/*
- * Copyright (C) 1995-2007 University of Karlsruhe. All right reserved.
+ * Copyright (C) 1995-2008 University of Karlsruhe. All right reserved.
*
* This file is part of libFirm.
*
/**
* Add a artificial dependency to the node.
* The dependency is only inserted if it is not there already.
+* This is only allowed in phase_backend!
+*
* @param node The node.
* @param dep The dependency target.
+*
* @return The index in the array (get_irn_dep() with that index returns @p dep).
*/
int add_irn_dep(ir_node *node, ir_node *dep);
/**
* Copy all dependencies from a node to another.
+ * This is only allowed in phase_backend!
+ *
* @param tgt The node which should be enriched.
* @param src The node whose dependencies shall be copied.
*/
* @returns the number of the new input
*/
int add_irn_n(ir_node *node, ir_node *in);
+/* Remove predecessor i from Sync n */
+void del_Sync_n(ir_node *n, int i);
/* Sets the mode struct of node. */
void set_irn_mode(ir_node *node, ir_mode *mode);
/** Gets the mode struct of a node. */
ir_mode *get_irn_mode(const ir_node *node);
-/** Gets the mode-enum modecode. */
-modecode get_irn_modecode(const ir_node *node);
+/** Gets the mode-enum ir_modecode. */
+ir_modecode get_irn_modecode(const ir_node *node);
/** Gets the ident for a string representation of the mode .*/
ident *get_irn_modeident(const ir_node *node);
/** Gets the string representation of the mode .*/
/** If arg is an argument of the node, returns it's position, -1 otherwise */
int get_irn_pred_pos(ir_node *node, ir_node *arg);
/** Gets the visited counter of a node. */
-unsigned long get_irn_visited(const ir_node *node);
+ir_visited_t get_irn_visited(const ir_node *node);
/** Sets the visited counter of a node. */
-void set_irn_visited(ir_node *node, unsigned long visited);
+void set_irn_visited(ir_node *node, ir_visited_t visited);
/** Sets visited to get_irg_visited(current_ir_graph). */
void mark_irn_visited(ir_node *node);
/** Returns 1 if visited < get_irg_visited(current_ir_graph). */
pn_Start_X_initial_exec, /**< Projection on the initial control flow. */
pn_Start_M, /**< Projection on the initial memory. */
pn_Start_P_frame_base, /**< Projection on the frame base pointer. */
- pn_Start_P_globals, /**< Projection on the pointer to the data segment
- containing _all_ global entities. Use for
- position independent data/code access. */
pn_Start_P_tls, /**< Projection on the pointer to the thread local store
segment containing _all_thread local variables. */
pn_Start_T_args, /**< Projection on all arguments. */
*
* Test whether arbitrary node is frame pointer, i.e. Proj(pn_Start_P_frame_base)
* from Start. If so returns frame type, else Null. */
-ir_type *is_frame_pointer(ir_node *n);
-
-/** Test whether arbitrary node is globals pointer.
- *
- * Test whether arbitrary node is globals pointer, i.e. Proj(pn_Start_P_globals)
- * from Start. If so returns global type, else Null. */
-ir_type *is_globals_pointer(ir_node *n);
+ir_type *is_frame_pointer(const ir_node *n);
-/** Test whether arbitrary node is tls pointer.
+/** Test whether arbitrary node is the thread local storage (tls) pointer.
*
* Test whether arbitrary node is tls pointer, i.e. Proj(pn_Start_P_tls)
* from Start. If so returns tls type, else Null. */
-ir_type *is_tls_pointer(ir_node *n);
+ir_type *is_tls_pointer(const ir_node *n);
/** Test whether arbitrary node is value arg base.
*
* Test whether arbitrary node is value arg base, i.e. Proj(pn_Start_P_value_arg_base)
* from Start. If so returns 1, else 0. */
-int is_value_arg_pointer(ir_node *n);
-
+int is_value_arg_pointer(const ir_node *n);
/* @@@ no more supported */
ir_node **get_Block_cfgpred_arr(ir_node *node);
/** A visited flag only for block nodes.
* @see also: get_irn_visited() inc_irg_visited() inc_irg_block_visited()*/
-unsigned long get_Block_block_visited(const ir_node *node);
-void set_Block_block_visited(ir_node *node, unsigned long visit);
+ir_visited_t get_Block_block_visited(const ir_node *node);
+void set_Block_block_visited(ir_node *node, ir_visited_t visit);
/**
* Marks a block as dead but do not replace it with a Bad node.
/* For this current_ir_graph must be set. */
void mark_Block_block_visited(ir_node *node);
-int Block_not_block_visited(const ir_node *node);
int Block_block_visited(const ir_node *node);
#ifdef INTERPROCEDURAL_VIEW
/* @@@ not supported */
ir_node **get_Block_cg_cfgpred_arr(ir_node *node);
/** Returns the number of interprocedural predecessors. 0 if none. */
-int get_Block_cg_n_cfgpreds(ir_node *node);
+int get_Block_cg_n_cfgpreds(const ir_node *node);
/** Return the interprocedural predecessor at position pos. */
-ir_node *get_Block_cg_cfgpred(ir_node *node, int pos);
+ir_node *get_Block_cg_cfgpred(const ir_node *node, int pos);
/** Frees the memory allocated for interprocedural predecessors. */
void remove_Block_cg_cfgpred_arr(ir_node *node);
#endif
void set_Block_extbb(ir_node *block, ir_extblk *extblk);
/** Get the Macro Block header of a (sub-) block. */
ir_node *get_Block_MacroBlock(const ir_node *block);
+/** Set the Macro Block header of a (sub-) block. */
+void set_Block_MacroBlock(ir_node *block, ir_node *mbh);
+/** Get the Macro Block header of a node. */
+ir_node *get_irn_MacroBlock(const ir_node *n);
/** Returns the ir_graph this Block belongs to. */
ir_graph *get_Block_irg(const ir_node *block);
/** Returns non-zero if the block has an assigned label. */
ir_label_t get_Block_label(const ir_node *block);
/** Sets a label to a block. */
void set_Block_label(ir_node *block, ir_label_t label);
+/** Gets the head of the Phi list for this block. */
+ir_node *get_Block_phis(const ir_node *block);
+/** Sets the head of the Phi list for this block. */
+void set_Block_phis(ir_node *block, ir_node *phi);
+/** Add a Phi node to the list of Block Phi's. */
+void add_Block_phi(ir_node *block, ir_node *phi);
+/** Get the Block mark (single bit). */
+unsigned get_Block_mark(const ir_node *block);
+/** Set the Block mark (single bit). */
+void set_Block_mark(ir_node *block, unsigned mark);
/** Return the number of Keep alive node. */
-int get_End_n_keepalives(ir_node *end);
+int get_End_n_keepalives(const ir_node *end);
/** Return the Keep alive node a position pos. */
-ir_node *get_End_keepalive(ir_node *end, int pos);
+ir_node *get_End_keepalive(const ir_node *end, int pos);
/** Keep alive dedicated nodes. These must be either PhiM or Block nodes. */
void add_End_keepalive(ir_node *end, ir_node *ka);
/** Set the Keep alive node at position pos. */
void set_End_keepalive(ir_node *end, int pos, ir_node *ka);
-/** Set new keep-alives. */
+
+/**
+ * Set new keep-alives.
+ * Beware: This might be an expensive operation if dynamic edges are enabled,
+ * so avoid it in the backend.
+ */
void set_End_keepalives(ir_node *end, int n, ir_node *in[]);
-/** Set new keep-alives from old keep-alives, skipping irn. */
+
+/** Remove irn from the keep-alive set. */
void remove_End_keepalive(ir_node *end, ir_node *irn);
/** Some parts of the End node are allocated separately -- their memory
void free_End(ir_node *end);
/** Return the target address of an IJmp */
-ir_node *get_IJmp_target(ir_node *ijmp);
+ir_node *get_IJmp_target(const ir_node *ijmp);
/** Sets the target address of an IJmp */
void set_IJmp_target(ir_node *ijmp, ir_node *tgt);
void set_SymConst_kind(ir_node *node, symconst_kind num);
/** Only to access SymConst of kind type_tag or size. Else assertion: */
-ir_type *get_SymConst_type(ir_node *node);
+ir_type *get_SymConst_type(const ir_node *node);
void set_SymConst_type(ir_node *node, ir_type *tp);
/** Only to access SymConst of kind addr_name. Else assertion: */
/** Gets the arity of a call. Identical to get_Call_n_params(). */
int get_Call_arity(const ir_node *node);
+/**
+ * Returns non-zero if a Call is surely a self-recursive Call.
+ * Beware: if this functions returns 0, the call might be self-recursive!
+ */
+int is_self_recursive_Call(const ir_node *call);
+
/** Set, get and remove the callee information for a Call node.
*
* The callee information lists all method entities that can be called
void set_Call_callee_arr(ir_node *node, const int n, ir_entity **arr);
void remove_Call_callee_arr(ir_node *node);
-ir_node *get_CallBegin_ptr(ir_node *node);
+ir_node *get_CallBegin_ptr(const ir_node *node);
void set_CallBegin_ptr(ir_node *node, ir_node *ptr);
-ir_node *get_CallBegin_call(ir_node *node);
+ir_node *get_CallBegin_call(const ir_node *node);
void set_CallBegin_call(ir_node *node, ir_node *call);
/* For unary and binary arithmetic operations the access to the
second arithmetic value as listed in tech report 1999-44.
unops are: Minus, Abs, Not, Conv, Cast
binops are: Add, Sub, Mul, Quot, DivMod, Div, Mod, And, Or, Eor, Shl,
- Shr, Shrs, Rot, Cmp */
+ Shr, Shrs, Rotl, Cmp */
int is_unop(const ir_node *node);
ir_node *get_unop_op(const ir_node *node);
void set_unop_op(ir_node *node, ir_node *op);
ir_node *get_Add_right(const ir_node *node);
void set_Add_right(ir_node *node, ir_node *right);
+ir_node *get_Carry_left(const ir_node *node);
+void set_Carry_left(ir_node *node, ir_node *left);
+ir_node *get_Carry_right(const ir_node *node);
+void set_Carry_right(ir_node *node, ir_node *right);
+
ir_node *get_Sub_left(const ir_node *node);
void set_Sub_left(ir_node *node, ir_node *left);
ir_node *get_Sub_right(const ir_node *node);
void set_Quot_left(ir_node *node, ir_node *left);
ir_node *get_Quot_right(const ir_node *node);
void set_Quot_right(ir_node *node, ir_node *right);
-ir_node *get_Quot_mem(ir_node *node);
+ir_node *get_Quot_mem(const ir_node *node);
void set_Quot_mem(ir_node *node, ir_node *mem);
ir_mode *get_Quot_resmode(const ir_node *node);
void set_Quot_resmode(ir_node *node, ir_mode *mode);
void set_DivMod_left(ir_node *node, ir_node *left);
ir_node *get_DivMod_right(const ir_node *node);
void set_DivMod_right(ir_node *node, ir_node *right);
-ir_node *get_DivMod_mem(ir_node *node);
+ir_node *get_DivMod_mem(const ir_node *node);
void set_DivMod_mem(ir_node *node, ir_node *mem);
ir_mode *get_DivMod_resmode(const ir_node *node);
void set_DivMod_resmode(ir_node *node, ir_mode *mode);
void set_Div_left(ir_node *node, ir_node *left);
ir_node *get_Div_right(const ir_node *node);
void set_Div_right(ir_node *node, ir_node *right);
-ir_node *get_Div_mem(ir_node *node);
+ir_node *get_Div_mem(const ir_node *node);
void set_Div_mem(ir_node *node, ir_node *mem);
ir_mode *get_Div_resmode(const ir_node *node);
void set_Div_resmode(ir_node *node, ir_mode *mode);
+int is_Div_remainderless(const ir_node *node);
/**
* Projection numbers for Div: use for Proj nodes!
void set_Mod_left(ir_node *node, ir_node *left);
ir_node *get_Mod_right(const ir_node *node);
void set_Mod_right(ir_node *node, ir_node *right);
-ir_node *get_Mod_mem(ir_node *node);
+ir_node *get_Mod_mem(const ir_node *node);
void set_Mod_mem(ir_node *node, ir_node *mem);
ir_mode *get_Mod_resmode(const ir_node *node);
void set_Mod_resmode(ir_node *node, ir_mode *mode);
ir_node *get_Shrs_right(const ir_node *node);
void set_Shrs_right(ir_node *node, ir_node *right);
-ir_node *get_Rot_left(const ir_node *node);
-void set_Rot_left(ir_node *node, ir_node *left);
-ir_node *get_Rot_right(const ir_node *node);
-void set_Rot_right(ir_node *node, ir_node *right);
+ir_node *get_Rotl_left(const ir_node *node);
+void set_Rotl_left(ir_node *node, ir_node *left);
+ir_node *get_Rotl_right(const ir_node *node);
+void set_Rotl_right(ir_node *node, ir_node *right);
ir_node *get_Conv_op(const ir_node *node);
void set_Conv_op(ir_node *node, ir_node *op);
int is_Cast_downcast(ir_node *node);
-/** Returns true if n is Phi or Filter in interprocedural_view.
- Returns false if irg in phase building and the Phi has zero
+/** Returns true if n is a Phi or a Filter node in INTER-procedural view.
+ Returns false if irg is in phase phase_building and the Phi has zero
predecessors: it's a Phi0. */
int is_Phi(const ir_node *n);
-/** Returns true if irg in phase building and the Phi has zero
+/** Returns true if irg in phase phase_building and the Phi has zero
predecessors. It's a Phi0 then. */
int is_Phi0(const ir_node *n);
-/* These routines also work for Filter nodes in interprocedural view. */
+/* These routines also work for Filter nodes in INTER-procedural view. */
ir_node **get_Phi_preds_arr(ir_node *node);
int get_Phi_n_preds(const ir_node *node);
ir_node *get_Phi_pred(const ir_node *node, int pos);
void set_Phi_pred(ir_node *node, int pos, ir_node *pred);
+ir_node *get_Phi_next(const ir_node *phi);
+void set_Phi_next(ir_node *phi, ir_node *next);
ir_node *get_Filter_pred(ir_node *node);
void set_Filter_pred(ir_node *node, ir_node *pred);
* A memory operation is an operation that changes the
* memory. I.e., a Load or a Store operation.
*/
-int is_memop(ir_node *node);
-ir_node *get_memop_mem(ir_node *node);
+int is_memop(const ir_node *node);
+ir_node *get_memop_mem(const ir_node *node);
void set_memop_mem(ir_node *node, ir_node *mem);
-ir_node *get_memop_ptr(ir_node *node);
+ir_node *get_memop_ptr(const ir_node *node);
void set_memop_ptr(ir_node *node, ir_node *ptr);
/**
pn_Load_max /**< number of projections from a Load */
} pn_Load; /* Projection numbers for Load. */
-ir_node *get_Load_mem(ir_node *node);
+ir_node *get_Load_mem(const ir_node *node);
void set_Load_mem(ir_node *node, ir_node *mem);
-ir_node *get_Load_ptr(ir_node *node);
+ir_node *get_Load_ptr(const ir_node *node);
void set_Load_ptr(ir_node *node, ir_node *ptr);
-ir_mode *get_Load_mode(ir_node *node);
+ir_mode *get_Load_mode(const ir_node *node);
void set_Load_mode(ir_node *node, ir_mode *mode);
-ir_volatility get_Load_volatility(ir_node *node);
+ir_volatility get_Load_volatility(const ir_node *node);
void set_Load_volatility(ir_node *node, ir_volatility volatility);
-ir_align get_Load_align(ir_node *node);
+ir_align get_Load_align(const ir_node *node);
void set_Load_align(ir_node *node, ir_align align);
/**
* Projection numbers for Store: use for Proj nodes!
*/
typedef enum {
- pn_Store_M = pn_Generic_M_regular, /**< Memory result. */
- pn_Store_X_regular = pn_Generic_X_regular, /**< Execution result if no exception occurred. */
- pn_Store_X_except = pn_Generic_X_except, /**< Execution result if exception occurred. */
- pn_Store_max = pn_Generic_other /**< number of projections from a Store */
+ pn_Store_M = pn_Generic_M_regular, /**< Memory result. */
+ pn_Store_X_regular = pn_Generic_X_regular, /**< Execution result if no exception occurred. */
+ pn_Store_X_except = pn_Generic_X_except, /**< Execution result if exception occurred. */
+ pn_Store_max = pn_Generic_other /**< number of projections from a Store */
} pn_Store; /* Projection numbers for Store. */
-ir_node *get_Store_mem(ir_node *node);
+ir_node *get_Store_mem(const ir_node *node);
void set_Store_mem(ir_node *node, ir_node *mem);
-ir_node *get_Store_ptr(ir_node *node);
+ir_node *get_Store_ptr(const ir_node *node);
void set_Store_ptr(ir_node *node, ir_node *ptr);
-ir_node *get_Store_value(ir_node *node);
+ir_node *get_Store_value(const ir_node *node);
void set_Store_value(ir_node *node, ir_node *value);
-ir_volatility get_Store_volatility(ir_node *node);
+ir_volatility get_Store_volatility(const ir_node *node);
void set_Store_volatility(ir_node *node, ir_volatility volatility);
-ir_align get_Store_align(ir_node *node);
+ir_align get_Store_align(const ir_node *node);
void set_Store_align(ir_node *node, ir_align align);
/**
/** The allocation place. */
typedef enum {
- stack_alloc, /**< Alloc allocates the object on the stack. */
- heap_alloc /**< Alloc allocates the object on the heap. */
+ stack_alloc, /**< Alloc allocates the object on the stack. */
+ heap_alloc /**< Alloc allocates the object on the heap. */
} ir_where_alloc;
ir_where_alloc get_Alloc_where(const ir_node *node);
long get_Proj_proj(const ir_node *node);
void set_Proj_proj(ir_node *node, long proj);
+/**
+ * Returns non-zero if a node is a routine parameter.
+ *
+ * @param node the Proj node to test
+ */
+int is_arg_Proj(const ir_node *node);
+
ir_node **get_Tuple_preds_arr(ir_node *node);
int get_Tuple_n_preds(const ir_node *node);
ir_node *get_Tuple_pred(const ir_node *node, int pos);
void set_Confirm_cmp(ir_node *node, pn_Cmp cmp);
/*
- * Mux Support: Note that Psi nodes with one condition can be handled
- * like Mux nodes, and the access functions work as expected.
+ * Mux Support
*/
ir_node *get_Mux_sel(const ir_node *node);
void set_Mux_sel(ir_node *node, ir_node *sel);
ir_node *get_Mux_true(const ir_node *node);
void set_Mux_true(ir_node *node, ir_node *ir_true);
-ir_node *get_Psi_cond(const ir_node *node, int pos);
-void set_Psi_cond(ir_node *node, int pos, ir_node *cond);
-ir_node *get_Psi_val(const ir_node *node, int pos);
-void set_Psi_val(ir_node *node, int pos, ir_node *val);
-ir_node *get_Psi_default(const ir_node *node);
-void set_Psi_default(ir_node *node, ir_node *val);
-int get_Psi_n_conds(const ir_node *node);
-
/**
* Projection numbers for result of CopyB node: use for Proj nodes!
*/
} pn_InstOf;
#define pn_InstOf_M pn_InstOf_M_regular
-/** InstOf access */
+/** InstOf access. */
ir_type *get_InstOf_type(ir_node *node);
void set_InstOf_type(ir_node *node, ir_type *type);
ir_node *get_InstOf_store(const ir_node *node);
* Projection numbers for Raise.
*/
typedef enum {
- pn_Raise_X = 0, /**< The control flow to the exception handler. */
- pn_Raise_M = 1, /**< The Memory result. */
- pn_Raise_max /**< number of projections from a Raise */
+ pn_Raise_M = pn_Generic_M_regular, /**< The Memory result. */
+ pn_Raise_X = pn_Generic_X_regular, /**< The control flow to the exception handler. */
+ pn_Raise_max /**< number of projections from a Raise */
} pn_Raise; /* Projection numbers for Raise. */
ir_node *get_Raise_mem(const ir_node *node);
/** Returns corresponding operand of Tuple if node is a Proj from
a Tuple. */
ir_node *skip_Tuple(ir_node *node);
-/** returns operand of node if node is a Cast. */
-ir_node *skip_Cast(const ir_node *node);
+/** Returns operand of node if node is a Cast. */
+ir_node *skip_Cast(ir_node *node);
+const ir_node *skip_Cast_const(const ir_node *node);
+/** Returns operand of node if node is a Pin. */
+ir_node *skip_Pin(ir_node *node);
/** Returns operand of node if node is a Confirm */
ir_node *skip_Confirm(ir_node *node);
-/** Skip all high-level Operations. */
-ir_node *skip_HighLevel(ir_node *node);
+/** Skip all high-level Operations (including Cast, Confirm). */
+ir_node *skip_HighLevel_ops(ir_node *node);
/** Returns true if irn is a Const node. */
int is_Const(const ir_node *node);
/** Returns true if a node is a Conv node. */
int is_Start(const ir_node *node);
/** Returns true if node is a Minus node. */
int is_Minus(const ir_node *node);
+/** Returns true if node is a Abs node. */
+int is_Abs(const ir_node *node);
/** Returns true if node is a Mod node. */
int is_Mod(const ir_node *node);
/** Returns true if node is a Div node. */
int is_Quot(const ir_node *node);
/** Returns true if node is an Add node. */
int is_Add(const ir_node *node);
+/** Returns true if node is a Carry node. */
+int is_Carry(const ir_node *node);
/** Returns true if node is an And node. */
int is_And(const ir_node *node);
/** Returns true if node is an Or node. */
int is_Shr(const ir_node *node);
/** Returns true if node is a Shrs node. */
int is_Shrs(const ir_node *node);
-/** Returns true if node is a Rot node. */
-int is_Rot(const ir_node *node);
-/** Returns true if node is a Psi node. */
-int is_Psi(const ir_node *node);
+/** Returns true if node is a Rotl node. */
+int is_Rotl(const ir_node *node);
+/** Returns true if node is an Id node. */
+int is_Id(const ir_node *node);
/** Returns true if node is a Tuple node. */
int is_Tuple(const ir_node *node);
+/** Returns true if node is a Bound node. */
+int is_Bound(const ir_node *node);
/** Returns true if the node is not a Block */
int is_no_Block(const ir_node *node);
/** Returns true if the node is a Block */
int is_Return(const ir_node *node);
/** Returns true if node is a Call node. */
int is_Call(const ir_node *node);
+/** Returns true if node is a CallBegin node. */
+int is_CallBegin(const ir_node *node);
/** Returns true if node is a Sel node. */
int is_Sel(const ir_node *node);
/** Returns true if node is a Mul node. */
int is_Mul(const ir_node *node);
/** Returns true if node is a Mulh node. */
int is_Mulh(const ir_node *node);
-/** Returns true if node is a Mux node or a Psi with only one condition. */
+/** Returns true if node is a Mux node. */
int is_Mux(const ir_node *node);
/** Returns true if node is a Load node. */
int is_Load(const ir_node *node);
int is_Pin(const ir_node *node);
/** Returns true if node is a SymConst node. */
int is_SymConst(const ir_node *node);
+/** Returns true if node is a SymConst node with kind symconst_addr_ent. */
+int is_SymConst_addr_ent(const ir_node *node);
/** Returns true if node is a Cond node. */
int is_Cond(const ir_node *node);
-/** Returns true of node is a CopyB node */
+/** Returns true of node is a CopyB node. */
int is_CopyB(const ir_node *node);
/** Returns true if node is a Cmp node. */
int is_Cmp(const ir_node *node);
-/** Returns true if node is an Alloc node */
+/** Returns true if node is an Alloc node. */
int is_Alloc(const ir_node *node);
-/** Returns true if a node is a Jmp node */
+/** Returns true if node is a Free node. */
+int is_Free(const ir_node *node);
+/** Returns true if a node is a Jmp node. */
int is_Jmp(const ir_node *node);
-/** Returns true if a node is a Raise node */
+/** Returns true if a node is a IJmp node. */
+int is_IJmp(const ir_node *node);
+/** Returns true if a node is a Raise node. */
int is_Raise(const ir_node *node);
-/** Returns true if a node is an ASM node */
+/** Returns true if a node is an ASM node. */
int is_ASM(const ir_node *node);
-/** Returns true if node is a Proj node or a Filter node in
- * intraprocedural view */
+/** Returns true if node is a Proj node or a Filter node in INTRA-procedural view. */
int is_Proj(const ir_node *node);
+/** Returns true if node is a Filter node. */
+int is_Filter(const ir_node *node);
+
/** Returns true if the operation manipulates control flow:
Start, End, Jmp, Cond, Return, Raise, Bad, CallBegin, EndReg, EndExcept */
int is_cfop(const ir_node *node);
/** Sets a new conditional jump prediction. */
void set_Cond_jmp_pred(ir_node *cond, cond_jmp_predicate pred);
+/** Checks whether a node represents a global address. */
+int is_Global(const ir_node *node);
+
+/* Returns the entity of a global address. */
+ir_entity *get_Global_entity(const ir_node *node);
+
/**
* Access custom node data.
* The data must have been registered with
*/
dbg_info *get_irn_dbg_info(const ir_node *n);
-/*-----------------------------------------------------------------*/
-/** Debug aides **/
-/*-----------------------------------------------------------------*/
-
-
-/** Debug print the node.
+/**
+ * Calculate a hash value of a node. Only inputs, mode and opcode are used.
*
- * Writes the node, all its attributes and the predecessors to stdout if DEBUG_libfirm
- * is set. Else does nothing. */
-void dump_irn(const ir_node *n);
+ * @param node the node to hash
+ */
+unsigned firm_default_hash(const ir_node *node);
/*@}*/ /* end of ir_node group definition */