1852be13fSJacek Lawrynowicz // SPDX-License-Identifier: GPL-2.0-only
2852be13fSJacek Lawrynowicz /*
3852be13fSJacek Lawrynowicz * Copyright (C) 2020-2024 Intel Corporation
4852be13fSJacek Lawrynowicz */
5852be13fSJacek Lawrynowicz
6852be13fSJacek Lawrynowicz #include <linux/highmem.h>
7852be13fSJacek Lawrynowicz #include <linux/moduleparam.h>
8852be13fSJacek Lawrynowicz #include <linux/pci.h>
9852be13fSJacek Lawrynowicz #include <linux/pm_runtime.h>
10852be13fSJacek Lawrynowicz #include <linux/reboot.h>
11852be13fSJacek Lawrynowicz
12852be13fSJacek Lawrynowicz #include "ivpu_coredump.h"
13852be13fSJacek Lawrynowicz #include "ivpu_drv.h"
14852be13fSJacek Lawrynowicz #include "ivpu_fw.h"
15852be13fSJacek Lawrynowicz #include "ivpu_fw_log.h"
16852be13fSJacek Lawrynowicz #include "ivpu_hw.h"
17852be13fSJacek Lawrynowicz #include "ivpu_ipc.h"
18852be13fSJacek Lawrynowicz #include "ivpu_job.h"
19852be13fSJacek Lawrynowicz #include "ivpu_jsm_msg.h"
20852be13fSJacek Lawrynowicz #include "ivpu_mmu.h"
21852be13fSJacek Lawrynowicz #include "ivpu_ms.h"
22852be13fSJacek Lawrynowicz #include "ivpu_pm.h"
23852be13fSJacek Lawrynowicz #include "ivpu_trace.h"
24852be13fSJacek Lawrynowicz #include "vpu_boot_api.h"
25852be13fSJacek Lawrynowicz
26852be13fSJacek Lawrynowicz static bool ivpu_disable_recovery;
27852be13fSJacek Lawrynowicz #if IS_ENABLED(CONFIG_DRM_ACCEL_IVPU_DEBUG)
28852be13fSJacek Lawrynowicz module_param_named_unsafe(disable_recovery, ivpu_disable_recovery, bool, 0644);
29852be13fSJacek Lawrynowicz MODULE_PARM_DESC(disable_recovery, "Disables recovery when NPU hang is detected");
30852be13fSJacek Lawrynowicz #endif
31852be13fSJacek Lawrynowicz
32852be13fSJacek Lawrynowicz static unsigned long ivpu_tdr_timeout_ms;
33852be13fSJacek Lawrynowicz module_param_named(tdr_timeout_ms, ivpu_tdr_timeout_ms, ulong, 0644);
34852be13fSJacek Lawrynowicz MODULE_PARM_DESC(tdr_timeout_ms, "Timeout for device hang detection, in milliseconds, 0 - default");
35852be13fSJacek Lawrynowicz
36852be13fSJacek Lawrynowicz static unsigned long ivpu_inference_timeout_ms;
37852be13fSJacek Lawrynowicz module_param_named(inference_timeout_ms, ivpu_inference_timeout_ms, ulong, 0644);
38852be13fSJacek Lawrynowicz MODULE_PARM_DESC(inference_timeout_ms, "Inference maximum duration, in milliseconds, 0 - default");
39852be13fSJacek Lawrynowicz
40852be13fSJacek Lawrynowicz #define PM_RESCHEDULE_LIMIT 5
41852be13fSJacek Lawrynowicz
ivpu_pm_prepare_cold_boot(struct ivpu_device * vdev)42852be13fSJacek Lawrynowicz static void ivpu_pm_prepare_cold_boot(struct ivpu_device *vdev)
43852be13fSJacek Lawrynowicz {
44852be13fSJacek Lawrynowicz struct ivpu_fw_info *fw = vdev->fw;
45852be13fSJacek Lawrynowicz
46852be13fSJacek Lawrynowicz ivpu_cmdq_reset_all_contexts(vdev);
47852be13fSJacek Lawrynowicz ivpu_ipc_reset(vdev);
48852be13fSJacek Lawrynowicz ivpu_fw_log_reset(vdev);
49852be13fSJacek Lawrynowicz ivpu_fw_load(vdev);
50852be13fSJacek Lawrynowicz fw->entry_point = fw->cold_boot_entry_point;
51852be13fSJacek Lawrynowicz fw->last_heartbeat = 0;
52852be13fSJacek Lawrynowicz }
53852be13fSJacek Lawrynowicz
ivpu_pm_prepare_warm_boot(struct ivpu_device * vdev)54852be13fSJacek Lawrynowicz static void ivpu_pm_prepare_warm_boot(struct ivpu_device *vdev)
55852be13fSJacek Lawrynowicz {
56852be13fSJacek Lawrynowicz struct ivpu_fw_info *fw = vdev->fw;
57852be13fSJacek Lawrynowicz struct vpu_boot_params *bp = ivpu_bo_vaddr(fw->mem);
58852be13fSJacek Lawrynowicz
59852be13fSJacek Lawrynowicz if (!bp->save_restore_ret_address) {
60852be13fSJacek Lawrynowicz ivpu_pm_prepare_cold_boot(vdev);
61852be13fSJacek Lawrynowicz return;
62852be13fSJacek Lawrynowicz }
63852be13fSJacek Lawrynowicz
64852be13fSJacek Lawrynowicz ivpu_dbg(vdev, FW_BOOT, "Save/restore entry point %llx", bp->save_restore_ret_address);
65852be13fSJacek Lawrynowicz fw->entry_point = bp->save_restore_ret_address;
66852be13fSJacek Lawrynowicz }
67852be13fSJacek Lawrynowicz
ivpu_suspend(struct ivpu_device * vdev)68852be13fSJacek Lawrynowicz static int ivpu_suspend(struct ivpu_device *vdev)
69852be13fSJacek Lawrynowicz {
70852be13fSJacek Lawrynowicz int ret;
71852be13fSJacek Lawrynowicz
72852be13fSJacek Lawrynowicz ivpu_prepare_for_reset(vdev);
73852be13fSJacek Lawrynowicz
74852be13fSJacek Lawrynowicz ret = ivpu_shutdown(vdev);
75852be13fSJacek Lawrynowicz if (ret)
76852be13fSJacek Lawrynowicz ivpu_err(vdev, "Failed to shutdown NPU: %d\n", ret);
77852be13fSJacek Lawrynowicz
78852be13fSJacek Lawrynowicz return ret;
79852be13fSJacek Lawrynowicz }
80852be13fSJacek Lawrynowicz
ivpu_resume(struct ivpu_device * vdev)81852be13fSJacek Lawrynowicz static int ivpu_resume(struct ivpu_device *vdev)
82852be13fSJacek Lawrynowicz {
83852be13fSJacek Lawrynowicz int ret;
84852be13fSJacek Lawrynowicz
85852be13fSJacek Lawrynowicz retry:
86852be13fSJacek Lawrynowicz pci_set_power_state(to_pci_dev(vdev->drm.dev), PCI_D0);
87852be13fSJacek Lawrynowicz pci_restore_state(to_pci_dev(vdev->drm.dev));
88852be13fSJacek Lawrynowicz
89852be13fSJacek Lawrynowicz ret = ivpu_hw_power_up(vdev);
90852be13fSJacek Lawrynowicz if (ret) {
91852be13fSJacek Lawrynowicz ivpu_err(vdev, "Failed to power up HW: %d\n", ret);
92852be13fSJacek Lawrynowicz goto err_power_down;
93852be13fSJacek Lawrynowicz }
94852be13fSJacek Lawrynowicz
95852be13fSJacek Lawrynowicz ret = ivpu_mmu_enable(vdev);
96852be13fSJacek Lawrynowicz if (ret) {
97852be13fSJacek Lawrynowicz ivpu_err(vdev, "Failed to resume MMU: %d\n", ret);
98852be13fSJacek Lawrynowicz goto err_power_down;
99852be13fSJacek Lawrynowicz }
100852be13fSJacek Lawrynowicz
101852be13fSJacek Lawrynowicz ret = ivpu_boot(vdev);
102852be13fSJacek Lawrynowicz if (ret)
103852be13fSJacek Lawrynowicz goto err_mmu_disable;
104852be13fSJacek Lawrynowicz
1056013aa84SStanislaw Gruszka return 0;
1066013aa84SStanislaw Gruszka
1076013aa84SStanislaw Gruszka err_mmu_disable:
1086013aa84SStanislaw Gruszka ivpu_mmu_disable(vdev);
1096013aa84SStanislaw Gruszka err_power_down:
1106013aa84SStanislaw Gruszka ivpu_hw_power_down(vdev);
1116013aa84SStanislaw Gruszka pci_set_power_state(to_pci_dev(vdev->drm.dev), PCI_D3hot);
1126013aa84SStanislaw Gruszka
113852be13fSJacek Lawrynowicz if (!ivpu_fw_is_cold_boot(vdev)) {
114852be13fSJacek Lawrynowicz ivpu_pm_prepare_cold_boot(vdev);
115852be13fSJacek Lawrynowicz goto retry;
116852be13fSJacek Lawrynowicz } else {
117852be13fSJacek Lawrynowicz ivpu_err(vdev, "Failed to resume the FW: %d\n", ret);
118852be13fSJacek Lawrynowicz }
119852be13fSJacek Lawrynowicz
120852be13fSJacek Lawrynowicz return ret;
121852be13fSJacek Lawrynowicz }
122852be13fSJacek Lawrynowicz
ivpu_pm_reset_begin(struct ivpu_device * vdev)123852be13fSJacek Lawrynowicz static void ivpu_pm_reset_begin(struct ivpu_device *vdev)
124852be13fSJacek Lawrynowicz {
125852be13fSJacek Lawrynowicz pm_runtime_disable(vdev->drm.dev);
126852be13fSJacek Lawrynowicz
127852be13fSJacek Lawrynowicz atomic_inc(&vdev->pm->reset_counter);
128852be13fSJacek Lawrynowicz atomic_set(&vdev->pm->reset_pending, 1);
129852be13fSJacek Lawrynowicz down_write(&vdev->pm->reset_lock);
130852be13fSJacek Lawrynowicz }
131852be13fSJacek Lawrynowicz
ivpu_pm_reset_complete(struct ivpu_device * vdev)132852be13fSJacek Lawrynowicz static void ivpu_pm_reset_complete(struct ivpu_device *vdev)
133852be13fSJacek Lawrynowicz {
134852be13fSJacek Lawrynowicz int ret;
135852be13fSJacek Lawrynowicz
136852be13fSJacek Lawrynowicz ivpu_pm_prepare_cold_boot(vdev);
137852be13fSJacek Lawrynowicz ivpu_jobs_abort_all(vdev);
138852be13fSJacek Lawrynowicz ivpu_ms_cleanup_all(vdev);
139852be13fSJacek Lawrynowicz
140852be13fSJacek Lawrynowicz ret = ivpu_resume(vdev);
141852be13fSJacek Lawrynowicz if (ret) {
142852be13fSJacek Lawrynowicz ivpu_err(vdev, "Failed to resume NPU: %d\n", ret);
143*0ec86718SJacek Lawrynowicz pm_runtime_set_suspended(vdev->drm.dev);
144852be13fSJacek Lawrynowicz } else {
145852be13fSJacek Lawrynowicz pm_runtime_set_active(vdev->drm.dev);
146852be13fSJacek Lawrynowicz }
147*0ec86718SJacek Lawrynowicz
148*0ec86718SJacek Lawrynowicz up_write(&vdev->pm->reset_lock);
149*0ec86718SJacek Lawrynowicz atomic_set(&vdev->pm->reset_pending, 0);
150*0ec86718SJacek Lawrynowicz
151*0ec86718SJacek Lawrynowicz pm_runtime_mark_last_busy(vdev->drm.dev);
152852be13fSJacek Lawrynowicz pm_runtime_enable(vdev->drm.dev);
153*0ec86718SJacek Lawrynowicz }
154852be13fSJacek Lawrynowicz
ivpu_pm_recovery_work(struct work_struct * work)155852be13fSJacek Lawrynowicz static void ivpu_pm_recovery_work(struct work_struct *work)
156*0ec86718SJacek Lawrynowicz {
157*0ec86718SJacek Lawrynowicz struct ivpu_pm_info *pm = container_of(work, struct ivpu_pm_info, recovery_work);
158852be13fSJacek Lawrynowicz struct ivpu_device *vdev = pm->vdev;
159852be13fSJacek Lawrynowicz char *evt[2] = {"IVPU_PM_EVENT=IVPU_RECOVER", NULL};
160852be13fSJacek Lawrynowicz
161852be13fSJacek Lawrynowicz ivpu_err(vdev, "Recovering the NPU (reset #%d)\n", atomic_read(&vdev->pm->reset_counter));
162852be13fSJacek Lawrynowicz
163852be13fSJacek Lawrynowicz ivpu_pm_reset_begin(vdev);
164*0ec86718SJacek Lawrynowicz
165852be13fSJacek Lawrynowicz if (!pm_runtime_status_suspended(vdev->drm.dev)) {
166852be13fSJacek Lawrynowicz ivpu_jsm_state_dump(vdev);
167852be13fSJacek Lawrynowicz ivpu_dev_coredump(vdev);
168852be13fSJacek Lawrynowicz ivpu_suspend(vdev);
169852be13fSJacek Lawrynowicz }
170852be13fSJacek Lawrynowicz
171852be13fSJacek Lawrynowicz ivpu_pm_reset_complete(vdev);
172852be13fSJacek Lawrynowicz
173852be13fSJacek Lawrynowicz kobject_uevent_env(&vdev->drm.dev->kobj, KOBJ_CHANGE, evt);
174852be13fSJacek Lawrynowicz }
175852be13fSJacek Lawrynowicz
ivpu_pm_trigger_recovery(struct ivpu_device * vdev,const char * reason)176852be13fSJacek Lawrynowicz void ivpu_pm_trigger_recovery(struct ivpu_device *vdev, const char *reason)
177852be13fSJacek Lawrynowicz {
178852be13fSJacek Lawrynowicz ivpu_err(vdev, "Recovery triggered by %s\n", reason);
179852be13fSJacek Lawrynowicz
180852be13fSJacek Lawrynowicz if (ivpu_disable_recovery) {
181852be13fSJacek Lawrynowicz ivpu_err(vdev, "Recovery not available when disable_recovery param is set\n");
182852be13fSJacek Lawrynowicz return;
183852be13fSJacek Lawrynowicz }
184852be13fSJacek Lawrynowicz
185852be13fSJacek Lawrynowicz /* Trigger recovery if it's not in progress */
186852be13fSJacek Lawrynowicz if (atomic_cmpxchg(&vdev->pm->reset_pending, 0, 1) == 0) {
187852be13fSJacek Lawrynowicz ivpu_hw_diagnose_failure(vdev);
188852be13fSJacek Lawrynowicz ivpu_hw_irq_disable(vdev); /* Disable IRQ early to protect from IRQ storm */
189852be13fSJacek Lawrynowicz queue_work(system_unbound_wq, &vdev->pm->recovery_work);
190852be13fSJacek Lawrynowicz }
191852be13fSJacek Lawrynowicz }
192852be13fSJacek Lawrynowicz
ivpu_job_timeout_work(struct work_struct * work)193852be13fSJacek Lawrynowicz static void ivpu_job_timeout_work(struct work_struct *work)
194852be13fSJacek Lawrynowicz {
195852be13fSJacek Lawrynowicz struct ivpu_pm_info *pm = container_of(work, struct ivpu_pm_info, job_timeout_work.work);
196852be13fSJacek Lawrynowicz struct ivpu_device *vdev = pm->vdev;
197852be13fSJacek Lawrynowicz unsigned long timeout_ms = ivpu_tdr_timeout_ms ? ivpu_tdr_timeout_ms : vdev->timeout.tdr;
198852be13fSJacek Lawrynowicz unsigned long inference_timeout_ms = ivpu_inference_timeout_ms ? ivpu_inference_timeout_ms :
199852be13fSJacek Lawrynowicz vdev->timeout.inference;
200852be13fSJacek Lawrynowicz u64 inference_max_retries;
201852be13fSJacek Lawrynowicz u64 heartbeat;
202852be13fSJacek Lawrynowicz
203852be13fSJacek Lawrynowicz if (ivpu_jsm_get_heartbeat(vdev, 0, &heartbeat) || heartbeat <= vdev->fw->last_heartbeat) {
204852be13fSJacek Lawrynowicz ivpu_err(vdev, "Job timeout detected, heartbeat not progressed\n");
205852be13fSJacek Lawrynowicz goto recovery;
206852be13fSJacek Lawrynowicz }
207852be13fSJacek Lawrynowicz
208852be13fSJacek Lawrynowicz inference_max_retries = DIV_ROUND_UP(inference_timeout_ms, timeout_ms);
209852be13fSJacek Lawrynowicz if (atomic_fetch_inc(&vdev->job_timeout_counter) >= inference_max_retries) {
210852be13fSJacek Lawrynowicz ivpu_err(vdev, "Job timeout detected, heartbeat limit (%lld) exceeded\n",
211852be13fSJacek Lawrynowicz inference_max_retries);
212852be13fSJacek Lawrynowicz goto recovery;
213852be13fSJacek Lawrynowicz }
214852be13fSJacek Lawrynowicz
215852be13fSJacek Lawrynowicz vdev->fw->last_heartbeat = heartbeat;
216852be13fSJacek Lawrynowicz ivpu_start_job_timeout_detection(vdev);
217852be13fSJacek Lawrynowicz return;
218852be13fSJacek Lawrynowicz
219852be13fSJacek Lawrynowicz recovery:
220852be13fSJacek Lawrynowicz atomic_set(&vdev->job_timeout_counter, 0);
221852be13fSJacek Lawrynowicz ivpu_pm_trigger_recovery(vdev, "TDR");
222852be13fSJacek Lawrynowicz }
223852be13fSJacek Lawrynowicz
ivpu_start_job_timeout_detection(struct ivpu_device * vdev)224852be13fSJacek Lawrynowicz void ivpu_start_job_timeout_detection(struct ivpu_device *vdev)
225852be13fSJacek Lawrynowicz {
226852be13fSJacek Lawrynowicz unsigned long timeout_ms = ivpu_tdr_timeout_ms ? ivpu_tdr_timeout_ms : vdev->timeout.tdr;
227852be13fSJacek Lawrynowicz
228852be13fSJacek Lawrynowicz /* No-op if already queued */
229852be13fSJacek Lawrynowicz queue_delayed_work(system_wq, &vdev->pm->job_timeout_work, msecs_to_jiffies(timeout_ms));
230852be13fSJacek Lawrynowicz }
231852be13fSJacek Lawrynowicz
ivpu_stop_job_timeout_detection(struct ivpu_device * vdev)232852be13fSJacek Lawrynowicz void ivpu_stop_job_timeout_detection(struct ivpu_device *vdev)
233852be13fSJacek Lawrynowicz {
234852be13fSJacek Lawrynowicz cancel_delayed_work_sync(&vdev->pm->job_timeout_work);
235852be13fSJacek Lawrynowicz atomic_set(&vdev->job_timeout_counter, 0);
236852be13fSJacek Lawrynowicz }
237852be13fSJacek Lawrynowicz
ivpu_pm_suspend_cb(struct device * dev)238852be13fSJacek Lawrynowicz int ivpu_pm_suspend_cb(struct device *dev)
239852be13fSJacek Lawrynowicz {
240852be13fSJacek Lawrynowicz struct drm_device *drm = dev_get_drvdata(dev);
241852be13fSJacek Lawrynowicz struct ivpu_device *vdev = to_ivpu_device(drm);
242852be13fSJacek Lawrynowicz unsigned long timeout;
243852be13fSJacek Lawrynowicz
244852be13fSJacek Lawrynowicz trace_pm("suspend");
245852be13fSJacek Lawrynowicz ivpu_dbg(vdev, PM, "Suspend..\n");
246852be13fSJacek Lawrynowicz
247852be13fSJacek Lawrynowicz timeout = jiffies + msecs_to_jiffies(vdev->timeout.tdr);
248852be13fSJacek Lawrynowicz while (!ivpu_hw_is_idle(vdev)) {
249852be13fSJacek Lawrynowicz cond_resched();
250852be13fSJacek Lawrynowicz if (time_after_eq(jiffies, timeout)) {
251852be13fSJacek Lawrynowicz ivpu_err(vdev, "Failed to enter idle on system suspend\n");
252852be13fSJacek Lawrynowicz return -EBUSY;
253852be13fSJacek Lawrynowicz }
254852be13fSJacek Lawrynowicz }
255852be13fSJacek Lawrynowicz
256852be13fSJacek Lawrynowicz ivpu_jsm_pwr_d0i3_enter(vdev);
257852be13fSJacek Lawrynowicz
258852be13fSJacek Lawrynowicz ivpu_suspend(vdev);
259852be13fSJacek Lawrynowicz ivpu_pm_prepare_warm_boot(vdev);
260852be13fSJacek Lawrynowicz
261852be13fSJacek Lawrynowicz ivpu_dbg(vdev, PM, "Suspend done.\n");
262852be13fSJacek Lawrynowicz trace_pm("suspend done");
263852be13fSJacek Lawrynowicz
264852be13fSJacek Lawrynowicz return 0;
265852be13fSJacek Lawrynowicz }
266852be13fSJacek Lawrynowicz
ivpu_pm_resume_cb(struct device * dev)267852be13fSJacek Lawrynowicz int ivpu_pm_resume_cb(struct device *dev)
268852be13fSJacek Lawrynowicz {
269852be13fSJacek Lawrynowicz struct drm_device *drm = dev_get_drvdata(dev);
270852be13fSJacek Lawrynowicz struct ivpu_device *vdev = to_ivpu_device(drm);
271852be13fSJacek Lawrynowicz int ret;
272852be13fSJacek Lawrynowicz
273852be13fSJacek Lawrynowicz trace_pm("resume");
274852be13fSJacek Lawrynowicz ivpu_dbg(vdev, PM, "Resume..\n");
275852be13fSJacek Lawrynowicz
276852be13fSJacek Lawrynowicz ret = ivpu_resume(vdev);
277852be13fSJacek Lawrynowicz if (ret)
278852be13fSJacek Lawrynowicz ivpu_err(vdev, "Failed to resume: %d\n", ret);
279852be13fSJacek Lawrynowicz
280852be13fSJacek Lawrynowicz ivpu_dbg(vdev, PM, "Resume done.\n");
281852be13fSJacek Lawrynowicz trace_pm("resume done");
282852be13fSJacek Lawrynowicz
283852be13fSJacek Lawrynowicz return ret;
284852be13fSJacek Lawrynowicz }
285852be13fSJacek Lawrynowicz
ivpu_pm_runtime_suspend_cb(struct device * dev)286852be13fSJacek Lawrynowicz int ivpu_pm_runtime_suspend_cb(struct device *dev)
287852be13fSJacek Lawrynowicz {
288852be13fSJacek Lawrynowicz struct drm_device *drm = dev_get_drvdata(dev);
289852be13fSJacek Lawrynowicz struct ivpu_device *vdev = to_ivpu_device(drm);
290852be13fSJacek Lawrynowicz int ret, ret_d0i3;
291852be13fSJacek Lawrynowicz bool is_idle;
292852be13fSJacek Lawrynowicz
293852be13fSJacek Lawrynowicz drm_WARN_ON(&vdev->drm, !xa_empty(&vdev->submitted_jobs_xa));
294852be13fSJacek Lawrynowicz drm_WARN_ON(&vdev->drm, work_pending(&vdev->pm->recovery_work));
295852be13fSJacek Lawrynowicz
296852be13fSJacek Lawrynowicz trace_pm("runtime suspend");
297852be13fSJacek Lawrynowicz ivpu_dbg(vdev, PM, "Runtime suspend..\n");
298852be13fSJacek Lawrynowicz
299852be13fSJacek Lawrynowicz ivpu_mmu_disable(vdev);
300852be13fSJacek Lawrynowicz
301852be13fSJacek Lawrynowicz is_idle = ivpu_hw_is_idle(vdev) || vdev->pm->dct_active_percent;
302852be13fSJacek Lawrynowicz if (!is_idle)
303852be13fSJacek Lawrynowicz ivpu_err(vdev, "NPU is not idle before autosuspend\n");
304852be13fSJacek Lawrynowicz
305852be13fSJacek Lawrynowicz ret_d0i3 = ivpu_jsm_pwr_d0i3_enter(vdev);
306852be13fSJacek Lawrynowicz if (ret_d0i3)
3076013aa84SStanislaw Gruszka ivpu_err(vdev, "Failed to prepare for d0i3: %d\n", ret_d0i3);
3086013aa84SStanislaw Gruszka
3096013aa84SStanislaw Gruszka ret = ivpu_suspend(vdev);
3106013aa84SStanislaw Gruszka if (ret)
3116013aa84SStanislaw Gruszka ivpu_err(vdev, "Failed to suspend NPU: %d\n", ret);
312852be13fSJacek Lawrynowicz
313852be13fSJacek Lawrynowicz if (!is_idle || ret_d0i3) {
314852be13fSJacek Lawrynowicz ivpu_err(vdev, "Forcing cold boot due to previous errors\n");
315852be13fSJacek Lawrynowicz atomic_inc(&vdev->pm->reset_counter);
316852be13fSJacek Lawrynowicz ivpu_dev_coredump(vdev);
317852be13fSJacek Lawrynowicz ivpu_pm_prepare_cold_boot(vdev);
318852be13fSJacek Lawrynowicz } else {
319852be13fSJacek Lawrynowicz ivpu_pm_prepare_warm_boot(vdev);
320852be13fSJacek Lawrynowicz }
321852be13fSJacek Lawrynowicz
322852be13fSJacek Lawrynowicz ivpu_dbg(vdev, PM, "Runtime suspend done.\n");
323852be13fSJacek Lawrynowicz trace_pm("runtime suspend done");
324852be13fSJacek Lawrynowicz
325852be13fSJacek Lawrynowicz return 0;
326852be13fSJacek Lawrynowicz }
327
ivpu_pm_runtime_resume_cb(struct device * dev)328 int ivpu_pm_runtime_resume_cb(struct device *dev)
329 {
330 struct drm_device *drm = dev_get_drvdata(dev);
331 struct ivpu_device *vdev = to_ivpu_device(drm);
332 int ret;
333
334 trace_pm("runtime resume");
335 ivpu_dbg(vdev, PM, "Runtime resume..\n");
336
337 ret = ivpu_resume(vdev);
338 if (ret)
339 ivpu_err(vdev, "Failed to set RESUME state: %d\n", ret);
340
341 ivpu_dbg(vdev, PM, "Runtime resume done.\n");
342 trace_pm("runtime resume done");
343
344 return ret;
345 }
346
ivpu_rpm_get(struct ivpu_device * vdev)347 int ivpu_rpm_get(struct ivpu_device *vdev)
348 {
349 int ret;
350
351 ret = pm_runtime_resume_and_get(vdev->drm.dev);
352 if (ret < 0) {
353 ivpu_err(vdev, "Failed to resume NPU: %d\n", ret);
354 pm_runtime_set_suspended(vdev->drm.dev);
355 }
356
357 return ret;
358 }
359
ivpu_rpm_put(struct ivpu_device * vdev)360 void ivpu_rpm_put(struct ivpu_device *vdev)
361 {
362 pm_runtime_mark_last_busy(vdev->drm.dev);
363 pm_runtime_put_autosuspend(vdev->drm.dev);
364 }
365
ivpu_pm_reset_prepare_cb(struct pci_dev * pdev)366 void ivpu_pm_reset_prepare_cb(struct pci_dev *pdev)
367 {
368 struct ivpu_device *vdev = pci_get_drvdata(pdev);
369
370 ivpu_dbg(vdev, PM, "Pre-reset..\n");
371
372 ivpu_pm_reset_begin(vdev);
373
374 if (!pm_runtime_status_suspended(vdev->drm.dev)) {
375 ivpu_prepare_for_reset(vdev);
376 ivpu_hw_reset(vdev);
377 }
378
379 ivpu_dbg(vdev, PM, "Pre-reset done.\n");
380 }
381
ivpu_pm_reset_done_cb(struct pci_dev * pdev)382 void ivpu_pm_reset_done_cb(struct pci_dev *pdev)
383 {
384 struct ivpu_device *vdev = pci_get_drvdata(pdev);
385
386 ivpu_dbg(vdev, PM, "Post-reset..\n");
387
388 ivpu_pm_reset_complete(vdev);
389
390 ivpu_dbg(vdev, PM, "Post-reset done.\n");
391 }
392
ivpu_pm_init(struct ivpu_device * vdev)393 void ivpu_pm_init(struct ivpu_device *vdev)
394 {
395 struct device *dev = vdev->drm.dev;
396 struct ivpu_pm_info *pm = vdev->pm;
397 int delay;
398
399 pm->vdev = vdev;
400
401 init_rwsem(&pm->reset_lock);
402 atomic_set(&pm->reset_pending, 0);
403 atomic_set(&pm->reset_counter, 0);
404
405 INIT_WORK(&pm->recovery_work, ivpu_pm_recovery_work);
406 INIT_DELAYED_WORK(&pm->job_timeout_work, ivpu_job_timeout_work);
407
408 if (ivpu_disable_recovery)
409 delay = -1;
410 else
411 delay = vdev->timeout.autosuspend;
412
413 pm_runtime_use_autosuspend(dev);
414 pm_runtime_set_autosuspend_delay(dev, delay);
415 pm_runtime_set_active(dev);
416
417 ivpu_dbg(vdev, PM, "Autosuspend delay = %d\n", delay);
418 }
419
ivpu_pm_disable_recovery(struct ivpu_device * vdev)420 void ivpu_pm_disable_recovery(struct ivpu_device *vdev)
421 {
422 drm_WARN_ON(&vdev->drm, delayed_work_pending(&vdev->pm->job_timeout_work));
423 disable_work_sync(&vdev->pm->recovery_work);
424 }
425
ivpu_pm_enable(struct ivpu_device * vdev)426 void ivpu_pm_enable(struct ivpu_device *vdev)
427 {
428 struct device *dev = vdev->drm.dev;
429
430 pm_runtime_allow(dev);
431 pm_runtime_mark_last_busy(dev);
432 pm_runtime_put_autosuspend(dev);
433 }
434
ivpu_pm_disable(struct ivpu_device * vdev)435 void ivpu_pm_disable(struct ivpu_device *vdev)
436 {
437 pm_runtime_get_noresume(vdev->drm.dev);
438 pm_runtime_forbid(vdev->drm.dev);
439 }
440
ivpu_pm_dct_init(struct ivpu_device * vdev)441 int ivpu_pm_dct_init(struct ivpu_device *vdev)
442 {
443 if (vdev->pm->dct_active_percent)
444 return ivpu_pm_dct_enable(vdev, vdev->pm->dct_active_percent);
445
446 return 0;
447 }
448
ivpu_pm_dct_enable(struct ivpu_device * vdev,u8 active_percent)449 int ivpu_pm_dct_enable(struct ivpu_device *vdev, u8 active_percent)
450 {
451 u32 active_us, inactive_us;
452 int ret;
453
454 if (active_percent == 0 || active_percent > 100)
455 return -EINVAL;
456
457 active_us = (DCT_PERIOD_US * active_percent) / 100;
458 inactive_us = DCT_PERIOD_US - active_us;
459
460 vdev->pm->dct_active_percent = active_percent;
461
462 ivpu_dbg(vdev, PM, "DCT requested %u%% (D0: %uus, D0i2: %uus)\n",
463 active_percent, active_us, inactive_us);
464
465 ret = ivpu_jsm_dct_enable(vdev, active_us, inactive_us);
466 if (ret) {
467 ivpu_err_ratelimited(vdev, "Failed to enable DCT: %d\n", ret);
468 return ret;
469 }
470
471 return 0;
472 }
473
ivpu_pm_dct_disable(struct ivpu_device * vdev)474 int ivpu_pm_dct_disable(struct ivpu_device *vdev)
475 {
476 int ret;
477
478 vdev->pm->dct_active_percent = 0;
479
480 ivpu_dbg(vdev, PM, "DCT requested to be disabled\n");
481
482 ret = ivpu_jsm_dct_disable(vdev);
483 if (ret) {
484 ivpu_err_ratelimited(vdev, "Failed to disable DCT: %d\n", ret);
485 return ret;
486 }
487
488 return 0;
489 }
490
ivpu_pm_irq_dct_work_fn(struct work_struct * work)491 void ivpu_pm_irq_dct_work_fn(struct work_struct *work)
492 {
493 struct ivpu_device *vdev = container_of(work, struct ivpu_device, irq_dct_work);
494 bool enable;
495 int ret;
496
497 if (ivpu_hw_btrs_dct_get_request(vdev, &enable))
498 return;
499
500 if (enable)
501 ret = ivpu_pm_dct_enable(vdev, DCT_DEFAULT_ACTIVE_PERCENT);
502 else
503 ret = ivpu_pm_dct_disable(vdev);
504
505 if (!ret)
506 ivpu_hw_btrs_dct_set_status(vdev, enable, vdev->pm->dct_active_percent);
507 }
508