mirror of
https://gitlab.freedesktop.org/mesa/mesa.git
synced 2025-12-21 15:50:11 +01:00
664 lines
19 KiB
C
664 lines
19 KiB
C
/*
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* Copyright © 2014-2015 Broadcom
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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 NIR_BUILDER_H
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#define NIR_BUILDER_H
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#include "nir_control_flow.h"
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struct exec_list;
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typedef struct nir_builder {
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nir_cursor cursor;
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/* Whether new ALU instructions will be marked "exact" */
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bool exact;
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nir_shader *shader;
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nir_function_impl *impl;
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} nir_builder;
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static inline void
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nir_builder_init(nir_builder *build, nir_function_impl *impl)
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{
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memset(build, 0, sizeof(*build));
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build->exact = false;
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build->impl = impl;
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build->shader = impl->function->shader;
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}
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static inline void
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nir_builder_init_simple_shader(nir_builder *build, void *mem_ctx,
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gl_shader_stage stage,
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const nir_shader_compiler_options *options)
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{
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build->shader = nir_shader_create(mem_ctx, stage, options, NULL);
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nir_function *func = nir_function_create(build->shader, "main");
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build->exact = false;
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build->impl = nir_function_impl_create(func);
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build->cursor = nir_after_cf_list(&build->impl->body);
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}
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static inline void
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nir_builder_instr_insert(nir_builder *build, nir_instr *instr)
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{
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nir_instr_insert(build->cursor, instr);
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/* Move the cursor forward. */
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build->cursor = nir_after_instr(instr);
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}
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static inline nir_instr *
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nir_builder_last_instr(nir_builder *build)
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{
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assert(build->cursor.option == nir_cursor_after_instr);
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return build->cursor.instr;
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}
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static inline void
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nir_builder_cf_insert(nir_builder *build, nir_cf_node *cf)
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{
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nir_cf_node_insert(build->cursor, cf);
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}
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static inline bool
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nir_builder_is_inside_cf(nir_builder *build, nir_cf_node *cf_node)
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{
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nir_block *block = nir_cursor_current_block(build->cursor);
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for (nir_cf_node *n = &block->cf_node; n; n = n->parent) {
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if (n == cf_node)
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return true;
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}
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return false;
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}
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static inline nir_if *
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nir_push_if(nir_builder *build, nir_ssa_def *condition)
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{
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nir_if *nif = nir_if_create(build->shader);
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nif->condition = nir_src_for_ssa(condition);
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nir_builder_cf_insert(build, &nif->cf_node);
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build->cursor = nir_before_cf_list(&nif->then_list);
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return nif;
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}
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static inline nir_if *
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nir_push_else(nir_builder *build, nir_if *nif)
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{
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if (nif) {
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assert(nir_builder_is_inside_cf(build, &nif->cf_node));
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} else {
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nir_block *block = nir_cursor_current_block(build->cursor);
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nif = nir_cf_node_as_if(block->cf_node.parent);
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}
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build->cursor = nir_before_cf_list(&nif->else_list);
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return nif;
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}
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static inline void
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nir_pop_if(nir_builder *build, nir_if *nif)
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{
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if (nif) {
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assert(nir_builder_is_inside_cf(build, &nif->cf_node));
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} else {
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nir_block *block = nir_cursor_current_block(build->cursor);
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nif = nir_cf_node_as_if(block->cf_node.parent);
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}
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build->cursor = nir_after_cf_node(&nif->cf_node);
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}
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static inline nir_ssa_def *
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nir_if_phi(nir_builder *build, nir_ssa_def *then_def, nir_ssa_def *else_def)
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{
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nir_block *block = nir_cursor_current_block(build->cursor);
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nir_if *nif = nir_cf_node_as_if(nir_cf_node_prev(&block->cf_node));
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nir_phi_instr *phi = nir_phi_instr_create(build->shader);
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nir_phi_src *src = ralloc(phi, nir_phi_src);
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src->pred = nir_if_last_then_block(nif);
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src->src = nir_src_for_ssa(then_def);
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exec_list_push_tail(&phi->srcs, &src->node);
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src = ralloc(phi, nir_phi_src);
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src->pred = nir_if_last_else_block(nif);
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src->src = nir_src_for_ssa(else_def);
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exec_list_push_tail(&phi->srcs, &src->node);
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assert(then_def->num_components == else_def->num_components);
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assert(then_def->bit_size == else_def->bit_size);
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nir_ssa_dest_init(&phi->instr, &phi->dest,
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then_def->num_components, then_def->bit_size, NULL);
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nir_builder_instr_insert(build, &phi->instr);
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return &phi->dest.ssa;
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}
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static inline nir_loop *
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nir_push_loop(nir_builder *build)
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{
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nir_loop *loop = nir_loop_create(build->shader);
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nir_builder_cf_insert(build, &loop->cf_node);
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build->cursor = nir_before_cf_list(&loop->body);
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return loop;
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}
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static inline void
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nir_pop_loop(nir_builder *build, nir_loop *loop)
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{
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if (loop) {
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assert(nir_builder_is_inside_cf(build, &loop->cf_node));
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} else {
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nir_block *block = nir_cursor_current_block(build->cursor);
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loop = nir_cf_node_as_loop(block->cf_node.parent);
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}
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build->cursor = nir_after_cf_node(&loop->cf_node);
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}
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static inline nir_ssa_def *
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nir_ssa_undef(nir_builder *build, unsigned num_components, unsigned bit_size)
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{
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nir_ssa_undef_instr *undef =
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nir_ssa_undef_instr_create(build->shader, num_components, bit_size);
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if (!undef)
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return NULL;
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nir_instr_insert(nir_before_cf_list(&build->impl->body), &undef->instr);
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return &undef->def;
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}
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static inline nir_ssa_def *
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nir_build_imm(nir_builder *build, unsigned num_components,
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unsigned bit_size, nir_const_value value)
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{
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nir_load_const_instr *load_const =
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nir_load_const_instr_create(build->shader, num_components, bit_size);
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if (!load_const)
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return NULL;
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load_const->value = value;
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nir_builder_instr_insert(build, &load_const->instr);
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return &load_const->def;
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}
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static inline nir_ssa_def *
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nir_imm_float(nir_builder *build, float x)
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{
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nir_const_value v;
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memset(&v, 0, sizeof(v));
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v.f32[0] = x;
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return nir_build_imm(build, 1, 32, v);
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}
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static inline nir_ssa_def *
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nir_imm_double(nir_builder *build, double x)
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{
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nir_const_value v;
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memset(&v, 0, sizeof(v));
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v.f64[0] = x;
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return nir_build_imm(build, 1, 64, v);
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}
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static inline nir_ssa_def *
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nir_imm_vec4(nir_builder *build, float x, float y, float z, float w)
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{
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nir_const_value v;
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memset(&v, 0, sizeof(v));
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v.f32[0] = x;
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v.f32[1] = y;
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v.f32[2] = z;
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v.f32[3] = w;
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return nir_build_imm(build, 4, 32, v);
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}
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static inline nir_ssa_def *
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nir_imm_int(nir_builder *build, int x)
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{
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nir_const_value v;
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memset(&v, 0, sizeof(v));
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v.i32[0] = x;
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return nir_build_imm(build, 1, 32, v);
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}
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static inline nir_ssa_def *
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nir_imm_int64(nir_builder *build, int64_t x)
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{
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nir_const_value v;
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memset(&v, 0, sizeof(v));
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v.i64[0] = x;
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return nir_build_imm(build, 1, 64, v);
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}
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static inline nir_ssa_def *
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nir_imm_intN_t(nir_builder *build, uint64_t x, unsigned bit_size)
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{
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nir_const_value v;
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memset(&v, 0, sizeof(v));
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assert(bit_size <= 64);
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v.i64[0] = x & (~0ull >> (64 - bit_size));
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return nir_build_imm(build, 1, bit_size, v);
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}
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static inline nir_ssa_def *
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nir_imm_ivec4(nir_builder *build, int x, int y, int z, int w)
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{
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nir_const_value v;
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memset(&v, 0, sizeof(v));
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v.i32[0] = x;
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v.i32[1] = y;
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v.i32[2] = z;
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v.i32[3] = w;
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return nir_build_imm(build, 4, 32, v);
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}
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static inline nir_ssa_def *
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nir_build_alu(nir_builder *build, nir_op op, nir_ssa_def *src0,
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nir_ssa_def *src1, nir_ssa_def *src2, nir_ssa_def *src3)
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{
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const nir_op_info *op_info = &nir_op_infos[op];
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nir_alu_instr *instr = nir_alu_instr_create(build->shader, op);
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if (!instr)
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return NULL;
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instr->exact = build->exact;
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instr->src[0].src = nir_src_for_ssa(src0);
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if (src1)
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instr->src[1].src = nir_src_for_ssa(src1);
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if (src2)
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instr->src[2].src = nir_src_for_ssa(src2);
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if (src3)
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instr->src[3].src = nir_src_for_ssa(src3);
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/* Guess the number of components the destination temporary should have
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* based on our input sizes, if it's not fixed for the op.
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*/
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unsigned num_components = op_info->output_size;
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if (num_components == 0) {
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for (unsigned i = 0; i < op_info->num_inputs; i++) {
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if (op_info->input_sizes[i] == 0)
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num_components = MAX2(num_components,
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instr->src[i].src.ssa->num_components);
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}
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}
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assert(num_components != 0);
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/* Figure out the bitwidth based on the source bitwidth if the instruction
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* is variable-width.
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*/
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unsigned bit_size = nir_alu_type_get_type_size(op_info->output_type);
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if (bit_size == 0) {
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for (unsigned i = 0; i < op_info->num_inputs; i++) {
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unsigned src_bit_size = instr->src[i].src.ssa->bit_size;
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if (nir_alu_type_get_type_size(op_info->input_types[i]) == 0) {
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if (bit_size)
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assert(src_bit_size == bit_size);
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else
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bit_size = src_bit_size;
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} else {
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assert(src_bit_size ==
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nir_alu_type_get_type_size(op_info->input_types[i]));
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}
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}
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}
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/* When in doubt, assume 32. */
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if (bit_size == 0)
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bit_size = 32;
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/* Make sure we don't swizzle from outside of our source vector (like if a
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* scalar value was passed into a multiply with a vector).
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*/
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for (unsigned i = 0; i < op_info->num_inputs; i++) {
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for (unsigned j = instr->src[i].src.ssa->num_components; j < 4; j++) {
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instr->src[i].swizzle[j] = instr->src[i].src.ssa->num_components - 1;
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}
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}
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nir_ssa_dest_init(&instr->instr, &instr->dest.dest, num_components,
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bit_size, NULL);
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instr->dest.write_mask = (1 << num_components) - 1;
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nir_builder_instr_insert(build, &instr->instr);
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return &instr->dest.dest.ssa;
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}
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#include "nir_builder_opcodes.h"
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static inline nir_ssa_def *
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nir_vec(nir_builder *build, nir_ssa_def **comp, unsigned num_components)
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{
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switch (num_components) {
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case 4:
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return nir_vec4(build, comp[0], comp[1], comp[2], comp[3]);
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case 3:
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return nir_vec3(build, comp[0], comp[1], comp[2]);
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case 2:
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return nir_vec2(build, comp[0], comp[1]);
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case 1:
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return comp[0];
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default:
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unreachable("bad component count");
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return NULL;
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}
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}
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/**
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* Similar to nir_fmov, but takes a nir_alu_src instead of a nir_ssa_def.
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*/
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static inline nir_ssa_def *
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nir_fmov_alu(nir_builder *build, nir_alu_src src, unsigned num_components)
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{
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nir_alu_instr *mov = nir_alu_instr_create(build->shader, nir_op_fmov);
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nir_ssa_dest_init(&mov->instr, &mov->dest.dest, num_components,
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nir_src_bit_size(src.src), NULL);
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mov->exact = build->exact;
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mov->dest.write_mask = (1 << num_components) - 1;
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mov->src[0] = src;
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nir_builder_instr_insert(build, &mov->instr);
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return &mov->dest.dest.ssa;
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}
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static inline nir_ssa_def *
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nir_imov_alu(nir_builder *build, nir_alu_src src, unsigned num_components)
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{
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nir_alu_instr *mov = nir_alu_instr_create(build->shader, nir_op_imov);
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nir_ssa_dest_init(&mov->instr, &mov->dest.dest, num_components,
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nir_src_bit_size(src.src), NULL);
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mov->exact = build->exact;
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mov->dest.write_mask = (1 << num_components) - 1;
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mov->src[0] = src;
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nir_builder_instr_insert(build, &mov->instr);
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return &mov->dest.dest.ssa;
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}
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/**
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* Construct an fmov or imov that reswizzles the source's components.
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*/
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static inline nir_ssa_def *
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nir_swizzle(nir_builder *build, nir_ssa_def *src, const unsigned swiz[4],
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unsigned num_components, bool use_fmov)
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{
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nir_alu_src alu_src = { NIR_SRC_INIT };
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alu_src.src = nir_src_for_ssa(src);
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for (unsigned i = 0; i < num_components; i++)
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alu_src.swizzle[i] = swiz[i];
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return use_fmov ? nir_fmov_alu(build, alu_src, num_components) :
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nir_imov_alu(build, alu_src, num_components);
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}
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/* Selects the right fdot given the number of components in each source. */
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static inline nir_ssa_def *
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nir_fdot(nir_builder *build, nir_ssa_def *src0, nir_ssa_def *src1)
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{
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assert(src0->num_components == src1->num_components);
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switch (src0->num_components) {
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case 1: return nir_fmul(build, src0, src1);
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case 2: return nir_fdot2(build, src0, src1);
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case 3: return nir_fdot3(build, src0, src1);
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case 4: return nir_fdot4(build, src0, src1);
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default:
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unreachable("bad component size");
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}
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return NULL;
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}
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static inline nir_ssa_def *
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nir_bany_inequal(nir_builder *b, nir_ssa_def *src0, nir_ssa_def *src1)
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{
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switch (src0->num_components) {
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case 1: return nir_ine(b, src0, src1);
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case 2: return nir_bany_inequal2(b, src0, src1);
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case 3: return nir_bany_inequal3(b, src0, src1);
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case 4: return nir_bany_inequal4(b, src0, src1);
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default:
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unreachable("bad component size");
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}
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}
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static inline nir_ssa_def *
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nir_bany(nir_builder *b, nir_ssa_def *src)
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{
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return nir_bany_inequal(b, src, nir_imm_int(b, 0));
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}
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static inline nir_ssa_def *
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nir_channel(nir_builder *b, nir_ssa_def *def, unsigned c)
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{
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unsigned swizzle[4] = {c, c, c, c};
|
|
return nir_swizzle(b, def, swizzle, 1, false);
|
|
}
|
|
|
|
static inline nir_ssa_def *
|
|
nir_channels(nir_builder *b, nir_ssa_def *def, unsigned mask)
|
|
{
|
|
unsigned num_channels = 0, swizzle[4] = { 0, 0, 0, 0 };
|
|
|
|
for (unsigned i = 0; i < 4; i++) {
|
|
if ((mask & (1 << i)) == 0)
|
|
continue;
|
|
swizzle[num_channels++] = i;
|
|
}
|
|
|
|
return nir_swizzle(b, def, swizzle, num_channels, false);
|
|
}
|
|
|
|
/**
|
|
* Turns a nir_src into a nir_ssa_def * so it can be passed to
|
|
* nir_build_alu()-based builder calls.
|
|
*
|
|
* See nir_ssa_for_alu_src() for alu instructions.
|
|
*/
|
|
static inline nir_ssa_def *
|
|
nir_ssa_for_src(nir_builder *build, nir_src src, int num_components)
|
|
{
|
|
if (src.is_ssa && src.ssa->num_components == num_components)
|
|
return src.ssa;
|
|
|
|
nir_alu_src alu = { NIR_SRC_INIT };
|
|
alu.src = src;
|
|
for (int j = 0; j < 4; j++)
|
|
alu.swizzle[j] = j;
|
|
|
|
return nir_imov_alu(build, alu, num_components);
|
|
}
|
|
|
|
/**
|
|
* Similar to nir_ssa_for_src(), but for alu srcs, respecting the
|
|
* nir_alu_src's swizzle.
|
|
*/
|
|
static inline nir_ssa_def *
|
|
nir_ssa_for_alu_src(nir_builder *build, nir_alu_instr *instr, unsigned srcn)
|
|
{
|
|
static uint8_t trivial_swizzle[4] = { 0, 1, 2, 3 };
|
|
nir_alu_src *src = &instr->src[srcn];
|
|
unsigned num_components = nir_ssa_alu_instr_src_components(instr, srcn);
|
|
|
|
if (src->src.is_ssa && (src->src.ssa->num_components == num_components) &&
|
|
!src->abs && !src->negate &&
|
|
(memcmp(src->swizzle, trivial_swizzle, num_components) == 0))
|
|
return src->src.ssa;
|
|
|
|
return nir_imov_alu(build, *src, num_components);
|
|
}
|
|
|
|
static inline nir_ssa_def *
|
|
nir_load_reg(nir_builder *build, nir_register *reg)
|
|
{
|
|
return nir_ssa_for_src(build, nir_src_for_reg(reg), reg->num_components);
|
|
}
|
|
|
|
static inline nir_ssa_def *
|
|
nir_load_var(nir_builder *build, nir_variable *var)
|
|
{
|
|
const unsigned num_components = glsl_get_vector_elements(var->type);
|
|
|
|
nir_intrinsic_instr *load =
|
|
nir_intrinsic_instr_create(build->shader, nir_intrinsic_load_var);
|
|
load->num_components = num_components;
|
|
load->variables[0] = nir_deref_var_create(load, var);
|
|
nir_ssa_dest_init(&load->instr, &load->dest, num_components,
|
|
glsl_get_bit_size(var->type), NULL);
|
|
nir_builder_instr_insert(build, &load->instr);
|
|
return &load->dest.ssa;
|
|
}
|
|
|
|
static inline nir_ssa_def *
|
|
nir_load_deref_var(nir_builder *build, nir_deref_var *deref)
|
|
{
|
|
const struct glsl_type *type = nir_deref_tail(&deref->deref)->type;
|
|
const unsigned num_components = glsl_get_vector_elements(type);
|
|
|
|
nir_intrinsic_instr *load =
|
|
nir_intrinsic_instr_create(build->shader, nir_intrinsic_load_var);
|
|
load->num_components = num_components;
|
|
load->variables[0] = nir_deref_var_clone(deref, load);
|
|
nir_ssa_dest_init(&load->instr, &load->dest, num_components,
|
|
glsl_get_bit_size(type), NULL);
|
|
nir_builder_instr_insert(build, &load->instr);
|
|
return &load->dest.ssa;
|
|
}
|
|
|
|
static inline void
|
|
nir_store_var(nir_builder *build, nir_variable *var, nir_ssa_def *value,
|
|
unsigned writemask)
|
|
{
|
|
const unsigned num_components = glsl_get_vector_elements(var->type);
|
|
|
|
nir_intrinsic_instr *store =
|
|
nir_intrinsic_instr_create(build->shader, nir_intrinsic_store_var);
|
|
store->num_components = num_components;
|
|
nir_intrinsic_set_write_mask(store, writemask);
|
|
store->variables[0] = nir_deref_var_create(store, var);
|
|
store->src[0] = nir_src_for_ssa(value);
|
|
nir_builder_instr_insert(build, &store->instr);
|
|
}
|
|
|
|
static inline void
|
|
nir_store_deref_var(nir_builder *build, nir_deref_var *deref,
|
|
nir_ssa_def *value, unsigned writemask)
|
|
{
|
|
const unsigned num_components =
|
|
glsl_get_vector_elements(nir_deref_tail(&deref->deref)->type);
|
|
|
|
nir_intrinsic_instr *store =
|
|
nir_intrinsic_instr_create(build->shader, nir_intrinsic_store_var);
|
|
store->num_components = num_components;
|
|
store->const_index[0] = writemask & ((1 << num_components) - 1);
|
|
store->variables[0] = nir_deref_var_clone(deref, store);
|
|
store->src[0] = nir_src_for_ssa(value);
|
|
nir_builder_instr_insert(build, &store->instr);
|
|
}
|
|
|
|
static inline void
|
|
nir_copy_deref_var(nir_builder *build, nir_deref_var *dest, nir_deref_var *src)
|
|
{
|
|
assert(nir_deref_tail(&dest->deref)->type ==
|
|
nir_deref_tail(&src->deref)->type);
|
|
|
|
nir_intrinsic_instr *copy =
|
|
nir_intrinsic_instr_create(build->shader, nir_intrinsic_copy_var);
|
|
copy->variables[0] = nir_deref_var_clone(dest, copy);
|
|
copy->variables[1] = nir_deref_var_clone(src, copy);
|
|
nir_builder_instr_insert(build, ©->instr);
|
|
}
|
|
|
|
static inline void
|
|
nir_copy_var(nir_builder *build, nir_variable *dest, nir_variable *src)
|
|
{
|
|
nir_intrinsic_instr *copy =
|
|
nir_intrinsic_instr_create(build->shader, nir_intrinsic_copy_var);
|
|
copy->variables[0] = nir_deref_var_create(copy, dest);
|
|
copy->variables[1] = nir_deref_var_create(copy, src);
|
|
nir_builder_instr_insert(build, ©->instr);
|
|
}
|
|
|
|
#include "nir_builder_opcodes.h"
|
|
|
|
static inline nir_ssa_def *
|
|
nir_load_barycentric(nir_builder *build, nir_intrinsic_op op,
|
|
unsigned interp_mode)
|
|
{
|
|
nir_intrinsic_instr *bary = nir_intrinsic_instr_create(build->shader, op);
|
|
nir_ssa_dest_init(&bary->instr, &bary->dest, 2, 32, NULL);
|
|
nir_intrinsic_set_interp_mode(bary, interp_mode);
|
|
nir_builder_instr_insert(build, &bary->instr);
|
|
return &bary->dest.ssa;
|
|
}
|
|
|
|
static inline void
|
|
nir_jump(nir_builder *build, nir_jump_type jump_type)
|
|
{
|
|
nir_jump_instr *jump = nir_jump_instr_create(build->shader, jump_type);
|
|
nir_builder_instr_insert(build, &jump->instr);
|
|
}
|
|
|
|
static inline nir_ssa_def *
|
|
nir_compare_func(nir_builder *b, enum compare_func func,
|
|
nir_ssa_def *src0, nir_ssa_def *src1)
|
|
{
|
|
switch (func) {
|
|
case COMPARE_FUNC_NEVER:
|
|
return nir_imm_int(b, 0);
|
|
case COMPARE_FUNC_ALWAYS:
|
|
return nir_imm_int(b, ~0);
|
|
case COMPARE_FUNC_EQUAL:
|
|
return nir_feq(b, src0, src1);
|
|
case COMPARE_FUNC_NOTEQUAL:
|
|
return nir_fne(b, src0, src1);
|
|
case COMPARE_FUNC_GREATER:
|
|
return nir_flt(b, src1, src0);
|
|
case COMPARE_FUNC_GEQUAL:
|
|
return nir_fge(b, src0, src1);
|
|
case COMPARE_FUNC_LESS:
|
|
return nir_flt(b, src0, src1);
|
|
case COMPARE_FUNC_LEQUAL:
|
|
return nir_fge(b, src1, src0);
|
|
}
|
|
unreachable("bad compare func");
|
|
}
|
|
|
|
#endif /* NIR_BUILDER_H */
|