i915_cmd_parser.c 33.0 KB
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/*
 * Copyright © 2013 Intel Corporation
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the "Software"),
 * to deal in the Software without restriction, including without limitation
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
 * and/or sell copies of the Software, and to permit persons to whom the
 * Software is furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice (including the next
 * paragraph) shall be included in all copies or substantial portions of the
 * Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
 * IN THE SOFTWARE.
 *
 * Authors:
 *    Brad Volkin <bradley.d.volkin@intel.com>
 *
 */

#include "i915_drv.h"

/**
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 * DOC: batch buffer command parser
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 *
 * Motivation:
 * Certain OpenGL features (e.g. transform feedback, performance monitoring)
 * require userspace code to submit batches containing commands such as
 * MI_LOAD_REGISTER_IMM to access various registers. Unfortunately, some
 * generations of the hardware will noop these commands in "unsecure" batches
 * (which includes all userspace batches submitted via i915) even though the
 * commands may be safe and represent the intended programming model of the
 * device.
 *
 * The software command parser is similar in operation to the command parsing
 * done in hardware for unsecure batches. However, the software parser allows
 * some operations that would be noop'd by hardware, if the parser determines
 * the operation is safe, and submits the batch as "secure" to prevent hardware
 * parsing.
 *
 * Threats:
 * At a high level, the hardware (and software) checks attempt to prevent
 * granting userspace undue privileges. There are three categories of privilege.
 *
 * First, commands which are explicitly defined as privileged or which should
 * only be used by the kernel driver. The parser generally rejects such
 * commands, though it may allow some from the drm master process.
 *
 * Second, commands which access registers. To support correct/enhanced
 * userspace functionality, particularly certain OpenGL extensions, the parser
 * provides a whitelist of registers which userspace may safely access (for both
 * normal and drm master processes).
 *
 * Third, commands which access privileged memory (i.e. GGTT, HWS page, etc).
 * The parser always rejects such commands.
 *
 * The majority of the problematic commands fall in the MI_* range, with only a
 * few specific commands on each ring (e.g. PIPE_CONTROL and MI_FLUSH_DW).
 *
 * Implementation:
 * Each ring maintains tables of commands and registers which the parser uses in
 * scanning batch buffers submitted to that ring.
 *
 * Since the set of commands that the parser must check for is significantly
 * smaller than the number of commands supported, the parser tables contain only
 * those commands required by the parser. This generally works because command
 * opcode ranges have standard command length encodings. So for commands that
 * the parser does not need to check, it can easily skip them. This is
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 * implemented via a per-ring length decoding vfunc.
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 *
 * Unfortunately, there are a number of commands that do not follow the standard
 * length encoding for their opcode range, primarily amongst the MI_* commands.
 * To handle this, the parser provides a way to define explicit "skip" entries
 * in the per-ring command tables.
 *
 * Other command table entries map fairly directly to high level categories
 * mentioned above: rejected, master-only, register whitelist. The parser
 * implements a number of checks, including the privileged memory checks, via a
 * general bitmasking mechanism.
 */

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#define STD_MI_OPCODE_MASK  0xFF800000
#define STD_3D_OPCODE_MASK  0xFFFF0000
#define STD_2D_OPCODE_MASK  0xFFC00000
#define STD_MFX_OPCODE_MASK 0xFFFF0000

#define CMD(op, opm, f, lm, fl, ...)				\
	{							\
		.flags = (fl) | ((f) ? CMD_DESC_FIXED : 0),	\
		.cmd = { (op), (opm) }, 			\
		.length = { (lm) },				\
		__VA_ARGS__					\
	}

/* Convenience macros to compress the tables */
#define SMI STD_MI_OPCODE_MASK
#define S3D STD_3D_OPCODE_MASK
#define S2D STD_2D_OPCODE_MASK
#define SMFX STD_MFX_OPCODE_MASK
#define F true
#define S CMD_DESC_SKIP
#define R CMD_DESC_REJECT
#define W CMD_DESC_REGISTER
#define B CMD_DESC_BITMASK
#define M CMD_DESC_MASTER

/*            Command                          Mask   Fixed Len   Action
	      ---------------------------------------------------------- */
static const struct drm_i915_cmd_descriptor common_cmds[] = {
	CMD(  MI_NOOP,                          SMI,    F,  1,      S  ),
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	CMD(  MI_USER_INTERRUPT,                SMI,    F,  1,      R  ),
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	CMD(  MI_WAIT_FOR_EVENT,                SMI,    F,  1,      M  ),
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	CMD(  MI_ARB_CHECK,                     SMI,    F,  1,      S  ),
	CMD(  MI_REPORT_HEAD,                   SMI,    F,  1,      S  ),
	CMD(  MI_SUSPEND_FLUSH,                 SMI,    F,  1,      S  ),
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	CMD(  MI_SEMAPHORE_MBOX,                SMI,   !F,  0xFF,   R  ),
	CMD(  MI_STORE_DWORD_INDEX,             SMI,   !F,  0xFF,   R  ),
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	CMD(  MI_LOAD_REGISTER_IMM(1),          SMI,   !F,  0xFF,   W,
	      .reg = { .offset = 1, .mask = 0x007FFFFC }               ),
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	CMD(  MI_STORE_REGISTER_MEM(1),         SMI,   !F,  0xFF,   W | B,
	      .reg = { .offset = 1, .mask = 0x007FFFFC },
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
	      }},						       ),
	CMD(  MI_LOAD_REGISTER_MEM,             SMI,   !F,  0xFF,   W | B,
	      .reg = { .offset = 1, .mask = 0x007FFFFC },
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
	      }},						       ),
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	/*
	 * MI_BATCH_BUFFER_START requires some special handling. It's not
	 * really a 'skip' action but it doesn't seem like it's worth adding
	 * a new action. See i915_parse_cmds().
	 */
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	CMD(  MI_BATCH_BUFFER_START,            SMI,   !F,  0xFF,   S  ),
};

static const struct drm_i915_cmd_descriptor render_cmds[] = {
	CMD(  MI_FLUSH,                         SMI,    F,  1,      S  ),
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	CMD(  MI_ARB_ON_OFF,                    SMI,    F,  1,      R  ),
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	CMD(  MI_PREDICATE,                     SMI,    F,  1,      S  ),
	CMD(  MI_TOPOLOGY_FILTER,               SMI,    F,  1,      S  ),
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	CMD(  MI_DISPLAY_FLIP,                  SMI,   !F,  0xFF,   R  ),
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	CMD(  MI_SET_APPID,                     SMI,    F,  1,      S  ),
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	CMD(  MI_SET_CONTEXT,                   SMI,   !F,  0xFF,   R  ),
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	CMD(  MI_URB_CLEAR,                     SMI,   !F,  0xFF,   S  ),
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	CMD(  MI_STORE_DWORD_IMM,               SMI,   !F,  0x3F,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
	      }},						       ),
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	CMD(  MI_UPDATE_GTT,                    SMI,   !F,  0xFF,   R  ),
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	CMD(  MI_CLFLUSH,                       SMI,   !F,  0x3FF,  B,
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
	      }},						       ),
	CMD(  MI_REPORT_PERF_COUNT,             SMI,   !F,  0x3F,   B,
	      .bits = {{
			.offset = 1,
			.mask = MI_REPORT_PERF_COUNT_GGTT,
			.expected = 0,
	      }},						       ),
	CMD(  MI_CONDITIONAL_BATCH_BUFFER_END,  SMI,   !F,  0xFF,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
	      }},						       ),
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	CMD(  GFX_OP_3DSTATE_VF_STATISTICS,     S3D,    F,  1,      S  ),
	CMD(  PIPELINE_SELECT,                  S3D,    F,  1,      S  ),
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	CMD(  MEDIA_VFE_STATE,			S3D,   !F,  0xFFFF, B,
	      .bits = {{
			.offset = 2,
			.mask = MEDIA_VFE_STATE_MMIO_ACCESS_MASK,
			.expected = 0,
	      }},						       ),
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	CMD(  GPGPU_OBJECT,                     S3D,   !F,  0xFF,   S  ),
	CMD(  GPGPU_WALKER,                     S3D,   !F,  0xFF,   S  ),
	CMD(  GFX_OP_3DSTATE_SO_DECL_LIST,      S3D,   !F,  0x1FF,  S  ),
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	CMD(  GFX_OP_PIPE_CONTROL(5),           S3D,   !F,  0xFF,   B,
	      .bits = {{
			.offset = 1,
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			.mask = (PIPE_CONTROL_MMIO_WRITE | PIPE_CONTROL_NOTIFY),
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			.expected = 0,
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	      },
	      {
			.offset = 1,
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		        .mask = (PIPE_CONTROL_GLOBAL_GTT_IVB |
				 PIPE_CONTROL_STORE_DATA_INDEX),
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			.expected = 0,
			.condition_offset = 1,
			.condition_mask = PIPE_CONTROL_POST_SYNC_OP_MASK,
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	      }},						       ),
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};

static const struct drm_i915_cmd_descriptor hsw_render_cmds[] = {
	CMD(  MI_SET_PREDICATE,                 SMI,    F,  1,      S  ),
	CMD(  MI_RS_CONTROL,                    SMI,    F,  1,      S  ),
	CMD(  MI_URB_ATOMIC_ALLOC,              SMI,    F,  1,      S  ),
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	CMD(  MI_SET_APPID,                     SMI,    F,  1,      S  ),
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	CMD(  MI_RS_CONTEXT,                    SMI,    F,  1,      S  ),
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	CMD(  MI_LOAD_SCAN_LINES_INCL,          SMI,   !F,  0x3F,   M  ),
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	CMD(  MI_LOAD_SCAN_LINES_EXCL,          SMI,   !F,  0x3F,   R  ),
	CMD(  MI_LOAD_REGISTER_REG,             SMI,   !F,  0xFF,   R  ),
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	CMD(  MI_RS_STORE_DATA_IMM,             SMI,   !F,  0xFF,   S  ),
	CMD(  MI_LOAD_URB_MEM,                  SMI,   !F,  0xFF,   S  ),
	CMD(  MI_STORE_URB_MEM,                 SMI,   !F,  0xFF,   S  ),
	CMD(  GFX_OP_3DSTATE_DX9_CONSTANTF_VS,  S3D,   !F,  0x7FF,  S  ),
	CMD(  GFX_OP_3DSTATE_DX9_CONSTANTF_PS,  S3D,   !F,  0x7FF,  S  ),

	CMD(  GFX_OP_3DSTATE_BINDING_TABLE_EDIT_VS,  S3D,   !F,  0x1FF,  S  ),
	CMD(  GFX_OP_3DSTATE_BINDING_TABLE_EDIT_GS,  S3D,   !F,  0x1FF,  S  ),
	CMD(  GFX_OP_3DSTATE_BINDING_TABLE_EDIT_HS,  S3D,   !F,  0x1FF,  S  ),
	CMD(  GFX_OP_3DSTATE_BINDING_TABLE_EDIT_DS,  S3D,   !F,  0x1FF,  S  ),
	CMD(  GFX_OP_3DSTATE_BINDING_TABLE_EDIT_PS,  S3D,   !F,  0x1FF,  S  ),
};

static const struct drm_i915_cmd_descriptor video_cmds[] = {
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	CMD(  MI_ARB_ON_OFF,                    SMI,    F,  1,      R  ),
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	CMD(  MI_SET_APPID,                     SMI,    F,  1,      S  ),
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	CMD(  MI_STORE_DWORD_IMM,               SMI,   !F,  0xFF,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
	      }},						       ),
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	CMD(  MI_UPDATE_GTT,                    SMI,   !F,  0x3F,   R  ),
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	CMD(  MI_FLUSH_DW,                      SMI,   !F,  0x3F,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_FLUSH_DW_NOTIFY,
			.expected = 0,
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	      },
	      {
			.offset = 1,
			.mask = MI_FLUSH_DW_USE_GTT,
			.expected = 0,
			.condition_offset = 0,
			.condition_mask = MI_FLUSH_DW_OP_MASK,
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	      },
	      {
			.offset = 0,
			.mask = MI_FLUSH_DW_STORE_INDEX,
			.expected = 0,
			.condition_offset = 0,
			.condition_mask = MI_FLUSH_DW_OP_MASK,
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	      }},						       ),
	CMD(  MI_CONDITIONAL_BATCH_BUFFER_END,  SMI,   !F,  0xFF,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
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	      }},						       ),
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	/*
	 * MFX_WAIT doesn't fit the way we handle length for most commands.
	 * It has a length field but it uses a non-standard length bias.
	 * It is always 1 dword though, so just treat it as fixed length.
	 */
	CMD(  MFX_WAIT,                         SMFX,   F,  1,      S  ),
};

static const struct drm_i915_cmd_descriptor vecs_cmds[] = {
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	CMD(  MI_ARB_ON_OFF,                    SMI,    F,  1,      R  ),
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	CMD(  MI_SET_APPID,                     SMI,    F,  1,      S  ),
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	CMD(  MI_STORE_DWORD_IMM,               SMI,   !F,  0xFF,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
	      }},						       ),
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	CMD(  MI_UPDATE_GTT,                    SMI,   !F,  0x3F,   R  ),
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	CMD(  MI_FLUSH_DW,                      SMI,   !F,  0x3F,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_FLUSH_DW_NOTIFY,
			.expected = 0,
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	      },
	      {
			.offset = 1,
			.mask = MI_FLUSH_DW_USE_GTT,
			.expected = 0,
			.condition_offset = 0,
			.condition_mask = MI_FLUSH_DW_OP_MASK,
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	      },
	      {
			.offset = 0,
			.mask = MI_FLUSH_DW_STORE_INDEX,
			.expected = 0,
			.condition_offset = 0,
			.condition_mask = MI_FLUSH_DW_OP_MASK,
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	      }},						       ),
	CMD(  MI_CONDITIONAL_BATCH_BUFFER_END,  SMI,   !F,  0xFF,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
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	      }},						       ),
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};

static const struct drm_i915_cmd_descriptor blt_cmds[] = {
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	CMD(  MI_DISPLAY_FLIP,                  SMI,   !F,  0xFF,   R  ),
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	CMD(  MI_STORE_DWORD_IMM,               SMI,   !F,  0x3FF,  B,
	      .bits = {{
			.offset = 0,
			.mask = MI_GLOBAL_GTT,
			.expected = 0,
	      }},						       ),
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	CMD(  MI_UPDATE_GTT,                    SMI,   !F,  0x3F,   R  ),
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	CMD(  MI_FLUSH_DW,                      SMI,   !F,  0x3F,   B,
	      .bits = {{
			.offset = 0,
			.mask = MI_FLUSH_DW_NOTIFY,
			.expected = 0,
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	      },
	      {
			.offset = 1,
			.mask = MI_FLUSH_DW_USE_GTT,
			.expected = 0,
			.condition_offset = 0,
			.condition_mask = MI_FLUSH_DW_OP_MASK,
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	      },
	      {
			.offset = 0,
			.mask = MI_FLUSH_DW_STORE_INDEX,
			.expected = 0,
			.condition_offset = 0,
			.condition_mask = MI_FLUSH_DW_OP_MASK,
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	      }},						       ),
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	CMD(  COLOR_BLT,                        S2D,   !F,  0x3F,   S  ),
	CMD(  SRC_COPY_BLT,                     S2D,   !F,  0x3F,   S  ),
};

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static const struct drm_i915_cmd_descriptor hsw_blt_cmds[] = {
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	CMD(  MI_LOAD_SCAN_LINES_INCL,          SMI,   !F,  0x3F,   M  ),
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	CMD(  MI_LOAD_SCAN_LINES_EXCL,          SMI,   !F,  0x3F,   R  ),
};

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#undef CMD
#undef SMI
#undef S3D
#undef S2D
#undef SMFX
#undef F
#undef S
#undef R
#undef W
#undef B
#undef M

static const struct drm_i915_cmd_table gen7_render_cmds[] = {
	{ common_cmds, ARRAY_SIZE(common_cmds) },
	{ render_cmds, ARRAY_SIZE(render_cmds) },
};

static const struct drm_i915_cmd_table hsw_render_ring_cmds[] = {
	{ common_cmds, ARRAY_SIZE(common_cmds) },
	{ render_cmds, ARRAY_SIZE(render_cmds) },
	{ hsw_render_cmds, ARRAY_SIZE(hsw_render_cmds) },
};

static const struct drm_i915_cmd_table gen7_video_cmds[] = {
	{ common_cmds, ARRAY_SIZE(common_cmds) },
	{ video_cmds, ARRAY_SIZE(video_cmds) },
};

static const struct drm_i915_cmd_table hsw_vebox_cmds[] = {
	{ common_cmds, ARRAY_SIZE(common_cmds) },
	{ vecs_cmds, ARRAY_SIZE(vecs_cmds) },
};

static const struct drm_i915_cmd_table gen7_blt_cmds[] = {
	{ common_cmds, ARRAY_SIZE(common_cmds) },
	{ blt_cmds, ARRAY_SIZE(blt_cmds) },
};

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static const struct drm_i915_cmd_table hsw_blt_ring_cmds[] = {
	{ common_cmds, ARRAY_SIZE(common_cmds) },
	{ blt_cmds, ARRAY_SIZE(blt_cmds) },
	{ hsw_blt_cmds, ARRAY_SIZE(hsw_blt_cmds) },
};

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/*
 * Register whitelists, sorted by increasing register offset.
 *
 * Some registers that userspace accesses are 64 bits. The register
 * access commands only allow 32-bit accesses. Hence, we have to include
 * entries for both halves of the 64-bit registers.
 */

/* Convenience macro for adding 64-bit registers */
#define REG64(addr) (addr), (addr + sizeof(u32))

static const u32 gen7_render_regs[] = {
	REG64(HS_INVOCATION_COUNT),
	REG64(DS_INVOCATION_COUNT),
	REG64(IA_VERTICES_COUNT),
	REG64(IA_PRIMITIVES_COUNT),
	REG64(VS_INVOCATION_COUNT),
	REG64(GS_INVOCATION_COUNT),
	REG64(GS_PRIMITIVES_COUNT),
	REG64(CL_INVOCATION_COUNT),
	REG64(CL_PRIMITIVES_COUNT),
	REG64(PS_INVOCATION_COUNT),
	REG64(PS_DEPTH_COUNT),
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	OACONTROL, /* Only allowed for LRI and SRM. See below. */
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	REG64(MI_PREDICATE_SRC0),
	REG64(MI_PREDICATE_SRC1),
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	GEN7_3DPRIM_END_OFFSET,
	GEN7_3DPRIM_START_VERTEX,
	GEN7_3DPRIM_VERTEX_COUNT,
	GEN7_3DPRIM_INSTANCE_COUNT,
	GEN7_3DPRIM_START_INSTANCE,
	GEN7_3DPRIM_BASE_VERTEX,
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	REG64(GEN7_SO_NUM_PRIMS_WRITTEN(0)),
	REG64(GEN7_SO_NUM_PRIMS_WRITTEN(1)),
	REG64(GEN7_SO_NUM_PRIMS_WRITTEN(2)),
	REG64(GEN7_SO_NUM_PRIMS_WRITTEN(3)),
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	REG64(GEN7_SO_PRIM_STORAGE_NEEDED(0)),
	REG64(GEN7_SO_PRIM_STORAGE_NEEDED(1)),
	REG64(GEN7_SO_PRIM_STORAGE_NEEDED(2)),
	REG64(GEN7_SO_PRIM_STORAGE_NEEDED(3)),
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	GEN7_SO_WRITE_OFFSET(0),
	GEN7_SO_WRITE_OFFSET(1),
	GEN7_SO_WRITE_OFFSET(2),
	GEN7_SO_WRITE_OFFSET(3),
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	GEN7_L3SQCREG1,
	GEN7_L3CNTLREG2,
	GEN7_L3CNTLREG3,
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};

static const u32 gen7_blt_regs[] = {
	BCS_SWCTRL,
};

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static const u32 ivb_master_regs[] = {
	FORCEWAKE_MT,
	DERRMR,
	GEN7_PIPE_DE_LOAD_SL(PIPE_A),
	GEN7_PIPE_DE_LOAD_SL(PIPE_B),
	GEN7_PIPE_DE_LOAD_SL(PIPE_C),
};

static const u32 hsw_master_regs[] = {
	FORCEWAKE_MT,
	DERRMR,
};

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#undef REG64

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static u32 gen7_render_get_cmd_length_mask(u32 cmd_header)
{
	u32 client = (cmd_header & INSTR_CLIENT_MASK) >> INSTR_CLIENT_SHIFT;
	u32 subclient =
		(cmd_header & INSTR_SUBCLIENT_MASK) >> INSTR_SUBCLIENT_SHIFT;

	if (client == INSTR_MI_CLIENT)
		return 0x3F;
	else if (client == INSTR_RC_CLIENT) {
		if (subclient == INSTR_MEDIA_SUBCLIENT)
			return 0xFFFF;
		else
			return 0xFF;
	}

	DRM_DEBUG_DRIVER("CMD: Abnormal rcs cmd length! 0x%08X\n", cmd_header);
	return 0;
}

static u32 gen7_bsd_get_cmd_length_mask(u32 cmd_header)
{
	u32 client = (cmd_header & INSTR_CLIENT_MASK) >> INSTR_CLIENT_SHIFT;
	u32 subclient =
		(cmd_header & INSTR_SUBCLIENT_MASK) >> INSTR_SUBCLIENT_SHIFT;
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	u32 op = (cmd_header & INSTR_26_TO_24_MASK) >> INSTR_26_TO_24_SHIFT;
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	if (client == INSTR_MI_CLIENT)
		return 0x3F;
	else if (client == INSTR_RC_CLIENT) {
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		if (subclient == INSTR_MEDIA_SUBCLIENT) {
			if (op == 6)
				return 0xFFFF;
			else
				return 0xFFF;
		} else
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			return 0xFF;
	}

	DRM_DEBUG_DRIVER("CMD: Abnormal bsd cmd length! 0x%08X\n", cmd_header);
	return 0;
}

static u32 gen7_blt_get_cmd_length_mask(u32 cmd_header)
{
	u32 client = (cmd_header & INSTR_CLIENT_MASK) >> INSTR_CLIENT_SHIFT;

	if (client == INSTR_MI_CLIENT)
		return 0x3F;
	else if (client == INSTR_BC_CLIENT)
		return 0xFF;

	DRM_DEBUG_DRIVER("CMD: Abnormal blt cmd length! 0x%08X\n", cmd_header);
	return 0;
}

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static bool validate_cmds_sorted(struct intel_engine_cs *ring,
520 521
				 const struct drm_i915_cmd_table *cmd_tables,
				 int cmd_table_count)
522 523
{
	int i;
524
	bool ret = true;
525

526
	if (!cmd_tables || cmd_table_count == 0)
527
		return true;
528

529 530
	for (i = 0; i < cmd_table_count; i++) {
		const struct drm_i915_cmd_table *table = &cmd_tables[i];
531 532 533 534 535 536 537 538
		u32 previous = 0;
		int j;

		for (j = 0; j < table->count; j++) {
			const struct drm_i915_cmd_descriptor *desc =
				&table->table[i];
			u32 curr = desc->cmd.value & desc->cmd.mask;

539
			if (curr < previous) {
540 541
				DRM_ERROR("CMD: table not sorted ring=%d table=%d entry=%d cmd=0x%08X prev=0x%08X\n",
					  ring->id, i, j, curr, previous);
542 543
				ret = false;
			}
544 545 546 547

			previous = curr;
		}
	}
548 549

	return ret;
550 551
}

552
static bool check_sorted(int ring_id, const u32 *reg_table, int reg_count)
553 554 555
{
	int i;
	u32 previous = 0;
556
	bool ret = true;
557 558 559 560

	for (i = 0; i < reg_count; i++) {
		u32 curr = reg_table[i];

561
		if (curr < previous) {
562 563
			DRM_ERROR("CMD: table not sorted ring=%d entry=%d reg=0x%08X prev=0x%08X\n",
				  ring_id, i, curr, previous);
564 565
			ret = false;
		}
566 567 568

		previous = curr;
	}
569 570

	return ret;
571 572
}

573
static bool validate_regs_sorted(struct intel_engine_cs *ring)
574
{
575 576 577
	return check_sorted(ring->id, ring->reg_table, ring->reg_count) &&
		check_sorted(ring->id, ring->master_reg_table,
			     ring->master_reg_count);
578 579
}

580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600
struct cmd_node {
	const struct drm_i915_cmd_descriptor *desc;
	struct hlist_node node;
};

/*
 * Different command ranges have different numbers of bits for the opcode. For
 * example, MI commands use bits 31:23 while 3D commands use bits 31:16. The
 * problem is that, for example, MI commands use bits 22:16 for other fields
 * such as GGTT vs PPGTT bits. If we include those bits in the mask then when
 * we mask a command from a batch it could hash to the wrong bucket due to
 * non-opcode bits being set. But if we don't include those bits, some 3D
 * commands may hash to the same bucket due to not including opcode bits that
 * make the command unique. For now, we will risk hashing to the same bucket.
 *
 * If we attempt to generate a perfect hash, we should be able to look at bits
 * 31:29 of a command from a batch buffer and use the full mask for that
 * client. The existing INSTR_CLIENT_MASK/SHIFT defines can be used for this.
 */
#define CMD_HASH_MASK STD_MI_OPCODE_MASK

601
static int init_hash_table(struct intel_engine_cs *ring,
602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629
			   const struct drm_i915_cmd_table *cmd_tables,
			   int cmd_table_count)
{
	int i, j;

	hash_init(ring->cmd_hash);

	for (i = 0; i < cmd_table_count; i++) {
		const struct drm_i915_cmd_table *table = &cmd_tables[i];

		for (j = 0; j < table->count; j++) {
			const struct drm_i915_cmd_descriptor *desc =
				&table->table[j];
			struct cmd_node *desc_node =
				kmalloc(sizeof(*desc_node), GFP_KERNEL);

			if (!desc_node)
				return -ENOMEM;

			desc_node->desc = desc;
			hash_add(ring->cmd_hash, &desc_node->node,
				 desc->cmd.value & CMD_HASH_MASK);
		}
	}

	return 0;
}

630
static void fini_hash_table(struct intel_engine_cs *ring)
631 632 633 634 635 636 637 638 639 640 641
{
	struct hlist_node *tmp;
	struct cmd_node *desc_node;
	int i;

	hash_for_each_safe(ring->cmd_hash, i, tmp, desc_node, node) {
		hash_del(&desc_node->node);
		kfree(desc_node);
	}
}

642 643 644 645 646
/**
 * i915_cmd_parser_init_ring() - set cmd parser related fields for a ringbuffer
 * @ring: the ringbuffer to initialize
 *
 * Optionally initializes fields related to batch buffer command parsing in the
647
 * struct intel_engine_cs based on whether the platform requires software
648
 * command parsing.
649 650
 *
 * Return: non-zero if initialization fails
651
 */
652
int i915_cmd_parser_init_ring(struct intel_engine_cs *ring)
653
{
654 655 656 657
	const struct drm_i915_cmd_table *cmd_tables;
	int cmd_table_count;
	int ret;

658
	if (!IS_GEN7(ring->dev))
659
		return 0;
660 661 662

	switch (ring->id) {
	case RCS:
663
		if (IS_HASWELL(ring->dev)) {
664 665
			cmd_tables = hsw_render_ring_cmds;
			cmd_table_count =
666 667
				ARRAY_SIZE(hsw_render_ring_cmds);
		} else {
668 669
			cmd_tables = gen7_render_cmds;
			cmd_table_count = ARRAY_SIZE(gen7_render_cmds);
670 671
		}

672 673 674
		ring->reg_table = gen7_render_regs;
		ring->reg_count = ARRAY_SIZE(gen7_render_regs);

675 676 677 678 679 680 681 682
		if (IS_HASWELL(ring->dev)) {
			ring->master_reg_table = hsw_master_regs;
			ring->master_reg_count = ARRAY_SIZE(hsw_master_regs);
		} else {
			ring->master_reg_table = ivb_master_regs;
			ring->master_reg_count = ARRAY_SIZE(ivb_master_regs);
		}

683 684 685
		ring->get_cmd_length_mask = gen7_render_get_cmd_length_mask;
		break;
	case VCS:
686 687
		cmd_tables = gen7_video_cmds;
		cmd_table_count = ARRAY_SIZE(gen7_video_cmds);
688 689 690
		ring->get_cmd_length_mask = gen7_bsd_get_cmd_length_mask;
		break;
	case BCS:
691
		if (IS_HASWELL(ring->dev)) {
692 693
			cmd_tables = hsw_blt_ring_cmds;
			cmd_table_count = ARRAY_SIZE(hsw_blt_ring_cmds);
694
		} else {
695 696
			cmd_tables = gen7_blt_cmds;
			cmd_table_count = ARRAY_SIZE(gen7_blt_cmds);
697 698
		}

699 700 701
		ring->reg_table = gen7_blt_regs;
		ring->reg_count = ARRAY_SIZE(gen7_blt_regs);

702 703 704 705 706 707 708 709
		if (IS_HASWELL(ring->dev)) {
			ring->master_reg_table = hsw_master_regs;
			ring->master_reg_count = ARRAY_SIZE(hsw_master_regs);
		} else {
			ring->master_reg_table = ivb_master_regs;
			ring->master_reg_count = ARRAY_SIZE(ivb_master_regs);
		}

710 711 712
		ring->get_cmd_length_mask = gen7_blt_get_cmd_length_mask;
		break;
	case VECS:
713 714
		cmd_tables = hsw_vebox_cmds;
		cmd_table_count = ARRAY_SIZE(hsw_vebox_cmds);
715 716 717 718 719 720 721 722 723
		/* VECS can use the same length_mask function as VCS */
		ring->get_cmd_length_mask = gen7_bsd_get_cmd_length_mask;
		break;
	default:
		DRM_ERROR("CMD: cmd_parser_init with unknown ring: %d\n",
			  ring->id);
		BUG();
	}

724
	BUG_ON(!validate_cmds_sorted(ring, cmd_tables, cmd_table_count));
725
	BUG_ON(!validate_regs_sorted(ring));
726

727 728 729 730 731 732 733
	WARN_ON(!hash_empty(ring->cmd_hash));

	ret = init_hash_table(ring, cmd_tables, cmd_table_count);
	if (ret) {
		DRM_ERROR("CMD: cmd_parser_init failed!\n");
		fini_hash_table(ring);
		return ret;
734 735 736 737 738 739 740 741 742 743 744 745 746 747
	}

	ring->needs_cmd_parser = true;

	return 0;
}

/**
 * i915_cmd_parser_fini_ring() - clean up cmd parser related fields
 * @ring: the ringbuffer to clean up
 *
 * Releases any resources related to command parsing that may have been
 * initialized for the specified ring.
 */
748
void i915_cmd_parser_fini_ring(struct intel_engine_cs *ring)
749 750 751 752 753
{
	if (!ring->needs_cmd_parser)
		return;

	fini_hash_table(ring);
754 755 756
}

static const struct drm_i915_cmd_descriptor*
757
find_cmd_in_table(struct intel_engine_cs *ring,
758 759
		  u32 cmd_header)
{
760
	struct cmd_node *desc_node;
761

762 763 764
	hash_for_each_possible(ring->cmd_hash, desc_node, node,
			       cmd_header & CMD_HASH_MASK) {
		const struct drm_i915_cmd_descriptor *desc = desc_node->desc;
765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783
		u32 masked_cmd = desc->cmd.mask & cmd_header;
		u32 masked_value = desc->cmd.value & desc->cmd.mask;

		if (masked_cmd == masked_value)
			return desc;
	}

	return NULL;
}

/*
 * Returns a pointer to a descriptor for the command specified by cmd_header.
 *
 * The caller must supply space for a default descriptor via the default_desc
 * parameter. If no descriptor for the specified command exists in the ring's
 * command parser tables, this function fills in default_desc based on the
 * ring's default length encoding and returns default_desc.
 */
static const struct drm_i915_cmd_descriptor*
784
find_cmd(struct intel_engine_cs *ring,
785 786 787
	 u32 cmd_header,
	 struct drm_i915_cmd_descriptor *default_desc)
{
788
	const struct drm_i915_cmd_descriptor *desc;
789 790
	u32 mask;

791 792 793
	desc = find_cmd_in_table(ring, cmd_header);
	if (desc)
		return desc;
794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850

	mask = ring->get_cmd_length_mask(cmd_header);
	if (!mask)
		return NULL;

	BUG_ON(!default_desc);
	default_desc->flags = CMD_DESC_SKIP;
	default_desc->length.mask = mask;

	return default_desc;
}

static bool valid_reg(const u32 *table, int count, u32 addr)
{
	if (table && count != 0) {
		int i;

		for (i = 0; i < count; i++) {
			if (table[i] == addr)
				return true;
		}
	}

	return false;
}

static u32 *vmap_batch(struct drm_i915_gem_object *obj)
{
	int i;
	void *addr = NULL;
	struct sg_page_iter sg_iter;
	struct page **pages;

	pages = drm_malloc_ab(obj->base.size >> PAGE_SHIFT, sizeof(*pages));
	if (pages == NULL) {
		DRM_DEBUG_DRIVER("Failed to get space for pages\n");
		goto finish;
	}

	i = 0;
	for_each_sg_page(obj->pages->sgl, &sg_iter, obj->pages->nents, 0) {
		pages[i] = sg_page_iter_page(&sg_iter);
		i++;
	}

	addr = vmap(pages, i, 0, PAGE_KERNEL);
	if (addr == NULL) {
		DRM_DEBUG_DRIVER("Failed to vmap pages\n");
		goto finish;
	}

finish:
	if (pages)
		drm_free_large(pages);
	return (u32*)addr;
}

851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900
/* Returns a vmap'd pointer to dest_obj, which the caller must unmap */
static u32 *copy_batch(struct drm_i915_gem_object *dest_obj,
		       struct drm_i915_gem_object *src_obj)
{
	int ret = 0;
	int needs_clflush = 0;
	u32 *src_addr, *dest_addr = NULL;

	ret = i915_gem_obj_prepare_shmem_read(src_obj, &needs_clflush);
	if (ret) {
		DRM_DEBUG_DRIVER("CMD: failed to prep read\n");
		return ERR_PTR(ret);
	}

	src_addr = vmap_batch(src_obj);
	if (!src_addr) {
		DRM_DEBUG_DRIVER("CMD: Failed to vmap batch\n");
		ret = -ENOMEM;
		goto unpin_src;
	}

	if (needs_clflush)
		drm_clflush_virt_range((char *)src_addr, src_obj->base.size);

	ret = i915_gem_object_set_to_cpu_domain(dest_obj, true);
	if (ret) {
		DRM_DEBUG_DRIVER("CMD: Failed to set batch CPU domain\n");
		goto unmap_src;
	}

	dest_addr = vmap_batch(dest_obj);
	if (!dest_addr) {
		DRM_DEBUG_DRIVER("CMD: Failed to vmap shadow batch\n");
		ret = -ENOMEM;
		goto unmap_src;
	}

	memcpy(dest_addr, src_addr, src_obj->base.size);
	if (dest_obj->base.size > src_obj->base.size)
		memset((u8 *)dest_addr + src_obj->base.size, 0,
		       dest_obj->base.size - src_obj->base.size);

unmap_src:
	vunmap(src_addr);
unpin_src:
	i915_gem_object_unpin_pages(src_obj);

	return ret ? ERR_PTR(ret) : dest_addr;
}

901 902 903 904 905
/**
 * i915_needs_cmd_parser() - should a given ring use software command parsing?
 * @ring: the ring in question
 *
 * Only certain platforms require software batch buffer command parsing, and
906
 * only when enabled via module parameter.
907 908 909
 *
 * Return: true if the ring requires software command parsing
 */
910
bool i915_needs_cmd_parser(struct intel_engine_cs *ring)
911
{
912
	if (!ring->needs_cmd_parser)
913 914
		return false;

915
	if (!USES_PPGTT(ring->dev))
916 917
		return false;

918 919 920
	return (i915.enable_cmd_parser == 1);
}

921
static bool check_cmd(const struct intel_engine_cs *ring,
922 923
		      const struct drm_i915_cmd_descriptor *desc,
		      const u32 *cmd,
924 925
		      const bool is_master,
		      bool *oacontrol_set)
926 927 928 929 930 931 932 933 934 935 936 937 938 939 940
{
	if (desc->flags & CMD_DESC_REJECT) {
		DRM_DEBUG_DRIVER("CMD: Rejected command: 0x%08X\n", *cmd);
		return false;
	}

	if ((desc->flags & CMD_DESC_MASTER) && !is_master) {
		DRM_DEBUG_DRIVER("CMD: Rejected master-only command: 0x%08X\n",
				 *cmd);
		return false;
	}

	if (desc->flags & CMD_DESC_REGISTER) {
		u32 reg_addr = cmd[desc->reg.offset] & desc->reg.mask;

941 942 943 944 945 946 947 948 949 950
		/*
		 * OACONTROL requires some special handling for writes. We
		 * want to make sure that any batch which enables OA also
		 * disables it before the end of the batch. The goal is to
		 * prevent one process from snooping on the perf data from
		 * another process. To do that, we need to check the value
		 * that will be written to the register. Hence, limit
		 * OACONTROL writes to only MI_LOAD_REGISTER_IMM commands.
		 */
		if (reg_addr == OACONTROL) {
951 952
			if (desc->cmd.value == MI_LOAD_REGISTER_MEM) {
				DRM_DEBUG_DRIVER("CMD: Rejected LRM to OACONTROL\n");
953
				return false;
954
			}
955 956 957 958 959

			if (desc->cmd.value == MI_LOAD_REGISTER_IMM(1))
				*oacontrol_set = (cmd[2] != 0);
		}

960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010
		if (!valid_reg(ring->reg_table,
			       ring->reg_count, reg_addr)) {
			if (!is_master ||
			    !valid_reg(ring->master_reg_table,
				       ring->master_reg_count,
				       reg_addr)) {
				DRM_DEBUG_DRIVER("CMD: Rejected register 0x%08X in command: 0x%08X (ring=%d)\n",
						 reg_addr,
						 *cmd,
						 ring->id);
				return false;
			}
		}
	}

	if (desc->flags & CMD_DESC_BITMASK) {
		int i;

		for (i = 0; i < MAX_CMD_DESC_BITMASKS; i++) {
			u32 dword;

			if (desc->bits[i].mask == 0)
				break;

			if (desc->bits[i].condition_mask != 0) {
				u32 offset =
					desc->bits[i].condition_offset;
				u32 condition = cmd[offset] &
					desc->bits[i].condition_mask;

				if (condition == 0)
					continue;
			}

			dword = cmd[desc->bits[i].offset] &
				desc->bits[i].mask;

			if (dword != desc->bits[i].expected) {
				DRM_DEBUG_DRIVER("CMD: Rejected command 0x%08X for bitmask 0x%08X (exp=0x%08X act=0x%08X) (ring=%d)\n",
						 *cmd,
						 desc->bits[i].mask,
						 desc->bits[i].expected,
						 dword, ring->id);
				return false;
			}
		}
	}

	return true;
}

1011 1012 1013 1014 1015 1016
#define LENGTH_BIAS 2

/**
 * i915_parse_cmds() - parse a submitted batch buffer for privilege violations
 * @ring: the ring on which the batch is to execute
 * @batch_obj: the batch buffer in question
1017
 * @shadow_batch_obj: copy of the batch buffer in question
1018 1019 1020 1021 1022 1023
 * @batch_start_offset: byte offset in the batch at which execution starts
 * @is_master: is the submitting process the drm master?
 *
 * Parses the specified batch buffer looking for privilege violations as
 * described in the overview.
 *
1024 1025
 * Return: non-zero if the parser finds violations or otherwise fails; -EACCES
 * if the batch appears legal but should use hardware parsing
1026
 */
1027
int i915_parse_cmds(struct intel_engine_cs *ring,
1028
		    struct drm_i915_gem_object *batch_obj,
1029
		    struct drm_i915_gem_object *shadow_batch_obj,
1030 1031 1032 1033 1034 1035
		    u32 batch_start_offset,
		    bool is_master)
{
	int ret = 0;
	u32 *cmd, *batch_base, *batch_end;
	struct drm_i915_cmd_descriptor default_desc = { 0 };
1036
	bool oacontrol_set = false; /* OACONTROL tracking. See check_cmd() */
1037

1038 1039 1040 1041
	batch_base = copy_batch(shadow_batch_obj, batch_obj);
	if (IS_ERR(batch_base)) {
		DRM_DEBUG_DRIVER("CMD: Failed to copy batch\n");
		return PTR_ERR(batch_base);
1042 1043 1044
	}

	cmd = batch_base + (batch_start_offset / sizeof(*cmd));
1045 1046 1047 1048 1049 1050

	/*
	 * We use the source object's size because the shadow object is as
	 * large or larger and copy_batch() will write MI_NOPs to the extra
	 * space. Parsing should be faster in some cases this way.
	 */
1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067
	batch_end = cmd + (batch_obj->base.size / sizeof(*batch_end));

	while (cmd < batch_end) {
		const struct drm_i915_cmd_descriptor *desc;
		u32 length;

		if (*cmd == MI_BATCH_BUFFER_END)
			break;

		desc = find_cmd(ring, *cmd, &default_desc);
		if (!desc) {
			DRM_DEBUG_DRIVER("CMD: Unrecognized command: 0x%08X\n",
					 *cmd);
			ret = -EINVAL;
			break;
		}

1068 1069 1070 1071 1072 1073 1074 1075 1076 1077
		/*
		 * If the batch buffer contains a chained batch, return an
		 * error that tells the caller to abort and dispatch the
		 * workload as a non-secure batch.
		 */
		if (desc->cmd.value == MI_BATCH_BUFFER_START) {
			ret = -EACCES;
			break;
		}

1078 1079 1080 1081 1082 1083
		if (desc->flags & CMD_DESC_FIXED)
			length = desc->length.fixed;
		else
			length = ((*cmd & desc->length.mask) + LENGTH_BIAS);

		if ((batch_end - cmd) < length) {
1084
			DRM_DEBUG_DRIVER("CMD: Command length exceeds batch length: 0x%08X length=%u batchlen=%td\n",
1085 1086
					 *cmd,
					 length,
1087
					 batch_end - cmd);
1088 1089 1090 1091
			ret = -EINVAL;
			break;
		}

1092
		if (!check_cmd(ring, desc, cmd, is_master, &oacontrol_set)) {
1093 1094 1095 1096 1097 1098 1099
			ret = -EINVAL;
			break;
		}

		cmd += length;
	}

1100 1101 1102 1103 1104
	if (oacontrol_set) {
		DRM_DEBUG_DRIVER("CMD: batch set OACONTROL but did not clear it\n");
		ret = -EINVAL;
	}

1105 1106 1107 1108 1109 1110 1111 1112 1113
	if (cmd >= batch_end) {
		DRM_DEBUG_DRIVER("CMD: Got to the end of the buffer w/o a BBE cmd!\n");
		ret = -EINVAL;
	}

	vunmap(batch_base);

	return ret;
}
1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129

/**
 * i915_cmd_parser_get_version() - get the cmd parser version number
 *
 * The cmd parser maintains a simple increasing integer version number suitable
 * for passing to userspace clients to determine what operations are permitted.
 *
 * Return: the current version number of the cmd parser
 */
int i915_cmd_parser_get_version(void)
{
	/*
	 * Command parser version history
	 *
	 * 1. Initial version. Checks batches and reports violations, but leaves
	 *    hardware parsing enabled (so does not allow new use cases).
1130 1131
	 * 2. Allow access to the MI_PREDICATE_SRC0 and
	 *    MI_PREDICATE_SRC1 registers.
1132
	 */
1133
	return 2;
1134
}