13ea58029SMichal Wajdeczko // SPDX-License-Identifier: MIT
2f8a58d63SMichal Wajdeczko /*
33ea58029SMichal Wajdeczko * Copyright © 2016-2019 Intel Corporation
4f8a58d63SMichal Wajdeczko */
5f8a58d63SMichal Wajdeczko
61681924dSMatthew Brost #include <linux/circ_buf.h>
7b43b9950SMatthew Brost #include <linux/ktime.h>
8b43b9950SMatthew Brost #include <linux/string_helpers.h>
9707c3a7dSLucas De Marchi #include <linux/time64.h>
10b43b9950SMatthew Brost #include <linux/timekeeping.h>
111681924dSMatthew Brost
12f8a58d63SMichal Wajdeczko #include "i915_drv.h"
13f8a58d63SMichal Wajdeczko #include "i915_wait_util.h"
147388acb2SMichal Wajdeczko #include "intel_guc_ct.h"
15f8a58d63SMichal Wajdeczko #include "intel_guc_print.h"
16f6eeea8dSJohn Harrison
17f6eeea8dSJohn Harrison #if IS_ENABLED(CONFIG_DRM_I915_DEBUG)
18f6eeea8dSJohn Harrison enum {
19f6eeea8dSJohn Harrison CT_DEAD_ALIVE = 0,
20f6eeea8dSJohn Harrison CT_DEAD_SETUP,
21f6eeea8dSJohn Harrison CT_DEAD_WRITE,
22f6eeea8dSJohn Harrison CT_DEAD_DEADLOCK,
23f6eeea8dSJohn Harrison CT_DEAD_H2G_HAS_ROOM,
24f6eeea8dSJohn Harrison CT_DEAD_READ,
25f6eeea8dSJohn Harrison CT_DEAD_PROCESS_FAILED,
26f6eeea8dSJohn Harrison };
27f6eeea8dSJohn Harrison
28f6eeea8dSJohn Harrison static void ct_dead_ct_worker_func(struct work_struct *w);
29f6eeea8dSJohn Harrison
30f6eeea8dSJohn Harrison #define CT_DEAD(ct, reason) \
31f6eeea8dSJohn Harrison do { \
32f6eeea8dSJohn Harrison if (!(ct)->dead_ct_reported) { \
33f6eeea8dSJohn Harrison (ct)->dead_ct_reason |= 1 << CT_DEAD_##reason; \
34f6eeea8dSJohn Harrison queue_work(system_unbound_wq, &(ct)->dead_ct_worker); \
35f6eeea8dSJohn Harrison } \
36f6eeea8dSJohn Harrison } while (0)
37f6eeea8dSJohn Harrison #else
38f6eeea8dSJohn Harrison #define CT_DEAD(ct, reason) do { } while (0)
39f6eeea8dSJohn Harrison #endif
406fb086e5SDaniele Ceraolo Spurio
ct_to_guc(struct intel_guc_ct * ct)416fb086e5SDaniele Ceraolo Spurio static inline struct intel_guc *ct_to_guc(struct intel_guc_ct *ct)
426fb086e5SDaniele Ceraolo Spurio {
436fb086e5SDaniele Ceraolo Spurio return container_of(ct, struct intel_guc, ct);
446fb086e5SDaniele Ceraolo Spurio }
4518c88325SMichal Wajdeczko
467388acb2SMichal Wajdeczko #define CT_ERROR(_ct, _fmt, ...) \
470a015ff9SMichal Wajdeczko guc_err(ct_to_guc(_ct), "CT: " _fmt, ##__VA_ARGS__)
4877b20896SMichal Wajdeczko #ifdef CONFIG_DRM_I915_DEBUG_GUC
497388acb2SMichal Wajdeczko #define CT_DEBUG(_ct, _fmt, ...) \
500a015ff9SMichal Wajdeczko guc_dbg(ct_to_guc(_ct), "CT: " _fmt, ##__VA_ARGS__)
5177b20896SMichal Wajdeczko #else
520a015ff9SMichal Wajdeczko #define CT_DEBUG(...) do { } while (0)
536fb086e5SDaniele Ceraolo Spurio #endif
547388acb2SMichal Wajdeczko #define CT_PROBE_ERROR(_ct, _fmt, ...) \
550a015ff9SMichal Wajdeczko guc_probe_error(ct_to_guc(ct), "CT: " _fmt, ##__VA_ARGS__)
56df12d1c3SMichal Wajdeczko
57df12d1c3SMichal Wajdeczko /**
58df12d1c3SMichal Wajdeczko * DOC: CTB Blob
59df12d1c3SMichal Wajdeczko *
60df12d1c3SMichal Wajdeczko * We allocate single blob to hold both CTB descriptors and buffers:
61df12d1c3SMichal Wajdeczko *
62df12d1c3SMichal Wajdeczko * +--------+-----------------------------------------------+------+
63df12d1c3SMichal Wajdeczko * | offset | contents | size |
64df12d1c3SMichal Wajdeczko * +========+===============================================+======+
65df12d1c3SMichal Wajdeczko * | 0x0000 | H2G `CTB Descriptor`_ (send) | |
66df12d1c3SMichal Wajdeczko * +--------+-----------------------------------------------+ 4K |
67df12d1c3SMichal Wajdeczko * | 0x0800 | G2H `CTB Descriptor`_ (recv) | |
68df12d1c3SMichal Wajdeczko * +--------+-----------------------------------------------+------+
69df12d1c3SMichal Wajdeczko * | 0x1000 | H2G `CT Buffer`_ (send) | n*4K |
70df12d1c3SMichal Wajdeczko * | | | |
71df12d1c3SMichal Wajdeczko * +--------+-----------------------------------------------+------+
72df12d1c3SMichal Wajdeczko * | 0x1000 | G2H `CT Buffer`_ (recv) | m*4K |
73df12d1c3SMichal Wajdeczko * | + n*4K | | |
74df12d1c3SMichal Wajdeczko * +--------+-----------------------------------------------+------+
75df12d1c3SMichal Wajdeczko *
76c26e289fSMatthew Brost * Size of each `CT Buffer`_ must be multiple of 4K.
77c26e289fSMatthew Brost * We don't expect too many messages in flight at any time, unless we are
78c26e289fSMatthew Brost * using the GuC submission. In that case each request requires a minimum
79c26e289fSMatthew Brost * 2 dwords which gives us a maximum 256 queue'd requests. Hopefully this
80c26e289fSMatthew Brost * enough space to avoid backpressure on the driver. We increase the size
81c26e289fSMatthew Brost * of the receive buffer (relative to the send) to ensure a G2H response
82df12d1c3SMichal Wajdeczko * CTB has a landing spot.
83df12d1c3SMichal Wajdeczko */
84df12d1c3SMichal Wajdeczko #define CTB_DESC_SIZE ALIGN(sizeof(struct guc_ct_buffer_desc), SZ_2K)
85c26e289fSMatthew Brost #define CTB_H2G_BUFFER_SIZE (SZ_4K)
86f4eb1f3fSMatthew Brost #define CTB_G2H_BUFFER_SIZE (4 * CTB_H2G_BUFFER_SIZE)
87df12d1c3SMichal Wajdeczko #define G2H_ROOM_BUFFER_SIZE (CTB_G2H_BUFFER_SIZE / 4)
889ef4c75eSMichal Wajdeczko
899ef4c75eSMichal Wajdeczko struct ct_request {
909ef4c75eSMichal Wajdeczko struct list_head link;
919ef4c75eSMichal Wajdeczko u32 fence;
929ef4c75eSMichal Wajdeczko u32 status;
939ef4c75eSMichal Wajdeczko u32 response_len;
949ef4c75eSMichal Wajdeczko u32 *response_buf;
959ef4c75eSMichal Wajdeczko };
968d99e09cSMichal Wajdeczko
976c77a2b0SMichal Wajdeczko struct ct_incoming_msg {
988d99e09cSMichal Wajdeczko struct list_head link;
993e78f771SKees Cook u32 size;
1006c77a2b0SMichal Wajdeczko u32 msg[] __counted_by(size);
1016c77a2b0SMichal Wajdeczko };
102f8a58d63SMichal Wajdeczko
103f8a58d63SMichal Wajdeczko enum { CTB_SEND = 0, CTB_RECV = 1 };
104f8a58d63SMichal Wajdeczko
105f8a58d63SMichal Wajdeczko enum { CTB_OWNER_HOST = 0 };
106ff0dac08SJonathan Cavitt
107ff0dac08SJonathan Cavitt /*
108ff0dac08SJonathan Cavitt * Some H2G commands involve a synchronous response that the driver needs
109ff0dac08SJonathan Cavitt * to wait for. In such cases, a timeout is required to prevent the driver
110ff0dac08SJonathan Cavitt * from waiting forever in the case of an error (either no error response
111ff0dac08SJonathan Cavitt * is defined in the protocol or something has died and requires a reset).
112ff0dac08SJonathan Cavitt * The specific command may be defined as having a time bound response but
113ff0dac08SJonathan Cavitt * the CT is a queue and that time guarantee only starts from the point
114ff0dac08SJonathan Cavitt * when the command reaches the head of the queue and is processed by GuC.
115ff0dac08SJonathan Cavitt *
116ff0dac08SJonathan Cavitt * Ideally there would be a helper to report the progress of a given
117ff0dac08SJonathan Cavitt * command through the CT. However, that would require a significant
118ff0dac08SJonathan Cavitt * amount of work in the CT layer. In the meantime, provide a reasonable
119ff0dac08SJonathan Cavitt * estimation of the worst case latency it should take for the entire
120ff0dac08SJonathan Cavitt * queue to drain. And therefore, how long a caller should wait before
121ff0dac08SJonathan Cavitt * giving up on their request. The current estimate is based on empirical
122ff0dac08SJonathan Cavitt * measurement of a test that fills the buffer with context creation and
123ff0dac08SJonathan Cavitt * destruction requests as they seem to be the slowest operation.
124ff0dac08SJonathan Cavitt */
intel_guc_ct_max_queue_time_jiffies(void)125ff0dac08SJonathan Cavitt long intel_guc_ct_max_queue_time_jiffies(void)
126ff0dac08SJonathan Cavitt {
127ff0dac08SJonathan Cavitt /*
128ff0dac08SJonathan Cavitt * A 4KB buffer full of context destroy commands takes a little
129ff0dac08SJonathan Cavitt * over a second to process so bump that to 2s to be super safe.
130ff0dac08SJonathan Cavitt */
131ff0dac08SJonathan Cavitt return (CTB_H2G_BUFFER_SIZE * HZ) / SZ_2K;
132ff0dac08SJonathan Cavitt }
13365dd4ed0SMichal Wajdeczko
1346c77a2b0SMichal Wajdeczko static void ct_receive_tasklet_func(struct tasklet_struct *t);
1356c77a2b0SMichal Wajdeczko static void ct_incoming_request_worker_func(struct work_struct *w);
136d871bfd0SMichal Wajdeczko
137d871bfd0SMichal Wajdeczko /**
138d871bfd0SMichal Wajdeczko * intel_guc_ct_init_early - Initialize CT state without requiring device access
139d871bfd0SMichal Wajdeczko * @ct: pointer to CT struct
140f8a58d63SMichal Wajdeczko */
intel_guc_ct_init_early(struct intel_guc_ct * ct)141f8a58d63SMichal Wajdeczko void intel_guc_ct_init_early(struct intel_guc_ct *ct)
1427c567bbfSMichal Wajdeczko {
1437c567bbfSMichal Wajdeczko spin_lock_init(&ct->ctbs.send.lock);
1447524c365SDaniele Ceraolo Spurio spin_lock_init(&ct->ctbs.recv.lock);
1457524c365SDaniele Ceraolo Spurio spin_lock_init(&ct->requests.lock);
1467524c365SDaniele Ceraolo Spurio INIT_LIST_HEAD(&ct->requests.pending);
147f6eeea8dSJohn Harrison INIT_LIST_HEAD(&ct->requests.incoming);
148f6eeea8dSJohn Harrison #if IS_ENABLED(CONFIG_DRM_I915_DEBUG)
149f6eeea8dSJohn Harrison INIT_WORK(&ct->dead_ct_worker, ct_dead_ct_worker_func);
1507524c365SDaniele Ceraolo Spurio #endif
15165dd4ed0SMichal Wajdeczko INIT_WORK(&ct->requests.worker, ct_incoming_request_worker_func);
152b97060a9SMatthew Brost tasklet_setup(&ct->receive_tasklet, ct_receive_tasklet_func);
153f8a58d63SMichal Wajdeczko init_waitqueue_head(&ct->wq);
154f8a58d63SMichal Wajdeczko }
155572f2a5cSMichal Wajdeczko
guc_ct_buffer_desc_init(struct guc_ct_buffer_desc * desc)156f8a58d63SMichal Wajdeczko static void guc_ct_buffer_desc_init(struct guc_ct_buffer_desc *desc)
157f8a58d63SMichal Wajdeczko {
158f8a58d63SMichal Wajdeczko memset(desc, 0, sizeof(*desc));
159f8a58d63SMichal Wajdeczko }
160572f2a5cSMichal Wajdeczko
guc_ct_buffer_reset(struct intel_guc_ct_buffer * ctb)16199b2f5f5SMichal Wajdeczko static void guc_ct_buffer_reset(struct intel_guc_ct_buffer *ctb)
162f4eb1f3fSMatthew Brost {
163f4eb1f3fSMatthew Brost u32 space;
164572f2a5cSMichal Wajdeczko
16575452167SMatthew Brost ctb->broken = false;
16675452167SMatthew Brost ctb->tail = 0;
167f4eb1f3fSMatthew Brost ctb->head = 0;
168f4eb1f3fSMatthew Brost space = CIRC_SPACE(ctb->tail, ctb->head, ctb->size) - ctb->resv_space;
16975452167SMatthew Brost atomic_set(&ctb->space, space);
170572f2a5cSMichal Wajdeczko
17199b2f5f5SMichal Wajdeczko guc_ct_buffer_desc_init(ctb->desc);
17299b2f5f5SMichal Wajdeczko }
17399b2f5f5SMichal Wajdeczko
guc_ct_buffer_init(struct intel_guc_ct_buffer * ctb,struct guc_ct_buffer_desc * desc,u32 * cmds,u32 size_in_bytes,u32 resv_space)17499b2f5f5SMichal Wajdeczko static void guc_ct_buffer_init(struct intel_guc_ct_buffer *ctb,
175f4eb1f3fSMatthew Brost struct guc_ct_buffer_desc *desc,
17699b2f5f5SMichal Wajdeczko u32 *cmds, u32 size_in_bytes, u32 resv_space)
177572f2a5cSMichal Wajdeczko {
17899b2f5f5SMichal Wajdeczko GEM_BUG_ON(size_in_bytes % 4);
17999b2f5f5SMichal Wajdeczko
18099b2f5f5SMichal Wajdeczko ctb->desc = desc;
181572f2a5cSMichal Wajdeczko ctb->cmds = cmds;
182f4eb1f3fSMatthew Brost ctb->size = size_in_bytes / 4;
18399b2f5f5SMichal Wajdeczko ctb->resv_space = resv_space / 4;
184572f2a5cSMichal Wajdeczko
18599b2f5f5SMichal Wajdeczko guc_ct_buffer_reset(ctb);
18699b2f5f5SMichal Wajdeczko }
18777b6f79dSJohn Harrison
guc_action_control_ctb(struct intel_guc * guc,u32 control)188f8a58d63SMichal Wajdeczko static int guc_action_control_ctb(struct intel_guc *guc, u32 control)
18977b6f79dSJohn Harrison {
190572f2a5cSMichal Wajdeczko u32 request[HOST2GUC_CONTROL_CTB_REQUEST_MSG_LEN] = {
191572f2a5cSMichal Wajdeczko FIELD_PREP(GUC_HXG_MSG_0_ORIGIN, GUC_HXG_ORIGIN_HOST) |
19277b6f79dSJohn Harrison FIELD_PREP(GUC_HXG_MSG_0_TYPE, GUC_HXG_TYPE_REQUEST) |
19377b6f79dSJohn Harrison FIELD_PREP(GUC_HXG_REQUEST_MSG_0_ACTION, GUC_ACTION_HOST2GUC_CONTROL_CTB),
194f8a58d63SMichal Wajdeczko FIELD_PREP(HOST2GUC_CONTROL_CTB_REQUEST_MSG_1_CONTROL, control),
195217ecd31SMichal Wajdeczko };
196f8a58d63SMichal Wajdeczko int ret;
19777b6f79dSJohn Harrison
198572f2a5cSMichal Wajdeczko GEM_BUG_ON(control != GUC_CTB_CONTROL_DISABLE && control != GUC_CTB_CONTROL_ENABLE);
19977b6f79dSJohn Harrison
200217ecd31SMichal Wajdeczko /* CT control must go over MMIO */
201217ecd31SMichal Wajdeczko ret = intel_guc_send_mmio(guc, request, ARRAY_SIZE(request), NULL, 0);
202217ecd31SMichal Wajdeczko
20359a46ad9SMichal Wajdeczko return ret > 0 ? -EPROTO : ret;
20459a46ad9SMichal Wajdeczko }
20577b6f79dSJohn Harrison
ct_control_enable(struct intel_guc_ct * ct,bool enable)20677b6f79dSJohn Harrison static int ct_control_enable(struct intel_guc_ct *ct, bool enable)
20777b6f79dSJohn Harrison {
20877b6f79dSJohn Harrison int err;
20977b6f79dSJohn Harrison
21077b6f79dSJohn Harrison err = guc_action_control_ctb(ct_to_guc(ct), enable ?
21177b6f79dSJohn Harrison GUC_CTB_CONTROL_ENABLE : GUC_CTB_CONTROL_DISABLE);
21277b6f79dSJohn Harrison if (unlikely(err))
213707c3a7dSLucas De Marchi CT_PROBE_ERROR(ct, "Failed to control/%s CTB (%pe)\n",
21477b6f79dSJohn Harrison str_enable_disable(enable), ERR_PTR(err));
21577b6f79dSJohn Harrison
21677b6f79dSJohn Harrison return err;
21777b6f79dSJohn Harrison }
21877b6f79dSJohn Harrison
ct_register_buffer(struct intel_guc_ct * ct,bool send,u32 desc_addr,u32 buff_addr,u32 size)219572f2a5cSMichal Wajdeczko static int ct_register_buffer(struct intel_guc_ct *ct, bool send,
22059a46ad9SMichal Wajdeczko u32 desc_addr, u32 buff_addr, u32 size)
221572f2a5cSMichal Wajdeczko {
22259a46ad9SMichal Wajdeczko int err;
22377b6f79dSJohn Harrison
22477b6f79dSJohn Harrison err = intel_guc_self_cfg64(ct_to_guc(ct), send ?
22577b6f79dSJohn Harrison GUC_KLV_SELF_CFG_H2G_CTB_DESCRIPTOR_ADDR_KEY :
22677b6f79dSJohn Harrison GUC_KLV_SELF_CFG_G2H_CTB_DESCRIPTOR_ADDR_KEY,
2273101e995SJohn Harrison desc_addr);
22877b6f79dSJohn Harrison if (unlikely(err))
2293101e995SJohn Harrison goto failed;
23077b6f79dSJohn Harrison
23177b6f79dSJohn Harrison err = intel_guc_self_cfg64(ct_to_guc(ct), send ?
23277b6f79dSJohn Harrison GUC_KLV_SELF_CFG_H2G_CTB_ADDR_KEY :
23377b6f79dSJohn Harrison GUC_KLV_SELF_CFG_G2H_CTB_ADDR_KEY,
23459a46ad9SMichal Wajdeczko buff_addr);
23577b6f79dSJohn Harrison if (unlikely(err))
236f8a58d63SMichal Wajdeczko goto failed;
23777b6f79dSJohn Harrison
23877b6f79dSJohn Harrison err = intel_guc_self_cfg32(ct_to_guc(ct), send ?
23977b6f79dSJohn Harrison GUC_KLV_SELF_CFG_H2G_CTB_SIZE_KEY :
24077b6f79dSJohn Harrison GUC_KLV_SELF_CFG_G2H_CTB_SIZE_KEY,
24159a46ad9SMichal Wajdeczko size);
24277b6f79dSJohn Harrison if (unlikely(err))
24377b6f79dSJohn Harrison failed:
24477b6f79dSJohn Harrison CT_PROBE_ERROR(ct, "Failed to register %s buffer (%pe)\n",
24577b6f79dSJohn Harrison send ? "SEND" : "RECV", ERR_PTR(err));
246f8a58d63SMichal Wajdeczko
247f8a58d63SMichal Wajdeczko return err;
248f8a58d63SMichal Wajdeczko }
2499ab28cd2SDaniele Ceraolo Spurio
2509ab28cd2SDaniele Ceraolo Spurio /**
2519ab28cd2SDaniele Ceraolo Spurio * intel_guc_ct_init - Init buffer-based communication
2529ab28cd2SDaniele Ceraolo Spurio * @ct: pointer to CT struct
2539ab28cd2SDaniele Ceraolo Spurio *
2549ab28cd2SDaniele Ceraolo Spurio * Allocate memory required for buffer-based communication.
2559ab28cd2SDaniele Ceraolo Spurio *
2569ab28cd2SDaniele Ceraolo Spurio * Return: 0 on success, a negative errno code on failure.
2579ab28cd2SDaniele Ceraolo Spurio */
intel_guc_ct_init(struct intel_guc_ct * ct)258f8a58d63SMichal Wajdeczko int intel_guc_ct_init(struct intel_guc_ct *ct)
2599ab28cd2SDaniele Ceraolo Spurio {
26099b2f5f5SMichal Wajdeczko struct intel_guc *guc = ct_to_guc(ct);
26199b2f5f5SMichal Wajdeczko struct guc_ct_buffer_desc *desc;
262b43f0fc8SMichal Wajdeczko u32 blob_size;
263f4eb1f3fSMatthew Brost u32 cmds_size;
264f8a58d63SMichal Wajdeczko u32 resv_space;
26599b2f5f5SMichal Wajdeczko void *blob;
266f8a58d63SMichal Wajdeczko u32 *cmds;
267f8a58d63SMichal Wajdeczko int err;
268*be5bcc4bSAndi Shyti
2693101e995SJohn Harrison err = i915_inject_probe_error(guc_to_i915(guc), -ENXIO);
2703101e995SJohn Harrison if (err)
2713101e995SJohn Harrison return err;
2729ab28cd2SDaniele Ceraolo Spurio
273f8a58d63SMichal Wajdeczko GEM_BUG_ON(ct->vma);
274df12d1c3SMichal Wajdeczko
27599b2f5f5SMichal Wajdeczko blob_size = 2 * CTB_DESC_SIZE + CTB_H2G_BUFFER_SIZE + CTB_G2H_BUFFER_SIZE;
27618c88325SMichal Wajdeczko err = intel_guc_allocate_and_map_vma(guc, blob_size, &ct->vma, &blob);
27799b2f5f5SMichal Wajdeczko if (unlikely(err)) {
27899b2f5f5SMichal Wajdeczko CT_PROBE_ERROR(ct, "Failed to allocate %u for CTB data (%pe)\n",
27918c094b3SDaniele Ceraolo Spurio blob_size, ERR_PTR(err));
280f8a58d63SMichal Wajdeczko return err;
281f8a58d63SMichal Wajdeczko }
28299b2f5f5SMichal Wajdeczko
283f8a58d63SMichal Wajdeczko CT_DEBUG(ct, "base=%#x size=%u\n", intel_guc_ggtt_offset(guc, ct->vma), blob_size);
284b43f0fc8SMichal Wajdeczko
285b43f0fc8SMichal Wajdeczko /* store pointers to desc and cmds for send ctb */
286df12d1c3SMichal Wajdeczko desc = blob;
287df12d1c3SMichal Wajdeczko cmds = blob + 2 * CTB_DESC_SIZE;
288f4eb1f3fSMatthew Brost cmds_size = CTB_H2G_BUFFER_SIZE;
289f4eb1f3fSMatthew Brost resv_space = 0;
290f4eb1f3fSMatthew Brost CT_DEBUG(ct, "%s desc %#tx cmds %#tx size %u/%u\n", "send",
291f4eb1f3fSMatthew Brost ptrdiff(desc, blob), ptrdiff(cmds, blob), cmds_size,
29299b2f5f5SMichal Wajdeczko resv_space);
293f4eb1f3fSMatthew Brost
29499b2f5f5SMichal Wajdeczko guc_ct_buffer_init(&ct->ctbs.send, desc, cmds, cmds_size, resv_space);
295b43f0fc8SMichal Wajdeczko
296df12d1c3SMichal Wajdeczko /* store pointers to desc and cmds for recv ctb */
297df12d1c3SMichal Wajdeczko desc = blob + CTB_DESC_SIZE;
298df12d1c3SMichal Wajdeczko cmds = blob + 2 * CTB_DESC_SIZE + CTB_H2G_BUFFER_SIZE;
299f4eb1f3fSMatthew Brost cmds_size = CTB_G2H_BUFFER_SIZE;
300f4eb1f3fSMatthew Brost resv_space = G2H_ROOM_BUFFER_SIZE;
301f4eb1f3fSMatthew Brost CT_DEBUG(ct, "%s desc %#tx cmds %#tx size %u/%u\n", "recv",
302f4eb1f3fSMatthew Brost ptrdiff(desc, blob), ptrdiff(cmds, blob), cmds_size,
303b43f0fc8SMichal Wajdeczko resv_space);
304f4eb1f3fSMatthew Brost
305f8a58d63SMichal Wajdeczko guc_ct_buffer_init(&ct->ctbs.recv, desc, cmds, cmds_size, resv_space);
306f8a58d63SMichal Wajdeczko
307f8a58d63SMichal Wajdeczko return 0;
308f8a58d63SMichal Wajdeczko }
3099ab28cd2SDaniele Ceraolo Spurio
3109ab28cd2SDaniele Ceraolo Spurio /**
3119ab28cd2SDaniele Ceraolo Spurio * intel_guc_ct_fini - Fini buffer-based communication
3129ab28cd2SDaniele Ceraolo Spurio * @ct: pointer to CT struct
3139ab28cd2SDaniele Ceraolo Spurio *
3149ab28cd2SDaniele Ceraolo Spurio * Deallocate memory required for buffer-based communication.
3159ab28cd2SDaniele Ceraolo Spurio */
intel_guc_ct_fini(struct intel_guc_ct * ct)316f8a58d63SMichal Wajdeczko void intel_guc_ct_fini(struct intel_guc_ct *ct)
3179ab28cd2SDaniele Ceraolo Spurio {
318e0ad3c64SSujaritha Sundaresan GEM_BUG_ON(ct->enabled);
31965dd4ed0SMichal Wajdeczko
3209ab28cd2SDaniele Ceraolo Spurio tasklet_kill(&ct->receive_tasklet);
3210f41e31aSJohn Harrison i915_vma_unpin_and_release(&ct->vma, I915_VMA_RELEASE_MAP);
322f8a58d63SMichal Wajdeczko memset(ct, 0, sizeof(*ct));
323f8a58d63SMichal Wajdeczko }
3249ab28cd2SDaniele Ceraolo Spurio
3259ab28cd2SDaniele Ceraolo Spurio /**
3269ab28cd2SDaniele Ceraolo Spurio * intel_guc_ct_enable - Enable buffer based command transport.
3279ab28cd2SDaniele Ceraolo Spurio * @ct: pointer to CT struct
3289ab28cd2SDaniele Ceraolo Spurio *
3299ab28cd2SDaniele Ceraolo Spurio * Return: 0 on success, a negative errno code on failure.
3309ab28cd2SDaniele Ceraolo Spurio */
intel_guc_ct_enable(struct intel_guc_ct * ct)331f8a58d63SMichal Wajdeczko int intel_guc_ct_enable(struct intel_guc_ct *ct)
3329ab28cd2SDaniele Ceraolo Spurio {
33377b6f79dSJohn Harrison struct intel_guc *guc = ct_to_guc(ct);
334480c6fe1SMichal Wajdeczko u32 base, desc, cmds, size;
335f8a58d63SMichal Wajdeczko void *blob;
336f8a58d63SMichal Wajdeczko int err;
3379ab28cd2SDaniele Ceraolo Spurio
338f8a58d63SMichal Wajdeczko GEM_BUG_ON(ct->enabled);
339f8a58d63SMichal Wajdeczko
3409ab28cd2SDaniele Ceraolo Spurio /* vma should be already allocated and map'ed */
341480c6fe1SMichal Wajdeczko GEM_BUG_ON(!ct->vma);
3429ab28cd2SDaniele Ceraolo Spurio GEM_BUG_ON(!i915_gem_object_has_pinned_pages(ct->vma->obj));
343f8a58d63SMichal Wajdeczko base = intel_guc_ggtt_offset(guc, ct->vma);
344480c6fe1SMichal Wajdeczko
345480c6fe1SMichal Wajdeczko /* blob should start with send descriptor */
346b43f0fc8SMichal Wajdeczko blob = __px_vaddr(ct->vma->obj);
347480c6fe1SMichal Wajdeczko GEM_BUG_ON(blob != ct->ctbs.send.desc);
348480c6fe1SMichal Wajdeczko
349572f2a5cSMichal Wajdeczko /* (re)initialize descriptors */
350572f2a5cSMichal Wajdeczko guc_ct_buffer_reset(&ct->ctbs.send);
351f8a58d63SMichal Wajdeczko guc_ct_buffer_reset(&ct->ctbs.recv);
35259a46ad9SMichal Wajdeczko
35359a46ad9SMichal Wajdeczko /*
35459a46ad9SMichal Wajdeczko * Register both CT buffers starting with RECV buffer.
355f8a58d63SMichal Wajdeczko * Descriptors are in first half of the blob.
356572f2a5cSMichal Wajdeczko */
357572f2a5cSMichal Wajdeczko desc = base + ptrdiff(ct->ctbs.recv.desc, blob);
35877b6f79dSJohn Harrison cmds = base + ptrdiff(ct->ctbs.recv.cmds, blob);
35977b6f79dSJohn Harrison size = ct->ctbs.recv.size * 4;
360f8a58d63SMichal Wajdeczko err = ct_register_buffer(ct, false, desc, cmds, size);
361e0ad3c64SSujaritha Sundaresan if (unlikely(err))
362f8a58d63SMichal Wajdeczko goto err_out;
363572f2a5cSMichal Wajdeczko
364572f2a5cSMichal Wajdeczko desc = base + ptrdiff(ct->ctbs.send.desc, blob);
36577b6f79dSJohn Harrison cmds = base + ptrdiff(ct->ctbs.send.cmds, blob);
36677b6f79dSJohn Harrison size = ct->ctbs.send.size * 4;
367f8a58d63SMichal Wajdeczko err = ct_register_buffer(ct, true, desc, cmds, size);
36877b6f79dSJohn Harrison if (unlikely(err))
36977b6f79dSJohn Harrison goto err_out;
37077b6f79dSJohn Harrison
37177b6f79dSJohn Harrison err = ct_control_enable(ct, true);
37277b6f79dSJohn Harrison if (unlikely(err))
373f8a58d63SMichal Wajdeczko goto err_out;
3749ab28cd2SDaniele Ceraolo Spurio
375b43b9950SMatthew Brost ct->enabled = true;
376f6eeea8dSJohn Harrison ct->stall_time = KTIME_MAX;
377f6eeea8dSJohn Harrison #if IS_ENABLED(CONFIG_DRM_I915_DEBUG)
378f6eeea8dSJohn Harrison ct->dead_ct_reported = false;
379f6eeea8dSJohn Harrison ct->dead_ct_reason = CT_DEAD_ALIVE;
380e0ad3c64SSujaritha Sundaresan #endif
381f8a58d63SMichal Wajdeczko
382f8a58d63SMichal Wajdeczko return 0;
383f8a58d63SMichal Wajdeczko
38499b2f5f5SMichal Wajdeczko err_out:
385f6eeea8dSJohn Harrison CT_PROBE_ERROR(ct, "Failed to enable CTB (%pe)\n", ERR_PTR(err));
386f8a58d63SMichal Wajdeczko CT_DEAD(ct, SETUP);
387f8a58d63SMichal Wajdeczko return err;
388f8a58d63SMichal Wajdeczko }
3899ab28cd2SDaniele Ceraolo Spurio
3909ab28cd2SDaniele Ceraolo Spurio /**
3919ab28cd2SDaniele Ceraolo Spurio * intel_guc_ct_disable - Disable buffer based command transport.
3929ab28cd2SDaniele Ceraolo Spurio * @ct: pointer to CT struct
3939ab28cd2SDaniele Ceraolo Spurio */
intel_guc_ct_disable(struct intel_guc_ct * ct)394f8a58d63SMichal Wajdeczko void intel_guc_ct_disable(struct intel_guc_ct *ct)
3959ab28cd2SDaniele Ceraolo Spurio {
396e0ad3c64SSujaritha Sundaresan struct intel_guc *guc = ct_to_guc(ct);
3979ab28cd2SDaniele Ceraolo Spurio
3989ab28cd2SDaniele Ceraolo Spurio GEM_BUG_ON(!ct->enabled);
3999ab28cd2SDaniele Ceraolo Spurio
400f8a58d63SMichal Wajdeczko ct->enabled = false;
401e85de177SMichal Wajdeczko
40277b6f79dSJohn Harrison if (intel_guc_is_fw_running(guc)) {
403f8a58d63SMichal Wajdeczko ct_control_enable(ct, false);
404e627ad50SDaniele Ceraolo Spurio }
405f8a58d63SMichal Wajdeczko }
406a5606b94SMichal Wajdeczko
407a5606b94SMichal Wajdeczko #if IS_ENABLED(CONFIG_DRM_I915_DEBUG_GEM)
ct_track_lost_and_found(struct intel_guc_ct * ct,u32 fence,u32 action)408a5606b94SMichal Wajdeczko static void ct_track_lost_and_found(struct intel_guc_ct *ct, u32 fence, u32 action)
409a5606b94SMichal Wajdeczko {
410a5606b94SMichal Wajdeczko unsigned int lost = fence % ARRAY_SIZE(ct->requests.lost_and_found);
411a5606b94SMichal Wajdeczko #if IS_ENABLED(CONFIG_DRM_I915_DEBUG_GUC)
412a5606b94SMichal Wajdeczko unsigned long entries[SZ_32];
413a5606b94SMichal Wajdeczko unsigned int n;
414a5606b94SMichal Wajdeczko
415a5606b94SMichal Wajdeczko n = stack_trace_save(entries, ARRAY_SIZE(entries), 1);
416a5606b94SMichal Wajdeczko
417a5606b94SMichal Wajdeczko /* May be called under spinlock, so avoid sleeping */
418a5606b94SMichal Wajdeczko ct->requests.lost_and_found[lost].stack = stack_depot_save(entries, n, GFP_NOWAIT);
419a5606b94SMichal Wajdeczko #endif
420a5606b94SMichal Wajdeczko ct->requests.lost_and_found[lost].fence = fence;
421a5606b94SMichal Wajdeczko ct->requests.lost_and_found[lost].action = action;
422a5606b94SMichal Wajdeczko }
423a5606b94SMichal Wajdeczko #endif
4249ab28cd2SDaniele Ceraolo Spurio
ct_get_next_fence(struct intel_guc_ct * ct)425f8a58d63SMichal Wajdeczko static u32 ct_get_next_fence(struct intel_guc_ct *ct)
426f8a58d63SMichal Wajdeczko {
42788a57514SMichal Wajdeczko /* For now it's trivial */
428f8a58d63SMichal Wajdeczko return ++ct->requests.last_fence;
429f8a58d63SMichal Wajdeczko }
4306a327cb1SMichal Wajdeczko
ct_write(struct intel_guc_ct * ct,const u32 * action,u32 len,u32 fence,u32 flags)431f8a58d63SMichal Wajdeczko static int ct_write(struct intel_guc_ct *ct,
432f8a58d63SMichal Wajdeczko const u32 *action,
4331681924dSMatthew Brost u32 len /* in dwords */,
434f8a58d63SMichal Wajdeczko u32 fence, u32 flags)
435b43f0fc8SMichal Wajdeczko {
436f8a58d63SMichal Wajdeczko struct intel_guc_ct_buffer *ctb = &ct->ctbs.send;
43775452167SMatthew Brost struct guc_ct_buffer_desc *desc = ctb->desc;
43899b2f5f5SMichal Wajdeczko u32 tail = ctb->tail;
439f8a58d63SMichal Wajdeczko u32 size = ctb->size;
440572f2a5cSMichal Wajdeczko u32 header;
4411681924dSMatthew Brost u32 hxg;
442f8a58d63SMichal Wajdeczko u32 type;
443f8a58d63SMichal Wajdeczko u32 *cmds = ctb->cmds;
444f8a58d63SMichal Wajdeczko unsigned int i;
445572f2a5cSMichal Wajdeczko
4464c22abfbSMichal Wajdeczko if (unlikely(desc->status))
4474c22abfbSMichal Wajdeczko goto corrupted;
44875452167SMatthew Brost
44975452167SMatthew Brost GEM_BUG_ON(tail > size);
45075452167SMatthew Brost
45175452167SMatthew Brost #ifdef CONFIG_DRM_I915_DEBUG_GUC
45275452167SMatthew Brost if (unlikely(tail != READ_ONCE(desc->tail))) {
45375452167SMatthew Brost CT_ERROR(ct, "Tail was modified %u != %u\n",
45475452167SMatthew Brost desc->tail, tail);
45575452167SMatthew Brost desc->status |= GUC_CTB_STATUS_MISMATCH;
45675452167SMatthew Brost goto corrupted;
45775452167SMatthew Brost }
45875452167SMatthew Brost if (unlikely(READ_ONCE(desc->head) >= size)) {
45975452167SMatthew Brost CT_ERROR(ct, "Invalid head offset %u >= %u)\n",
460572f2a5cSMichal Wajdeczko desc->head, size);
461572f2a5cSMichal Wajdeczko desc->status |= GUC_CTB_STATUS_OVERFLOW;
462572f2a5cSMichal Wajdeczko goto corrupted;
46375452167SMatthew Brost }
464f8a58d63SMichal Wajdeczko #endif
4651d407096SMichal Wajdeczko
466572f2a5cSMichal Wajdeczko /*
467572f2a5cSMichal Wajdeczko * dw0: CT header (including fence)
468572f2a5cSMichal Wajdeczko * dw1: HXG header (including action code)
469f8a58d63SMichal Wajdeczko * dw2+: action data
470572f2a5cSMichal Wajdeczko */
471572f2a5cSMichal Wajdeczko header = FIELD_PREP(GUC_CTB_MSG_0_FORMAT, GUC_CTB_FORMAT_HXG) |
472572f2a5cSMichal Wajdeczko FIELD_PREP(GUC_CTB_MSG_0_NUM_DWORDS, len) |
473f8a58d63SMichal Wajdeczko FIELD_PREP(GUC_CTB_MSG_0_FENCE, fence);
474edfd93e6SMichal Wajdeczko
4751681924dSMatthew Brost type = (flags & INTEL_GUC_CT_SEND_NB) ? GUC_HXG_TYPE_FAST_REQUEST :
4761681924dSMatthew Brost GUC_HXG_TYPE_REQUEST;
477edfd93e6SMichal Wajdeczko hxg = FIELD_PREP(GUC_HXG_MSG_0_TYPE, type) |
478edfd93e6SMichal Wajdeczko FIELD_PREP(GUC_HXG_REQUEST_MSG_0_ACTION |
479572f2a5cSMichal Wajdeczko GUC_HXG_REQUEST_MSG_0_DATA0, action[0]);
480572f2a5cSMichal Wajdeczko
481572f2a5cSMichal Wajdeczko CT_DEBUG(ct, "writing (tail %u) %*ph %*ph %*ph\n",
4820a015ff9SMichal Wajdeczko tail, 4, &header, 4, &hxg, 4 * (len - 1), &action[1]);
483f8a58d63SMichal Wajdeczko
484f8a58d63SMichal Wajdeczko cmds[tail] = header;
485f8a58d63SMichal Wajdeczko tail = (tail + 1) % size;
486572f2a5cSMichal Wajdeczko
487f8a58d63SMichal Wajdeczko cmds[tail] = hxg;
488f8a58d63SMichal Wajdeczko tail = (tail + 1) % size;
489f8a58d63SMichal Wajdeczko
490f8a58d63SMichal Wajdeczko for (i = 1; i < len; i++) {
491f8a58d63SMichal Wajdeczko cmds[tail] = action[i];
492f8a58d63SMichal Wajdeczko tail = (tail + 1) % size;
4934c22abfbSMichal Wajdeczko }
494f8a58d63SMichal Wajdeczko GEM_BUG_ON(tail > size);
495a5606b94SMichal Wajdeczko
496a5606b94SMichal Wajdeczko #if IS_ENABLED(CONFIG_DRM_I915_DEBUG_GEM)
497a5606b94SMichal Wajdeczko ct_track_lost_and_found(ct, fence,
498a5606b94SMichal Wajdeczko FIELD_GET(GUC_HXG_EVENT_MSG_0_ACTION, action[0]));
499a5606b94SMichal Wajdeczko #endif
500d35ca600SMatthew Brost
501d35ca600SMatthew Brost /*
502d35ca600SMatthew Brost * make sure H2G buffer update and LRC tail update (if this triggering a
503d35ca600SMatthew Brost * submission) are visible before updating the descriptor tail
5046b540bf6SMatthew Brost */
505d35ca600SMatthew Brost intel_guc_write_barrier(ct_to_guc(ct));
50675452167SMatthew Brost
50775452167SMatthew Brost /* update local copies */
508f4eb1f3fSMatthew Brost ctb->tail = tail;
509f4eb1f3fSMatthew Brost GEM_BUG_ON(atomic_read(&ctb->space) < len + GUC_CTB_HDR_LEN);
51075452167SMatthew Brost atomic_sub(len + GUC_CTB_HDR_LEN, &ctb->space);
511572f2a5cSMichal Wajdeczko
512572f2a5cSMichal Wajdeczko /* now update descriptor */
513572f2a5cSMichal Wajdeczko WRITE_ONCE(desc->tail, tail);
514f8a58d63SMichal Wajdeczko
5154c22abfbSMichal Wajdeczko return 0;
5164c22abfbSMichal Wajdeczko
517572f2a5cSMichal Wajdeczko corrupted:
518572f2a5cSMichal Wajdeczko CT_ERROR(ct, "Corrupted descriptor head=%u tail=%u status=%#x\n",
519f6eeea8dSJohn Harrison desc->head, desc->tail, desc->status);
520572f2a5cSMichal Wajdeczko CT_DEAD(ct, WRITE);
5214c22abfbSMichal Wajdeczko ctb->broken = true;
522f8a58d63SMichal Wajdeczko return -EPIPE;
523f8a58d63SMichal Wajdeczko }
52424827cd0SMichal Wajdeczko
5259ef4c75eSMichal Wajdeczko /**
52622645976SZhanjun Dong * wait_for_ct_request_update - Wait for CT request state update.
5279ef4c75eSMichal Wajdeczko * @ct: pointer to CT
5289ef4c75eSMichal Wajdeczko * @req: pointer to pending request
5299ef4c75eSMichal Wajdeczko * @status: placeholder for status
53075452167SMatthew Brost *
5319ef4c75eSMichal Wajdeczko * For each sent request, GuC shall send back CT response message.
5329ef4c75eSMichal Wajdeczko * Our message handler will update status of tracked request once
5339ef4c75eSMichal Wajdeczko * response message with given fence is received. Wait here and
5349ef4c75eSMichal Wajdeczko * check for valid response status value.
5359ef4c75eSMichal Wajdeczko *
5369ef4c75eSMichal Wajdeczko * Return:
5379ef4c75eSMichal Wajdeczko * * 0 response received (status is valid)
5389ef4c75eSMichal Wajdeczko * * -ETIMEDOUT no response within hardcoded timeout
53922645976SZhanjun Dong */
wait_for_ct_request_update(struct intel_guc_ct * ct,struct ct_request * req,u32 * status)5409ef4c75eSMichal Wajdeczko static int wait_for_ct_request_update(struct intel_guc_ct *ct, struct ct_request *req, u32 *status)
5419ef4c75eSMichal Wajdeczko {
54222645976SZhanjun Dong int err;
5439ef4c75eSMichal Wajdeczko bool ct_enabled;
5449ef4c75eSMichal Wajdeczko
5459ef4c75eSMichal Wajdeczko /*
5469ef4c75eSMichal Wajdeczko * Fast commands should complete in less than 10us, so sample quickly
5471ccf7294SMatthew Brost * up to that length of time, then switch to a slower sleep-wait loop.
5481ccf7294SMatthew Brost * No GuC command should ever take longer than 10ms but many GuC
5491ccf7294SMatthew Brost * commands can be inflight at time, so use a 1s timeout on the slower
5509ef4c75eSMichal Wajdeczko * sleep-wait loop.
5511ccf7294SMatthew Brost */
5521ccf7294SMatthew Brost #define GUC_CTB_RESPONSE_TIMEOUT_SHORT_MS 10
553572f2a5cSMichal Wajdeczko #define GUC_CTB_RESPONSE_TIMEOUT_LONG_MS 1000
55422645976SZhanjun Dong #define done \
55522645976SZhanjun Dong (!(ct_enabled = intel_guc_ct_enabled(ct)) || \
556572f2a5cSMichal Wajdeczko FIELD_GET(GUC_HXG_MSG_0_ORIGIN, READ_ONCE(req->status)) == \
5571ccf7294SMatthew Brost GUC_HXG_ORIGIN_GUC)
5589ef4c75eSMichal Wajdeczko err = wait_for_us(done, GUC_CTB_RESPONSE_TIMEOUT_SHORT_MS);
5591ccf7294SMatthew Brost if (err)
5609ef4c75eSMichal Wajdeczko err = wait_for(done, GUC_CTB_RESPONSE_TIMEOUT_LONG_MS);
56122645976SZhanjun Dong #undef done
56222645976SZhanjun Dong if (!ct_enabled)
5639ef4c75eSMichal Wajdeczko err = -ENODEV;
5649ef4c75eSMichal Wajdeczko
5659ef4c75eSMichal Wajdeczko *status = req->status;
5669ef4c75eSMichal Wajdeczko return err;
5679ef4c75eSMichal Wajdeczko }
568b43b9950SMatthew Brost
569b43b9950SMatthew Brost #define GUC_CTB_TIMEOUT_MS 1500
ct_deadlocked(struct intel_guc_ct * ct)570b43b9950SMatthew Brost static inline bool ct_deadlocked(struct intel_guc_ct *ct)
571b43b9950SMatthew Brost {
572b43b9950SMatthew Brost long timeout = GUC_CTB_TIMEOUT_MS;
573b43b9950SMatthew Brost bool ret = ktime_ms_delta(ktime_get(), ct->stall_time) > timeout;
574b43b9950SMatthew Brost
575b43b9950SMatthew Brost if (unlikely(ret)) {
576b43b9950SMatthew Brost struct guc_ct_buffer_desc *send = ct->ctbs.send.desc;
577b43b9950SMatthew Brost struct guc_ct_buffer_desc *recv = ct->ctbs.send.desc;
578b43b9950SMatthew Brost
579b43b9950SMatthew Brost CT_ERROR(ct, "Communication stalled for %lld ms, desc status=%#x,%#x\n",
580b43b9950SMatthew Brost ktime_ms_delta(ktime_get(), ct->stall_time),
5816e94d539SMatthew Brost send->status, recv->status);
5826e94d539SMatthew Brost CT_ERROR(ct, "H2G Space: %u (Bytes)\n",
5836e94d539SMatthew Brost atomic_read(&ct->ctbs.send.space) * 4);
5846e94d539SMatthew Brost CT_ERROR(ct, "Head: %u (Dwords)\n", ct->ctbs.send.desc->head);
5856e94d539SMatthew Brost CT_ERROR(ct, "Tail: %u (Dwords)\n", ct->ctbs.send.desc->tail);
5866e94d539SMatthew Brost CT_ERROR(ct, "G2H Space: %u (Bytes)\n",
5876e94d539SMatthew Brost atomic_read(&ct->ctbs.recv.space) * 4);
5886e94d539SMatthew Brost CT_ERROR(ct, "Head: %u\n (Dwords)", ct->ctbs.recv.desc->head);
5896e94d539SMatthew Brost CT_ERROR(ct, "Tail: %u\n (Dwords)", ct->ctbs.recv.desc->tail);
590f6eeea8dSJohn Harrison
591b43b9950SMatthew Brost CT_DEAD(ct, DEADLOCK);
592b43b9950SMatthew Brost ct->ctbs.send.broken = true;
593b43b9950SMatthew Brost }
594b43b9950SMatthew Brost
595b43b9950SMatthew Brost return ret;
596b43b9950SMatthew Brost }
597f4eb1f3fSMatthew Brost
g2h_has_room(struct intel_guc_ct * ct,u32 g2h_len_dw)598f4eb1f3fSMatthew Brost static inline bool g2h_has_room(struct intel_guc_ct *ct, u32 g2h_len_dw)
599f4eb1f3fSMatthew Brost {
600f4eb1f3fSMatthew Brost struct intel_guc_ct_buffer *ctb = &ct->ctbs.recv;
601f4eb1f3fSMatthew Brost
602f4eb1f3fSMatthew Brost /*
603f4eb1f3fSMatthew Brost * We leave a certain amount of space in the G2H CTB buffer for
604f4eb1f3fSMatthew Brost * unexpected G2H CTBs (e.g. logging, engine hang, etc...)
605f4eb1f3fSMatthew Brost */
606f4eb1f3fSMatthew Brost return !g2h_len_dw || atomic_read(&ctb->space) >= g2h_len_dw;
607f4eb1f3fSMatthew Brost }
608f4eb1f3fSMatthew Brost
g2h_reserve_space(struct intel_guc_ct * ct,u32 g2h_len_dw)609f4eb1f3fSMatthew Brost static inline void g2h_reserve_space(struct intel_guc_ct *ct, u32 g2h_len_dw)
610f4eb1f3fSMatthew Brost {
611f4eb1f3fSMatthew Brost lockdep_assert_held(&ct->ctbs.send.lock);
612f4eb1f3fSMatthew Brost
613f4eb1f3fSMatthew Brost GEM_BUG_ON(!g2h_has_room(ct, g2h_len_dw));
614f4eb1f3fSMatthew Brost
615f4eb1f3fSMatthew Brost if (g2h_len_dw)
616f4eb1f3fSMatthew Brost atomic_sub(g2h_len_dw, &ct->ctbs.recv.space);
617f4eb1f3fSMatthew Brost }
618f4eb1f3fSMatthew Brost
g2h_release_space(struct intel_guc_ct * ct,u32 g2h_len_dw)619f4eb1f3fSMatthew Brost static inline void g2h_release_space(struct intel_guc_ct *ct, u32 g2h_len_dw)
620f4eb1f3fSMatthew Brost {
621f4eb1f3fSMatthew Brost atomic_add(g2h_len_dw, &ct->ctbs.recv.space);
622f4eb1f3fSMatthew Brost }
62375452167SMatthew Brost
h2g_has_room(struct intel_guc_ct * ct,u32 len_dw)6241681924dSMatthew Brost static inline bool h2g_has_room(struct intel_guc_ct *ct, u32 len_dw)
62575452167SMatthew Brost {
6261681924dSMatthew Brost struct intel_guc_ct_buffer *ctb = &ct->ctbs.send;
62775452167SMatthew Brost struct guc_ct_buffer_desc *desc = ctb->desc;
6281681924dSMatthew Brost u32 head;
6291681924dSMatthew Brost u32 space;
630f4eb1f3fSMatthew Brost
63175452167SMatthew Brost if (atomic_read(&ctb->space) >= len_dw)
63275452167SMatthew Brost return true;
63375452167SMatthew Brost
63475452167SMatthew Brost head = READ_ONCE(desc->head);
63575452167SMatthew Brost if (unlikely(head > ctb->size)) {
63675452167SMatthew Brost CT_ERROR(ct, "Invalid head offset %u >= %u)\n",
63775452167SMatthew Brost head, ctb->size);
63875452167SMatthew Brost desc->status |= GUC_CTB_STATUS_OVERFLOW;
639f6eeea8dSJohn Harrison ctb->broken = true;
64075452167SMatthew Brost CT_DEAD(ct, H2G_HAS_ROOM);
64175452167SMatthew Brost return false;
64275452167SMatthew Brost }
64375452167SMatthew Brost
644f4eb1f3fSMatthew Brost space = CIRC_SPACE(ctb->tail, head, ctb->size);
6451681924dSMatthew Brost atomic_set(&ctb->space, space);
6461681924dSMatthew Brost
6471681924dSMatthew Brost return space >= len_dw;
6481681924dSMatthew Brost }
649f4eb1f3fSMatthew Brost
has_room_nb(struct intel_guc_ct * ct,u32 h2g_dw,u32 g2h_dw)650b43b9950SMatthew Brost static int has_room_nb(struct intel_guc_ct *ct, u32 h2g_dw, u32 g2h_dw)
6512aa9f833SMatthew Brost {
6522aa9f833SMatthew Brost bool h2g = h2g_has_room(ct, h2g_dw);
6532aa9f833SMatthew Brost bool g2h = g2h_has_room(ct, g2h_dw);
654b43b9950SMatthew Brost
655b43b9950SMatthew Brost lockdep_assert_held(&ct->ctbs.send.lock);
6562aa9f833SMatthew Brost
657b43b9950SMatthew Brost if (unlikely(!h2g || !g2h)) {
658b43b9950SMatthew Brost if (ct->stall_time == KTIME_MAX)
659b43b9950SMatthew Brost ct->stall_time = ktime_get();
6602aa9f833SMatthew Brost
6612aa9f833SMatthew Brost /* Be paranoid and kick G2H tasklet to free credits */
6622aa9f833SMatthew Brost if (!g2h)
6632aa9f833SMatthew Brost tasklet_hi_schedule(&ct->receive_tasklet);
664b43b9950SMatthew Brost
665b43b9950SMatthew Brost if (unlikely(ct_deadlocked(ct)))
666b43b9950SMatthew Brost return -EPIPE;
667b43b9950SMatthew Brost else
668b43b9950SMatthew Brost return -EBUSY;
669b43b9950SMatthew Brost }
670b43b9950SMatthew Brost
671b43b9950SMatthew Brost ct->stall_time = KTIME_MAX;
672b43b9950SMatthew Brost return 0;
673b43b9950SMatthew Brost }
674f4eb1f3fSMatthew Brost
675f4eb1f3fSMatthew Brost #define G2H_LEN_DW(f) ({ \
676f4eb1f3fSMatthew Brost typeof(f) f_ = (f); \
677f4eb1f3fSMatthew Brost FIELD_GET(INTEL_GUC_CT_SEND_G2H_DW_MASK, f_) ? \
678f4eb1f3fSMatthew Brost FIELD_GET(INTEL_GUC_CT_SEND_G2H_DW_MASK, f_) + \
679f4eb1f3fSMatthew Brost GUC_CTB_HXG_MSG_MIN_LEN : 0; \
6801681924dSMatthew Brost })
ct_send_nb(struct intel_guc_ct * ct,const u32 * action,u32 len,u32 flags)6811681924dSMatthew Brost static int ct_send_nb(struct intel_guc_ct *ct,
6821681924dSMatthew Brost const u32 *action,
6831681924dSMatthew Brost u32 len,
6841681924dSMatthew Brost u32 flags)
6851681924dSMatthew Brost {
6861681924dSMatthew Brost struct intel_guc_ct_buffer *ctb = &ct->ctbs.send;
687f4eb1f3fSMatthew Brost unsigned long spin_flags;
6881681924dSMatthew Brost u32 g2h_len_dw = G2H_LEN_DW(flags);
6891681924dSMatthew Brost u32 fence;
6901681924dSMatthew Brost int ret;
6911681924dSMatthew Brost
6921681924dSMatthew Brost spin_lock_irqsave(&ctb->lock, spin_flags);
693f4eb1f3fSMatthew Brost
694b43b9950SMatthew Brost ret = has_room_nb(ct, len + GUC_CTB_HDR_LEN, g2h_len_dw);
6951681924dSMatthew Brost if (unlikely(ret))
6961681924dSMatthew Brost goto out;
6971681924dSMatthew Brost
6981681924dSMatthew Brost fence = ct_get_next_fence(ct);
6991681924dSMatthew Brost ret = ct_write(ct, action, len, fence, flags);
7001681924dSMatthew Brost if (unlikely(ret))
7011681924dSMatthew Brost goto out;
702f4eb1f3fSMatthew Brost
7031681924dSMatthew Brost g2h_reserve_space(ct, g2h_len_dw);
7041681924dSMatthew Brost intel_guc_notify(ct_to_guc(ct));
7051681924dSMatthew Brost
7061681924dSMatthew Brost out:
7071681924dSMatthew Brost spin_unlock_irqrestore(&ctb->lock, spin_flags);
7081681924dSMatthew Brost
7091681924dSMatthew Brost return ret;
7101681924dSMatthew Brost }
7119ab28cd2SDaniele Ceraolo Spurio
ct_send(struct intel_guc_ct * ct,const u32 * action,u32 len,u32 * response_buf,u32 response_buf_size,u32 * status)712f8a58d63SMichal Wajdeczko static int ct_send(struct intel_guc_ct *ct,
713f8a58d63SMichal Wajdeczko const u32 *action,
7149ef4c75eSMichal Wajdeczko u32 len,
7159ef4c75eSMichal Wajdeczko u32 *response_buf,
716f8a58d63SMichal Wajdeczko u32 response_buf_size,
717f8a58d63SMichal Wajdeczko u32 *status)
7181681924dSMatthew Brost {
7199ef4c75eSMichal Wajdeczko struct intel_guc_ct_buffer *ctb = &ct->ctbs.send;
7209ef4c75eSMichal Wajdeczko struct ct_request request;
7211681924dSMatthew Brost unsigned long flags;
72277b6f79dSJohn Harrison unsigned int sleep_period_ms = 1;
723f8a58d63SMichal Wajdeczko bool send_again;
724f8a58d63SMichal Wajdeczko u32 fence;
725f8a58d63SMichal Wajdeczko int err;
7269ab28cd2SDaniele Ceraolo Spurio
727f8a58d63SMichal Wajdeczko GEM_BUG_ON(!ct->enabled);
72884596e1aSMichal Wajdeczko GEM_BUG_ON(!len);
7299ef4c75eSMichal Wajdeczko GEM_BUG_ON(len > GUC_CTB_HXG_MSG_MAX_LEN - GUC_CTB_HDR_LEN);
7301681924dSMatthew Brost GEM_BUG_ON(!response_buf && response_buf_size);
731f8a58d63SMichal Wajdeczko might_sleep();
73277b6f79dSJohn Harrison
73377b6f79dSJohn Harrison resend:
73477b6f79dSJohn Harrison send_again = false;
7351681924dSMatthew Brost
7361681924dSMatthew Brost /*
7371681924dSMatthew Brost * We use a lazy spin wait loop here as we believe that if the CT
738f4eb1f3fSMatthew Brost * buffers are sized correctly the flow control condition should be
739f4eb1f3fSMatthew Brost * rare. Reserving the maximum size in the G2H credits as we don't know
7401681924dSMatthew Brost * how big the response is going to be.
7411681924dSMatthew Brost */
7421681924dSMatthew Brost retry:
743f4eb1f3fSMatthew Brost spin_lock_irqsave(&ctb->lock, flags);
744f4eb1f3fSMatthew Brost if (unlikely(!h2g_has_room(ct, len + GUC_CTB_HDR_LEN) ||
745b43b9950SMatthew Brost !g2h_has_room(ct, GUC_CTB_HXG_MSG_MAX_LEN))) {
746b43b9950SMatthew Brost if (ct->stall_time == KTIME_MAX)
7471681924dSMatthew Brost ct->stall_time = ktime_get();
7481681924dSMatthew Brost spin_unlock_irqrestore(&ctb->lock, flags);
749b43b9950SMatthew Brost
750b43b9950SMatthew Brost if (unlikely(ct_deadlocked(ct)))
751b43b9950SMatthew Brost return -EPIPE;
7521681924dSMatthew Brost
7531681924dSMatthew Brost if (msleep_interruptible(sleep_period_ms))
7541681924dSMatthew Brost return -EINTR;
7551681924dSMatthew Brost sleep_period_ms = sleep_period_ms << 1;
7561681924dSMatthew Brost
7571681924dSMatthew Brost goto retry;
7587c567bbfSMichal Wajdeczko }
759b43b9950SMatthew Brost
760b43b9950SMatthew Brost ct->stall_time = KTIME_MAX;
7619ab28cd2SDaniele Ceraolo Spurio
7629ef4c75eSMichal Wajdeczko fence = ct_get_next_fence(ct);
7639ef4c75eSMichal Wajdeczko request.fence = fence;
7649ef4c75eSMichal Wajdeczko request.status = 0;
7659ef4c75eSMichal Wajdeczko request.response_len = response_buf_size;
7669ef4c75eSMichal Wajdeczko request.response_buf = response_buf;
7677c567bbfSMichal Wajdeczko
7687524c365SDaniele Ceraolo Spurio spin_lock(&ct->requests.lock);
7697c567bbfSMichal Wajdeczko list_add_tail(&request.link, &ct->requests.pending);
7709ef4c75eSMichal Wajdeczko spin_unlock(&ct->requests.lock);
7711681924dSMatthew Brost
772f4eb1f3fSMatthew Brost err = ct_write(ct, action, len, fence, 0);
7737c567bbfSMichal Wajdeczko g2h_reserve_space(ct, GUC_CTB_HXG_MSG_MAX_LEN);
7741681924dSMatthew Brost
7757c567bbfSMichal Wajdeczko spin_unlock_irqrestore(&ctb->lock, flags);
776f8a58d63SMichal Wajdeczko
7779ef4c75eSMichal Wajdeczko if (unlikely(err))
778f8a58d63SMichal Wajdeczko goto unlink;
7799ef4c75eSMichal Wajdeczko
780f8a58d63SMichal Wajdeczko intel_guc_notify(ct_to_guc(ct));
78122645976SZhanjun Dong
782f4eb1f3fSMatthew Brost err = wait_for_ct_request_update(ct, &request, status);
783fb2d2de3SMichal Wajdeczko g2h_release_space(ct, GUC_CTB_HXG_MSG_MAX_LEN);
78422645976SZhanjun Dong if (unlikely(err)) {
78522645976SZhanjun Dong if (err == -ENODEV)
78622645976SZhanjun Dong /* wait_for_ct_request_update returns -ENODEV on reset/suspend in progress.
78722645976SZhanjun Dong * In this case, output is debug rather than error info
78822645976SZhanjun Dong */
78922645976SZhanjun Dong CT_DEBUG(ct, "Request %#x (fence %u) cancelled as CTB is disabled\n",
79022645976SZhanjun Dong action[0], request.fence);
791fb2d2de3SMichal Wajdeczko else
792fb2d2de3SMichal Wajdeczko CT_ERROR(ct, "No response for request %#x (fence %u)\n",
7939ef4c75eSMichal Wajdeczko action[0], request.fence);
794fb2d2de3SMichal Wajdeczko goto unlink;
795b839a869SMichal Wajdeczko }
79677b6f79dSJohn Harrison
79777b6f79dSJohn Harrison if (FIELD_GET(GUC_HXG_MSG_0_TYPE, *status) == GUC_HXG_TYPE_NO_RESPONSE_RETRY) {
79877b6f79dSJohn Harrison CT_DEBUG(ct, "retrying request %#x (%u)\n", *action,
79977b6f79dSJohn Harrison FIELD_GET(GUC_HXG_RETRY_MSG_0_REASON, *status));
80077b6f79dSJohn Harrison send_again = true;
80177b6f79dSJohn Harrison goto unlink;
80277b6f79dSJohn Harrison }
803572f2a5cSMichal Wajdeczko
8049ef4c75eSMichal Wajdeczko if (FIELD_GET(GUC_HXG_MSG_0_TYPE, *status) != GUC_HXG_TYPE_RESPONSE_SUCCESS) {
8059ef4c75eSMichal Wajdeczko err = -EIO;
8069ef4c75eSMichal Wajdeczko goto unlink;
8079ef4c75eSMichal Wajdeczko }
8089ef4c75eSMichal Wajdeczko
8099ef4c75eSMichal Wajdeczko if (response_buf) {
810572f2a5cSMichal Wajdeczko /* There shall be no data in the status */
8119ef4c75eSMichal Wajdeczko WARN_ON(FIELD_GET(GUC_HXG_RESPONSE_MSG_0_DATA0, request.status));
8129ef4c75eSMichal Wajdeczko /* Return actual response len */
8139ef4c75eSMichal Wajdeczko err = request.response_len;
8149ef4c75eSMichal Wajdeczko } else {
8159ef4c75eSMichal Wajdeczko /* There shall be no response payload */
8169ef4c75eSMichal Wajdeczko WARN_ON(request.response_len);
817572f2a5cSMichal Wajdeczko /* Return data decoded from the status dword */
8189ef4c75eSMichal Wajdeczko err = FIELD_GET(GUC_HXG_RESPONSE_MSG_0_DATA0, *status);
8199ef4c75eSMichal Wajdeczko }
8209ef4c75eSMichal Wajdeczko
8217524c365SDaniele Ceraolo Spurio unlink:
8229ef4c75eSMichal Wajdeczko spin_lock_irqsave(&ct->requests.lock, flags);
8237524c365SDaniele Ceraolo Spurio list_del(&request.link);
8249ef4c75eSMichal Wajdeczko spin_unlock_irqrestore(&ct->requests.lock, flags);
82577b6f79dSJohn Harrison
82677b6f79dSJohn Harrison if (unlikely(send_again))
82777b6f79dSJohn Harrison goto resend;
8289ef4c75eSMichal Wajdeczko
829f8a58d63SMichal Wajdeczko return err;
830f8a58d63SMichal Wajdeczko }
831f8a58d63SMichal Wajdeczko
832f8a58d63SMichal Wajdeczko /*
833f8a58d63SMichal Wajdeczko * Command Transport (CT) buffer based GuC send function.
8348c69bd74SDaniele Ceraolo Spurio */
intel_guc_ct_send(struct intel_guc_ct * ct,const u32 * action,u32 len,u32 * response_buf,u32 response_buf_size,u32 flags)8351681924dSMatthew Brost int intel_guc_ct_send(struct intel_guc_ct *ct, const u32 *action, u32 len,
836f8a58d63SMichal Wajdeczko u32 *response_buf, u32 response_buf_size, u32 flags)
837f8a58d63SMichal Wajdeczko {
838b839a869SMichal Wajdeczko u32 status = ~0; /* undefined */
839f8a58d63SMichal Wajdeczko int ret;
8408c69bd74SDaniele Ceraolo Spurio
841d75dc57fSJohn Harrison if (unlikely(!ct->enabled)) {
842d75dc57fSJohn Harrison struct intel_guc *guc = ct_to_guc(ct);
843d75dc57fSJohn Harrison struct intel_uc *uc = container_of(guc, struct intel_uc, guc);
844d75dc57fSJohn Harrison
8458c69bd74SDaniele Ceraolo Spurio WARN(!uc->reset_in_progress, "Unexpected send: action=%#x\n", *action);
8468c69bd74SDaniele Ceraolo Spurio return -ENODEV;
8478c69bd74SDaniele Ceraolo Spurio }
848b43b9950SMatthew Brost
849b43b9950SMatthew Brost if (unlikely(ct->ctbs.send.broken))
850b43b9950SMatthew Brost return -EPIPE;
8511681924dSMatthew Brost
8521681924dSMatthew Brost if (flags & INTEL_GUC_CT_SEND_NB)
8531681924dSMatthew Brost return ct_send_nb(ct, action, len, flags);
8549ab28cd2SDaniele Ceraolo Spurio
855b839a869SMichal Wajdeczko ret = ct_send(ct, action, len, response_buf, response_buf_size, &status);
85622645976SZhanjun Dong if (unlikely(ret < 0)) {
8570e9deac5SMichal Wajdeczko if (ret != -ENODEV)
8580e9deac5SMichal Wajdeczko CT_ERROR(ct, "Sending action %#x failed (%pe) status=%#X\n",
8590a015ff9SMichal Wajdeczko action[0], ERR_PTR(ret), status);
86077b20896SMichal Wajdeczko } else if (unlikely(ret)) {
8610a015ff9SMichal Wajdeczko CT_DEBUG(ct, "send action %#x returned %d (%#x)\n",
862f8a58d63SMichal Wajdeczko action[0], ret, ret);
863f8a58d63SMichal Wajdeczko }
864b839a869SMichal Wajdeczko
865f8a58d63SMichal Wajdeczko return ret;
866f8a58d63SMichal Wajdeczko }
8678d99e09cSMichal Wajdeczko
ct_alloc_msg(u32 num_dwords)8688d99e09cSMichal Wajdeczko static struct ct_incoming_msg *ct_alloc_msg(u32 num_dwords)
8698d99e09cSMichal Wajdeczko {
8708d99e09cSMichal Wajdeczko struct ct_incoming_msg *msg;
871cec49bceSGustavo A. R. Silva
8728d99e09cSMichal Wajdeczko msg = kmalloc(struct_size(msg, msg, num_dwords), GFP_ATOMIC);
8738d99e09cSMichal Wajdeczko if (msg)
8748d99e09cSMichal Wajdeczko msg->size = num_dwords;
8758d99e09cSMichal Wajdeczko return msg;
8768d99e09cSMichal Wajdeczko }
8778d99e09cSMichal Wajdeczko
ct_free_msg(struct ct_incoming_msg * msg)8788d99e09cSMichal Wajdeczko static void ct_free_msg(struct ct_incoming_msg *msg)
8798d99e09cSMichal Wajdeczko {
8808d99e09cSMichal Wajdeczko kfree(msg);
8818d99e09cSMichal Wajdeczko }
8828d99e09cSMichal Wajdeczko
8838d99e09cSMichal Wajdeczko /*
8848d99e09cSMichal Wajdeczko * Return: number available remaining dwords to read (0 if empty)
8858d99e09cSMichal Wajdeczko * or a negative error code on failure
8868d99e09cSMichal Wajdeczko */
ct_read(struct intel_guc_ct * ct,struct ct_incoming_msg ** msg)8871d407096SMichal Wajdeczko static int ct_read(struct intel_guc_ct *ct, struct ct_incoming_msg **msg)
888b43f0fc8SMichal Wajdeczko {
8891d407096SMichal Wajdeczko struct intel_guc_ct_buffer *ctb = &ct->ctbs.recv;
89075452167SMatthew Brost struct guc_ct_buffer_desc *desc = ctb->desc;
89175452167SMatthew Brost u32 head = ctb->head;
89299b2f5f5SMichal Wajdeczko u32 tail = READ_ONCE(desc->tail);
8931d407096SMichal Wajdeczko u32 size = ctb->size;
8941b9fc94aSMichal Wajdeczko u32 *cmds = ctb->cmds;
8951d407096SMichal Wajdeczko s32 available;
8961d407096SMichal Wajdeczko unsigned int len;
8978d99e09cSMichal Wajdeczko unsigned int i;
8981d407096SMichal Wajdeczko u32 header;
899572f2a5cSMichal Wajdeczko
9001b9fc94aSMichal Wajdeczko if (unlikely(ctb->broken))
9011b9fc94aSMichal Wajdeczko return -EPIPE;
902dd9d3cbeSJohn Harrison
903dd9d3cbeSJohn Harrison if (unlikely(desc->status)) {
904dd9d3cbeSJohn Harrison u32 status = desc->status;
905dd9d3cbeSJohn Harrison
906dd9d3cbeSJohn Harrison if (status & GUC_CTB_STATUS_UNUSED) {
907dd9d3cbeSJohn Harrison /*
908dd9d3cbeSJohn Harrison * Potentially valid if a CLIENT_RESET request resulted in
909dd9d3cbeSJohn Harrison * contexts/engines being reset. But should never happen as
910dd9d3cbeSJohn Harrison * no contexts should be active when CLIENT_RESET is sent.
911dd9d3cbeSJohn Harrison */
912dd9d3cbeSJohn Harrison CT_ERROR(ct, "Unexpected G2H after GuC has stopped!\n");
913dd9d3cbeSJohn Harrison status &= ~GUC_CTB_STATUS_UNUSED;
914dd9d3cbeSJohn Harrison }
915dd9d3cbeSJohn Harrison
9161b9fc94aSMichal Wajdeczko if (status)
917dd9d3cbeSJohn Harrison goto corrupted;
9181b9fc94aSMichal Wajdeczko }
91975452167SMatthew Brost
92075452167SMatthew Brost GEM_BUG_ON(head > size);
92175452167SMatthew Brost
92275452167SMatthew Brost #ifdef CONFIG_DRM_I915_DEBUG_GUC
92375452167SMatthew Brost if (unlikely(head != READ_ONCE(desc->head))) {
92475452167SMatthew Brost CT_ERROR(ct, "Head was modified %u != %u\n",
92575452167SMatthew Brost desc->head, head);
92675452167SMatthew Brost desc->status |= GUC_CTB_STATUS_MISMATCH;
92775452167SMatthew Brost goto corrupted;
92875452167SMatthew Brost }
92975452167SMatthew Brost #endif
93075452167SMatthew Brost if (unlikely(tail >= size)) {
93175452167SMatthew Brost CT_ERROR(ct, "Invalid tail offset %u >= %u)\n",
932572f2a5cSMichal Wajdeczko tail, size);
933572f2a5cSMichal Wajdeczko desc->status |= GUC_CTB_STATUS_OVERFLOW;
934572f2a5cSMichal Wajdeczko goto corrupted;
9351d407096SMichal Wajdeczko }
9361d407096SMichal Wajdeczko
9371d407096SMichal Wajdeczko /* tail == head condition indicates empty */
9388d99e09cSMichal Wajdeczko available = tail - head;
9398d99e09cSMichal Wajdeczko if (unlikely(available == 0)) {
9408d99e09cSMichal Wajdeczko *msg = NULL;
9418d99e09cSMichal Wajdeczko return 0;
9421d407096SMichal Wajdeczko }
9431d407096SMichal Wajdeczko
9441d407096SMichal Wajdeczko /* beware of buffer wrap case */
9451d407096SMichal Wajdeczko if (unlikely(available < 0))
946c26e289fSMatthew Brost available += size;
9471d407096SMichal Wajdeczko CT_DEBUG(ct, "available %d (%u:%u:%u)\n", available, head, tail, size);
9481d407096SMichal Wajdeczko GEM_BUG_ON(available < 0);
9498d99e09cSMichal Wajdeczko
9501d407096SMichal Wajdeczko header = cmds[head];
9511d407096SMichal Wajdeczko head = (head + 1) % size;
9521d407096SMichal Wajdeczko
953572f2a5cSMichal Wajdeczko /* message len with header */
9541d407096SMichal Wajdeczko len = FIELD_GET(GUC_CTB_MSG_0_NUM_DWORDS, header) + GUC_CTB_MSG_MIN_LEN;
955d624d401SMichal Wajdeczko if (unlikely(len > (u32)available)) {
9568d99e09cSMichal Wajdeczko CT_ERROR(ct, "Incomplete message %*ph %*ph %*ph\n",
9571d407096SMichal Wajdeczko 4, &header,
9581d407096SMichal Wajdeczko 4 * (head + available - 1 > size ?
9591d407096SMichal Wajdeczko size - head : available - 1), &cmds[head],
9601d407096SMichal Wajdeczko 4 * (head + available - 1 > size ?
961572f2a5cSMichal Wajdeczko available - 1 - size + head : 0), &cmds[0]);
9621b9fc94aSMichal Wajdeczko desc->status |= GUC_CTB_STATUS_UNDERFLOW;
9631d407096SMichal Wajdeczko goto corrupted;
9641d407096SMichal Wajdeczko }
9658d99e09cSMichal Wajdeczko
9668d99e09cSMichal Wajdeczko *msg = ct_alloc_msg(len);
9678d99e09cSMichal Wajdeczko if (!*msg) {
9688d99e09cSMichal Wajdeczko CT_ERROR(ct, "No memory for message %*ph %*ph %*ph\n",
9698d99e09cSMichal Wajdeczko 4, &header,
9708d99e09cSMichal Wajdeczko 4 * (head + available - 1 > size ?
9718d99e09cSMichal Wajdeczko size - head : available - 1), &cmds[head],
9728d99e09cSMichal Wajdeczko 4 * (head + available - 1 > size ?
9738d99e09cSMichal Wajdeczko available - 1 - size + head : 0), &cmds[0]);
9748d99e09cSMichal Wajdeczko return available;
9758d99e09cSMichal Wajdeczko }
9768d99e09cSMichal Wajdeczko
9778d99e09cSMichal Wajdeczko (*msg)->msg[0] = header;
9781d407096SMichal Wajdeczko
9798d99e09cSMichal Wajdeczko for (i = 1; i < len; i++) {
9801d407096SMichal Wajdeczko (*msg)->msg[i] = cmds[head];
9811d407096SMichal Wajdeczko head = (head + 1) % size;
9828d99e09cSMichal Wajdeczko }
9831d407096SMichal Wajdeczko CT_DEBUG(ct, "received %*ph\n", 4 * len, (*msg)->msg);
98475452167SMatthew Brost
98575452167SMatthew Brost /* update local copies */
98675452167SMatthew Brost ctb->head = head;
987572f2a5cSMichal Wajdeczko
988572f2a5cSMichal Wajdeczko /* now update descriptor */
989572f2a5cSMichal Wajdeczko WRITE_ONCE(desc->head, head);
990a161b6dbSFei Yang
991a161b6dbSFei Yang intel_guc_write_barrier(ct_to_guc(ct));
99265dd4ed0SMichal Wajdeczko
9931b9fc94aSMichal Wajdeczko return available - len;
9941b9fc94aSMichal Wajdeczko
995572f2a5cSMichal Wajdeczko corrupted:
996572f2a5cSMichal Wajdeczko CT_ERROR(ct, "Corrupted descriptor head=%u tail=%u status=%#x\n",
997572f2a5cSMichal Wajdeczko desc->head, desc->tail, desc->status);
998f6eeea8dSJohn Harrison ctb->broken = true;
9991b9fc94aSMichal Wajdeczko CT_DEAD(ct, READ);
10001d407096SMichal Wajdeczko return -EPIPE;
10011d407096SMichal Wajdeczko }
1002a5606b94SMichal Wajdeczko
1003a5606b94SMichal Wajdeczko #if IS_ENABLED(CONFIG_DRM_I915_DEBUG_GEM)
ct_check_lost_and_found(struct intel_guc_ct * ct,u32 fence)1004a5606b94SMichal Wajdeczko static bool ct_check_lost_and_found(struct intel_guc_ct *ct, u32 fence)
1005a5606b94SMichal Wajdeczko {
1006a5606b94SMichal Wajdeczko unsigned int n;
1007a5606b94SMichal Wajdeczko char *buf = NULL;
1008a5606b94SMichal Wajdeczko bool found = false;
1009a5606b94SMichal Wajdeczko
1010a5606b94SMichal Wajdeczko lockdep_assert_held(&ct->requests.lock);
1011a5606b94SMichal Wajdeczko
1012a5606b94SMichal Wajdeczko for (n = 0; n < ARRAY_SIZE(ct->requests.lost_and_found); n++) {
1013a5606b94SMichal Wajdeczko if (ct->requests.lost_and_found[n].fence != fence)
1014a5606b94SMichal Wajdeczko continue;
1015a5606b94SMichal Wajdeczko found = true;
1016a5606b94SMichal Wajdeczko
1017a5606b94SMichal Wajdeczko #if IS_ENABLED(CONFIG_DRM_I915_DEBUG_GUC)
1018a5606b94SMichal Wajdeczko buf = kmalloc(SZ_4K, GFP_NOWAIT);
1019a5606b94SMichal Wajdeczko if (buf && stack_depot_snprint(ct->requests.lost_and_found[n].stack,
1020a5606b94SMichal Wajdeczko buf, SZ_4K, 0)) {
1021a5606b94SMichal Wajdeczko CT_ERROR(ct, "Fence %u was used by action %#04x sent at\n%s",
1022a5606b94SMichal Wajdeczko fence, ct->requests.lost_and_found[n].action, buf);
1023a5606b94SMichal Wajdeczko break;
1024a5606b94SMichal Wajdeczko }
1025a5606b94SMichal Wajdeczko #endif
1026a5606b94SMichal Wajdeczko CT_ERROR(ct, "Fence %u was used by action %#04x\n",
1027a5606b94SMichal Wajdeczko fence, ct->requests.lost_and_found[n].action);
1028a5606b94SMichal Wajdeczko break;
1029a5606b94SMichal Wajdeczko }
1030a5606b94SMichal Wajdeczko kfree(buf);
1031a5606b94SMichal Wajdeczko return found;
1032a5606b94SMichal Wajdeczko }
1033a5606b94SMichal Wajdeczko #else
ct_check_lost_and_found(struct intel_guc_ct * ct,u32 fence)1034a5606b94SMichal Wajdeczko static bool ct_check_lost_and_found(struct intel_guc_ct *ct, u32 fence)
1035a5606b94SMichal Wajdeczko {
1036a5606b94SMichal Wajdeczko return false;
1037a5606b94SMichal Wajdeczko }
1038a5606b94SMichal Wajdeczko #endif
10398d99e09cSMichal Wajdeczko
ct_handle_response(struct intel_guc_ct * ct,struct ct_incoming_msg * response)10401d407096SMichal Wajdeczko static int ct_handle_response(struct intel_guc_ct *ct, struct ct_incoming_msg *response)
1041572f2a5cSMichal Wajdeczko {
1042572f2a5cSMichal Wajdeczko u32 len = FIELD_GET(GUC_CTB_MSG_0_NUM_DWORDS, response->msg[0]);
1043572f2a5cSMichal Wajdeczko u32 fence = FIELD_GET(GUC_CTB_MSG_0_FENCE, response->msg[0]);
1044572f2a5cSMichal Wajdeczko const u32 *hxg = &response->msg[GUC_CTB_MSG_MIN_LEN];
1045572f2a5cSMichal Wajdeczko const u32 *data = &hxg[GUC_HXG_MSG_MIN_LEN];
10469ef4c75eSMichal Wajdeczko u32 datalen = len - GUC_HXG_MSG_MIN_LEN;
104765dd4ed0SMichal Wajdeczko struct ct_request *req;
10489ef4c75eSMichal Wajdeczko unsigned long flags;
10498d99e09cSMichal Wajdeczko bool found = false;
10501d407096SMichal Wajdeczko int err = 0;
1051572f2a5cSMichal Wajdeczko
1052572f2a5cSMichal Wajdeczko GEM_BUG_ON(len < GUC_HXG_MSG_MIN_LEN);
1053572f2a5cSMichal Wajdeczko GEM_BUG_ON(FIELD_GET(GUC_HXG_MSG_0_ORIGIN, hxg[0]) != GUC_HXG_ORIGIN_GUC);
105477b6f79dSJohn Harrison GEM_BUG_ON(FIELD_GET(GUC_HXG_MSG_0_TYPE, hxg[0]) != GUC_HXG_TYPE_RESPONSE_SUCCESS &&
1055572f2a5cSMichal Wajdeczko FIELD_GET(GUC_HXG_MSG_0_TYPE, hxg[0]) != GUC_HXG_TYPE_NO_RESPONSE_RETRY &&
10561d407096SMichal Wajdeczko FIELD_GET(GUC_HXG_MSG_0_TYPE, hxg[0]) != GUC_HXG_TYPE_RESPONSE_FAILURE);
1057572f2a5cSMichal Wajdeczko
10580a015ff9SMichal Wajdeczko CT_DEBUG(ct, "response fence %u status %#x\n", fence, hxg[0]);
105965dd4ed0SMichal Wajdeczko
10607524c365SDaniele Ceraolo Spurio spin_lock_irqsave(&ct->requests.lock, flags);
10619ef4c75eSMichal Wajdeczko list_for_each_entry(req, &ct->requests.pending, link) {
106277b20896SMichal Wajdeczko if (unlikely(fence != req->fence)) {
10639ef4c75eSMichal Wajdeczko CT_DEBUG(ct, "request %u awaits response\n",
10649ef4c75eSMichal Wajdeczko req->fence);
10659ef4c75eSMichal Wajdeczko continue;
10669ef4c75eSMichal Wajdeczko }
10678d99e09cSMichal Wajdeczko if (unlikely(datalen > req->response_len)) {
10688d99e09cSMichal Wajdeczko CT_ERROR(ct, "Response %u too long (datalen %u > %u)\n",
10698d99e09cSMichal Wajdeczko req->fence, datalen, req->response_len);
10708d99e09cSMichal Wajdeczko datalen = min(datalen, req->response_len);
10719ef4c75eSMichal Wajdeczko err = -EMSGSIZE;
10729ef4c75eSMichal Wajdeczko }
1073572f2a5cSMichal Wajdeczko if (datalen)
10749ef4c75eSMichal Wajdeczko memcpy(req->response_buf, data, 4 * datalen);
1075572f2a5cSMichal Wajdeczko req->response_len = datalen;
10769ef4c75eSMichal Wajdeczko WRITE_ONCE(req->status, hxg[0]);
10779ef4c75eSMichal Wajdeczko found = true;
10789ef4c75eSMichal Wajdeczko break;
1079706785c1SJohn Harrison }
1080706785c1SJohn Harrison
1081706785c1SJohn Harrison #ifdef CONFIG_DRM_I915_SELFTEST
1082706785c1SJohn Harrison if (!found && ct_to_guc(ct)->fast_response_selftest) {
1083706785c1SJohn Harrison CT_DEBUG(ct, "Assuming unsolicited response due to FAST_REQUEST selftest\n");
1084706785c1SJohn Harrison ct_to_guc(ct)->fast_response_selftest++;
1085706785c1SJohn Harrison found = true;
1086706785c1SJohn Harrison }
1087706785c1SJohn Harrison #endif
10888d99e09cSMichal Wajdeczko
1089d9911020SMichal Wajdeczko if (!found) {
1090d9911020SMichal Wajdeczko CT_ERROR(ct, "Unsolicited response message: len %u, data %#x (fence %u, last %u)\n",
1091a5606b94SMichal Wajdeczko len, hxg[0], fence, ct->requests.last_fence);
1092dd9c0f3cSMatthew Brost if (!ct_check_lost_and_found(ct, fence)) {
1093dd9c0f3cSMatthew Brost list_for_each_entry(req, &ct->requests.pending, link)
1094dd9c0f3cSMatthew Brost CT_ERROR(ct, "request %u awaits response\n",
1095a5606b94SMichal Wajdeczko req->fence);
1096dd9c0f3cSMatthew Brost }
10978d99e09cSMichal Wajdeczko err = -ENOKEY;
1098dd9c0f3cSMatthew Brost }
10998d99e09cSMichal Wajdeczko spin_unlock_irqrestore(&ct->requests.lock, flags);
11008d99e09cSMichal Wajdeczko
11018d99e09cSMichal Wajdeczko if (unlikely(err))
11028d99e09cSMichal Wajdeczko return err;
11038d99e09cSMichal Wajdeczko
11041d407096SMichal Wajdeczko ct_free_msg(response);
11051d407096SMichal Wajdeczko return 0;
11061d407096SMichal Wajdeczko }
11078d99e09cSMichal Wajdeczko
ct_process_request(struct intel_guc_ct * ct,struct ct_incoming_msg * request)11086c77a2b0SMichal Wajdeczko static int ct_process_request(struct intel_guc_ct *ct, struct ct_incoming_msg *request)
1109b6b0166dSMichal Wajdeczko {
1110572f2a5cSMichal Wajdeczko struct intel_guc *guc = ct_to_guc(ct);
11118d99e09cSMichal Wajdeczko const u32 *hxg;
1112572f2a5cSMichal Wajdeczko const u32 *payload;
111347c3b5e9SMichal Wajdeczko u32 hxg_len, action, len;
1114b6b0166dSMichal Wajdeczko int ret;
1115572f2a5cSMichal Wajdeczko
1116572f2a5cSMichal Wajdeczko hxg = &request->msg[GUC_CTB_MSG_MIN_LEN];
1117572f2a5cSMichal Wajdeczko hxg_len = request->size - GUC_CTB_MSG_MIN_LEN;
1118572f2a5cSMichal Wajdeczko payload = &hxg[GUC_HXG_MSG_MIN_LEN];
1119572f2a5cSMichal Wajdeczko action = FIELD_GET(GUC_HXG_EVENT_MSG_0_ACTION, hxg[0]);
11208d99e09cSMichal Wajdeczko len = hxg_len - GUC_HXG_MSG_MIN_LEN;
112177b20896SMichal Wajdeczko
11220a015ff9SMichal Wajdeczko CT_DEBUG(ct, "request %x %*ph\n", action, 4 * len, payload);
11236c77a2b0SMichal Wajdeczko
1124b6b0166dSMichal Wajdeczko switch (action) {
112547c3b5e9SMichal Wajdeczko case INTEL_GUC_ACTION_DEFAULT:
1126b6b0166dSMichal Wajdeczko ret = intel_guc_to_host_process_recv_msg(guc, payload, len);
11273a4cdf19SMatthew Brost break;
11283a4cdf19SMatthew Brost case INTEL_GUC_ACTION_DEREGISTER_CONTEXT_DONE:
11293a4cdf19SMatthew Brost ret = intel_guc_deregister_done_process_msg(guc, payload,
11303a4cdf19SMatthew Brost len);
1131e0717063SMatthew Brost break;
1132e0717063SMatthew Brost case INTEL_GUC_ACTION_SCHED_CONTEXT_MODE_DONE:
1133e0717063SMatthew Brost ret = intel_guc_sched_done_process_msg(guc, payload, len);
11341e0fd2b5SMatthew Brost break;
11351e0fd2b5SMatthew Brost case INTEL_GUC_ACTION_CONTEXT_RESET_NOTIFICATION:
11361e0fd2b5SMatthew Brost ret = intel_guc_context_reset_process_msg(guc, payload, len);
113777b6f79dSJohn Harrison break;
113877b6f79dSJohn Harrison case INTEL_GUC_ACTION_STATE_CAPTURE_NOTIFICATION:
113977b6f79dSJohn Harrison ret = intel_guc_error_capture_process_msg(guc, payload, len);
114077b6f79dSJohn Harrison if (unlikely(ret))
114177b6f79dSJohn Harrison CT_ERROR(ct, "error capture notification failed %x %*ph\n",
114277b6f79dSJohn Harrison action, 4 * len, payload);
1143f7957e60SMatthew Brost break;
1144f7957e60SMatthew Brost case INTEL_GUC_ACTION_ENGINE_FAILURE_NOTIFICATION:
1145f7957e60SMatthew Brost ret = intel_guc_engine_failure_process_msg(guc, payload, len);
114677b6f79dSJohn Harrison break;
114777b6f79dSJohn Harrison case INTEL_GUC_ACTION_NOTIFY_FLUSH_LOG_BUFFER_TO_FILE:
114877b6f79dSJohn Harrison intel_guc_log_handle_flush_event(&guc->log);
114977b6f79dSJohn Harrison ret = 0;
115077b6f79dSJohn Harrison break;
115177b6f79dSJohn Harrison case INTEL_GUC_ACTION_NOTIFY_CRASH_DUMP_POSTED:
1152b2edc414SJohn Harrison case INTEL_GUC_ACTION_NOTIFY_EXCEPTION:
115377b6f79dSJohn Harrison ret = intel_guc_crash_process_msg(guc, action);
1154af58ee22SPrathap Kumar Valsan break;
1155af58ee22SPrathap Kumar Valsan case INTEL_GUC_ACTION_TLB_INVALIDATION_DONE:
1156af58ee22SPrathap Kumar Valsan ret = intel_guc_tlb_invalidation_done(guc, payload, len);
11576c77a2b0SMichal Wajdeczko break;
11588d99e09cSMichal Wajdeczko default:
11596c77a2b0SMichal Wajdeczko ret = -EOPNOTSUPP;
11606c77a2b0SMichal Wajdeczko break;
11618d99e09cSMichal Wajdeczko }
11628d99e09cSMichal Wajdeczko
11638d99e09cSMichal Wajdeczko if (unlikely(ret)) {
11648d99e09cSMichal Wajdeczko CT_ERROR(ct, "Failed to process request %04x (%pe)\n",
11658d99e09cSMichal Wajdeczko action, ERR_PTR(ret));
11668d99e09cSMichal Wajdeczko return ret;
11678d99e09cSMichal Wajdeczko }
11688d99e09cSMichal Wajdeczko
11698d99e09cSMichal Wajdeczko ct_free_msg(request);
11706c77a2b0SMichal Wajdeczko return 0;
11716c77a2b0SMichal Wajdeczko }
11726c77a2b0SMichal Wajdeczko
ct_process_incoming_requests(struct intel_guc_ct * ct)11736c77a2b0SMichal Wajdeczko static bool ct_process_incoming_requests(struct intel_guc_ct *ct)
11746c77a2b0SMichal Wajdeczko {
11758d99e09cSMichal Wajdeczko unsigned long flags;
11766c77a2b0SMichal Wajdeczko struct ct_incoming_msg *request;
11778d99e09cSMichal Wajdeczko bool done;
11786c77a2b0SMichal Wajdeczko int err;
11797524c365SDaniele Ceraolo Spurio
11807524c365SDaniele Ceraolo Spurio spin_lock_irqsave(&ct->requests.lock, flags);
11818d99e09cSMichal Wajdeczko request = list_first_entry_or_null(&ct->requests.incoming,
11826c77a2b0SMichal Wajdeczko struct ct_incoming_msg, link);
11836c77a2b0SMichal Wajdeczko if (request)
11847524c365SDaniele Ceraolo Spurio list_del(&request->link);
11857524c365SDaniele Ceraolo Spurio done = !!list_empty(&ct->requests.incoming);
11866c77a2b0SMichal Wajdeczko spin_unlock_irqrestore(&ct->requests.lock, flags);
11876c77a2b0SMichal Wajdeczko
11886c77a2b0SMichal Wajdeczko if (!request)
11896c77a2b0SMichal Wajdeczko return true;
11908d99e09cSMichal Wajdeczko
11918d99e09cSMichal Wajdeczko err = ct_process_request(ct, request);
11928d99e09cSMichal Wajdeczko if (unlikely(err)) {
11938d99e09cSMichal Wajdeczko CT_ERROR(ct, "Failed to process CT message (%pe) %*ph\n",
1194f6eeea8dSJohn Harrison ERR_PTR(err), 4 * request->size, request->msg);
11958d99e09cSMichal Wajdeczko CT_DEAD(ct, PROCESS_FAILED);
11968d99e09cSMichal Wajdeczko ct_free_msg(request);
11976c77a2b0SMichal Wajdeczko }
11986c77a2b0SMichal Wajdeczko
11996c77a2b0SMichal Wajdeczko return done;
12006c77a2b0SMichal Wajdeczko }
12016c77a2b0SMichal Wajdeczko
ct_incoming_request_worker_func(struct work_struct * w)12026c77a2b0SMichal Wajdeczko static void ct_incoming_request_worker_func(struct work_struct *w)
12037524c365SDaniele Ceraolo Spurio {
12047524c365SDaniele Ceraolo Spurio struct intel_guc_ct *ct =
12056c77a2b0SMichal Wajdeczko container_of(w, struct intel_guc_ct, requests.worker);
12066c77a2b0SMichal Wajdeczko bool done;
1207d67e3d5aSMatthew Brost
12086c77a2b0SMichal Wajdeczko do {
1209d67e3d5aSMatthew Brost done = ct_process_incoming_requests(ct);
12106c77a2b0SMichal Wajdeczko } while (!done);
12116c77a2b0SMichal Wajdeczko }
1212572f2a5cSMichal Wajdeczko
ct_handle_event(struct intel_guc_ct * ct,struct ct_incoming_msg * request)12131d407096SMichal Wajdeczko static int ct_handle_event(struct intel_guc_ct *ct, struct ct_incoming_msg *request)
1214572f2a5cSMichal Wajdeczko {
1215f4eb1f3fSMatthew Brost const u32 *hxg = &request->msg[GUC_CTB_MSG_MIN_LEN];
12166c77a2b0SMichal Wajdeczko u32 action = FIELD_GET(GUC_HXG_EVENT_MSG_0_ACTION, hxg[0]);
12171d407096SMichal Wajdeczko unsigned long flags;
1218572f2a5cSMichal Wajdeczko
12196c77a2b0SMichal Wajdeczko GEM_BUG_ON(FIELD_GET(GUC_HXG_MSG_0_TYPE, hxg[0]) != GUC_HXG_TYPE_EVENT);
1220f4eb1f3fSMatthew Brost
1221f4eb1f3fSMatthew Brost /*
1222f4eb1f3fSMatthew Brost * Adjusting the space must be done in IRQ or deadlock can occur as the
1223f4eb1f3fSMatthew Brost * CTB processing in the below workqueue can send CTBs which creates a
1224f4eb1f3fSMatthew Brost * circular dependency if the space was returned there.
1225f4eb1f3fSMatthew Brost */
1226f4eb1f3fSMatthew Brost switch (action) {
1227f4eb1f3fSMatthew Brost case INTEL_GUC_ACTION_SCHED_CONTEXT_MODE_DONE:
1228af58ee22SPrathap Kumar Valsan case INTEL_GUC_ACTION_DEREGISTER_CONTEXT_DONE:
1229f4eb1f3fSMatthew Brost case INTEL_GUC_ACTION_TLB_INVALIDATION_DONE:
1230f4eb1f3fSMatthew Brost g2h_release_space(ct, request->size);
1231f4eb1f3fSMatthew Brost }
1232af58ee22SPrathap Kumar Valsan
1233af58ee22SPrathap Kumar Valsan /*
1234af58ee22SPrathap Kumar Valsan * TLB invalidation responses must be handled immediately as processing
1235af58ee22SPrathap Kumar Valsan * of other G2H notifications may be blocked by an invalidation request.
1236af58ee22SPrathap Kumar Valsan */
1237af58ee22SPrathap Kumar Valsan if (action == INTEL_GUC_ACTION_TLB_INVALIDATION_DONE)
1238af58ee22SPrathap Kumar Valsan return ct_process_request(ct, request);
12397524c365SDaniele Ceraolo Spurio
12407524c365SDaniele Ceraolo Spurio spin_lock_irqsave(&ct->requests.lock, flags);
12417524c365SDaniele Ceraolo Spurio list_add_tail(&request->link, &ct->requests.incoming);
12426c77a2b0SMichal Wajdeczko spin_unlock_irqrestore(&ct->requests.lock, flags);
12437524c365SDaniele Ceraolo Spurio
12441d407096SMichal Wajdeczko queue_work(system_unbound_wq, &ct->requests.worker);
12451d407096SMichal Wajdeczko return 0;
12461d407096SMichal Wajdeczko }
1247572f2a5cSMichal Wajdeczko
ct_handle_hxg(struct intel_guc_ct * ct,struct ct_incoming_msg * msg)12488d99e09cSMichal Wajdeczko static int ct_handle_hxg(struct intel_guc_ct *ct, struct ct_incoming_msg *msg)
1249572f2a5cSMichal Wajdeczko {
1250572f2a5cSMichal Wajdeczko u32 origin, type;
12518d99e09cSMichal Wajdeczko u32 *hxg;
12528d99e09cSMichal Wajdeczko int err;
1253572f2a5cSMichal Wajdeczko
1254572f2a5cSMichal Wajdeczko if (unlikely(msg->size < GUC_CTB_HXG_MSG_MIN_LEN))
1255572f2a5cSMichal Wajdeczko return -EBADMSG;
1256572f2a5cSMichal Wajdeczko
1257572f2a5cSMichal Wajdeczko hxg = &msg->msg[GUC_CTB_MSG_MIN_LEN];
1258572f2a5cSMichal Wajdeczko
1259572f2a5cSMichal Wajdeczko origin = FIELD_GET(GUC_HXG_MSG_0_ORIGIN, hxg[0]);
1260572f2a5cSMichal Wajdeczko if (unlikely(origin != GUC_HXG_ORIGIN_GUC)) {
1261572f2a5cSMichal Wajdeczko err = -EPROTO;
1262572f2a5cSMichal Wajdeczko goto failed;
1263572f2a5cSMichal Wajdeczko }
1264572f2a5cSMichal Wajdeczko
1265572f2a5cSMichal Wajdeczko type = FIELD_GET(GUC_HXG_MSG_0_TYPE, hxg[0]);
1266572f2a5cSMichal Wajdeczko switch (type) {
1267572f2a5cSMichal Wajdeczko case GUC_HXG_TYPE_EVENT:
1268572f2a5cSMichal Wajdeczko err = ct_handle_event(ct, msg);
1269572f2a5cSMichal Wajdeczko break;
1270572f2a5cSMichal Wajdeczko case GUC_HXG_TYPE_RESPONSE_SUCCESS:
127177b6f79dSJohn Harrison case GUC_HXG_TYPE_RESPONSE_FAILURE:
12728d99e09cSMichal Wajdeczko case GUC_HXG_TYPE_NO_RESPONSE_RETRY:
1273572f2a5cSMichal Wajdeczko err = ct_handle_response(ct, msg);
1274572f2a5cSMichal Wajdeczko break;
1275572f2a5cSMichal Wajdeczko default:
1276572f2a5cSMichal Wajdeczko err = -EOPNOTSUPP;
1277572f2a5cSMichal Wajdeczko }
1278572f2a5cSMichal Wajdeczko
1279572f2a5cSMichal Wajdeczko if (unlikely(err)) {
1280572f2a5cSMichal Wajdeczko failed:
1281572f2a5cSMichal Wajdeczko CT_ERROR(ct, "Failed to handle HXG message (%pe) %*ph\n",
1282572f2a5cSMichal Wajdeczko ERR_PTR(err), 4 * GUC_HXG_MSG_MIN_LEN, hxg);
1283572f2a5cSMichal Wajdeczko }
1284572f2a5cSMichal Wajdeczko return err;
1285572f2a5cSMichal Wajdeczko }
1286572f2a5cSMichal Wajdeczko
ct_handle_msg(struct intel_guc_ct * ct,struct ct_incoming_msg * msg)1287572f2a5cSMichal Wajdeczko static void ct_handle_msg(struct intel_guc_ct *ct, struct ct_incoming_msg *msg)
1288572f2a5cSMichal Wajdeczko {
1289572f2a5cSMichal Wajdeczko u32 format = FIELD_GET(GUC_CTB_MSG_0_FORMAT, msg->msg[0]);
1290572f2a5cSMichal Wajdeczko int err;
1291572f2a5cSMichal Wajdeczko
1292572f2a5cSMichal Wajdeczko if (format == GUC_CTB_FORMAT_HXG)
12938d99e09cSMichal Wajdeczko err = ct_handle_hxg(ct, msg);
1294572f2a5cSMichal Wajdeczko else
12958d99e09cSMichal Wajdeczko err = -EOPNOTSUPP;
12968d99e09cSMichal Wajdeczko
12978d99e09cSMichal Wajdeczko if (unlikely(err)) {
12988d99e09cSMichal Wajdeczko CT_ERROR(ct, "Failed to process CT message (%pe) %*ph\n",
12998d99e09cSMichal Wajdeczko ERR_PTR(err), 4 * msg->size, msg->msg);
13008d99e09cSMichal Wajdeczko ct_free_msg(msg);
13018d99e09cSMichal Wajdeczko }
13028d99e09cSMichal Wajdeczko }
13038d99e09cSMichal Wajdeczko
13048d99e09cSMichal Wajdeczko /*
13058d99e09cSMichal Wajdeczko * Return: number available remaining dwords to read (0 if empty)
13068d99e09cSMichal Wajdeczko * or a negative error code on failure
130765dd4ed0SMichal Wajdeczko */
ct_receive(struct intel_guc_ct * ct)130865dd4ed0SMichal Wajdeczko static int ct_receive(struct intel_guc_ct *ct)
13098d99e09cSMichal Wajdeczko {
131065dd4ed0SMichal Wajdeczko struct ct_incoming_msg *msg = NULL;
131165dd4ed0SMichal Wajdeczko unsigned long flags;
131265dd4ed0SMichal Wajdeczko int ret;
131365dd4ed0SMichal Wajdeczko
13148d99e09cSMichal Wajdeczko spin_lock_irqsave(&ct->ctbs.recv.lock, flags);
131565dd4ed0SMichal Wajdeczko ret = ct_read(ct, &msg);
131665dd4ed0SMichal Wajdeczko spin_unlock_irqrestore(&ct->ctbs.recv.lock, flags);
131765dd4ed0SMichal Wajdeczko if (ret < 0)
131865dd4ed0SMichal Wajdeczko return ret;
13198d99e09cSMichal Wajdeczko
13208d99e09cSMichal Wajdeczko if (msg)
132165dd4ed0SMichal Wajdeczko ct_handle_msg(ct, msg);
132265dd4ed0SMichal Wajdeczko
132365dd4ed0SMichal Wajdeczko return ret;
132465dd4ed0SMichal Wajdeczko }
132565dd4ed0SMichal Wajdeczko
ct_try_receive_message(struct intel_guc_ct * ct)132665dd4ed0SMichal Wajdeczko static void ct_try_receive_message(struct intel_guc_ct *ct)
132765dd4ed0SMichal Wajdeczko {
132865dd4ed0SMichal Wajdeczko struct intel_guc *guc = ct_to_guc(ct);
132965dd4ed0SMichal Wajdeczko int ret;
133065dd4ed0SMichal Wajdeczko
133165dd4ed0SMichal Wajdeczko if (!ct->enabled) {
133265dd4ed0SMichal Wajdeczko GEM_WARN_ON(!guc_to_gt(guc)->uc.reset_in_progress);
133365dd4ed0SMichal Wajdeczko return;
133465dd4ed0SMichal Wajdeczko }
133565dd4ed0SMichal Wajdeczko
133665dd4ed0SMichal Wajdeczko /* When interrupt disabled, message handling is not expected */
133765dd4ed0SMichal Wajdeczko if (!guc->interrupts.enabled)
133865dd4ed0SMichal Wajdeczko return;
133965dd4ed0SMichal Wajdeczko
134065dd4ed0SMichal Wajdeczko ret = ct_receive(ct);
134165dd4ed0SMichal Wajdeczko if (ret > 0)
134265dd4ed0SMichal Wajdeczko tasklet_hi_schedule(&ct->receive_tasklet);
134365dd4ed0SMichal Wajdeczko }
13449ab28cd2SDaniele Ceraolo Spurio
ct_receive_tasklet_func(struct tasklet_struct * t)13459ab28cd2SDaniele Ceraolo Spurio static void ct_receive_tasklet_func(struct tasklet_struct *t)
13469ab28cd2SDaniele Ceraolo Spurio {
13479ab28cd2SDaniele Ceraolo Spurio struct intel_guc_ct *ct = from_tasklet(ct, t, receive_tasklet);
13488c69bd74SDaniele Ceraolo Spurio
13491d407096SMichal Wajdeczko ct_try_receive_message(ct);
13508c69bd74SDaniele Ceraolo Spurio }
13518c69bd74SDaniele Ceraolo Spurio
13521d407096SMichal Wajdeczko /*
13538c69bd74SDaniele Ceraolo Spurio * When we're communicating with the GuC over CT, GuC uses events
13541d407096SMichal Wajdeczko * to notify us about new messages being posted on the RECV buffer.
135565dd4ed0SMichal Wajdeczko */
intel_guc_ct_event_handler(struct intel_guc_ct * ct)13561d407096SMichal Wajdeczko void intel_guc_ct_event_handler(struct intel_guc_ct *ct)
135728ff6520SMatthew Brost {
135828ff6520SMatthew Brost if (unlikely(!ct->enabled)) {
135928ff6520SMatthew Brost WARN(1, "Unexpected GuC event received while CT disabled!\n");
136028ff6520SMatthew Brost return;
1361ff9fbe7cSLucas De Marchi }
136228ff6520SMatthew Brost
136328ff6520SMatthew Brost ct_try_receive_message(ct);
136428ff6520SMatthew Brost }
136528ff6520SMatthew Brost
intel_guc_ct_print_info(struct intel_guc_ct * ct,struct drm_printer * p)136628ff6520SMatthew Brost void intel_guc_ct_print_info(struct intel_guc_ct *ct,
136728ff6520SMatthew Brost struct drm_printer *p)
136828ff6520SMatthew Brost {
136928ff6520SMatthew Brost drm_printf(p, "CT %s\n", str_enabled_disabled(ct->enabled));
137028ff6520SMatthew Brost
137128ff6520SMatthew Brost if (!ct->enabled)
137228ff6520SMatthew Brost return;
137328ff6520SMatthew Brost
137428ff6520SMatthew Brost drm_printf(p, "H2G Space: %u\n",
137528ff6520SMatthew Brost atomic_read(&ct->ctbs.send.space) * 4);
137628ff6520SMatthew Brost drm_printf(p, "Head: %u\n",
137728ff6520SMatthew Brost ct->ctbs.send.desc->head);
137828ff6520SMatthew Brost drm_printf(p, "Tail: %u\n",
1379f6eeea8dSJohn Harrison ct->ctbs.send.desc->tail);
1380f6eeea8dSJohn Harrison drm_printf(p, "G2H Space: %u\n",
1381f6eeea8dSJohn Harrison atomic_read(&ct->ctbs.recv.space) * 4);
1382f6eeea8dSJohn Harrison drm_printf(p, "Head: %u\n",
1383f6eeea8dSJohn Harrison ct->ctbs.recv.desc->head);
1384f6eeea8dSJohn Harrison drm_printf(p, "Tail: %u\n",
1385f6eeea8dSJohn Harrison ct->ctbs.recv.desc->tail);
1386f6eeea8dSJohn Harrison }
1387f6eeea8dSJohn Harrison
1388f6eeea8dSJohn Harrison #if IS_ENABLED(CONFIG_DRM_I915_DEBUG)
ct_dead_ct_worker_func(struct work_struct * w)1389f6eeea8dSJohn Harrison static void ct_dead_ct_worker_func(struct work_struct *w)
1390f6eeea8dSJohn Harrison {
1391f6eeea8dSJohn Harrison struct intel_guc_ct *ct = container_of(w, struct intel_guc_ct, dead_ct_worker);
1392f6eeea8dSJohn Harrison struct intel_guc *guc = ct_to_guc(ct);
1393f6eeea8dSJohn Harrison
1394f6eeea8dSJohn Harrison if (ct->dead_ct_reported)
1395 return;
1396
1397 if (i915_error_injected())
1398 return;
1399
1400 ct->dead_ct_reported = true;
1401
1402 guc_info(guc, "CTB is dead - reason=0x%X\n", ct->dead_ct_reason);
1403 intel_klog_error_capture(guc_to_gt(guc), (intel_engine_mask_t)~0U);
1404 }
1405 #endif
1406