
And add get_condition(). This proof that nothing remains that could possibly set ::condition to anything other than NULL. v2: Fix bad rebase. Reviewed-by: Matt Turner <mattst88@gmail.com> Part-of: <https://gitlab.freedesktop.org/mesa/mesa/-/merge_requests/14573>
674 lines
17 KiB
C++
674 lines
17 KiB
C++
/*
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* Copyright © 2010 Intel Corporation
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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
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* DEALINGS IN THE SOFTWARE.
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*/
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#include <inttypes.h> /* for PRIx64 macro */
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#include "ir_print_visitor.h"
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#include "compiler/glsl_types.h"
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#include "glsl_parser_extras.h"
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#include "main/macros.h"
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#include "util/hash_table.h"
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#include "util/u_string.h"
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#include "util/half_float.h"
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void
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ir_instruction::print(void) const
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{
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this->fprint(stdout);
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}
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void
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ir_instruction::fprint(FILE *f) const
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{
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ir_instruction *deconsted = const_cast<ir_instruction *>(this);
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ir_print_visitor v(f);
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deconsted->accept(&v);
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}
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extern "C" {
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void
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_mesa_print_ir(FILE *f, exec_list *instructions,
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struct _mesa_glsl_parse_state *state)
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{
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if (state) {
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for (unsigned i = 0; i < state->num_user_structures; i++) {
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const glsl_type *const s = state->user_structures[i];
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fprintf(f, "(structure (%s) (%s@%p) (%u) (\n",
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s->name, s->name, (void *) s, s->length);
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for (unsigned j = 0; j < s->length; j++) {
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fprintf(f, "\t((");
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glsl_print_type(f, s->fields.structure[j].type);
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fprintf(f, ")(%s))\n", s->fields.structure[j].name);
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}
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fprintf(f, ")\n");
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}
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}
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fprintf(f, "(\n");
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foreach_in_list(ir_instruction, ir, instructions) {
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ir->fprint(f);
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if (ir->ir_type != ir_type_function)
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fprintf(f, "\n");
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}
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fprintf(f, ")\n");
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}
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void
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fprint_ir(FILE *f, const void *instruction)
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{
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const ir_instruction *ir = (const ir_instruction *)instruction;
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ir->fprint(f);
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}
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} /* extern "C" */
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ir_print_visitor::ir_print_visitor(FILE *f)
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: f(f)
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{
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indentation = 0;
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printable_names = _mesa_pointer_hash_table_create(NULL);
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symbols = _mesa_symbol_table_ctor();
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mem_ctx = ralloc_context(NULL);
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}
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ir_print_visitor::~ir_print_visitor()
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{
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_mesa_hash_table_destroy(printable_names, NULL);
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_mesa_symbol_table_dtor(symbols);
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ralloc_free(mem_ctx);
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}
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void ir_print_visitor::indent(void)
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{
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for (int i = 0; i < indentation; i++)
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fprintf(f, " ");
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}
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const char *
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ir_print_visitor::unique_name(ir_variable *var)
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{
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/* var->name can be NULL in function prototypes when a type is given for a
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* parameter but no name is given. In that case, just return an empty
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* string. Don't worry about tracking the generated name in the printable
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* names hash because this is the only scope where it can ever appear.
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*/
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if (var->name == NULL) {
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static unsigned arg = 1;
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return ralloc_asprintf(this->mem_ctx, "parameter@%u", arg++);
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}
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/* Do we already have a name for this variable? */
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struct hash_entry * entry =
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_mesa_hash_table_search(this->printable_names, var);
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if (entry != NULL) {
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return (const char *) entry->data;
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}
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/* If there's no conflict, just use the original name */
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const char* name = NULL;
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if (_mesa_symbol_table_find_symbol(this->symbols, var->name) == NULL) {
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name = var->name;
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} else {
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static unsigned i = 1;
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name = ralloc_asprintf(this->mem_ctx, "%s@%u", var->name, ++i);
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}
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_mesa_hash_table_insert(this->printable_names, var, (void *) name);
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_mesa_symbol_table_add_symbol(this->symbols, name, var);
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return name;
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}
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void ir_print_visitor::visit(ir_rvalue *)
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{
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fprintf(f, "error");
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}
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void ir_print_visitor::visit(ir_variable *ir)
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{
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fprintf(f, "(declare ");
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char binding[32] = {0};
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if (ir->data.binding)
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snprintf(binding, sizeof(binding), "binding=%i ", ir->data.binding);
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char loc[32] = {0};
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if (ir->data.location != -1)
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snprintf(loc, sizeof(loc), "location=%i ", ir->data.location);
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char component[32] = {0};
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if (ir->data.explicit_component || ir->data.location_frac != 0)
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snprintf(component, sizeof(component), "component=%i ",
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ir->data.location_frac);
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char stream[32] = {0};
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if (ir->data.stream & (1u << 31)) {
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if (ir->data.stream & ~(1u << 31)) {
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snprintf(stream, sizeof(stream), "stream(%u,%u,%u,%u) ",
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ir->data.stream & 3, (ir->data.stream >> 2) & 3,
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(ir->data.stream >> 4) & 3, (ir->data.stream >> 6) & 3);
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}
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} else if (ir->data.stream) {
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snprintf(stream, sizeof(stream), "stream%u ", ir->data.stream);
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}
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char image_format[32] = {0};
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if (ir->data.image_format) {
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snprintf(image_format, sizeof(image_format), "format=%x ",
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ir->data.image_format);
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}
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const char *const cent = (ir->data.centroid) ? "centroid " : "";
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const char *const samp = (ir->data.sample) ? "sample " : "";
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const char *const patc = (ir->data.patch) ? "patch " : "";
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const char *const inv = (ir->data.invariant) ? "invariant " : "";
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const char *const explicit_inv = (ir->data.explicit_invariant) ? "explicit_invariant " : "";
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const char *const prec = (ir->data.precise) ? "precise " : "";
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const char *const bindless = (ir->data.bindless) ? "bindless " : "";
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const char *const bound = (ir->data.bound) ? "bound " : "";
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const char *const memory_read_only = (ir->data.memory_read_only) ? "readonly " : "";
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const char *const memory_write_only = (ir->data.memory_write_only) ? "writeonly " : "";
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const char *const memory_coherent = (ir->data.memory_coherent) ? "coherent " : "";
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const char *const memory_volatile = (ir->data.memory_volatile) ? "volatile " : "";
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const char *const memory_restrict = (ir->data.memory_restrict) ? "restrict " : "";
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const char *const mode[] = { "", "uniform ", "shader_storage ",
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"shader_shared ", "shader_in ", "shader_out ",
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"in ", "out ", "inout ",
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"const_in ", "sys ", "temporary " };
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STATIC_ASSERT(ARRAY_SIZE(mode) == ir_var_mode_count);
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const char *const interp[] = { "", "smooth", "flat", "noperspective", "explicit", "color" };
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STATIC_ASSERT(ARRAY_SIZE(interp) == INTERP_MODE_COUNT);
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const char *const precision[] = { "", "highp ", "mediump ", "lowp "};
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fprintf(f, "(%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s) ",
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binding, loc, component, cent, bindless, bound,
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image_format, memory_read_only, memory_write_only,
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memory_coherent, memory_volatile, memory_restrict,
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samp, patc, inv, explicit_inv, prec, mode[ir->data.mode],
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stream,
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interp[ir->data.interpolation], precision[ir->data.precision]);
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glsl_print_type(f, ir->type);
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fprintf(f, " %s)", unique_name(ir));
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if (ir->constant_initializer) {
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fprintf(f, " ");
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visit(ir->constant_initializer);
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}
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if (ir->constant_value) {
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fprintf(f, " ");
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visit(ir->constant_value);
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}
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}
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void ir_print_visitor::visit(ir_function_signature *ir)
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{
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_mesa_symbol_table_push_scope(symbols);
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fprintf(f, "(signature ");
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indentation++;
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glsl_print_type(f, ir->return_type);
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fprintf(f, "\n");
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indent();
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fprintf(f, "(parameters\n");
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indentation++;
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foreach_in_list(ir_variable, inst, &ir->parameters) {
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indent();
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inst->accept(this);
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fprintf(f, "\n");
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}
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indentation--;
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indent();
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fprintf(f, ")\n");
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indent();
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fprintf(f, "(\n");
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indentation++;
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foreach_in_list(ir_instruction, inst, &ir->body) {
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indent();
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inst->accept(this);
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fprintf(f, "\n");
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}
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indentation--;
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indent();
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fprintf(f, "))\n");
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indentation--;
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_mesa_symbol_table_pop_scope(symbols);
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}
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void ir_print_visitor::visit(ir_function *ir)
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{
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fprintf(f, "(%s function %s\n", ir->is_subroutine ? "subroutine" : "", ir->name);
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indentation++;
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foreach_in_list(ir_function_signature, sig, &ir->signatures) {
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indent();
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sig->accept(this);
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fprintf(f, "\n");
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}
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indentation--;
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indent();
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fprintf(f, ")\n\n");
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}
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void ir_print_visitor::visit(ir_expression *ir)
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{
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fprintf(f, "(expression ");
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glsl_print_type(f, ir->type);
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fprintf(f, " %s ", ir_expression_operation_strings[ir->operation]);
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for (unsigned i = 0; i < ir->num_operands; i++) {
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ir->operands[i]->accept(this);
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}
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fprintf(f, ") ");
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}
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void ir_print_visitor::visit(ir_texture *ir)
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{
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fprintf(f, "(%s ", ir->opcode_string());
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if (ir->op == ir_samples_identical) {
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ir->sampler->accept(this);
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fprintf(f, " ");
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ir->coordinate->accept(this);
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fprintf(f, ")");
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return;
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}
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glsl_print_type(f, ir->type);
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fprintf(f, " ");
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ir->sampler->accept(this);
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fprintf(f, " ");
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if (ir->op != ir_txs && ir->op != ir_query_levels &&
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ir->op != ir_texture_samples) {
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ir->coordinate->accept(this);
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fprintf(f, " ");
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if (ir->op != ir_lod && ir->op != ir_samples_identical)
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fprintf(f, "%d ", ir->is_sparse);
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if (ir->offset != NULL) {
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ir->offset->accept(this);
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} else {
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fprintf(f, "0");
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}
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fprintf(f, " ");
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}
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if (ir->op != ir_txf && ir->op != ir_txf_ms &&
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ir->op != ir_txs && ir->op != ir_tg4 &&
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ir->op != ir_query_levels && ir->op != ir_texture_samples) {
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if (ir->projector)
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ir->projector->accept(this);
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else
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fprintf(f, "1");
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if (ir->shadow_comparator) {
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fprintf(f, " ");
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ir->shadow_comparator->accept(this);
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} else {
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fprintf(f, " ()");
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}
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}
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if (ir->op == ir_tex || ir->op == ir_txb || ir->op == ir_txd) {
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if (ir->clamp) {
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fprintf(f, " ");
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ir->clamp->accept(this);
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} else {
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fprintf(f, " ()");
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}
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}
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fprintf(f, " ");
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switch (ir->op)
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{
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case ir_tex:
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case ir_lod:
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case ir_query_levels:
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case ir_texture_samples:
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break;
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case ir_txb:
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ir->lod_info.bias->accept(this);
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break;
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case ir_txl:
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case ir_txf:
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case ir_txs:
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ir->lod_info.lod->accept(this);
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break;
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case ir_txf_ms:
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ir->lod_info.sample_index->accept(this);
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break;
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case ir_txd:
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fprintf(f, "(");
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ir->lod_info.grad.dPdx->accept(this);
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fprintf(f, " ");
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ir->lod_info.grad.dPdy->accept(this);
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fprintf(f, ")");
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break;
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case ir_tg4:
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ir->lod_info.component->accept(this);
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break;
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case ir_samples_identical:
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unreachable("ir_samples_identical was already handled");
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};
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fprintf(f, ")");
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}
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void ir_print_visitor::visit(ir_swizzle *ir)
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{
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const unsigned swiz[4] = {
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ir->mask.x,
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ir->mask.y,
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ir->mask.z,
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ir->mask.w,
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};
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fprintf(f, "(swiz ");
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for (unsigned i = 0; i < ir->mask.num_components; i++) {
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fprintf(f, "%c", "xyzw"[swiz[i]]);
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}
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fprintf(f, " ");
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ir->val->accept(this);
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fprintf(f, ")");
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}
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void ir_print_visitor::visit(ir_dereference_variable *ir)
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{
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ir_variable *var = ir->variable_referenced();
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fprintf(f, "(var_ref %s) ", unique_name(var));
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}
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void ir_print_visitor::visit(ir_dereference_array *ir)
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{
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fprintf(f, "(array_ref ");
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ir->array->accept(this);
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ir->array_index->accept(this);
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fprintf(f, ") ");
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}
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void ir_print_visitor::visit(ir_dereference_record *ir)
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{
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fprintf(f, "(record_ref ");
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ir->record->accept(this);
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const char *field_name =
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ir->record->type->fields.structure[ir->field_idx].name;
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fprintf(f, " %s) ", field_name);
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}
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void ir_print_visitor::visit(ir_assignment *ir)
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{
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fprintf(f, "(assign ");
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if (ir->get_condition())
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ir->get_condition()->accept(this);
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char mask[5];
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unsigned j = 0;
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for (unsigned i = 0; i < 4; i++) {
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if ((ir->write_mask & (1 << i)) != 0) {
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mask[j] = "xyzw"[i];
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j++;
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}
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}
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mask[j] = '\0';
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fprintf(f, " (%s) ", mask);
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ir->lhs->accept(this);
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fprintf(f, " ");
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ir->rhs->accept(this);
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fprintf(f, ") ");
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}
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static void
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print_float_constant(FILE *f, float val)
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{
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if (val == 0.0f)
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/* 0.0 == -0.0, so print with %f to get the proper sign. */
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fprintf(f, "%f", val);
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else if (fabs(val) < 0.000001f)
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fprintf(f, "%a", val);
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else if (fabs(val) > 1000000.0f)
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fprintf(f, "%e", val);
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else
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fprintf(f, "%f", val);
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}
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void ir_print_visitor::visit(ir_constant *ir)
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{
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fprintf(f, "(constant ");
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glsl_print_type(f, ir->type);
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fprintf(f, " (");
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if (ir->type->is_array()) {
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for (unsigned i = 0; i < ir->type->length; i++)
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ir->get_array_element(i)->accept(this);
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} else if (ir->type->is_struct()) {
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for (unsigned i = 0; i < ir->type->length; i++) {
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fprintf(f, "(%s ", ir->type->fields.structure[i].name);
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ir->get_record_field(i)->accept(this);
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fprintf(f, ")");
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}
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} else {
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for (unsigned i = 0; i < ir->type->components(); i++) {
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if (i != 0)
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fprintf(f, " ");
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switch (ir->type->base_type) {
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case GLSL_TYPE_UINT16:fprintf(f, "%u", ir->value.u16[i]); break;
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case GLSL_TYPE_INT16: fprintf(f, "%d", ir->value.i16[i]); break;
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case GLSL_TYPE_UINT: fprintf(f, "%u", ir->value.u[i]); break;
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case GLSL_TYPE_INT: fprintf(f, "%d", ir->value.i[i]); break;
|
|
case GLSL_TYPE_FLOAT:
|
|
print_float_constant(f, ir->value.f[i]);
|
|
break;
|
|
case GLSL_TYPE_FLOAT16:
|
|
print_float_constant(f, _mesa_half_to_float(ir->value.f16[i]));
|
|
break;
|
|
case GLSL_TYPE_SAMPLER:
|
|
case GLSL_TYPE_IMAGE:
|
|
case GLSL_TYPE_UINT64:
|
|
fprintf(f, "%" PRIu64, ir->value.u64[i]);
|
|
break;
|
|
case GLSL_TYPE_INT64: fprintf(f, "%" PRIi64, ir->value.i64[i]); break;
|
|
case GLSL_TYPE_BOOL: fprintf(f, "%d", ir->value.b[i]); break;
|
|
case GLSL_TYPE_DOUBLE:
|
|
if (ir->value.d[i] == 0.0)
|
|
/* 0.0 == -0.0, so print with %f to get the proper sign. */
|
|
fprintf(f, "%.1f", ir->value.d[i]);
|
|
else if (fabs(ir->value.d[i]) < 0.000001)
|
|
fprintf(f, "%a", ir->value.d[i]);
|
|
else if (fabs(ir->value.d[i]) > 1000000.0)
|
|
fprintf(f, "%e", ir->value.d[i]);
|
|
else
|
|
fprintf(f, "%f", ir->value.d[i]);
|
|
break;
|
|
default:
|
|
unreachable("Invalid constant type");
|
|
}
|
|
}
|
|
}
|
|
fprintf(f, ")) ");
|
|
}
|
|
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_call *ir)
|
|
{
|
|
fprintf(f, "(call %s ", ir->callee_name());
|
|
if (ir->return_deref)
|
|
ir->return_deref->accept(this);
|
|
fprintf(f, " (");
|
|
foreach_in_list(ir_rvalue, param, &ir->actual_parameters) {
|
|
param->accept(this);
|
|
}
|
|
fprintf(f, "))\n");
|
|
}
|
|
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_return *ir)
|
|
{
|
|
fprintf(f, "(return");
|
|
|
|
ir_rvalue *const value = ir->get_value();
|
|
if (value) {
|
|
fprintf(f, " ");
|
|
value->accept(this);
|
|
}
|
|
|
|
fprintf(f, ")");
|
|
}
|
|
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_discard *ir)
|
|
{
|
|
fprintf(f, "(discard ");
|
|
|
|
if (ir->condition != NULL) {
|
|
fprintf(f, " ");
|
|
ir->condition->accept(this);
|
|
}
|
|
|
|
fprintf(f, ")");
|
|
}
|
|
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_demote *ir)
|
|
{
|
|
fprintf(f, "(demote)");
|
|
}
|
|
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_if *ir)
|
|
{
|
|
fprintf(f, "(if ");
|
|
ir->condition->accept(this);
|
|
|
|
fprintf(f, "(\n");
|
|
indentation++;
|
|
|
|
foreach_in_list(ir_instruction, inst, &ir->then_instructions) {
|
|
indent();
|
|
inst->accept(this);
|
|
fprintf(f, "\n");
|
|
}
|
|
|
|
indentation--;
|
|
indent();
|
|
fprintf(f, ")\n");
|
|
|
|
indent();
|
|
if (!ir->else_instructions.is_empty()) {
|
|
fprintf(f, "(\n");
|
|
indentation++;
|
|
|
|
foreach_in_list(ir_instruction, inst, &ir->else_instructions) {
|
|
indent();
|
|
inst->accept(this);
|
|
fprintf(f, "\n");
|
|
}
|
|
indentation--;
|
|
indent();
|
|
fprintf(f, "))\n");
|
|
} else {
|
|
fprintf(f, "())\n");
|
|
}
|
|
}
|
|
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_loop *ir)
|
|
{
|
|
fprintf(f, "(loop (\n");
|
|
indentation++;
|
|
|
|
foreach_in_list(ir_instruction, inst, &ir->body_instructions) {
|
|
indent();
|
|
inst->accept(this);
|
|
fprintf(f, "\n");
|
|
}
|
|
indentation--;
|
|
indent();
|
|
fprintf(f, "))\n");
|
|
}
|
|
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_loop_jump *ir)
|
|
{
|
|
fprintf(f, "%s", ir->is_break() ? "break" : "continue");
|
|
}
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_emit_vertex *ir)
|
|
{
|
|
fprintf(f, "(emit-vertex ");
|
|
ir->stream->accept(this);
|
|
fprintf(f, ")\n");
|
|
}
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_end_primitive *ir)
|
|
{
|
|
fprintf(f, "(end-primitive ");
|
|
ir->stream->accept(this);
|
|
fprintf(f, ")\n");
|
|
}
|
|
|
|
void
|
|
ir_print_visitor::visit(ir_barrier *)
|
|
{
|
|
fprintf(f, "(barrier)\n");
|
|
}
|