3b8008a3f33ac6458fbe904f7a379c3a62aa8429
[libfirm] / ir / lower / lower_dw.c
1 /*
2  * Copyright (C) 1995-2008 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   Lower Double word operations, ie 64bit -> 32bit, 32bit -> 16bit etc.
23  * @date    8.10.2004
24  * @author  Michael Beck
25  * @version $Id$
26  */
27 #ifdef HAVE_CONFIG_H
28 # include "config.h"
29 #endif
30
31 #ifdef HAVE_STRING_H
32 # include <string.h>
33 #endif
34 #ifdef HAVE_STDLIB_H
35 # include <stdlib.h>
36 #endif
37
38 #include <assert.h>
39
40 #include "lowering.h"
41 #include "irnode_t.h"
42 #include "irgraph_t.h"
43 #include "irmode_t.h"
44 #include "iropt_t.h"
45 #include "irgmod.h"
46 #include "tv_t.h"
47 #include "dbginfo_t.h"
48 #include "iropt_dbg.h"
49 #include "irflag_t.h"
50 #include "firmstat.h"
51 #include "irgwalk.h"
52 #include "ircons.h"
53 #include "irflag.h"
54 #include "irtools.h"
55 #include "debug.h"
56 #include "set.h"
57 #include "pmap.h"
58 #include "pdeq.h"
59 #include "irdump.h"
60 #include "xmalloc.h"
61
62 /** A map from mode to a primitive type. */
63 static pmap *prim_types;
64
65 /** A map from (op, imode, omode) to Intrinsic functions entities. */
66 static set *intrinsic_fkt;
67
68 /** A map from (imode, omode) to conv function types. */
69 static set *conv_types;
70
71 /** A map from a method type to its lowered type. */
72 static pmap *lowered_type;
73
74 /** The types for the binop and unop intrinsics. */
75 static ir_type *binop_tp_u, *binop_tp_s, *unop_tp_u, *unop_tp_s, *shiftop_tp_u, *shiftop_tp_s, *tp_s, *tp_u;
76
77 /** the debug handle */
78 DEBUG_ONLY(static firm_dbg_module_t *dbg = NULL;)
79
80 /**
81  * An entry in the (op, imode, omode) -> entity map.
82  */
83 typedef struct _op_mode_entry {
84         const ir_op   *op;    /**< the op */
85         const ir_mode *imode; /**< the input mode */
86         const ir_mode *omode; /**< the output mode */
87         ir_entity     *ent;   /**< the associated entity of this (op, imode, omode) triple */
88 } op_mode_entry_t;
89
90 /**
91  * An entry in the (imode, omode) -> tp map.
92  */
93 typedef struct _conv_tp_entry {
94         const ir_mode *imode; /**< the input mode */
95         const ir_mode *omode; /**< the output mode */
96         ir_type       *mtd;   /**< the associated method type of this (imode, omode) pair */
97 } conv_tp_entry_t;
98
99 /**
100  * Every double word node will be replaced,
101  * we need some store to hold the replacement:
102  */
103 typedef struct _node_entry_t {
104         ir_node *low_word;    /**< the low word */
105         ir_node *high_word;   /**< the high word */
106 } node_entry_t;
107
108 enum lower_flags {
109         MUST_BE_LOWERED = 1,  /**< graph must be lowered */
110         CF_CHANGED      = 2,  /**< control flow was changed */
111 };
112
113 /**
114  * The lower environment.
115  */
116 typedef struct _lower_env_t {
117         node_entry_t **entries;       /**< entries per node */
118         struct obstack obst;          /**< an obstack holding the temporary data */
119         tarval   *tv_mode_bytes;      /**< a tarval containing the number of bytes in the lowered modes */
120         tarval   *tv_mode_bits;       /**< a tarval containing the number of bits in the lowered modes */
121         pdeq     *waitq;              /**< a wait queue of all nodes that must be handled later */
122         pmap     *proj_2_block;       /**< a map from ProjX to its destination blocks */
123         const lwrdw_param_t *params;  /**< transformation parameter */
124         unsigned flags;               /**< some flags */
125         int      n_entries;           /**< number of entries */
126 } lower_env_t;
127
128 /**
129  * Get a primitive mode for a mode.
130  */
131 static ir_type *get_primitive_type(ir_mode *mode) {
132         pmap_entry *entry = pmap_find(prim_types, mode);
133         ir_type *tp;
134         char buf[64];
135
136         if (entry)
137                 return entry->value;
138
139         snprintf(buf, sizeof(buf), "_prim_%s", get_mode_name(mode));
140         tp = new_type_primitive(new_id_from_str(buf), mode);
141
142         pmap_insert(prim_types, mode, tp);
143         return tp;
144 }  /* get_primitive_type */
145
146 /**
147  * Create a method type for a Conv emulation from imode to omode.
148  */
149 static ir_type *get_conv_type(ir_mode *imode, ir_mode *omode, lower_env_t *env) {
150         conv_tp_entry_t key, *entry;
151         ir_type *mtd;
152
153         key.imode = imode;
154         key.omode = omode;
155         key.mtd   = NULL;
156
157         entry = set_insert(conv_types, &key, sizeof(key), HASH_PTR(imode) ^ HASH_PTR(omode));
158         if (! entry->mtd) {
159                 int n_param = 1, n_res = 1;
160                 char buf[64];
161
162                 if (imode == env->params->high_signed || imode == env->params->high_unsigned)
163                         n_param = 2;
164                 if (omode == env->params->high_signed || omode == env->params->high_unsigned)
165                         n_res = 2;
166
167                 /* create a new one */
168                 snprintf(buf, sizeof(buf), "LConv%s%s", get_mode_name(imode), get_mode_name(omode));
169                 mtd = new_type_method(new_id_from_str(buf), n_param, n_res);
170
171                 /* set param types and result types */
172                 n_param = 0;
173                 if (imode == env->params->high_signed) {
174                         set_method_param_type(mtd, n_param++, tp_u);
175                         set_method_param_type(mtd, n_param++, tp_s);
176                 } else if (imode == env->params->high_unsigned) {
177                         set_method_param_type(mtd, n_param++, tp_u);
178                         set_method_param_type(mtd, n_param++, tp_u);
179                 } else {
180                         ir_type *tp = get_primitive_type(imode);
181                         set_method_param_type(mtd, n_param++, tp);
182                 }  /* if */
183
184                 n_res = 0;
185                 if (omode == env->params->high_signed) {
186                         set_method_res_type(mtd, n_res++, tp_u);
187                         set_method_res_type(mtd, n_res++, tp_s);
188                 } else if (omode == env->params->high_unsigned) {
189                         set_method_res_type(mtd, n_res++, tp_u);
190                         set_method_res_type(mtd, n_res++, tp_u);
191                 } else {
192                         ir_type *tp = get_primitive_type(omode);
193                         set_method_res_type(mtd, n_res++, tp);
194                 }  /* if */
195                 entry->mtd = mtd;
196         } else {
197                 mtd = entry->mtd;
198         }  /* if */
199         return mtd;
200 }  /* get_conv_type */
201
202 /**
203  * Add an additional control flow input to a block.
204  * Patch all Phi nodes. The new Phi inputs are copied from
205  * old input number nr.
206  */
207 static void add_block_cf_input_nr(ir_node *block, int nr, ir_node *cf)
208 {
209         int i, arity = get_irn_arity(block);
210         ir_node **in, *phi;
211
212         assert(nr < arity);
213
214         NEW_ARR_A(ir_node *, in, arity + 1);
215         for (i = 0; i < arity; ++i)
216                 in[i] = get_irn_n(block, i);
217         in[i] = cf;
218
219         set_irn_in(block, i + 1, in);
220
221         for (phi = get_irn_link(block); phi; phi = get_irn_link(phi)) {
222                 for (i = 0; i < arity; ++i)
223                         in[i] = get_irn_n(phi, i);
224                 in[i] = in[nr];
225                 set_irn_in(phi, i + 1, in);
226         }  /* for */
227 }  /* add_block_cf_input_nr */
228
229 /**
230  * Add an additional control flow input to a block.
231  * Patch all Phi nodes. The new Phi inputs are copied from
232  * old input from cf tmpl.
233  */
234 static void add_block_cf_input(ir_node *block, ir_node *tmpl, ir_node *cf)
235 {
236         int i, arity = get_irn_arity(block);
237         int nr = 0;
238
239         for (i = 0; i < arity; ++i) {
240                 if (get_irn_n(block, i) == tmpl) {
241                         nr = i;
242                         break;
243                 }  /* if */
244         }  /* for */
245         assert(i < arity);
246         add_block_cf_input_nr(block, nr, cf);
247 }  /* add_block_cf_input */
248
249 /**
250  * Return the "operational" mode of a Firm node.
251  */
252 static ir_mode *get_irn_op_mode(ir_node *node)
253 {
254         switch (get_irn_opcode(node)) {
255         case iro_Load:
256                 return get_Load_mode(node);
257         case iro_Store:
258                 return get_irn_mode(get_Store_value(node));
259         case iro_DivMod:
260                 return get_irn_mode(get_DivMod_left(node));
261         case iro_Div:
262                 return get_irn_mode(get_Div_left(node));
263         case iro_Mod:
264                 return get_irn_mode(get_Mod_left(node));
265         case iro_Cmp:
266                 return get_irn_mode(get_Cmp_left(node));
267         default:
268                 return get_irn_mode(node);
269         }  /* switch */
270 }  /* get_irn_op_mode */
271
272 /**
273  * Walker, prepare the node links.
274  */
275 static void prepare_links(ir_node *node, void *env)
276 {
277         lower_env_t  *lenv = env;
278         ir_mode      *mode = get_irn_op_mode(node);
279         node_entry_t *link;
280         int          i;
281
282         if (mode == lenv->params->high_signed ||
283                 mode == lenv->params->high_unsigned) {
284                 /* ok, found a node that will be lowered */
285                 link = obstack_alloc(&lenv->obst, sizeof(*link));
286
287                 memset(link, 0, sizeof(*link));
288
289                 lenv->entries[get_irn_idx(node)] = link;
290                 lenv->flags |= MUST_BE_LOWERED;
291         } else if (is_Conv(node)) {
292                 /* Conv nodes have two modes */
293                 ir_node *pred = get_Conv_op(node);
294                 mode = get_irn_mode(pred);
295
296                 if (mode == lenv->params->high_signed ||
297                         mode == lenv->params->high_unsigned) {
298                         /* must lower this node either but don't need a link */
299                         lenv->flags |= MUST_BE_LOWERED;
300                 }  /* if */
301                 return;
302         }  /* if */
303
304         if (is_Proj(node)) {
305                 /* link all Proj nodes to its predecessor:
306                    Note that Tuple Proj's and its Projs are linked either. */
307                 ir_node *pred = get_Proj_pred(node);
308
309                 set_irn_link(node, get_irn_link(pred));
310                 set_irn_link(pred, node);
311         } else if (is_Phi(node)) {
312                 /* link all Phi nodes to its block */
313                 ir_node *block = get_nodes_block(node);
314
315                 set_irn_link(node, get_irn_link(block));
316                 set_irn_link(block, node);
317         } else if (is_Block(node)) {
318                 /* fill the Proj -> Block map */
319                 for (i = get_Block_n_cfgpreds(node) - 1; i >= 0; --i) {
320                         ir_node *pred = get_Block_cfgpred(node, i);
321
322                         if (is_Proj(pred))
323                                 pmap_insert(lenv->proj_2_block, pred, node);
324                 }  /* for */
325         }  /* if */
326 }  /* prepare_links */
327
328 /**
329  * Translate a Constant: create two.
330  */
331 static void lower_Const(ir_node *node, ir_mode *mode, lower_env_t *env) {
332         tarval   *tv, *tv_l, *tv_h;
333         ir_node  *low, *high;
334         dbg_info *dbg = get_irn_dbg_info(node);
335         ir_node  *block = get_nodes_block(node);
336         int      idx;
337         ir_graph *irg = current_ir_graph;
338         ir_mode  *low_mode = env->params->low_unsigned;
339
340         tv   = get_Const_tarval(node);
341
342         tv_l = tarval_convert_to(tv, low_mode);
343         low  = new_rd_Const(dbg, irg, block, low_mode, tv_l);
344
345         tv_h = tarval_convert_to(tarval_shrs(tv, env->tv_mode_bits), mode);
346         high = new_rd_Const(dbg, irg, block, mode, tv_h);
347
348         idx = get_irn_idx(node);
349         assert(idx < env->n_entries);
350         env->entries[idx]->low_word  = low;
351         env->entries[idx]->high_word = high;
352 }  /* lower_Const */
353
354 /**
355  * Translate a Load: create two.
356  */
357 static void lower_Load(ir_node *node, ir_mode *mode, lower_env_t *env) {
358         ir_mode  *low_mode = env->params->low_unsigned;
359         ir_graph *irg = current_ir_graph;
360         ir_node  *adr = get_Load_ptr(node);
361         ir_node  *mem = get_Load_mem(node);
362         ir_node  *low, *high, *proj;
363         dbg_info *dbg;
364         ir_node  *block = get_nodes_block(node);
365         int      idx;
366
367         if (env->params->little_endian) {
368                 low  = adr;
369                 high = new_r_Add(irg, block, adr,
370                         new_r_Const(irg, block, get_tarval_mode(env->tv_mode_bytes), env->tv_mode_bytes),
371                         get_irn_mode(adr));
372         } else {
373                 low  = new_r_Add(irg, block, adr,
374                         new_r_Const(irg, block, get_tarval_mode(env->tv_mode_bytes), env->tv_mode_bytes),
375                         get_irn_mode(adr));
376                 high = adr;
377         }  /* if */
378
379         /* create two loads */
380         dbg  = get_irn_dbg_info(node);
381         low  = new_rd_Load(dbg, irg, block, mem,  low,  low_mode);
382         proj = new_r_Proj(irg, block, low, mode_M, pn_Load_M);
383         high = new_rd_Load(dbg, irg, block, proj, high, mode);
384
385         set_Load_volatility(low,  get_Load_volatility(node));
386         set_Load_volatility(high, get_Load_volatility(node));
387
388         idx = get_irn_idx(node);
389         assert(idx < env->n_entries);
390         env->entries[idx]->low_word  = low;
391         env->entries[idx]->high_word = high;
392
393         for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
394                 idx = get_irn_idx(proj);
395
396                 switch (get_Proj_proj(proj)) {
397                 case pn_Load_M:         /* Memory result. */
398                         /* put it to the second one */
399                         set_Proj_pred(proj, high);
400                         break;
401                 case pn_Load_X_except:  /* Execution result if exception occurred. */
402                         /* put it to the first one */
403                         set_Proj_pred(proj, low);
404                         break;
405                 case pn_Load_res:       /* Result of load operation. */
406                         assert(idx < env->n_entries);
407                         env->entries[idx]->low_word  = new_r_Proj(irg, block, low,  low_mode, pn_Load_res);
408                         env->entries[idx]->high_word = new_r_Proj(irg, block, high, mode,     pn_Load_res);
409                         break;
410                 default:
411                         assert(0 && "unexpected Proj number");
412                 }  /* switch */
413                 /* mark this proj: we have handled it already, otherwise we might fall into
414                  * out new nodes. */
415                 mark_irn_visited(proj);
416         }  /* for */
417 }  /* lower_Load */
418
419 /**
420  * Translate a Store: create two.
421  */
422 static void lower_Store(ir_node *node, ir_mode *mode, lower_env_t *env) {
423         ir_graph *irg;
424         ir_node  *block, *adr, *mem;
425         ir_node  *low, *high, *irn, *proj;
426         dbg_info *dbg;
427         int      idx;
428         node_entry_t *entry;
429         (void) node;
430         (void) mode;
431
432         irn = get_Store_value(node);
433         entry = env->entries[get_irn_idx(irn)];
434         assert(entry);
435
436         if (! entry->low_word) {
437                 /* not ready yet, wait */
438                 pdeq_putr(env->waitq, node);
439                 return;
440         }  /* if */
441
442         irg = current_ir_graph;
443         adr = get_Store_ptr(node);
444         mem = get_Store_mem(node);
445         block = get_nodes_block(node);
446
447         if (env->params->little_endian) {
448                 low  = adr;
449                 high = new_r_Add(irg, block, adr,
450                         new_r_Const(irg, block, get_tarval_mode(env->tv_mode_bytes), env->tv_mode_bytes),
451                         get_irn_mode(adr));
452         } else {
453                 low  = new_r_Add(irg, block, adr,
454                         new_r_Const(irg, block, get_tarval_mode(env->tv_mode_bytes), env->tv_mode_bytes),
455                         get_irn_mode(adr));
456                 high = adr;
457         }  /* if */
458
459         /* create two Stores */
460         dbg = get_irn_dbg_info(node);
461         low  = new_rd_Store(dbg, irg, block, mem, low,  entry->low_word);
462         proj = new_r_Proj(irg, block, low, mode_M, pn_Store_M);
463         high = new_rd_Store(dbg, irg, block, proj, high, entry->high_word);
464
465         set_Store_volatility(low,  get_Store_volatility(node));
466         set_Store_volatility(high, get_Store_volatility(node));
467
468         idx = get_irn_idx(node);
469         assert(idx < env->n_entries);
470         env->entries[idx]->low_word  = low;
471         env->entries[idx]->high_word = high;
472
473         for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
474                 idx = get_irn_idx(proj);
475
476                 switch (get_Proj_proj(proj)) {
477                 case pn_Store_M:         /* Memory result. */
478                         /* put it to the second one */
479                         set_Proj_pred(proj, high);
480                         break;
481                 case pn_Store_X_except:  /* Execution result if exception occurred. */
482                         /* put it to the first one */
483                         set_Proj_pred(proj, low);
484                         break;
485                 default:
486                         assert(0 && "unexpected Proj number");
487                 }  /* switch */
488                 /* mark this proj: we have handled it already, otherwise we might fall into
489                  * out new nodes. */
490                 mark_irn_visited(proj);
491         }  /* for */
492 }  /* lower_Store */
493
494 /**
495  * Return a node containing the address of the intrinsic emulation function.
496  *
497  * @param method  the method type of the emulation function
498  * @param op      the emulated ir_op
499  * @param imode   the input mode of the emulated opcode
500  * @param omode   the output mode of the emulated opcode
501  * @param block   where the new mode is created
502  * @param env     the lower environment
503  */
504 static ir_node *get_intrinsic_address(ir_type *method, ir_op *op,
505                                       ir_mode *imode, ir_mode *omode,
506                                       ir_node *block, lower_env_t *env) {
507         symconst_symbol sym;
508         ir_entity *ent;
509         op_mode_entry_t key, *entry;
510
511         key.op    = op;
512         key.imode = imode;
513         key.omode = omode;
514         key.ent   = NULL;
515
516         entry = set_insert(intrinsic_fkt, &key, sizeof(key),
517                                 HASH_PTR(op) ^ HASH_PTR(imode) ^ (HASH_PTR(omode) << 8));
518         if (! entry->ent) {
519                 /* create a new one */
520                 ent = env->params->create_intrinsic(method, op, imode, omode, env->params->ctx);
521
522                 assert(ent && "Intrinsic creator must return an entity");
523                 entry->ent = ent;
524         } else {
525                 ent = entry->ent;
526         }  /* if */
527         sym.entity_p = ent;
528         return new_r_SymConst(current_ir_graph, block, mode_P_code, sym, symconst_addr_ent);
529 }  /* get_intrinsic_address */
530
531 /**
532  * Translate a Div.
533  *
534  * Create an intrinsic Call.
535  */
536 static void lower_Div(ir_node *node, ir_mode *mode, lower_env_t *env) {
537         ir_node  *block, *irn, *call, *proj;
538         ir_node  *in[4];
539         ir_mode  *opmode;
540         dbg_info *dbg;
541         ir_type  *mtp;
542         int      idx;
543         ir_graph *irg;
544         node_entry_t *entry;
545
546         irn   = get_Div_left(node);
547         entry = env->entries[get_irn_idx(irn)];
548         assert(entry);
549
550         if (! entry->low_word) {
551                 /* not ready yet, wait */
552                 pdeq_putr(env->waitq, node);
553                 return;
554         }  /* if */
555
556         in[0] = entry->low_word;
557         in[1] = entry->high_word;
558
559         irn   = get_Div_right(node);
560         entry = env->entries[get_irn_idx(irn)];
561         assert(entry);
562
563         if (! entry->low_word) {
564                 /* not ready yet, wait */
565                 pdeq_putr(env->waitq, node);
566                 return;
567         }  /* if */
568
569         in[2] = entry->low_word;
570         in[3] = entry->high_word;
571
572         dbg   = get_irn_dbg_info(node);
573         block = get_nodes_block(node);
574         irg   = current_ir_graph;
575
576         mtp = mode_is_signed(mode) ? binop_tp_s : binop_tp_u;
577         opmode = get_irn_op_mode(node);
578         irn = get_intrinsic_address(mtp, get_irn_op(node), opmode, opmode, block, env);
579         call = new_rd_Call(dbg, irg, block, get_Div_mem(node),
580                 irn, 4, in, mtp);
581         set_irn_pinned(call, get_irn_pinned(node));
582         irn = new_r_Proj(irg, block, call, mode_T, pn_Call_T_result);
583
584         for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
585                 switch (get_Proj_proj(proj)) {
586                 case pn_Div_M:         /* Memory result. */
587                         /* reroute to the call */
588                         set_Proj_pred(proj, call);
589                         set_Proj_proj(proj, pn_Call_M_except);
590                         break;
591                 case pn_Div_X_except:  /* Execution result if exception occurred. */
592                         /* reroute to the call */
593                         set_Proj_pred(proj, call);
594                         set_Proj_proj(proj, pn_Call_X_except);
595                         break;
596                 case pn_Div_res:       /* Result of computation. */
597                         idx = get_irn_idx(proj);
598                         assert(idx < env->n_entries);
599                         env->entries[idx]->low_word  = new_r_Proj(current_ir_graph, block, irn, env->params->low_unsigned, 0);
600                         env->entries[idx]->high_word = new_r_Proj(current_ir_graph, block, irn, mode,                      1);
601                         break;
602                 default:
603                         assert(0 && "unexpected Proj number");
604                 }  /* switch */
605                 /* mark this proj: we have handled it already, otherwise we might fall into
606                  * out new nodes. */
607                 mark_irn_visited(proj);
608         }  /* for */
609 }  /* lower_Div */
610
611 /**
612  * Translate a Mod.
613  *
614  * Create an intrinsic Call.
615  */
616 static void lower_Mod(ir_node *node, ir_mode *mode, lower_env_t *env) {
617         ir_node  *block, *proj, *irn, *call;
618         ir_node  *in[4];
619         ir_mode  *opmode;
620         dbg_info *dbg;
621         ir_type  *mtp;
622         int      idx;
623         ir_graph *irg;
624         node_entry_t *entry;
625
626         irn   = get_Mod_left(node);
627         entry = env->entries[get_irn_idx(irn)];
628         assert(entry);
629
630         if (! entry->low_word) {
631                 /* not ready yet, wait */
632                 pdeq_putr(env->waitq, node);
633                 return;
634         }  /* if */
635
636         in[0] = entry->low_word;
637         in[1] = entry->high_word;
638
639         irn   = get_Mod_right(node);
640         entry = env->entries[get_irn_idx(irn)];
641         assert(entry);
642
643         if (! entry->low_word) {
644                 /* not ready yet, wait */
645                 pdeq_putr(env->waitq, node);
646                 return;
647         }  /* if */
648
649         in[2] = entry->low_word;
650         in[3] = entry->high_word;
651
652         dbg   = get_irn_dbg_info(node);
653         block = get_nodes_block(node);
654         irg   = current_ir_graph;
655
656         mtp = mode_is_signed(mode) ? binop_tp_s : binop_tp_u;
657         opmode = get_irn_op_mode(node);
658         irn = get_intrinsic_address(mtp, get_irn_op(node), opmode, opmode, block, env);
659         call = new_rd_Call(dbg, irg, block, get_Mod_mem(node),
660                 irn, 4, in, mtp);
661         set_irn_pinned(call, get_irn_pinned(node));
662         irn = new_r_Proj(irg, block, call, mode_T, pn_Call_T_result);
663
664         for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
665                 switch (get_Proj_proj(proj)) {
666                 case pn_Mod_M:         /* Memory result. */
667                         /* reroute to the call */
668                         set_Proj_pred(proj, call);
669                         set_Proj_proj(proj, pn_Call_M_except);
670                         break;
671                 case pn_Mod_X_except:  /* Execution result if exception occurred. */
672                         /* reroute to the call */
673                         set_Proj_pred(proj, call);
674                         set_Proj_proj(proj, pn_Call_X_except);
675                         break;
676                 case pn_Mod_res:       /* Result of computation. */
677                         idx = get_irn_idx(proj);
678                         assert(idx < env->n_entries);
679                         env->entries[idx]->low_word  = new_r_Proj(irg, block, irn, env->params->low_unsigned, 0);
680                         env->entries[idx]->high_word = new_r_Proj(irg, block, irn, mode,                      1);
681                         break;
682                 default:
683                         assert(0 && "unexpected Proj number");
684                 }  /* switch */
685                 /* mark this proj: we have handled it already, otherwise we might fall into
686                  * out new nodes. */
687                 mark_irn_visited(proj);
688         }  /* for */
689 }  /* lower_Mod */
690
691 /**
692  * Translate a DivMod.
693  *
694  * Create two intrinsic Calls.
695  */
696 static void lower_DivMod(ir_node *node, ir_mode *mode, lower_env_t *env) {
697         ir_node  *block, *proj, *irn, *mem, *callDiv, *callMod;
698         ir_node  *resDiv = NULL;
699         ir_node  *resMod = NULL;
700         ir_node  *in[4];
701         ir_mode  *opmode;
702         dbg_info *dbg;
703         ir_type  *mtp;
704         int      idx;
705         node_entry_t *entry;
706         unsigned flags = 0;
707         ir_graph *irg;
708
709         /* check if both results are needed */
710         for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
711                 switch (get_Proj_proj(proj)) {
712                 case pn_DivMod_res_div: flags |= 1; break;
713                 case pn_DivMod_res_mod: flags |= 2; break;
714                 default: break;
715                 }  /* switch */
716         }  /* for */
717
718         irn   = get_DivMod_left(node);
719         entry = env->entries[get_irn_idx(irn)];
720         assert(entry);
721
722         if (! entry->low_word) {
723                 /* not ready yet, wait */
724                 pdeq_putr(env->waitq, node);
725                 return;
726         }  /* if */
727
728         in[0] = entry->low_word;
729         in[1] = entry->high_word;
730
731         irn   = get_DivMod_right(node);
732         entry = env->entries[get_irn_idx(irn)];
733         assert(entry);
734
735         if (! entry->low_word) {
736                 /* not ready yet, wait */
737                 pdeq_putr(env->waitq, node);
738                 return;
739         }  /* if */
740
741         in[2] = entry->low_word;
742         in[3] = entry->high_word;
743
744         dbg   = get_irn_dbg_info(node);
745         block = get_nodes_block(node);
746         irg   = current_ir_graph;
747
748         mem = get_DivMod_mem(node);
749
750         callDiv = callMod = NULL;
751         mtp = mode_is_signed(mode) ? binop_tp_s : binop_tp_u;
752         if (flags & 1) {
753                 opmode = get_irn_op_mode(node);
754                 irn = get_intrinsic_address(mtp, op_Div, opmode, opmode, block, env);
755                 callDiv = new_rd_Call(dbg, irg, block, mem,
756                         irn, 4, in, mtp);
757                 set_irn_pinned(callDiv, get_irn_pinned(node));
758                 resDiv = new_r_Proj(irg, block, callDiv, mode_T, pn_Call_T_result);
759         }  /* if */
760         if (flags & 2) {
761                 if (flags & 1)
762                         mem = new_r_Proj(irg, block, callDiv, mode_M, pn_Call_M);
763                 opmode = get_irn_op_mode(node);
764                 irn = get_intrinsic_address(mtp, op_Mod, opmode, opmode, block, env);
765                 callMod = new_rd_Call(dbg, irg, block, mem,
766                         irn, 4, in, mtp);
767                 set_irn_pinned(callMod, get_irn_pinned(node));
768                 resMod = new_r_Proj(irg, block, callMod, mode_T, pn_Call_T_result);
769         }  /* if */
770
771         for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
772                 switch (get_Proj_proj(proj)) {
773                 case pn_DivMod_M:         /* Memory result. */
774                         /* reroute to the first call */
775                         set_Proj_pred(proj, callDiv ? callDiv : (callMod ? callMod : mem));
776                         set_Proj_proj(proj, pn_Call_M_except);
777                         break;
778                 case pn_DivMod_X_except:  /* Execution result if exception occurred. */
779                         /* reroute to the first call */
780                         set_Proj_pred(proj, callDiv ? callDiv : (callMod ? callMod : mem));
781                         set_Proj_proj(proj, pn_Call_X_except);
782                         break;
783                 case pn_DivMod_res_div:   /* Result of Div. */
784                         idx = get_irn_idx(proj);
785                         assert(idx < env->n_entries);
786                         env->entries[idx]->low_word  = new_r_Proj(irg, block, resDiv, env->params->low_unsigned, 0);
787                         env->entries[idx]->high_word = new_r_Proj(irg, block, resDiv, mode,                      1);
788                         break;
789                 case pn_DivMod_res_mod:   /* Result of Mod. */
790                         idx = get_irn_idx(proj);
791                         env->entries[idx]->low_word  = new_r_Proj(irg, block, resMod, env->params->low_unsigned, 0);
792                         env->entries[idx]->high_word = new_r_Proj(irg, block, resMod, mode,                      1);
793                         break;
794                 default:
795                         assert(0 && "unexpected Proj number");
796                 }  /* switch */
797                 /* mark this proj: we have handled it already, otherwise we might fall into
798                  * out new nodes. */
799                 mark_irn_visited(proj);
800         }  /* for */
801 }  /* lower_DivMod */
802
803 /**
804  * Translate a Binop.
805  *
806  * Create an intrinsic Call.
807  */
808 static void lower_Binop(ir_node *node, ir_mode *mode, lower_env_t *env) {
809         ir_node  *block, *irn;
810         ir_node  *in[4];
811         dbg_info *dbg;
812         ir_type  *mtp;
813         int      idx;
814         ir_graph *irg;
815         node_entry_t *entry;
816
817         irn   = get_binop_left(node);
818         entry = env->entries[get_irn_idx(irn)];
819         assert(entry);
820
821         if (! entry->low_word) {
822                 /* not ready yet, wait */
823                 pdeq_putr(env->waitq, node);
824                 return;
825         }  /* if */
826
827         in[0] = entry->low_word;
828         in[1] = entry->high_word;
829
830         irn   = get_binop_right(node);
831         entry = env->entries[get_irn_idx(irn)];
832         assert(entry);
833
834         if (! entry->low_word) {
835                 /* not ready yet, wait */
836                 pdeq_putr(env->waitq, node);
837                 return;
838         }  /* if */
839
840         in[2] = entry->low_word;
841         in[3] = entry->high_word;
842
843         dbg   = get_irn_dbg_info(node);
844         block = get_nodes_block(node);
845         irg   = current_ir_graph;
846
847         mtp = mode_is_signed(mode) ? binop_tp_s : binop_tp_u;
848         irn = get_intrinsic_address(mtp, get_irn_op(node), mode, mode, block, env);
849         irn = new_rd_Call(dbg, irg, block, get_irg_no_mem(current_ir_graph),
850                 irn, 4, in, mtp);
851         set_irn_pinned(irn, get_irn_pinned(node));
852         irn = new_r_Proj(irg, block, irn, mode_T, pn_Call_T_result);
853
854         idx = get_irn_idx(node);
855         assert(idx < env->n_entries);
856         env->entries[idx]->low_word  = new_r_Proj(irg, block, irn, env->params->low_unsigned, 0);
857         env->entries[idx]->high_word = new_r_Proj(irg, block, irn, mode,                      1);
858 }  /* lower_Binop */
859
860 /**
861  * Translate a Shiftop.
862  *
863  * Create an intrinsic Call.
864  */
865 static void lower_Shiftop(ir_node *node, ir_mode *mode, lower_env_t *env) {
866         ir_node  *block, *irn;
867         ir_node  *in[3];
868         dbg_info *dbg;
869         ir_type  *mtp;
870         int      idx;
871         ir_graph *irg;
872         node_entry_t *entry;
873
874         irn   = get_binop_left(node);
875         entry = env->entries[get_irn_idx(irn)];
876         assert(entry);
877
878         if (! entry->low_word) {
879                 /* not ready yet, wait */
880                 pdeq_putr(env->waitq, node);
881                 return;
882         }  /* if */
883
884         in[0] = entry->low_word;
885         in[1] = entry->high_word;
886
887         /* The shift count is always mode_Iu in firm, so there is no need for lowering */
888         in[2] = get_binop_right(node);
889
890         dbg   = get_irn_dbg_info(node);
891         block = get_nodes_block(node);
892         irg  = current_ir_graph;
893
894         mtp = mode_is_signed(mode) ? shiftop_tp_s : shiftop_tp_u;
895         irn = get_intrinsic_address(mtp, get_irn_op(node), mode, mode, block, env);
896         irn = new_rd_Call(dbg, irg, block, get_irg_no_mem(current_ir_graph),
897                 irn, 3, in, mtp);
898         set_irn_pinned(irn, get_irn_pinned(node));
899         irn = new_r_Proj(irg, block, irn, mode_T, pn_Call_T_result);
900
901         idx = get_irn_idx(node);
902         assert(idx < env->n_entries);
903         env->entries[idx]->low_word  = new_r_Proj(irg, block, irn, env->params->low_unsigned, 0);
904         env->entries[idx]->high_word = new_r_Proj(irg, block, irn, mode,                      1);
905 }  /* lower_Shiftop */
906
907 /**
908  * Translate a Shr and handle special cases.
909  */
910 static void lower_Shr(ir_node *node, ir_mode *mode, lower_env_t *env) {
911         ir_node  *right = get_Shr_right(node);
912         ir_graph *irg = current_ir_graph;
913
914         if (get_mode_arithmetic(mode) == irma_twos_complement && is_Const(right)) {
915                 tarval *tv = get_Const_tarval(right);
916
917                 if (tarval_is_long(tv) &&
918                     get_tarval_long(tv) >= (long)get_mode_size_bits(mode)) {
919                         ir_node *block = get_nodes_block(node);
920                         ir_node *left = get_Shr_left(node);
921                         ir_node *c;
922                         long shf_cnt = get_tarval_long(tv) - get_mode_size_bits(mode);
923                         int idx = get_irn_idx(left);
924
925                         left = env->entries[idx]->high_word;
926                         idx = get_irn_idx(node);
927
928                         if (shf_cnt > 0) {
929                                 c = new_r_Const_long(irg, block, mode_Iu, shf_cnt);
930                                 env->entries[idx]->low_word = new_r_Shr(irg, block, left, c, mode);
931                         } else {
932                                 env->entries[idx]->low_word = left;
933                         }  /* if */
934                         env->entries[idx]->high_word = new_r_Const(irg, block, mode, get_mode_null(mode));
935
936                         return;
937                 }  /* if */
938         }  /* if */
939         lower_Shiftop(node, mode, env);
940 }  /* lower_Shr */
941
942 /**
943  * Translate a Shl and handle special cases.
944  */
945 static void lower_Shl(ir_node *node, ir_mode *mode, lower_env_t *env) {
946         ir_node  *right = get_Shl_right(node);
947         ir_graph *irg = current_ir_graph;
948
949         if (get_mode_arithmetic(mode) == irma_twos_complement && is_Const(right)) {
950                 tarval *tv = get_Const_tarval(right);
951
952                 if (tarval_is_long(tv) &&
953                     get_tarval_long(tv) >= (long)get_mode_size_bits(mode)) {
954                         ir_mode *mode_l;
955                         ir_node *block = get_nodes_block(node);
956                         ir_node *left = get_Shl_left(node);
957                         ir_node *c;
958                         long shf_cnt = get_tarval_long(tv) - get_mode_size_bits(mode);
959                         int idx = get_irn_idx(left);
960
961                         left = new_r_Conv(irg, block, env->entries[idx]->low_word, mode);
962                         idx = get_irn_idx(node);
963
964                         if (shf_cnt > 0) {
965                                 c = new_r_Const_long(irg, block, mode_Iu, shf_cnt);
966                                 env->entries[idx]->high_word = new_r_Shl(irg, block, left, c, mode);
967                         } else {
968                                 env->entries[idx]->high_word = left;
969                         }  /* if */
970                         mode_l = env->params->low_unsigned;
971                         env->entries[idx]->low_word  = new_r_Const(irg, block, mode_l, get_mode_null(mode_l));
972
973                         return;
974                 }  /* if */
975         }  /* if */
976         lower_Shiftop(node, mode, env);
977 }  /* lower_Shl */
978
979 /**
980  * Translate a Shrs and handle special cases.
981  */
982 static void lower_Shrs(ir_node *node, ir_mode *mode, lower_env_t *env) {
983         ir_node  *right = get_Shrs_right(node);
984         ir_graph *irg = current_ir_graph;
985
986         if (get_mode_arithmetic(mode) == irma_twos_complement && is_Const(right)) {
987                 tarval *tv = get_Const_tarval(right);
988
989                 if (tarval_is_long(tv) &&
990                     get_tarval_long(tv) >= (long)get_mode_size_bits(mode)) {
991                         ir_node *block = get_nodes_block(node);
992                         ir_node *left = get_Shrs_left(node);
993                         long shf_cnt = get_tarval_long(tv) - get_mode_size_bits(mode);
994                         ir_node *c;
995                         int idx = get_irn_idx(left);
996
997                         left = env->entries[idx]->high_word;
998                         idx = get_irn_idx(node);
999
1000                         if (shf_cnt > 0) {
1001                                 ir_node *tmp;
1002                                 c = new_r_Const_long(irg, block, mode_Iu, shf_cnt);
1003                                 tmp = new_r_Shrs(irg, block, left, c, mode);
1004                                 /* low word is expected to have mode_Iu */
1005                                 env->entries[idx]->low_word = new_r_Conv(irg, block, tmp, mode_Iu);
1006                         } else {
1007                                 env->entries[idx]->low_word = left;
1008                         }  /* if */
1009                         c = new_r_Const_long(irg, block, mode_Iu, get_mode_size_bits(mode) - 1);
1010                         env->entries[idx]->high_word = new_r_Shrs(irg, block, left, c, mode);
1011
1012                         return;
1013                 }  /* if */
1014         }  /* if */
1015         lower_Shiftop(node, mode, env);
1016 }  /* lower_Shrs */
1017
1018 /**
1019  * Translate a Rotl and handle special cases.
1020  */
1021 static void lower_Rotl(ir_node *node, ir_mode *mode, lower_env_t *env) {
1022         ir_node  *right = get_Rotl_right(node);
1023
1024         if (get_mode_arithmetic(mode) == irma_twos_complement && is_Const(right)) {
1025                 tarval *tv = get_Const_tarval(right);
1026
1027                 if (tarval_is_long(tv) &&
1028                     get_tarval_long(tv) == (long)get_mode_size_bits(mode)) {
1029                         ir_node *left = get_Rotl_left(node);
1030                         ir_node *h, *l;
1031                         int idx = get_irn_idx(left);
1032
1033                         l = env->entries[idx]->low_word;
1034                         h = env->entries[idx]->high_word;
1035                         idx = get_irn_idx(node);
1036
1037                         env->entries[idx]->low_word  = h;
1038                         env->entries[idx]->high_word = l;
1039
1040                         return;
1041                 }  /* if */
1042         }  /* if */
1043         lower_Shiftop(node, mode, env);
1044 }  /* lower_Rot */
1045
1046 /**
1047  * Translate an Unop.
1048  *
1049  * Create an intrinsic Call.
1050  */
1051 static void lower_Unop(ir_node *node, ir_mode *mode, lower_env_t *env) {
1052         ir_node  *block, *irn;
1053         ir_node  *in[2];
1054         dbg_info *dbg;
1055         ir_type  *mtp;
1056         int      idx;
1057         ir_graph *irg;
1058         node_entry_t *entry;
1059
1060         irn   = get_unop_op(node);
1061         entry = env->entries[get_irn_idx(irn)];
1062         assert(entry);
1063
1064         if (! entry->low_word) {
1065                 /* not ready yet, wait */
1066                 pdeq_putr(env->waitq, node);
1067                 return;
1068         }  /* if */
1069
1070         in[0] = entry->low_word;
1071         in[1] = entry->high_word;
1072
1073         dbg   = get_irn_dbg_info(node);
1074         block = get_nodes_block(node);
1075         irg   = current_ir_graph;
1076
1077         mtp = mode_is_signed(mode) ? unop_tp_s : unop_tp_u;
1078         irn = get_intrinsic_address(mtp, get_irn_op(node), mode, mode, block, env);
1079         irn = new_rd_Call(dbg, irg, block, get_irg_no_mem(current_ir_graph),
1080                 irn, 2, in, mtp);
1081         set_irn_pinned(irn, get_irn_pinned(node));
1082         irn = new_r_Proj(irg, block, irn, mode_T, pn_Call_T_result);
1083
1084         idx = get_irn_idx(node);
1085         assert(idx < env->n_entries);
1086         env->entries[idx]->low_word  = new_r_Proj(irg, block, irn, env->params->low_unsigned, 0);
1087         env->entries[idx]->high_word = new_r_Proj(irg, block, irn, mode,                      1);
1088 }  /* lower_Unop */
1089
1090 /**
1091  * Translate a logical Binop.
1092  *
1093  * Create two logical Binops.
1094  */
1095 static void lower_Binop_logical(ir_node *node, ir_mode *mode, lower_env_t *env,
1096                                                                 ir_node *(*constr_rd)(dbg_info *db, ir_graph *irg, ir_node *block, ir_node *op1, ir_node *op2, ir_mode *mode) ) {
1097         ir_node  *block, *irn;
1098         ir_node  *lop_l, *lop_h, *rop_l, *rop_h;
1099         dbg_info *dbg;
1100         int      idx;
1101         ir_graph *irg;
1102         node_entry_t *entry;
1103
1104         irn   = get_binop_left(node);
1105         entry = env->entries[get_irn_idx(irn)];
1106         assert(entry);
1107
1108         if (! entry->low_word) {
1109                 /* not ready yet, wait */
1110                 pdeq_putr(env->waitq, node);
1111                 return;
1112         }  /* if */
1113
1114         lop_l = entry->low_word;
1115         lop_h = entry->high_word;
1116
1117         irn   = get_binop_right(node);
1118         entry = env->entries[get_irn_idx(irn)];
1119         assert(entry);
1120
1121         if (! entry->low_word) {
1122                 /* not ready yet, wait */
1123                 pdeq_putr(env->waitq, node);
1124                 return;
1125         }  /* if */
1126
1127         rop_l = entry->low_word;
1128         rop_h = entry->high_word;
1129
1130         dbg = get_irn_dbg_info(node);
1131         block = get_nodes_block(node);
1132
1133         idx = get_irn_idx(node);
1134         assert(idx < env->n_entries);
1135         irg = current_ir_graph;
1136         env->entries[idx]->low_word  = constr_rd(dbg, irg, block, lop_l, rop_l, env->params->low_unsigned);
1137         env->entries[idx]->high_word = constr_rd(dbg, irg, block, lop_h, rop_h, mode);
1138 }  /* lower_Binop_logical */
1139
1140 /** create a logical operation transformation */
1141 #define lower_logical(op)                                                \
1142 static void lower_##op(ir_node *node, ir_mode *mode, lower_env_t *env) { \
1143         lower_Binop_logical(node, mode, env, new_rd_##op);                   \
1144 }
1145
1146 lower_logical(And)
1147 lower_logical(Or)
1148 lower_logical(Eor)
1149
1150 /**
1151  * Translate a Not.
1152  *
1153  * Create two logical Nots.
1154  */
1155 static void lower_Not(ir_node *node, ir_mode *mode, lower_env_t *env) {
1156         ir_node  *block, *irn;
1157         ir_node  *op_l, *op_h;
1158         dbg_info *dbg;
1159         int      idx;
1160         ir_graph *irg;
1161         node_entry_t *entry;
1162
1163         irn   = get_Not_op(node);
1164         entry = env->entries[get_irn_idx(irn)];
1165         assert(entry);
1166
1167         if (! entry->low_word) {
1168                 /* not ready yet, wait */
1169                 pdeq_putr(env->waitq, node);
1170                 return;
1171         }  /* if */
1172
1173         op_l = entry->low_word;
1174         op_h = entry->high_word;
1175
1176         dbg   = get_irn_dbg_info(node);
1177         block = get_nodes_block(node);
1178         irg   = current_ir_graph;
1179
1180         idx = get_irn_idx(node);
1181         assert(idx < env->n_entries);
1182         env->entries[idx]->low_word  = new_rd_Not(dbg, current_ir_graph, block, op_l, env->params->low_unsigned);
1183         env->entries[idx]->high_word = new_rd_Not(dbg, current_ir_graph, block, op_h, mode);
1184 }  /* lower_Not */
1185
1186 /**
1187  * Translate a Cond.
1188  */
1189 static void lower_Cond(ir_node *node, ir_mode *mode, lower_env_t *env) {
1190         ir_node *cmp, *left, *right, *block;
1191         ir_node *sel = get_Cond_selector(node);
1192         ir_mode *m = get_irn_mode(sel);
1193         int     idx;
1194         (void) mode;
1195
1196         if (m == mode_b) {
1197                 node_entry_t *lentry, *rentry;
1198                 ir_node  *proj, *projT = NULL, *projF = NULL;
1199                 ir_node  *new_bl, *cmpH, *cmpL, *irn;
1200                 ir_node  *projHF, *projHT;
1201                 ir_node  *dst_blk;
1202                 ir_graph *irg;
1203                 pn_Cmp   pnc;
1204                 dbg_info *dbg;
1205
1206                 if(!is_Proj(sel))
1207                         return;
1208
1209                 cmp   = get_Proj_pred(sel);
1210                 if(!is_Cmp(cmp))
1211                         return;
1212
1213                 left  = get_Cmp_left(cmp);
1214                 idx   = get_irn_idx(left);
1215                 lentry = env->entries[idx];
1216
1217                 if (! lentry) {
1218                         /* a normal Cmp */
1219                         return;
1220                 }  /* if */
1221
1222                 right = get_Cmp_right(cmp);
1223                 idx   = get_irn_idx(right);
1224                 rentry = env->entries[idx];
1225                 assert(rentry);
1226
1227                 if (! lentry->low_word || !rentry->low_word) {
1228                         /* not yet ready */
1229                         pdeq_putr(env->waitq, node);
1230                         return;
1231                 }  /* if */
1232
1233                 /* all right, build the code */
1234                 for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
1235                         long proj_nr = get_Proj_proj(proj);
1236
1237                         if (proj_nr == pn_Cond_true) {
1238                                 assert(projT == NULL && "more than one Proj(true)");
1239                                 projT = proj;
1240                         } else {
1241                                 assert(proj_nr == pn_Cond_false);
1242                                 assert(projF == NULL && "more than one Proj(false)");
1243                                 projF = proj;
1244                         }  /* if */
1245                         mark_irn_visited(proj);
1246                 }  /* for */
1247                 assert(projT && projF);
1248
1249                 /* create a new high compare */
1250                 block = get_nodes_block(node);
1251                 dbg   = get_irn_dbg_info(cmp);
1252                 irg   = current_ir_graph;
1253                 pnc   = get_Proj_proj(sel);
1254
1255                 if (is_Const(right) && is_Const_null(right)) {
1256                         if (pnc == pn_Cmp_Eq || pnc == pn_Cmp_Lg) {
1257                                 /* x ==/!= 0 ==> or(low,high) ==/!= 0 */
1258                                 ir_mode *mode = env->params->low_unsigned;
1259                                 ir_node *low  = new_r_Conv(irg, block, lentry->low_word, mode);
1260                                 ir_node *high = new_r_Conv(irg, block, lentry->high_word, mode);
1261                                 ir_node *or   = new_rd_Or(dbg, irg, block, low, high, mode);
1262                                 ir_node *cmp  = new_rd_Cmp(dbg, irg, block, or, new_Const_long(mode, 0));
1263
1264                                 ir_node *proj = new_r_Proj(irg, block, cmp, mode_b, pnc);
1265                                 set_Cond_selector(node, proj);
1266                                 return;
1267                         }
1268                 }
1269
1270                 cmpH = new_rd_Cmp(dbg, irg, block, lentry->high_word, rentry->high_word);
1271
1272                 if (pnc == pn_Cmp_Eq) {
1273                         /* simple case:a == b <==> a_h == b_h && a_l == b_l */
1274                         pmap_entry *entry = pmap_find(env->proj_2_block, projF);
1275
1276                         assert(entry);
1277                         dst_blk = entry->value;
1278
1279                         irn = new_r_Proj(irg, block, cmpH, mode_b, pn_Cmp_Eq);
1280                         dbg = get_irn_dbg_info(node);
1281                         irn = new_rd_Cond(dbg, irg, block, irn);
1282
1283                         projHF = new_r_Proj(irg, block, irn, mode_X, pn_Cond_false);
1284                         mark_irn_visited(projHF);
1285                         exchange(projF, projHF);
1286
1287                         projHT = new_r_Proj(irg, block, irn, mode_X, pn_Cond_true);
1288                         mark_irn_visited(projHT);
1289
1290                         new_bl = new_r_Block(irg, 1, &projHT);
1291
1292                         dbg   = get_irn_dbg_info(cmp);
1293                         cmpL = new_rd_Cmp(dbg, irg, new_bl, lentry->low_word, rentry->low_word);
1294                         irn = new_r_Proj(irg, new_bl, cmpL, mode_b, pn_Cmp_Eq);
1295                         dbg = get_irn_dbg_info(node);
1296                         irn = new_rd_Cond(dbg, irg, new_bl, irn);
1297
1298                         proj = new_r_Proj(irg, new_bl, irn, mode_X, pn_Cond_false);
1299                         mark_irn_visited(proj);
1300                         add_block_cf_input(dst_blk, projHF, proj);
1301
1302                         proj = new_r_Proj(irg, new_bl, irn, mode_X, pn_Cond_true);
1303                         mark_irn_visited(proj);
1304                         exchange(projT, proj);
1305                 } else if (pnc == pn_Cmp_Lg) {
1306                         /* simple case:a != b <==> a_h != b_h || a_l != b_l */
1307                         pmap_entry *entry = pmap_find(env->proj_2_block, projT);
1308
1309                         assert(entry);
1310                         dst_blk = entry->value;
1311
1312                         irn = new_r_Proj(irg, block, cmpH, mode_b, pn_Cmp_Lg);
1313                         dbg = get_irn_dbg_info(node);
1314                         irn = new_rd_Cond(dbg, irg, block, irn);
1315
1316                         projHT = new_r_Proj(irg, block, irn, mode_X, pn_Cond_true);
1317                         mark_irn_visited(projHT);
1318                         exchange(projT, projHT);
1319
1320                         projHF = new_r_Proj(irg, block, irn, mode_X, pn_Cond_false);
1321                         mark_irn_visited(projHF);
1322
1323                         new_bl = new_r_Block(irg, 1, &projHF);
1324
1325                         dbg   = get_irn_dbg_info(cmp);
1326                         cmpL = new_rd_Cmp(dbg, irg, new_bl, lentry->low_word, rentry->low_word);
1327                         irn = new_r_Proj(irg, new_bl, cmpL, mode_b, pn_Cmp_Lg);
1328                         dbg = get_irn_dbg_info(node);
1329                         irn = new_rd_Cond(dbg, irg, new_bl, irn);
1330
1331                         proj = new_r_Proj(irg, new_bl, irn, mode_X, pn_Cond_true);
1332                         mark_irn_visited(proj);
1333                         add_block_cf_input(dst_blk, projHT, proj);
1334
1335                         proj = new_r_Proj(irg, new_bl, irn, mode_X, pn_Cond_false);
1336                         mark_irn_visited(proj);
1337                         exchange(projF, proj);
1338                 } else {
1339                         /* a rel b <==> a_h REL b_h || (a_h == b_h && a_l rel b_l) */
1340                         ir_node *dstT, *dstF, *newbl_eq, *newbl_l;
1341                         pmap_entry *entry;
1342
1343                         entry = pmap_find(env->proj_2_block, projT);
1344                         assert(entry);
1345                         dstT = entry->value;
1346
1347                         entry = pmap_find(env->proj_2_block, projF);
1348                         assert(entry);
1349                         dstF = entry->value;
1350
1351                         irn = new_r_Proj(irg, block, cmpH, mode_b, pnc & ~pn_Cmp_Eq);
1352                         dbg = get_irn_dbg_info(node);
1353                         irn = new_rd_Cond(dbg, irg, block, irn);
1354
1355                         projHT = new_r_Proj(irg, block, irn, mode_X, pn_Cond_true);
1356                         mark_irn_visited(projHT);
1357                         exchange(projT, projHT);
1358                         projT = projHT;
1359
1360                         projHF = new_r_Proj(irg, block, irn, mode_X, pn_Cond_false);
1361                         mark_irn_visited(projHF);
1362
1363                         newbl_eq = new_r_Block(irg, 1, &projHF);
1364
1365                         irn = new_r_Proj(irg, newbl_eq, cmpH, mode_b, pn_Cmp_Eq);
1366                         irn = new_rd_Cond(dbg, irg, newbl_eq, irn);
1367
1368                         proj = new_r_Proj(irg, newbl_eq, irn, mode_X, pn_Cond_false);
1369                         mark_irn_visited(proj);
1370                         exchange(projF, proj);
1371                         projF = proj;
1372
1373                         proj = new_r_Proj(irg, newbl_eq, irn, mode_X, pn_Cond_true);
1374                         mark_irn_visited(proj);
1375
1376                         newbl_l = new_r_Block(irg, 1, &proj);
1377
1378                         dbg   = get_irn_dbg_info(cmp);
1379                         cmpL = new_rd_Cmp(dbg, irg, newbl_l, lentry->low_word, rentry->low_word);
1380                         irn = new_r_Proj(irg, newbl_l, cmpL, mode_b, pnc);
1381                         dbg = get_irn_dbg_info(node);
1382                         irn = new_rd_Cond(dbg, irg, newbl_l, irn);
1383
1384                         proj = new_r_Proj(irg, newbl_l, irn, mode_X, pn_Cond_true);
1385                         mark_irn_visited(proj);
1386                         add_block_cf_input(dstT, projT, proj);
1387
1388                         proj = new_r_Proj(irg, newbl_l, irn, mode_X, pn_Cond_false);
1389                         mark_irn_visited(proj);
1390                         add_block_cf_input(dstF, projF, proj);
1391                 }  /* if */
1392
1393                 /* we have changed the control flow */
1394                 env->flags |= CF_CHANGED;
1395         } else {
1396                 idx = get_irn_idx(sel);
1397
1398                 if (env->entries[idx]) {
1399                         /*
1400                            Bad, a jump-table with double-word index.
1401                            This should not happen, but if it does we handle
1402                            it like a Conv were between (in other words, ignore
1403                            the high part.
1404                          */
1405
1406                         if (! env->entries[idx]->low_word) {
1407                                 /* not ready yet, wait */
1408                                 pdeq_putr(env->waitq, node);
1409                                 return;
1410                         }  /* if */
1411                         set_Cond_selector(node, env->entries[idx]->low_word);
1412                 }  /* if */
1413         }  /* if */
1414 }  /* lower_Cond */
1415
1416 /**
1417  * Translate a Conv to higher_signed
1418  */
1419 static void lower_Conv_to_Ls(ir_node *node, lower_env_t *env) {
1420         ir_node  *op    = get_Conv_op(node);
1421         ir_mode  *imode = get_irn_mode(op);
1422         ir_mode  *dst_mode_l = env->params->low_unsigned;
1423         ir_mode  *dst_mode_h = env->params->low_signed;
1424         int      idx = get_irn_idx(node);
1425         ir_graph *irg = current_ir_graph;
1426         ir_node  *block = get_nodes_block(node);
1427         dbg_info *dbg = get_irn_dbg_info(node);
1428
1429         assert(idx < env->n_entries);
1430
1431         if (mode_is_int(imode) || mode_is_reference(imode)) {
1432                 if (imode == env->params->high_unsigned) {
1433                         /* a Conv from Lu to Ls */
1434                         int op_idx = get_irn_idx(op);
1435
1436                         if (! env->entries[op_idx]->low_word) {
1437                                 /* not ready yet, wait */
1438                                 pdeq_putr(env->waitq, node);
1439                                 return;
1440                         }  /* if */
1441                         env->entries[idx]->low_word  = new_rd_Conv(dbg, irg, block, env->entries[op_idx]->low_word,  dst_mode_l);
1442                         env->entries[idx]->high_word = new_rd_Conv(dbg, irg, block, env->entries[op_idx]->high_word, dst_mode_h);
1443                 } else {
1444                         /* simple case: create a high word */
1445                         if (imode != dst_mode_l)
1446                                 op = new_rd_Conv(dbg, irg, block, op, dst_mode_l);
1447
1448                         env->entries[idx]->low_word  = op;
1449
1450                         if (mode_is_signed(imode)) {
1451                                 ir_node *op_conv = new_rd_Conv(dbg, irg, block, op, dst_mode_h);
1452                                 env->entries[idx]->high_word = new_rd_Shrs(dbg, irg, block, op_conv,
1453                                         new_Const_long(mode_Iu, get_mode_size_bits(dst_mode_h) - 1), dst_mode_h);
1454                         } else {
1455                                 env->entries[idx]->high_word = new_Const(dst_mode_h, get_mode_null(dst_mode_h));
1456                         }  /* if */
1457                 }  /* if */
1458         } else {
1459                 ir_node *irn, *call;
1460                 ir_mode *omode = env->params->high_signed;
1461                 ir_type *mtp = get_conv_type(imode, omode, env);
1462
1463                 irn = get_intrinsic_address(mtp, get_irn_op(node), imode, omode, block, env);
1464                 call = new_rd_Call(dbg, irg, block, get_irg_no_mem(irg), irn, 1, &op, mtp);
1465                 set_irn_pinned(call, get_irn_pinned(node));
1466                 irn = new_r_Proj(irg, block, call, mode_T, pn_Call_T_result);
1467
1468                 env->entries[idx]->low_word  = new_r_Proj(irg, block, irn, dst_mode_l, 0);
1469                 env->entries[idx]->high_word = new_r_Proj(irg, block, irn, dst_mode_h, 1);
1470         }  /* if */
1471 }  /* lower_Conv_to_Ls */
1472
1473 /**
1474  * Translate a Conv to higher_unsigned
1475  */
1476 static void lower_Conv_to_Lu(ir_node *node, lower_env_t *env) {
1477         ir_node  *op    = get_Conv_op(node);
1478         ir_mode  *imode = get_irn_mode(op);
1479         ir_mode  *dst_mode = env->params->low_unsigned;
1480         int      idx = get_irn_idx(node);
1481         ir_graph *irg = current_ir_graph;
1482         ir_node  *block = get_nodes_block(node);
1483         dbg_info *dbg = get_irn_dbg_info(node);
1484
1485         assert(idx < env->n_entries);
1486
1487         if (mode_is_int(imode) || mode_is_reference(imode)) {
1488                 if (imode == env->params->high_signed) {
1489                         /* a Conv from Ls to Lu */
1490                         int op_idx = get_irn_idx(op);
1491
1492                         if (! env->entries[op_idx]->low_word) {
1493                                 /* not ready yet, wait */
1494                                 pdeq_putr(env->waitq, node);
1495                                 return;
1496                         }  /* if */
1497                         env->entries[idx]->low_word  = new_rd_Conv(dbg, irg, block, env->entries[op_idx]->low_word, dst_mode);
1498                         env->entries[idx]->high_word = new_rd_Conv(dbg, irg, block, env->entries[op_idx]->high_word, dst_mode);
1499                 } else {
1500                         /* simple case: create a high word */
1501                         if (imode != dst_mode)
1502                                 op = new_rd_Conv(dbg, irg, block, op, dst_mode);
1503
1504                         env->entries[idx]->low_word  = op;
1505
1506                         if (mode_is_signed(imode)) {
1507                                 env->entries[idx]->high_word = new_rd_Shrs(dbg, irg, block, op,
1508                                         new_Const_long(mode_Iu, get_mode_size_bits(dst_mode) - 1), dst_mode);
1509                         } else {
1510                                 env->entries[idx]->high_word = new_Const(dst_mode, get_mode_null(dst_mode));
1511                         }  /* if */
1512                 }  /* if */
1513         } else {
1514                 ir_node *irn, *call;
1515                 ir_mode *omode = env->params->high_unsigned;
1516                 ir_type *mtp = get_conv_type(imode, omode, env);
1517
1518                 /* do an intrinsic call */
1519                 irn = get_intrinsic_address(mtp, get_irn_op(node), imode, omode, block, env);
1520                 call = new_rd_Call(dbg, irg, block, get_irg_no_mem(irg), irn, 1, &op, mtp);
1521                 set_irn_pinned(call, get_irn_pinned(node));
1522                 irn = new_r_Proj(irg, block, call, mode_T, pn_Call_T_result);
1523
1524                 env->entries[idx]->low_word  = new_r_Proj(irg, block, irn, dst_mode, 0);
1525                 env->entries[idx]->high_word = new_r_Proj(irg, block, irn, dst_mode, 1);
1526         }  /* if */
1527 }  /* lower_Conv_to_Lu */
1528
1529 /**
1530  * Translate a Conv from higher_signed
1531  */
1532 static void lower_Conv_from_Ls(ir_node *node, lower_env_t *env) {
1533         ir_node  *op    = get_Conv_op(node);
1534         ir_mode  *omode = get_irn_mode(node);
1535         ir_node  *block = get_nodes_block(node);
1536         dbg_info *dbg = get_irn_dbg_info(node);
1537         int      idx = get_irn_idx(op);
1538         ir_graph *irg = current_ir_graph;
1539
1540         assert(idx < env->n_entries);
1541
1542         if (! env->entries[idx]->low_word) {
1543                 /* not ready yet, wait */
1544                 pdeq_putr(env->waitq, node);
1545                 return;
1546         }  /* if */
1547
1548         if (mode_is_int(omode) || mode_is_reference(omode)) {
1549                 op = env->entries[idx]->low_word;
1550
1551                 /* simple case: create a high word */
1552                 if (omode != env->params->low_signed)
1553                         op = new_rd_Conv(dbg, irg, block, op, omode);
1554
1555                 set_Conv_op(node, op);
1556         } else {
1557                 ir_node *irn, *call, *in[2];
1558                 ir_mode *imode = env->params->high_signed;
1559                 ir_type *mtp = get_conv_type(imode, omode, env);
1560
1561                 irn = get_intrinsic_address(mtp, get_irn_op(node), imode, omode, block, env);
1562                 in[0] = env->entries[idx]->low_word;
1563                 in[1] = env->entries[idx]->high_word;
1564
1565                 call = new_rd_Call(dbg, irg, block, get_irg_no_mem(irg), irn, 2, in, mtp);
1566                 set_irn_pinned(call, get_irn_pinned(node));
1567                 irn = new_r_Proj(irg, block, call, mode_T, pn_Call_T_result);
1568
1569                 exchange(node, new_r_Proj(irg, block, irn, omode, 0));
1570         }  /* if */
1571 }  /* lower_Conv_from_Ls */
1572
1573 /**
1574  * Translate a Conv from higher_unsigned
1575  */
1576 static void lower_Conv_from_Lu(ir_node *node, lower_env_t *env) {
1577         ir_node  *op    = get_Conv_op(node);
1578         ir_mode  *omode = get_irn_mode(node);
1579         ir_node  *block = get_nodes_block(node);
1580         dbg_info *dbg = get_irn_dbg_info(node);
1581         int      idx = get_irn_idx(op);
1582         ir_graph *irg = current_ir_graph;
1583
1584         assert(idx < env->n_entries);
1585
1586         if (! env->entries[idx]->low_word) {
1587                 /* not ready yet, wait */
1588                 pdeq_putr(env->waitq, node);
1589                 return;
1590         }  /* if */
1591
1592         if (mode_is_int(omode) || mode_is_reference(omode)) {
1593                 op = env->entries[idx]->low_word;
1594
1595                 /* simple case: create a high word */
1596                 if (omode != env->params->low_unsigned)
1597                         op = new_rd_Conv(dbg, irg, block, op, omode);
1598
1599                 set_Conv_op(node, op);
1600         } else {
1601                 ir_node *irn, *call, *in[2];
1602                 ir_mode *imode = env->params->high_unsigned;
1603                 ir_type *mtp = get_conv_type(imode, omode, env);
1604
1605                 irn = get_intrinsic_address(mtp, get_irn_op(node), imode, omode, block, env);
1606                 in[0] = env->entries[idx]->low_word;
1607                 in[1] = env->entries[idx]->high_word;
1608
1609                 call = new_rd_Call(dbg, irg, block, get_irg_no_mem(irg), irn, 2, in, mtp);
1610                 set_irn_pinned(call, get_irn_pinned(node));
1611                 irn = new_r_Proj(irg, block, call, mode_T, pn_Call_T_result);
1612
1613                 exchange(node, new_r_Proj(irg, block, irn, omode, 0));
1614         }  /* if */
1615 }  /* lower_Conv_from_Lu */
1616
1617 /**
1618  * Translate a Conv.
1619  */
1620 static void lower_Conv(ir_node *node, ir_mode *mode, lower_env_t *env) {
1621         mode = get_irn_mode(node);
1622
1623         if (mode == env->params->high_signed) {
1624                 lower_Conv_to_Ls(node, env);
1625         } else if (mode == env->params->high_unsigned) {
1626                 lower_Conv_to_Lu(node, env);
1627         } else {
1628                 ir_mode *mode = get_irn_mode(get_Conv_op(node));
1629
1630                 if (mode == env->params->high_signed) {
1631                         lower_Conv_from_Ls(node, env);
1632                 } else if (mode == env->params->high_unsigned) {
1633                         lower_Conv_from_Lu(node, env);
1634                 }  /* if */
1635         }  /* if */
1636 }  /* lower_Conv */
1637
1638 /**
1639  * Lower the method type.
1640  */
1641 static ir_type *lower_mtp(ir_type *mtp, lower_env_t *env) {
1642         pmap_entry *entry;
1643         ident      *id;
1644         ir_type    *res;
1645
1646         if (is_lowered_type(mtp))
1647                 return mtp;
1648
1649         entry = pmap_find(lowered_type, mtp);
1650         if (! entry) {
1651                 int i, n, r, n_param, n_res;
1652
1653                 /* count new number of params */
1654                 n_param = n = get_method_n_params(mtp);
1655                 for (i = n_param - 1; i >= 0; --i) {
1656                         ir_type *tp = get_method_param_type(mtp, i);
1657
1658                         if (is_Primitive_type(tp)) {
1659                                 ir_mode *mode = get_type_mode(tp);
1660
1661                                 if (mode == env->params->high_signed ||
1662                                         mode == env->params->high_unsigned)
1663                                         ++n_param;
1664                         }  /* if */
1665                 }  /* for */
1666
1667                 /* count new number of results */
1668                 n_res = r = get_method_n_ress(mtp);
1669                 for (i = n_res - 1; i >= 0; --i) {
1670                         ir_type *tp = get_method_res_type(mtp, i);
1671
1672                         if (is_Primitive_type(tp)) {
1673                                 ir_mode *mode = get_type_mode(tp);
1674
1675                                 if (mode == env->params->high_signed ||
1676                                         mode == env->params->high_unsigned)
1677                                         ++n_res;
1678                         }  /* if */
1679                 }  /* for */
1680
1681                 id = mangle_u(new_id_from_chars("L", 1), get_type_ident(mtp));
1682                 res = new_type_method(id, n_param, n_res);
1683
1684                 /* set param types and result types */
1685                 for (i = n_param = 0; i < n; ++i) {
1686                         ir_type *tp = get_method_param_type(mtp, i);
1687
1688                         if (is_Primitive_type(tp)) {
1689                                 ir_mode *mode = get_type_mode(tp);
1690
1691                                 if (mode == env->params->high_signed) {
1692                                         set_method_param_type(res, n_param++, tp_u);
1693                                         set_method_param_type(res, n_param++, tp_s);
1694                                 } else if (mode == env->params->high_unsigned) {
1695                                         set_method_param_type(res, n_param++, tp_u);
1696                                         set_method_param_type(res, n_param++, tp_u);
1697                                 } else {
1698                                         set_method_param_type(res, n_param++, tp);
1699                                 }  /* if */
1700                         } else {
1701                                 set_method_param_type(res, n_param++, tp);
1702                         }  /* if */
1703                 }  /* for */
1704                 for (i = n_res = 0; i < r; ++i) {
1705                         ir_type *tp = get_method_res_type(mtp, i);
1706
1707                         if (is_Primitive_type(tp)) {
1708                                 ir_mode *mode = get_type_mode(tp);
1709
1710                                 if (mode == env->params->high_signed) {
1711                                         set_method_res_type(res, n_res++, tp_u);
1712                                         set_method_res_type(res, n_res++, tp_s);
1713                                 } else if (mode == env->params->high_unsigned) {
1714                                         set_method_res_type(res, n_res++, tp_u);
1715                                         set_method_res_type(res, n_res++, tp_u);
1716                                 } else {
1717                                         set_method_res_type(res, n_res++, tp);
1718                                 }  /* if */
1719                         } else {
1720                                 set_method_res_type(res, n_res++, tp);
1721                         }  /* if */
1722                 }  /* for */
1723                 set_lowered_type(mtp, res);
1724                 pmap_insert(lowered_type, mtp, res);
1725         } else {
1726                 res = entry->value;
1727         }  /* if */
1728         return res;
1729 }  /* lower_mtp */
1730
1731 /**
1732  * Translate a Return.
1733  */
1734 static void lower_Return(ir_node *node, ir_mode *mode, lower_env_t *env) {
1735         ir_graph  *irg = current_ir_graph;
1736         ir_entity *ent = get_irg_entity(irg);
1737         ir_type   *mtp = get_entity_type(ent);
1738         ir_node   **in;
1739         int       i, j, n, idx;
1740         int       need_conv = 0;
1741         (void) mode;
1742
1743         /* check if this return must be lowered */
1744         for (i = 0, n = get_Return_n_ress(node); i < n; ++i) {
1745                 ir_node *pred = get_Return_res(node, i);
1746                 ir_mode *mode = get_irn_op_mode(pred);
1747
1748                 if (mode == env->params->high_signed ||
1749                         mode == env->params->high_unsigned) {
1750                         idx = get_irn_idx(pred);
1751                         if (! env->entries[idx]->low_word) {
1752                                 /* not ready yet, wait */
1753                                 pdeq_putr(env->waitq, node);
1754                                 return;
1755                         }  /* if */
1756                         need_conv = 1;
1757                 }  /* if */
1758         }  /* for */
1759         if (! need_conv)
1760                 return;
1761
1762         ent = get_irg_entity(irg);
1763         mtp = get_entity_type(ent);
1764
1765         mtp = lower_mtp(mtp, env);
1766         set_entity_type(ent, mtp);
1767
1768         /* create a new in array */
1769         NEW_ARR_A(ir_node *, in, get_method_n_ress(mtp) + 1);
1770         in[0] = get_Return_mem(node);
1771
1772         for (j = i = 0, n = get_Return_n_ress(node); i < n; ++i) {
1773                 ir_node *pred = get_Return_res(node, i);
1774
1775                 idx = get_irn_idx(pred);
1776                 assert(idx < env->n_entries);
1777
1778                 if (env->entries[idx]) {
1779                         in[++j] = env->entries[idx]->low_word;
1780                         in[++j] = env->entries[idx]->high_word;
1781                 } else {
1782                         in[++j] = pred;
1783                 }  /* if */
1784         }  /* for */
1785
1786         set_irn_in(node, j+1, in);
1787 }  /* lower_Return */
1788
1789 /**
1790  * Translate the parameters.
1791  */
1792 static void lower_Start(ir_node *node, ir_mode *mode, lower_env_t *env) {
1793         ir_graph  *irg = current_ir_graph;
1794         ir_entity *ent = get_irg_entity(irg);
1795         ir_type   *tp  = get_entity_type(ent);
1796         ir_type   *mtp;
1797         long      *new_projs;
1798         int       i, j, n_params, rem;
1799         ir_node   *proj, *args;
1800         (void) mode;
1801
1802         if (is_lowered_type(tp)) {
1803                 mtp = get_associated_type(tp);
1804         } else {
1805                 mtp = tp;
1806         }  /* if */
1807         assert(! is_lowered_type(mtp));
1808
1809         n_params = get_method_n_params(mtp);
1810         if (n_params <= 0)
1811                 return;
1812
1813         NEW_ARR_A(long, new_projs, n_params);
1814
1815         /* first check if we have parameters that must be fixed */
1816         for (i = j = 0; i < n_params; ++i, ++j) {
1817                 ir_type *tp = get_method_param_type(mtp, i);
1818
1819                 new_projs[i] = j;
1820                 if (is_Primitive_type(tp)) {
1821                         ir_mode *mode = get_type_mode(tp);
1822
1823                         if (mode == env->params->high_signed ||
1824                                 mode == env->params->high_unsigned)
1825                                 ++j;
1826                 }  /* if */
1827         }  /* for */
1828         if (i == j)
1829                 return;
1830
1831         mtp = lower_mtp(mtp, env);
1832         set_entity_type(ent, mtp);
1833
1834         /* switch off optimization for new Proj nodes or they might be CSE'ed
1835            with not patched one's */
1836         rem = get_optimize();
1837         set_optimize(0);
1838
1839         /* ok, fix all Proj's and create new ones */
1840         args = get_irg_args(irg);
1841         for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
1842                 ir_node *pred = get_Proj_pred(proj);
1843                 long proj_nr;
1844                 int idx;
1845                 ir_mode *mode;
1846                 dbg_info *dbg;
1847
1848                 /* do not visit this node again */
1849                 mark_irn_visited(proj);
1850
1851                 if (pred != args)
1852                         continue;
1853
1854                 proj_nr = get_Proj_proj(proj);
1855                 set_Proj_proj(proj, new_projs[proj_nr]);
1856
1857                 idx = get_irn_idx(proj);
1858                 if (env->entries[idx]) {
1859                         ir_mode *low_mode = env->params->low_unsigned;
1860
1861                         mode = get_irn_mode(proj);
1862
1863                         if (mode == env->params->high_signed) {
1864                                 mode = env->params->low_signed;
1865                         } else {
1866                                 mode = env->params->low_unsigned;
1867                         }  /* if */
1868
1869                         dbg = get_irn_dbg_info(proj);
1870                         env->entries[idx]->low_word  =
1871                                 new_rd_Proj(dbg, irg, get_nodes_block(proj), args, low_mode, new_projs[proj_nr]);
1872                         env->entries[idx]->high_word =
1873                                 new_rd_Proj(dbg, irg, get_nodes_block(proj), args, mode, new_projs[proj_nr] + 1);
1874                 }  /* if */
1875         }  /* for */
1876         set_optimize(rem);
1877 }  /* lower_Start */
1878
1879 /**
1880  * Translate a Call.
1881  */
1882 static void lower_Call(ir_node *node, ir_mode *mode, lower_env_t *env) {
1883         ir_graph *irg = current_ir_graph;
1884         ir_type  *tp = get_Call_type(node);
1885         ir_type  *call_tp;
1886         ir_node  **in, *proj, *results;
1887         int      n_params, n_res, need_lower = 0;
1888         int      i, j;
1889         long     *res_numbers = NULL;
1890         (void) mode;
1891
1892         if (is_lowered_type(tp)) {
1893                 call_tp = get_associated_type(tp);
1894         } else {
1895                 call_tp = tp;
1896         }  /* if */
1897
1898         assert(! is_lowered_type(call_tp));
1899
1900         n_params = get_method_n_params(call_tp);
1901         for (i = 0; i < n_params; ++i) {
1902                 ir_type *tp = get_method_param_type(call_tp, i);
1903
1904                 if (is_Primitive_type(tp)) {
1905                         ir_mode *mode = get_type_mode(tp);
1906
1907                         if (mode == env->params->high_signed ||
1908                                 mode == env->params->high_unsigned) {
1909                                 need_lower = 1;
1910                                 break;
1911                         }  /* if */
1912                 }  /* if */
1913         }  /* for */
1914         n_res = get_method_n_ress(call_tp);
1915         if (n_res > 0) {
1916                 NEW_ARR_A(long, res_numbers, n_res);
1917
1918                 for (i = j = 0; i < n_res; ++i, ++j) {
1919                         ir_type *tp = get_method_res_type(call_tp, i);
1920
1921                         res_numbers[i] = j;
1922                         if (is_Primitive_type(tp)) {
1923                                 ir_mode *mode = get_type_mode(tp);
1924
1925                                 if (mode == env->params->high_signed ||
1926                                         mode == env->params->high_unsigned) {
1927                                         need_lower = 1;
1928                                         ++j;
1929                                 }  /* if */
1930                         }  /* if */
1931                 }  /* for */
1932         }  /* if */
1933
1934         if (! need_lower)
1935                 return;
1936
1937         /* let's lower it */
1938         call_tp = lower_mtp(call_tp, env);
1939         set_Call_type(node, call_tp);
1940
1941         NEW_ARR_A(ir_node *, in, get_method_n_params(call_tp) + 2);
1942
1943         in[0] = get_Call_mem(node);
1944         in[1] = get_Call_ptr(node);
1945
1946         for (j = 2, i = 0; i < n_params; ++i) {
1947                 ir_node *pred = get_Call_param(node, i);
1948                 int     idx = get_irn_idx(pred);
1949
1950                 if (env->entries[idx]) {
1951                         if (! env->entries[idx]->low_word) {
1952                                 /* not ready yet, wait */
1953                                 pdeq_putr(env->waitq, node);
1954                                 return;
1955                         }
1956                         in[j++] = env->entries[idx]->low_word;
1957                         in[j++] = env->entries[idx]->high_word;
1958                 } else {
1959                         in[j++] = pred;
1960                 }  /* if */
1961         }  /* for */
1962
1963         set_irn_in(node, j, in);
1964
1965         /* fix the results */
1966         results = NULL;
1967         for (proj = get_irn_link(node); proj; proj = get_irn_link(proj)) {
1968                 long proj_nr = get_Proj_proj(proj);
1969
1970                 if (proj_nr == pn_Call_T_result && get_Proj_pred(proj) == node) {
1971                         /* found the result proj */
1972                         results = proj;
1973                         break;
1974                 }  /* if */
1975         }  /* for */
1976
1977         if (results) {          /* there are results */
1978                 int rem = get_optimize();
1979
1980                 /* switch off optimization for new Proj nodes or they might be CSE'ed
1981                    with not patched one's */
1982                 set_optimize(0);
1983                 for (i = j = 0, proj = get_irn_link(results); proj; proj = get_irn_link(proj), ++i, ++j) {
1984                         if (get_Proj_pred(proj) == results) {
1985                                 long proj_nr = get_Proj_proj(proj);
1986                                 int idx;
1987
1988                                 /* found a result */
1989                                 set_Proj_proj(proj, res_numbers[proj_nr]);
1990                                 idx = get_irn_idx(proj);
1991                                 if (env->entries[idx]) {
1992                                         ir_mode *mode = get_irn_mode(proj);
1993                                         ir_mode *low_mode = env->params->low_unsigned;
1994                                         dbg_info *dbg;
1995
1996                                         if (mode == env->params->high_signed) {
1997                                                 mode = env->params->low_signed;
1998                                         } else {
1999                                                 mode = env->params->low_unsigned;
2000                                         }  /* if */
2001
2002                                         dbg = get_irn_dbg_info(proj);
2003                                         env->entries[idx]->low_word  =
2004                                                 new_rd_Proj(dbg, irg, get_nodes_block(proj), results, low_mode, res_numbers[proj_nr]);
2005                                         env->entries[idx]->high_word =
2006                                                 new_rd_Proj(dbg, irg, get_nodes_block(proj), results, mode, res_numbers[proj_nr] + 1);
2007                                 }  /* if */
2008                                 mark_irn_visited(proj);
2009                         }  /* if */
2010                 }  /* for */
2011                 set_optimize(rem);
2012         }
2013 }  /* lower_Call */
2014
2015 /**
2016  * Translate an Unknown into two.
2017  */
2018 static void lower_Unknown(ir_node *node, ir_mode *mode, lower_env_t *env) {
2019         int      idx = get_irn_idx(node);
2020         ir_graph *irg = current_ir_graph;
2021         ir_mode  *low_mode = env->params->low_unsigned;
2022
2023         env->entries[idx]->low_word  = new_r_Unknown(irg, low_mode);
2024         env->entries[idx]->high_word = new_r_Unknown(irg, mode);
2025 }  /* lower_Unknown */
2026
2027 /**
2028  * Translate a Phi.
2029  *
2030  * First step: just create two templates
2031  */
2032 static void lower_Phi(ir_node *phi, ir_mode *mode, lower_env_t *env) {
2033         ir_mode  *mode_l = env->params->low_unsigned;
2034         ir_graph *irg = current_ir_graph;
2035         ir_node  *block, *unk_l, *unk_h, *phi_l, *phi_h;
2036         ir_node  **inl, **inh;
2037         dbg_info *dbg;
2038         int      idx, i, arity = get_Phi_n_preds(phi);
2039         int      enq = 0;
2040
2041         idx = get_irn_idx(phi);
2042         if (env->entries[idx]->low_word) {
2043                 /* Phi nodes already build, check for inputs */
2044                 ir_node *phil = env->entries[idx]->low_word;
2045                 ir_node *phih = env->entries[idx]->high_word;
2046
2047                 for (i = 0; i < arity; ++i) {
2048                         ir_node *pred = get_Phi_pred(phi, i);
2049                         int     idx = get_irn_idx(pred);
2050
2051                         if (env->entries[idx]->low_word) {
2052                                 set_Phi_pred(phil, i, env->entries[idx]->low_word);
2053                                 set_Phi_pred(phih, i, env->entries[idx]->high_word);
2054                         } else {
2055                                 /* still not ready */
2056                                 pdeq_putr(env->waitq, phi);
2057                                 return;
2058                         }  /* if */
2059                 }  /* for */
2060         }  /* if */
2061
2062         /* first create a new in array */
2063         NEW_ARR_A(ir_node *, inl, arity);
2064         NEW_ARR_A(ir_node *, inh, arity);
2065         unk_l = new_r_Unknown(irg, mode_l);
2066         unk_h = new_r_Unknown(irg, mode);
2067
2068         for (i = 0; i < arity; ++i) {
2069                 ir_node *pred = get_Phi_pred(phi, i);
2070                 int     idx = get_irn_idx(pred);
2071
2072                 if (env->entries[idx]->low_word) {
2073                         inl[i] = env->entries[idx]->low_word;
2074                         inh[i] = env->entries[idx]->high_word;
2075                 } else {
2076                         inl[i] = unk_l;
2077                         inh[i] = unk_h;
2078                         enq = 1;
2079                 }  /* if */
2080         }  /* for */
2081
2082         dbg   = get_irn_dbg_info(phi);
2083         block = get_nodes_block(phi);
2084
2085         idx = get_irn_idx(phi);
2086         assert(idx < env->n_entries);
2087         env->entries[idx]->low_word  = phi_l = new_rd_Phi(dbg, irg, block, arity, inl, mode_l);
2088         env->entries[idx]->high_word = phi_h = new_rd_Phi(dbg, irg, block, arity, inh, mode);
2089
2090         /* Don't forget to link the new Phi nodes into the block! */
2091         set_irn_link(phi_l, get_irn_link(block));
2092         set_irn_link(phi_h, phi_l);
2093         set_irn_link(block, phi_h);
2094
2095         if (enq) {
2096                 /* not yet finished */
2097                 pdeq_putr(env->waitq, phi);
2098         }  /* if */
2099 }  /* lower_Phi */
2100
2101 /**
2102  * Translate a Psi.
2103  */
2104 static void lower_Psi(ir_node *psi, ir_mode *mode, lower_env_t *env) {
2105         ir_graph *irg = current_ir_graph;
2106         ir_node  *block, *val;
2107         ir_node  **valsl, **valsh, **conds;
2108         dbg_info *dbg;
2109         int      idx, i, n_conds = get_Psi_n_conds(psi);
2110
2111         /* first create a new in array */
2112         NEW_ARR_A(ir_node *, valsl, n_conds + 1);
2113         NEW_ARR_A(ir_node *, valsh, n_conds + 1);
2114
2115         for (i = 0; i < n_conds; ++i) {
2116                 val = get_Psi_val(psi, i);
2117                 idx = get_irn_idx(val);
2118                 if (env->entries[idx]->low_word) {
2119                         /* Values already build */
2120                         valsl[i] = env->entries[idx]->low_word;
2121                         valsh[i] = env->entries[idx]->high_word;
2122                 } else {
2123                         /* still not ready */
2124                         pdeq_putr(env->waitq, psi);
2125                         return;
2126                 }  /* if */
2127         }  /* for */
2128         val = get_Psi_default(psi);
2129         idx = get_irn_idx(val);
2130         if (env->entries[idx]->low_word) {
2131                 /* Values already build */
2132                 valsl[i] = env->entries[idx]->low_word;
2133                 valsh[i] = env->entries[idx]->high_word;
2134         } else {
2135                 /* still not ready */
2136                 pdeq_putr(env->waitq, psi);
2137                 return;
2138         }  /* if */
2139
2140
2141         NEW_ARR_A(ir_node *, conds, n_conds);
2142         for (i = 0; i < n_conds; ++i) {
2143                 conds[i] = get_Psi_cond(psi, i);
2144         }  /* for */
2145
2146         dbg   = get_irn_dbg_info(psi);
2147         block = get_nodes_block(psi);
2148
2149         idx = get_irn_idx(psi);
2150         assert(idx < env->n_entries);
2151         env->entries[idx]->low_word  = new_rd_Psi(dbg, irg, block, n_conds, conds, valsl, mode);
2152         env->entries[idx]->high_word = new_rd_Psi(dbg, irg, block, n_conds, conds, valsh, mode);
2153 }  /* lower_Psi */
2154
2155 /**
2156  * check for opcodes that must always be lowered.
2157  */
2158 static int always_lower(ir_opcode code) {
2159         switch (code) {
2160         case iro_Proj:
2161         case iro_Start:
2162         case iro_Call:
2163         case iro_Return:
2164         case iro_Cond:
2165         case iro_Conv:
2166                 return 1;
2167         default:
2168                 return 0;
2169         }  /* switch */
2170 }  /* always_lower */
2171
2172 /**
2173  * lower boolean Proj(Cmp)
2174  */
2175 static ir_node *lower_boolean_Proj_Cmp(ir_node *proj, ir_node *cmp, lower_env_t *env) {
2176         int      lidx, ridx;
2177         ir_node  *l, *r, *low, *high, *t, *res;
2178         pn_Cmp   pnc;
2179         ir_node  *blk;
2180         ir_graph *irg = current_ir_graph;
2181         dbg_info *db;
2182
2183         l    = get_Cmp_left(cmp);
2184         lidx = get_irn_idx(l);
2185         if (! env->entries[lidx]->low_word) {
2186                 /* still not ready */
2187                 return NULL;
2188         }  /* if */
2189
2190         r    = get_Cmp_right(cmp);
2191         ridx = get_irn_idx(r);
2192         if (! env->entries[ridx]->low_word) {
2193                 /* still not ready */
2194                 return NULL;
2195         }  /* if */
2196
2197         pnc  = get_Proj_proj(proj);
2198         blk  = get_nodes_block(cmp);
2199         db   = get_irn_dbg_info(cmp);
2200         low  = new_rd_Cmp(db, irg, blk, env->entries[lidx]->low_word, env->entries[ridx]->low_word);
2201         high = new_rd_Cmp(db, irg, blk, env->entries[lidx]->high_word, env->entries[ridx]->high_word);
2202
2203         if (pnc == pn_Cmp_Eq) {
2204                 /* simple case:a == b <==> a_h == b_h && a_l == b_l */
2205                 res = new_rd_And(db, irg, blk,
2206                         new_r_Proj(irg, blk, low, mode_b, pnc),
2207                         new_r_Proj(irg, blk, high, mode_b, pnc),
2208                         mode_b);
2209         } else if (pnc == pn_Cmp_Lg) {
2210                 /* simple case:a != b <==> a_h != b_h || a_l != b_l */
2211                 res = new_rd_Or(db, irg, blk,
2212                         new_r_Proj(irg, blk, low, mode_b, pnc),
2213                         new_r_Proj(irg, blk, high, mode_b, pnc),
2214                         mode_b);
2215         } else {
2216                 /* a rel b <==> a_h REL b_h || (a_h == b_h && a_l rel b_l) */
2217                 t = new_rd_And(db, irg, blk,
2218                         new_r_Proj(irg, blk, low, mode_b, pnc),
2219                         new_r_Proj(irg, blk, high, mode_b, pn_Cmp_Eq),
2220                         mode_b);
2221                 res = new_rd_Or(db, irg, blk,
2222                         new_r_Proj(irg, blk, high, mode_b, pnc & ~pn_Cmp_Eq),
2223                         t,
2224                         mode_b);
2225         }  /* if */
2226         return res;
2227 }  /* lower_boolean_Proj_Cmp */
2228
2229 /**
2230  * The type of a lower function.
2231  *
2232  * @param node   the node to be lowered
2233  * @param mode   the low mode for the destination node
2234  * @param env    the lower environment
2235  */
2236 typedef void (*lower_func)(ir_node *node, ir_mode *mode, lower_env_t *env);
2237
2238 /**
2239  * Lower a node.
2240  */
2241 static void lower_ops(ir_node *node, void *env)
2242 {
2243         lower_env_t  *lenv = env;
2244         node_entry_t *entry;
2245         int          idx = get_irn_idx(node);
2246         ir_mode      *mode = get_irn_mode(node);
2247
2248         if (mode == mode_b || is_Psi(node) || is_Conv(node)) {
2249                 int i;
2250
2251                 for (i = get_irn_arity(node) - 1; i >= 0; --i) {
2252                         ir_node *proj = get_irn_n(node, i);
2253
2254                         if (is_Proj(proj)) {
2255                                 ir_node *cmp = get_Proj_pred(proj);
2256
2257                                 if (is_Cmp(cmp)) {
2258                                         ir_node *arg = get_Cmp_left(cmp);
2259
2260                                         mode = get_irn_mode(arg);
2261                                         if (mode == lenv->params->high_signed ||
2262                                                 mode == lenv->params->high_unsigned) {
2263                                                 ir_node *res = lower_boolean_Proj_Cmp(proj, cmp, lenv);
2264
2265                                                 if (res == NULL) {
2266                                                         /* could not lower because predecessors not ready */
2267                                                         waitq_put(lenv->waitq, node);
2268                                                         return;
2269                                                 }  /* if */
2270                                                 set_irn_n(node, i, res);
2271                                         }  /* if */
2272                                 }  /* if */
2273                         }  /* if */
2274                 }  /* for */
2275         }  /* if */
2276
2277         entry = idx < lenv->n_entries ? lenv->entries[idx] : NULL;
2278         if (entry || always_lower(get_irn_opcode(node))) {
2279                 ir_op      *op = get_irn_op(node);
2280                 lower_func func = (lower_func)op->ops.generic;
2281
2282                 if (func) {
2283                         mode = get_irn_op_mode(node);
2284
2285                         if (mode == lenv->params->high_signed)
2286                                 mode = lenv->params->low_signed;
2287                         else
2288                                 mode = lenv->params->low_unsigned;
2289
2290                         DB((dbg, LEVEL_1, "  %+F\n", node));
2291                         func(node, mode, lenv);
2292                 }  /* if */
2293         }  /* if */
2294 }  /* lower_ops */
2295
2296 #define IDENT(s)  new_id_from_chars(s, sizeof(s)-1)
2297
2298 /**
2299  * Compare two op_mode_entry_t's.
2300  */
2301 static int cmp_op_mode(const void *elt, const void *key, size_t size) {
2302         const op_mode_entry_t *e1 = elt;
2303         const op_mode_entry_t *e2 = key;
2304         (void) size;
2305
2306         return (e1->op - e2->op) | (e1->imode - e2->imode) | (e1->omode - e2->omode);
2307 }  /* cmp_op_mode */
2308
2309 /**
2310  * Compare two conv_tp_entry_t's.
2311  */
2312 static int cmp_conv_tp(const void *elt, const void *key, size_t size) {
2313         const conv_tp_entry_t *e1 = elt;
2314         const conv_tp_entry_t *e2 = key;
2315         (void) size;
2316
2317         return (e1->imode - e2->imode) | (e1->omode - e2->omode);
2318 }  /* static int cmp_conv_tp */
2319
2320 /**
2321  * Enter a lowering function into an ir_op.
2322  */
2323 static void enter_lower_func(ir_op *op, lower_func func) {
2324         op->ops.generic = (op_func)func;
2325 }
2326
2327 /*
2328  * Do the lowering.
2329  */
2330 void lower_dw_ops(const lwrdw_param_t *param)
2331 {
2332         lower_env_t lenv;
2333         int i;
2334         ir_graph *rem;
2335
2336         if (! param)
2337                 return;
2338
2339         if (! param->enable)
2340                 return;
2341
2342         FIRM_DBG_REGISTER(dbg, "firm.lower.dw");
2343
2344         assert(2 * get_mode_size_bits(param->low_signed)   == get_mode_size_bits(param->high_signed));
2345         assert(2 * get_mode_size_bits(param->low_unsigned) == get_mode_size_bits(param->high_unsigned));
2346         assert(get_mode_size_bits(param->low_signed) == get_mode_size_bits(param->low_unsigned));
2347
2348         /* create the necessary maps */
2349         if (! prim_types)
2350                 prim_types = pmap_create();
2351         if (! intrinsic_fkt)
2352                 intrinsic_fkt = new_set(cmp_op_mode, iro_Last + 1);
2353         if (! conv_types)
2354                 conv_types = new_set(cmp_conv_tp, 16);
2355         if (! lowered_type)
2356                 lowered_type = pmap_create();
2357
2358         /* create a primitive unsigned and signed type */
2359         if (! tp_u)
2360                 tp_u = get_primitive_type(param->low_unsigned);
2361         if (! tp_s)
2362                 tp_s = get_primitive_type(param->low_signed);
2363
2364         /* create method types for the created binop calls */
2365         if (! binop_tp_u) {
2366                 binop_tp_u = new_type_method(IDENT("binop_u_intrinsic"), 4, 2);
2367                 set_method_param_type(binop_tp_u, 0, tp_u);
2368                 set_method_param_type(binop_tp_u, 1, tp_u);
2369                 set_method_param_type(binop_tp_u, 2, tp_u);
2370                 set_method_param_type(binop_tp_u, 3, tp_u);
2371                 set_method_res_type(binop_tp_u, 0, tp_u);
2372                 set_method_res_type(binop_tp_u, 1, tp_u);
2373         }  /* if */
2374         if (! binop_tp_s) {
2375                 binop_tp_s = new_type_method(IDENT("binop_s_intrinsic"), 4, 2);
2376                 set_method_param_type(binop_tp_s, 0, tp_u);
2377                 set_method_param_type(binop_tp_s, 1, tp_s);
2378                 set_method_param_type(binop_tp_s, 2, tp_u);
2379                 set_method_param_type(binop_tp_s, 3, tp_s);
2380                 set_method_res_type(binop_tp_s, 0, tp_u);
2381                 set_method_res_type(binop_tp_s, 1, tp_s);
2382         }  /* if */
2383         if (! shiftop_tp_u) {
2384                 shiftop_tp_u = new_type_method(IDENT("shiftop_u_intrinsic"), 3, 2);
2385                 set_method_param_type(shiftop_tp_u, 0, tp_u);
2386                 set_method_param_type(shiftop_tp_u, 1, tp_u);
2387                 set_method_param_type(shiftop_tp_u, 2, tp_u);
2388                 set_method_res_type(shiftop_tp_u, 0, tp_u);
2389                 set_method_res_type(shiftop_tp_u, 1, tp_u);
2390         }  /* if */
2391         if (! shiftop_tp_s) {
2392                 shiftop_tp_s = new_type_method(IDENT("shiftop_s_intrinsic"), 3, 2);
2393                 set_method_param_type(shiftop_tp_s, 0, tp_u);
2394                 set_method_param_type(shiftop_tp_s, 1, tp_s);
2395                 /* beware: shift count is always mode_Iu */
2396                 set_method_param_type(shiftop_tp_s, 2, tp_u);
2397                 set_method_res_type(shiftop_tp_s, 0, tp_u);
2398                 set_method_res_type(shiftop_tp_s, 1, tp_s);
2399         }  /* if */
2400         if (! unop_tp_u) {
2401                 unop_tp_u = new_type_method(IDENT("unop_u_intrinsic"), 2, 2);
2402                 set_method_param_type(unop_tp_u, 0, tp_u);
2403                 set_method_param_type(unop_tp_u, 1, tp_u);
2404                 set_method_res_type(unop_tp_u, 0, tp_u);
2405                 set_method_res_type(unop_tp_u, 1, tp_u);
2406         }  /* if */
2407         if (! unop_tp_s) {
2408                 unop_tp_s = new_type_method(IDENT("unop_s_intrinsic"), 2, 2);
2409                 set_method_param_type(unop_tp_s, 0, tp_u);
2410                 set_method_param_type(unop_tp_s, 1, tp_s);
2411                 set_method_res_type(unop_tp_s, 0, tp_u);
2412                 set_method_res_type(unop_tp_s, 1, tp_s);
2413         }  /* if */
2414
2415         lenv.tv_mode_bytes = new_tarval_from_long(get_mode_size_bytes(param->low_unsigned), mode_Iu);
2416         lenv.tv_mode_bits  = new_tarval_from_long(get_mode_size_bits(param->low_unsigned), mode_Iu);
2417         lenv.waitq         = new_pdeq();
2418         lenv.params        = param;
2419
2420         /* first clear the generic function pointer for all ops */
2421         clear_irp_opcodes_generic_func();
2422
2423 #define LOWER2(op, fkt)   enter_lower_func(op_##op, fkt)
2424 #define LOWER(op)         LOWER2(op, lower_##op)
2425 #define LOWER_BIN(op)     LOWER2(op, lower_Binop)
2426 #define LOWER_UN(op)      LOWER2(op, lower_Unop)
2427
2428         /* the table of all operations that must be lowered follows */
2429         LOWER(Load);
2430         LOWER(Store);
2431         LOWER(Const);
2432         LOWER(And);
2433         LOWER(Or);
2434         LOWER(Eor);
2435         LOWER(Not);
2436         LOWER(Cond);
2437         LOWER(Return);
2438         LOWER(Call);
2439         LOWER(Unknown);
2440         LOWER(Phi);
2441         LOWER(Psi);
2442         LOWER(Start);
2443
2444         LOWER_BIN(Add);
2445         LOWER_BIN(Sub);
2446         LOWER_BIN(Mul);
2447         LOWER(Shl);
2448         LOWER(Shr);
2449         LOWER(Shrs);
2450         LOWER(Rotl);
2451         LOWER(DivMod);
2452         LOWER(Div);
2453         LOWER(Mod);
2454         LOWER_UN(Abs);
2455         LOWER_UN(Minus);
2456
2457         LOWER(Conv);
2458
2459 #undef LOWER_UN
2460 #undef LOWER_BIN
2461 #undef LOWER
2462 #undef LOWER2
2463
2464         /* transform all graphs */
2465         rem = current_ir_graph;
2466         for (i = get_irp_n_irgs() - 1; i >= 0; --i) {
2467                 ir_graph *irg = get_irp_irg(i);
2468                 int n_idx;
2469
2470                 obstack_init(&lenv.obst);
2471
2472                 n_idx = get_irg_last_idx(irg);
2473                 lenv.n_entries = n_idx;
2474                 lenv.entries   = xmalloc(n_idx * sizeof(lenv.entries[0]));
2475                 memset(lenv.entries, 0, n_idx * sizeof(lenv.entries[0]));
2476
2477                 /* first step: link all nodes and allocate data */
2478                 lenv.flags = 0;
2479                 lenv.proj_2_block = pmap_create();
2480                 irg_walk_graph(irg, firm_clear_link, prepare_links, &lenv);
2481
2482                 if (lenv.flags & MUST_BE_LOWERED) {
2483                         DB((dbg, LEVEL_1, "Lowering graph %+F\n", irg));
2484
2485                         /* must do some work */
2486                         irg_walk_graph(irg, NULL, lower_ops, &lenv);
2487
2488                         /* last step: all waiting nodes */
2489                         DB((dbg, LEVEL_1, "finishing waiting nodes:\n"));
2490                         current_ir_graph = irg;
2491                         while (! pdeq_empty(lenv.waitq)) {
2492                                 ir_node *node = pdeq_getl(lenv.waitq);
2493
2494                                 lower_ops(node, &lenv);
2495                         }  /* while */
2496
2497                         /* outs are invalid, we changed the graph */
2498                         set_irg_outs_inconsistent(irg);
2499
2500                         if (lenv.flags & CF_CHANGED) {
2501                                 /* control flow changed, dominance info is invalid */
2502                                 set_irg_doms_inconsistent(irg);
2503                                 set_irg_extblk_inconsistent(irg);
2504                                 set_irg_loopinfo_inconsistent(irg);
2505                         }  /* if */
2506                 }  /* if */
2507                 pmap_destroy(lenv.proj_2_block);
2508                 free(lenv.entries);
2509                 obstack_free(&lenv.obst, NULL);
2510         }  /* for */
2511         del_pdeq(lenv.waitq);
2512         current_ir_graph = rem;
2513 }  /* lower_dw_ops */
2514
2515 /* Default implementation. */
2516 ir_entity *def_create_intrinsic_fkt(ir_type *method, const ir_op *op,
2517                                     const ir_mode *imode, const ir_mode *omode,
2518                                     void *context)
2519 {
2520         char buf[64];
2521         ident *id;
2522         ir_entity *ent;
2523         (void) context;
2524
2525         if (imode == omode) {
2526                 snprintf(buf, sizeof(buf), "__l%s%s", get_op_name(op), get_mode_name(imode));
2527         } else {
2528                 snprintf(buf, sizeof(buf), "__l%s%s%s", get_op_name(op),
2529                         get_mode_name(imode), get_mode_name(omode));
2530         }  /* if */
2531         id = new_id_from_str(buf);
2532
2533         ent = new_entity(get_glob_type(), id, method);
2534         set_entity_ld_ident(ent, get_entity_ident(ent));
2535         set_entity_visibility(ent, visibility_external_allocated);
2536         return ent;
2537 }  /* def_create_intrinsic_fkt */