mirror of
https://github.com/DarkPlacesEngine/gmqcc.git
synced 2024-11-24 04:41:25 +00:00
469 lines
11 KiB
C
469 lines
11 KiB
C
#include <stdlib.h>
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#include <string.h>
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#include "ir.h"
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/***********************************************************************
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*IR Builder
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*/
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ir_builder* ir_builder_new(const char *modulename)
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{
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ir_builder* self;
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self = (ir_builder*)mem_a(sizeof(*self));
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MEM_VECTOR_INIT(self, functions);
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MEM_VECTOR_INIT(self, globals);
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self->name = NULL;
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ir_builder_set_name(self, modulename);
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/* globals which always exist */
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/* for now we give it a vector size */
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ir_builder_create_global(self, "OFS_RETURN", qc_variant);
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return self;
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}
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MEM_VEC_FUNCTIONS(ir_builder, ir_value*, globals)
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MEM_VECTOR_FUNCTIONS(ir_builder, ir_function*, functions)
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void ir_builder_delete(ir_builder* self)
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{
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size_t i;
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mem_d((void*)self->name);
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for (i = 0; i != self->functions_count; ++i) {
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ir_function_delete(self->functions[i]);
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}
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MEM_VECTOR_CLEAR(self, functions);
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for (i = 0; i != self->globals_count; ++i) {
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ir_value_delete(self->globals[i]);
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}
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MEM_VECTOR_CLEAR(self, globals);
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mem_d(self);
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}
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void ir_builder_set_name(ir_builder *self, const char *name)
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{
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if (self->name)
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mem_d((void*)self->name);
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self->name = util_strdup(name);
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}
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ir_function* ir_builder_get_function(ir_builder *self, const char *name)
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{
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size_t i;
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for (i = 0; i < self->functions_count; ++i) {
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if (!strcmp(name, self->functions[i]->name))
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return self->functions[i];
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}
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return NULL;
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}
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ir_function* ir_builder_create_function(ir_builder *self, const char *name)
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{
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ir_function *fn = ir_builder_get_function(self, name);
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if (fn) {
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return NULL;
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}
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fn = ir_function_new(self);
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ir_function_set_name(fn, name);
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ir_builder_functions_add(self, fn);
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return fn;
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}
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ir_value* ir_builder_get_global(ir_builder *self, const char *name)
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{
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size_t i;
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for (i = 0; i < self->globals_count; ++i) {
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if (!strcmp(self->globals[i]->name, name))
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return self->globals[i];
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}
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return NULL;
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}
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ir_value* ir_builder_create_global(ir_builder *self, const char *name, int vtype)
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{
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ir_value *ve = ir_builder_get_global(self, name);
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if (ve) {
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return NULL;
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}
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ve = ir_value_var(name, qc_global, vtype);
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ir_builder_globals_add(self, ve);
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return ve;
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}
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/***********************************************************************
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*IR Function
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*/
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void ir_function_naive_phi(ir_function*);
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void ir_function_enumerate(ir_function*);
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void ir_function_calculate_liferanges(ir_function*);
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ir_function* ir_function_new(ir_builder* owner)
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{
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ir_function *self;
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self = (ir_function*)mem_a(sizeof(*self));
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self->owner = owner;
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self->context.file = "<@no context>";
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self->context.line = 0;
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self->retype = qc_void;
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MEM_VECTOR_INIT(self, params);
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MEM_VECTOR_INIT(self, blocks);
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MEM_VECTOR_INIT(self, values);
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MEM_VECTOR_INIT(self, locals);
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ir_function_set_name(self, "<@unnamed>");
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self->run_id = 0;
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return self;
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}
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MEM_VECTOR_FUNCTIONS(ir_function, ir_value*, values)
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MEM_VECTOR_FUNCTIONS(ir_function, ir_block*, blocks)
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MEM_VECTOR_FUNCTIONS(ir_function, ir_value*, locals)
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void ir_function_set_name(ir_function *self, const char *name)
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{
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if (self->name)
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mem_d((void*)self->name);
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self->name = util_strdup(name);
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}
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void ir_function_delete(ir_function *self)
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{
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size_t i;
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mem_d((void*)self->name);
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for (i = 0; i != self->blocks_count; ++i)
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ir_block_delete(self->blocks[i]);
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MEM_VECTOR_CLEAR(self, blocks);
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MEM_VECTOR_CLEAR(self, params);
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for (i = 0; i != self->values_count; ++i)
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ir_value_delete(self->values[i]);
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MEM_VECTOR_CLEAR(self, values);
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for (i = 0; i != self->locals_count; ++i)
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ir_value_delete(self->locals[i]);
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MEM_VECTOR_CLEAR(self, locals);
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mem_d(self);
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}
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void ir_function_collect_value(ir_function *self, ir_value *v)
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{
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ir_function_values_add(self, v);
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}
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ir_block* ir_function_create_block(ir_function *self, const char *label)
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{
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ir_block* bn = ir_block_new(self, label);
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memcpy(&bn->context, &self->context, sizeof(self->context));
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ir_function_blocks_add(self, bn);
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return bn;
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}
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void ir_function_finalize(ir_function *self)
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{
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ir_function_naive_phi(self);
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ir_function_enumerate(self);
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ir_function_calculate_liferanges(self);
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}
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ir_value* ir_function_get_local(ir_function *self, const char *name)
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{
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size_t i;
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for (i = 0; i < self->locals_count; ++i) {
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if (!strcmp(self->locals[i]->name, name))
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return self->locals[i];
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}
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return NULL;
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}
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ir_value* ir_function_create_local(ir_function *self, const char *name, int vtype)
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{
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ir_value *ve = ir_function_get_local(self, name);
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if (ve) {
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return NULL;
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}
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ve = ir_value_var(name, qc_localvar, vtype);
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ir_function_locals_add(self, ve);
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return ve;
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}
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/***********************************************************************
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*IR Block
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*/
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ir_block* ir_block_new(ir_function* owner, const char *name)
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{
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ir_block *self;
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self = (ir_block*)mem_a(sizeof(*self));
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self->owner = owner;
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self->context.file = "<@no context>";
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self->context.line = 0;
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self->final = ifalse;
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MEM_VECTOR_INIT(self, instr);
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MEM_VECTOR_INIT(self, entries);
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MEM_VECTOR_INIT(self, exits);
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self->label = NULL;
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ir_block_set_label(self, name);
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self->eid = 0;
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self->is_return = ifalse;
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self->run_id = 0;
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MEM_VECTOR_INIT(self, living);
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return self;
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}
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MEM_VECTOR_FUNCTIONS(ir_block, ir_instr*, instr)
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MEM_VECTOR_FUNCTIONS_ALL(ir_block, ir_block*, entries)
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MEM_VECTOR_FUNCTIONS_ALL(ir_block, ir_block*, exits)
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MEM_VECTOR_FUNCTIONS_ALL(ir_block, ir_value*, living)
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void ir_block_delete(ir_block* self)
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{
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size_t i;
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mem_d((void*)self->label);
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for (i = 0; i != self->instr_count; ++i)
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ir_instr_delete(self->instr[i]);
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MEM_VECTOR_CLEAR(self, instr);
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MEM_VECTOR_CLEAR(self, entries);
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MEM_VECTOR_CLEAR(self, exits);
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MEM_VECTOR_CLEAR(self, living);
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mem_d(self);
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}
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void ir_block_set_label(ir_block *self, const char *name)
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{
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if (self->label)
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mem_d((void*)self->label);
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self->label = util_strdup(name);
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}
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/***********************************************************************
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*IR Instructions
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*/
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ir_instr* ir_instr_new(ir_block* owner, int op)
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{
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ir_instr *self;
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self = (ir_instr*)mem_a(sizeof(*self));
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self->owner = owner;
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self->context.file = "<@no context>";
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self->context.line = 0;
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self->opcode = op;
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self->_ops[0] = NULL;
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self->_ops[1] = NULL;
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self->_ops[2] = NULL;
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self->bops[0] = NULL;
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self->bops[1] = NULL;
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MEM_VECTOR_INIT(self, phi);
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self->eid = 0;
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return self;
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}
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MEM_VECTOR_FUNCTIONS(ir_instr, ir_phi_entry_t, phi)
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void ir_instr_delete(ir_instr *self)
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{
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ir_instr_op(self, 0, NULL, ifalse);
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ir_instr_op(self, 1, NULL, ifalse);
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ir_instr_op(self, 2, NULL, ifalse);
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MEM_VECTOR_CLEAR(self, phi);
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mem_d(self);
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}
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void ir_instr_op(ir_instr *self, int op, ir_value *v, qbool writing)
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{
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if (self->_ops[op]) {
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if (writing)
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ir_value_writes_add(self->_ops[op], self);
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else
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ir_value_reads_add(self->_ops[op], self);
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}
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if (v) {
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if (writing)
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ir_value_writes_add(v, self);
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else
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ir_value_reads_add(v, self);
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}
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self->_ops[op] = v;
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}
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/***********************************************************************
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*IR Value
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*/
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ir_value* ir_value_var(const char *name, int storetype, int vtype)
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{
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ir_value *self;
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self = (ir_value*)mem_a(sizeof(*self));
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self->vtype = vtype;
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self->store = storetype;
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MEM_VECTOR_INIT(self, reads);
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MEM_VECTOR_INIT(self, writes);
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self->has_constval = ifalse;
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self->context.file = "<@no context>";
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self->context.line = 0;
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self->name = NULL;
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ir_value_set_name(self, name);
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MEM_VECTOR_INIT(self, life);
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return self;
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}
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MEM_VECTOR_FUNCTIONS(ir_value, ir_life_entry_t, life)
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MEM_VECTOR_FUNCTIONS(ir_value, ir_instr*, reads)
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MEM_VECTOR_FUNCTIONS(ir_value, ir_instr*, writes)
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ir_value* ir_value_out(ir_function *owner, const char *name, int storetype, int vtype)
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{
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ir_value *v = ir_value_var(name, storetype, vtype);
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ir_function_collect_value(owner, v);
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return v;
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}
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void ir_value_delete(ir_value* self)
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{
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mem_d((void*)self->name);
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if (self->has_constval)
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{
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if (self->vtype == qc_string)
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mem_d((void*)self->cvalue.vstring);
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}
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MEM_VECTOR_CLEAR(self, reads);
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MEM_VECTOR_CLEAR(self, writes);
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MEM_VECTOR_CLEAR(self, life);
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mem_d(self);
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}
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void ir_value_set_name(ir_value *self, const char *name)
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{
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if (self->name)
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mem_d((void*)self->name);
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self->name = util_strdup(name);
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}
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ir_bool ir_value_set_float(ir_value *self, float f)
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{
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if (self->vtype != qc_float)
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return ifalse;
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self->cvalue.vfloat = f;
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self->has_constval = itrue;
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return itrue;
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}
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ir_bool ir_value_set_vector(ir_value *self, qc_vec_t v)
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{
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if (self->vtype != qc_vector)
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return ifalse;
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self->cvalue.vvec = v;
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self->has_constval = itrue;
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return itrue;
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}
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ir_bool ir_value_set_string(ir_value *self, const char *str)
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{
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if (self->vtype != qc_string)
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return ifalse;
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self->cvalue.vstring = util_strdup(str);
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self->has_constval = itrue;
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return itrue;
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}
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ir_bool ir_value_set_int(ir_value *self, int i)
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{
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if (self->vtype != qc_int)
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return ifalse;
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self->cvalue.vint = i;
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self->has_constval = itrue;
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return itrue;
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}
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ir_bool ir_value_lives(ir_value *self, size_t at)
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{
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size_t i;
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for (i = 0; i < self->life_count; ++i)
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{
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ir_life_entry_t *life = &self->life[i];
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if (life->start <= at && at <= life->end)
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return itrue;
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if (life->start > at) /* since it's ordered */
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return ifalse;
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}
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return ifalse;
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}
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void ir_value_life_insert(ir_value *self, size_t idx, ir_life_entry_t e)
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{
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size_t k;
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ir_value_life_add(self, e); /* naive... */
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for (k = self->life_count-1; k > idx; --k)
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self->life[k] = self->life[k-1];
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self->life[idx] = e;
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}
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ir_bool ir_value_life_merge(ir_value *self, size_t s)
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{
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size_t i;
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ir_life_entry_t *life = NULL;
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ir_life_entry_t *before = NULL;
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ir_life_entry_t new_entry;
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/* Find the first range >= s */
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for (i = 0; i < self->life_count; ++i)
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{
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before = life;
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life = &self->life[i];
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if (life->start > s)
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break;
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}
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/* nothing found? append */
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if (i == self->life_count) {
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if (life && life->end+1 == s)
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{
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/* previous life range can be merged in */
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life->end++;
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return itrue;
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}
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if (life && life->end >= s)
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return ifalse;
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ir_life_entry_t e;
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e.start = e.end = s;
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ir_value_life_add(self, e);
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return itrue;
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}
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/* found */
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if (before)
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{
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if (before->end + 1 == s &&
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life->start - 1 == s)
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{
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/* merge */
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before->end = life->end;
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ir_value_life_remove(self, i);
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return itrue;
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}
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if (before->end + 1 == s)
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{
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/* extend before */
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before->end++;
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return itrue;
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}
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/* already contained */
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if (before->end >= s)
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return ifalse;
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}
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/* extend */
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if (life->start - 1 == s)
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{
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life->start--;
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return itrue;
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}
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/* insert a new entry */
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new_entry.start = new_entry.end = s;
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ir_value_life_insert(self, i, new_entry);
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return itrue;
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}
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