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Oscar Mateob20385f2014-07-24 17:04:10 +01001/*
2 * Copyright © 2014 Intel Corporation
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
21 * IN THE SOFTWARE.
22 *
23 * Authors:
24 * Ben Widawsky <ben@bwidawsk.net>
25 * Michel Thierry <michel.thierry@intel.com>
26 * Thomas Daniel <thomas.daniel@intel.com>
27 * Oscar Mateo <oscar.mateo@intel.com>
28 *
29 */
30
Oscar Mateo73e4d072014-07-24 17:04:48 +010031/**
32 * DOC: Logical Rings, Logical Ring Contexts and Execlists
33 *
34 * Motivation:
Oscar Mateob20385f2014-07-24 17:04:10 +010035 * GEN8 brings an expansion of the HW contexts: "Logical Ring Contexts".
36 * These expanded contexts enable a number of new abilities, especially
37 * "Execlists" (also implemented in this file).
38 *
Oscar Mateo73e4d072014-07-24 17:04:48 +010039 * One of the main differences with the legacy HW contexts is that logical
40 * ring contexts incorporate many more things to the context's state, like
41 * PDPs or ringbuffer control registers:
42 *
43 * The reason why PDPs are included in the context is straightforward: as
44 * PPGTTs (per-process GTTs) are actually per-context, having the PDPs
45 * contained there mean you don't need to do a ppgtt->switch_mm yourself,
46 * instead, the GPU will do it for you on the context switch.
47 *
48 * But, what about the ringbuffer control registers (head, tail, etc..)?
49 * shouldn't we just need a set of those per engine command streamer? This is
50 * where the name "Logical Rings" starts to make sense: by virtualizing the
51 * rings, the engine cs shifts to a new "ring buffer" with every context
52 * switch. When you want to submit a workload to the GPU you: A) choose your
53 * context, B) find its appropriate virtualized ring, C) write commands to it
54 * and then, finally, D) tell the GPU to switch to that context.
55 *
56 * Instead of the legacy MI_SET_CONTEXT, the way you tell the GPU to switch
57 * to a contexts is via a context execution list, ergo "Execlists".
58 *
59 * LRC implementation:
60 * Regarding the creation of contexts, we have:
61 *
62 * - One global default context.
63 * - One local default context for each opened fd.
64 * - One local extra context for each context create ioctl call.
65 *
66 * Now that ringbuffers belong per-context (and not per-engine, like before)
67 * and that contexts are uniquely tied to a given engine (and not reusable,
68 * like before) we need:
69 *
70 * - One ringbuffer per-engine inside each context.
71 * - One backing object per-engine inside each context.
72 *
73 * The global default context starts its life with these new objects fully
74 * allocated and populated. The local default context for each opened fd is
75 * more complex, because we don't know at creation time which engine is going
76 * to use them. To handle this, we have implemented a deferred creation of LR
77 * contexts:
78 *
79 * The local context starts its life as a hollow or blank holder, that only
80 * gets populated for a given engine once we receive an execbuffer. If later
81 * on we receive another execbuffer ioctl for the same context but a different
82 * engine, we allocate/populate a new ringbuffer and context backing object and
83 * so on.
84 *
85 * Finally, regarding local contexts created using the ioctl call: as they are
86 * only allowed with the render ring, we can allocate & populate them right
87 * away (no need to defer anything, at least for now).
88 *
89 * Execlists implementation:
Oscar Mateob20385f2014-07-24 17:04:10 +010090 * Execlists are the new method by which, on gen8+ hardware, workloads are
91 * submitted for execution (as opposed to the legacy, ringbuffer-based, method).
Oscar Mateo73e4d072014-07-24 17:04:48 +010092 * This method works as follows:
93 *
94 * When a request is committed, its commands (the BB start and any leading or
95 * trailing commands, like the seqno breadcrumbs) are placed in the ringbuffer
96 * for the appropriate context. The tail pointer in the hardware context is not
97 * updated at this time, but instead, kept by the driver in the ringbuffer
98 * structure. A structure representing this request is added to a request queue
99 * for the appropriate engine: this structure contains a copy of the context's
100 * tail after the request was written to the ring buffer and a pointer to the
101 * context itself.
102 *
103 * If the engine's request queue was empty before the request was added, the
104 * queue is processed immediately. Otherwise the queue will be processed during
105 * a context switch interrupt. In any case, elements on the queue will get sent
106 * (in pairs) to the GPU's ExecLists Submit Port (ELSP, for short) with a
107 * globally unique 20-bits submission ID.
108 *
109 * When execution of a request completes, the GPU updates the context status
110 * buffer with a context complete event and generates a context switch interrupt.
111 * During the interrupt handling, the driver examines the events in the buffer:
112 * for each context complete event, if the announced ID matches that on the head
113 * of the request queue, then that request is retired and removed from the queue.
114 *
115 * After processing, if any requests were retired and the queue is not empty
116 * then a new execution list can be submitted. The two requests at the front of
117 * the queue are next to be submitted but since a context may not occur twice in
118 * an execution list, if subsequent requests have the same ID as the first then
119 * the two requests must be combined. This is done simply by discarding requests
120 * at the head of the queue until either only one requests is left (in which case
121 * we use a NULL second context) or the first two requests have unique IDs.
122 *
123 * By always executing the first two requests in the queue the driver ensures
124 * that the GPU is kept as busy as possible. In the case where a single context
125 * completes but a second context is still executing, the request for this second
126 * context will be at the head of the queue when we remove the first one. This
127 * request will then be resubmitted along with a new request for a different context,
128 * which will cause the hardware to continue executing the second request and queue
129 * the new request (the GPU detects the condition of a context getting preempted
130 * with the same context and optimizes the context switch flow by not doing
131 * preemption, but just sampling the new tail pointer).
132 *
Oscar Mateob20385f2014-07-24 17:04:10 +0100133 */
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100134#include <linux/interrupt.h>
Oscar Mateob20385f2014-07-24 17:04:10 +0100135
136#include <drm/drmP.h>
137#include <drm/i915_drm.h>
138#include "i915_drv.h"
Peter Antoine3bbaba02015-07-10 20:13:11 +0300139#include "intel_mocs.h"
Oscar Mateo127f1002014-07-24 17:04:11 +0100140
Michael H. Nguyen468c6812014-11-13 17:51:49 +0000141#define GEN9_LR_CONTEXT_RENDER_SIZE (22 * PAGE_SIZE)
Oscar Mateo8c8579172014-07-24 17:04:14 +0100142#define GEN8_LR_CONTEXT_RENDER_SIZE (20 * PAGE_SIZE)
143#define GEN8_LR_CONTEXT_OTHER_SIZE (2 * PAGE_SIZE)
144
Thomas Daniele981e7b2014-07-24 17:04:39 +0100145#define RING_EXECLIST_QFULL (1 << 0x2)
146#define RING_EXECLIST1_VALID (1 << 0x3)
147#define RING_EXECLIST0_VALID (1 << 0x4)
148#define RING_EXECLIST_ACTIVE_STATUS (3 << 0xE)
149#define RING_EXECLIST1_ACTIVE (1 << 0x11)
150#define RING_EXECLIST0_ACTIVE (1 << 0x12)
151
152#define GEN8_CTX_STATUS_IDLE_ACTIVE (1 << 0)
153#define GEN8_CTX_STATUS_PREEMPTED (1 << 1)
154#define GEN8_CTX_STATUS_ELEMENT_SWITCH (1 << 2)
155#define GEN8_CTX_STATUS_ACTIVE_IDLE (1 << 3)
156#define GEN8_CTX_STATUS_COMPLETE (1 << 4)
157#define GEN8_CTX_STATUS_LITE_RESTORE (1 << 15)
Oscar Mateo8670d6f2014-07-24 17:04:17 +0100158
159#define CTX_LRI_HEADER_0 0x01
160#define CTX_CONTEXT_CONTROL 0x02
161#define CTX_RING_HEAD 0x04
162#define CTX_RING_TAIL 0x06
163#define CTX_RING_BUFFER_START 0x08
164#define CTX_RING_BUFFER_CONTROL 0x0a
165#define CTX_BB_HEAD_U 0x0c
166#define CTX_BB_HEAD_L 0x0e
167#define CTX_BB_STATE 0x10
168#define CTX_SECOND_BB_HEAD_U 0x12
169#define CTX_SECOND_BB_HEAD_L 0x14
170#define CTX_SECOND_BB_STATE 0x16
171#define CTX_BB_PER_CTX_PTR 0x18
172#define CTX_RCS_INDIRECT_CTX 0x1a
173#define CTX_RCS_INDIRECT_CTX_OFFSET 0x1c
174#define CTX_LRI_HEADER_1 0x21
175#define CTX_CTX_TIMESTAMP 0x22
176#define CTX_PDP3_UDW 0x24
177#define CTX_PDP3_LDW 0x26
178#define CTX_PDP2_UDW 0x28
179#define CTX_PDP2_LDW 0x2a
180#define CTX_PDP1_UDW 0x2c
181#define CTX_PDP1_LDW 0x2e
182#define CTX_PDP0_UDW 0x30
183#define CTX_PDP0_LDW 0x32
184#define CTX_LRI_HEADER_2 0x41
185#define CTX_R_PWR_CLK_STATE 0x42
186#define CTX_GPGPU_CSR_BASE_ADDRESS 0x44
187
Ben Widawsky84b790f2014-07-24 17:04:36 +0100188#define GEN8_CTX_VALID (1<<0)
189#define GEN8_CTX_FORCE_PD_RESTORE (1<<1)
190#define GEN8_CTX_FORCE_RESTORE (1<<2)
191#define GEN8_CTX_L3LLC_COHERENT (1<<5)
192#define GEN8_CTX_PRIVILEGE (1<<8)
Michel Thierrye5815a22015-04-08 12:13:32 +0100193
Ville Syrjälä0d925ea2015-11-04 23:20:11 +0200194#define ASSIGN_CTX_REG(reg_state, pos, reg, val) do { \
Ville Syrjäläf0f59a02015-11-18 15:33:26 +0200195 (reg_state)[(pos)+0] = i915_mmio_reg_offset(reg); \
Ville Syrjälä0d925ea2015-11-04 23:20:11 +0200196 (reg_state)[(pos)+1] = (val); \
197} while (0)
198
199#define ASSIGN_CTX_PDP(ppgtt, reg_state, n) do { \
Mika Kuoppalad852c7b2015-06-25 18:35:06 +0300200 const u64 _addr = i915_page_dir_dma_addr((ppgtt), (n)); \
Michel Thierrye5815a22015-04-08 12:13:32 +0100201 reg_state[CTX_PDP ## n ## _UDW+1] = upper_32_bits(_addr); \
202 reg_state[CTX_PDP ## n ## _LDW+1] = lower_32_bits(_addr); \
Ville Syrjälä9244a812015-11-04 23:20:09 +0200203} while (0)
Michel Thierrye5815a22015-04-08 12:13:32 +0100204
Ville Syrjälä9244a812015-11-04 23:20:09 +0200205#define ASSIGN_CTX_PML4(ppgtt, reg_state) do { \
Michel Thierry2dba3232015-07-30 11:06:23 +0100206 reg_state[CTX_PDP0_UDW + 1] = upper_32_bits(px_dma(&ppgtt->pml4)); \
207 reg_state[CTX_PDP0_LDW + 1] = lower_32_bits(px_dma(&ppgtt->pml4)); \
Ville Syrjälä9244a812015-11-04 23:20:09 +0200208} while (0)
Michel Thierry2dba3232015-07-30 11:06:23 +0100209
Ben Widawsky84b790f2014-07-24 17:04:36 +0100210enum {
211 ADVANCED_CONTEXT = 0,
Michel Thierry2dba3232015-07-30 11:06:23 +0100212 LEGACY_32B_CONTEXT,
Ben Widawsky84b790f2014-07-24 17:04:36 +0100213 ADVANCED_AD_CONTEXT,
214 LEGACY_64B_CONTEXT
215};
Michel Thierry2dba3232015-07-30 11:06:23 +0100216#define GEN8_CTX_ADDRESSING_MODE_SHIFT 3
217#define GEN8_CTX_ADDRESSING_MODE(dev) (USES_FULL_48BIT_PPGTT(dev) ?\
218 LEGACY_64B_CONTEXT :\
219 LEGACY_32B_CONTEXT)
Ben Widawsky84b790f2014-07-24 17:04:36 +0100220enum {
221 FAULT_AND_HANG = 0,
222 FAULT_AND_HALT, /* Debug only */
223 FAULT_AND_STREAM,
224 FAULT_AND_CONTINUE /* Unsupported */
225};
226#define GEN8_CTX_ID_SHIFT 32
Chris Wilson7069b142016-04-28 09:56:52 +0100227#define GEN8_CTX_ID_WIDTH 21
Michel Thierry71562912016-02-23 10:31:49 +0000228#define GEN8_CTX_RCS_INDIRECT_CTX_OFFSET_DEFAULT 0x17
229#define GEN9_CTX_RCS_INDIRECT_CTX_OFFSET_DEFAULT 0x26
Ben Widawsky84b790f2014-07-24 17:04:36 +0100230
Chris Wilson0e93cdd2016-04-29 09:07:06 +0100231/* Typical size of the average request (2 pipecontrols and a MI_BB) */
232#define EXECLISTS_REQUEST_SIZE 64 /* bytes */
233
Chris Wilson978f1e02016-04-28 09:56:54 +0100234static int execlists_context_deferred_alloc(struct intel_context *ctx,
235 struct intel_engine_cs *engine);
Tvrtko Ursuline52928232016-01-28 10:29:54 +0000236static int intel_lr_context_pin(struct intel_context *ctx,
237 struct intel_engine_cs *engine);
Thomas Daniel7ba717c2014-11-13 10:28:56 +0000238
Oscar Mateo73e4d072014-07-24 17:04:48 +0100239/**
240 * intel_sanitize_enable_execlists() - sanitize i915.enable_execlists
241 * @dev: DRM device.
242 * @enable_execlists: value of i915.enable_execlists module parameter.
243 *
244 * Only certain platforms support Execlists (the prerequisites being
Thomas Daniel27401d12014-12-11 12:48:35 +0000245 * support for Logical Ring Contexts and Aliasing PPGTT or better).
Oscar Mateo73e4d072014-07-24 17:04:48 +0100246 *
247 * Return: 1 if Execlists is supported and has to be enabled.
248 */
Chris Wilsonc0336662016-05-06 15:40:21 +0100249int intel_sanitize_enable_execlists(struct drm_i915_private *dev_priv, int enable_execlists)
Oscar Mateo127f1002014-07-24 17:04:11 +0100250{
Zhiyuan Lva0bd6c32015-08-28 15:41:16 +0800251 /* On platforms with execlist available, vGPU will only
252 * support execlist mode, no ring buffer mode.
253 */
Chris Wilsonc0336662016-05-06 15:40:21 +0100254 if (HAS_LOGICAL_RING_CONTEXTS(dev_priv) && intel_vgpu_active(dev_priv))
Zhiyuan Lva0bd6c32015-08-28 15:41:16 +0800255 return 1;
256
Chris Wilsonc0336662016-05-06 15:40:21 +0100257 if (INTEL_GEN(dev_priv) >= 9)
Damien Lespiau70ee45e2014-11-14 15:05:59 +0000258 return 1;
259
Oscar Mateo127f1002014-07-24 17:04:11 +0100260 if (enable_execlists == 0)
261 return 0;
262
Maarten Lankhorstb8d2afa2016-05-17 15:07:56 +0200263 if (HAS_LOGICAL_RING_CONTEXTS(dev_priv) && USES_PPGTT(dev_priv))
Oscar Mateo127f1002014-07-24 17:04:11 +0100264 return 1;
265
266 return 0;
267}
Oscar Mateoede7d422014-07-24 17:04:12 +0100268
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000269static void
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000270logical_ring_init_platform_invariants(struct intel_engine_cs *engine)
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000271{
Chris Wilsonc0336662016-05-06 15:40:21 +0100272 struct drm_i915_private *dev_priv = engine->i915;
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000273
Chris Wilsonc0336662016-05-06 15:40:21 +0100274 if (IS_GEN8(dev_priv) || IS_GEN9(dev_priv))
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000275 engine->idle_lite_restore_wa = ~0;
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000276
Chris Wilsonc0336662016-05-06 15:40:21 +0100277 engine->disable_lite_restore_wa = (IS_SKL_REVID(dev_priv, 0, SKL_REVID_B0) ||
278 IS_BXT_REVID(dev_priv, 0, BXT_REVID_A1)) &&
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000279 (engine->id == VCS || engine->id == VCS2);
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000280
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000281 engine->ctx_desc_template = GEN8_CTX_VALID;
Chris Wilsonc0336662016-05-06 15:40:21 +0100282 engine->ctx_desc_template |= GEN8_CTX_ADDRESSING_MODE(dev_priv) <<
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000283 GEN8_CTX_ADDRESSING_MODE_SHIFT;
Chris Wilsonc0336662016-05-06 15:40:21 +0100284 if (IS_GEN8(dev_priv))
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000285 engine->ctx_desc_template |= GEN8_CTX_L3LLC_COHERENT;
286 engine->ctx_desc_template |= GEN8_CTX_PRIVILEGE;
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000287
288 /* TODO: WaDisableLiteRestore when we start using semaphore
289 * signalling between Command Streamers */
290 /* ring->ctx_desc_template |= GEN8_CTX_FORCE_RESTORE; */
291
292 /* WaEnableForceRestoreInCtxtDescForVCS:skl */
293 /* WaEnableForceRestoreInCtxtDescForVCS:bxt */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000294 if (engine->disable_lite_restore_wa)
295 engine->ctx_desc_template |= GEN8_CTX_FORCE_RESTORE;
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000296}
297
298/**
299 * intel_lr_context_descriptor_update() - calculate & cache the descriptor
300 * descriptor for a pinned context
301 *
302 * @ctx: Context to work on
303 * @ring: Engine the descriptor will be used with
304 *
305 * The context descriptor encodes various attributes of a context,
306 * including its GTT address and some flags. Because it's fairly
307 * expensive to calculate, we'll just do it once and cache the result,
308 * which remains valid until the context is unpinned.
309 *
310 * This is what a descriptor looks like, from LSB to MSB:
Chris Wilsonef87bba2016-04-28 09:56:50 +0100311 * bits 0-11: flags, GEN8_CTX_* (cached in ctx_desc_template)
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000312 * bits 12-31: LRCA, GTT address of (the HWSP of) this context
Chris Wilson7069b142016-04-28 09:56:52 +0100313 * bits 32-52: ctx ID, a globally unique tag
Chris Wilsonef87bba2016-04-28 09:56:50 +0100314 * bits 53-54: mbz, reserved for use by hardware
315 * bits 55-63: group ID, currently unused and set to 0
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000316 */
317static void
318intel_lr_context_descriptor_update(struct intel_context *ctx,
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000319 struct intel_engine_cs *engine)
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000320{
Chris Wilson7069b142016-04-28 09:56:52 +0100321 u64 desc;
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000322
Chris Wilson7069b142016-04-28 09:56:52 +0100323 BUILD_BUG_ON(MAX_CONTEXT_HW_ID > (1<<GEN8_CTX_ID_WIDTH));
324
325 desc = engine->ctx_desc_template; /* bits 0-11 */
326 desc |= ctx->engine[engine->id].lrc_vma->node.start + /* bits 12-31 */
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000327 LRC_PPHWSP_PN * PAGE_SIZE;
Chris Wilson7069b142016-04-28 09:56:52 +0100328 desc |= (u64)ctx->hw_id << GEN8_CTX_ID_SHIFT; /* bits 32-52 */
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000329
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000330 ctx->engine[engine->id].lrc_desc = desc;
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000331}
332
333uint64_t intel_lr_context_descriptor(struct intel_context *ctx,
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000334 struct intel_engine_cs *engine)
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000335{
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000336 return ctx->engine[engine->id].lrc_desc;
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000337}
338
Mika Kuoppalacc3c4252015-07-03 17:09:36 +0300339static void execlists_elsp_write(struct drm_i915_gem_request *rq0,
340 struct drm_i915_gem_request *rq1)
Ben Widawsky84b790f2014-07-24 17:04:36 +0100341{
Mika Kuoppalacc3c4252015-07-03 17:09:36 +0300342
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000343 struct intel_engine_cs *engine = rq0->engine;
Chris Wilsonc0336662016-05-06 15:40:21 +0100344 struct drm_i915_private *dev_priv = rq0->i915;
Mika Kuoppala1cff8cc2015-07-06 11:09:25 +0300345 uint64_t desc[2];
Ben Widawsky84b790f2014-07-24 17:04:36 +0100346
Mika Kuoppala1cff8cc2015-07-06 11:09:25 +0300347 if (rq1) {
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000348 desc[1] = intel_lr_context_descriptor(rq1->ctx, rq1->engine);
Mika Kuoppala1cff8cc2015-07-06 11:09:25 +0300349 rq1->elsp_submitted++;
350 } else {
351 desc[1] = 0;
352 }
Ben Widawsky84b790f2014-07-24 17:04:36 +0100353
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000354 desc[0] = intel_lr_context_descriptor(rq0->ctx, rq0->engine);
Mika Kuoppala1cff8cc2015-07-06 11:09:25 +0300355 rq0->elsp_submitted++;
Ben Widawsky84b790f2014-07-24 17:04:36 +0100356
Mika Kuoppala1cff8cc2015-07-06 11:09:25 +0300357 /* You must always write both descriptors in the order below. */
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000358 I915_WRITE_FW(RING_ELSP(engine), upper_32_bits(desc[1]));
359 I915_WRITE_FW(RING_ELSP(engine), lower_32_bits(desc[1]));
Chris Wilson6daccb02015-01-16 11:34:35 +0200360
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000361 I915_WRITE_FW(RING_ELSP(engine), upper_32_bits(desc[0]));
Ben Widawsky84b790f2014-07-24 17:04:36 +0100362 /* The context is automatically loaded after the following */
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000363 I915_WRITE_FW(RING_ELSP(engine), lower_32_bits(desc[0]));
Ben Widawsky84b790f2014-07-24 17:04:36 +0100364
Mika Kuoppala1cff8cc2015-07-06 11:09:25 +0300365 /* ELSP is a wo register, use another nearby reg for posting */
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000366 POSTING_READ_FW(RING_EXECLIST_STATUS_LO(engine));
Ben Widawsky84b790f2014-07-24 17:04:36 +0100367}
368
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000369static void
370execlists_update_context_pdps(struct i915_hw_ppgtt *ppgtt, u32 *reg_state)
371{
372 ASSIGN_CTX_PDP(ppgtt, reg_state, 3);
373 ASSIGN_CTX_PDP(ppgtt, reg_state, 2);
374 ASSIGN_CTX_PDP(ppgtt, reg_state, 1);
375 ASSIGN_CTX_PDP(ppgtt, reg_state, 0);
376}
377
378static void execlists_update_context(struct drm_i915_gem_request *rq)
Oscar Mateoae1250b2014-07-24 17:04:37 +0100379{
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000380 struct intel_engine_cs *engine = rq->engine;
Mika Kuoppala05d98242015-07-03 17:09:33 +0300381 struct i915_hw_ppgtt *ppgtt = rq->ctx->ppgtt;
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000382 uint32_t *reg_state = rq->ctx->engine[engine->id].lrc_reg_state;
Oscar Mateoae1250b2014-07-24 17:04:37 +0100383
Mika Kuoppala05d98242015-07-03 17:09:33 +0300384 reg_state[CTX_RING_TAIL+1] = rq->tail;
Oscar Mateoae1250b2014-07-24 17:04:37 +0100385
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000386 /* True 32b PPGTT with dynamic page allocation: update PDP
387 * registers and point the unallocated PDPs to scratch page.
388 * PML4 is allocated during ppgtt init, so this is not needed
389 * in 48-bit mode.
390 */
391 if (ppgtt && !USES_FULL_48BIT_PPGTT(ppgtt->base.dev))
392 execlists_update_context_pdps(ppgtt, reg_state);
Oscar Mateoae1250b2014-07-24 17:04:37 +0100393}
394
Mika Kuoppalad8cb8872015-07-03 17:09:32 +0300395static void execlists_submit_requests(struct drm_i915_gem_request *rq0,
396 struct drm_i915_gem_request *rq1)
Ben Widawsky84b790f2014-07-24 17:04:36 +0100397{
Tvrtko Ursulin26720ab2016-03-17 12:59:46 +0000398 struct drm_i915_private *dev_priv = rq0->i915;
Tvrtko Ursulin37566852016-04-12 14:37:31 +0100399 unsigned int fw_domains = rq0->engine->fw_domains;
Tvrtko Ursulin26720ab2016-03-17 12:59:46 +0000400
Mika Kuoppala05d98242015-07-03 17:09:33 +0300401 execlists_update_context(rq0);
Oscar Mateoae1250b2014-07-24 17:04:37 +0100402
Mika Kuoppalacc3c4252015-07-03 17:09:36 +0300403 if (rq1)
Mika Kuoppala05d98242015-07-03 17:09:33 +0300404 execlists_update_context(rq1);
Ben Widawsky84b790f2014-07-24 17:04:36 +0100405
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100406 spin_lock_irq(&dev_priv->uncore.lock);
Tvrtko Ursulin37566852016-04-12 14:37:31 +0100407 intel_uncore_forcewake_get__locked(dev_priv, fw_domains);
Tvrtko Ursulin26720ab2016-03-17 12:59:46 +0000408
Mika Kuoppalacc3c4252015-07-03 17:09:36 +0300409 execlists_elsp_write(rq0, rq1);
Tvrtko Ursulin26720ab2016-03-17 12:59:46 +0000410
Tvrtko Ursulin37566852016-04-12 14:37:31 +0100411 intel_uncore_forcewake_put__locked(dev_priv, fw_domains);
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100412 spin_unlock_irq(&dev_priv->uncore.lock);
Ben Widawsky84b790f2014-07-24 17:04:36 +0100413}
414
Tvrtko Ursulin26720ab2016-03-17 12:59:46 +0000415static void execlists_context_unqueue(struct intel_engine_cs *engine)
Michel Thierryacdd8842014-07-24 17:04:38 +0100416{
Nick Hoath6d3d8272015-01-15 13:10:39 +0000417 struct drm_i915_gem_request *req0 = NULL, *req1 = NULL;
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000418 struct drm_i915_gem_request *cursor, *tmp;
Thomas Daniele981e7b2014-07-24 17:04:39 +0100419
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000420 assert_spin_locked(&engine->execlist_lock);
Michel Thierryacdd8842014-07-24 17:04:38 +0100421
Peter Antoine779949f2015-05-11 16:03:27 +0100422 /*
423 * If irqs are not active generate a warning as batches that finish
424 * without the irqs may get lost and a GPU Hang may occur.
425 */
Chris Wilsonc0336662016-05-06 15:40:21 +0100426 WARN_ON(!intel_irqs_enabled(engine->i915));
Peter Antoine779949f2015-05-11 16:03:27 +0100427
Michel Thierryacdd8842014-07-24 17:04:38 +0100428 /* Try to read in pairs */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000429 list_for_each_entry_safe(cursor, tmp, &engine->execlist_queue,
Michel Thierryacdd8842014-07-24 17:04:38 +0100430 execlist_link) {
431 if (!req0) {
432 req0 = cursor;
Nick Hoath6d3d8272015-01-15 13:10:39 +0000433 } else if (req0->ctx == cursor->ctx) {
Michel Thierryacdd8842014-07-24 17:04:38 +0100434 /* Same ctx: ignore first request, as second request
435 * will update tail past first request's workload */
Oscar Mateoe1fee722014-07-24 17:04:40 +0100436 cursor->elsp_submitted = req0->elsp_submitted;
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100437 list_del(&req0->execlist_link);
438 i915_gem_request_unreference(req0);
Michel Thierryacdd8842014-07-24 17:04:38 +0100439 req0 = cursor;
440 } else {
441 req1 = cursor;
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000442 WARN_ON(req1->elsp_submitted);
Michel Thierryacdd8842014-07-24 17:04:38 +0100443 break;
444 }
445 }
446
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000447 if (unlikely(!req0))
448 return;
449
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000450 if (req0->elsp_submitted & engine->idle_lite_restore_wa) {
Michel Thierry53292cd2015-04-15 18:11:33 +0100451 /*
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000452 * WaIdleLiteRestore: make sure we never cause a lite restore
453 * with HEAD==TAIL.
454 *
455 * Apply the wa NOOPS to prevent ring:HEAD == req:TAIL as we
456 * resubmit the request. See gen8_emit_request() for where we
457 * prepare the padding after the end of the request.
Michel Thierry53292cd2015-04-15 18:11:33 +0100458 */
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000459 struct intel_ringbuffer *ringbuf;
Michel Thierry53292cd2015-04-15 18:11:33 +0100460
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000461 ringbuf = req0->ctx->engine[engine->id].ringbuf;
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000462 req0->tail += 8;
463 req0->tail &= ringbuf->size - 1;
Michel Thierry53292cd2015-04-15 18:11:33 +0100464 }
465
Mika Kuoppalad8cb8872015-07-03 17:09:32 +0300466 execlists_submit_requests(req0, req1);
Michel Thierryacdd8842014-07-24 17:04:38 +0100467}
468
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000469static unsigned int
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100470execlists_check_remove_request(struct intel_engine_cs *engine, u32 ctx_id)
Thomas Daniele981e7b2014-07-24 17:04:39 +0100471{
Nick Hoath6d3d8272015-01-15 13:10:39 +0000472 struct drm_i915_gem_request *head_req;
Thomas Daniele981e7b2014-07-24 17:04:39 +0100473
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000474 assert_spin_locked(&engine->execlist_lock);
Thomas Daniele981e7b2014-07-24 17:04:39 +0100475
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000476 head_req = list_first_entry_or_null(&engine->execlist_queue,
Nick Hoath6d3d8272015-01-15 13:10:39 +0000477 struct drm_i915_gem_request,
Thomas Daniele981e7b2014-07-24 17:04:39 +0100478 execlist_link);
479
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100480 if (WARN_ON(!head_req || (head_req->ctx_hw_id != ctx_id)))
481 return 0;
Thomas Daniele981e7b2014-07-24 17:04:39 +0100482
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000483 WARN(head_req->elsp_submitted == 0, "Never submitted head request\n");
484
485 if (--head_req->elsp_submitted > 0)
486 return 0;
487
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100488 list_del(&head_req->execlist_link);
489 i915_gem_request_unreference(head_req);
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000490
491 return 1;
Thomas Daniele981e7b2014-07-24 17:04:39 +0100492}
493
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000494static u32
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000495get_context_status(struct intel_engine_cs *engine, unsigned int read_pointer,
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000496 u32 *context_id)
Ben Widawsky91a41032016-01-05 10:30:07 -0800497{
Chris Wilsonc0336662016-05-06 15:40:21 +0100498 struct drm_i915_private *dev_priv = engine->i915;
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000499 u32 status;
Ben Widawsky91a41032016-01-05 10:30:07 -0800500
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000501 read_pointer %= GEN8_CSB_ENTRIES;
Ben Widawsky91a41032016-01-05 10:30:07 -0800502
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000503 status = I915_READ_FW(RING_CONTEXT_STATUS_BUF_LO(engine, read_pointer));
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000504
505 if (status & GEN8_CTX_STATUS_IDLE_ACTIVE)
506 return 0;
507
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000508 *context_id = I915_READ_FW(RING_CONTEXT_STATUS_BUF_HI(engine,
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000509 read_pointer));
510
511 return status;
Ben Widawsky91a41032016-01-05 10:30:07 -0800512}
513
Oscar Mateo73e4d072014-07-24 17:04:48 +0100514/**
Daniel Vetter3f7531c2014-12-10 17:41:43 +0100515 * intel_lrc_irq_handler() - handle Context Switch interrupts
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100516 * @engine: Engine Command Streamer to handle.
Oscar Mateo73e4d072014-07-24 17:04:48 +0100517 *
518 * Check the unread Context Status Buffers and manage the submission of new
519 * contexts to the ELSP accordingly.
520 */
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100521static void intel_lrc_irq_handler(unsigned long data)
Thomas Daniele981e7b2014-07-24 17:04:39 +0100522{
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100523 struct intel_engine_cs *engine = (struct intel_engine_cs *)data;
Chris Wilsonc0336662016-05-06 15:40:21 +0100524 struct drm_i915_private *dev_priv = engine->i915;
Thomas Daniele981e7b2014-07-24 17:04:39 +0100525 u32 status_pointer;
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000526 unsigned int read_pointer, write_pointer;
Tvrtko Ursulin26720ab2016-03-17 12:59:46 +0000527 u32 csb[GEN8_CSB_ENTRIES][2];
528 unsigned int csb_read = 0, i;
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000529 unsigned int submit_contexts = 0;
Thomas Daniele981e7b2014-07-24 17:04:39 +0100530
Tvrtko Ursulin37566852016-04-12 14:37:31 +0100531 intel_uncore_forcewake_get(dev_priv, engine->fw_domains);
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000532
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000533 status_pointer = I915_READ_FW(RING_CONTEXT_STATUS_PTR(engine));
Thomas Daniele981e7b2014-07-24 17:04:39 +0100534
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000535 read_pointer = engine->next_context_status_buffer;
Ben Widawsky5590a5f2016-01-05 10:30:05 -0800536 write_pointer = GEN8_CSB_WRITE_PTR(status_pointer);
Thomas Daniele981e7b2014-07-24 17:04:39 +0100537 if (read_pointer > write_pointer)
Michel Thierrydfc53c52015-09-28 13:25:12 +0100538 write_pointer += GEN8_CSB_ENTRIES;
Thomas Daniele981e7b2014-07-24 17:04:39 +0100539
Thomas Daniele981e7b2014-07-24 17:04:39 +0100540 while (read_pointer < write_pointer) {
Tvrtko Ursulin26720ab2016-03-17 12:59:46 +0000541 if (WARN_ON_ONCE(csb_read == GEN8_CSB_ENTRIES))
542 break;
543 csb[csb_read][0] = get_context_status(engine, ++read_pointer,
544 &csb[csb_read][1]);
545 csb_read++;
Michel Thierry5af05fe2015-09-04 12:59:15 +0100546 }
Thomas Daniele981e7b2014-07-24 17:04:39 +0100547
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000548 engine->next_context_status_buffer = write_pointer % GEN8_CSB_ENTRIES;
Thomas Daniele981e7b2014-07-24 17:04:39 +0100549
Ben Widawsky5590a5f2016-01-05 10:30:05 -0800550 /* Update the read pointer to the old write pointer. Manual ringbuffer
551 * management ftw </sarcasm> */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000552 I915_WRITE_FW(RING_CONTEXT_STATUS_PTR(engine),
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000553 _MASKED_FIELD(GEN8_CSB_READ_PTR_MASK,
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000554 engine->next_context_status_buffer << 8));
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000555
Tvrtko Ursulin37566852016-04-12 14:37:31 +0100556 intel_uncore_forcewake_put(dev_priv, engine->fw_domains);
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000557
Tvrtko Ursulin26720ab2016-03-17 12:59:46 +0000558 spin_lock(&engine->execlist_lock);
559
560 for (i = 0; i < csb_read; i++) {
561 if (unlikely(csb[i][0] & GEN8_CTX_STATUS_PREEMPTED)) {
562 if (csb[i][0] & GEN8_CTX_STATUS_LITE_RESTORE) {
563 if (execlists_check_remove_request(engine, csb[i][1]))
564 WARN(1, "Lite Restored request removed from queue\n");
565 } else
566 WARN(1, "Preemption without Lite Restore\n");
567 }
568
569 if (csb[i][0] & (GEN8_CTX_STATUS_ACTIVE_IDLE |
570 GEN8_CTX_STATUS_ELEMENT_SWITCH))
571 submit_contexts +=
572 execlists_check_remove_request(engine, csb[i][1]);
573 }
574
575 if (submit_contexts) {
576 if (!engine->disable_lite_restore_wa ||
577 (csb[i][0] & GEN8_CTX_STATUS_ACTIVE_IDLE))
578 execlists_context_unqueue(engine);
579 }
580
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000581 spin_unlock(&engine->execlist_lock);
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000582
583 if (unlikely(submit_contexts > 2))
584 DRM_ERROR("More than two context complete events?\n");
Thomas Daniele981e7b2014-07-24 17:04:39 +0100585}
586
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +0000587static void execlists_context_queue(struct drm_i915_gem_request *request)
Michel Thierryacdd8842014-07-24 17:04:38 +0100588{
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000589 struct intel_engine_cs *engine = request->engine;
Nick Hoath6d3d8272015-01-15 13:10:39 +0000590 struct drm_i915_gem_request *cursor;
Oscar Mateof1ad5a12014-07-24 17:04:41 +0100591 int num_elements = 0;
Michel Thierryacdd8842014-07-24 17:04:38 +0100592
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100593 spin_lock_bh(&engine->execlist_lock);
Michel Thierryacdd8842014-07-24 17:04:38 +0100594
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000595 list_for_each_entry(cursor, &engine->execlist_queue, execlist_link)
Oscar Mateof1ad5a12014-07-24 17:04:41 +0100596 if (++num_elements > 2)
597 break;
598
599 if (num_elements > 2) {
Nick Hoath6d3d8272015-01-15 13:10:39 +0000600 struct drm_i915_gem_request *tail_req;
Oscar Mateof1ad5a12014-07-24 17:04:41 +0100601
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000602 tail_req = list_last_entry(&engine->execlist_queue,
Nick Hoath6d3d8272015-01-15 13:10:39 +0000603 struct drm_i915_gem_request,
Oscar Mateof1ad5a12014-07-24 17:04:41 +0100604 execlist_link);
605
John Harrisonae707972015-05-29 17:44:14 +0100606 if (request->ctx == tail_req->ctx) {
Oscar Mateof1ad5a12014-07-24 17:04:41 +0100607 WARN(tail_req->elsp_submitted != 0,
Thomas Daniel7ba717c2014-11-13 10:28:56 +0000608 "More than 2 already-submitted reqs queued\n");
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100609 list_del(&tail_req->execlist_link);
610 i915_gem_request_unreference(tail_req);
Oscar Mateof1ad5a12014-07-24 17:04:41 +0100611 }
612 }
613
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100614 i915_gem_request_reference(request);
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000615 list_add_tail(&request->execlist_link, &engine->execlist_queue);
Tvrtko Ursulina3d12762016-04-28 09:56:57 +0100616 request->ctx_hw_id = request->ctx->hw_id;
Oscar Mateof1ad5a12014-07-24 17:04:41 +0100617 if (num_elements == 0)
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000618 execlists_context_unqueue(engine);
Michel Thierryacdd8842014-07-24 17:04:38 +0100619
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100620 spin_unlock_bh(&engine->execlist_lock);
Michel Thierryacdd8842014-07-24 17:04:38 +0100621}
622
John Harrison2f200552015-05-29 17:43:53 +0100623static int logical_ring_invalidate_all_caches(struct drm_i915_gem_request *req)
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100624{
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000625 struct intel_engine_cs *engine = req->engine;
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100626 uint32_t flush_domains;
627 int ret;
628
629 flush_domains = 0;
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000630 if (engine->gpu_caches_dirty)
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100631 flush_domains = I915_GEM_GPU_DOMAINS;
632
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000633 ret = engine->emit_flush(req, I915_GEM_GPU_DOMAINS, flush_domains);
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100634 if (ret)
635 return ret;
636
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000637 engine->gpu_caches_dirty = false;
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100638 return 0;
639}
640
John Harrison535fbe82015-05-29 17:43:32 +0100641static int execlists_move_to_gpu(struct drm_i915_gem_request *req,
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100642 struct list_head *vmas)
643{
Tvrtko Ursulin666796d2016-03-16 11:00:39 +0000644 const unsigned other_rings = ~intel_engine_flag(req->engine);
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100645 struct i915_vma *vma;
646 uint32_t flush_domains = 0;
647 bool flush_chipset = false;
648 int ret;
649
650 list_for_each_entry(vma, vmas, exec_list) {
651 struct drm_i915_gem_object *obj = vma->obj;
652
Chris Wilson03ade512015-04-27 13:41:18 +0100653 if (obj->active & other_rings) {
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000654 ret = i915_gem_object_sync(obj, req->engine, &req);
Chris Wilson03ade512015-04-27 13:41:18 +0100655 if (ret)
656 return ret;
657 }
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100658
659 if (obj->base.write_domain & I915_GEM_DOMAIN_CPU)
660 flush_chipset |= i915_gem_clflush_object(obj, false);
661
662 flush_domains |= obj->base.write_domain;
663 }
664
665 if (flush_domains & I915_GEM_DOMAIN_GTT)
666 wmb();
667
668 /* Unconditionally invalidate gpu caches and ensure that we do flush
669 * any residual writes from the previous batch.
670 */
John Harrison2f200552015-05-29 17:43:53 +0100671 return logical_ring_invalidate_all_caches(req);
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100672}
673
John Harrison40e895c2015-05-29 17:43:26 +0100674int intel_logical_ring_alloc_request_extras(struct drm_i915_gem_request *request)
John Harrisonbc0dce32015-03-19 12:30:07 +0000675{
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100676 struct intel_engine_cs *engine = request->engine;
Chris Wilsonbfa01202016-04-28 09:56:48 +0100677 int ret;
John Harrisonbc0dce32015-03-19 12:30:07 +0000678
Chris Wilson63103462016-04-28 09:56:49 +0100679 /* Flush enough space to reduce the likelihood of waiting after
680 * we start building the request - in which case we will just
681 * have to repeat work.
682 */
Chris Wilson0e93cdd2016-04-29 09:07:06 +0100683 request->reserved_space += EXECLISTS_REQUEST_SIZE;
Chris Wilson63103462016-04-28 09:56:49 +0100684
Chris Wilson978f1e02016-04-28 09:56:54 +0100685 if (request->ctx->engine[engine->id].state == NULL) {
686 ret = execlists_context_deferred_alloc(request->ctx, engine);
687 if (ret)
688 return ret;
689 }
690
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100691 request->ringbuf = request->ctx->engine[engine->id].ringbuf;
Mika Kuoppalaf3cc01f2015-07-06 11:08:30 +0300692
Alex Daia7e02192015-12-16 11:45:55 -0800693 if (i915.enable_guc_submission) {
694 /*
695 * Check that the GuC has space for the request before
696 * going any further, as the i915_add_request() call
697 * later on mustn't fail ...
698 */
699 struct intel_guc *guc = &request->i915->guc;
700
701 ret = i915_guc_wq_check_space(guc->execbuf_client);
702 if (ret)
703 return ret;
704 }
705
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100706 ret = intel_lr_context_pin(request->ctx, engine);
707 if (ret)
708 return ret;
Dave Gordone28e4042016-01-19 19:02:55 +0000709
Chris Wilsonbfa01202016-04-28 09:56:48 +0100710 ret = intel_ring_begin(request, 0);
711 if (ret)
712 goto err_unpin;
713
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100714 if (!request->ctx->engine[engine->id].initialised) {
715 ret = engine->init_context(request);
716 if (ret)
717 goto err_unpin;
718
719 request->ctx->engine[engine->id].initialised = true;
720 }
721
722 /* Note that after this point, we have committed to using
723 * this request as it is being used to both track the
724 * state of engine initialisation and liveness of the
725 * golden renderstate above. Think twice before you try
726 * to cancel/unwind this request now.
727 */
728
Chris Wilson0e93cdd2016-04-29 09:07:06 +0100729 request->reserved_space -= EXECLISTS_REQUEST_SIZE;
Chris Wilsonbfa01202016-04-28 09:56:48 +0100730 return 0;
731
732err_unpin:
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100733 intel_lr_context_unpin(request->ctx, engine);
Dave Gordone28e4042016-01-19 19:02:55 +0000734 return ret;
John Harrisonbc0dce32015-03-19 12:30:07 +0000735}
736
John Harrisonbc0dce32015-03-19 12:30:07 +0000737/*
738 * intel_logical_ring_advance_and_submit() - advance the tail and submit the workload
John Harrisonae707972015-05-29 17:44:14 +0100739 * @request: Request to advance the logical ringbuffer of.
John Harrisonbc0dce32015-03-19 12:30:07 +0000740 *
741 * The tail is updated in our logical ringbuffer struct, not in the actual context. What
742 * really happens during submission is that the context and current tail will be placed
743 * on a queue waiting for the ELSP to be ready to accept a new context submission. At that
744 * point, the tail *inside* the context is updated and the ELSP written to.
745 */
Chris Wilson7c17d372016-01-20 15:43:35 +0200746static int
John Harrisonae707972015-05-29 17:44:14 +0100747intel_logical_ring_advance_and_submit(struct drm_i915_gem_request *request)
John Harrisonbc0dce32015-03-19 12:30:07 +0000748{
Chris Wilson7c17d372016-01-20 15:43:35 +0200749 struct intel_ringbuffer *ringbuf = request->ringbuf;
Alex Daid1675192015-08-12 15:43:43 +0100750 struct drm_i915_private *dev_priv = request->i915;
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000751 struct intel_engine_cs *engine = request->engine;
John Harrisonbc0dce32015-03-19 12:30:07 +0000752
Chris Wilson7c17d372016-01-20 15:43:35 +0200753 intel_logical_ring_advance(ringbuf);
754 request->tail = ringbuf->tail;
John Harrisonbc0dce32015-03-19 12:30:07 +0000755
Chris Wilson7c17d372016-01-20 15:43:35 +0200756 /*
757 * Here we add two extra NOOPs as padding to avoid
758 * lite restore of a context with HEAD==TAIL.
759 *
760 * Caller must reserve WA_TAIL_DWORDS for us!
761 */
762 intel_logical_ring_emit(ringbuf, MI_NOOP);
763 intel_logical_ring_emit(ringbuf, MI_NOOP);
764 intel_logical_ring_advance(ringbuf);
Alex Daid1675192015-08-12 15:43:43 +0100765
Tvrtko Ursulin117897f2016-03-16 11:00:40 +0000766 if (intel_engine_stopped(engine))
Chris Wilson7c17d372016-01-20 15:43:35 +0200767 return 0;
John Harrisonbc0dce32015-03-19 12:30:07 +0000768
Chris Wilsona16a4052016-04-28 09:56:56 +0100769 /* We keep the previous context alive until we retire the following
770 * request. This ensures that any the context object is still pinned
771 * for any residual writes the HW makes into it on the context switch
772 * into the next object following the breadcrumb. Otherwise, we may
773 * retire the context too early.
774 */
775 request->previous_context = engine->last_context;
776 engine->last_context = request->ctx;
Tvrtko Ursulinf4e2dec2016-01-28 10:29:57 +0000777
Alex Daid1675192015-08-12 15:43:43 +0100778 if (dev_priv->guc.execbuf_client)
779 i915_guc_submit(dev_priv->guc.execbuf_client, request);
780 else
781 execlists_context_queue(request);
Chris Wilson7c17d372016-01-20 15:43:35 +0200782
783 return 0;
John Harrisonbc0dce32015-03-19 12:30:07 +0000784}
785
Oscar Mateo73e4d072014-07-24 17:04:48 +0100786/**
787 * execlists_submission() - submit a batchbuffer for execution, Execlists style
788 * @dev: DRM device.
789 * @file: DRM file.
790 * @ring: Engine Command Streamer to submit to.
791 * @ctx: Context to employ for this submission.
792 * @args: execbuffer call arguments.
793 * @vmas: list of vmas.
794 * @batch_obj: the batchbuffer to submit.
795 * @exec_start: batchbuffer start virtual address pointer.
John Harrison8e004ef2015-02-13 11:48:10 +0000796 * @dispatch_flags: translated execbuffer call flags.
Oscar Mateo73e4d072014-07-24 17:04:48 +0100797 *
798 * This is the evil twin version of i915_gem_ringbuffer_submission. It abstracts
799 * away the submission details of the execbuffer ioctl call.
800 *
801 * Return: non-zero if the submission fails.
802 */
John Harrison5f19e2b2015-05-29 17:43:27 +0100803int intel_execlists_submission(struct i915_execbuffer_params *params,
Oscar Mateo454afeb2014-07-24 17:04:22 +0100804 struct drm_i915_gem_execbuffer2 *args,
John Harrison5f19e2b2015-05-29 17:43:27 +0100805 struct list_head *vmas)
Oscar Mateo454afeb2014-07-24 17:04:22 +0100806{
John Harrison5f19e2b2015-05-29 17:43:27 +0100807 struct drm_device *dev = params->dev;
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000808 struct intel_engine_cs *engine = params->engine;
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100809 struct drm_i915_private *dev_priv = dev->dev_private;
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000810 struct intel_ringbuffer *ringbuf = params->ctx->engine[engine->id].ringbuf;
John Harrison5f19e2b2015-05-29 17:43:27 +0100811 u64 exec_start;
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100812 int instp_mode;
813 u32 instp_mask;
814 int ret;
815
816 instp_mode = args->flags & I915_EXEC_CONSTANTS_MASK;
817 instp_mask = I915_EXEC_CONSTANTS_MASK;
818 switch (instp_mode) {
819 case I915_EXEC_CONSTANTS_REL_GENERAL:
820 case I915_EXEC_CONSTANTS_ABSOLUTE:
821 case I915_EXEC_CONSTANTS_REL_SURFACE:
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000822 if (instp_mode != 0 && engine != &dev_priv->engine[RCS]) {
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100823 DRM_DEBUG("non-0 rel constants mode on non-RCS\n");
824 return -EINVAL;
825 }
826
827 if (instp_mode != dev_priv->relative_constants_mode) {
828 if (instp_mode == I915_EXEC_CONSTANTS_REL_SURFACE) {
829 DRM_DEBUG("rel surface constants mode invalid on gen5+\n");
830 return -EINVAL;
831 }
832
833 /* The HW changed the meaning on this bit on gen6 */
834 instp_mask &= ~I915_EXEC_CONSTANTS_REL_SURFACE;
835 }
836 break;
837 default:
838 DRM_DEBUG("execbuf with unknown constants: %d\n", instp_mode);
839 return -EINVAL;
840 }
841
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100842 if (args->flags & I915_EXEC_GEN7_SOL_RESET) {
843 DRM_DEBUG("sol reset is gen7 only\n");
844 return -EINVAL;
845 }
846
John Harrison535fbe82015-05-29 17:43:32 +0100847 ret = execlists_move_to_gpu(params->request, vmas);
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100848 if (ret)
849 return ret;
850
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000851 if (engine == &dev_priv->engine[RCS] &&
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100852 instp_mode != dev_priv->relative_constants_mode) {
Chris Wilson987046a2016-04-28 09:56:46 +0100853 ret = intel_ring_begin(params->request, 4);
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100854 if (ret)
855 return ret;
856
857 intel_logical_ring_emit(ringbuf, MI_NOOP);
858 intel_logical_ring_emit(ringbuf, MI_LOAD_REGISTER_IMM(1));
Ville Syrjäläf92a9162015-11-04 23:20:07 +0200859 intel_logical_ring_emit_reg(ringbuf, INSTPM);
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100860 intel_logical_ring_emit(ringbuf, instp_mask << 16 | instp_mode);
861 intel_logical_ring_advance(ringbuf);
862
863 dev_priv->relative_constants_mode = instp_mode;
864 }
865
John Harrison5f19e2b2015-05-29 17:43:27 +0100866 exec_start = params->batch_obj_vm_offset +
867 args->batch_start_offset;
868
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000869 ret = engine->emit_bb_start(params->request, exec_start, params->dispatch_flags);
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100870 if (ret)
871 return ret;
872
John Harrison95c24162015-05-29 17:43:31 +0100873 trace_i915_gem_ring_dispatch(params->request, params->dispatch_flags);
John Harrison5e4be7b2015-02-13 11:48:11 +0000874
John Harrison8a8edb52015-05-29 17:43:33 +0100875 i915_gem_execbuffer_move_to_active(vmas, params->request);
Oscar Mateoba8b7cc2014-07-24 17:04:33 +0100876
Oscar Mateo454afeb2014-07-24 17:04:22 +0100877 return 0;
878}
879
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100880void intel_execlists_cancel_requests(struct intel_engine_cs *engine)
Thomas Danielc86ee3a92014-11-13 10:27:05 +0000881{
Nick Hoath6d3d8272015-01-15 13:10:39 +0000882 struct drm_i915_gem_request *req, *tmp;
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100883 LIST_HEAD(cancel_list);
Thomas Danielc86ee3a92014-11-13 10:27:05 +0000884
Chris Wilsonc0336662016-05-06 15:40:21 +0100885 WARN_ON(!mutex_is_locked(&engine->i915->dev->struct_mutex));
Thomas Danielc86ee3a92014-11-13 10:27:05 +0000886
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100887 spin_lock_bh(&engine->execlist_lock);
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100888 list_replace_init(&engine->execlist_queue, &cancel_list);
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +0100889 spin_unlock_bh(&engine->execlist_lock);
Thomas Danielc86ee3a92014-11-13 10:27:05 +0000890
Tvrtko Ursuline39d42f2016-04-28 09:56:58 +0100891 list_for_each_entry_safe(req, tmp, &cancel_list, execlist_link) {
Thomas Danielc86ee3a92014-11-13 10:27:05 +0000892 list_del(&req->execlist_link);
Nick Hoathf8210792015-01-29 16:55:07 +0000893 i915_gem_request_unreference(req);
Thomas Danielc86ee3a92014-11-13 10:27:05 +0000894 }
895}
896
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000897void intel_logical_ring_stop(struct intel_engine_cs *engine)
Oscar Mateo454afeb2014-07-24 17:04:22 +0100898{
Chris Wilsonc0336662016-05-06 15:40:21 +0100899 struct drm_i915_private *dev_priv = engine->i915;
Oscar Mateo9832b9d2014-07-24 17:04:30 +0100900 int ret;
901
Tvrtko Ursulin117897f2016-03-16 11:00:40 +0000902 if (!intel_engine_initialized(engine))
Oscar Mateo9832b9d2014-07-24 17:04:30 +0100903 return;
904
Tvrtko Ursulin666796d2016-03-16 11:00:39 +0000905 ret = intel_engine_idle(engine);
Chris Wilsonf4457ae2016-04-13 17:35:08 +0100906 if (ret)
Oscar Mateo9832b9d2014-07-24 17:04:30 +0100907 DRM_ERROR("failed to quiesce %s whilst cleaning up: %d\n",
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000908 engine->name, ret);
Oscar Mateo9832b9d2014-07-24 17:04:30 +0100909
910 /* TODO: Is this correct with Execlists enabled? */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000911 I915_WRITE_MODE(engine, _MASKED_BIT_ENABLE(STOP_RING));
912 if (wait_for((I915_READ_MODE(engine) & MODE_IDLE) != 0, 1000)) {
913 DRM_ERROR("%s :timed out trying to stop ring\n", engine->name);
Oscar Mateo9832b9d2014-07-24 17:04:30 +0100914 return;
915 }
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000916 I915_WRITE_MODE(engine, _MASKED_BIT_DISABLE(STOP_RING));
Oscar Mateo454afeb2014-07-24 17:04:22 +0100917}
918
John Harrison4866d722015-05-29 17:43:55 +0100919int logical_ring_flush_all_caches(struct drm_i915_gem_request *req)
Oscar Mateo48e29f52014-07-24 17:04:29 +0100920{
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +0000921 struct intel_engine_cs *engine = req->engine;
Oscar Mateo48e29f52014-07-24 17:04:29 +0100922 int ret;
923
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000924 if (!engine->gpu_caches_dirty)
Oscar Mateo48e29f52014-07-24 17:04:29 +0100925 return 0;
926
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000927 ret = engine->emit_flush(req, 0, I915_GEM_GPU_DOMAINS);
Oscar Mateo48e29f52014-07-24 17:04:29 +0100928 if (ret)
929 return ret;
930
Tvrtko Ursuline2f80392016-03-16 11:00:36 +0000931 engine->gpu_caches_dirty = false;
Oscar Mateo48e29f52014-07-24 17:04:29 +0100932 return 0;
933}
934
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100935static int intel_lr_context_pin(struct intel_context *ctx,
936 struct intel_engine_cs *engine)
Oscar Mateodcb4c122014-11-13 10:28:10 +0000937{
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100938 struct drm_i915_private *dev_priv = ctx->i915;
939 struct drm_i915_gem_object *ctx_obj;
940 struct intel_ringbuffer *ringbuf;
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +0100941 void *vaddr;
942 u32 *lrc_reg_state;
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000943 int ret;
Oscar Mateodcb4c122014-11-13 10:28:10 +0000944
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100945 lockdep_assert_held(&ctx->i915->dev->struct_mutex);
Tvrtko Ursulinca825802016-01-15 15:10:27 +0000946
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100947 if (ctx->engine[engine->id].pin_count++)
948 return 0;
949
950 ctx_obj = ctx->engine[engine->id].state;
Nick Hoathe84fe802015-09-11 12:53:46 +0100951 ret = i915_gem_obj_ggtt_pin(ctx_obj, GEN8_LR_CONTEXT_ALIGN,
952 PIN_OFFSET_BIAS | GUC_WOPCM_TOP);
953 if (ret)
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100954 goto err;
Thomas Daniel7ba717c2014-11-13 10:28:56 +0000955
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +0100956 vaddr = i915_gem_object_pin_map(ctx_obj);
957 if (IS_ERR(vaddr)) {
958 ret = PTR_ERR(vaddr);
Tvrtko Ursulin82352e92016-01-15 17:12:45 +0000959 goto unpin_ctx_obj;
960 }
961
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +0100962 lrc_reg_state = vaddr + LRC_STATE_PN * PAGE_SIZE;
963
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100964 ringbuf = ctx->engine[engine->id].ringbuf;
Chris Wilsonc0336662016-05-06 15:40:21 +0100965 ret = intel_pin_and_map_ringbuffer_obj(dev_priv, ringbuf);
Nick Hoathe84fe802015-09-11 12:53:46 +0100966 if (ret)
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +0100967 goto unpin_map;
Alex Daid1675192015-08-12 15:43:43 +0100968
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100969 i915_gem_context_reference(ctx);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000970 ctx->engine[engine->id].lrc_vma = i915_gem_obj_to_ggtt(ctx_obj);
971 intel_lr_context_descriptor_update(ctx, engine);
Tvrtko Ursulin77b04a02016-01-22 12:42:47 +0000972 lrc_reg_state[CTX_RING_BUFFER_START+1] = ringbuf->vma->node.start;
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +0000973 ctx->engine[engine->id].lrc_reg_state = lrc_reg_state;
Nick Hoathe84fe802015-09-11 12:53:46 +0100974 ctx_obj->dirty = true;
Daniel Vettere93c28f2015-09-02 14:33:42 +0200975
Nick Hoathe84fe802015-09-11 12:53:46 +0100976 /* Invalidate GuC TLB. */
977 if (i915.enable_guc_submission)
978 I915_WRITE(GEN8_GTCR, GEN8_GTCR_INVALIDATE);
Oscar Mateodcb4c122014-11-13 10:28:10 +0000979
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100980 return 0;
Thomas Daniel7ba717c2014-11-13 10:28:56 +0000981
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +0100982unpin_map:
983 i915_gem_object_unpin_map(ctx_obj);
Thomas Daniel7ba717c2014-11-13 10:28:56 +0000984unpin_ctx_obj:
985 i915_gem_object_ggtt_unpin(ctx_obj);
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100986err:
Tvrtko Ursuline52928232016-01-28 10:29:54 +0000987 ctx->engine[engine->id].pin_count = 0;
Thomas Daniel7ba717c2014-11-13 10:28:56 +0000988 return ret;
Oscar Mateodcb4c122014-11-13 10:28:10 +0000989}
990
Tvrtko Ursuline52928232016-01-28 10:29:54 +0000991void intel_lr_context_unpin(struct intel_context *ctx,
992 struct intel_engine_cs *engine)
Oscar Mateodcb4c122014-11-13 10:28:10 +0000993{
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100994 struct drm_i915_gem_object *ctx_obj;
Daniel Vetteraf3302b2015-12-04 17:27:15 +0100995
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100996 lockdep_assert_held(&ctx->i915->dev->struct_mutex);
997 GEM_BUG_ON(ctx->engine[engine->id].pin_count == 0);
Tvrtko Ursulin321fe302016-01-28 10:29:55 +0000998
Chris Wilson24f1d3c2016-04-28 09:56:53 +0100999 if (--ctx->engine[engine->id].pin_count)
1000 return;
1001
1002 intel_unpin_ringbuffer_obj(ctx->engine[engine->id].ringbuf);
1003
1004 ctx_obj = ctx->engine[engine->id].state;
1005 i915_gem_object_unpin_map(ctx_obj);
1006 i915_gem_object_ggtt_unpin(ctx_obj);
1007
1008 ctx->engine[engine->id].lrc_vma = NULL;
1009 ctx->engine[engine->id].lrc_desc = 0;
1010 ctx->engine[engine->id].lrc_reg_state = NULL;
1011
1012 i915_gem_context_unreference(ctx);
Oscar Mateodcb4c122014-11-13 10:28:10 +00001013}
1014
John Harrisone2be4fa2015-05-29 17:43:54 +01001015static int intel_logical_ring_workarounds_emit(struct drm_i915_gem_request *req)
Michel Thierry771b9a52014-11-11 16:47:33 +00001016{
1017 int ret, i;
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00001018 struct intel_engine_cs *engine = req->engine;
John Harrisone2be4fa2015-05-29 17:43:54 +01001019 struct intel_ringbuffer *ringbuf = req->ringbuf;
Chris Wilsonc0336662016-05-06 15:40:21 +01001020 struct i915_workarounds *w = &req->i915->workarounds;
Michel Thierry771b9a52014-11-11 16:47:33 +00001021
Boyer, Waynecd7feaa2016-01-06 17:15:29 -08001022 if (w->count == 0)
Michel Thierry771b9a52014-11-11 16:47:33 +00001023 return 0;
1024
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00001025 engine->gpu_caches_dirty = true;
John Harrison4866d722015-05-29 17:43:55 +01001026 ret = logical_ring_flush_all_caches(req);
Michel Thierry771b9a52014-11-11 16:47:33 +00001027 if (ret)
1028 return ret;
1029
Chris Wilson987046a2016-04-28 09:56:46 +01001030 ret = intel_ring_begin(req, w->count * 2 + 2);
Michel Thierry771b9a52014-11-11 16:47:33 +00001031 if (ret)
1032 return ret;
1033
1034 intel_logical_ring_emit(ringbuf, MI_LOAD_REGISTER_IMM(w->count));
1035 for (i = 0; i < w->count; i++) {
Ville Syrjäläf92a9162015-11-04 23:20:07 +02001036 intel_logical_ring_emit_reg(ringbuf, w->reg[i].addr);
Michel Thierry771b9a52014-11-11 16:47:33 +00001037 intel_logical_ring_emit(ringbuf, w->reg[i].value);
1038 }
1039 intel_logical_ring_emit(ringbuf, MI_NOOP);
1040
1041 intel_logical_ring_advance(ringbuf);
1042
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00001043 engine->gpu_caches_dirty = true;
John Harrison4866d722015-05-29 17:43:55 +01001044 ret = logical_ring_flush_all_caches(req);
Michel Thierry771b9a52014-11-11 16:47:33 +00001045 if (ret)
1046 return ret;
1047
1048 return 0;
1049}
1050
Arun Siluvery83b8a982015-07-08 10:27:05 +01001051#define wa_ctx_emit(batch, index, cmd) \
Arun Siluvery17ee9502015-06-19 19:07:01 +01001052 do { \
Arun Siluvery83b8a982015-07-08 10:27:05 +01001053 int __index = (index)++; \
1054 if (WARN_ON(__index >= (PAGE_SIZE / sizeof(uint32_t)))) { \
Arun Siluvery17ee9502015-06-19 19:07:01 +01001055 return -ENOSPC; \
1056 } \
Arun Siluvery83b8a982015-07-08 10:27:05 +01001057 batch[__index] = (cmd); \
Arun Siluvery17ee9502015-06-19 19:07:01 +01001058 } while (0)
1059
Ville Syrjälä8f40db72015-11-04 23:20:08 +02001060#define wa_ctx_emit_reg(batch, index, reg) \
Ville Syrjäläf0f59a02015-11-18 15:33:26 +02001061 wa_ctx_emit((batch), (index), i915_mmio_reg_offset(reg))
Arun Siluvery9e000842015-07-03 14:27:31 +01001062
1063/*
1064 * In this WA we need to set GEN8_L3SQCREG4[21:21] and reset it after
1065 * PIPE_CONTROL instruction. This is required for the flush to happen correctly
1066 * but there is a slight complication as this is applied in WA batch where the
1067 * values are only initialized once so we cannot take register value at the
1068 * beginning and reuse it further; hence we save its value to memory, upload a
1069 * constant value with bit21 set and then we restore it back with the saved value.
1070 * To simplify the WA, a constant value is formed by using the default value
1071 * of this register. This shouldn't be a problem because we are only modifying
1072 * it for a short period and this batch in non-premptible. We can ofcourse
1073 * use additional instructions that read the actual value of the register
1074 * at that time and set our bit of interest but it makes the WA complicated.
1075 *
1076 * This WA is also required for Gen9 so extracting as a function avoids
1077 * code duplication.
1078 */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001079static inline int gen8_emit_flush_coherentl3_wa(struct intel_engine_cs *engine,
Arun Siluvery9e000842015-07-03 14:27:31 +01001080 uint32_t *const batch,
1081 uint32_t index)
1082{
1083 uint32_t l3sqc4_flush = (0x40400000 | GEN8_LQSC_FLUSH_COHERENT_LINES);
1084
Arun Siluverya4106a72015-07-14 15:01:29 +01001085 /*
1086 * WaDisableLSQCROPERFforOCL:skl
1087 * This WA is implemented in skl_init_clock_gating() but since
1088 * this batch updates GEN8_L3SQCREG4 with default value we need to
1089 * set this bit here to retain the WA during flush.
1090 */
Chris Wilsonc0336662016-05-06 15:40:21 +01001091 if (IS_SKL_REVID(engine->i915, 0, SKL_REVID_E0))
Arun Siluverya4106a72015-07-14 15:01:29 +01001092 l3sqc4_flush |= GEN8_LQSC_RO_PERF_DIS;
1093
Arun Siluveryf1afe242015-08-04 16:22:20 +01001094 wa_ctx_emit(batch, index, (MI_STORE_REGISTER_MEM_GEN8 |
Arun Siluvery83b8a982015-07-08 10:27:05 +01001095 MI_SRM_LRM_GLOBAL_GTT));
Ville Syrjälä8f40db72015-11-04 23:20:08 +02001096 wa_ctx_emit_reg(batch, index, GEN8_L3SQCREG4);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001097 wa_ctx_emit(batch, index, engine->scratch.gtt_offset + 256);
Arun Siluvery83b8a982015-07-08 10:27:05 +01001098 wa_ctx_emit(batch, index, 0);
Arun Siluvery9e000842015-07-03 14:27:31 +01001099
Arun Siluvery83b8a982015-07-08 10:27:05 +01001100 wa_ctx_emit(batch, index, MI_LOAD_REGISTER_IMM(1));
Ville Syrjälä8f40db72015-11-04 23:20:08 +02001101 wa_ctx_emit_reg(batch, index, GEN8_L3SQCREG4);
Arun Siluvery83b8a982015-07-08 10:27:05 +01001102 wa_ctx_emit(batch, index, l3sqc4_flush);
Arun Siluvery9e000842015-07-03 14:27:31 +01001103
Arun Siluvery83b8a982015-07-08 10:27:05 +01001104 wa_ctx_emit(batch, index, GFX_OP_PIPE_CONTROL(6));
1105 wa_ctx_emit(batch, index, (PIPE_CONTROL_CS_STALL |
1106 PIPE_CONTROL_DC_FLUSH_ENABLE));
1107 wa_ctx_emit(batch, index, 0);
1108 wa_ctx_emit(batch, index, 0);
1109 wa_ctx_emit(batch, index, 0);
1110 wa_ctx_emit(batch, index, 0);
Arun Siluvery9e000842015-07-03 14:27:31 +01001111
Arun Siluveryf1afe242015-08-04 16:22:20 +01001112 wa_ctx_emit(batch, index, (MI_LOAD_REGISTER_MEM_GEN8 |
Arun Siluvery83b8a982015-07-08 10:27:05 +01001113 MI_SRM_LRM_GLOBAL_GTT));
Ville Syrjälä8f40db72015-11-04 23:20:08 +02001114 wa_ctx_emit_reg(batch, index, GEN8_L3SQCREG4);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001115 wa_ctx_emit(batch, index, engine->scratch.gtt_offset + 256);
Arun Siluvery83b8a982015-07-08 10:27:05 +01001116 wa_ctx_emit(batch, index, 0);
Arun Siluvery9e000842015-07-03 14:27:31 +01001117
1118 return index;
1119}
1120
Arun Siluvery17ee9502015-06-19 19:07:01 +01001121static inline uint32_t wa_ctx_start(struct i915_wa_ctx_bb *wa_ctx,
1122 uint32_t offset,
1123 uint32_t start_alignment)
1124{
1125 return wa_ctx->offset = ALIGN(offset, start_alignment);
1126}
1127
1128static inline int wa_ctx_end(struct i915_wa_ctx_bb *wa_ctx,
1129 uint32_t offset,
1130 uint32_t size_alignment)
1131{
1132 wa_ctx->size = offset - wa_ctx->offset;
1133
1134 WARN(wa_ctx->size % size_alignment,
1135 "wa_ctx_bb failed sanity checks: size %d is not aligned to %d\n",
1136 wa_ctx->size, size_alignment);
1137 return 0;
1138}
1139
1140/**
1141 * gen8_init_indirectctx_bb() - initialize indirect ctx batch with WA
1142 *
1143 * @ring: only applicable for RCS
1144 * @wa_ctx: structure representing wa_ctx
1145 * offset: specifies start of the batch, should be cache-aligned. This is updated
1146 * with the offset value received as input.
1147 * size: size of the batch in DWORDS but HW expects in terms of cachelines
1148 * @batch: page in which WA are loaded
1149 * @offset: This field specifies the start of the batch, it should be
1150 * cache-aligned otherwise it is adjusted accordingly.
1151 * Typically we only have one indirect_ctx and per_ctx batch buffer which are
1152 * initialized at the beginning and shared across all contexts but this field
1153 * helps us to have multiple batches at different offsets and select them based
1154 * on a criteria. At the moment this batch always start at the beginning of the page
1155 * and at this point we don't have multiple wa_ctx batch buffers.
1156 *
1157 * The number of WA applied are not known at the beginning; we use this field
1158 * to return the no of DWORDS written.
Arun Siluvery4d78c8d2015-06-23 15:50:43 +01001159 *
Arun Siluvery17ee9502015-06-19 19:07:01 +01001160 * It is to be noted that this batch does not contain MI_BATCH_BUFFER_END
1161 * so it adds NOOPs as padding to make it cacheline aligned.
1162 * MI_BATCH_BUFFER_END will be added to perctx batch and both of them together
1163 * makes a complete batch buffer.
1164 *
1165 * Return: non-zero if we exceed the PAGE_SIZE limit.
1166 */
1167
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001168static int gen8_init_indirectctx_bb(struct intel_engine_cs *engine,
Arun Siluvery17ee9502015-06-19 19:07:01 +01001169 struct i915_wa_ctx_bb *wa_ctx,
1170 uint32_t *const batch,
1171 uint32_t *offset)
1172{
Arun Siluvery0160f052015-06-23 15:46:57 +01001173 uint32_t scratch_addr;
Arun Siluvery17ee9502015-06-19 19:07:01 +01001174 uint32_t index = wa_ctx_start(wa_ctx, *offset, CACHELINE_DWORDS);
1175
Arun Siluvery7ad00d12015-06-19 18:37:12 +01001176 /* WaDisableCtxRestoreArbitration:bdw,chv */
Arun Siluvery83b8a982015-07-08 10:27:05 +01001177 wa_ctx_emit(batch, index, MI_ARB_ON_OFF | MI_ARB_DISABLE);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001178
Arun Siluveryc82435b2015-06-19 18:37:13 +01001179 /* WaFlushCoherentL3CacheLinesAtContextSwitch:bdw */
Chris Wilsonc0336662016-05-06 15:40:21 +01001180 if (IS_BROADWELL(engine->i915)) {
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001181 int rc = gen8_emit_flush_coherentl3_wa(engine, batch, index);
Andrzej Hajda604ef732015-09-21 15:33:35 +02001182 if (rc < 0)
1183 return rc;
1184 index = rc;
Arun Siluveryc82435b2015-06-19 18:37:13 +01001185 }
1186
Arun Siluvery0160f052015-06-23 15:46:57 +01001187 /* WaClearSlmSpaceAtContextSwitch:bdw,chv */
1188 /* Actual scratch location is at 128 bytes offset */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001189 scratch_addr = engine->scratch.gtt_offset + 2*CACHELINE_BYTES;
Arun Siluvery0160f052015-06-23 15:46:57 +01001190
Arun Siluvery83b8a982015-07-08 10:27:05 +01001191 wa_ctx_emit(batch, index, GFX_OP_PIPE_CONTROL(6));
1192 wa_ctx_emit(batch, index, (PIPE_CONTROL_FLUSH_L3 |
1193 PIPE_CONTROL_GLOBAL_GTT_IVB |
1194 PIPE_CONTROL_CS_STALL |
1195 PIPE_CONTROL_QW_WRITE));
1196 wa_ctx_emit(batch, index, scratch_addr);
1197 wa_ctx_emit(batch, index, 0);
1198 wa_ctx_emit(batch, index, 0);
1199 wa_ctx_emit(batch, index, 0);
Arun Siluvery0160f052015-06-23 15:46:57 +01001200
Arun Siluvery17ee9502015-06-19 19:07:01 +01001201 /* Pad to end of cacheline */
1202 while (index % CACHELINE_DWORDS)
Arun Siluvery83b8a982015-07-08 10:27:05 +01001203 wa_ctx_emit(batch, index, MI_NOOP);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001204
1205 /*
1206 * MI_BATCH_BUFFER_END is not required in Indirect ctx BB because
1207 * execution depends on the length specified in terms of cache lines
1208 * in the register CTX_RCS_INDIRECT_CTX
1209 */
1210
1211 return wa_ctx_end(wa_ctx, *offset = index, CACHELINE_DWORDS);
1212}
1213
1214/**
1215 * gen8_init_perctx_bb() - initialize per ctx batch with WA
1216 *
1217 * @ring: only applicable for RCS
1218 * @wa_ctx: structure representing wa_ctx
1219 * offset: specifies start of the batch, should be cache-aligned.
1220 * size: size of the batch in DWORDS but HW expects in terms of cachelines
Arun Siluvery4d78c8d2015-06-23 15:50:43 +01001221 * @batch: page in which WA are loaded
Arun Siluvery17ee9502015-06-19 19:07:01 +01001222 * @offset: This field specifies the start of this batch.
1223 * This batch is started immediately after indirect_ctx batch. Since we ensure
1224 * that indirect_ctx ends on a cacheline this batch is aligned automatically.
1225 *
1226 * The number of DWORDS written are returned using this field.
1227 *
1228 * This batch is terminated with MI_BATCH_BUFFER_END and so we need not add padding
1229 * to align it with cacheline as padding after MI_BATCH_BUFFER_END is redundant.
1230 */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001231static int gen8_init_perctx_bb(struct intel_engine_cs *engine,
Arun Siluvery17ee9502015-06-19 19:07:01 +01001232 struct i915_wa_ctx_bb *wa_ctx,
1233 uint32_t *const batch,
1234 uint32_t *offset)
1235{
1236 uint32_t index = wa_ctx_start(wa_ctx, *offset, CACHELINE_DWORDS);
1237
Arun Siluvery7ad00d12015-06-19 18:37:12 +01001238 /* WaDisableCtxRestoreArbitration:bdw,chv */
Arun Siluvery83b8a982015-07-08 10:27:05 +01001239 wa_ctx_emit(batch, index, MI_ARB_ON_OFF | MI_ARB_ENABLE);
Arun Siluvery7ad00d12015-06-19 18:37:12 +01001240
Arun Siluvery83b8a982015-07-08 10:27:05 +01001241 wa_ctx_emit(batch, index, MI_BATCH_BUFFER_END);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001242
1243 return wa_ctx_end(wa_ctx, *offset = index, 1);
1244}
1245
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001246static int gen9_init_indirectctx_bb(struct intel_engine_cs *engine,
Arun Siluvery0504cff2015-07-14 15:01:27 +01001247 struct i915_wa_ctx_bb *wa_ctx,
1248 uint32_t *const batch,
1249 uint32_t *offset)
1250{
Arun Siluverya4106a72015-07-14 15:01:29 +01001251 int ret;
Arun Siluvery0504cff2015-07-14 15:01:27 +01001252 uint32_t index = wa_ctx_start(wa_ctx, *offset, CACHELINE_DWORDS);
1253
Arun Siluvery0907c8f2015-07-14 15:01:28 +01001254 /* WaDisableCtxRestoreArbitration:skl,bxt */
Chris Wilsonc0336662016-05-06 15:40:21 +01001255 if (IS_SKL_REVID(engine->i915, 0, SKL_REVID_D0) ||
1256 IS_BXT_REVID(engine->i915, 0, BXT_REVID_A1))
Arun Siluvery0907c8f2015-07-14 15:01:28 +01001257 wa_ctx_emit(batch, index, MI_ARB_ON_OFF | MI_ARB_DISABLE);
Arun Siluvery0504cff2015-07-14 15:01:27 +01001258
Arun Siluverya4106a72015-07-14 15:01:29 +01001259 /* WaFlushCoherentL3CacheLinesAtContextSwitch:skl,bxt */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001260 ret = gen8_emit_flush_coherentl3_wa(engine, batch, index);
Arun Siluverya4106a72015-07-14 15:01:29 +01001261 if (ret < 0)
1262 return ret;
1263 index = ret;
1264
Arun Siluvery0504cff2015-07-14 15:01:27 +01001265 /* Pad to end of cacheline */
1266 while (index % CACHELINE_DWORDS)
1267 wa_ctx_emit(batch, index, MI_NOOP);
1268
1269 return wa_ctx_end(wa_ctx, *offset = index, CACHELINE_DWORDS);
1270}
1271
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001272static int gen9_init_perctx_bb(struct intel_engine_cs *engine,
Arun Siluvery0504cff2015-07-14 15:01:27 +01001273 struct i915_wa_ctx_bb *wa_ctx,
1274 uint32_t *const batch,
1275 uint32_t *offset)
1276{
1277 uint32_t index = wa_ctx_start(wa_ctx, *offset, CACHELINE_DWORDS);
1278
Arun Siluvery9b014352015-07-14 15:01:30 +01001279 /* WaSetDisablePixMaskCammingAndRhwoInCommonSliceChicken:skl,bxt */
Chris Wilsonc0336662016-05-06 15:40:21 +01001280 if (IS_SKL_REVID(engine->i915, 0, SKL_REVID_B0) ||
1281 IS_BXT_REVID(engine->i915, 0, BXT_REVID_A1)) {
Arun Siluvery9b014352015-07-14 15:01:30 +01001282 wa_ctx_emit(batch, index, MI_LOAD_REGISTER_IMM(1));
Ville Syrjälä8f40db72015-11-04 23:20:08 +02001283 wa_ctx_emit_reg(batch, index, GEN9_SLICE_COMMON_ECO_CHICKEN0);
Arun Siluvery9b014352015-07-14 15:01:30 +01001284 wa_ctx_emit(batch, index,
1285 _MASKED_BIT_ENABLE(DISABLE_PIXEL_MASK_CAMMING));
1286 wa_ctx_emit(batch, index, MI_NOOP);
1287 }
1288
Tim Goreb1e429f2016-03-21 14:37:29 +00001289 /* WaClearTdlStateAckDirtyBits:bxt */
Chris Wilsonc0336662016-05-06 15:40:21 +01001290 if (IS_BXT_REVID(engine->i915, 0, BXT_REVID_B0)) {
Tim Goreb1e429f2016-03-21 14:37:29 +00001291 wa_ctx_emit(batch, index, MI_LOAD_REGISTER_IMM(4));
1292
1293 wa_ctx_emit_reg(batch, index, GEN8_STATE_ACK);
1294 wa_ctx_emit(batch, index, _MASKED_BIT_DISABLE(GEN9_SUBSLICE_TDL_ACK_BITS));
1295
1296 wa_ctx_emit_reg(batch, index, GEN9_STATE_ACK_SLICE1);
1297 wa_ctx_emit(batch, index, _MASKED_BIT_DISABLE(GEN9_SUBSLICE_TDL_ACK_BITS));
1298
1299 wa_ctx_emit_reg(batch, index, GEN9_STATE_ACK_SLICE2);
1300 wa_ctx_emit(batch, index, _MASKED_BIT_DISABLE(GEN9_SUBSLICE_TDL_ACK_BITS));
1301
1302 wa_ctx_emit_reg(batch, index, GEN7_ROW_CHICKEN2);
1303 /* dummy write to CS, mask bits are 0 to ensure the register is not modified */
1304 wa_ctx_emit(batch, index, 0x0);
1305 wa_ctx_emit(batch, index, MI_NOOP);
1306 }
1307
Arun Siluvery0907c8f2015-07-14 15:01:28 +01001308 /* WaDisableCtxRestoreArbitration:skl,bxt */
Chris Wilsonc0336662016-05-06 15:40:21 +01001309 if (IS_SKL_REVID(engine->i915, 0, SKL_REVID_D0) ||
1310 IS_BXT_REVID(engine->i915, 0, BXT_REVID_A1))
Arun Siluvery0907c8f2015-07-14 15:01:28 +01001311 wa_ctx_emit(batch, index, MI_ARB_ON_OFF | MI_ARB_ENABLE);
1312
Arun Siluvery0504cff2015-07-14 15:01:27 +01001313 wa_ctx_emit(batch, index, MI_BATCH_BUFFER_END);
1314
1315 return wa_ctx_end(wa_ctx, *offset = index, 1);
1316}
1317
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001318static int lrc_setup_wa_ctx_obj(struct intel_engine_cs *engine, u32 size)
Arun Siluvery17ee9502015-06-19 19:07:01 +01001319{
1320 int ret;
1321
Chris Wilsonc0336662016-05-06 15:40:21 +01001322 engine->wa_ctx.obj = i915_gem_object_create(engine->i915->dev,
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001323 PAGE_ALIGN(size));
Chris Wilsonfe3db792016-04-25 13:32:13 +01001324 if (IS_ERR(engine->wa_ctx.obj)) {
Arun Siluvery17ee9502015-06-19 19:07:01 +01001325 DRM_DEBUG_DRIVER("alloc LRC WA ctx backing obj failed.\n");
Chris Wilsonfe3db792016-04-25 13:32:13 +01001326 ret = PTR_ERR(engine->wa_ctx.obj);
1327 engine->wa_ctx.obj = NULL;
1328 return ret;
Arun Siluvery17ee9502015-06-19 19:07:01 +01001329 }
1330
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001331 ret = i915_gem_obj_ggtt_pin(engine->wa_ctx.obj, PAGE_SIZE, 0);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001332 if (ret) {
1333 DRM_DEBUG_DRIVER("pin LRC WA ctx backing obj failed: %d\n",
1334 ret);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001335 drm_gem_object_unreference(&engine->wa_ctx.obj->base);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001336 return ret;
1337 }
1338
1339 return 0;
1340}
1341
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001342static void lrc_destroy_wa_ctx_obj(struct intel_engine_cs *engine)
Arun Siluvery17ee9502015-06-19 19:07:01 +01001343{
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001344 if (engine->wa_ctx.obj) {
1345 i915_gem_object_ggtt_unpin(engine->wa_ctx.obj);
1346 drm_gem_object_unreference(&engine->wa_ctx.obj->base);
1347 engine->wa_ctx.obj = NULL;
Arun Siluvery17ee9502015-06-19 19:07:01 +01001348 }
1349}
1350
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001351static int intel_init_workaround_bb(struct intel_engine_cs *engine)
Arun Siluvery17ee9502015-06-19 19:07:01 +01001352{
1353 int ret;
1354 uint32_t *batch;
1355 uint32_t offset;
1356 struct page *page;
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001357 struct i915_ctx_workarounds *wa_ctx = &engine->wa_ctx;
Arun Siluvery17ee9502015-06-19 19:07:01 +01001358
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001359 WARN_ON(engine->id != RCS);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001360
Arun Siluvery5e60d792015-06-23 15:50:44 +01001361 /* update this when WA for higher Gen are added */
Chris Wilsonc0336662016-05-06 15:40:21 +01001362 if (INTEL_GEN(engine->i915) > 9) {
Arun Siluvery0504cff2015-07-14 15:01:27 +01001363 DRM_ERROR("WA batch buffer is not initialized for Gen%d\n",
Chris Wilsonc0336662016-05-06 15:40:21 +01001364 INTEL_GEN(engine->i915));
Arun Siluvery5e60d792015-06-23 15:50:44 +01001365 return 0;
Arun Siluvery0504cff2015-07-14 15:01:27 +01001366 }
Arun Siluvery5e60d792015-06-23 15:50:44 +01001367
Arun Siluveryc4db7592015-06-19 18:37:11 +01001368 /* some WA perform writes to scratch page, ensure it is valid */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001369 if (engine->scratch.obj == NULL) {
1370 DRM_ERROR("scratch page not allocated for %s\n", engine->name);
Arun Siluveryc4db7592015-06-19 18:37:11 +01001371 return -EINVAL;
1372 }
1373
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001374 ret = lrc_setup_wa_ctx_obj(engine, PAGE_SIZE);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001375 if (ret) {
1376 DRM_DEBUG_DRIVER("Failed to setup context WA page: %d\n", ret);
1377 return ret;
1378 }
1379
Dave Gordon033908a2015-12-10 18:51:23 +00001380 page = i915_gem_object_get_dirty_page(wa_ctx->obj, 0);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001381 batch = kmap_atomic(page);
1382 offset = 0;
1383
Chris Wilsonc0336662016-05-06 15:40:21 +01001384 if (IS_GEN8(engine->i915)) {
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001385 ret = gen8_init_indirectctx_bb(engine,
Arun Siluvery17ee9502015-06-19 19:07:01 +01001386 &wa_ctx->indirect_ctx,
1387 batch,
1388 &offset);
1389 if (ret)
1390 goto out;
1391
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001392 ret = gen8_init_perctx_bb(engine,
Arun Siluvery17ee9502015-06-19 19:07:01 +01001393 &wa_ctx->per_ctx,
1394 batch,
1395 &offset);
1396 if (ret)
1397 goto out;
Chris Wilsonc0336662016-05-06 15:40:21 +01001398 } else if (IS_GEN9(engine->i915)) {
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001399 ret = gen9_init_indirectctx_bb(engine,
Arun Siluvery0504cff2015-07-14 15:01:27 +01001400 &wa_ctx->indirect_ctx,
1401 batch,
1402 &offset);
1403 if (ret)
1404 goto out;
1405
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001406 ret = gen9_init_perctx_bb(engine,
Arun Siluvery0504cff2015-07-14 15:01:27 +01001407 &wa_ctx->per_ctx,
1408 batch,
1409 &offset);
1410 if (ret)
1411 goto out;
Arun Siluvery17ee9502015-06-19 19:07:01 +01001412 }
1413
1414out:
1415 kunmap_atomic(batch);
1416 if (ret)
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001417 lrc_destroy_wa_ctx_obj(engine);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001418
1419 return ret;
1420}
1421
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01001422static void lrc_init_hws(struct intel_engine_cs *engine)
1423{
Chris Wilsonc0336662016-05-06 15:40:21 +01001424 struct drm_i915_private *dev_priv = engine->i915;
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01001425
1426 I915_WRITE(RING_HWS_PGA(engine->mmio_base),
1427 (u32)engine->status_page.gfx_addr);
1428 POSTING_READ(RING_HWS_PGA(engine->mmio_base));
1429}
1430
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001431static int gen8_init_common_ring(struct intel_engine_cs *engine)
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001432{
Chris Wilsonc0336662016-05-06 15:40:21 +01001433 struct drm_i915_private *dev_priv = engine->i915;
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +00001434 unsigned int next_context_status_buffer_hw;
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001435
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01001436 lrc_init_hws(engine);
Nick Hoathe84fe802015-09-11 12:53:46 +01001437
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001438 I915_WRITE_IMR(engine,
1439 ~(engine->irq_enable_mask | engine->irq_keep_mask));
1440 I915_WRITE(RING_HWSTAM(engine->mmio_base), 0xffffffff);
Oscar Mateo73d477f2014-07-24 17:04:31 +01001441
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001442 I915_WRITE(RING_MODE_GEN7(engine),
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001443 _MASKED_BIT_DISABLE(GFX_REPLAY_MODE) |
1444 _MASKED_BIT_ENABLE(GFX_RUN_LIST_ENABLE));
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001445 POSTING_READ(RING_MODE_GEN7(engine));
Michel Thierrydfc53c52015-09-28 13:25:12 +01001446
1447 /*
1448 * Instead of resetting the Context Status Buffer (CSB) read pointer to
1449 * zero, we need to read the write pointer from hardware and use its
1450 * value because "this register is power context save restored".
1451 * Effectively, these states have been observed:
1452 *
1453 * | Suspend-to-idle (freeze) | Suspend-to-RAM (mem) |
1454 * BDW | CSB regs not reset | CSB regs reset |
1455 * CHT | CSB regs not reset | CSB regs not reset |
Ben Widawsky5590a5f2016-01-05 10:30:05 -08001456 * SKL | ? | ? |
1457 * BXT | ? | ? |
Michel Thierrydfc53c52015-09-28 13:25:12 +01001458 */
Ben Widawsky5590a5f2016-01-05 10:30:05 -08001459 next_context_status_buffer_hw =
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001460 GEN8_CSB_WRITE_PTR(I915_READ(RING_CONTEXT_STATUS_PTR(engine)));
Michel Thierrydfc53c52015-09-28 13:25:12 +01001461
1462 /*
1463 * When the CSB registers are reset (also after power-up / gpu reset),
1464 * CSB write pointer is set to all 1's, which is not valid, use '5' in
1465 * this special case, so the first element read is CSB[0].
1466 */
1467 if (next_context_status_buffer_hw == GEN8_CSB_PTR_MASK)
1468 next_context_status_buffer_hw = (GEN8_CSB_ENTRIES - 1);
1469
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001470 engine->next_context_status_buffer = next_context_status_buffer_hw;
1471 DRM_DEBUG_DRIVER("Execlists enabled for %s\n", engine->name);
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001472
Tomas Elffc0768c2016-03-21 16:26:59 +00001473 intel_engine_init_hangcheck(engine);
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001474
Peter Antoine0ccdacf2016-04-13 15:03:25 +01001475 return intel_mocs_init_engine(engine);
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001476}
1477
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001478static int gen8_init_render_ring(struct intel_engine_cs *engine)
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001479{
Chris Wilsonc0336662016-05-06 15:40:21 +01001480 struct drm_i915_private *dev_priv = engine->i915;
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001481 int ret;
1482
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001483 ret = gen8_init_common_ring(engine);
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001484 if (ret)
1485 return ret;
1486
1487 /* We need to disable the AsyncFlip performance optimisations in order
1488 * to use MI_WAIT_FOR_EVENT within the CS. It should already be
1489 * programmed to '1' on all products.
1490 *
1491 * WaDisableAsyncFlipPerfMode:snb,ivb,hsw,vlv,bdw,chv
1492 */
1493 I915_WRITE(MI_MODE, _MASKED_BIT_ENABLE(ASYNC_FLIP_PERF_DISABLE));
1494
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001495 I915_WRITE(INSTPM, _MASKED_BIT_ENABLE(INSTPM_FORCE_ORDERING));
1496
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001497 return init_workarounds_ring(engine);
Oscar Mateo9b1136d2014-07-24 17:04:24 +01001498}
1499
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001500static int gen9_init_render_ring(struct intel_engine_cs *engine)
Damien Lespiau82ef8222015-02-09 19:33:08 +00001501{
1502 int ret;
1503
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001504 ret = gen8_init_common_ring(engine);
Damien Lespiau82ef8222015-02-09 19:33:08 +00001505 if (ret)
1506 return ret;
1507
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001508 return init_workarounds_ring(engine);
Damien Lespiau82ef8222015-02-09 19:33:08 +00001509}
1510
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001511static int intel_logical_ring_emit_pdps(struct drm_i915_gem_request *req)
1512{
1513 struct i915_hw_ppgtt *ppgtt = req->ctx->ppgtt;
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00001514 struct intel_engine_cs *engine = req->engine;
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001515 struct intel_ringbuffer *ringbuf = req->ringbuf;
1516 const int num_lri_cmds = GEN8_LEGACY_PDPES * 2;
1517 int i, ret;
1518
Chris Wilson987046a2016-04-28 09:56:46 +01001519 ret = intel_ring_begin(req, num_lri_cmds * 2 + 2);
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001520 if (ret)
1521 return ret;
1522
1523 intel_logical_ring_emit(ringbuf, MI_LOAD_REGISTER_IMM(num_lri_cmds));
1524 for (i = GEN8_LEGACY_PDPES - 1; i >= 0; i--) {
1525 const dma_addr_t pd_daddr = i915_page_dir_dma_addr(ppgtt, i);
1526
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00001527 intel_logical_ring_emit_reg(ringbuf,
1528 GEN8_RING_PDP_UDW(engine, i));
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001529 intel_logical_ring_emit(ringbuf, upper_32_bits(pd_daddr));
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00001530 intel_logical_ring_emit_reg(ringbuf,
1531 GEN8_RING_PDP_LDW(engine, i));
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001532 intel_logical_ring_emit(ringbuf, lower_32_bits(pd_daddr));
1533 }
1534
1535 intel_logical_ring_emit(ringbuf, MI_NOOP);
1536 intel_logical_ring_advance(ringbuf);
1537
1538 return 0;
1539}
1540
John Harrisonbe795fc2015-05-29 17:44:03 +01001541static int gen8_emit_bb_start(struct drm_i915_gem_request *req,
John Harrison8e004ef2015-02-13 11:48:10 +00001542 u64 offset, unsigned dispatch_flags)
Oscar Mateo15648582014-07-24 17:04:32 +01001543{
John Harrisonbe795fc2015-05-29 17:44:03 +01001544 struct intel_ringbuffer *ringbuf = req->ringbuf;
John Harrison8e004ef2015-02-13 11:48:10 +00001545 bool ppgtt = !(dispatch_flags & I915_DISPATCH_SECURE);
Oscar Mateo15648582014-07-24 17:04:32 +01001546 int ret;
1547
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001548 /* Don't rely in hw updating PDPs, specially in lite-restore.
1549 * Ideally, we should set Force PD Restore in ctx descriptor,
1550 * but we can't. Force Restore would be a second option, but
1551 * it is unsafe in case of lite-restore (because the ctx is
Michel Thierry2dba3232015-07-30 11:06:23 +01001552 * not idle). PML4 is allocated during ppgtt init so this is
1553 * not needed in 48-bit.*/
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001554 if (req->ctx->ppgtt &&
Tvrtko Ursulin666796d2016-03-16 11:00:39 +00001555 (intel_engine_flag(req->engine) & req->ctx->ppgtt->pd_dirty_rings)) {
Zhiyuan Lv331f38e2015-08-28 15:41:14 +08001556 if (!USES_FULL_48BIT_PPGTT(req->i915) &&
Chris Wilsonc0336662016-05-06 15:40:21 +01001557 !intel_vgpu_active(req->i915)) {
Michel Thierry2dba3232015-07-30 11:06:23 +01001558 ret = intel_logical_ring_emit_pdps(req);
1559 if (ret)
1560 return ret;
1561 }
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001562
Tvrtko Ursulin666796d2016-03-16 11:00:39 +00001563 req->ctx->ppgtt->pd_dirty_rings &= ~intel_engine_flag(req->engine);
Michel Thierry7a01a0a2015-06-26 13:46:14 +01001564 }
1565
Chris Wilson987046a2016-04-28 09:56:46 +01001566 ret = intel_ring_begin(req, 4);
Oscar Mateo15648582014-07-24 17:04:32 +01001567 if (ret)
1568 return ret;
1569
1570 /* FIXME(BDW): Address space and security selectors. */
Abdiel Janulgue69225282015-06-16 13:39:42 +03001571 intel_logical_ring_emit(ringbuf, MI_BATCH_BUFFER_START_GEN8 |
1572 (ppgtt<<8) |
1573 (dispatch_flags & I915_DISPATCH_RS ?
1574 MI_BATCH_RESOURCE_STREAMER : 0));
Oscar Mateo15648582014-07-24 17:04:32 +01001575 intel_logical_ring_emit(ringbuf, lower_32_bits(offset));
1576 intel_logical_ring_emit(ringbuf, upper_32_bits(offset));
1577 intel_logical_ring_emit(ringbuf, MI_NOOP);
1578 intel_logical_ring_advance(ringbuf);
1579
1580 return 0;
1581}
1582
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001583static bool gen8_logical_ring_get_irq(struct intel_engine_cs *engine)
Oscar Mateo73d477f2014-07-24 17:04:31 +01001584{
Chris Wilsonc0336662016-05-06 15:40:21 +01001585 struct drm_i915_private *dev_priv = engine->i915;
Oscar Mateo73d477f2014-07-24 17:04:31 +01001586 unsigned long flags;
1587
Daniel Vetter7cd512f2014-09-15 11:38:57 +02001588 if (WARN_ON(!intel_irqs_enabled(dev_priv)))
Oscar Mateo73d477f2014-07-24 17:04:31 +01001589 return false;
1590
1591 spin_lock_irqsave(&dev_priv->irq_lock, flags);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001592 if (engine->irq_refcount++ == 0) {
1593 I915_WRITE_IMR(engine,
1594 ~(engine->irq_enable_mask | engine->irq_keep_mask));
1595 POSTING_READ(RING_IMR(engine->mmio_base));
Oscar Mateo73d477f2014-07-24 17:04:31 +01001596 }
1597 spin_unlock_irqrestore(&dev_priv->irq_lock, flags);
1598
1599 return true;
1600}
1601
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001602static void gen8_logical_ring_put_irq(struct intel_engine_cs *engine)
Oscar Mateo73d477f2014-07-24 17:04:31 +01001603{
Chris Wilsonc0336662016-05-06 15:40:21 +01001604 struct drm_i915_private *dev_priv = engine->i915;
Oscar Mateo73d477f2014-07-24 17:04:31 +01001605 unsigned long flags;
1606
1607 spin_lock_irqsave(&dev_priv->irq_lock, flags);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001608 if (--engine->irq_refcount == 0) {
1609 I915_WRITE_IMR(engine, ~engine->irq_keep_mask);
1610 POSTING_READ(RING_IMR(engine->mmio_base));
Oscar Mateo73d477f2014-07-24 17:04:31 +01001611 }
1612 spin_unlock_irqrestore(&dev_priv->irq_lock, flags);
1613}
1614
John Harrison7deb4d32015-05-29 17:43:59 +01001615static int gen8_emit_flush(struct drm_i915_gem_request *request,
Oscar Mateo47122742014-07-24 17:04:28 +01001616 u32 invalidate_domains,
1617 u32 unused)
1618{
John Harrison7deb4d32015-05-29 17:43:59 +01001619 struct intel_ringbuffer *ringbuf = request->ringbuf;
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00001620 struct intel_engine_cs *engine = ringbuf->engine;
Chris Wilsonc0336662016-05-06 15:40:21 +01001621 struct drm_i915_private *dev_priv = request->i915;
Oscar Mateo47122742014-07-24 17:04:28 +01001622 uint32_t cmd;
1623 int ret;
1624
Chris Wilson987046a2016-04-28 09:56:46 +01001625 ret = intel_ring_begin(request, 4);
Oscar Mateo47122742014-07-24 17:04:28 +01001626 if (ret)
1627 return ret;
1628
1629 cmd = MI_FLUSH_DW + 1;
1630
Chris Wilsonf0a1fb12015-01-22 13:42:00 +00001631 /* We always require a command barrier so that subsequent
1632 * commands, such as breadcrumb interrupts, are strictly ordered
1633 * wrt the contents of the write cache being flushed to memory
1634 * (and thus being coherent from the CPU).
1635 */
1636 cmd |= MI_FLUSH_DW_STORE_INDEX | MI_FLUSH_DW_OP_STOREDW;
1637
1638 if (invalidate_domains & I915_GEM_GPU_DOMAINS) {
1639 cmd |= MI_INVALIDATE_TLB;
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00001640 if (engine == &dev_priv->engine[VCS])
Chris Wilsonf0a1fb12015-01-22 13:42:00 +00001641 cmd |= MI_INVALIDATE_BSD;
Oscar Mateo47122742014-07-24 17:04:28 +01001642 }
1643
1644 intel_logical_ring_emit(ringbuf, cmd);
1645 intel_logical_ring_emit(ringbuf,
1646 I915_GEM_HWS_SCRATCH_ADDR |
1647 MI_FLUSH_DW_USE_GTT);
1648 intel_logical_ring_emit(ringbuf, 0); /* upper addr */
1649 intel_logical_ring_emit(ringbuf, 0); /* value */
1650 intel_logical_ring_advance(ringbuf);
1651
1652 return 0;
1653}
1654
John Harrison7deb4d32015-05-29 17:43:59 +01001655static int gen8_emit_flush_render(struct drm_i915_gem_request *request,
Oscar Mateo47122742014-07-24 17:04:28 +01001656 u32 invalidate_domains,
1657 u32 flush_domains)
1658{
John Harrison7deb4d32015-05-29 17:43:59 +01001659 struct intel_ringbuffer *ringbuf = request->ringbuf;
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00001660 struct intel_engine_cs *engine = ringbuf->engine;
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00001661 u32 scratch_addr = engine->scratch.gtt_offset + 2 * CACHELINE_BYTES;
Ben Widawsky1a5a9ce2015-12-17 09:49:57 -08001662 bool vf_flush_wa = false;
Oscar Mateo47122742014-07-24 17:04:28 +01001663 u32 flags = 0;
1664 int ret;
1665
1666 flags |= PIPE_CONTROL_CS_STALL;
1667
1668 if (flush_domains) {
1669 flags |= PIPE_CONTROL_RENDER_TARGET_CACHE_FLUSH;
1670 flags |= PIPE_CONTROL_DEPTH_CACHE_FLUSH;
Francisco Jerez965fd602016-01-13 18:59:39 -08001671 flags |= PIPE_CONTROL_DC_FLUSH_ENABLE;
Chris Wilson40a24482015-08-21 16:08:41 +01001672 flags |= PIPE_CONTROL_FLUSH_ENABLE;
Oscar Mateo47122742014-07-24 17:04:28 +01001673 }
1674
1675 if (invalidate_domains) {
1676 flags |= PIPE_CONTROL_TLB_INVALIDATE;
1677 flags |= PIPE_CONTROL_INSTRUCTION_CACHE_INVALIDATE;
1678 flags |= PIPE_CONTROL_TEXTURE_CACHE_INVALIDATE;
1679 flags |= PIPE_CONTROL_VF_CACHE_INVALIDATE;
1680 flags |= PIPE_CONTROL_CONST_CACHE_INVALIDATE;
1681 flags |= PIPE_CONTROL_STATE_CACHE_INVALIDATE;
1682 flags |= PIPE_CONTROL_QW_WRITE;
1683 flags |= PIPE_CONTROL_GLOBAL_GTT_IVB;
Oscar Mateo47122742014-07-24 17:04:28 +01001684
Ben Widawsky1a5a9ce2015-12-17 09:49:57 -08001685 /*
1686 * On GEN9: before VF_CACHE_INVALIDATE we need to emit a NULL
1687 * pipe control.
1688 */
Chris Wilsonc0336662016-05-06 15:40:21 +01001689 if (IS_GEN9(request->i915))
Ben Widawsky1a5a9ce2015-12-17 09:49:57 -08001690 vf_flush_wa = true;
1691 }
Imre Deak9647ff32015-01-25 13:27:11 -08001692
Chris Wilson987046a2016-04-28 09:56:46 +01001693 ret = intel_ring_begin(request, vf_flush_wa ? 12 : 6);
Oscar Mateo47122742014-07-24 17:04:28 +01001694 if (ret)
1695 return ret;
1696
Imre Deak9647ff32015-01-25 13:27:11 -08001697 if (vf_flush_wa) {
1698 intel_logical_ring_emit(ringbuf, GFX_OP_PIPE_CONTROL(6));
1699 intel_logical_ring_emit(ringbuf, 0);
1700 intel_logical_ring_emit(ringbuf, 0);
1701 intel_logical_ring_emit(ringbuf, 0);
1702 intel_logical_ring_emit(ringbuf, 0);
1703 intel_logical_ring_emit(ringbuf, 0);
1704 }
1705
Oscar Mateo47122742014-07-24 17:04:28 +01001706 intel_logical_ring_emit(ringbuf, GFX_OP_PIPE_CONTROL(6));
1707 intel_logical_ring_emit(ringbuf, flags);
1708 intel_logical_ring_emit(ringbuf, scratch_addr);
1709 intel_logical_ring_emit(ringbuf, 0);
1710 intel_logical_ring_emit(ringbuf, 0);
1711 intel_logical_ring_emit(ringbuf, 0);
1712 intel_logical_ring_advance(ringbuf);
1713
1714 return 0;
1715}
1716
Chris Wilsonc04e0f32016-04-09 10:57:54 +01001717static u32 gen8_get_seqno(struct intel_engine_cs *engine)
Oscar Mateoe94e37a2014-07-24 17:04:25 +01001718{
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001719 return intel_read_status_page(engine, I915_GEM_HWS_INDEX);
Oscar Mateoe94e37a2014-07-24 17:04:25 +01001720}
1721
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001722static void gen8_set_seqno(struct intel_engine_cs *engine, u32 seqno)
Oscar Mateoe94e37a2014-07-24 17:04:25 +01001723{
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001724 intel_write_status_page(engine, I915_GEM_HWS_INDEX, seqno);
Oscar Mateoe94e37a2014-07-24 17:04:25 +01001725}
1726
Chris Wilsonc04e0f32016-04-09 10:57:54 +01001727static void bxt_a_seqno_barrier(struct intel_engine_cs *engine)
Imre Deak319404d2015-08-14 18:35:27 +03001728{
Imre Deak319404d2015-08-14 18:35:27 +03001729 /*
1730 * On BXT A steppings there is a HW coherency issue whereby the
1731 * MI_STORE_DATA_IMM storing the completed request's seqno
1732 * occasionally doesn't invalidate the CPU cache. Work around this by
1733 * clflushing the corresponding cacheline whenever the caller wants
1734 * the coherency to be guaranteed. Note that this cacheline is known
1735 * to be clean at this point, since we only write it in
1736 * bxt_a_set_seqno(), where we also do a clflush after the write. So
1737 * this clflush in practice becomes an invalidate operation.
1738 */
Chris Wilsonc04e0f32016-04-09 10:57:54 +01001739 intel_flush_status_page(engine, I915_GEM_HWS_INDEX);
Imre Deak319404d2015-08-14 18:35:27 +03001740}
1741
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001742static void bxt_a_set_seqno(struct intel_engine_cs *engine, u32 seqno)
Imre Deak319404d2015-08-14 18:35:27 +03001743{
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001744 intel_write_status_page(engine, I915_GEM_HWS_INDEX, seqno);
Imre Deak319404d2015-08-14 18:35:27 +03001745
1746 /* See bxt_a_get_seqno() explaining the reason for the clflush. */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001747 intel_flush_status_page(engine, I915_GEM_HWS_INDEX);
Imre Deak319404d2015-08-14 18:35:27 +03001748}
1749
Chris Wilson7c17d372016-01-20 15:43:35 +02001750/*
1751 * Reserve space for 2 NOOPs at the end of each request to be
1752 * used as a workaround for not being allowed to do lite
1753 * restore with HEAD==TAIL (WaIdleLiteRestore).
1754 */
1755#define WA_TAIL_DWORDS 2
1756
John Harrisonc4e76632015-05-29 17:44:01 +01001757static int gen8_emit_request(struct drm_i915_gem_request *request)
Oscar Mateo4da46e12014-07-24 17:04:27 +01001758{
John Harrisonc4e76632015-05-29 17:44:01 +01001759 struct intel_ringbuffer *ringbuf = request->ringbuf;
Oscar Mateo4da46e12014-07-24 17:04:27 +01001760 int ret;
1761
Chris Wilson987046a2016-04-28 09:56:46 +01001762 ret = intel_ring_begin(request, 6 + WA_TAIL_DWORDS);
Oscar Mateo4da46e12014-07-24 17:04:27 +01001763 if (ret)
1764 return ret;
1765
Chris Wilson7c17d372016-01-20 15:43:35 +02001766 /* w/a: bit 5 needs to be zero for MI_FLUSH_DW address. */
1767 BUILD_BUG_ON(I915_GEM_HWS_INDEX_ADDR & (1 << 5));
Oscar Mateo4da46e12014-07-24 17:04:27 +01001768
Oscar Mateo4da46e12014-07-24 17:04:27 +01001769 intel_logical_ring_emit(ringbuf,
Chris Wilson7c17d372016-01-20 15:43:35 +02001770 (MI_FLUSH_DW + 1) | MI_FLUSH_DW_OP_STOREDW);
1771 intel_logical_ring_emit(ringbuf,
Chris Wilsona58c01a2016-04-29 13:18:21 +01001772 intel_hws_seqno_address(request->engine) |
Chris Wilson7c17d372016-01-20 15:43:35 +02001773 MI_FLUSH_DW_USE_GTT);
Oscar Mateo4da46e12014-07-24 17:04:27 +01001774 intel_logical_ring_emit(ringbuf, 0);
John Harrisonc4e76632015-05-29 17:44:01 +01001775 intel_logical_ring_emit(ringbuf, i915_gem_request_get_seqno(request));
Oscar Mateo4da46e12014-07-24 17:04:27 +01001776 intel_logical_ring_emit(ringbuf, MI_USER_INTERRUPT);
1777 intel_logical_ring_emit(ringbuf, MI_NOOP);
Chris Wilson7c17d372016-01-20 15:43:35 +02001778 return intel_logical_ring_advance_and_submit(request);
1779}
Oscar Mateo4da46e12014-07-24 17:04:27 +01001780
Chris Wilson7c17d372016-01-20 15:43:35 +02001781static int gen8_emit_request_render(struct drm_i915_gem_request *request)
1782{
1783 struct intel_ringbuffer *ringbuf = request->ringbuf;
1784 int ret;
1785
Chris Wilson987046a2016-04-28 09:56:46 +01001786 ret = intel_ring_begin(request, 8 + WA_TAIL_DWORDS);
Chris Wilson7c17d372016-01-20 15:43:35 +02001787 if (ret)
1788 return ret;
1789
Michał Winiarskice81a652016-04-12 15:51:55 +02001790 /* We're using qword write, seqno should be aligned to 8 bytes. */
1791 BUILD_BUG_ON(I915_GEM_HWS_INDEX & 1);
1792
Chris Wilson7c17d372016-01-20 15:43:35 +02001793 /* w/a for post sync ops following a GPGPU operation we
1794 * need a prior CS_STALL, which is emitted by the flush
1795 * following the batch.
Michel Thierry53292cd2015-04-15 18:11:33 +01001796 */
Michał Winiarskice81a652016-04-12 15:51:55 +02001797 intel_logical_ring_emit(ringbuf, GFX_OP_PIPE_CONTROL(6));
Chris Wilson7c17d372016-01-20 15:43:35 +02001798 intel_logical_ring_emit(ringbuf,
1799 (PIPE_CONTROL_GLOBAL_GTT_IVB |
1800 PIPE_CONTROL_CS_STALL |
1801 PIPE_CONTROL_QW_WRITE));
Chris Wilsona58c01a2016-04-29 13:18:21 +01001802 intel_logical_ring_emit(ringbuf,
1803 intel_hws_seqno_address(request->engine));
Chris Wilson7c17d372016-01-20 15:43:35 +02001804 intel_logical_ring_emit(ringbuf, 0);
1805 intel_logical_ring_emit(ringbuf, i915_gem_request_get_seqno(request));
Michał Winiarskice81a652016-04-12 15:51:55 +02001806 /* We're thrashing one dword of HWS. */
1807 intel_logical_ring_emit(ringbuf, 0);
Chris Wilson7c17d372016-01-20 15:43:35 +02001808 intel_logical_ring_emit(ringbuf, MI_USER_INTERRUPT);
Michał Winiarskice81a652016-04-12 15:51:55 +02001809 intel_logical_ring_emit(ringbuf, MI_NOOP);
Chris Wilson7c17d372016-01-20 15:43:35 +02001810 return intel_logical_ring_advance_and_submit(request);
Oscar Mateo4da46e12014-07-24 17:04:27 +01001811}
1812
John Harrisonbe013632015-05-29 17:43:45 +01001813static int intel_lr_context_render_state_init(struct drm_i915_gem_request *req)
Damien Lespiaucef437a2015-02-10 19:32:19 +00001814{
Damien Lespiaucef437a2015-02-10 19:32:19 +00001815 struct render_state so;
Damien Lespiaucef437a2015-02-10 19:32:19 +00001816 int ret;
1817
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00001818 ret = i915_gem_render_state_prepare(req->engine, &so);
Damien Lespiaucef437a2015-02-10 19:32:19 +00001819 if (ret)
1820 return ret;
1821
1822 if (so.rodata == NULL)
1823 return 0;
1824
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00001825 ret = req->engine->emit_bb_start(req, so.ggtt_offset,
John Harrisonbe013632015-05-29 17:43:45 +01001826 I915_DISPATCH_SECURE);
Damien Lespiaucef437a2015-02-10 19:32:19 +00001827 if (ret)
1828 goto out;
1829
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00001830 ret = req->engine->emit_bb_start(req,
Arun Siluvery84e81022015-07-20 10:46:10 +01001831 (so.ggtt_offset + so.aux_batch_offset),
1832 I915_DISPATCH_SECURE);
1833 if (ret)
1834 goto out;
1835
John Harrisonb2af0372015-05-29 17:43:50 +01001836 i915_vma_move_to_active(i915_gem_obj_to_ggtt(so.obj), req);
Damien Lespiaucef437a2015-02-10 19:32:19 +00001837
Damien Lespiaucef437a2015-02-10 19:32:19 +00001838out:
1839 i915_gem_render_state_fini(&so);
1840 return ret;
1841}
1842
John Harrison87531812015-05-29 17:43:44 +01001843static int gen8_init_rcs_context(struct drm_i915_gem_request *req)
Thomas Daniele7778be2014-12-02 12:50:48 +00001844{
1845 int ret;
1846
John Harrisone2be4fa2015-05-29 17:43:54 +01001847 ret = intel_logical_ring_workarounds_emit(req);
Thomas Daniele7778be2014-12-02 12:50:48 +00001848 if (ret)
1849 return ret;
1850
Peter Antoine3bbaba02015-07-10 20:13:11 +03001851 ret = intel_rcs_context_init_mocs(req);
1852 /*
1853 * Failing to program the MOCS is non-fatal.The system will not
1854 * run at peak performance. So generate an error and carry on.
1855 */
1856 if (ret)
1857 DRM_ERROR("MOCS failed to program: expect performance issues.\n");
1858
John Harrisonbe013632015-05-29 17:43:45 +01001859 return intel_lr_context_render_state_init(req);
Thomas Daniele7778be2014-12-02 12:50:48 +00001860}
1861
Oscar Mateo73e4d072014-07-24 17:04:48 +01001862/**
1863 * intel_logical_ring_cleanup() - deallocate the Engine Command Streamer
1864 *
1865 * @ring: Engine Command Streamer.
1866 *
1867 */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001868void intel_logical_ring_cleanup(struct intel_engine_cs *engine)
Oscar Mateo454afeb2014-07-24 17:04:22 +01001869{
John Harrison6402c332014-10-31 12:00:26 +00001870 struct drm_i915_private *dev_priv;
Oscar Mateo9832b9d2014-07-24 17:04:30 +01001871
Tvrtko Ursulin117897f2016-03-16 11:00:40 +00001872 if (!intel_engine_initialized(engine))
Oscar Mateo48d82382014-07-24 17:04:23 +01001873 return;
1874
Tvrtko Ursulin27af5ee2016-04-04 12:11:56 +01001875 /*
1876 * Tasklet cannot be active at this point due intel_mark_active/idle
1877 * so this is just for documentation.
1878 */
1879 if (WARN_ON(test_bit(TASKLET_STATE_SCHED, &engine->irq_tasklet.state)))
1880 tasklet_kill(&engine->irq_tasklet);
1881
Chris Wilsonc0336662016-05-06 15:40:21 +01001882 dev_priv = engine->i915;
John Harrison6402c332014-10-31 12:00:26 +00001883
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001884 if (engine->buffer) {
1885 intel_logical_ring_stop(engine);
1886 WARN_ON((I915_READ_MODE(engine) & MODE_IDLE) == 0);
Dave Gordonb0366a52015-12-08 15:02:36 +00001887 }
Oscar Mateo48d82382014-07-24 17:04:23 +01001888
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001889 if (engine->cleanup)
1890 engine->cleanup(engine);
Oscar Mateo48d82382014-07-24 17:04:23 +01001891
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001892 i915_cmd_parser_fini_ring(engine);
1893 i915_gem_batch_pool_fini(&engine->batch_pool);
Oscar Mateo48d82382014-07-24 17:04:23 +01001894
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001895 if (engine->status_page.obj) {
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01001896 i915_gem_object_unpin_map(engine->status_page.obj);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001897 engine->status_page.obj = NULL;
Oscar Mateo48d82382014-07-24 17:04:23 +01001898 }
Chris Wilson24f1d3c2016-04-28 09:56:53 +01001899 intel_lr_context_unpin(dev_priv->kernel_context, engine);
Arun Siluvery17ee9502015-06-19 19:07:01 +01001900
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001901 engine->idle_lite_restore_wa = 0;
1902 engine->disable_lite_restore_wa = false;
1903 engine->ctx_desc_template = 0;
Tvrtko Ursulinca825802016-01-15 15:10:27 +00001904
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001905 lrc_destroy_wa_ctx_obj(engine);
Chris Wilsonc0336662016-05-06 15:40:21 +01001906 engine->i915 = NULL;
Oscar Mateo454afeb2014-07-24 17:04:22 +01001907}
1908
Tvrtko Ursulinc9cacf92016-01-12 17:32:34 +00001909static void
Chris Wilsone1382ef2016-05-06 15:40:20 +01001910logical_ring_default_vfuncs(struct intel_engine_cs *engine)
Tvrtko Ursulinc9cacf92016-01-12 17:32:34 +00001911{
1912 /* Default vfuncs which can be overriden by each engine. */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001913 engine->init_hw = gen8_init_common_ring;
1914 engine->emit_request = gen8_emit_request;
1915 engine->emit_flush = gen8_emit_flush;
1916 engine->irq_get = gen8_logical_ring_get_irq;
1917 engine->irq_put = gen8_logical_ring_put_irq;
1918 engine->emit_bb_start = gen8_emit_bb_start;
Chris Wilsonc04e0f32016-04-09 10:57:54 +01001919 engine->get_seqno = gen8_get_seqno;
1920 engine->set_seqno = gen8_set_seqno;
Chris Wilsonc0336662016-05-06 15:40:21 +01001921 if (IS_BXT_REVID(engine->i915, 0, BXT_REVID_A1)) {
Chris Wilsonc04e0f32016-04-09 10:57:54 +01001922 engine->irq_seqno_barrier = bxt_a_seqno_barrier;
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001923 engine->set_seqno = bxt_a_set_seqno;
Tvrtko Ursulinc9cacf92016-01-12 17:32:34 +00001924 }
1925}
1926
Tvrtko Ursulind9f3af92016-01-12 17:32:35 +00001927static inline void
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001928logical_ring_default_irqs(struct intel_engine_cs *engine, unsigned shift)
Tvrtko Ursulind9f3af92016-01-12 17:32:35 +00001929{
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00001930 engine->irq_enable_mask = GT_RENDER_USER_INTERRUPT << shift;
1931 engine->irq_keep_mask = GT_CONTEXT_SWITCH_INTERRUPT << shift;
Chris Wilsone1382ef2016-05-06 15:40:20 +01001932 init_waitqueue_head(&engine->irq_queue);
Tvrtko Ursulind9f3af92016-01-12 17:32:35 +00001933}
1934
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01001935static int
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01001936lrc_setup_hws(struct intel_engine_cs *engine,
1937 struct drm_i915_gem_object *dctx_obj)
1938{
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01001939 void *hws;
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01001940
1941 /* The HWSP is part of the default context object in LRC mode. */
1942 engine->status_page.gfx_addr = i915_gem_obj_ggtt_offset(dctx_obj) +
1943 LRC_PPHWSP_PN * PAGE_SIZE;
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01001944 hws = i915_gem_object_pin_map(dctx_obj);
1945 if (IS_ERR(hws))
1946 return PTR_ERR(hws);
1947 engine->status_page.page_addr = hws + LRC_PPHWSP_PN * PAGE_SIZE;
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01001948 engine->status_page.obj = dctx_obj;
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01001949
1950 return 0;
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01001951}
1952
Chris Wilsone1382ef2016-05-06 15:40:20 +01001953static const struct logical_ring_info {
1954 const char *name;
1955 unsigned exec_id;
1956 unsigned guc_id;
1957 u32 mmio_base;
1958 unsigned irq_shift;
1959} logical_rings[] = {
1960 [RCS] = {
1961 .name = "render ring",
1962 .exec_id = I915_EXEC_RENDER,
1963 .guc_id = GUC_RENDER_ENGINE,
1964 .mmio_base = RENDER_RING_BASE,
1965 .irq_shift = GEN8_RCS_IRQ_SHIFT,
1966 },
1967 [BCS] = {
1968 .name = "blitter ring",
1969 .exec_id = I915_EXEC_BLT,
1970 .guc_id = GUC_BLITTER_ENGINE,
1971 .mmio_base = BLT_RING_BASE,
1972 .irq_shift = GEN8_BCS_IRQ_SHIFT,
1973 },
1974 [VCS] = {
1975 .name = "bsd ring",
1976 .exec_id = I915_EXEC_BSD,
1977 .guc_id = GUC_VIDEO_ENGINE,
1978 .mmio_base = GEN6_BSD_RING_BASE,
1979 .irq_shift = GEN8_VCS1_IRQ_SHIFT,
1980 },
1981 [VCS2] = {
1982 .name = "bsd2 ring",
1983 .exec_id = I915_EXEC_BSD,
1984 .guc_id = GUC_VIDEO_ENGINE2,
1985 .mmio_base = GEN8_BSD2_RING_BASE,
1986 .irq_shift = GEN8_VCS2_IRQ_SHIFT,
1987 },
1988 [VECS] = {
1989 .name = "video enhancement ring",
1990 .exec_id = I915_EXEC_VEBOX,
1991 .guc_id = GUC_VIDEOENHANCE_ENGINE,
1992 .mmio_base = VEBOX_RING_BASE,
1993 .irq_shift = GEN8_VECS_IRQ_SHIFT,
1994 },
1995};
1996
1997static struct intel_engine_cs *
1998logical_ring_setup(struct drm_device *dev, enum intel_engine_id id)
Oscar Mateo454afeb2014-07-24 17:04:22 +01001999{
Chris Wilsone1382ef2016-05-06 15:40:20 +01002000 const struct logical_ring_info *info = &logical_rings[id];
Tvrtko Ursulin37566852016-04-12 14:37:31 +01002001 struct drm_i915_private *dev_priv = to_i915(dev);
Chris Wilsone1382ef2016-05-06 15:40:20 +01002002 struct intel_engine_cs *engine = &dev_priv->engine[id];
Tvrtko Ursulin37566852016-04-12 14:37:31 +01002003 enum forcewake_domains fw_domains;
Chris Wilsone1382ef2016-05-06 15:40:20 +01002004
2005 engine->id = id;
2006 engine->name = info->name;
2007 engine->exec_id = info->exec_id;
2008 engine->guc_id = info->guc_id;
2009 engine->mmio_base = info->mmio_base;
2010
Chris Wilsonc0336662016-05-06 15:40:21 +01002011 engine->i915 = dev_priv;
Oscar Mateo48d82382014-07-24 17:04:23 +01002012
2013 /* Intentionally left blank. */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002014 engine->buffer = NULL;
Oscar Mateo48d82382014-07-24 17:04:23 +01002015
Tvrtko Ursulin37566852016-04-12 14:37:31 +01002016 fw_domains = intel_uncore_forcewake_for_reg(dev_priv,
2017 RING_ELSP(engine),
2018 FW_REG_WRITE);
2019
2020 fw_domains |= intel_uncore_forcewake_for_reg(dev_priv,
2021 RING_CONTEXT_STATUS_PTR(engine),
2022 FW_REG_READ | FW_REG_WRITE);
2023
2024 fw_domains |= intel_uncore_forcewake_for_reg(dev_priv,
2025 RING_CONTEXT_STATUS_BUF_BASE(engine),
2026 FW_REG_READ);
2027
2028 engine->fw_domains = fw_domains;
2029
Chris Wilsone1382ef2016-05-06 15:40:20 +01002030 INIT_LIST_HEAD(&engine->active_list);
2031 INIT_LIST_HEAD(&engine->request_list);
2032 INIT_LIST_HEAD(&engine->buffers);
2033 INIT_LIST_HEAD(&engine->execlist_queue);
2034 spin_lock_init(&engine->execlist_lock);
2035
2036 tasklet_init(&engine->irq_tasklet,
2037 intel_lrc_irq_handler, (unsigned long)engine);
2038
2039 logical_ring_init_platform_invariants(engine);
2040 logical_ring_default_vfuncs(engine);
2041 logical_ring_default_irqs(engine, info->irq_shift);
2042
2043 intel_engine_init_hangcheck(engine);
Chris Wilsonc0336662016-05-06 15:40:21 +01002044 i915_gem_batch_pool_init(dev, &engine->batch_pool);
Chris Wilsone1382ef2016-05-06 15:40:20 +01002045
2046 return engine;
2047}
2048
2049static int
2050logical_ring_init(struct intel_engine_cs *engine)
2051{
Chris Wilsonc0336662016-05-06 15:40:21 +01002052 struct intel_context *dctx = engine->i915->kernel_context;
Chris Wilsone1382ef2016-05-06 15:40:20 +01002053 int ret;
2054
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002055 ret = i915_cmd_parser_init_ring(engine);
Oscar Mateo48d82382014-07-24 17:04:23 +01002056 if (ret)
Dave Gordonb0366a52015-12-08 15:02:36 +00002057 goto error;
Oscar Mateo48d82382014-07-24 17:04:23 +01002058
Chris Wilson978f1e02016-04-28 09:56:54 +01002059 ret = execlists_context_deferred_alloc(dctx, engine);
Nick Hoathe84fe802015-09-11 12:53:46 +01002060 if (ret)
Dave Gordonb0366a52015-12-08 15:02:36 +00002061 goto error;
Nick Hoathe84fe802015-09-11 12:53:46 +01002062
2063 /* As this is the default context, always pin it */
Chris Wilson24f1d3c2016-04-28 09:56:53 +01002064 ret = intel_lr_context_pin(dctx, engine);
Nick Hoathe84fe802015-09-11 12:53:46 +01002065 if (ret) {
Chris Wilson24f1d3c2016-04-28 09:56:53 +01002066 DRM_ERROR("Failed to pin context for %s: %d\n",
2067 engine->name, ret);
Dave Gordonb0366a52015-12-08 15:02:36 +00002068 goto error;
Nick Hoathe84fe802015-09-11 12:53:46 +01002069 }
Oscar Mateo564ddb22014-08-21 11:40:54 +01002070
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01002071 /* And setup the hardware status page. */
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002072 ret = lrc_setup_hws(engine, dctx->engine[engine->id].state);
2073 if (ret) {
2074 DRM_ERROR("Failed to set up hws %s: %d\n", engine->name, ret);
2075 goto error;
2076 }
Tvrtko Ursulin04794ad2016-04-12 15:40:41 +01002077
Dave Gordonb0366a52015-12-08 15:02:36 +00002078 return 0;
2079
2080error:
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002081 intel_logical_ring_cleanup(engine);
Oscar Mateo564ddb22014-08-21 11:40:54 +01002082 return ret;
Oscar Mateo454afeb2014-07-24 17:04:22 +01002083}
2084
2085static int logical_render_ring_init(struct drm_device *dev)
2086{
Chris Wilsone1382ef2016-05-06 15:40:20 +01002087 struct intel_engine_cs *engine = logical_ring_setup(dev, RCS);
Daniel Vetter99be1df2014-11-20 00:33:06 +01002088 int ret;
Oscar Mateo454afeb2014-07-24 17:04:22 +01002089
Oscar Mateo73d477f2014-07-24 17:04:31 +01002090 if (HAS_L3_DPF(dev))
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002091 engine->irq_keep_mask |= GT_RENDER_L3_PARITY_ERROR_INTERRUPT;
Oscar Mateo454afeb2014-07-24 17:04:22 +01002092
Tvrtko Ursulinc9cacf92016-01-12 17:32:34 +00002093 /* Override some for render ring. */
Damien Lespiau82ef8222015-02-09 19:33:08 +00002094 if (INTEL_INFO(dev)->gen >= 9)
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002095 engine->init_hw = gen9_init_render_ring;
Damien Lespiau82ef8222015-02-09 19:33:08 +00002096 else
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002097 engine->init_hw = gen8_init_render_ring;
2098 engine->init_context = gen8_init_rcs_context;
2099 engine->cleanup = intel_fini_pipe_control;
2100 engine->emit_flush = gen8_emit_flush_render;
2101 engine->emit_request = gen8_emit_request_render;
Oscar Mateo9b1136d2014-07-24 17:04:24 +01002102
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002103 ret = intel_init_pipe_control(engine);
Daniel Vetter99be1df2014-11-20 00:33:06 +01002104 if (ret)
2105 return ret;
2106
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002107 ret = intel_init_workaround_bb(engine);
Arun Siluvery17ee9502015-06-19 19:07:01 +01002108 if (ret) {
2109 /*
2110 * We continue even if we fail to initialize WA batch
2111 * because we only expect rare glitches but nothing
2112 * critical to prevent us from using GPU
2113 */
2114 DRM_ERROR("WA batch buffer initialization failed: %d\n",
2115 ret);
2116 }
2117
Chris Wilsone1382ef2016-05-06 15:40:20 +01002118 ret = logical_ring_init(engine);
Arun Siluveryc4db7592015-06-19 18:37:11 +01002119 if (ret) {
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002120 lrc_destroy_wa_ctx_obj(engine);
Arun Siluveryc4db7592015-06-19 18:37:11 +01002121 }
Arun Siluvery17ee9502015-06-19 19:07:01 +01002122
2123 return ret;
Oscar Mateo454afeb2014-07-24 17:04:22 +01002124}
2125
2126static int logical_bsd_ring_init(struct drm_device *dev)
2127{
Chris Wilsone1382ef2016-05-06 15:40:20 +01002128 struct intel_engine_cs *engine = logical_ring_setup(dev, VCS);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002129
Chris Wilsone1382ef2016-05-06 15:40:20 +01002130 return logical_ring_init(engine);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002131}
2132
2133static int logical_bsd2_ring_init(struct drm_device *dev)
2134{
Chris Wilsone1382ef2016-05-06 15:40:20 +01002135 struct intel_engine_cs *engine = logical_ring_setup(dev, VCS2);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002136
Chris Wilsone1382ef2016-05-06 15:40:20 +01002137 return logical_ring_init(engine);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002138}
2139
2140static int logical_blt_ring_init(struct drm_device *dev)
2141{
Chris Wilsone1382ef2016-05-06 15:40:20 +01002142 struct intel_engine_cs *engine = logical_ring_setup(dev, BCS);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002143
Chris Wilsone1382ef2016-05-06 15:40:20 +01002144 return logical_ring_init(engine);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002145}
2146
2147static int logical_vebox_ring_init(struct drm_device *dev)
2148{
Chris Wilsone1382ef2016-05-06 15:40:20 +01002149 struct intel_engine_cs *engine = logical_ring_setup(dev, VECS);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002150
Chris Wilsone1382ef2016-05-06 15:40:20 +01002151 return logical_ring_init(engine);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002152}
2153
Oscar Mateo73e4d072014-07-24 17:04:48 +01002154/**
2155 * intel_logical_rings_init() - allocate, populate and init the Engine Command Streamers
2156 * @dev: DRM device.
2157 *
2158 * This function inits the engines for an Execlists submission style (the equivalent in the
Tvrtko Ursulin117897f2016-03-16 11:00:40 +00002159 * legacy ringbuffer submission world would be i915_gem_init_engines). It does it only for
Oscar Mateo73e4d072014-07-24 17:04:48 +01002160 * those engines that are present in the hardware.
2161 *
2162 * Return: non-zero if the initialization failed.
2163 */
Oscar Mateo454afeb2014-07-24 17:04:22 +01002164int intel_logical_rings_init(struct drm_device *dev)
2165{
2166 struct drm_i915_private *dev_priv = dev->dev_private;
2167 int ret;
2168
2169 ret = logical_render_ring_init(dev);
2170 if (ret)
2171 return ret;
2172
2173 if (HAS_BSD(dev)) {
2174 ret = logical_bsd_ring_init(dev);
2175 if (ret)
2176 goto cleanup_render_ring;
2177 }
2178
2179 if (HAS_BLT(dev)) {
2180 ret = logical_blt_ring_init(dev);
2181 if (ret)
2182 goto cleanup_bsd_ring;
2183 }
2184
2185 if (HAS_VEBOX(dev)) {
2186 ret = logical_vebox_ring_init(dev);
2187 if (ret)
2188 goto cleanup_blt_ring;
2189 }
2190
2191 if (HAS_BSD2(dev)) {
2192 ret = logical_bsd2_ring_init(dev);
2193 if (ret)
2194 goto cleanup_vebox_ring;
2195 }
2196
Oscar Mateo454afeb2014-07-24 17:04:22 +01002197 return 0;
2198
Oscar Mateo454afeb2014-07-24 17:04:22 +01002199cleanup_vebox_ring:
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00002200 intel_logical_ring_cleanup(&dev_priv->engine[VECS]);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002201cleanup_blt_ring:
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00002202 intel_logical_ring_cleanup(&dev_priv->engine[BCS]);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002203cleanup_bsd_ring:
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00002204 intel_logical_ring_cleanup(&dev_priv->engine[VCS]);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002205cleanup_render_ring:
Tvrtko Ursulin4a570db2016-03-16 11:00:38 +00002206 intel_logical_ring_cleanup(&dev_priv->engine[RCS]);
Oscar Mateo454afeb2014-07-24 17:04:22 +01002207
2208 return ret;
2209}
2210
Jeff McGee0cea6502015-02-13 10:27:56 -06002211static u32
Chris Wilsonc0336662016-05-06 15:40:21 +01002212make_rpcs(struct drm_i915_private *dev_priv)
Jeff McGee0cea6502015-02-13 10:27:56 -06002213{
2214 u32 rpcs = 0;
2215
2216 /*
2217 * No explicit RPCS request is needed to ensure full
2218 * slice/subslice/EU enablement prior to Gen9.
2219 */
Chris Wilsonc0336662016-05-06 15:40:21 +01002220 if (INTEL_GEN(dev_priv) < 9)
Jeff McGee0cea6502015-02-13 10:27:56 -06002221 return 0;
2222
2223 /*
2224 * Starting in Gen9, render power gating can leave
2225 * slice/subslice/EU in a partially enabled state. We
2226 * must make an explicit request through RPCS for full
2227 * enablement.
2228 */
Chris Wilsonc0336662016-05-06 15:40:21 +01002229 if (INTEL_INFO(dev_priv)->has_slice_pg) {
Jeff McGee0cea6502015-02-13 10:27:56 -06002230 rpcs |= GEN8_RPCS_S_CNT_ENABLE;
Chris Wilsonc0336662016-05-06 15:40:21 +01002231 rpcs |= INTEL_INFO(dev_priv)->slice_total <<
Jeff McGee0cea6502015-02-13 10:27:56 -06002232 GEN8_RPCS_S_CNT_SHIFT;
2233 rpcs |= GEN8_RPCS_ENABLE;
2234 }
2235
Chris Wilsonc0336662016-05-06 15:40:21 +01002236 if (INTEL_INFO(dev_priv)->has_subslice_pg) {
Jeff McGee0cea6502015-02-13 10:27:56 -06002237 rpcs |= GEN8_RPCS_SS_CNT_ENABLE;
Chris Wilsonc0336662016-05-06 15:40:21 +01002238 rpcs |= INTEL_INFO(dev_priv)->subslice_per_slice <<
Jeff McGee0cea6502015-02-13 10:27:56 -06002239 GEN8_RPCS_SS_CNT_SHIFT;
2240 rpcs |= GEN8_RPCS_ENABLE;
2241 }
2242
Chris Wilsonc0336662016-05-06 15:40:21 +01002243 if (INTEL_INFO(dev_priv)->has_eu_pg) {
2244 rpcs |= INTEL_INFO(dev_priv)->eu_per_subslice <<
Jeff McGee0cea6502015-02-13 10:27:56 -06002245 GEN8_RPCS_EU_MIN_SHIFT;
Chris Wilsonc0336662016-05-06 15:40:21 +01002246 rpcs |= INTEL_INFO(dev_priv)->eu_per_subslice <<
Jeff McGee0cea6502015-02-13 10:27:56 -06002247 GEN8_RPCS_EU_MAX_SHIFT;
2248 rpcs |= GEN8_RPCS_ENABLE;
2249 }
2250
2251 return rpcs;
2252}
2253
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002254static u32 intel_lr_indirect_ctx_offset(struct intel_engine_cs *engine)
Michel Thierry71562912016-02-23 10:31:49 +00002255{
2256 u32 indirect_ctx_offset;
2257
Chris Wilsonc0336662016-05-06 15:40:21 +01002258 switch (INTEL_GEN(engine->i915)) {
Michel Thierry71562912016-02-23 10:31:49 +00002259 default:
Chris Wilsonc0336662016-05-06 15:40:21 +01002260 MISSING_CASE(INTEL_GEN(engine->i915));
Michel Thierry71562912016-02-23 10:31:49 +00002261 /* fall through */
2262 case 9:
2263 indirect_ctx_offset =
2264 GEN9_CTX_RCS_INDIRECT_CTX_OFFSET_DEFAULT;
2265 break;
2266 case 8:
2267 indirect_ctx_offset =
2268 GEN8_CTX_RCS_INDIRECT_CTX_OFFSET_DEFAULT;
2269 break;
2270 }
2271
2272 return indirect_ctx_offset;
2273}
2274
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002275static int
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002276populate_lr_context(struct intel_context *ctx,
2277 struct drm_i915_gem_object *ctx_obj,
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002278 struct intel_engine_cs *engine,
2279 struct intel_ringbuffer *ringbuf)
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002280{
Chris Wilsonc0336662016-05-06 15:40:21 +01002281 struct drm_i915_private *dev_priv = ctx->i915;
Daniel Vetterae6c4802014-08-06 15:04:53 +02002282 struct i915_hw_ppgtt *ppgtt = ctx->ppgtt;
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002283 void *vaddr;
2284 u32 *reg_state;
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002285 int ret;
2286
Thomas Daniel2d965532014-08-19 10:13:36 +01002287 if (!ppgtt)
2288 ppgtt = dev_priv->mm.aliasing_ppgtt;
2289
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002290 ret = i915_gem_object_set_to_cpu_domain(ctx_obj, true);
2291 if (ret) {
2292 DRM_DEBUG_DRIVER("Could not set to CPU domain\n");
2293 return ret;
2294 }
2295
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002296 vaddr = i915_gem_object_pin_map(ctx_obj);
2297 if (IS_ERR(vaddr)) {
2298 ret = PTR_ERR(vaddr);
2299 DRM_DEBUG_DRIVER("Could not map object pages! (%d)\n", ret);
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002300 return ret;
2301 }
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002302 ctx_obj->dirty = true;
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002303
2304 /* The second page of the context object contains some fields which must
2305 * be set up prior to the first execution. */
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002306 reg_state = vaddr + LRC_STATE_PN * PAGE_SIZE;
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002307
2308 /* A context is actually a big batch buffer with several MI_LOAD_REGISTER_IMM
2309 * commands followed by (reg, value) pairs. The values we are setting here are
2310 * only for the first context restore: on a subsequent save, the GPU will
2311 * recreate this batchbuffer with new values (including all the missing
2312 * MI_LOAD_REGISTER_IMM commands that we are not initializing here). */
Ville Syrjälä0d925ea2015-11-04 23:20:11 +02002313 reg_state[CTX_LRI_HEADER_0] =
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002314 MI_LOAD_REGISTER_IMM(engine->id == RCS ? 14 : 11) | MI_LRI_FORCE_POSTED;
2315 ASSIGN_CTX_REG(reg_state, CTX_CONTEXT_CONTROL,
2316 RING_CONTEXT_CONTROL(engine),
Ville Syrjälä0d925ea2015-11-04 23:20:11 +02002317 _MASKED_BIT_ENABLE(CTX_CTRL_INHIBIT_SYN_CTX_SWITCH |
2318 CTX_CTRL_ENGINE_CTX_RESTORE_INHIBIT |
Chris Wilsonc0336662016-05-06 15:40:21 +01002319 (HAS_RESOURCE_STREAMER(dev_priv) ?
Michel Thierry99cf8ea2016-02-25 09:48:58 +00002320 CTX_CTRL_RS_CTX_ENABLE : 0)));
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002321 ASSIGN_CTX_REG(reg_state, CTX_RING_HEAD, RING_HEAD(engine->mmio_base),
2322 0);
2323 ASSIGN_CTX_REG(reg_state, CTX_RING_TAIL, RING_TAIL(engine->mmio_base),
2324 0);
Thomas Daniel7ba717c2014-11-13 10:28:56 +00002325 /* Ring buffer start address is not known until the buffer is pinned.
2326 * It is written to the context image in execlists_update_context()
2327 */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002328 ASSIGN_CTX_REG(reg_state, CTX_RING_BUFFER_START,
2329 RING_START(engine->mmio_base), 0);
2330 ASSIGN_CTX_REG(reg_state, CTX_RING_BUFFER_CONTROL,
2331 RING_CTL(engine->mmio_base),
Ville Syrjälä0d925ea2015-11-04 23:20:11 +02002332 ((ringbuf->size - PAGE_SIZE) & RING_NR_PAGES) | RING_VALID);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002333 ASSIGN_CTX_REG(reg_state, CTX_BB_HEAD_U,
2334 RING_BBADDR_UDW(engine->mmio_base), 0);
2335 ASSIGN_CTX_REG(reg_state, CTX_BB_HEAD_L,
2336 RING_BBADDR(engine->mmio_base), 0);
2337 ASSIGN_CTX_REG(reg_state, CTX_BB_STATE,
2338 RING_BBSTATE(engine->mmio_base),
Ville Syrjälä0d925ea2015-11-04 23:20:11 +02002339 RING_BB_PPGTT);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002340 ASSIGN_CTX_REG(reg_state, CTX_SECOND_BB_HEAD_U,
2341 RING_SBBADDR_UDW(engine->mmio_base), 0);
2342 ASSIGN_CTX_REG(reg_state, CTX_SECOND_BB_HEAD_L,
2343 RING_SBBADDR(engine->mmio_base), 0);
2344 ASSIGN_CTX_REG(reg_state, CTX_SECOND_BB_STATE,
2345 RING_SBBSTATE(engine->mmio_base), 0);
2346 if (engine->id == RCS) {
2347 ASSIGN_CTX_REG(reg_state, CTX_BB_PER_CTX_PTR,
2348 RING_BB_PER_CTX_PTR(engine->mmio_base), 0);
2349 ASSIGN_CTX_REG(reg_state, CTX_RCS_INDIRECT_CTX,
2350 RING_INDIRECT_CTX(engine->mmio_base), 0);
2351 ASSIGN_CTX_REG(reg_state, CTX_RCS_INDIRECT_CTX_OFFSET,
2352 RING_INDIRECT_CTX_OFFSET(engine->mmio_base), 0);
2353 if (engine->wa_ctx.obj) {
2354 struct i915_ctx_workarounds *wa_ctx = &engine->wa_ctx;
Arun Siluvery17ee9502015-06-19 19:07:01 +01002355 uint32_t ggtt_offset = i915_gem_obj_ggtt_offset(wa_ctx->obj);
2356
2357 reg_state[CTX_RCS_INDIRECT_CTX+1] =
2358 (ggtt_offset + wa_ctx->indirect_ctx.offset * sizeof(uint32_t)) |
2359 (wa_ctx->indirect_ctx.size / CACHELINE_DWORDS);
2360
2361 reg_state[CTX_RCS_INDIRECT_CTX_OFFSET+1] =
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002362 intel_lr_indirect_ctx_offset(engine) << 6;
Arun Siluvery17ee9502015-06-19 19:07:01 +01002363
2364 reg_state[CTX_BB_PER_CTX_PTR+1] =
2365 (ggtt_offset + wa_ctx->per_ctx.offset * sizeof(uint32_t)) |
2366 0x01;
2367 }
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002368 }
Ville Syrjälä0d925ea2015-11-04 23:20:11 +02002369 reg_state[CTX_LRI_HEADER_1] = MI_LOAD_REGISTER_IMM(9) | MI_LRI_FORCE_POSTED;
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002370 ASSIGN_CTX_REG(reg_state, CTX_CTX_TIMESTAMP,
2371 RING_CTX_TIMESTAMP(engine->mmio_base), 0);
Ville Syrjälä0d925ea2015-11-04 23:20:11 +02002372 /* PDP values well be assigned later if needed */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002373 ASSIGN_CTX_REG(reg_state, CTX_PDP3_UDW, GEN8_RING_PDP_UDW(engine, 3),
2374 0);
2375 ASSIGN_CTX_REG(reg_state, CTX_PDP3_LDW, GEN8_RING_PDP_LDW(engine, 3),
2376 0);
2377 ASSIGN_CTX_REG(reg_state, CTX_PDP2_UDW, GEN8_RING_PDP_UDW(engine, 2),
2378 0);
2379 ASSIGN_CTX_REG(reg_state, CTX_PDP2_LDW, GEN8_RING_PDP_LDW(engine, 2),
2380 0);
2381 ASSIGN_CTX_REG(reg_state, CTX_PDP1_UDW, GEN8_RING_PDP_UDW(engine, 1),
2382 0);
2383 ASSIGN_CTX_REG(reg_state, CTX_PDP1_LDW, GEN8_RING_PDP_LDW(engine, 1),
2384 0);
2385 ASSIGN_CTX_REG(reg_state, CTX_PDP0_UDW, GEN8_RING_PDP_UDW(engine, 0),
2386 0);
2387 ASSIGN_CTX_REG(reg_state, CTX_PDP0_LDW, GEN8_RING_PDP_LDW(engine, 0),
2388 0);
Michel Thierryd7b26332015-04-08 12:13:34 +01002389
Michel Thierry2dba3232015-07-30 11:06:23 +01002390 if (USES_FULL_48BIT_PPGTT(ppgtt->base.dev)) {
2391 /* 64b PPGTT (48bit canonical)
2392 * PDP0_DESCRIPTOR contains the base address to PML4 and
2393 * other PDP Descriptors are ignored.
2394 */
2395 ASSIGN_CTX_PML4(ppgtt, reg_state);
2396 } else {
2397 /* 32b PPGTT
2398 * PDP*_DESCRIPTOR contains the base address of space supported.
2399 * With dynamic page allocation, PDPs may not be allocated at
2400 * this point. Point the unallocated PDPs to the scratch page
2401 */
Tvrtko Ursulinc6a2ac72016-02-26 16:58:32 +00002402 execlists_update_context_pdps(ppgtt, reg_state);
Michel Thierry2dba3232015-07-30 11:06:23 +01002403 }
2404
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002405 if (engine->id == RCS) {
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002406 reg_state[CTX_LRI_HEADER_2] = MI_LOAD_REGISTER_IMM(1);
Ville Syrjälä0d925ea2015-11-04 23:20:11 +02002407 ASSIGN_CTX_REG(reg_state, CTX_R_PWR_CLK_STATE, GEN8_R_PWR_CLK_STATE,
Chris Wilsonc0336662016-05-06 15:40:21 +01002408 make_rpcs(dev_priv));
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002409 }
2410
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002411 i915_gem_object_unpin_map(ctx_obj);
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002412
2413 return 0;
2414}
2415
Oscar Mateo73e4d072014-07-24 17:04:48 +01002416/**
2417 * intel_lr_context_free() - free the LRC specific bits of a context
2418 * @ctx: the LR context to free.
2419 *
2420 * The real context freeing is done in i915_gem_context_free: this only
2421 * takes care of the bits that are LRC related: the per-engine backing
2422 * objects and the logical ringbuffer.
2423 */
Oscar Mateoede7d422014-07-24 17:04:12 +01002424void intel_lr_context_free(struct intel_context *ctx)
2425{
Oscar Mateo8c8579172014-07-24 17:04:14 +01002426 int i;
2427
Tvrtko Ursulin666796d2016-03-16 11:00:39 +00002428 for (i = I915_NUM_ENGINES; --i >= 0; ) {
Dave Gordone28e4042016-01-19 19:02:55 +00002429 struct intel_ringbuffer *ringbuf = ctx->engine[i].ringbuf;
Oscar Mateo8c8579172014-07-24 17:04:14 +01002430 struct drm_i915_gem_object *ctx_obj = ctx->engine[i].state;
Oscar Mateo84c23772014-07-24 17:04:15 +01002431
Dave Gordone28e4042016-01-19 19:02:55 +00002432 if (!ctx_obj)
2433 continue;
Oscar Mateodcb4c122014-11-13 10:28:10 +00002434
Dave Gordone28e4042016-01-19 19:02:55 +00002435 WARN_ON(ctx->engine[i].pin_count);
2436 intel_ringbuffer_free(ringbuf);
2437 drm_gem_object_unreference(&ctx_obj->base);
Oscar Mateo8c8579172014-07-24 17:04:14 +01002438 }
2439}
2440
Dave Gordonc5d46ee2016-01-05 12:21:33 +00002441/**
2442 * intel_lr_context_size() - return the size of the context for an engine
2443 * @ring: which engine to find the context size for
2444 *
2445 * Each engine may require a different amount of space for a context image,
2446 * so when allocating (or copying) an image, this function can be used to
2447 * find the right size for the specific engine.
2448 *
2449 * Return: size (in bytes) of an engine-specific context image
2450 *
2451 * Note: this size includes the HWSP, which is part of the context image
2452 * in LRC mode, but does not include the "shared data page" used with
2453 * GuC submission. The caller should account for this if using the GuC.
2454 */
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002455uint32_t intel_lr_context_size(struct intel_engine_cs *engine)
Oscar Mateo8c8579172014-07-24 17:04:14 +01002456{
2457 int ret = 0;
2458
Chris Wilsonc0336662016-05-06 15:40:21 +01002459 WARN_ON(INTEL_GEN(engine->i915) < 8);
Oscar Mateo8c8579172014-07-24 17:04:14 +01002460
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002461 switch (engine->id) {
Oscar Mateo8c8579172014-07-24 17:04:14 +01002462 case RCS:
Chris Wilsonc0336662016-05-06 15:40:21 +01002463 if (INTEL_GEN(engine->i915) >= 9)
Michael H. Nguyen468c6812014-11-13 17:51:49 +00002464 ret = GEN9_LR_CONTEXT_RENDER_SIZE;
2465 else
2466 ret = GEN8_LR_CONTEXT_RENDER_SIZE;
Oscar Mateo8c8579172014-07-24 17:04:14 +01002467 break;
2468 case VCS:
2469 case BCS:
2470 case VECS:
2471 case VCS2:
2472 ret = GEN8_LR_CONTEXT_OTHER_SIZE;
2473 break;
2474 }
2475
2476 return ret;
Oscar Mateoede7d422014-07-24 17:04:12 +01002477}
2478
Oscar Mateo73e4d072014-07-24 17:04:48 +01002479/**
Chris Wilson978f1e02016-04-28 09:56:54 +01002480 * execlists_context_deferred_alloc() - create the LRC specific bits of a context
Oscar Mateo73e4d072014-07-24 17:04:48 +01002481 * @ctx: LR context to create.
Chris Wilson978f1e02016-04-28 09:56:54 +01002482 * @engine: engine to be used with the context.
Oscar Mateo73e4d072014-07-24 17:04:48 +01002483 *
2484 * This function can be called more than once, with different engines, if we plan
2485 * to use the context with them. The context backing objects and the ringbuffers
2486 * (specially the ringbuffer backing objects) suck a lot of memory up, and that's why
2487 * the creation is a deferred call: it's better to make sure first that we need to use
2488 * a given ring with the context.
2489 *
Masanari Iida32197aa2014-10-20 23:53:13 +09002490 * Return: non-zero on error.
Oscar Mateo73e4d072014-07-24 17:04:48 +01002491 */
Chris Wilson978f1e02016-04-28 09:56:54 +01002492static int execlists_context_deferred_alloc(struct intel_context *ctx,
2493 struct intel_engine_cs *engine)
Oscar Mateoede7d422014-07-24 17:04:12 +01002494{
Oscar Mateo8c8579172014-07-24 17:04:14 +01002495 struct drm_i915_gem_object *ctx_obj;
2496 uint32_t context_size;
Oscar Mateo84c23772014-07-24 17:04:15 +01002497 struct intel_ringbuffer *ringbuf;
Oscar Mateo8c8579172014-07-24 17:04:14 +01002498 int ret;
2499
Oscar Mateoede7d422014-07-24 17:04:12 +01002500 WARN_ON(ctx->legacy_hw_ctx.rcs_state != NULL);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002501 WARN_ON(ctx->engine[engine->id].state);
Oscar Mateoede7d422014-07-24 17:04:12 +01002502
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002503 context_size = round_up(intel_lr_context_size(engine), 4096);
Oscar Mateo8c8579172014-07-24 17:04:14 +01002504
Alex Daid1675192015-08-12 15:43:43 +01002505 /* One extra page as the sharing data between driver and GuC */
2506 context_size += PAGE_SIZE * LRC_PPHWSP_PN;
2507
Chris Wilsonc0336662016-05-06 15:40:21 +01002508 ctx_obj = i915_gem_object_create(ctx->i915->dev, context_size);
Chris Wilsonfe3db792016-04-25 13:32:13 +01002509 if (IS_ERR(ctx_obj)) {
Dan Carpenter3126a662015-04-30 17:30:50 +03002510 DRM_DEBUG_DRIVER("Alloc LRC backing obj failed.\n");
Chris Wilsonfe3db792016-04-25 13:32:13 +01002511 return PTR_ERR(ctx_obj);
Oscar Mateo8c8579172014-07-24 17:04:14 +01002512 }
2513
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002514 ringbuf = intel_engine_create_ringbuffer(engine, 4 * PAGE_SIZE);
Chris Wilson01101fa2015-09-03 13:01:39 +01002515 if (IS_ERR(ringbuf)) {
2516 ret = PTR_ERR(ringbuf);
Nick Hoathe84fe802015-09-11 12:53:46 +01002517 goto error_deref_obj;
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002518 }
2519
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002520 ret = populate_lr_context(ctx, ctx_obj, engine, ringbuf);
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002521 if (ret) {
2522 DRM_DEBUG_DRIVER("Failed to populate LRC: %d\n", ret);
Nick Hoathe84fe802015-09-11 12:53:46 +01002523 goto error_ringbuf;
Oscar Mateo84c23772014-07-24 17:04:15 +01002524 }
2525
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002526 ctx->engine[engine->id].ringbuf = ringbuf;
2527 ctx->engine[engine->id].state = ctx_obj;
Chris Wilson24f1d3c2016-04-28 09:56:53 +01002528 ctx->engine[engine->id].initialised = engine->init_context == NULL;
Oscar Mateoede7d422014-07-24 17:04:12 +01002529
2530 return 0;
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002531
Chris Wilson01101fa2015-09-03 13:01:39 +01002532error_ringbuf:
2533 intel_ringbuffer_free(ringbuf);
Nick Hoathe84fe802015-09-11 12:53:46 +01002534error_deref_obj:
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002535 drm_gem_object_unreference(&ctx_obj->base);
Tvrtko Ursulin0bc40be2016-03-16 11:00:37 +00002536 ctx->engine[engine->id].ringbuf = NULL;
2537 ctx->engine[engine->id].state = NULL;
Oscar Mateo8670d6f2014-07-24 17:04:17 +01002538 return ret;
Oscar Mateoede7d422014-07-24 17:04:12 +01002539}
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002540
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002541void intel_lr_context_reset(struct drm_i915_private *dev_priv,
2542 struct intel_context *ctx)
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002543{
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002544 struct intel_engine_cs *engine;
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002545
Dave Gordonb4ac5af2016-03-24 11:20:38 +00002546 for_each_engine(engine, dev_priv) {
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002547 struct drm_i915_gem_object *ctx_obj =
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002548 ctx->engine[engine->id].state;
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002549 struct intel_ringbuffer *ringbuf =
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00002550 ctx->engine[engine->id].ringbuf;
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002551 void *vaddr;
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002552 uint32_t *reg_state;
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002553
2554 if (!ctx_obj)
2555 continue;
2556
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002557 vaddr = i915_gem_object_pin_map(ctx_obj);
2558 if (WARN_ON(IS_ERR(vaddr)))
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002559 continue;
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002560
2561 reg_state = vaddr + LRC_STATE_PN * PAGE_SIZE;
2562 ctx_obj->dirty = true;
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002563
2564 reg_state[CTX_RING_HEAD+1] = 0;
2565 reg_state[CTX_RING_TAIL+1] = 0;
2566
Tvrtko Ursulin7d774ca2016-04-12 15:40:42 +01002567 i915_gem_object_unpin_map(ctx_obj);
Thomas Daniel3e5b6f02015-02-16 16:12:53 +00002568
2569 ringbuf->head = 0;
2570 ringbuf->tail = 0;
2571 }
2572}