set_state(port, SRC_TRANSITION_SUPPLY, @@ -4104,7 +4776,7 @@ static void run_state_machine(struct tcpm_port *port) break; case SRC_TRANSITION_SUPPLY: /* XXX: regulator_set_voltage(vbus, ...) */ - tcpm_pd_send_control(port, PD_CTRL_PS_RDY); + tcpm_pd_send_control(port, PD_CTRL_PS_RDY, TCPC_TX_SOP); port->explicit_contract = true; typec_set_pwr_opmode(port->typec_port, TYPEC_PWR_MODE_PD); port->pwr_opmode = TYPEC_PWR_MODE_PD; @@ -4141,14 +4813,23 @@ static void run_state_machine(struct tcpm_port *port) * 6.4.4.3.1 Discover Identity * "The Discover Identity Command Shall only be sent to SOP when there is an * Explicit Contract." - * For now, this driver only supports SOP for DISCOVER_IDENTITY, thus using - * port->explicit_contract to decide whether to send the command. + * + * Discover Identity on SOP' should be discovered prior to the + * ready state, but if done after a Vconn Swap following Discover + * Identity on SOP then the discovery process can be run here + * as well. */ if (port->explicit_contract) { - tcpm_set_initial_svdm_version(port); + if (port->send_discover_prime) { + port->tx_sop_type = TCPC_TX_SOP_PRIME; + } else { + port->tx_sop_type = TCPC_TX_SOP; + tcpm_set_initial_svdm_version(port); + } mod_send_discover_delayed_work(port, 0); } else { port->send_discover = false; + port->send_discover_prime = false; } /* @@ -4264,8 +4945,11 @@ static void run_state_machine(struct tcpm_port *port) typec_set_pwr_opmode(port->typec_port, opmode); port->pwr_opmode = TYPEC_PWR_MODE_USB; port->negotiated_rev = PD_MAX_REV; + port->negotiated_rev_prime = PD_MAX_REV; port->message_id = 0; + port->message_id_prime = 0; port->rx_msgid = -1; + port->rx_msgid_prime = -1; port->explicit_contract = false; if (port->ams == POWER_ROLE_SWAP || @@ -4437,14 +5121,23 @@ static void run_state_machine(struct tcpm_port *port) * 6.4.4.3.1 Discover Identity * "The Discover Identity Command Shall only be sent to SOP when there is an * Explicit Contract." - * For now, this driver only supports SOP for DISCOVER_IDENTITY, thus using - * port->explicit_contract. + * + * Discover Identity on SOP' should be discovered prior to the + * ready state, but if done after a Vconn Swap following Discover + * Identity on SOP then the discovery process can be run here + * as well. */ if (port->explicit_contract) { - tcpm_set_initial_svdm_version(port); + if (port->send_discover_prime) { + port->tx_sop_type = TCPC_TX_SOP_PRIME; + } else { + port->tx_sop_type = TCPC_TX_SOP; + tcpm_set_initial_svdm_version(port); + } mod_send_discover_delayed_work(port, 0); } else { port->send_discover = false; + port->send_discover_prime = false; } power_supply_changed(port->psy); @@ -4485,6 +5178,7 @@ static void run_state_machine(struct tcpm_port *port) tcpm_unregister_altmodes(port); port->nr_sink_caps = 0; port->send_discover = true; + port->send_discover_prime = false; if (port->pwr_role == TYPEC_SOURCE) tcpm_set_state(port, SRC_HARD_RESET_VBUS_OFF, PD_T_PS_HARD_RESET); @@ -4586,7 +5280,7 @@ static void run_state_machine(struct tcpm_port *port) /* remove existing capabilities */ usb_power_delivery_unregister_capabilities(port->partner_source_caps); port->partner_source_caps = NULL; - tcpm_pd_send_control(port, PD_CTRL_ACCEPT); + tcpm_pd_send_control(port, PD_CTRL_ACCEPT, TCPC_TX_SOP); tcpm_ams_finish(port); if (port->pwr_role == TYPEC_SOURCE) { port->upcoming_state = SRC_SEND_CAPABILITIES; @@ -4603,35 +5297,53 @@ static void run_state_machine(struct tcpm_port *port) tcpm_ams_start(port, SOFT_RESET_AMS); break; case SOFT_RESET_SEND: - port->message_id = 0; - port->rx_msgid = -1; - /* remove existing capabilities */ - usb_power_delivery_unregister_capabilities(port->partner_source_caps); - port->partner_source_caps = NULL; - if (tcpm_pd_send_control(port, PD_CTRL_SOFT_RESET)) - tcpm_set_state_cond(port, hard_reset_state(port), 0); - else - tcpm_set_state_cond(port, hard_reset_state(port), - PD_T_SENDER_RESPONSE); + /* + * Power Delivery 3.0 Section 6.3.13 + * + * A Soft_Reset Message Shall be targeted at a specific entity + * depending on the type of SOP* packet used. + */ + if (port->tx_sop_type == TCPC_TX_SOP_PRIME) { + port->message_id_prime = 0; + port->rx_msgid_prime = -1; + tcpm_pd_send_control(port, PD_CTRL_SOFT_RESET, TCPC_TX_SOP_PRIME); + tcpm_set_state_cond(port, ready_state(port), PD_T_SENDER_RESPONSE); + } else { + port->message_id = 0; + port->rx_msgid = -1; + /* remove existing capabilities */ + usb_power_delivery_unregister_capabilities(port->partner_source_caps); + port->partner_source_caps = NULL; + if (tcpm_pd_send_control(port, PD_CTRL_SOFT_RESET, TCPC_TX_SOP)) + tcpm_set_state_cond(port, hard_reset_state(port), 0); + else + tcpm_set_state_cond(port, hard_reset_state(port), + PD_T_SENDER_RESPONSE); + } break; /* DR_Swap states */ case DR_SWAP_SEND: - tcpm_pd_send_control(port, PD_CTRL_DR_SWAP); - if (port->data_role == TYPEC_DEVICE || port->negotiated_rev > PD_REV20) + tcpm_pd_send_control(port, PD_CTRL_DR_SWAP, TCPC_TX_SOP); + if (port->data_role == TYPEC_DEVICE || port->negotiated_rev > PD_REV20) { port->send_discover = true; + port->send_discover_prime = false; + } tcpm_set_state_cond(port, DR_SWAP_SEND_TIMEOUT, PD_T_SENDER_RESPONSE); break; case DR_SWAP_ACCEPT: - tcpm_pd_send_control(port, PD_CTRL_ACCEPT); - if (port->data_role == TYPEC_DEVICE || port->negotiated_rev > PD_REV20) + tcpm_pd_send_control(port, PD_CTRL_ACCEPT, TCPC_TX_SOP); + if (port->data_role == TYPEC_DEVICE || port->negotiated_rev > PD_REV20) { port->send_discover = true; + port->send_discover_prime = false; + } tcpm_set_state_cond(port, DR_SWAP_CHANGE_DR, 0); break; case DR_SWAP_SEND_TIMEOUT: tcpm_swap_complete(port, -ETIMEDOUT); port->send_discover = false; + port->send_discover_prime = false; tcpm_ams_finish(port); tcpm_set_state(port, ready_state(port), 0); break; @@ -4648,7 +5360,7 @@ static void run_state_machine(struct tcpm_port *port) break; case FR_SWAP_SEND: - if (tcpm_pd_send_control(port, PD_CTRL_FR_SWAP)) { + if (tcpm_pd_send_control(port, PD_CTRL_FR_SWAP, TCPC_TX_SOP)) { tcpm_set_state(port, ERROR_RECOVERY, 0); break; } @@ -4668,7 +5380,7 @@ static void run_state_machine(struct tcpm_port *port) break; case FR_SWAP_SNK_SRC_SOURCE_VBUS_APPLIED: tcpm_set_pwr_role(port, TYPEC_SOURCE); - if (tcpm_pd_send_control(port, PD_CTRL_PS_RDY)) { + if (tcpm_pd_send_control(port, PD_CTRL_PS_RDY, TCPC_TX_SOP)) { tcpm_set_state(port, ERROR_RECOVERY, 0); break; } @@ -4678,11 +5390,11 @@ static void run_state_machine(struct tcpm_port *port) /* PR_Swap states */ case PR_SWAP_ACCEPT: - tcpm_pd_send_control(port, PD_CTRL_ACCEPT); + tcpm_pd_send_control(port, PD_CTRL_ACCEPT, TCPC_TX_SOP); tcpm_set_state(port, PR_SWAP_START, 0); break; case PR_SWAP_SEND: - tcpm_pd_send_control(port, PD_CTRL_PR_SWAP); + tcpm_pd_send_control(port, PD_CTRL_PR_SWAP, TCPC_TX_SOP); tcpm_set_state_cond(port, PR_SWAP_SEND_TIMEOUT, PD_T_SENDER_RESPONSE); break; @@ -4724,7 +5436,7 @@ static void run_state_machine(struct tcpm_port *port) * supply is turned off" */ tcpm_set_pwr_role(port, TYPEC_SINK); - if (tcpm_pd_send_control(port, PD_CTRL_PS_RDY)) { + if (tcpm_pd_send_control(port, PD_CTRL_PS_RDY, TCPC_TX_SOP)) { tcpm_set_state(port, ERROR_RECOVERY, 0); break; } @@ -4771,17 +5483,17 @@ static void run_state_machine(struct tcpm_port *port) * Source." */ tcpm_set_pwr_role(port, TYPEC_SOURCE); - tcpm_pd_send_control(port, PD_CTRL_PS_RDY); + tcpm_pd_send_control(port, PD_CTRL_PS_RDY, TCPC_TX_SOP); tcpm_set_state(port, SRC_STARTUP, PD_T_SWAP_SRC_START); break; case VCONN_SWAP_ACCEPT: - tcpm_pd_send_control(port, PD_CTRL_ACCEPT); + tcpm_pd_send_control(port, PD_CTRL_ACCEPT, TCPC_TX_SOP); tcpm_ams_finish(port); tcpm_set_state(port, VCONN_SWAP_START, 0); break; case VCONN_SWAP_SEND: - tcpm_pd_send_control(port, PD_CTRL_VCONN_SWAP); + tcpm_pd_send_control(port, PD_CTRL_VCONN_SWAP, TCPC_TX_SOP); tcpm_set_state(port, VCONN_SWAP_SEND_TIMEOUT, PD_T_SENDER_RESPONSE); break; @@ -4800,14 +5512,34 @@ static void run_state_machine(struct tcpm_port *port) PD_T_VCONN_SOURCE_ON); break; case VCONN_SWAP_TURN_ON_VCONN: - tcpm_set_vconn(port, true); - tcpm_pd_send_control(port, PD_CTRL_PS_RDY); - tcpm_set_state(port, ready_state(port), 0); + ret = tcpm_set_vconn(port, true); + tcpm_pd_send_control(port, PD_CTRL_PS_RDY, TCPC_TX_SOP); + /* + * USB PD 3.0 Section 6.4.4.3.1 + * + * Note that a Cable Plug or VPD will not be ready for PD + * Communication until tVCONNStable after VCONN has been applied + */ + if (!ret) + tcpm_set_state(port, VCONN_SWAP_SEND_SOFT_RESET, + PD_T_VCONN_STABLE); + else + tcpm_set_state(port, ready_state(port), 0); break; case VCONN_SWAP_TURN_OFF_VCONN: tcpm_set_vconn(port, false); tcpm_set_state(port, ready_state(port), 0); break; + case VCONN_SWAP_SEND_SOFT_RESET: + tcpm_swap_complete(port, port->swap_status); + if (tcpm_can_communicate_sop_prime(port)) { + port->tx_sop_type = TCPC_TX_SOP_PRIME; + port->upcoming_state = SOFT_RESET_SEND; + tcpm_ams_start(port, SOFT_RESET_AMS); + } else { + tcpm_set_state(port, ready_state(port), 0); + } + break; case DR_SWAP_CANCEL: case PR_SWAP_CANCEL: @@ -4843,7 +5575,7 @@ static void run_state_machine(struct tcpm_port *port) } break; case GET_STATUS_SEND: - tcpm_pd_send_control(port, PD_CTRL_GET_STATUS); + tcpm_pd_send_control(port, PD_CTRL_GET_STATUS, TCPC_TX_SOP); tcpm_set_state(port, GET_STATUS_SEND_TIMEOUT, PD_T_SENDER_RESPONSE); break; @@ -4851,7 +5583,7 @@ static void run_state_machine(struct tcpm_port *port) tcpm_set_state(port, ready_state(port), 0); break; case GET_PPS_STATUS_SEND: - tcpm_pd_send_control(port, PD_CTRL_GET_PPS_STATUS); + tcpm_pd_send_control(port, PD_CTRL_GET_PPS_STATUS, TCPC_TX_SOP); tcpm_set_state(port, GET_PPS_STATUS_SEND_TIMEOUT, PD_T_SENDER_RESPONSE); break; @@ -4859,7 +5591,7 @@ static void run_state_machine(struct tcpm_port *port) tcpm_set_state(port, ready_state(port), 0); break; case GET_SINK_CAP: - tcpm_pd_send_control(port, PD_CTRL_GET_SINK_CAP); + tcpm_pd_send_control(port, PD_CTRL_GET_SINK_CAP, TCPC_TX_SOP); tcpm_set_state(port, GET_SINK_CAP_TIMEOUT, PD_T_SENDER_RESPONSE); break; case GET_SINK_CAP_TIMEOUT: @@ -4902,9 +5634,18 @@ static void run_state_machine(struct tcpm_port *port) /* Chunk state */ case CHUNK_NOT_SUPP: - tcpm_pd_send_control(port, PD_CTRL_NOT_SUPP); + tcpm_pd_send_control(port, PD_CTRL_NOT_SUPP, TCPC_TX_SOP); tcpm_set_state(port, port->pwr_role == TYPEC_SOURCE ? SRC_READY : SNK_READY, 0); break; + + /* Cable states */ + case SRC_VDM_IDENTITY_REQUEST: + port->send_discover_prime = true; + port->tx_sop_type = TCPC_TX_SOP_PRIME; + mod_send_discover_delayed_work(port, 0); + port->upcoming_state = SRC_SEND_CAPABILITIES; + break; + default: WARN(1, "Unexpected port state %d\n", port->state); break; @@ -5596,7 +6337,8 @@ static void tcpm_enable_frs_work(struct kthread_work *work) goto unlock; /* Send when the state machine is idle */ - if (port->state != SNK_READY || port->vdm_sm_running || port->send_discover) + if (port->state != SNK_READY || port->vdm_sm_running || port->send_discover || + port->send_discover_prime) goto resched; port->upcoming_state = GET_SINK_CAP; @@ -5619,21 +6361,23 @@ static void tcpm_send_discover_work(struct kthread_work *work) mutex_lock(&port->lock); /* No need to send DISCOVER_IDENTITY anymore */ - if (!port->send_discover) + if (!port->send_discover && !port->send_discover_prime) goto unlock; if (port->data_role == TYPEC_DEVICE && port->negotiated_rev < PD_REV30) { port->send_discover = false; + port->send_discover_prime = false; goto unlock; } /* Retry if the port is not idle */ - if ((port->state != SRC_READY && port->state != SNK_READY) || port->vdm_sm_running) { + if ((port->state != SRC_READY && port->state != SNK_READY && + port->state != SRC_VDM_IDENTITY_REQUEST) || port->vdm_sm_running) { mod_send_discover_delayed_work(port, SEND_DISCOVER_RETRY_MS); goto unlock; } - tcpm_send_vdm(port, USB_SID_PD, CMD_DISCOVER_IDENT, NULL, 0); + tcpm_send_vdm(port, USB_SID_PD, CMD_DISCOVER_IDENT, NULL, 0, port->tx_sop_type); unlock: mutex_unlock(&port->lock); @@ -6860,6 +7604,8 @@ struct tcpm_port *tcpm_register_port(struct device *dev, struct tcpc_dev *tcpc) typec_port_register_altmodes(port->typec_port, &tcpm_altmode_ops, port, port->port_altmode, ALTMODE_DISCOVERY_MAX); + typec_port_register_cable_ops(port->port_altmode, ARRAY_SIZE(port->port_altmode), + &tcpm_cable_ops); port->registered = true; mutex_lock(&port->lock); diff --git a/drivers/usb/typec/tcpm/wcove.c b/drivers/usb/typec/tcpm/wcove.c index 87d4abde0ea2..cf719307b3f6 100644 --- a/drivers/usb/typec/tcpm/wcove.c +++ b/drivers/usb/typec/tcpm/wcove.c @@ -535,7 +535,7 @@ static irqreturn_t wcove_typec_irq(int irq, void *data) goto err; } - tcpm_pd_receive(wcove->tcpm, &msg); + tcpm_pd_receive(wcove->tcpm, &msg, TCPC_TX_SOP); ret = regmap_read(wcove->regmap, USBC_RXSTATUS, &status); diff --git a/drivers/usb/typec/ucsi/ucsi.c b/drivers/usb/typec/ucsi/ucsi.c index 14f5a7bfae2e..cf52cb34d285 100644 --- a/drivers/usb/typec/ucsi/ucsi.c +++ b/drivers/usb/typec/ucsi/ucsi.c @@ -36,6 +36,19 @@ */ #define UCSI_SWAP_TIMEOUT_MS 5000 +static int ucsi_read_message_in(struct ucsi *ucsi, void *buf, + size_t buf_size) +{ + /* + * Below UCSI 2.0, MESSAGE_IN was limited to 16 bytes. Truncate the + * reads here. + */ + if (ucsi->version <= UCSI_VERSION_1_2) + buf_size = clamp(buf_size, 0, 16); + + return ucsi->ops->read(ucsi, UCSI_MESSAGE_IN, buf, buf_size); +} + static int ucsi_acknowledge_command(struct ucsi *ucsi) { u64 ctrl; @@ -72,7 +85,7 @@ static int ucsi_read_error(struct ucsi *ucsi) if (ret < 0) return ret; - ret = ucsi->ops->read(ucsi, UCSI_MESSAGE_IN, &error, sizeof(error)); + ret = ucsi_read_message_in(ucsi, &error, sizeof(error)); if (ret) return ret; @@ -170,7 +183,7 @@ int ucsi_send_command(struct ucsi *ucsi, u64 command, length = ret; if (data) { - ret = ucsi->ops->read(ucsi, UCSI_MESSAGE_IN, data, size); + ret = ucsi_read_message_in(ucsi, data, size); if (ret) goto out; } @@ -386,6 +399,27 @@ static int ucsi_register_altmode(struct ucsi_connector *con, con->partner_altmode[i] = alt; break; + case UCSI_RECIPIENT_SOP_P: + i = ucsi_next_altmode(con->plug_altmode); + if (i < 0) { + ret = i; + goto err; + } + + ret = ucsi_altmode_next_mode(con->plug_altmode, desc->svid); + if (ret < 0) + return ret; + + desc->mode = ret; + + alt = typec_plug_register_altmode(con->plug, desc); + if (IS_ERR(alt)) { + ret = PTR_ERR(alt); + goto err; + } + + con->plug_altmode[i] = alt; + break; default: return -EINVAL; } @@ -553,6 +587,9 @@ static void ucsi_unregister_altmodes(struct ucsi_connector *con, u8 recipient) case UCSI_RECIPIENT_SOP: adev = con->partner_altmode; break; + case UCSI_RECIPIENT_SOP_P: + adev = con->plug_altmode; + break; default: return; } @@ -633,6 +670,108 @@ static int ucsi_get_src_pdos(struct ucsi_connector *con) return ret; } +static int ucsi_read_identity(struct ucsi_connector *con, u8 recipient, + u8 offset, u8 bytes, void *resp) +{ + struct ucsi *ucsi = con->ucsi; + u64 command; + int ret; + + command = UCSI_COMMAND(UCSI_GET_PD_MESSAGE) | + UCSI_CONNECTOR_NUMBER(con->num); + command |= UCSI_GET_PD_MESSAGE_RECIPIENT(recipient); + command |= UCSI_GET_PD_MESSAGE_OFFSET(offset); + command |= UCSI_GET_PD_MESSAGE_BYTES(bytes); + command |= UCSI_GET_PD_MESSAGE_TYPE(UCSI_GET_PD_MESSAGE_TYPE_IDENTITY); + + ret = ucsi_send_command(ucsi, command, resp, bytes); + if (ret < 0) + dev_err(ucsi->dev, "UCSI_GET_PD_MESSAGE failed (%d)\n", ret); + + return ret; +} + +static int ucsi_get_identity(struct ucsi_connector *con, u8 recipient, + struct usb_pd_identity *id) +{ + struct ucsi *ucsi = con->ucsi; + struct ucsi_pd_message_disc_id resp = {}; + int ret; + + if (ucsi->version < UCSI_VERSION_2_0) { + /* + * Before UCSI v2.0, MESSAGE_IN is 16 bytes which cannot fit + * the 28 byte identity response including the VDM header. + * First request the VDM header, ID Header VDO, Cert Stat VDO + * and Product VDO. + */ + ret = ucsi_read_identity(con, recipient, 0, 0x10, &resp); + if (ret < 0) + return ret; + + + /* Then request Product Type VDO1 through Product Type VDO3. */ + ret = ucsi_read_identity(con, recipient, 0x10, 0xc, + &resp.vdo[0]); + if (ret < 0) + return ret; + + } else { + /* + * In UCSI v2.0 and after, MESSAGE_IN is large enough to request + * the large enough to request the full Discover Identity + * response at once. + */ + ret = ucsi_read_identity(con, recipient, 0x0, 0x1c, &resp); + if (ret < 0) + return ret; + } + + id->id_header = resp.id_header; + id->cert_stat = resp.cert_stat; + id->product = resp.product; + id->vdo[0] = resp.vdo[0]; + id->vdo[1] = resp.vdo[1]; + id->vdo[2] = resp.vdo[2]; + return 0; +} + +static int ucsi_get_partner_identity(struct ucsi_connector *con) +{ + int ret; + + ret = ucsi_get_identity(con, UCSI_RECIPIENT_SOP, + &con->partner_identity); + if (ret < 0) + return ret; + + ret = typec_partner_set_identity(con->partner); + if (ret < 0) { + dev_err(con->ucsi->dev, "Failed to set partner identity (%d)\n", + ret); + } + + return ret; +} + +static int ucsi_get_cable_identity(struct ucsi_connector *con) +{ + int ret; + + ret = ucsi_get_identity(con, UCSI_RECIPIENT_SOP_P, + &con->cable_identity); + if (ret < 0) + return ret; + + ret = typec_cable_set_identity(con->cable); + if (ret < 0) { + dev_err(con->ucsi->dev, "Failed to set cable identity (%d)\n", + ret); + } + + return ret; +} + static int ucsi_check_altmodes(struct ucsi_connector *con) { int ret, num_partner_am; @@ -721,6 +860,82 @@ static void ucsi_unregister_partner_pdos(struct ucsi_connector *con) con->partner_pd = NULL; } +static int ucsi_register_plug(struct ucsi_connector *con) +{ + struct typec_plug *plug; + struct typec_plug_desc desc = {.index = TYPEC_PLUG_SOP_P}; + + plug = typec_register_plug(con->cable, &desc); + if (IS_ERR(plug)) { + dev_err(con->ucsi->dev, + "con%d: failed to register plug (%ld)\n", con->num, + PTR_ERR(plug)); + return PTR_ERR(plug); + } + + con->plug = plug; + return 0; +} + +static void ucsi_unregister_plug(struct ucsi_connector *con) +{ + if (!con->plug) + return; + + ucsi_unregister_altmodes(con, UCSI_RECIPIENT_SOP_P); + typec_unregister_plug(con->plug); + con->plug = NULL; +} + +static int ucsi_register_cable(struct ucsi_connector *con) +{ + struct typec_cable *cable; + struct typec_cable_desc desc = {}; + + switch (UCSI_CABLE_PROP_FLAG_PLUG_TYPE(con->cable_prop.flags)) { + case UCSI_CABLE_PROPERTY_PLUG_TYPE_A: + desc.type = USB_PLUG_TYPE_A; + break; + case UCSI_CABLE_PROPERTY_PLUG_TYPE_B: + desc.type = USB_PLUG_TYPE_B; + break; + case UCSI_CABLE_PROPERTY_PLUG_TYPE_C: + desc.type = USB_PLUG_TYPE_C; + break; + default: + desc.type = USB_PLUG_NONE; + break; + } + + desc.identity = &con->cable_identity; + desc.active = !!(UCSI_CABLE_PROP_FLAG_ACTIVE_CABLE & + con->cable_prop.flags); + desc.pd_revision = UCSI_CABLE_PROP_FLAG_PD_MAJOR_REV_AS_BCD( + con->cable_prop.flags); + + cable = typec_register_cable(con->port, &desc); + if (IS_ERR(cable)) { + dev_err(con->ucsi->dev, + "con%d: failed to register cable (%ld)\n", con->num, + PTR_ERR(cable)); + return PTR_ERR(cable); + } + + con->cable = cable; + return 0; +} + +static void ucsi_unregister_cable(struct ucsi_connector *con) +{ + if (!con->cable) + return; + + ucsi_unregister_plug(con); + typec_unregister_cable(con->cable); + memset(&con->cable_identity, 0, sizeof(con->cable_identity)); + con->cable = NULL; +} + static void ucsi_pwr_opmode_change(struct ucsi_connector *con) { switch (UCSI_CONSTAT_PWR_OPMODE(con->status.flags)) { @@ -768,7 +983,9 @@ static int ucsi_register_partner(struct ucsi_connector *con) break; } + desc.identity = &con->partner_identity; desc.usb_pd = pwr_opmode == UCSI_CONSTAT_PWR_OPMODE_PD; + desc.pd_revision = UCSI_CONCAP_FLAG_PARTNER_PD_MAJOR_REV_AS_BCD(con->cap.flags); partner = typec_register_partner(con->port, &desc); if (IS_ERR(partner)) { @@ -793,7 +1010,9 @@ static void ucsi_unregister_partner(struct ucsi_connector *con) typec_partner_set_usb_power_delivery(con->partner, NULL); ucsi_unregister_partner_pdos(con); ucsi_unregister_altmodes(con, UCSI_RECIPIENT_SOP); + ucsi_unregister_cable(con); typec_unregister_partner(con->partner); + memset(&con->partner_identity, 0, sizeof(con->partner_identity)); con->partner = NULL; } @@ -843,6 +1062,27 @@ static void ucsi_partner_change(struct ucsi_connector *con) con->num, u_role); } +static int ucsi_check_connector_capability(struct ucsi_connector *con) +{ + u64 command; + int ret; + + if (!con->partner || con->ucsi->version < UCSI_VERSION_2_0) + return 0; + + command = UCSI_GET_CONNECTOR_CAPABILITY | UCSI_CONNECTOR_NUMBER(con->num); + ret = ucsi_send_command(con->ucsi, command, &con->cap, sizeof(con->cap)); + if (ret < 0) { + dev_err(con->ucsi->dev, "GET_CONNECTOR_CAPABILITY failed (%d)\n", ret); + return ret; + } + + typec_partner_set_pd_revision(con->partner, + UCSI_CONCAP_FLAG_PARTNER_PD_MAJOR_REV_AS_BCD(con->cap.flags)); + + return ret; +} + static int ucsi_check_connection(struct ucsi_connector *con) { u8 prev_flags = con->status.flags; @@ -872,6 +1112,42 @@ static int ucsi_check_connection(struct ucsi_connector *con) return 0; } +static int ucsi_check_cable(struct ucsi_connector *con) +{ + u64 command; + int ret; + + if (con->cable) + return 0; + + command = UCSI_GET_CABLE_PROPERTY | UCSI_CONNECTOR_NUMBER(con->num); + ret = ucsi_send_command(con->ucsi, command, &con->cable_prop, + sizeof(con->cable_prop)); + if (ret < 0) { + dev_err(con->ucsi->dev, "GET_CABLE_PROPERTY failed (%d)\n", + ret); + return ret; + } + + ret = ucsi_register_cable(con); + if (ret < 0) + return ret; + + ret = ucsi_get_cable_identity(con); + if (ret < 0) + return ret; + + ret = ucsi_register_plug(con); + if (ret < 0) + return ret; + + ret = ucsi_register_altmodes(con, UCSI_RECIPIENT_SOP_P); + if (ret < 0) + return ret; + + return 0; +} + static void ucsi_handle_connector_change(struct work_struct *work) { struct ucsi_connector *con = container_of(work, struct ucsi_connector, @@ -912,6 +1188,9 @@ static void ucsi_handle_connector_change(struct work_struct *work) if (con->status.flags & UCSI_CONSTAT_CONNECTED) { ucsi_register_partner(con); ucsi_partner_task(con, ucsi_check_connection, 1, HZ); + ucsi_partner_task(con, ucsi_check_connector_capability, 1, HZ); + ucsi_partner_task(con, ucsi_get_partner_identity, 1, HZ); + ucsi_partner_task(con, ucsi_check_cable, 1, HZ); if (UCSI_CONSTAT_PWR_OPMODE(con->status.flags) == UCSI_CONSTAT_PWR_OPMODE_PD) @@ -1310,6 +1589,8 @@ static int ucsi_register_port(struct ucsi *ucsi, struct ucsi_connector *con) ucsi_register_partner(con); ucsi_pwr_opmode_change(con); ucsi_port_psy_changed(con); + ucsi_get_partner_identity(con); + ucsi_check_cable(con); } /* Only notify USB controller if partner supports USB data */ @@ -1558,6 +1839,15 @@ int ucsi_register(struct ucsi *ucsi) if (!ucsi->version) return -ENODEV; + /* + * Version format is JJ.M.N (JJ = Major version, M = Minor version, + * N = sub-minor version). + */ + dev_dbg(ucsi->dev, "Registered UCSI interface with version %x.%x.%x", + UCSI_BCD_GET_MAJOR(ucsi->version), + UCSI_BCD_GET_MINOR(ucsi->version), + UCSI_BCD_GET_SUBMINOR(ucsi->version)); + queue_delayed_work(system_long_wq, &ucsi->work, 0); ucsi_debugfs_register(ucsi); diff --git a/drivers/usb/typec/ucsi/ucsi.h b/drivers/usb/typec/ucsi/ucsi.h index 6478016d5cb8..32daf5f58650 100644 --- a/drivers/usb/typec/ucsi/ucsi.h +++ b/drivers/usb/typec/ucsi/ucsi.h @@ -10,6 +10,7 @@ #include <linux/usb/typec.h> #include <linux/usb/pd.h> #include <linux/usb/role.h> +#include <asm/unaligned.h> /* -------------------------------------------------------------------------- */ @@ -23,6 +24,23 @@ struct dentry; #define UCSI_CONTROL 8 #define UCSI_MESSAGE_IN 16 #define UCSI_MESSAGE_OUT 32 +#define UCSIv2_MESSAGE_OUT 272 + +/* UCSI versions */ +#define UCSI_VERSION_1_2 0x0120 +#define UCSI_VERSION_2_0 0x0200 +#define UCSI_VERSION_2_1 0x0210 +#define UCSI_VERSION_3_0 0x0300 + +#define UCSI_BCD_GET_MAJOR(_v_) (((_v_) >> 8) & 0xFF) +#define UCSI_BCD_GET_MINOR(_v_) (((_v_) >> 4) & 0x0F) +#define UCSI_BCD_GET_SUBMINOR(_v_) ((_v_) & 0x0F) + +/* + * Per USB PD 3.2, Section 6.2.1.1.5, the spec revision is represented by 2 bits + * 0b00 = 1.0, 0b01 = 2.0, 0b10 = 3.0, 0b11 = Reserved, Shall NOT be used. + */ +#define UCSI_SPEC_REVISION_TO_BCD(_v_) (((_v_) + 1) << 8) /* Command Status and Connector Change Indication (CCI) bits */ #define UCSI_CCI_CONNECTOR(_c_) (((_c_) & GENMASK(7, 1)) >> 1) @@ -88,6 +106,7 @@ void ucsi_connector_change(struct ucsi *ucsi, u8 num); #define UCSI_GET_CABLE_PROPERTY 0x11 #define UCSI_GET_CONNECTOR_STATUS 0x12 #define UCSI_GET_ERROR_STATUS 0x13 +#define UCSI_GET_PD_MESSAGE 0x15 #define UCSI_CONNECTOR_NUMBER(_num_) ((u64)(_num_) << 16) #define UCSI_COMMAND(_cmd_) ((_cmd_) & 0xff) @@ -141,6 +160,18 @@ void ucsi_connector_change(struct ucsi *ucsi, u8 num); #define UCSI_MAX_PDOS (4) #define UCSI_GET_PDOS_SRC_PDOS ((u64)1 << 34) +/* GET_PD_MESSAGE command bits */ +#define UCSI_GET_PD_MESSAGE_RECIPIENT(_r_) ((u64)(_r_) << 23) +#define UCSI_GET_PD_MESSAGE_OFFSET(_r_) ((u64)(_r_) << 26) +#define UCSI_GET_PD_MESSAGE_BYTES(_r_) ((u64)(_r_) << 34) +#define UCSI_GET_PD_MESSAGE_TYPE(_r_) ((u64)(_r_) << 42) +#define UCSI_GET_PD_MESSAGE_TYPE_SNK_CAP_EXT 0 +#define UCSI_GET_PD_MESSAGE_TYPE_SRC_CAP_EXT 1 +#define UCSI_GET_PD_MESSAGE_TYPE_BAT_CAP 2 +#define UCSI_GET_PD_MESSAGE_TYPE_BAT_STAT 3 +#define UCSI_GET_PD_MESSAGE_TYPE_IDENTITY 4 +#define UCSI_GET_PD_MESSAGE_TYPE_REVISION 5 + /* -------------------------------------------------------------------------- */ /* Error information returned by PPM in response to GET_ERROR_STATUS command. */ @@ -203,9 +234,29 @@ struct ucsi_connector_capability { #define UCSI_CONCAP_OPMODE_USB2 BIT(5) #define UCSI_CONCAP_OPMODE_USB3 BIT(6) #define UCSI_CONCAP_OPMODE_ALT_MODE BIT(7) - u8 flags; + u32 flags; #define UCSI_CONCAP_FLAG_PROVIDER BIT(0) #define UCSI_CONCAP_FLAG_CONSUMER BIT(1) +#define UCSI_CONCAP_FLAG_SWAP_TO_DFP BIT(2) +#define UCSI_CONCAP_FLAG_SWAP_TO_UFP BIT(3) +#define UCSI_CONCAP_FLAG_SWAP_TO_SRC BIT(4) +#define UCSI_CONCAP_FLAG_SWAP_TO_SINK BIT(5) +#define UCSI_CONCAP_FLAG_EX_OP_MODE(_f_) \ + (((_f_) & GENMASK(13, 6)) >> 6) +#define UCSI_CONCAP_EX_OP_MODE_USB4_GEN2 BIT(0) +#define UCSI_CONCAP_EX_OP_MODE_EPR_SRC BIT(1) +#define UCSI_CONCAP_EX_OP_MODE_EPR_SINK BIT(2) +#define UCSI_CONCAP_EX_OP_MODE_USB4_GEN3 BIT(3) +#define UCSI_CONCAP_EX_OP_MODE_USB4_GEN4 BIT(4) +#define UCSI_CONCAP_FLAG_MISC_CAPS(_f_) \ + (((_f_) & GENMASK(17, 14)) >> 14) +#define UCSI_CONCAP_MISC_CAP_FW_UPDATE BIT(0) +#define UCSI_CONCAP_MISC_CAP_SECURITY BIT(1) +#define UCSI_CONCAP_FLAG_REV_CURR_PROT_SUPPORT BIT(18) +#define UCSI_CONCAP_FLAG_PARTNER_PD_MAJOR_REV(_f_) \ + (((_f_) & GENMASK(20, 19)) >> 19) +#define UCSI_CONCAP_FLAG_PARTNER_PD_MAJOR_REV_AS_BCD(_f_) \ + UCSI_SPEC_REVISION_TO_BCD(UCSI_CONCAP_FLAG_PARTNER_PD_MAJOR_REV(_f_)) } __packed; struct ucsi_altmode { @@ -221,12 +272,15 @@ struct ucsi_cable_property { #define UCSI_CABLE_PROP_FLAG_VBUS_IN_CABLE BIT(0) #define UCSI_CABLE_PROP_FLAG_ACTIVE_CABLE BIT(1) #define UCSI_CABLE_PROP_FLAG_DIRECTIONALITY BIT(2) -#define UCSI_CABLE_PROP_FLAG_PLUG_TYPE(_f_) ((_f_) & GENMASK(3, 0)) +#define UCSI_CABLE_PROP_FLAG_PLUG_TYPE(_f_) (((_f_) & GENMASK(4, 3)) >> 3) #define UCSI_CABLE_PROPERTY_PLUG_TYPE_A 0 #define UCSI_CABLE_PROPERTY_PLUG_TYPE_B 1 #define UCSI_CABLE_PROPERTY_PLUG_TYPE_C 2 #define UCSI_CABLE_PROPERTY_PLUG_OTHER 3 -#define UCSI_CABLE_PROP_MODE_SUPPORT BIT(5) +#define UCSI_CABLE_PROP_FLAG_MODE_SUPPORT BIT(5) +#define UCSI_CABLE_PROP_FLAG_PD_MAJOR_REV(_f_) (((_f_) & GENMASK(7, 6)) >> 6) +#define UCSI_CABLE_PROP_FLAG_PD_MAJOR_REV_AS_BCD(_f_) \ + UCSI_SPEC_REVISION_TO_BCD(UCSI_CABLE_PROP_FLAG_PD_MAJOR_REV(_f_)) u8 latency; } __packed; @@ -265,15 +319,48 @@ struct ucsi_connector_status { #define UCSI_CONSTAT_PARTNER_TYPE_DEBUG 5 #define UCSI_CONSTAT_PARTNER_TYPE_AUDIO 6 u32 request_data_obj; - u8 pwr_status; -#define UCSI_CONSTAT_BC_STATUS(_p_) ((_p_) & GENMASK(2, 0)) + + u8 pwr_status[3]; +#define UCSI_CONSTAT_BC_STATUS(_p_) ((_p_[0]) & GENMASK(1, 0)) #define UCSI_CONSTAT_BC_NOT_CHARGING 0 #define UCSI_CONSTAT_BC_NOMINAL_CHARGING 1 #define UCSI_CONSTAT_BC_SLOW_CHARGING 2 #define UCSI_CONSTAT_BC_TRICKLE_CHARGING 3 -#define UCSI_CONSTAT_PROVIDER_CAP_LIMIT(_p_) (((_p_) & GENMASK(6, 3)) >> 3) +#define UCSI_CONSTAT_PROVIDER_CAP_LIMIT(_p_) (((_p_[0]) & GENMASK(5, 2)) >> 2) #define UCSI_CONSTAT_CAP_PWR_LOWERED 0 #define UCSI_CONSTAT_CAP_PWR_BUDGET_LIMIT 1 +#define UCSI_CONSTAT_PROVIDER_PD_VERSION_OPER_MODE(_p_) \ + ((get_unaligned_le32(_p_) & GENMASK(21, 6)) >> 6) +#define UCSI_CONSTAT_ORIENTATION(_p_) (((_p_[2]) & GENMASK(6, 6)) >> 6) +#define UCSI_CONSTAT_ORIENTATION_DIRECT 0 +#define UCSI_CONSTAT_ORIENTATION_FLIPPED 1 +#define UCSI_CONSTAT_SINK_PATH_STATUS(_p_) (((_p_[2]) & GENMASK(7, 7)) >> 7) +#define UCSI_CONSTAT_SINK_PATH_DISABLED 0 +#define UCSI_CONSTAT_SINK_PATH_ENABLED 1 + u8 pwr_readings[9]; +#define UCSI_CONSTAT_REV_CURR_PROT_STATUS(_p_) ((_p_[0]) & 0x1) +#define UCSI_CONSTAT_PWR_READING_VALID(_p_) (((_p_[0]) & GENMASK(1, 1)) >> 1) +#define UCSI_CONSTAT_CURRENT_SCALE(_p_) (((_p_[0]) & GENMASK(4, 2)) >> 2) +#define UCSI_CONSTAT_PEAK_CURRENT(_p_) \ + ((get_unaligned_le32(_p_) & GENMASK(20, 5)) >> 5) +#define UCSI_CONSTAT_AVG_CURRENT(_p_) \ + ((get_unaligned_le32(&(_p_)[2]) & GENMASK(20, 5)) >> 5) +#define UCSI_CONSTAT_VOLTAGE_SCALE(_p_) \ + ((get_unaligned_le16(&(_p_)[4]) & GENMASK(8, 5)) >> 5) +#define UCSI_CONSTAT_VOLTAGE_READING(_p_) \ + ((get_unaligned_le32(&(_p_)[5]) & GENMASK(16, 1)) >> 1) +} __packed; + +/* + * Data structure filled by PPM in response to GET_PD_MESSAGE command with the + * Response Message Type set to Discover Identity Response. + */ +struct ucsi_pd_message_disc_id { + u32 vdm_header; + u32 id_header; + u32 cert_stat; + u32 product; + u32 vdo[3]; } __packed; /* -------------------------------------------------------------------------- */ @@ -341,14 +428,18 @@ struct ucsi_connector { struct typec_port *port; struct typec_partner *partner; + struct typec_cable *cable; + struct typec_plug *plug; struct typec_altmode *port_altmode[UCSI_MAX_ALTMODES]; struct typec_altmode *partner_altmode[UCSI_MAX_ALTMODES]; + struct typec_altmode *plug_altmode[UCSI_MAX_ALTMODES]; struct typec_capability typec_cap; struct ucsi_connector_status status; struct ucsi_connector_capability cap; + struct ucsi_cable_property cable_prop; struct power_supply *psy; struct power_supply_desc psy_desc; u32 rdo; @@ -364,6 +455,10 @@ struct ucsi_connector { struct usb_power_delivery_capabilities *partner_sink_caps; struct usb_role_switch *usb_role_sw; + + /* USB PD identity */ + struct usb_pd_identity partner_identity; + struct usb_pd_identity cable_identity; }; int ucsi_send_command(struct ucsi *ucsi, u64 command, diff --git a/drivers/usb/typec/ucsi/ucsi_ccg.c b/drivers/usb/typec/ucsi/ucsi_ccg.c index 449c125f6f87..dda7c7c94e08 100644 --- a/drivers/usb/typec/ucsi/ucsi_ccg.c +++ b/drivers/usb/typec/ucsi/ucsi_ccg.c @@ -192,6 +192,12 @@ struct ucsi_ccg_altmode { bool checked; } __packed; +#define CCGX_MESSAGE_IN_MAX 4 +struct op_region { + __le32 cci; + __le32 message_in[CCGX_MESSAGE_IN_MAX]; +}; + struct ucsi_ccg { struct device *dev; struct ucsi *ucsi; @@ -222,6 +228,13 @@ struct ucsi_ccg { bool has_multiple_dp; struct ucsi_ccg_altmode orig[UCSI_MAX_ALTMODES]; struct ucsi_ccg_altmode updated[UCSI_MAX_ALTMODES]; + + /* + * This spinlock protects op_data which includes CCI and MESSAGE_IN that + * will be updated in ISR + */ + spinlock_t op_lock; + struct op_region op_data; }; static int ccg_read(struct ucsi_ccg *uc, u16 rab, u8 *data, u32 len) @@ -305,12 +318,42 @@ static int ccg_write(struct ucsi_ccg *uc, u16 rab, const u8 *data, u32 len) return 0; } +static int ccg_op_region_update(struct ucsi_ccg *uc, u32 cci) +{ + u16 reg = CCGX_RAB_UCSI_DATA_BLOCK(UCSI_MESSAGE_IN); + struct op_region *data = &uc->op_data; + unsigned char *buf; + size_t size = sizeof(data->message_in); + + buf = kzalloc(size, GFP_ATOMIC); + if (!buf) + return -ENOMEM; + if (UCSI_CCI_LENGTH(cci)) { + int ret = ccg_read(uc, reg, (void *)buf, size); + + if (ret) { + kfree(buf); + return ret; + } + } + + spin_lock(&uc->op_lock); + data->cci = cpu_to_le32(cci); + if (UCSI_CCI_LENGTH(cci)) + memcpy(&data->message_in, buf, size); + spin_unlock(&uc->op_lock); + kfree(buf); + return 0; +} + static int ucsi_ccg_init(struct ucsi_ccg *uc) { unsigned int count = 10; u8 data; int status; + spin_lock_init(&uc->op_lock); + data = CCGX_RAB_UCSI_CONTROL_STOP; status = ccg_write(uc, CCGX_RAB_UCSI_CONTROL, &data, sizeof(data)); if (status < 0) @@ -520,9 +563,20 @@ static int ucsi_ccg_read(struct ucsi *ucsi, unsigned int offset, u16 reg = CCGX_RAB_UCSI_DATA_BLOCK(offset); struct ucsi_capability *cap; struct ucsi_altmode *alt; - int ret; + int ret = 0; + + if (offset == UCSI_CCI) { + spin_lock(&uc->op_lock); + memcpy(val, &(uc->op_data).cci, val_len); + spin_unlock(&uc->op_lock); + } else if (offset == UCSI_MESSAGE_IN) { + spin_lock(&uc->op_lock); + memcpy(val, &(uc->op_data).message_in, val_len); + spin_unlock(&uc->op_lock); + } else { + ret = ccg_read(uc, reg, val, val_len); + } - ret = ccg_read(uc, reg, val, val_len); if (ret) return ret; @@ -559,9 +613,18 @@ static int ucsi_ccg_read(struct ucsi *ucsi, unsigned int offset, static int ucsi_ccg_async_write(struct ucsi *ucsi, unsigned int offset, const void *val, size_t val_len) { + struct ucsi_ccg *uc = ucsi_get_drvdata(ucsi); u16 reg = CCGX_RAB_UCSI_DATA_BLOCK(offset); - return ccg_write(ucsi_get_drvdata(ucsi), reg, val, val_len); + /* + * UCSI may read CCI instantly after async_write, + * clear CCI to avoid caller getting wrong data before we get CCI from ISR + */ + spin_lock(&uc->op_lock); + uc->op_data.cci = 0; + spin_unlock(&uc->op_lock); + + return ccg_write(uc, reg, val, val_len); } static int ucsi_ccg_sync_write(struct ucsi *ucsi, unsigned int offset, @@ -615,13 +678,18 @@ static irqreturn_t ccg_irq_handler(int irq, void *data) u16 reg = CCGX_RAB_UCSI_DATA_BLOCK(UCSI_CCI); struct ucsi_ccg *uc = data; u8 intr_reg; - u32 cci; - int ret; + u32 cci = 0; + int ret = 0; ret = ccg_read(uc, CCGX_RAB_INTR_REG, &intr_reg, sizeof(intr_reg)); if (ret) return ret; + if (!intr_reg) + return IRQ_HANDLED; + else if (!(intr_reg & UCSI_READ_INT)) + goto err_clear_irq; + ret = ccg_read(uc, reg, (void *)&cci, sizeof(cci)); if (ret) goto err_clear_irq; @@ -629,13 +697,21 @@ static irqreturn_t ccg_irq_handler(int irq, void *data) if (UCSI_CCI_CONNECTOR(cci)) ucsi_connector_change(uc->ucsi, UCSI_CCI_CONNECTOR(cci)); - if (test_bit(DEV_CMD_PENDING, &uc->flags) && - cci & (UCSI_CCI_ACK_COMPLETE | UCSI_CCI_COMMAND_COMPLETE)) - complete(&uc->complete); + /* + * As per CCGx UCSI interface guide, copy CCI and MESSAGE_IN + * to the OpRegion before clear the UCSI interrupt + */ + ret = ccg_op_region_update(uc, cci); + if (ret) + goto err_clear_irq; err_clear_irq: ccg_write(uc, CCGX_RAB_INTR_REG, &intr_reg, sizeof(intr_reg)); + if (!ret && test_bit(DEV_CMD_PENDING, &uc->flags) && + cci & (UCSI_CCI_ACK_COMPLETE | UCSI_CCI_COMMAND_COMPLETE)) + complete(&uc->complete); + return IRQ_HANDLED; } diff --git a/drivers/usb/typec/ucsi/ucsi_glink.c b/drivers/usb/typec/ucsi/ucsi_glink.c index faccc942b381..932e7bf69447 100644 --- a/drivers/usb/typec/ucsi/ucsi_glink.c +++ b/drivers/usb/typec/ucsi/ucsi_glink.c @@ -298,6 +298,7 @@ static void pmic_glink_ucsi_destroy(void *data) } static const struct of_device_id pmic_glink_ucsi_of_quirks[] = { + { .compatible = "qcom,qcm6490-pmic-glink", .data = (void *)UCSI_NO_PARTNER_PDOS, }, { .compatible = "qcom,sc8180x-pmic-glink", .data = (void *)UCSI_NO_PARTNER_PDOS, }, { .compatible = "qcom,sc8280xp-pmic-glink", .data = (void *)UCSI_NO_PARTNER_PDOS, }, { .compatible = "qcom,sm8350-pmic-glink", .data = (void *)UCSI_NO_PARTNER_PDOS, }, |