reorder opcode registration to match iro_* order
[libfirm] / ir / ir / irop.c
1 /*
2  * Copyright (C) 1995-2007 University of Karlsruhe.  All right reserved.
3  *
4  * This file is part of libFirm.
5  *
6  * This file may be distributed and/or modified under the terms of the
7  * GNU General Public License version 2 as published by the Free Software
8  * Foundation and appearing in the file LICENSE.GPL included in the
9  * packaging of this file.
10  *
11  * Licensees holding valid libFirm Professional Edition licenses may use
12  * this file in accordance with the libFirm Commercial License.
13  * Agreement provided with the Software.
14  *
15  * This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
16  * WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR
17  * PURPOSE.
18  */
19
20 /**
21  * @file
22  * @brief   Representation of opcode of intermediate operation.
23  * @author  Christian Schaefer, Goetz Lindenmaier, Michael Beck
24  * @version $Id$
25  */
26 #ifdef HAVE_CONFIG_H
27 # include "config.h"
28 #endif
29
30 #ifdef HAVE_STRING_H
31 # include <string.h>
32 #endif
33
34 #include "irop_t.h"
35 #include "irnode_t.h"
36 #include "irhooks.h"
37 #include "irbackedge_t.h"
38
39 #include "iropt_t.h"             /* for firm_set_default_operations */
40 #include "irvrfy_t.h"
41 #include "reassoc_t.h"
42
43 #include "xmalloc.h"
44
45 /** the available next opcode */
46 static unsigned next_iro = iro_MaxOpcode;
47
48 ir_op *op_Block;       ir_op *get_op_Block     (void) { return op_Block;     }
49
50 ir_op *op_Start;       ir_op *get_op_Start     (void) { return op_Start;     }
51 ir_op *op_End;         ir_op *get_op_End       (void) { return op_End;       }
52 ir_op *op_Jmp;         ir_op *get_op_Jmp       (void) { return op_Jmp;       }
53 ir_op *op_IJmp;        ir_op *get_op_IJmp      (void) { return op_IJmp;      }
54 ir_op *op_Cond;        ir_op *get_op_Cond      (void) { return op_Cond;      }
55 ir_op *op_Return;      ir_op *get_op_Return    (void) { return op_Return;    }
56
57 ir_op *op_Sel;         ir_op *get_op_Sel       (void) { return op_Sel;       }
58 ir_op *op_InstOf;      ir_op *get_op_InstOf    (void) { return op_InstOf;    }
59
60 ir_op *op_Const;       ir_op *get_op_Const     (void) { return op_Const;     }
61 ir_op *op_SymConst;    ir_op *get_op_SymConst  (void) { return op_SymConst;  }
62
63 ir_op *op_Call;        ir_op *get_op_Call      (void) { return op_Call;      }
64 ir_op *op_Add;         ir_op *get_op_Add       (void) { return op_Add;       }
65 ir_op *op_Sub;         ir_op *get_op_Sub       (void) { return op_Sub;       }
66 ir_op *op_Minus;       ir_op *get_op_Minus     (void) { return op_Minus;     }
67 ir_op *op_Mul;         ir_op *get_op_Mul       (void) { return op_Mul;       }
68 ir_op *op_Quot;        ir_op *get_op_Quot      (void) { return op_Quot;      }
69 ir_op *op_DivMod;      ir_op *get_op_DivMod    (void) { return op_DivMod;    }
70 ir_op *op_Div;         ir_op *get_op_Div       (void) { return op_Div;       }
71 ir_op *op_Mod;         ir_op *get_op_Mod       (void) { return op_Mod;       }
72 ir_op *op_Abs;         ir_op *get_op_Abs       (void) { return op_Abs;       }
73 ir_op *op_And;         ir_op *get_op_And       (void) { return op_And;       }
74 ir_op *op_Or;          ir_op *get_op_Or        (void) { return op_Or;        }
75 ir_op *op_Eor;         ir_op *get_op_Eor       (void) { return op_Eor;       }
76 ir_op *op_Not;         ir_op *get_op_Not       (void) { return op_Not;       }
77 ir_op *op_Cmp;         ir_op *get_op_Cmp       (void) { return op_Cmp;       }
78 ir_op *op_Shl;         ir_op *get_op_Shl       (void) { return op_Shl;       }
79 ir_op *op_Shr;         ir_op *get_op_Shr       (void) { return op_Shr;       }
80 ir_op *op_Shrs;        ir_op *get_op_Shrs      (void) { return op_Shrs;      }
81 ir_op *op_Rot;         ir_op *get_op_Rot       (void) { return op_Rot;       }
82 ir_op *op_Conv;        ir_op *get_op_Conv      (void) { return op_Conv;      }
83 ir_op *op_Cast;        ir_op *get_op_Cast      (void) { return op_Cast;      }
84 ir_op *op_Carry;       ir_op *get_op_Carry     (void) { return op_Carry;     }
85 ir_op *op_Borrow;      ir_op *get_op_Borrow    (void) { return op_Borrow;    }
86
87 ir_op *op_Phi;         ir_op *get_op_Phi       (void) { return op_Phi;       }
88
89 ir_op *op_Load;        ir_op *get_op_Load      (void) { return op_Load;      }
90 ir_op *op_Store;       ir_op *get_op_Store     (void) { return op_Store;     }
91 ir_op *op_Alloc;       ir_op *get_op_Alloc     (void) { return op_Alloc;     }
92 ir_op *op_Free;        ir_op *get_op_Free      (void) { return op_Free;      }
93 ir_op *op_Sync;        ir_op *get_op_Sync      (void) { return op_Sync;      }
94
95 ir_op *op_Tuple;       ir_op *get_op_Tuple     (void) { return op_Tuple;     }
96 ir_op *op_Proj;        ir_op *get_op_Proj      (void) { return op_Proj;      }
97 ir_op *op_Id;          ir_op *get_op_Id        (void) { return op_Id;        }
98 ir_op *op_Bad;         ir_op *get_op_Bad       (void) { return op_Bad;       }
99 ir_op *op_Confirm;     ir_op *get_op_Confirm   (void) { return op_Confirm;   }
100
101 ir_op *op_Unknown;     ir_op *get_op_Unknown   (void) { return op_Unknown;   }
102 ir_op *op_Filter;      ir_op *get_op_Filter    (void) { return op_Filter;    }
103 ir_op *op_Break;       ir_op *get_op_Break     (void) { return op_Break;     }
104 ir_op *op_CallBegin;   ir_op *get_op_CallBegin (void) { return op_CallBegin; }
105 ir_op *op_EndReg;      ir_op *get_op_EndReg    (void) { return op_EndReg;    }
106 ir_op *op_EndExcept;   ir_op *get_op_EndExcept (void) { return op_EndExcept; }
107
108 ir_op *op_NoMem;       ir_op *get_op_NoMem     (void) { return op_NoMem;     }
109 ir_op *op_Mux;         ir_op *get_op_Mux       (void) { return op_Mux;       }
110 ir_op *op_Psi;         ir_op *get_op_Psi       (void) { return op_Psi;       }
111 ir_op *op_CopyB;       ir_op *get_op_CopyB     (void) { return op_CopyB;     }
112
113 ir_op *op_Raise;       ir_op *get_op_Raise     (void) { return op_Raise;     }
114 ir_op *op_Bound;       ir_op *get_op_Bound     (void) { return op_Bound;     }
115
116 ir_op *op_Pin;         ir_op *get_op_Pin       (void) { return op_Pin;       }
117
118 ir_op *op_ASM;         ir_op *get_op_ASM       (void) { return op_ASM;       }
119
120 /*
121  * Copies all attributes stored in the old node to the new node.
122  * Assumes both have the same opcode and sufficient size.
123  */
124 void default_copy_attr(const ir_node *old_node, ir_node *new_node) {
125         unsigned size = firm_add_node_size;
126
127         assert(get_irn_op(old_node) == get_irn_op(new_node));
128         memcpy(&new_node->attr, &old_node->attr, get_op_attr_size(get_irn_op(old_node)));
129
130         if (size > 0) {
131                 /* copy additional node data */
132                 memcpy(get_irn_data(new_node, void, size), get_irn_data(old_node, void, size), size);
133         }
134 }  /* default_copy_attr */
135
136 /**
137  * Copies all Call attributes stored in the old node to the new node.
138  */
139 static void
140 call_copy_attr(const ir_node *old_node, ir_node *new_node) {
141         default_copy_attr(old_node, new_node);
142         remove_Call_callee_arr(new_node);
143 }  /* call_copy_attr */
144
145 /**
146  * Copies all Block attributes stored in the old node to the new node.
147  */
148 static void
149 block_copy_attr(const ir_node *old_node, ir_node *new_node) {
150         ir_graph *irg = current_ir_graph;
151
152         default_copy_attr(old_node, new_node);
153         new_node->attr.block.cg_backedge = NULL;
154         new_node->attr.block.backedge = new_backedge_arr(irg->obst, get_irn_arity(new_node));
155         INIT_LIST_HEAD(&new_node->attr.block.succ_head);
156 }  /* block_copy_attr */
157
158 /**
159  * Copies all phi attributes stored in old node to the new node
160  */
161 static void
162 phi_copy_attr(const ir_node *old_node, ir_node *new_node) {
163         ir_graph *irg = current_ir_graph;
164
165         default_copy_attr(old_node, new_node);
166         new_node->attr.phi_backedge = new_backedge_arr(irg->obst, get_irn_arity(new_node));
167 }
168
169 /**
170  * Copies all filter attributes stored in old node to the new node
171  */
172 static void
173 filter_copy_attr(const ir_node *old_node, ir_node *new_node) {
174         ir_graph *irg = current_ir_graph;
175
176         default_copy_attr(old_node, new_node);
177         new_node->attr.filter.backedge = new_backedge_arr(irg->obst, get_irn_arity(new_node));
178 }
179
180 /**
181  * Sets the default copy_attr operation for an ir_ops
182  *
183  * @param code   the opcode for the default operation
184  * @param ops    the operations initialized
185  *
186  * @return
187  *    The operations.
188  */
189 static ir_op_ops *firm_set_default_copy_attr(ir_opcode code, ir_op_ops *ops) {
190         if (code == iro_Call)
191                 ops->copy_attr = call_copy_attr;
192         else if (code == iro_Block)
193                 ops->copy_attr = block_copy_attr;
194         else if (code == iro_Phi)
195                 ops->copy_attr = phi_copy_attr;
196         else if (code == iro_Filter)
197                 ops->copy_attr = filter_copy_attr;
198         else {
199                 /* not allowed to be NULL */
200                 if (! ops->copy_attr)
201                         ops->copy_attr = default_copy_attr;
202         }
203         return ops;
204 }  /* firm_set_default_copy_attr */
205
206 /* Creates a new ir operation. */
207 ir_op *
208 new_ir_op(ir_opcode code, const char *name, op_pin_state p,
209           unsigned flags, op_arity opar, int op_index, size_t attr_size,
210           const ir_op_ops *ops)
211 {
212         ir_op *res;
213
214         res = (ir_op *)xmalloc(sizeof(*res));
215         memset(res, 0, sizeof(*res));
216
217         res->code      = code;
218         res->name      = new_id_from_chars(name, strlen(name));
219         res->op_pin_state_pinned = p;
220         res->attr_size = attr_size;
221         res->flags     = flags;
222         res->opar      = opar;
223         res->op_index  = op_index;
224         res->tag       = NULL;
225
226         if (ops)
227                 memcpy(&res->ops, ops, sizeof(res->ops));
228         else /* no given ops, set all operations to NULL */
229                 memset(&res->ops, 0, sizeof(res->ops));
230
231         firm_set_default_operations(code, &res->ops);
232         firm_set_default_copy_attr(code, &res->ops);
233         firm_set_default_verifyer(code, &res->ops);
234         firm_set_default_reassoc(code, &res->ops);
235
236         add_irp_opcode(res);
237
238         hook_new_ir_op(res);
239         return res;
240 }  /* new_ir_op */
241
242 void free_ir_op(ir_op *code) {
243         hook_free_ir_op(code);
244
245         remove_irp_opcode(code);
246         free(code);
247 }  /* free_ir_op */
248
249 void
250 init_op(void)
251 {
252 #define N   irop_flag_none
253 #define L   irop_flag_labeled
254 #define C   irop_flag_commutative
255 #define X   irop_flag_cfopcode
256 #define I   irop_flag_ip_cfopcode
257 #define F   irop_flag_fragile
258 #define Y   irop_flag_forking
259 #define H   irop_flag_highlevel
260 #define c   irop_flag_constlike
261 #define K   irop_flag_keep
262 #define S   irop_flag_start_block
263
264         /* Caution: A great deal of Firm optimizations depend an right operations flags. */
265         op_Block     = new_ir_op(iro_Block,     "Block",     op_pin_state_pinned, L,       oparity_variable, -1, sizeof(block_attr), NULL);
266
267         op_Start     = new_ir_op(iro_Start,     "Start",     op_pin_state_pinned, X,       oparity_zero,     -1, 0, NULL);
268         op_End       = new_ir_op(iro_End,       "End",       op_pin_state_pinned, X,       oparity_dynamic,  -1, 0, NULL);
269         op_Jmp       = new_ir_op(iro_Jmp,       "Jmp",       op_pin_state_pinned, X,       oparity_zero,     -1, 0, NULL);
270         op_IJmp      = new_ir_op(iro_IJmp,      "IJmp",      op_pin_state_pinned, X|K,     oparity_unary,    -1, 0, NULL);
271         op_Cond      = new_ir_op(iro_Cond,      "Cond",      op_pin_state_pinned, X|Y,     oparity_any,      -1, sizeof(cond_attr), NULL);
272         op_Return    = new_ir_op(iro_Return,    "Return",    op_pin_state_pinned, X,       oparity_variable, -1, 0, NULL);
273
274         op_Const     = new_ir_op(iro_Const,     "Const",     op_pin_state_floats, c|S,     oparity_zero,     -1, sizeof(const_attr), NULL);
275         op_SymConst  = new_ir_op(iro_SymConst,  "SymConst",  op_pin_state_floats, c|S,     oparity_zero,     -1, sizeof(symconst_attr), NULL);
276
277         op_Sel       = new_ir_op(iro_Sel,       "Sel",       op_pin_state_floats, H,       oparity_any,      -1, sizeof(sel_attr), NULL);
278
279         op_Call      = new_ir_op(iro_Call,      "Call",      op_pin_state_mem_pinned, F,   oparity_variable, -1, sizeof(call_attr), NULL);
280         op_Add       = new_ir_op(iro_Add,       "Add",       op_pin_state_floats, C,       oparity_binary,    0, 0, NULL);
281         op_Sub       = new_ir_op(iro_Sub,       "Sub",       op_pin_state_floats, N,       oparity_binary,    0, 0, NULL);
282         op_Minus     = new_ir_op(iro_Minus,     "Minus",     op_pin_state_floats, N,       oparity_unary,     0, 0, NULL);
283         op_Mul       = new_ir_op(iro_Mul,       "Mul",       op_pin_state_floats, C,       oparity_binary,    0, 0, NULL);
284         op_Quot      = new_ir_op(iro_Quot,      "Quot",      op_pin_state_exc_pinned, F,   oparity_binary,    1, sizeof(divmod_attr), NULL);
285         op_DivMod    = new_ir_op(iro_DivMod,    "DivMod",    op_pin_state_exc_pinned, F,   oparity_binary,    1, sizeof(divmod_attr), NULL);
286         op_Div       = new_ir_op(iro_Div,       "Div",       op_pin_state_exc_pinned, F,   oparity_binary,    1, sizeof(divmod_attr), NULL);
287         op_Mod       = new_ir_op(iro_Mod,       "Mod",       op_pin_state_exc_pinned, F,   oparity_binary,    1, sizeof(divmod_attr), NULL);
288         op_Abs       = new_ir_op(iro_Abs,       "Abs",       op_pin_state_floats, N,       oparity_unary,     0, 0, NULL);
289         op_And       = new_ir_op(iro_And,       "And",       op_pin_state_floats, C,       oparity_binary,    0, 0, NULL);
290         op_Or        = new_ir_op(iro_Or,        "Or",        op_pin_state_floats, C,       oparity_binary,    0, 0, NULL);
291         op_Eor       = new_ir_op(iro_Eor,       "Eor",       op_pin_state_floats, C,       oparity_binary,    0, 0, NULL);
292         op_Not       = new_ir_op(iro_Not,       "Not",       op_pin_state_floats, N,       oparity_unary,     0, 0, NULL);
293         op_Cmp       = new_ir_op(iro_Cmp,       "Cmp",       op_pin_state_floats, N,       oparity_binary,    0, 0, NULL);
294         op_Shl       = new_ir_op(iro_Shl,       "Shl",       op_pin_state_floats, N,       oparity_binary,    0, 0, NULL);
295         op_Shr       = new_ir_op(iro_Shr,       "Shr",       op_pin_state_floats, N,       oparity_binary,    0, 0, NULL);
296         op_Shrs      = new_ir_op(iro_Shrs,      "Shrs",      op_pin_state_floats, N,       oparity_binary,    0, 0, NULL);
297         op_Rot       = new_ir_op(iro_Rot,       "Rot",       op_pin_state_floats, N,       oparity_binary,    0, 0, NULL);
298         op_Conv      = new_ir_op(iro_Conv,      "Conv",      op_pin_state_floats, N,       oparity_unary,     0, sizeof(conv_attr), NULL);
299         op_Cast      = new_ir_op(iro_Cast,      "Cast",      op_pin_state_floats, N|H,     oparity_unary,     0, sizeof(cast_attr), NULL);
300         op_Carry     = new_ir_op(iro_Carry,     "Carry",     op_pin_state_floats, C,       oparity_binary,    0, 0, NULL);
301         op_Borrow    = new_ir_op(iro_Borrow,    "Borrow",    op_pin_state_floats, N,       oparity_binary,    0, 0, NULL);
302
303         op_Phi       = new_ir_op(iro_Phi,       "Phi",       op_pin_state_pinned, N,       oparity_variable, -1, sizeof(phi0_attr), NULL);
304
305         op_Load      = new_ir_op(iro_Load,      "Load",      op_pin_state_exc_pinned, F,   oparity_any,      -1, sizeof(load_attr), NULL);
306         op_Store     = new_ir_op(iro_Store,     "Store",     op_pin_state_exc_pinned, F,   oparity_any,      -1, sizeof(store_attr), NULL);
307         op_Alloc     = new_ir_op(iro_Alloc,     "Alloc",     op_pin_state_pinned, F,       oparity_any,      -1, sizeof(alloc_attr), NULL);
308         op_Free      = new_ir_op(iro_Free,      "Free",      op_pin_state_pinned, N,       oparity_any,      -1, sizeof(free_attr), NULL);
309         op_Sync      = new_ir_op(iro_Sync,      "Sync",      op_pin_state_pinned, N,       oparity_dynamic,  -1, 0, NULL);
310
311         op_Proj      = new_ir_op(iro_Proj,      "Proj",      op_pin_state_floats, N,       oparity_unary,    -1, sizeof(long), NULL);
312         op_Tuple     = new_ir_op(iro_Tuple,     "Tuple",     op_pin_state_floats, L,       oparity_variable, -1, 0, NULL);
313         op_Id        = new_ir_op(iro_Id,        "Id",        op_pin_state_floats, N,       oparity_any,      -1, 0, NULL);
314         op_Bad       = new_ir_op(iro_Bad,       "Bad",       op_pin_state_pinned, X|F|S,   oparity_zero,     -1, 0, NULL);
315         op_Confirm   = new_ir_op(iro_Confirm,   "Confirm",   op_pin_state_pinned, H,       oparity_any,      -1, sizeof(confirm_attr), NULL);
316
317         op_Unknown   = new_ir_op(iro_Unknown,   "Unknown",   op_pin_state_pinned, X|F|S,   oparity_zero,     -1, 0, NULL);
318         op_Filter    = new_ir_op(iro_Filter,    "Filter",    op_pin_state_pinned, N,       oparity_variable, -1, sizeof(filter_attr), NULL);
319         op_Break     = new_ir_op(iro_Break,     "Break",     op_pin_state_pinned, X,       oparity_zero,     -1, 0, NULL);
320         op_CallBegin = new_ir_op(iro_CallBegin, "CallBegin", op_pin_state_pinned, X|I,     oparity_any,      -1, sizeof(callbegin_attr), NULL);
321         op_EndReg    = new_ir_op(iro_EndReg,    "EndReg",    op_pin_state_pinned, X|I,     oparity_dynamic,  -1, 0, NULL);
322         op_EndExcept = new_ir_op(iro_EndExcept, "EndExcept", op_pin_state_pinned, X|I,     oparity_dynamic,  -1, 0, NULL);
323
324         op_NoMem     = new_ir_op(iro_NoMem,     "NoMem",     op_pin_state_pinned, N,       oparity_zero,     -1, 0, NULL);
325         op_Mux       = new_ir_op(iro_Mux,       "Mux",       op_pin_state_floats, N,       oparity_trinary,  -1, 0, NULL);
326         op_Psi       = new_ir_op(iro_Psi,       "Psi",       op_pin_state_floats, N,       oparity_variable, -1, 0, NULL);
327         op_CopyB     = new_ir_op(iro_CopyB,     "CopyB",     op_pin_state_mem_pinned, F|H, oparity_trinary,  -1, sizeof(copyb_attr), NULL);
328
329         op_InstOf    = new_ir_op(iro_InstOf,    "InstOf",    op_pin_state_mem_pinned, H,   oparity_unary,    -1, sizeof(io_attr), NULL);
330         op_Raise     = new_ir_op(iro_Raise,     "Raise",     op_pin_state_pinned,     H|X, oparity_any,      -1, 0, NULL);
331         op_Bound     = new_ir_op(iro_Bound,     "Bound",     op_pin_state_exc_pinned, F|H, oparity_trinary,  -1, sizeof(bound_attr), NULL);
332
333         op_Pin       = new_ir_op(iro_Pin,       "Pin",       op_pin_state_pinned, H,       oparity_unary,    -1, 0, NULL);
334
335         /* HMM: may contain branches so X|Y */
336         op_ASM       = new_ir_op(iro_ASM,       "ASM",       op_pin_state_mem_pinned, K|X|Y, oparity_variable, -1, sizeof(asm_attr), NULL);
337
338 #undef S
339 #undef H
340 #undef Y
341 #undef F
342 #undef I
343 #undef X
344 #undef C
345 #undef L
346 }  /* init_op */
347
348
349 /* free memory used by irop module. */
350 void finish_op(void) {
351         free_ir_op (op_Block    ); op_Block     = NULL;
352
353         free_ir_op (op_Start    ); op_Start     = NULL;
354         free_ir_op (op_End      ); op_End       = NULL;
355         free_ir_op (op_Jmp      ); op_Jmp       = NULL;
356         free_ir_op (op_Cond     ); op_Cond      = NULL;
357         free_ir_op (op_Return   ); op_Return    = NULL;
358
359         free_ir_op (op_Const    ); op_Const     = NULL;
360         free_ir_op (op_SymConst ); op_SymConst  = NULL;
361
362         free_ir_op (op_Sel      ); op_Sel       = NULL;
363
364         free_ir_op (op_Call     ); op_Call      = NULL;
365         free_ir_op (op_Add      ); op_Add       = NULL;
366         free_ir_op (op_Minus    ); op_Minus     = NULL;
367         free_ir_op (op_Sub      ); op_Sub       = NULL;
368         free_ir_op (op_Mul      ); op_Mul       = NULL;
369         free_ir_op (op_Quot     ); op_Quot      = NULL;
370         free_ir_op (op_DivMod   ); op_DivMod    = NULL;
371         free_ir_op (op_Div      ); op_Div       = NULL;
372         free_ir_op (op_Mod      ); op_Mod       = NULL;
373         free_ir_op (op_Abs      ); op_Abs       = NULL;
374         free_ir_op (op_And      ); op_And       = NULL;
375         free_ir_op (op_Or       ); op_Or        = NULL;
376         free_ir_op (op_Eor      ); op_Eor       = NULL;
377         free_ir_op (op_Not      ); op_Not       = NULL;
378         free_ir_op (op_Cmp      ); op_Cmp       = NULL;
379         free_ir_op (op_Shl      ); op_Shl       = NULL;
380         free_ir_op (op_Shr      ); op_Shr       = NULL;
381         free_ir_op (op_Shrs     ); op_Shrs      = NULL;
382         free_ir_op (op_Rot      ); op_Rot       = NULL;
383         free_ir_op (op_Conv     ); op_Conv      = NULL;
384         free_ir_op (op_Cast     ); op_Cast      = NULL;
385         free_ir_op (op_Carry    ); op_Carry     = NULL;
386         free_ir_op (op_Borrow   ); op_Borrow    = NULL;
387
388         free_ir_op (op_Phi      ); op_Phi       = NULL;
389
390         free_ir_op (op_Load     ); op_Load      = NULL;
391         free_ir_op (op_Store    ); op_Store     = NULL;
392         free_ir_op (op_Alloc    ); op_Alloc     = NULL;
393         free_ir_op (op_Free     ); op_Free      = NULL;
394         free_ir_op (op_Sync     ); op_Sync      = NULL;
395
396         free_ir_op (op_Proj     ); op_Proj      = NULL;
397         free_ir_op (op_Tuple    ); op_Tuple     = NULL;
398         free_ir_op (op_Id       ); op_Id        = NULL;
399         free_ir_op (op_Bad      ); op_Bad       = NULL;
400         free_ir_op (op_Confirm  ); op_Confirm   = NULL;
401
402         free_ir_op (op_Unknown  ); op_Unknown   = NULL;
403         free_ir_op (op_Filter   ); op_Filter    = NULL;
404         free_ir_op (op_Break    ); op_Break     = NULL;
405         free_ir_op (op_CallBegin); op_CallBegin = NULL;
406         free_ir_op (op_EndReg   ); op_EndReg    = NULL;
407         free_ir_op (op_EndExcept); op_EndExcept = NULL;
408
409         free_ir_op (op_NoMem    ); op_NoMem     = NULL;
410         free_ir_op (op_Psi      ); op_Psi       = NULL;
411         free_ir_op (op_Mux      ); op_Mux       = NULL;
412         free_ir_op (op_CopyB    ); op_CopyB     = NULL;
413
414         free_ir_op (op_InstOf   ); op_InstOf    = NULL;
415         free_ir_op (op_Raise    ); op_Raise     = NULL;
416         free_ir_op (op_Bound    ); op_Bound     = NULL;
417
418         free_ir_op (op_Pin      ); op_Pin       = NULL;
419 }
420
421 /* Returns the string for the opcode. */
422 const char *get_op_name (const ir_op *op) {
423         return get_id_str(op->name);
424 }  /* get_op_name */
425
426 ir_opcode (get_op_code)(const ir_op *op){
427   return _get_op_code(op);
428 }  /* get_op_code */
429
430 ident *(get_op_ident)(const ir_op *op){
431   return _get_op_ident(op);
432 }  /* get_op_ident */
433
434 const char *get_op_pin_state_name(op_pin_state s) {
435         switch(s) {
436 #define XXX(s) case s: return #s
437         XXX(op_pin_state_floats);
438         XXX(op_pin_state_pinned);
439         XXX(op_pin_state_exc_pinned);
440         XXX(op_pin_state_mem_pinned);
441 #undef XXX
442         }
443         return "<none>";
444 }  /* get_op_pin_state_name */
445
446 op_pin_state (get_op_pinned)(const ir_op *op) {
447         return _get_op_pinned(op);
448 }  /* get_op_pinned */
449
450 /* Sets op_pin_state_pinned in the opcode.  Setting it to floating has no effect
451    for Phi, Block and control flow nodes. */
452 void set_op_pinned(ir_op *op, op_pin_state op_pin_state_pinned) {
453         if (op == op_Block || op == op_Phi || is_cfopcode(op)) return;
454         op->op_pin_state_pinned = op_pin_state_pinned;
455 }  /* set_op_pinned */
456
457 /* retrieve the next free opcode */
458 unsigned get_next_ir_opcode(void) {
459         return next_iro++;
460 }  /* get_next_ir_opcode */
461
462 /* Returns the next free n IR opcode number, allows to register a bunch of user ops */
463 unsigned get_next_ir_opcodes(unsigned num) {
464         unsigned base = next_iro;
465         next_iro += num;
466         return base;
467 }  /* get_next_ir_opcodes */
468
469 /* Returns the generic function pointer from an ir operation. */
470 op_func (get_generic_function_ptr)(const ir_op *op) {
471         return _get_generic_function_ptr(op);
472 }  /* get_generic_function_ptr */
473
474 /* Store a generic function pointer into an ir operation. */
475 void (set_generic_function_ptr)(ir_op *op, op_func func) {
476         _set_generic_function_ptr(op, func);
477 }  /* set_generic_function_ptr */
478
479 /* Returns the ir_op_ops of an ir_op. */
480 const ir_op_ops *(get_op_ops)(const ir_op *op) {
481         return _get_op_ops(op);
482 }  /* get_op_ops */