agx: Optimize waits locally
Signed-off-by: Alyssa Rosenzweig <alyssa@rosenzweig.io> Part-of: <https://gitlab.freedesktop.org/mesa/mesa/-/merge_requests/20446>
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@@ -44,6 +44,7 @@ static const struct debug_named_value agx_debug_options[] = {
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{"internal", AGX_DBG_INTERNAL, "Dump even internal shaders"},
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{"novalidate",AGX_DBG_NOVALIDATE,"Skip IR validation in debug builds"},
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{"noopt", AGX_DBG_NOOPT, "Disable backend optimizations"},
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{"wait", AGX_DBG_WAIT, "Wait after all async instructions"},
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DEBUG_NAMED_VALUE_END
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};
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/* clang-format on */
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@@ -47,6 +47,7 @@ enum agx_dbg {
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AGX_DBG_INTERNAL = BITFIELD_BIT(4),
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AGX_DBG_NOVALIDATE = BITFIELD_BIT(5),
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AGX_DBG_NOOPT = BITFIELD_BIT(6),
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AGX_DBG_WAIT = BITFIELD_BIT(7),
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};
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/* clang-format on */
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@@ -6,6 +6,8 @@
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#include "agx_builder.h"
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#include "agx_compiler.h"
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#define AGX_MAX_PENDING (8)
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/*
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* Returns whether an instruction is asynchronous and needs a scoreboard slot
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*/
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@@ -15,6 +17,16 @@ instr_is_async(agx_instr *I)
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return agx_opcodes_info[I->op].immediates & AGX_IMMEDIATE_SCOREBOARD;
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}
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struct slot {
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/* Set of registers this slot is currently writing */
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BITSET_DECLARE(writes, AGX_NUM_REGS);
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/* Number of pending messages on this slot. Must not exceed
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* AGX_MAX_PENDING for correct results.
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*/
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uint8_t nr_pending;
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};
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/*
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* Insert waits within a block to stall after every async instruction. Useful
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* for debugging.
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@@ -30,6 +42,92 @@ agx_insert_waits_trivial(agx_context *ctx, agx_block *block)
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}
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}
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/*
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* Insert waits within a block, assuming scoreboard slots have already been
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* assigned. This waits for everything at the end of the block, rather than
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* doing something more intelligent/global. This should be optimized.
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*
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* XXX: Do any instructions read their sources asynchronously?
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*/
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static void
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agx_insert_waits_local(agx_context *ctx, agx_block *block)
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{
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struct slot slots[2] = {0};
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agx_foreach_instr_in_block_safe(block, I) {
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uint8_t wait_mask = 0;
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/* Check for read-after-write */
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agx_foreach_src(I, s) {
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if (I->src[s].type != AGX_INDEX_REGISTER)
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continue;
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unsigned nr_read = agx_read_registers(I, s);
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for (unsigned slot = 0; slot < ARRAY_SIZE(slots); ++slot) {
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if (BITSET_TEST_RANGE(slots[slot].writes, I->src[s].value,
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I->src[s].value + nr_read - 1))
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wait_mask |= BITSET_BIT(slot);
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}
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}
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/* Check for write-after-write */
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agx_foreach_dest(I, d) {
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if (I->dest[d].type != AGX_INDEX_REGISTER)
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continue;
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unsigned nr_writes = agx_write_registers(I, d);
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for (unsigned slot = 0; slot < ARRAY_SIZE(slots); ++slot) {
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if (BITSET_TEST_RANGE(slots[slot].writes, I->dest[d].value,
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I->dest[d].value + nr_writes - 1))
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wait_mask |= BITSET_BIT(slot);
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}
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}
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/* Try to assign a free slot */
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if (instr_is_async(I)) {
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for (unsigned slot = 0; slot < ARRAY_SIZE(slots); ++slot) {
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if (slots[slot].nr_pending == 0) {
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I->scoreboard = slot;
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break;
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}
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}
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}
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/* Check for slot overflow */
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if (instr_is_async(I) &&
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slots[I->scoreboard].nr_pending >= AGX_MAX_PENDING)
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wait_mask |= BITSET_BIT(I->scoreboard);
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/* Insert the appropriate waits, clearing the slots */
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u_foreach_bit(slot, wait_mask) {
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agx_builder b = agx_init_builder(ctx, agx_before_instr(I));
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agx_wait(&b, slot);
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BITSET_ZERO(slots[slot].writes);
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slots[slot].nr_pending = 0;
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}
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/* Record access */
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if (instr_is_async(I)) {
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agx_foreach_dest(I, d) {
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assert(I->dest[d].type == AGX_INDEX_REGISTER);
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BITSET_SET_RANGE(slots[I->scoreboard].writes, I->dest[d].value,
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I->dest[d].value + agx_write_registers(I, d) - 1);
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}
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slots[I->scoreboard].nr_pending++;
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}
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}
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/* If there are outstanding messages, wait for them */
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for (unsigned slot = 0; slot < ARRAY_SIZE(slots); ++slot) {
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if (slots[slot].nr_pending) {
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agx_builder b = agx_init_builder(ctx, agx_after_block_logical(block));
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agx_wait(&b, slot);
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}
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}
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}
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/*
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* Assign scoreboard slots to asynchronous instructions and insert waits for the
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* appropriate hazard tracking.
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@@ -38,6 +136,9 @@ void
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agx_insert_waits(agx_context *ctx)
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{
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agx_foreach_block(ctx, block) {
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if (agx_debug & AGX_DBG_WAIT)
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agx_insert_waits_trivial(ctx, block);
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else
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agx_insert_waits_local(ctx, block);
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}
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}
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