
The previous check assumed the stack starts at offset=0, which isn't necessarily true for ray queries. Note that this didn't cause correctness issues, just made an optimization not apply. Found when I accidentally made this load-bearing in a refactor. Part-of: <https://gitlab.freedesktop.org/mesa/mesa/-/merge_requests/20265>
176 lines
6.5 KiB
C
176 lines
6.5 KiB
C
/*
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* Copyright © 2021 Google
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice (including the next
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* paragraph) shall be included in all copies or substantial portions of the
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* Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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* IN THE SOFTWARE.
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*/
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#ifndef RADV_RT_COMMON_H
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#define RADV_RT_COMMON_H
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#include "nir/nir.h"
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#include "nir/nir_builder.h"
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#include "nir/nir_vulkan.h"
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#include "compiler/spirv/spirv.h"
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#include "radv_private.h"
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void nir_sort_hit_pair(nir_builder *b, nir_variable *var_distances, nir_variable *var_indices,
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uint32_t chan_1, uint32_t chan_2);
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nir_ssa_def *intersect_ray_amd_software_box(struct radv_device *device, nir_builder *b,
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nir_ssa_def *bvh_node, nir_ssa_def *ray_tmax,
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nir_ssa_def *origin, nir_ssa_def *dir,
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nir_ssa_def *inv_dir);
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nir_ssa_def *intersect_ray_amd_software_tri(struct radv_device *device, nir_builder *b,
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nir_ssa_def *bvh_node, nir_ssa_def *ray_tmax,
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nir_ssa_def *origin, nir_ssa_def *dir,
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nir_ssa_def *inv_dir);
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nir_ssa_def *build_addr_to_node(nir_builder *b, nir_ssa_def *addr);
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nir_ssa_def *nir_build_vec3_mat_mult(nir_builder *b, nir_ssa_def *vec, nir_ssa_def *matrix[],
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bool translation);
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void nir_build_wto_matrix_load(nir_builder *b, nir_ssa_def *instance_addr, nir_ssa_def **out);
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nir_ssa_def *create_bvh_descriptor(nir_builder *b);
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struct radv_ray_traversal_args;
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struct radv_ray_flags {
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nir_ssa_def *force_opaque;
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nir_ssa_def *force_not_opaque;
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nir_ssa_def *terminate_on_first_hit;
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nir_ssa_def *no_cull_front;
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nir_ssa_def *no_cull_back;
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nir_ssa_def *no_cull_opaque;
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nir_ssa_def *no_cull_no_opaque;
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nir_ssa_def *no_skip_triangles;
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nir_ssa_def *no_skip_aabbs;
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};
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struct radv_leaf_intersection {
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nir_ssa_def *node_addr;
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nir_ssa_def *primitive_id;
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nir_ssa_def *geometry_id_and_flags;
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nir_ssa_def *opaque;
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};
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typedef void (*radv_aabb_intersection_cb)(nir_builder *b,
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struct radv_leaf_intersection *intersection,
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const struct radv_ray_traversal_args *args);
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struct radv_triangle_intersection {
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struct radv_leaf_intersection base;
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nir_ssa_def *t;
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nir_ssa_def *frontface;
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nir_ssa_def *barycentrics;
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};
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typedef void (*radv_triangle_intersection_cb)(nir_builder *b,
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struct radv_triangle_intersection *intersection,
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const struct radv_ray_traversal_args *args,
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const struct radv_ray_flags *ray_flags);
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typedef void (*radv_rt_stack_store_cb)(nir_builder *b, nir_ssa_def *index, nir_ssa_def *value,
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const struct radv_ray_traversal_args *args);
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typedef nir_ssa_def *(*radv_rt_stack_load_cb)(nir_builder *b, nir_ssa_def *index,
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const struct radv_ray_traversal_args *args);
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struct radv_ray_traversal_vars {
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/* For each accepted hit, tmax will be set to the t value. This allows for automatic intersection
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* culling.
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*/
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nir_deref_instr *tmax;
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/* Those variables change when entering and exiting BLASes. */
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nir_deref_instr *origin;
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nir_deref_instr *dir;
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nir_deref_instr *inv_dir;
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/* The base address of the current TLAS/BLAS. */
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nir_deref_instr *bvh_base;
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/* stack is the current stack pointer/index. top_stack is the pointer/index that marks the end of
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* traversal for the current BLAS/TLAS. stack_low_watermark is the low watermark of the short
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* stack.
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*/
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nir_deref_instr *stack;
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nir_deref_instr *top_stack;
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nir_deref_instr *stack_low_watermark;
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nir_deref_instr *current_node;
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/* The node visited in the previous iteration. This is used in backtracking to jump to its parent
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* and then find the child after the previously visited node.
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*/
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nir_deref_instr *previous_node;
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/* When entering an instance these are the instance node and the root node of the BLAS */
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nir_deref_instr *instance_top_node;
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nir_deref_instr *instance_bottom_node;
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/* Information about the current instance used for culling. */
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nir_deref_instr *instance_addr;
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nir_deref_instr *sbt_offset_and_flags;
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};
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struct radv_ray_traversal_args {
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nir_ssa_def *root_bvh_base;
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nir_ssa_def *flags;
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nir_ssa_def *cull_mask;
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nir_ssa_def *origin;
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nir_ssa_def *tmin;
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nir_ssa_def *dir;
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struct radv_ray_traversal_vars vars;
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/* The increment/decrement used for radv_ray_traversal_vars::stack, and how many entries are
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* available. stack_base is the base address of the stack. */
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uint32_t stack_stride;
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uint32_t stack_entries;
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uint32_t stack_base;
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radv_rt_stack_store_cb stack_store_cb;
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radv_rt_stack_load_cb stack_load_cb;
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radv_aabb_intersection_cb aabb_cb;
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radv_triangle_intersection_cb triangle_cb;
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void *data;
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};
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/* For the initialization of instance_bottom_node. Explicitly different than RADV_BVH_INVALID_NODE
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* or any real node, to ensure we never exit an instance when we're not in one. */
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#define RADV_BVH_NO_INSTANCE_ROOT 0xfffffffeu
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/* Builds the ray traversal loop and returns whether traversal is incomplete, similar to
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* rayQueryProceedEXT. Traversal will only be considered incomplete, if one of the specified
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* callbacks breaks out of the traversal loop.
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*/
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nir_ssa_def *radv_build_ray_traversal(struct radv_device *device, nir_builder *b,
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const struct radv_ray_traversal_args *args);
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#endif
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