drm/i915: Change SRM, LRM instructions to use correct length
MI_STORE_REGISTER_MEM, MI_LOAD_REGISTER_MEM instructions are not really variable length instructions unlike MI_LOAD_REGISTER_IMM where it expects (reg, addr) pairs so use fixed length for these instructions. v2: rebase Cc: Dave Gordon <david.s.gordon@intel.com> Signed-off-by: Arun Siluvery <arun.siluvery@linux.intel.com> Reviewed-by: Mika Kuoppala <mika.kuoppala@intel.com> [danvet: Appease checkpatch as Mika spotted in i915_reg.h - it seems terminally unhappy about i915_cmd_parser.c so that would be a separate patch.] Signed-off-by: Daniel Vetter <daniel.vetter@ffwll.ch>
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@ -124,14 +124,14 @@ static const struct drm_i915_cmd_descriptor common_cmds[] = {
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CMD( MI_STORE_DWORD_INDEX, SMI, !F, 0xFF, R ),
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CMD( MI_LOAD_REGISTER_IMM(1), SMI, !F, 0xFF, W,
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.reg = { .offset = 1, .mask = 0x007FFFFC, .step = 2 } ),
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CMD( MI_STORE_REGISTER_MEM(1), SMI, !F, 0xFF, W | B,
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CMD( MI_STORE_REGISTER_MEM, SMI, F, 1, W | B,
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.reg = { .offset = 1, .mask = 0x007FFFFC },
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.bits = {{
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.offset = 0,
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.mask = MI_GLOBAL_GTT,
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.expected = 0,
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}}, ),
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CMD( MI_LOAD_REGISTER_MEM(1), SMI, !F, 0xFF, W | B,
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CMD( MI_LOAD_REGISTER_MEM, SMI, F, 1, W | B,
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.reg = { .offset = 1, .mask = 0x007FFFFC },
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.bits = {{
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.offset = 0,
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@ -1021,7 +1021,7 @@ static bool check_cmd(const struct intel_engine_cs *ring,
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* only MI_LOAD_REGISTER_IMM commands.
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*/
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if (reg_addr == OACONTROL) {
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if (desc->cmd.value == MI_LOAD_REGISTER_MEM(1)) {
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if (desc->cmd.value == MI_LOAD_REGISTER_MEM) {
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DRM_DEBUG_DRIVER("CMD: Rejected LRM to OACONTROL\n");
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return false;
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}
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@ -1035,7 +1035,7 @@ static bool check_cmd(const struct intel_engine_cs *ring,
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* allowed mask/value pair given in the whitelist entry.
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*/
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if (reg->mask) {
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if (desc->cmd.value == MI_LOAD_REGISTER_MEM(1)) {
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if (desc->cmd.value == MI_LOAD_REGISTER_MEM) {
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DRM_DEBUG_DRIVER("CMD: Rejected LRM to masked register 0x%08X\n",
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reg_addr);
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return false;
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@ -352,8 +352,8 @@
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*/
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#define MI_LOAD_REGISTER_IMM(x) MI_INSTR(0x22, 2*(x)-1)
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#define MI_LRI_FORCE_POSTED (1<<12)
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#define MI_STORE_REGISTER_MEM(x) MI_INSTR(0x24, 2*(x)-1)
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#define MI_STORE_REGISTER_MEM_GEN8(x) MI_INSTR(0x24, 3*(x)-1)
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#define MI_STORE_REGISTER_MEM MI_INSTR(0x24, 1)
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#define MI_STORE_REGISTER_MEM_GEN8 MI_INSTR(0x24, 2)
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#define MI_SRM_LRM_GLOBAL_GTT (1<<22)
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#define MI_FLUSH_DW MI_INSTR(0x26, 1) /* for GEN6 */
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#define MI_FLUSH_DW_STORE_INDEX (1<<21)
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@ -364,8 +364,8 @@
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#define MI_INVALIDATE_BSD (1<<7)
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#define MI_FLUSH_DW_USE_GTT (1<<2)
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#define MI_FLUSH_DW_USE_PPGTT (0<<2)
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#define MI_LOAD_REGISTER_MEM(x) MI_INSTR(0x29, 2*(x)-1)
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#define MI_LOAD_REGISTER_MEM_GEN8(x) MI_INSTR(0x29, 3*(x)-1)
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#define MI_LOAD_REGISTER_MEM MI_INSTR(0x29, 1)
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#define MI_LOAD_REGISTER_MEM_GEN8 MI_INSTR(0x29, 2)
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#define MI_BATCH_BUFFER MI_INSTR(0x30, 1)
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#define MI_BATCH_NON_SECURE (1)
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/* for snb/ivb/vlv this also means "batch in ppgtt" when ppgtt is enabled. */
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@ -11031,10 +11031,10 @@ static int intel_gen7_queue_flip(struct drm_device *dev,
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DERRMR_PIPEB_PRI_FLIP_DONE |
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DERRMR_PIPEC_PRI_FLIP_DONE));
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if (IS_GEN8(dev))
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intel_ring_emit(ring, MI_STORE_REGISTER_MEM_GEN8(1) |
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intel_ring_emit(ring, MI_STORE_REGISTER_MEM_GEN8 |
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MI_SRM_LRM_GLOBAL_GTT);
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else
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intel_ring_emit(ring, MI_STORE_REGISTER_MEM(1) |
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intel_ring_emit(ring, MI_STORE_REGISTER_MEM |
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MI_SRM_LRM_GLOBAL_GTT);
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intel_ring_emit(ring, DERRMR);
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intel_ring_emit(ring, ring->scratch.gtt_offset + 256);
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@ -1130,7 +1130,7 @@ static inline int gen8_emit_flush_coherentl3_wa(struct intel_engine_cs *ring,
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if (IS_SKYLAKE(ring->dev) && INTEL_REVID(ring->dev) <= SKL_REVID_E0)
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l3sqc4_flush |= GEN8_LQSC_RO_PERF_DIS;
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wa_ctx_emit(batch, index, (MI_STORE_REGISTER_MEM_GEN8(1) |
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wa_ctx_emit(batch, index, (MI_STORE_REGISTER_MEM_GEN8 |
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MI_SRM_LRM_GLOBAL_GTT));
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wa_ctx_emit(batch, index, GEN8_L3SQCREG4);
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wa_ctx_emit(batch, index, ring->scratch.gtt_offset + 256);
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@ -1148,7 +1148,7 @@ static inline int gen8_emit_flush_coherentl3_wa(struct intel_engine_cs *ring,
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wa_ctx_emit(batch, index, 0);
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wa_ctx_emit(batch, index, 0);
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wa_ctx_emit(batch, index, (MI_LOAD_REGISTER_MEM_GEN8(1) |
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wa_ctx_emit(batch, index, (MI_LOAD_REGISTER_MEM_GEN8 |
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MI_SRM_LRM_GLOBAL_GTT));
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wa_ctx_emit(batch, index, GEN8_L3SQCREG4);
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wa_ctx_emit(batch, index, ring->scratch.gtt_offset + 256);
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