1 // SPDX-License-Identifier: GPL-2.0
5 * Copyright (C) 2020, Intel Corporation
6 * Author: Mika Westerberg <mika.westerberg@linux.intel.com>
9 #include <linux/acpi.h>
10 #include <linux/pm_runtime.h>
14 static acpi_status tb_acpi_add_link(acpi_handle handle, u32 level, void *data,
17 struct acpi_device *adev = acpi_fetch_acpi_dev(handle);
18 struct fwnode_handle *fwnode;
19 struct tb_nhi *nhi = data;
26 fwnode = fwnode_find_reference(acpi_fwnode_handle(adev), "usb4-host-interface", 0);
30 /* It needs to reference this NHI */
31 if (dev_fwnode(&nhi->pdev->dev) != fwnode)
35 * Try to find physical device walking upwards to the hierarcy.
36 * We need to do this because the xHCI driver might not yet be
37 * bound so the USB3 SuperSpeed ports are not yet created.
40 dev = acpi_get_first_physical_node(adev);
44 adev = acpi_dev_parent(adev);
48 * Check that the device is PCIe. This is because USB3
49 * SuperSpeed ports have this property and they are not power
50 * managed with the xHCI and the SuperSpeed hub so we create the
51 * link from xHCI instead.
53 while (dev && !dev_is_pci(dev))
60 * Check that this actually matches the type of device we
61 * expect. It should either be xHCI or PCIe root/downstream
64 pdev = to_pci_dev(dev);
65 if (pdev->class == PCI_CLASS_SERIAL_USB_XHCI ||
67 (pci_pcie_type(pdev) == PCI_EXP_TYPE_ROOT_PORT ||
68 pci_pcie_type(pdev) == PCI_EXP_TYPE_DOWNSTREAM))) {
69 const struct device_link *link;
72 * Make them both active first to make sure the NHI does
73 * not runtime suspend before the consumer. The
74 * pm_runtime_put() below then allows the consumer to
75 * runtime suspend again (which then allows NHI runtime
76 * suspend too now that the device link is established).
78 pm_runtime_get_sync(&pdev->dev);
80 link = device_link_add(&pdev->dev, &nhi->pdev->dev,
81 DL_FLAG_AUTOREMOVE_SUPPLIER |
85 dev_dbg(&nhi->pdev->dev, "created link from %s\n",
86 dev_name(&pdev->dev));
89 dev_warn(&nhi->pdev->dev, "device link creation from %s failed\n",
90 dev_name(&pdev->dev));
93 pm_runtime_put(&pdev->dev);
97 fwnode_handle_put(fwnode);
102 * tb_acpi_add_links() - Add device links based on ACPI description
103 * @nhi: Pointer to NHI
105 * Goes over ACPI namespace finding tunneled ports that reference to
106 * @nhi ACPI node. For each reference a device link is added. The link
107 * is automatically removed by the driver core.
109 * Returns %true if at least one link was created.
111 bool tb_acpi_add_links(struct tb_nhi *nhi)
116 if (!has_acpi_companion(&nhi->pdev->dev))
120 * Find all devices that have usb4-host-controller interface
121 * property that references to this NHI.
123 status = acpi_walk_namespace(ACPI_TYPE_DEVICE, ACPI_ROOT_OBJECT, 32,
124 tb_acpi_add_link, NULL, nhi, (void **)&ret);
125 if (ACPI_FAILURE(status)) {
126 dev_warn(&nhi->pdev->dev, "failed to enumerate tunneled ports\n");
134 * tb_acpi_is_native() - Did the platform grant native TBT/USB4 control
136 * Returns %true if the platform granted OS native control over
137 * TBT/USB4. In this case software based connection manager can be used,
138 * otherwise there is firmware based connection manager running.
140 bool tb_acpi_is_native(void)
142 return osc_sb_native_usb4_support_confirmed &&
143 osc_sb_native_usb4_control;
147 * tb_acpi_may_tunnel_usb3() - Is USB3 tunneling allowed by the platform
149 * When software based connection manager is used, this function
150 * returns %true if platform allows native USB3 tunneling.
152 bool tb_acpi_may_tunnel_usb3(void)
154 if (tb_acpi_is_native())
155 return osc_sb_native_usb4_control & OSC_USB_USB3_TUNNELING;
160 * tb_acpi_may_tunnel_dp() - Is DisplayPort tunneling allowed by the platform
162 * When software based connection manager is used, this function
163 * returns %true if platform allows native DP tunneling.
165 bool tb_acpi_may_tunnel_dp(void)
167 if (tb_acpi_is_native())
168 return osc_sb_native_usb4_control & OSC_USB_DP_TUNNELING;
173 * tb_acpi_may_tunnel_pcie() - Is PCIe tunneling allowed by the platform
175 * When software based connection manager is used, this function
176 * returns %true if platform allows native PCIe tunneling.
178 bool tb_acpi_may_tunnel_pcie(void)
180 if (tb_acpi_is_native())
181 return osc_sb_native_usb4_control & OSC_USB_PCIE_TUNNELING;
186 * tb_acpi_is_xdomain_allowed() - Are XDomain connections allowed
188 * When software based connection manager is used, this function
189 * returns %true if platform allows XDomain connections.
191 bool tb_acpi_is_xdomain_allowed(void)
193 if (tb_acpi_is_native())
194 return osc_sb_native_usb4_control & OSC_USB_XDOMAIN;
198 /* UUID for retimer _DSM: e0053122-795b-4122-8a5e-57be1d26acb3 */
199 static const guid_t retimer_dsm_guid =
200 GUID_INIT(0xe0053122, 0x795b, 0x4122,
201 0x8a, 0x5e, 0x57, 0xbe, 0x1d, 0x26, 0xac, 0xb3);
203 #define RETIMER_DSM_QUERY_ONLINE_STATE 1
204 #define RETIMER_DSM_SET_ONLINE_STATE 2
206 static int tb_acpi_retimer_set_power(struct tb_port *port, bool power)
208 struct usb4_port *usb4 = port->usb4;
209 union acpi_object argv4[2];
210 struct acpi_device *adev;
211 union acpi_object *obj;
214 if (!usb4->can_offline)
217 adev = ACPI_COMPANION(&usb4->dev);
221 /* Check if we are already powered on (and in correct mode) */
222 obj = acpi_evaluate_dsm_typed(adev->handle, &retimer_dsm_guid, 1,
223 RETIMER_DSM_QUERY_ONLINE_STATE, NULL,
226 tb_port_warn(port, "ACPI: query online _DSM failed\n");
230 ret = obj->integer.value;
236 tb_port_dbg(port, "ACPI: calling _DSM to power %s retimers\n",
237 power ? "on" : "off");
239 argv4[0].type = ACPI_TYPE_PACKAGE;
240 argv4[0].package.count = 1;
241 argv4[0].package.elements = &argv4[1];
242 argv4[1].integer.type = ACPI_TYPE_INTEGER;
243 argv4[1].integer.value = power;
245 obj = acpi_evaluate_dsm_typed(adev->handle, &retimer_dsm_guid, 1,
246 RETIMER_DSM_SET_ONLINE_STATE, argv4,
250 "ACPI: set online state _DSM evaluation failed\n");
254 ret = obj->integer.value;
259 return ret == 1 ? 0 : -EBUSY;
263 tb_port_warn(port, "ACPI: set online state _DSM failed with error %d\n", ret);
268 * tb_acpi_power_on_retimers() - Call platform to power on retimers
271 * Calls platform to turn on power to all retimers behind this USB4
272 * port. After this function returns successfully the caller can
273 * continue with the normal retimer flows (as specified in the USB4
274 * spec). Note if this returns %-EBUSY it means the type-C port is in
275 * non-USB4/TBT mode (there is non-USB4/TBT device connected).
277 * This should only be called if the USB4/TBT link is not up.
279 * Returns %0 on success.
281 int tb_acpi_power_on_retimers(struct tb_port *port)
283 return tb_acpi_retimer_set_power(port, true);
287 * tb_acpi_power_off_retimers() - Call platform to power off retimers
290 * This is the opposite of tb_acpi_power_on_retimers(). After returning
291 * successfully the normal operations with the @port can continue.
293 * Returns %0 on success.
295 int tb_acpi_power_off_retimers(struct tb_port *port)
297 return tb_acpi_retimer_set_power(port, false);
300 static bool tb_acpi_bus_match(struct device *dev)
302 return tb_is_switch(dev) || tb_is_usb4_port_device(dev);
305 static struct acpi_device *tb_acpi_switch_find_companion(struct tb_switch *sw)
307 struct tb_switch *parent_sw = tb_switch_parent(sw);
308 struct acpi_device *adev = NULL;
311 * Device routers exists under the downstream facing USB4 port
312 * of the parent router. Their _ADR is always 0.
315 struct tb_port *port = tb_switch_downstream_port(sw);
316 struct acpi_device *port_adev;
318 port_adev = acpi_find_child_by_adr(ACPI_COMPANION(&parent_sw->dev),
321 adev = acpi_find_child_device(port_adev, 0, false);
323 struct tb_nhi *nhi = sw->tb->nhi;
324 struct acpi_device *parent_adev;
326 parent_adev = ACPI_COMPANION(&nhi->pdev->dev);
328 adev = acpi_find_child_device(parent_adev, 0, false);
334 static struct acpi_device *tb_acpi_find_companion(struct device *dev)
337 * The Thunderbolt/USB4 hierarchy looks like following:
340 * Device (HR) // Host router _ADR == 0
341 * Device (DFP0) // Downstream port _ADR == lane 0 adapter
342 * Device (DR) // Device router _ADR == 0
343 * Device (UFP) // Upstream port _ADR == lane 0 adapter
344 * Device (DFP1) // Downstream port _ADR == lane 0 adapter number
346 * At the moment we bind the host router to the corresponding
349 if (tb_is_switch(dev))
350 return tb_acpi_switch_find_companion(tb_to_switch(dev));
351 if (tb_is_usb4_port_device(dev))
352 return acpi_find_child_by_adr(ACPI_COMPANION(dev->parent),
353 tb_to_usb4_port_device(dev)->port->port);
357 static void tb_acpi_setup(struct device *dev)
359 struct acpi_device *adev = ACPI_COMPANION(dev);
360 struct usb4_port *usb4 = tb_to_usb4_port_device(dev);
365 if (acpi_check_dsm(adev->handle, &retimer_dsm_guid, 1,
366 BIT(RETIMER_DSM_QUERY_ONLINE_STATE) |
367 BIT(RETIMER_DSM_SET_ONLINE_STATE)))
368 usb4->can_offline = true;
371 static struct acpi_bus_type tb_acpi_bus = {
372 .name = "thunderbolt",
373 .match = tb_acpi_bus_match,
374 .find_companion = tb_acpi_find_companion,
375 .setup = tb_acpi_setup,
378 int tb_acpi_init(void)
380 return register_acpi_bus_type(&tb_acpi_bus);
383 void tb_acpi_exit(void)
385 unregister_acpi_bus_type(&tb_acpi_bus);