Do not fill the ACPI table entry associated with the cros_ec_typec driver once we switch to the UCSI kernel driver. Skip the ACPI entry if EC implements the UCSI_PPM feature, and the CBI flag to enable UCSI is set. BUG=b:333078787 TEST=emerge-brox coreboot chromeos-bootimage Cq-Depend: chromium:5416841 Change-Id: I67dff6445aa7ba3ba48a04d1df3541f880d09d0a Signed-off-by: Pavan Holla <pholla@google.com> Reviewed-on: https://review.coreboot.org/c/coreboot/+/81967 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Caveh Jalali <caveh@chromium.org> Reviewed-by: Paul Menzel <paulepanter@mailbox.org>
308 lines
8.6 KiB
C
308 lines
8.6 KiB
C
/* SPDX-License-Identifier: GPL-2.0-or-later */
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#include <acpi/acpi.h>
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#include <acpi/acpi_device.h>
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#include <acpi/acpi_pld.h>
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#include <acpi/acpigen.h>
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#include <acpi/acpigen_ps2_keybd.h>
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#include <acpi/acpigen_usb.h>
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#include <console/console.h>
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#include <drivers/usb/acpi/chip.h>
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#include <drivers/intel/usb4/retimer/retimer.h>
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#include <ec/google/common/dptf.h>
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#include "chip.h"
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#include "ec.h"
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#include "ec_commands.h"
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#define GOOGLE_CHROMEEC_USBC_DEVICE_HID "GOOG0014"
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#define GOOGLE_CHROMEEC_USBC_DEVICE_NAME "USBC"
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const char *google_chromeec_acpi_name(const struct device *dev)
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{
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/*
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* Chrome EC device (CREC - GOOG0004) is really a child of EC device (EC - PNP0C09) in
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* ACPI tables. However, in coreboot device tree, there is no separate chip/device for
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* EC0. Thus, Chrome EC device needs to return "EC0.CREC" as the ACPI name so that the
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* callers can get the correct acpi device path/scope for this device.
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*
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* If we ever enable a separate driver for generating AML for EC0 device, then this
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* function needs to be updated to return "CREC".
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*/
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return "EC0.CREC";
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}
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/*
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* Helper for fill_ssdt_generator. This adds references to the USB
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* port objects so that the consumer of this information can know
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* whether the port supports USB2 and/or USB3.
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*/
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static void get_usb_port_references(int port_number, struct device **usb2_port,
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struct device **usb3_port, struct device **usb4_port)
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{
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struct drivers_usb_acpi_config *config;
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struct device *port = NULL;
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/* Search through the devicetree for matching USB Type-C ports */
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while ((port = dev_find_path(port, DEVICE_PATH_USB)) != NULL) {
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if (!port->enabled || port->path.type != DEVICE_PATH_USB)
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continue;
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config = port->chip_info;
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/* Look at only USB Type-C ports */
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if ((config->type != UPC_TYPE_C_USB2_ONLY) &&
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(config->type != UPC_TYPE_C_USB2_SS_SWITCH) &&
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(config->type != UPC_TYPE_C_USB2_SS))
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continue;
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/*
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* Check for a matching port number (the 'token' field in 'group'). Note that
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* 'port_number' is 0-based, whereas the 'token' field is 1-based.
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*/
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int group_token;
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if (config->use_custom_pld)
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group_token = config->custom_pld.group.token;
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else
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group_token = config->group.token;
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if (group_token != (port_number + 1))
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continue;
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switch (port->path.usb.port_type) {
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case 2:
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*usb2_port = port;
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break;
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case 3:
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*usb3_port = port;
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break;
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case 4:
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*usb4_port = port;
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break;
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default:
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break;
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}
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}
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}
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/*
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* Apparently these are supposed to be uppercase, in contrast to the other
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* lowercase fields.
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*/
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static const char *port_location_to_str(enum ec_pd_port_location port_location)
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{
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switch (port_location) {
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case EC_PD_PORT_LOCATION_LEFT:
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return "LEFT";
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case EC_PD_PORT_LOCATION_RIGHT:
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return "RIGHT";
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case EC_PD_PORT_LOCATION_BACK:
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return "BACK";
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case EC_PD_PORT_LOCATION_FRONT:
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return "FRONT";
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case EC_PD_PORT_LOCATION_LEFT_FRONT:
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return "LEFT_FRONT";
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case EC_PD_PORT_LOCATION_LEFT_BACK:
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return "LEFT_BACK";
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case EC_PD_PORT_LOCATION_RIGHT_FRONT:
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return "RIGHT_FRONT";
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case EC_PD_PORT_LOCATION_RIGHT_BACK:
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return "RIGHT_BACK";
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case EC_PD_PORT_LOCATION_BACK_LEFT:
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return "BACK_LEFT";
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case EC_PD_PORT_LOCATION_BACK_RIGHT:
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return "BACK_RIGHT";
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case EC_PD_PORT_LOCATION_UNKNOWN:
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__fallthrough;
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default:
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return "UNKNOWN";
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}
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}
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static struct usb_pd_port_caps port_caps;
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static void add_port_location(struct acpi_dp *dsd, int port_number)
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{
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acpi_dp_add_string(dsd, "port-location", port_location_to_str(port_caps.port_location));
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}
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static void get_pld_from_usb_ports(struct acpi_pld *pld,
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struct device *usb2_port, struct device *usb3_port,
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struct device *usb4_port)
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{
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struct drivers_usb_acpi_config *config = NULL;
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if (usb4_port)
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config = usb4_port->chip_info;
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else if (usb3_port)
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config = usb3_port->chip_info;
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else if (usb2_port)
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config = usb2_port->chip_info;
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if (config) {
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if (config->use_custom_pld)
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*pld = config->custom_pld;
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else
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acpi_pld_fill_usb(pld, config->type, &config->group);
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}
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}
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static void fill_ssdt_typec_device(const struct device *dev)
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{
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struct ec_google_chromeec_config *config = dev->chip_info;
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int rv;
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int i;
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unsigned int num_ports = 0;
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struct device *usb2_port;
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struct device *usb3_port;
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struct device *usb4_port;
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struct acpi_pld pld = {0};
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uint32_t pcap_mask = 0;
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/* UCSI implementations do not require an ACPI device with mux info since the
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linux kernel doesn't set the muxes. */
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if (google_chromeec_get_ucsi_enabled())
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return;
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rv = google_chromeec_get_num_pd_ports(&num_ports);
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if (rv || num_ports == 0)
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return;
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/* If we can't get port caps, we shouldn't bother creating a device. */
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rv = google_chromeec_get_cmd_versions(EC_CMD_GET_PD_PORT_CAPS, &pcap_mask);
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if (rv || pcap_mask == 0)
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return;
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acpigen_write_scope(acpi_device_path(dev));
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acpigen_write_device(GOOGLE_CHROMEEC_USBC_DEVICE_NAME);
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acpigen_write_name_string("_HID", GOOGLE_CHROMEEC_USBC_DEVICE_HID);
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acpigen_write_name_string("_DDN", "ChromeOS EC Embedded Controller "
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"USB Type-C Control");
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for (i = 0; i < num_ports; ++i) {
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rv = google_chromeec_get_pd_port_caps(i, &port_caps);
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if (rv)
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continue;
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usb2_port = NULL;
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usb3_port = NULL;
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usb4_port = NULL;
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get_usb_port_references(i, &usb2_port, &usb3_port, &usb4_port);
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get_pld_from_usb_ports(&pld, usb2_port, usb3_port, usb4_port);
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struct typec_connector_class_config typec_config = {
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.power_role = (enum usb_typec_power_role)port_caps.power_role_cap,
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.try_power_role =
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(enum usb_typec_try_power_role)port_caps.try_power_role_cap,
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.data_role = (enum usb_typec_data_role)port_caps.data_role_cap,
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.usb2_port = usb2_port,
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.usb3_port = usb3_port,
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.usb4_port = usb4_port,
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.orientation_switch = config->mux_conn[i],
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.usb_role_switch = config->mux_conn[i],
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.mode_switch = config->mux_conn[i],
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.retimer_switch = config->retimer_conn[i],
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.pld = &pld,
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};
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acpigen_write_typec_connector(&typec_config, i, add_port_location);
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}
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acpigen_pop_len(); /* Device GOOGLE_CHROMEEC_USBC_DEVICE_NAME */
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acpigen_pop_len(); /* Scope */
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}
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static const enum ps2_action_key ps2_enum_val[] = {
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[TK_ABSENT] = PS2_KEY_ABSENT,
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[TK_BACK] = PS2_KEY_BACK,
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[TK_FORWARD] = PS2_KEY_FORWARD,
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[TK_REFRESH] = PS2_KEY_REFRESH,
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[TK_FULLSCREEN] = PS2_KEY_FULLSCREEN,
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[TK_OVERVIEW] = PS2_KEY_OVERVIEW,
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[TK_BRIGHTNESS_DOWN] = PS2_KEY_BRIGHTNESS_DOWN,
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[TK_BRIGHTNESS_UP] = PS2_KEY_BRIGHTNESS_UP,
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[TK_VOL_MUTE] = PS2_KEY_VOL_MUTE,
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[TK_VOL_DOWN] = PS2_KEY_VOL_DOWN,
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[TK_VOL_UP] = PS2_KEY_VOL_UP,
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[TK_SNAPSHOT] = PS2_KEY_SNAPSHOT,
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[TK_PRIVACY_SCRN_TOGGLE] = PS2_KEY_PRIVACY_SCRN_TOGGLE,
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[TK_KBD_BKLIGHT_DOWN] = PS2_KEY_KBD_BKLIGHT_DOWN,
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[TK_KBD_BKLIGHT_UP] = PS2_KEY_KBD_BKLIGHT_UP,
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[TK_PLAY_PAUSE] = PS2_KEY_PLAY_PAUSE,
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[TK_NEXT_TRACK] = PS2_KEY_NEXT_TRACK,
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[TK_PREV_TRACK] = PS2_KEY_PREV_TRACK,
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[TK_KBD_BKLIGHT_TOGGLE] = PS2_KEY_KBD_BKLIGHT_TOGGLE,
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[TK_MICMUTE] = PS2_KEY_MICMUTE,
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[TK_MENU] = PS2_KEY_MENU,
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};
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static void fill_ssdt_ps2_keyboard(const struct device *dev)
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{
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uint8_t i;
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struct ec_response_keybd_config keybd = {};
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enum ps2_action_key ps2_action_keys[MAX_TOP_ROW_KEYS] = {};
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if (google_chromeec_get_keybd_config(&keybd) ||
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!keybd.num_top_row_keys ||
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keybd.num_top_row_keys > MAX_TOP_ROW_KEYS) {
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printk(BIOS_INFO, "PS2K: Unsupported or bad resp from EC. Vivaldi disabled!\n");
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return;
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}
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/* Convert enum action_key values to enum ps2_action_key values */
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for (i = 0; i < keybd.num_top_row_keys; i++)
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ps2_action_keys[i] = ps2_enum_val[keybd.action_keys[i]];
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acpigen_ps2_keyboard_dsd("_SB.PCI0.PS2K", keybd.num_top_row_keys,
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ps2_action_keys,
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!!(keybd.capabilities & KEYBD_CAP_FUNCTION_KEYS),
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!!(keybd.capabilities & KEYBD_CAP_NUMERIC_KEYPAD),
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!!(keybd.capabilities & KEYBD_CAP_SCRNLOCK_KEY),
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true);
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}
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static const char *ec_acpi_name(const struct device *dev)
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{
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return "EC0";
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}
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static struct device_operations ec_ops = {
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.acpi_name = ec_acpi_name,
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};
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void google_chromeec_fill_ssdt_generator(const struct device *dev)
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{
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struct device_path path;
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struct device *ec;
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/* Set up a minimal EC0 device to pass to the DPTF helpers */
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path.type = DEVICE_PATH_GENERIC;
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path.generic.id = 0;
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path.generic.subid = 0;
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ec = alloc_find_dev(dev->upstream, &path);
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ec->ops = &ec_ops;
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if (CONFIG(DRIVERS_INTEL_DPTF))
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ec_fill_dptf_helpers(ec, dev);
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fill_ssdt_typec_device(dev);
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fill_ssdt_ps2_keyboard(dev);
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}
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const char *ec_retimer_fw_update_path(void)
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{
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return "\\_SB_.PCI0.LPCB.EC0_.RFWU";
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}
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void ec_retimer_fw_update(uint8_t data)
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{
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const char *RFWU = ec_retimer_fw_update_path();
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/*
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* Write the EC RAM for Retimer Upgrade
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* RFWU = data
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*/
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acpigen_write_store();
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acpigen_write_byte(data);
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acpigen_emit_namestring(RFWU);
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}
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