/*
- * Copyright (C) 1995-2008 University of Karlsruhe. All right reserved.
+ * Copyright (C) 1995-2010 University of Karlsruhe. All right reserved.
*
* This file is part of libFirm.
*
* @date 27.12.2006
* @version $Id$
*/
-#ifdef HAVE_CONFIG_H
#include "config.h"
-#endif
#include <stdlib.h>
+#include <stdbool.h>
+#include "adt/pmap.h"
#include "irnode_t.h"
#include "irgraph_t.h"
#include "irprog_t.h"
#include "irprintf.h"
#include "debug.h"
#include "error.h"
+#include "typerep.h"
+#include "irpass.h"
/** The debug handle. */
DEBUG_ONLY(static firm_dbg_module_t *dbg = NULL;)
+DEBUG_ONLY(static firm_dbg_module_t *dbgcall = NULL;)
/** The source language specific language disambiguator function. */
static DISAMBIGUATOR_FUNC language_disambuigator = NULL;
static unsigned global_mem_disamgig_opt = aa_opt_no_opt;
/* Returns a human readable name for an alias relation. */
-const char *get_ir_alias_relation_name(ir_alias_relation rel) {
+const char *get_ir_alias_relation_name(ir_alias_relation rel)
+{
#define X(a) case a: return #a
switch (rel) {
X(ir_no_alias);
X(ir_may_alias);
X(ir_sure_alias);
- default: assert(0); return "UNKNOWN";
+ default:
+ panic("UNKNOWN alias relation");
}
#undef X
}
/* Get the memory disambiguator options for a graph. */
-unsigned get_irg_memory_disambiguator_options(ir_graph *irg) {
+unsigned get_irg_memory_disambiguator_options(const ir_graph *irg)
+{
unsigned opt = irg->mem_disambig_opt;
if (opt & aa_opt_inherited)
return global_mem_disamgig_opt;
} /* get_irg_memory_disambiguator_options */
/* Set the memory disambiguator options for a graph. */
-void set_irg_memory_disambiguator_options(ir_graph *irg, unsigned options) {
+void set_irg_memory_disambiguator_options(ir_graph *irg, unsigned options)
+{
irg->mem_disambig_opt = options & ~aa_opt_inherited;
} /* set_irg_memory_disambiguator_options */
/* Set the global disambiguator options for all graphs not having local options. */
-void set_irp_memory_disambiguator_options(unsigned options) {
+void set_irp_memory_disambiguator_options(unsigned options)
+{
global_mem_disamgig_opt = options;
} /* set_irp_memory_disambiguator_options */
+/* Get the base storage class (ignore modifier) */
+ir_storage_class_class_t get_base_sc(ir_storage_class_class_t x)
+{
+ return x & ~ir_sc_modifiers;
+} /* get_base_sc */
+
/**
* Find the base address and entity of an Sel node.
*
*
* @return the base address.
*/
-static ir_node *find_base_adr(ir_node *sel, ir_entity **pEnt) {
+static ir_node *find_base_adr(const ir_node *sel, ir_entity **pEnt)
+{
ir_node *ptr = get_Sel_ptr(sel);
while (is_Sel(ptr)) {
*
* @return ir_no_alias if the Const is greater, ir_may_alias else
*/
-static ir_alias_relation check_const(ir_node *cns, int size) {
- tarval *tv = get_Const_tarval(cns);
- tarval *tv_size;
+static ir_alias_relation check_const(const ir_node *cns, int size)
+{
+ ir_tarval *tv = get_Const_tarval(cns);
+ ir_tarval *tv_size;
if (size == 0)
return tarval_is_null(tv) ? ir_may_alias : ir_no_alias;
* ir_no_alias iff they ALWAYS differ more than size
* ir_may_alias else
*/
-static ir_alias_relation different_index(ir_node *idx1, ir_node *idx2, int size) {
+static ir_alias_relation different_index(const ir_node *idx1, const ir_node *idx2, int size)
+{
if (idx1 == idx2)
return ir_sure_alias;
if (is_Const(idx1) && is_Const(idx2)) {
/* both are const, we can compare them */
- tarval *tv1 = get_Const_tarval(idx1);
- tarval *tv2 = get_Const_tarval(idx2);
- tarval *tv, *tv_size;
+ ir_tarval *tv1 = get_Const_tarval(idx1);
+ ir_tarval *tv2 = get_Const_tarval(idx2);
+ ir_tarval *tv, *tv_size;
ir_mode *m1, *m2;
if (size == 0)
if (get_mode_sign(m1) != get_mode_sign(m2)) {
/* find the signed */
if (mode_is_signed(m2)) {
- tarval *t = tv1;
+ ir_tarval *t = tv1;
ir_mode *tm = m1;
tv1 = tv2; m1 = m2;
tv2 = t; m2 = tm;
}
/* m1 is now the signed one */
- if (tarval_cmp(tv1, get_tarval_null(m1)) & (pn_Cmp_Eq|pn_Cmp_Gt)) {
+ if (!tarval_is_negative(tv1)) {
/* tv1 is signed, but >= 0, simply cast into unsigned */
tv1 = tarval_convert_to(tv1, m2);
} else {
}
}
if (tarval_cmp(tv1, tv2) == pn_Cmp_Gt) {
- tarval *t = tv1;
+ ir_tarval *t = tv1;
tv1 = tv2;
tv2 = t;
}
* @param adr1 The first address.
* @param adr2 The second address.
*/
-static ir_alias_relation different_sel_offsets(ir_node *sel1, ir_node *sel2) {
+static ir_alias_relation different_sel_offsets(const ir_node *sel1, const ir_node *sel2)
+{
/* seems to be broken */
(void) sel1;
(void) sel2;
return have_no > 0 ? no_alias : sure_alias;
}
}
+#else
+ (void) different_index;
#endif
return ir_may_alias;
} /* different_sel_offsets */
* @param adr1 The first address.
* @param adr2 The second address.
*/
-static ir_alias_relation different_types(ir_node *adr1, ir_node *adr2)
+static ir_alias_relation different_types(const ir_node *adr1, const ir_node *adr2)
{
ir_entity *ent1 = NULL, *ent2 = NULL;
ir_type *tp2 = get_entity_type(ent2);
if (tp1 != tp2) {
-#if 0
/* do deref until no pointer types are found */
while (is_Pointer_type(tp1) && is_Pointer_type(tp2)) {
tp1 = get_pointer_points_to_type(tp1);
tp2 = get_pointer_points_to_type(tp2);
}
-#endif
if (get_type_tpop(tp1) != get_type_tpop(tp2)) {
/* different type structure */
*
* @param node the Proj node to test
*/
-static int is_malloc_Result(ir_node *node) {
+static int is_malloc_Result(const ir_node *node)
+{
node = get_Proj_pred(node);
if (! is_Proj(node))
return 0;
return 0;
} /* is_malloc_Result */
-/**
- * Classify a base pointer.
- *
- * @param irg the graph of the pointer
- * @param irn the node representing the base address
- * @param ent the base entity of the base address iff any
- */
-ir_storage_class_class_t classify_pointer(ir_graph *irg, ir_node *irn, ir_entity *ent)
+ir_storage_class_class_t classify_pointer(const ir_node *irn,
+ const ir_entity *ent)
{
+ ir_graph *irg = get_irn_irg(irn);
ir_storage_class_class_t res = ir_sc_pointer;
if (is_Global(irn)) {
ir_entity *entity = get_Global_entity(irn);
res = ir_sc_globalvar;
- if (get_entity_address_taken(entity) == ir_address_not_taken)
+ if (! (get_entity_usage(entity) & ir_usage_address_taken))
res |= ir_sc_modifier_nottaken;
} else if (irn == get_irg_frame(irg)) {
res = ir_sc_localvar;
- if (ent != NULL && get_entity_address_taken(ent) == ir_address_not_taken)
+ if (ent != NULL && !(get_entity_usage(ent) & ir_usage_address_taken))
res |= ir_sc_modifier_nottaken;
- } else if (is_arg_Proj(irn)) {
- return ir_sc_argument;
} else if (irn == get_irg_tls(irg)) {
res = ir_sc_tls;
- if (ent != NULL && get_entity_address_taken(ent) == ir_address_not_taken)
+ if (ent != NULL && !(get_entity_usage(ent) & ir_usage_address_taken))
res |= ir_sc_modifier_nottaken;
} else if (is_Proj(irn) && is_malloc_Result(irn)) {
return ir_sc_malloced;
+ } else if (is_Const(irn)) {
+ return ir_sc_globaladdr;
+ } else if (is_arg_Proj(irn)) {
+ res |= ir_sc_modifier_argument;
}
return res;
/**
* If adr represents a Bitfield Sel, skip it
*/
-static ir_node *skip_Bitfield_Sels(ir_node *adr) {
+static const ir_node *skip_Bitfield_Sels(const ir_node *adr)
+{
if (is_Sel(adr)) {
ir_entity *ent = get_Sel_entity(adr);
ir_type *bf_type = get_entity_type(ent);
/**
* Determine the alias relation between two addresses.
*
- * @param irg the graph of both memory operations
* @param addr1 pointer address of the first memory operation
* @param mode1 the mode of the accessed data through addr1
* @param addr2 pointer address of the second memory operation
* @return found memory relation
*/
static ir_alias_relation _get_alias_relation(
- ir_graph *irg,
- ir_node *adr1, ir_mode *mode1,
- ir_node *adr2, ir_mode *mode2)
+ const ir_node *adr1, const ir_mode *mode1,
+ const ir_node *adr2, const ir_mode *mode2)
{
ir_entity *ent1, *ent2;
unsigned options;
long offset1 = 0;
long offset2 = 0;
- ir_node *base1;
- ir_node *base2;
- ir_node *orig_adr1 = adr1;
- ir_node *orig_adr2 = adr2;
+ const ir_node *base1;
+ const ir_node *base2;
+ const ir_node *orig_adr1 = adr1;
+ const ir_node *orig_adr2 = adr2;
+ ir_graph *irg;
unsigned mode_size;
- ir_storage_class_class_t class1, class2;
+ ir_storage_class_class_t class1, class2, mod1, mod2;
int have_const_offsets;
if (! get_opt_alias_analysis())
if (adr1 == adr2)
return ir_sure_alias;
+ irg = get_irn_irg(adr1);
options = get_irg_memory_disambiguator_options(irg);
/* The Armageddon switch */
while (is_Add(adr1)) {
ir_node *add_right = get_Add_right(adr1);
if (is_Const(add_right) && !mode_is_reference(get_irn_mode(add_right))) {
- tarval *tv = get_Const_tarval(add_right);
+ ir_tarval *tv = get_Const_tarval(add_right);
offset1 += get_tarval_long(tv);
adr1 = get_Add_left(adr1);
} else if (mode_is_reference(get_irn_mode(add_right))) {
while (is_Add(adr2)) {
ir_node *add_right = get_Add_right(adr2);
if (is_Const(add_right) && !mode_is_reference(get_irn_mode(add_right))) {
- tarval *tv = get_Const_tarval(add_right);
+ ir_tarval *tv = get_Const_tarval(add_right);
offset2 += get_tarval_long(tv);
adr2 = get_Add_left(adr2);
} else if (mode_is_reference(get_irn_mode(add_right))) {
return different_sel_offsets(adr1, adr2);
}
- class1 = classify_pointer(irg, base1, ent1);
- class2 = classify_pointer(irg, base2, ent2);
+ mod1 = classify_pointer(base1, ent1);
+ mod2 = classify_pointer(base2, ent2);
- if (class1 == ir_sc_pointer) {
- if (class2 & ir_sc_modifier_nottaken) {
- /* a pointer and an object whose objects was never taken */
- return ir_no_alias;
+ class1 = get_base_sc(mod1);
+ class2 = get_base_sc(mod2);
+
+ if (class1 == ir_sc_pointer || class2 == ir_sc_pointer) {
+ /* swap pointer class to class1 */
+ if (class2 == ir_sc_pointer) {
+ ir_storage_class_class_t temp = mod1;
+ mod1 = mod2;
+ mod2 = temp;
+ class1 = get_base_sc(mod1);
+ class2 = get_base_sc(mod2);
}
- } else if (class2 == ir_sc_pointer) {
- if (class1 & ir_sc_modifier_nottaken) {
- /* a pointer and an object whose objects was never taken */
+ /* a pointer and an object whose address was never taken */
+ if (mod2 & ir_sc_modifier_nottaken) {
return ir_no_alias;
}
+ if (mod1 & ir_sc_modifier_argument) {
+ if ( (options & aa_opt_no_alias_args)
+ && (mod2 & ir_sc_modifier_argument))
+ return ir_no_alias;
+ if ( (options & aa_opt_no_alias_args_global)
+ && (class2 == ir_sc_globalvar
+ || class2 == ir_sc_tls
+ || class2 == ir_sc_globaladdr))
+ return ir_no_alias;
+ }
} else if (class1 != class2) {
/* two objects from different memory spaces */
return ir_no_alias;
/* for some reason CSE didn't happen yet for the 2 SymConsts... */
return ir_may_alias;
+ } else if (class1 == ir_sc_globaladdr) {
+ ir_tarval *tv = get_Const_tarval(base1);
+ offset1 += get_tarval_long(tv);
+ tv = get_Const_tarval(base2);
+ offset2 += get_tarval_long(tv);
+
+ if ((unsigned long)labs(offset2 - offset1) >= mode_size)
+ return ir_no_alias;
+ else
+ return ir_sure_alias;
}
}
}
/* do we have a language specific memory disambiguator? */
- if (language_disambuigator) {
- ir_alias_relation rel = (*language_disambuigator)(irg, orig_adr1, mode1, orig_adr2, mode2);
+ if (language_disambuigator != NULL) {
+ ir_alias_relation rel = language_disambuigator(orig_adr1, mode1, orig_adr2, mode2);
if (rel != ir_may_alias)
return rel;
}
* Determine the alias relation between two addresses.
*/
ir_alias_relation get_alias_relation(
- ir_graph *irg,
- ir_node *adr1, ir_mode *mode1,
- ir_node *adr2, ir_mode *mode2)
+ const ir_node *adr1, const ir_mode *mode1,
+ const ir_node *adr2, const ir_mode *mode2)
{
- ir_alias_relation rel = _get_alias_relation(irg, adr1, mode1, adr2, mode2);
+ ir_alias_relation rel = _get_alias_relation(adr1, mode1, adr2, mode2);
DB((dbg, LEVEL_1, "alias(%+F, %+F) = %s\n", adr1, adr2, get_ir_alias_relation_name(rel)));
return rel;
} /* get_alias_relation */
/* Set a source language specific memory disambiguator function. */
-void set_language_memory_disambiguator(DISAMBIGUATOR_FUNC func) {
+void set_language_memory_disambiguator(DISAMBIGUATOR_FUNC func)
+{
language_disambuigator = func;
} /* set_language_memory_disambiguator */
/** An entry in the relation cache. */
typedef struct mem_disambig_entry {
- ir_node *adr1; /**< The first address. */
- ir_node *adr2; /**< The second address. */
+ const ir_node *adr1; /**< The first address. */
+ const ir_mode *mode1; /**< The first address mode. */
+ const ir_node *adr2; /**< The second address. */
+ const ir_mode *mode2; /**< The second address mode. */
ir_alias_relation result; /**< The alias relation result. */
} mem_disambig_entry;
-#define HASH_ENTRY(adr1, adr2) (HASH_PTR(adr1) ^ HASH_PTR(adr2))
+#define HASH_ENTRY(adr1, adr2) (HASH_PTR(adr1) ^ HASH_PTR(adr2))
/**
* Compare two relation cache entries.
*/
-static int cmp_mem_disambig_entry(const void *elt, const void *key, size_t size) {
- const mem_disambig_entry *p1 = elt;
- const mem_disambig_entry *p2 = key;
+static int cmp_mem_disambig_entry(const void *elt, const void *key, size_t size)
+{
+ const mem_disambig_entry *p1 = (const mem_disambig_entry*) elt;
+ const mem_disambig_entry *p2 = (const mem_disambig_entry*) key;
(void) size;
- return p1->adr1 == p2->adr1 && p1->adr2 == p2->adr2;
+ return p1->adr1 == p2->adr1 && p1->adr2 == p2->adr2 &&
+ p1->mode1 == p2->mode1 && p1->mode2 == p2->mode2;
} /* cmp_mem_disambig_entry */
/**
* Initialize the relation cache.
*/
-void mem_disambig_init(void) {
+void mem_disambig_init(void)
+{
result_cache = new_set(cmp_mem_disambig_entry, 8);
} /* mem_disambig_init */
* Determine the alias relation between two addresses.
*/
ir_alias_relation get_alias_relation_ex(
- ir_graph *irg,
- ir_node *adr1, ir_mode *mode1,
- ir_node *adr2, ir_mode *mode2)
+ const ir_node *adr1, const ir_mode *mode1,
+ const ir_node *adr2, const ir_mode *mode2)
{
mem_disambig_entry key, *entry;
return ir_may_alias;
if (get_irn_opcode(adr1) > get_irn_opcode(adr2)) {
- ir_node *t = adr1;
+ const ir_node *t = adr1;
adr1 = adr2;
adr2 = t;
}
- key.adr1 = adr1;
- key.adr2 = adr2;
- entry = set_find(result_cache, &key, sizeof(key), HASH_ENTRY(adr1, adr2));
- if (entry)
+ key.adr1 = adr1;
+ key.adr2 = adr2;
+ key.mode1 = mode1;
+ key.mode2 = mode2;
+ entry = (mem_disambig_entry*) set_find(result_cache, &key, sizeof(key), HASH_ENTRY(adr1, adr2));
+ if (entry != NULL)
return entry->result;
- key.result = get_alias_relation(irg, adr1, mode1, adr2, mode2);
+ key.result = get_alias_relation(adr1, mode1, adr2, mode2);
set_insert(result_cache, &key, sizeof(key), HASH_ENTRY(adr1, adr2));
return key.result;
} /* get_alias_relation_ex */
/* Free the relation cache. */
-void mem_disambig_term(void) {
- if (result_cache) {
+void mem_disambig_term(void)
+{
+ if (result_cache != NULL) {
del_set(result_cache);
result_cache = NULL;
}
*
* @return non-zero if the Load/Store is a hidden cast, zero else
*/
-static int is_hidden_cast(ir_mode *mode, ir_mode *ent_mode) {
+static int is_hidden_cast(const ir_mode *mode, const ir_mode *ent_mode)
+{
+ if (ent_mode == NULL)
+ return false;
+
if (ent_mode != mode) {
if (ent_mode == NULL ||
get_mode_size_bits(ent_mode) != get_mode_size_bits(mode) ||
get_mode_sort(ent_mode) != get_mode_sort(mode) ||
get_mode_arithmetic(ent_mode) != irma_twos_complement ||
get_mode_arithmetic(mode) != irma_twos_complement)
- return 1;
+ return true;
}
- return 0;
+ return false;
} /* is_hidden_cast */
/**
- * Determine the address_taken state of a node (or it's successor Sels).
+ * Determine the usage state of a node (or its successor Sels).
*
* @param irn the node
*/
-static ir_address_taken_state find_address_taken_state(ir_node *irn) {
- int i, j;
+static ir_entity_usage determine_entity_usage(const ir_node *irn, ir_entity *entity)
+{
+ int i;
ir_mode *emode, *mode;
ir_node *value;
- ir_entity *ent;
ir_type *tp;
+ unsigned res = 0;
for (i = get_irn_n_outs(irn) - 1; i >= 0; --i) {
ir_node *succ = get_irn_out(irn, i);
switch (get_irn_opcode(succ)) {
case iro_Load:
+ /* beware: irn might be a Id node here, so irn might be not
+ equal to get_Load_ptr(succ) */
+ res |= ir_usage_read;
+
/* check if this load is not a hidden conversion */
- mode = get_Load_mode(succ);
- ent = is_SymConst(irn) ? get_SymConst_entity(irn) : get_Sel_entity(irn);
- emode = get_type_mode(get_entity_type(ent));
+ mode = get_Load_mode(succ);
+ emode = get_type_mode(get_entity_type(entity));
if (is_hidden_cast(mode, emode))
- return ir_address_taken;
+ res |= ir_usage_reinterpret_cast;
break;
case iro_Store:
/* check that the node is not the Store's value */
- value = get_Store_value(succ);
- if (value == irn)
- return ir_address_taken;
- /* check if this Store is not a hidden conversion */
- mode = get_irn_mode(value);
- ent = is_SymConst(irn) ? get_SymConst_entity(irn) : get_Sel_entity(irn);
- emode = get_type_mode(get_entity_type(ent));
- if (is_hidden_cast(mode, emode))
- return ir_address_taken;
+ if (irn == get_Store_value(succ)) {
+ res |= ir_usage_unknown;
+ }
+ if (irn == get_Store_ptr(succ)) {
+ res |= ir_usage_write;
+
+ /* check if this Store is not a hidden conversion */
+ value = get_Store_value(succ);
+ mode = get_irn_mode(value);
+ emode = get_type_mode(get_entity_type(entity));
+ if (is_hidden_cast(mode, emode))
+ res |= ir_usage_reinterpret_cast;
+ }
+ assert(irn != get_Store_mem(succ));
break;
case iro_CopyB:
/* CopyB are like Loads/Stores */
- ent = is_SymConst(irn) ? get_SymConst_entity(irn) : get_Sel_entity(irn);
- tp = get_entity_type(ent);
+ tp = get_entity_type(entity);
if (tp != get_CopyB_type(succ)) {
/* bad, different types, might be a hidden conversion */
- return ir_address_taken;
+ res |= ir_usage_reinterpret_cast;
+ }
+ if (irn == get_CopyB_dst(succ)) {
+ res |= ir_usage_write;
+ } else {
+ assert(irn == get_CopyB_src(succ));
+ res |= ir_usage_read;
}
break;
+ case iro_Add:
+ case iro_Sub:
+ /* Check the successor of irn. */
+ res |= determine_entity_usage(succ, entity);
+ break;
case iro_Sel: {
+ ir_entity *entity = get_Sel_entity(succ);
+ /* this analysis can't handle unions correctly */
+ if (is_Union_type(get_entity_owner(entity))) {
+ res |= ir_usage_unknown;
+ break;
+ }
/* Check the successor of irn. */
- ir_address_taken_state res = find_address_taken_state(succ);
- if (res != ir_address_not_taken)
- return res;
+ res |= determine_entity_usage(succ, entity);
break;
}
case iro_Call:
- /* Only the call address is not an address taker but
- this is an uninteresting case, so we ignore it here. */
- for (j = get_Call_n_params(succ) - 1; j >= 0; --j) {
- ir_node *param = get_Call_param(succ, j);
- if (param == irn)
- return ir_address_taken;
+ if (irn == get_Call_ptr(succ)) {
+ /* TODO: we could check for reinterpret casts here...
+ * But I doubt anyone is interested in that bit for
+ * function entities and I'm too lazy to write the code now.
+ */
+ res |= ir_usage_read;
+ } else {
+ assert(irn != get_Call_mem(succ));
+ res |= ir_usage_unknown;
+ }
+ break;
+
+ /* skip identities */
+ case iro_Id:
+ res |= determine_entity_usage(succ, entity);
+ break;
+
+ /* skip tuples */
+ case iro_Tuple: {
+ int input_nr;
+ for (input_nr = get_Tuple_n_preds(succ) - 1; input_nr >= 0;
+ --input_nr) {
+ ir_node *pred = get_Tuple_pred(succ, input_nr);
+ if (pred == irn) {
+ int k;
+ /* we found one input */
+ for (k = get_irn_n_outs(succ) - 1; k >= 0; --k) {
+ ir_node *proj = get_irn_out(succ, k);
+
+ if (is_Proj(proj) && get_Proj_proj(proj) == input_nr) {
+ res |= determine_entity_usage(proj, entity);
+ break;
+ }
+ }
+ }
}
break;
+ }
default:
- /* another op, the address may be taken */
- return ir_address_taken_unknown;
+ /* another op, we don't know anything (we could do more advanced
+ * things like a dataflow analysis here) */
+ res |= ir_usage_unknown;
+ break;
}
}
- /* All successors finished, the address is not taken. */
- return ir_address_not_taken;
-} /* find_address_taken_state */
+
+ return (ir_entity_usage) res;
+}
/**
- * Update the "address taken" flag of all frame entities.
+ * Update the usage flags of all frame entities.
*/
-static void analyse_irg_address_taken(ir_graph *irg) {
+static void analyse_irg_entity_usage(ir_graph *irg)
+{
ir_type *ft = get_irg_frame_type(irg);
ir_node *irg_frame;
- int i;
+ int i, j, k, static_link_arg;
/* set initial state to not_taken, as this is the "smallest" state */
for (i = get_class_n_members(ft) - 1; i >= 0; --i) {
ir_entity *ent = get_class_member(ft, i);
- set_entity_address_taken(ent, ir_address_not_taken);
+ /* methods can only be analyzed globally */
+ if (! is_method_entity(ent)) {
+ ir_entity_usage flags = ir_usage_none;
+ if (get_entity_linkage(ent) & IR_LINKAGE_HIDDEN_USER)
+ flags = ir_usage_unknown;
+ set_entity_usage(ent, flags);
+ }
}
assure_irg_outs(irg);
irg_frame = get_irg_frame(irg);
for (i = get_irn_n_outs(irg_frame) - 1; i >= 0; --i) {
- ir_node *succ = get_irn_out(irg_frame, i);
- ir_address_taken_state state;
+ ir_node *succ = get_irn_out(irg_frame, i);
+ ir_entity *entity;
+ unsigned flags;
+
+ if (!is_Sel(succ))
+ continue;
+
+ entity = get_Sel_entity(succ);
+ flags = get_entity_usage(entity);
+ flags |= determine_entity_usage(succ, entity);
+ set_entity_usage(entity, (ir_entity_usage) flags);
+ }
+
+ /* check inner functions accessing outer frame */
+ static_link_arg = 0;
+ for (i = get_class_n_members(ft) - 1; i >= 0; --i) {
+ ir_entity *ent = get_class_member(ft, i);
+ ir_graph *inner_irg;
+ ir_node *args;
+
+ if (! is_method_entity(ent))
+ continue;
+
+ inner_irg = get_entity_irg(ent);
+ if (inner_irg == NULL)
+ continue;
+
+ assure_irg_outs(inner_irg);
+ args = get_irg_args(inner_irg);
+ for (j = get_irn_n_outs(args) - 1; j >= 0; --j) {
+ ir_node *arg = get_irn_out(args, j);
+
+ if (get_Proj_proj(arg) == static_link_arg) {
+ for (k = get_irn_n_outs(arg) - 1; k >= 0; --k) {
+ ir_node *succ = get_irn_out(arg, k);
- if (is_Sel(succ)) {
- ir_entity *ent = get_Sel_entity(succ);
+ if (is_Sel(succ)) {
+ ir_entity *entity = get_Sel_entity(succ);
- if (get_entity_address_taken(ent) == ir_address_taken)
- continue;
+ if (get_entity_owner(entity) == ft) {
+ /* found an access to the outer frame */
+ unsigned flags;
- state = find_address_taken_state(succ);
- if (state > get_entity_address_taken(ent))
- set_entity_address_taken(ent, state);
+ flags = get_entity_usage(entity);
+ flags |= determine_entity_usage(succ, entity);
+ set_entity_usage(entity, (ir_entity_usage) flags);
+ }
+ }
+ }
+ }
}
}
+
+
/* now computed */
- irg->adr_taken_state = ir_address_taken_computed;
-} /* analyse_address_taken */
+ irg->entity_usage_state = ir_entity_usage_computed;
+}
-/* Returns the current address taken state of the graph. */
-ir_address_taken_computed_state get_irg_address_taken_state(const ir_graph *irg) {
- return irg->adr_taken_state;
-} /* get_irg_address_taken_state */
+ir_entity_usage_computed_state get_irg_entity_usage_state(const ir_graph *irg)
+{
+ return irg->entity_usage_state;
+}
-/* Sets the current address taken state of the graph. */
-void set_irg_address_taken_state(ir_graph *irg, ir_address_taken_computed_state state) {
- irg->adr_taken_state = state;
-} /* set_irg_address_taken_state */
+void set_irg_entity_usage_state(ir_graph *irg, ir_entity_usage_computed_state state)
+{
+ irg->entity_usage_state = state;
+}
-/* Assure that the address taken flag is computed for the given graph. */
-void assure_irg_address_taken_computed(ir_graph *irg) {
- if (irg->adr_taken_state == ir_address_taken_not_computed)
- analyse_irg_address_taken(irg);
-} /* assure_irg_address_taken_computed */
+void assure_irg_entity_usage_computed(ir_graph *irg)
+{
+ if (irg->entity_usage_state != ir_entity_usage_not_computed)
+ return;
+
+ analyse_irg_entity_usage(irg);
+}
/**
- * Initialize the address_taken flag for a global type like type.
+ * Initialize the entity_usage flag for a global type like type.
*/
-static void init_taken_flag(ir_type * tp) {
+static void init_entity_usage(ir_type *tp)
+{
int i;
- /* All external visible entities are at least
- ir_address_taken_unknown. This is very conservative. */
+ /* We have to be conservative: All external visible entities are unknown */
for (i = get_compound_n_members(tp) - 1; i >= 0; --i) {
- ir_entity *ent = get_compound_member(tp, i);
- ir_address_taken_state state;
+ ir_entity *ent = get_compound_member(tp, i);
+ unsigned flags = ir_usage_none;
- state = get_entity_visibility(ent) == visibility_external_visible ?
- ir_address_taken_unknown : ir_address_not_taken ;
- set_entity_address_taken(ent, state);
+ if (entity_is_externally_visible(ent)) {
+ flags |= ir_usage_unknown;
+ }
+ set_entity_usage(ent, (ir_entity_usage) flags);
}
-} /* init_taken_flag */
+}
+/**
+ * Mark all entities used in the initializer as unknown usage.
+ *
+ * @param initializer the initializer to check
+ */
static void check_initializer_nodes(ir_initializer_t *initializer)
{
- switch (initializer->kind) {
- case IR_INITIALIZER_CONST: {
- ir_node *n = initializer->consti.value;
+ unsigned i;
+ ir_node *n;
+ switch (initializer->kind) {
+ case IR_INITIALIZER_CONST:
/* let's check if it's an address */
+ n = initializer->consti.value;
if (is_Global(n)) {
ir_entity *ent = get_Global_entity(n);
- set_entity_address_taken(ent, ir_address_taken);
+ set_entity_usage(ent, ir_usage_unknown);
}
return;
- }
case IR_INITIALIZER_TARVAL:
case IR_INITIALIZER_NULL:
return;
- case IR_INITIALIZER_COMPOUND: {
- size_t i;
-
+ case IR_INITIALIZER_COMPOUND:
for (i = 0; i < initializer->compound.n_initializers; ++i) {
ir_initializer_t *sub_initializer
= initializer->compound.initializers[i];
}
return;
}
- }
panic("invalid initializer found");
} /* check_initializer_nodes */
/**
- * Mark all entities used in the initializer for the given entity as address taken.
+ * Mark all entities used in the initializer for the given entity as unknown
+ * usage.
*
* @param ent the entity
*/
-static void check_initializer(ir_entity *ent) {
+static void check_initializer(ir_entity *ent)
+{
ir_node *n;
int i;
- /* do not check uninitialized values */
- if (get_entity_variability(ent) == variability_uninitialized)
- return;
-
/* Beware: Methods are always initialized with "themself". This does not
- count as a taken address. */
+ * count as a taken address.
+ * TODO: this initialisation with "themself" is wrong and should be removed
+ */
if (is_Method_type(get_entity_type(ent)))
return;
- if (ent->has_initializer) {
- check_initializer_nodes(ent->attr.initializer);
- } else if (is_atomic_entity(ent)) {
- /* let's check if it's an address */
- n = get_atomic_ent_value(ent);
- if (is_Global(n)) {
- ir_entity *ent = get_Global_entity(n);
- set_entity_address_taken(ent, ir_address_taken);
- }
- } else {
+ if (ent->initializer != NULL) {
+ check_initializer_nodes(ent->initializer);
+ } else if (entity_has_compound_ent_values(ent)) {
for (i = get_compound_ent_n_values(ent) - 1; i >= 0; --i) {
n = get_compound_ent_value(ent, i);
/* let's check if it's an address */
if (is_Global(n)) {
ir_entity *ent = get_Global_entity(n);
- set_entity_address_taken(ent, ir_address_taken);
+ set_entity_usage(ent, ir_usage_unknown);
}
}
}
-} /* check_initializer */
+}
/**
- * Mark all entities used in initializers as address taken.
+ * Mark all entities used in initializers as unknown usage.
*
* @param tp a compound type
*/
-static void check_initializers(ir_type *tp) {
+static void check_initializers(ir_type *tp)
+{
int i;
for (i = get_compound_n_members(tp) - 1; i >= 0; --i) {
#ifdef DEBUG_libfirm
/**
- * Print the address taken state of all entities of a given type for debugging.
+ * Print the entity usage flags of all entities of a given type for debugging.
*
* @param tp a compound type
*/
-static void print_address_taken_state(ir_type *tp) {
+static void print_entity_usage_flags(ir_type *tp)
+{
int i;
for (i = get_compound_n_members(tp) - 1; i >= 0; --i) {
ir_entity *ent = get_compound_member(tp, i);
- ir_address_taken_state state = get_entity_address_taken(ent);
-
- if (state != ir_address_not_taken) {
- assert(ir_address_not_taken <= (int) state && state <= ir_address_taken);
- ir_printf("%+F: %s\n", ent, get_address_taken_state_name(state));
- }
+ ir_entity_usage flags = get_entity_usage(ent);
+
+ if (flags == 0)
+ continue;
+ ir_printf("%+F:", ent);
+ if (flags & ir_usage_address_taken)
+ printf(" address_taken");
+ if (flags & ir_usage_read)
+ printf(" read");
+ if (flags & ir_usage_write)
+ printf(" write");
+ if (flags & ir_usage_reinterpret_cast)
+ printf(" reinterp_cast");
+ printf("\n");
}
-} /* print_address_taken_state */
+}
#endif /* DEBUG_libfirm */
/**
* Post-walker: check for global entity address
*/
-static void check_global_address(ir_node *irn, void *env) {
- ir_node *tls = env;
+static void check_global_address(ir_node *irn, void *env)
+{
+ ir_node *tls = (ir_node*) env;
ir_entity *ent;
- ir_address_taken_state state;
+ unsigned flags;
if (is_Global(irn)) {
/* A global. */
} else
return;
- if (get_entity_address_taken(ent) >= ir_address_taken) {
- /* Already at the maximum. */
- return;
- }
- state = find_address_taken_state(irn);
- if (state > get_entity_address_taken(ent))
- set_entity_address_taken(ent, state);
+ flags = get_entity_usage(ent);
+ flags |= determine_entity_usage(irn, ent);
+ set_entity_usage(ent, (ir_entity_usage) flags);
} /* check_global_address */
/**
- * Update the "address taken" flag of all global entities.
+ * Update the entity usage flags of all global entities.
*/
-static void analyse_irp_globals_address_taken(void) {
+static void analyse_irp_globals_entity_usage(void)
+{
int i;
+ ir_segment_t s;
- init_taken_flag(get_glob_type());
- init_taken_flag(get_tls_type());
+ for (s = IR_SEGMENT_FIRST; s <= IR_SEGMENT_LAST; ++s) {
+ ir_type *type = get_segment_type(s);
+ init_entity_usage(type);
+ }
- check_initializers(get_glob_type());
- check_initializers(get_tls_type());
+ for (s = IR_SEGMENT_FIRST; s <= IR_SEGMENT_LAST; ++s) {
+ ir_type *type = get_segment_type(s);
+ check_initializers(type);
+ }
for (i = get_irp_n_irgs() - 1; i >= 0; --i) {
ir_graph *irg = get_irp_irg(i);
#ifdef DEBUG_libfirm
if (firm_dbg_get_mask(dbg) & LEVEL_1) {
- print_address_taken_state(get_glob_type());
- print_address_taken_state(get_tls_type());
+ for (s = IR_SEGMENT_FIRST; s <= IR_SEGMENT_LAST; ++s) {
+ print_entity_usage_flags(get_segment_type(s));
+ }
}
#endif /* DEBUG_libfirm */
/* now computed */
- irp->globals_adr_taken_state = ir_address_taken_computed;
-} /* analyse_irp_globals_address_taken */
+ irp->globals_entity_usage_state = ir_entity_usage_computed;
+}
/* Returns the current address taken state of the globals. */
-ir_address_taken_computed_state get_irp_globals_address_taken_state(void) {
- return irp->globals_adr_taken_state;
-} /* get_irp_globals_address_taken_state */
+ir_entity_usage_computed_state get_irp_globals_entity_usage_state(void)
+{
+ return irp->globals_entity_usage_state;
+}
/* Sets the current address taken state of the graph. */
-void set_irp_globals_address_taken_state(ir_address_taken_computed_state state) {
- irp->globals_adr_taken_state = state;
-} /* set_irg_address_taken_state */
+void set_irp_globals_entity_usage_state(ir_entity_usage_computed_state state)
+{
+ irp->globals_entity_usage_state = state;
+}
/* Assure that the address taken flag is computed for the globals. */
-void assure_irp_globals_address_taken_computed(void) {
- if (irp->globals_adr_taken_state == ir_address_taken_not_computed)
- analyse_irp_globals_address_taken();
-} /* assure_irp_globals_address_taken_computed */
+void assure_irp_globals_entity_usage_computed(void)
+{
+ if (irp->globals_entity_usage_state != ir_entity_usage_not_computed)
+ return;
-void firm_init_memory_disambiguator(void) {
- FIRM_DBG_REGISTER(dbg, "firm.ana.irmemory");
+ analyse_irp_globals_entity_usage();
}
+void firm_init_memory_disambiguator(void)
+{
+ FIRM_DBG_REGISTER(dbg, "firm.ana.irmemory");
+ FIRM_DBG_REGISTER(dbgcall, "firm.opt.cc");
+}
-#include <adt/pmap.h>
-#include "typerep.h"
-
-DEBUG_ONLY(static firm_dbg_module_t *dbgcall = NULL;)
/** Maps method types to cloned method types. */
static pmap *mtp_map;
*
* @param tp the type to clone
*/
-static ir_type *clone_type_and_cache(ir_type *tp) {
- static ident *prefix = NULL;
+static ir_type *clone_type_and_cache(ir_type *tp)
+{
ir_type *res;
pmap_entry *e = pmap_find(mtp_map, tp);
- if (e)
- return e->value;
-
- if (prefix == NULL)
- prefix = new_id_from_chars("C", 1);
+ if (e != NULL)
+ return (ir_type*) e->value;
- res = clone_type_method(tp, prefix);
+ res = clone_type_method(tp);
pmap_insert(mtp_map, tp, res);
- DB((dbgcall, LEVEL_2, "cloned type %+F into %+F\n", tp, res));
return res;
} /* clone_type_and_cache */
* Walker: clone all call types of Calls to methods having the
* mtp_property_private property set.
*/
-static void update_calls_to_private(ir_node *call, void *env) {
+static void update_calls_to_private(ir_node *call, void *env)
+{
(void) env;
if (is_Call(call)) {
ir_node *ptr = get_Call_ptr(call);
if (get_entity_additional_properties(ent) & mtp_property_private) {
if ((get_method_additional_properties(ctp) & mtp_property_private) == 0) {
ctp = clone_type_and_cache(ctp);
- set_method_additional_property(ctp, mtp_property_private);
+ add_method_additional_properties(ctp, mtp_property_private);
set_Call_type(call, ctp);
- DB((dbgcall, LEVEL_1, "changed call to private method %+F\n", ent));
+ DB((dbgcall, LEVEL_1, "changed call to private method %+F using cloned type %+F\n", ent, ctp));
}
}
}
} /* update_calls_to_private */
/* Mark all private methods, i.e. those of which all call sites are known. */
-void mark_private_methods(void) {
+void mark_private_methods(void)
+{
int i;
int changed = 0;
- FIRM_DBG_REGISTER(dbgcall, "firm.opt.cc");
-
- assure_irp_globals_address_taken_computed();
+ assure_irp_globals_entity_usage_computed();
mtp_map = pmap_create();
/* first step: change the calling conventions of the local non-escaped entities */
for (i = get_irp_n_irgs() - 1; i >= 0; --i) {
- ir_graph *irg = get_irp_irg(i);
- ir_entity *ent = get_irg_entity(irg);
- ir_address_taken_state state = get_entity_address_taken(ent);
-
- /* If an entity is sticky, it might be called from external
- places (like inline assembler), so do NOT mark it as private. */
- if (get_entity_visibility(ent) == visibility_local &&
- state == ir_address_not_taken &&
- get_entity_stickyness(ent) != stickyness_sticky) {
+ ir_graph *irg = get_irp_irg(i);
+ ir_entity *ent = get_irg_entity(irg);
+ ir_entity_usage flags = get_entity_usage(ent);
+
+ if (!entity_is_externally_visible(ent) &&
+ !(flags & ir_usage_address_taken)) {
ir_type *mtp = get_entity_type(ent);
- set_entity_additional_property(ent, mtp_property_private);
+ add_entity_additional_properties(ent, mtp_property_private);
DB((dbgcall, LEVEL_1, "found private method %+F\n", ent));
if ((get_method_additional_properties(mtp) & mtp_property_private) == 0) {
/* need a new type */
mtp = clone_type_and_cache(mtp);
+ add_method_additional_properties(mtp, mtp_property_private);
set_entity_type(ent, mtp);
- set_method_additional_property(mtp, mtp_property_private);
+ DB((dbgcall, LEVEL_2, "changed entity type of %+F to %+F\n", ent, mtp));
changed = 1;
}
}
pmap_destroy(mtp_map);
} /* mark_private_methods */
+
+/* create a pass for mark_private_methods() */
+ir_prog_pass_t *mark_private_methods_pass(const char *name)
+{
+ return def_prog_pass(name ? name : "mark_private_methods", mark_private_methods);
+} /* mark_private_methods_pass */