fix cparser warnings
[libfirm] / ir / lower / lower_dw.c
1 /*
2  * Copyright (C) 1995-2011 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, i.e. 64bit -> 32bit, 32bit -> 16bit etc.
23  * @date    8.10.2004
24  * @author  Michael Beck
25  * @version $Id$
26  */
27 #include "config.h"
28
29 #include <string.h>
30 #include <stdlib.h>
31 #include <stdbool.h>
32 #include <assert.h>
33
34 #include "error.h"
35 #include "lowering.h"
36 #include "irnode_t.h"
37 #include "irgraph_t.h"
38 #include "irmode_t.h"
39 #include "iropt_t.h"
40 #include "irgmod.h"
41 #include "tv_t.h"
42 #include "dbginfo_t.h"
43 #include "iropt_dbg.h"
44 #include "irflag_t.h"
45 #include "firmstat.h"
46 #include "irgwalk.h"
47 #include "ircons.h"
48 #include "irflag.h"
49 #include "irtools.h"
50 #include "debug.h"
51 #include "set.h"
52 #include "pmap.h"
53 #include "pdeq.h"
54 #include "irdump.h"
55 #include "array_t.h"
56 #include "irpass_t.h"
57 #include "lower_dw.h"
58
59 /** A map from (op, imode, omode) to Intrinsic functions entities. */
60 static set *intrinsic_fkt;
61
62 /** A map from (imode, omode) to conv function types. */
63 static set *conv_types;
64
65 /** A map from a method type to its lowered type. */
66 static pmap *lowered_type;
67
68 /** The types for the binop and unop intrinsics. */
69 static ir_type *binop_tp_u, *binop_tp_s, *unop_tp_u, *unop_tp_s, *tp_s, *tp_u;
70
71 /** the debug handle */
72 DEBUG_ONLY(static firm_dbg_module_t *dbg = NULL;)
73
74 /**
75  * An entry in the (op, imode, omode) -> entity map.
76  */
77 typedef struct op_mode_entry {
78         const ir_op   *op;    /**< the op */
79         const ir_mode *imode; /**< the input mode */
80         const ir_mode *omode; /**< the output mode */
81         ir_entity     *ent;   /**< the associated entity of this (op, imode, omode) triple */
82 } op_mode_entry_t;
83
84 /**
85  * An entry in the (imode, omode) -> tp map.
86  */
87 typedef struct conv_tp_entry {
88         const ir_mode *imode; /**< the input mode */
89         const ir_mode *omode; /**< the output mode */
90         ir_type       *mtd;   /**< the associated method type of this (imode, omode) pair */
91 } conv_tp_entry_t;
92
93 enum lower_flags {
94         MUST_BE_LOWERED = 1,  /**< graph must be lowered */
95         CF_CHANGED      = 2,  /**< control flow was changed */
96 };
97
98 /**
99  * The lower environment.
100  */
101 typedef struct lower_dw_env_t {
102         lower64_entry_t **entries;     /**< entries per node */
103         ir_graph      *irg;
104         struct obstack obst;           /**< an obstack holding the temporary data */
105         ir_type   *l_mtp;              /**< lowered method type of the current method */
106         ir_tarval *tv_mode_bytes;      /**< a tarval containing the number of bytes in the lowered modes */
107         ir_tarval *tv_mode_bits;       /**< a tarval containing the number of bits in the lowered modes */
108         pdeq      *waitq;              /**< a wait queue of all nodes that must be handled later */
109         ir_node  **lowered_phis;       /**< list of lowered phis */
110         ir_mode   *high_signed;        /**< doubleword signed type */
111         ir_mode   *high_unsigned;      /**< doubleword unsigned type */
112         ir_mode   *low_signed;         /**< word signed type */
113         ir_mode   *low_unsigned;       /**< word unsigned type */
114         ident     *first_id;           /**< .l for little and .h for big endian */
115         ident     *next_id;            /**< .h for little and .l for big endian */
116         const lwrdw_param_t *params;   /**< transformation parameter */
117         unsigned flags;                /**< some flags */
118         unsigned n_entries;            /**< number of entries */
119         ir_type  *value_param_tp;      /**< the old value param type */
120 } lower_dw_env_t;
121
122 static lower_dw_env_t *env;
123
124 static void lower_node(ir_node *node);
125 static bool mtp_must_be_lowered(ir_type *mtp);
126
127 /**
128  * Create a method type for a Conv emulation from imode to omode.
129  */
130 static ir_type *get_conv_type(ir_mode *imode, ir_mode *omode)
131 {
132         conv_tp_entry_t key, *entry;
133         ir_type *mtd;
134
135         key.imode = imode;
136         key.omode = omode;
137         key.mtd   = NULL;
138
139         entry = (conv_tp_entry_t*)set_insert(conv_types, &key, sizeof(key), HASH_PTR(imode) ^ HASH_PTR(omode));
140         if (! entry->mtd) {
141                 int n_param = 1, n_res = 1;
142
143                 if (imode == env->high_signed || imode == env->high_unsigned)
144                         n_param = 2;
145                 if (omode == env->high_signed || omode == env->high_unsigned)
146                         n_res = 2;
147
148                 /* create a new one */
149                 mtd = new_type_method(n_param, n_res);
150
151                 /* set param types and result types */
152                 n_param = 0;
153                 if (imode == env->high_signed) {
154                         set_method_param_type(mtd, n_param++, tp_u);
155                         set_method_param_type(mtd, n_param++, tp_s);
156                 } else if (imode == env->high_unsigned) {
157                         set_method_param_type(mtd, n_param++, tp_u);
158                         set_method_param_type(mtd, n_param++, tp_u);
159                 } else {
160                         ir_type *tp = get_type_for_mode(imode);
161                         set_method_param_type(mtd, n_param++, tp);
162                 }
163
164                 n_res = 0;
165                 if (omode == env->high_signed) {
166                         set_method_res_type(mtd, n_res++, tp_u);
167                         set_method_res_type(mtd, n_res++, tp_s);
168                 } else if (omode == env->high_unsigned) {
169                         set_method_res_type(mtd, n_res++, tp_u);
170                         set_method_res_type(mtd, n_res++, tp_u);
171                 } else {
172                         ir_type *tp = get_type_for_mode(omode);
173                         set_method_res_type(mtd, n_res++, tp);
174                 }
175                 entry->mtd = mtd;
176         } else {
177                 mtd = entry->mtd;
178         }
179         return mtd;
180 }
181
182 /**
183  * Add an additional control flow input to a block.
184  * Patch all Phi nodes. The new Phi inputs are copied from
185  * old input number nr.
186  */
187 static void add_block_cf_input_nr(ir_node *block, int nr, ir_node *cf)
188 {
189         int i, arity = get_irn_arity(block);
190         ir_node **in;
191         const ir_edge_t *edge;
192
193         assert(nr < arity);
194
195         NEW_ARR_A(ir_node *, in, arity + 1);
196         for (i = 0; i < arity; ++i)
197                 in[i] = get_irn_n(block, i);
198         in[i] = cf;
199
200         set_irn_in(block, i + 1, in);
201
202         foreach_out_edge(block, edge) {
203                 ir_node *phi = get_edge_src_irn(edge);
204                 if (!is_Phi(phi))
205                         continue;
206
207                 for (i = 0; i < arity; ++i)
208                         in[i] = get_irn_n(phi, i);
209                 in[i] = in[nr];
210                 set_irn_in(phi, i + 1, in);
211         }
212 }
213
214 /**
215  * Add an additional control flow input to a block.
216  * Patch all Phi nodes. The new Phi inputs are copied from
217  * old input from cf tmpl.
218  */
219 static void add_block_cf_input(ir_node *block, ir_node *tmpl, ir_node *cf)
220 {
221         int i, arity = get_irn_arity(block);
222         int nr = 0;
223
224         for (i = 0; i < arity; ++i) {
225                 if (get_irn_n(block, i) == tmpl) {
226                         nr = i;
227                         break;
228                 }
229         }
230         assert(i < arity);
231         add_block_cf_input_nr(block, nr, cf);
232 }
233
234 /**
235  * Return the "operational" mode of a Firm node.
236  */
237 static ir_mode *get_irn_op_mode(ir_node *node)
238 {
239         switch (get_irn_opcode(node)) {
240         case iro_Load:
241                 return get_Load_mode(node);
242         case iro_Store:
243                 return get_irn_mode(get_Store_value(node));
244         case iro_Div:
245                 return get_irn_mode(get_Div_left(node));
246         case iro_Mod:
247                 return get_irn_mode(get_Mod_left(node));
248         case iro_Cmp:
249                 return get_irn_mode(get_Cmp_left(node));
250         default:
251                 return get_irn_mode(node);
252         }
253 }
254
255 /**
256  * Walker, prepare the node links and determine which nodes need to be lowered
257  * at all.
258  */
259 static void prepare_links(ir_node *node)
260 {
261         ir_mode         *mode = get_irn_op_mode(node);
262         lower64_entry_t *link;
263
264         if (mode == env->high_signed || mode == env->high_unsigned) {
265                 unsigned idx = get_irn_idx(node);
266                 /* ok, found a node that will be lowered */
267                 link = OALLOCZ(&env->obst, lower64_entry_t);
268
269                 if (idx >= env->n_entries) {
270                         /* enlarge: this happens only for Rotl nodes which is RARELY */
271                         unsigned old   = env->n_entries;
272                         unsigned n_idx = idx + (idx >> 3);
273
274                         ARR_RESIZE(lower64_entry_t *, env->entries, n_idx);
275                         memset(&env->entries[old], 0, (n_idx - old) * sizeof(env->entries[0]));
276                         env->n_entries = n_idx;
277                 }
278                 env->entries[idx] = link;
279                 env->flags |= MUST_BE_LOWERED;
280         } else if (is_Conv(node)) {
281                 /* Conv nodes have two modes */
282                 ir_node *pred = get_Conv_op(node);
283                 mode = get_irn_mode(pred);
284
285                 if (mode == env->high_signed || mode == env->high_unsigned) {
286                         /* must lower this node either but don't need a link */
287                         env->flags |= MUST_BE_LOWERED;
288                 }
289                 return;
290         }
291 }
292
293 lower64_entry_t *get_node_entry(ir_node *node)
294 {
295         unsigned idx = get_irn_idx(node);
296         assert(idx < env->n_entries);
297         return env->entries[idx];
298 }
299
300 void ir_set_dw_lowered(ir_node *old, ir_node *new_low, ir_node *new_high)
301 {
302         lower64_entry_t *entry = get_node_entry(old);
303         entry->low_word  = new_low;
304         entry->high_word = new_high;
305 }
306
307 ir_mode *ir_get_low_unsigned_mode(void)
308 {
309         return env->low_unsigned;
310 }
311
312 /**
313  * Translate a Constant: create two.
314  */
315 static void lower_Const(ir_node *node, ir_mode *mode)
316 {
317         ir_graph  *irg      = get_irn_irg(node);
318         dbg_info  *dbg      = get_irn_dbg_info(node);
319         ir_mode   *low_mode = env->low_unsigned;
320         ir_tarval *tv       = get_Const_tarval(node);
321         ir_tarval *tv_l     = tarval_convert_to(tv, low_mode);
322         ir_node   *res_low  = new_rd_Const(dbg, irg, tv_l);
323         ir_tarval *tv_shrs  = tarval_shrs(tv, env->tv_mode_bits);
324         ir_tarval *tv_h     = tarval_convert_to(tv_shrs, mode);
325         ir_node   *res_high = new_rd_Const(dbg, irg, tv_h);
326
327         ir_set_dw_lowered(node, res_low, res_high);
328 }
329
330 /**
331  * Translate a Load: create two.
332  */
333 static void lower_Load(ir_node *node, ir_mode *mode)
334 {
335         ir_mode    *low_mode = env->low_unsigned;
336         ir_graph   *irg = get_irn_irg(node);
337         ir_node    *adr = get_Load_ptr(node);
338         ir_node    *mem = get_Load_mem(node);
339         ir_node    *low, *high, *proj;
340         dbg_info   *dbg;
341         ir_node    *block = get_nodes_block(node);
342         ir_cons_flags volatility = get_Load_volatility(node) == volatility_is_volatile
343                                  ? cons_volatile : cons_none;
344         const ir_edge_t *edge;
345         const ir_edge_t *next;
346
347         if (env->params->little_endian) {
348                 low  = adr;
349                 high = new_r_Add(block, adr, new_r_Const(irg, env->tv_mode_bytes), get_irn_mode(adr));
350         } else {
351                 low  = new_r_Add(block, adr, new_r_Const(irg, env->tv_mode_bytes), get_irn_mode(adr));
352                 high = adr;
353         }
354
355         /* create two loads */
356         dbg  = get_irn_dbg_info(node);
357         low  = new_rd_Load(dbg, block, mem,  low,  low_mode, volatility);
358         proj = new_r_Proj(low, mode_M, pn_Load_M);
359         high = new_rd_Load(dbg, block, proj, high, mode, volatility);
360
361         foreach_out_edge_safe(node, edge, next) {
362                 ir_node *proj = get_edge_src_irn(edge);
363                 if (!is_Proj(proj))
364                         continue;
365
366                 switch (get_Proj_proj(proj)) {
367                 case pn_Load_M:         /* Memory result. */
368                         /* put it to the second one */
369                         set_Proj_pred(proj, high);
370                         break;
371                 case pn_Load_X_except:  /* Execution result if exception occurred. */
372                         /* put it to the first one */
373                         set_Proj_pred(proj, low);
374                         break;
375                 case pn_Load_res: {       /* Result of load operation. */
376                         ir_node *res_low  = new_r_Proj(low,  low_mode, pn_Load_res);
377                         ir_node *res_high = new_r_Proj(high, mode,     pn_Load_res);
378                         ir_set_dw_lowered(proj, res_low, res_high);
379                         break;
380                 }
381                 default:
382                         assert(0 && "unexpected Proj number");
383                 }
384                 /* mark this proj: we have handled it already, otherwise we might fall
385                  * into out new nodes. */
386                 mark_irn_visited(proj);
387         }
388 }
389
390 /**
391  * Translate a Store: create two.
392  */
393 static void lower_Store(ir_node *node, ir_mode *mode)
394 {
395         ir_graph              *irg;
396         ir_node               *block, *adr, *mem;
397         ir_node               *low, *high, *proj;
398         dbg_info              *dbg;
399         ir_node               *value = get_Store_value(node);
400         const lower64_entry_t *entry = get_node_entry(value);
401         ir_cons_flags volatility = get_Store_volatility(node) == volatility_is_volatile
402                                    ? cons_volatile : cons_none;
403         const ir_edge_t *edge;
404         const ir_edge_t *next;
405         (void) mode;
406
407         assert(entry);
408
409         if (! entry->low_word) {
410                 /* not ready yet, wait */
411                 pdeq_putr(env->waitq, node);
412                 return;
413         }
414
415         irg = get_irn_irg(node);
416         adr = get_Store_ptr(node);
417         mem = get_Store_mem(node);
418         block = get_nodes_block(node);
419
420         if (env->params->little_endian) {
421                 low  = adr;
422                 high = new_r_Add(block, adr, new_r_Const(irg, env->tv_mode_bytes), get_irn_mode(adr));
423         } else {
424                 low  = new_r_Add(block, adr, new_r_Const(irg, env->tv_mode_bytes), get_irn_mode(adr));
425                 high = adr;
426         }
427
428         /* create two Stores */
429         dbg = get_irn_dbg_info(node);
430         low  = new_rd_Store(dbg, block, mem, low,  entry->low_word, volatility);
431         proj = new_r_Proj(low, mode_M, pn_Store_M);
432         high = new_rd_Store(dbg, block, proj, high, entry->high_word, volatility);
433
434         foreach_out_edge_safe(node, edge, next) {
435                 ir_node *proj = get_edge_src_irn(edge);
436                 if (!is_Proj(proj))
437                         continue;
438
439                 switch (get_Proj_proj(proj)) {
440                 case pn_Store_M:         /* Memory result. */
441                         /* put it to the second one */
442                         set_Proj_pred(proj, high);
443                         break;
444                 case pn_Store_X_except:  /* Execution result if exception occurred. */
445                         /* put it to the first one */
446                         set_Proj_pred(proj, low);
447                         break;
448                 default:
449                         assert(0 && "unexpected Proj number");
450                 }
451                 /* mark this proj: we have handled it already, otherwise we might fall into
452                  * out new nodes. */
453                 mark_irn_visited(proj);
454         }
455 }
456
457 /**
458  * Return a node containing the address of the intrinsic emulation function.
459  *
460  * @param method  the method type of the emulation function
461  * @param op      the emulated ir_op
462  * @param imode   the input mode of the emulated opcode
463  * @param omode   the output mode of the emulated opcode
464  * @param env     the lower environment
465  */
466 static ir_node *get_intrinsic_address(ir_type *method, ir_op *op,
467                                       ir_mode *imode, ir_mode *omode)
468 {
469         symconst_symbol sym;
470         ir_entity *ent;
471         op_mode_entry_t key, *entry;
472
473         key.op    = op;
474         key.imode = imode;
475         key.omode = omode;
476         key.ent   = NULL;
477
478         entry = (op_mode_entry_t*)set_insert(intrinsic_fkt, &key, sizeof(key),
479                                 HASH_PTR(op) ^ HASH_PTR(imode) ^ (HASH_PTR(omode) << 8));
480         if (! entry->ent) {
481                 /* create a new one */
482                 ent = env->params->create_intrinsic(method, op, imode, omode, env->params->ctx);
483
484                 assert(ent && "Intrinsic creator must return an entity");
485                 entry->ent = ent;
486         } else {
487                 ent = entry->ent;
488         }
489         sym.entity_p = ent;
490         return new_r_SymConst(env->irg, mode_P_code, sym, symconst_addr_ent);
491 }
492
493 /**
494  * Translate a Div.
495  *
496  * Create an intrinsic Call.
497  */
498 static void lower_Div(ir_node *node, ir_mode *mode)
499 {
500         ir_node         *left   = get_Div_left(node);
501         ir_node         *right  = get_Div_right(node);
502         ir_node         *block  = get_nodes_block(node);
503         dbg_info        *dbgi   = get_irn_dbg_info(node);
504         ir_type         *mtp    = mode_is_signed(mode) ? binop_tp_s : binop_tp_u;
505         ir_mode         *opmode = get_irn_op_mode(node);
506         ir_node         *addr
507             = get_intrinsic_address(mtp, get_irn_op(node), opmode, opmode);
508         ir_node         *in[4];
509         ir_node         *call;
510         ir_node         *resproj;
511         const ir_edge_t *edge;
512         const ir_edge_t *next;
513
514         if (env->params->little_endian) {
515                 in[0] = get_lowered_low(left);
516                 in[1] = get_lowered_high(left);
517                 in[2] = get_lowered_low(right);
518                 in[3] = get_lowered_high(right);
519         } else {
520                 in[0] = get_lowered_high(left);
521                 in[1] = get_lowered_low(left);
522                 in[2] = get_lowered_high(right);
523                 in[3] = get_lowered_low(right);
524         }
525         call    = new_rd_Call(dbgi, block, get_Div_mem(node), addr, 4, in, mtp);
526         resproj = new_r_Proj(call, mode_T, pn_Call_T_result);
527         set_irn_pinned(call, get_irn_pinned(node));
528
529         foreach_out_edge_safe(node, edge, next) {
530                 ir_node *proj = get_edge_src_irn(edge);
531                 if (!is_Proj(proj))
532                         continue;
533
534                 switch (get_Proj_proj(proj)) {
535                 case pn_Div_M:         /* Memory result. */
536                         /* reroute to the call */
537                         set_Proj_pred(proj, call);
538                         set_Proj_proj(proj, pn_Call_M);
539                         break;
540                 case pn_Div_X_regular:
541                         set_Proj_pred(proj, call);
542                         set_Proj_proj(proj, pn_Call_X_regular);
543                         break;
544                 case pn_Div_X_except:
545                         set_Proj_pred(proj, call);
546                         set_Proj_proj(proj, pn_Call_X_except);
547                         break;
548                 case pn_Div_res:
549                         if (env->params->little_endian) {
550                                 ir_node *res_low  = new_r_Proj(resproj, env->low_unsigned, 0);
551                                 ir_node *res_high = new_r_Proj(resproj, mode,              1);
552                                 ir_set_dw_lowered(proj, res_low, res_high);
553                         } else {
554                                 ir_node *res_low  = new_r_Proj(resproj, env->low_unsigned, 1);
555                                 ir_node *res_high = new_r_Proj(resproj, mode,              0);
556                                 ir_set_dw_lowered(proj, res_low, res_high);
557                         }
558                         break;
559                 default:
560                         assert(0 && "unexpected Proj number");
561                 }
562                 /* mark this proj: we have handled it already, otherwise we might fall into
563                  * out new nodes. */
564                 mark_irn_visited(proj);
565         }
566 }
567
568 /**
569  * Translate a Mod.
570  *
571  * Create an intrinsic Call.
572  */
573 static void lower_Mod(ir_node *node, ir_mode *mode)
574 {
575         ir_node         *left   = get_Mod_left(node);
576         ir_node         *right  = get_Mod_right(node);
577         dbg_info        *dbgi   = get_irn_dbg_info(node);
578         ir_node         *block  = get_nodes_block(node);
579         ir_type         *mtp    = mode_is_signed(mode) ? binop_tp_s : binop_tp_u;
580         ir_mode         *opmode = get_irn_op_mode(node);
581         ir_node         *addr
582             = get_intrinsic_address(mtp, get_irn_op(node), opmode, opmode);
583         ir_node         *in[4];
584         ir_node         *call;
585         ir_node         *resproj;
586         const ir_edge_t *edge;
587         const ir_edge_t *next;
588
589         if (env->params->little_endian) {
590                 in[0] = get_lowered_low(left);
591                 in[1] = get_lowered_high(left);
592                 in[2] = get_lowered_low(right);
593                 in[3] = get_lowered_high(right);
594         } else {
595                 in[0] = get_lowered_high(left);
596                 in[1] = get_lowered_low(left);
597                 in[2] = get_lowered_high(right);
598                 in[3] = get_lowered_low(right);
599         }
600         call    = new_rd_Call(dbgi, block, get_Mod_mem(node), addr, 4, in, mtp);
601         resproj = new_r_Proj(call, mode_T, pn_Call_T_result);
602         set_irn_pinned(call, get_irn_pinned(node));
603
604         foreach_out_edge_safe(node, edge, next) {
605                 ir_node *proj = get_edge_src_irn(edge);
606                 if (!is_Proj(proj))
607                         continue;
608
609                 switch (get_Proj_proj(proj)) {
610                 case pn_Mod_M:         /* Memory result. */
611                         /* reroute to the call */
612                         set_Proj_pred(proj, call);
613                         set_Proj_proj(proj, pn_Call_M);
614                         break;
615                 case pn_Div_X_regular:
616                         set_Proj_pred(proj, call);
617                         set_Proj_proj(proj, pn_Call_X_regular);
618                         break;
619                 case pn_Mod_X_except:
620                         set_Proj_pred(proj, call);
621                         set_Proj_proj(proj, pn_Call_X_except);
622                         break;
623                 case pn_Mod_res:
624                         if (env->params->little_endian) {
625                                 ir_node *res_low  = new_r_Proj(resproj, env->low_unsigned, 0);
626                                 ir_node *res_high = new_r_Proj(resproj, mode,              1);
627                                 ir_set_dw_lowered(proj, res_low, res_high);
628                         } else {
629                                 ir_node *res_low  = new_r_Proj(resproj, env->low_unsigned, 1);
630                                 ir_node *res_high = new_r_Proj(resproj, mode,              0);
631                                 ir_set_dw_lowered(proj, res_low, res_high);
632                         }
633                         break;
634                 default:
635                         assert(0 && "unexpected Proj number");
636                 }
637                 /* mark this proj: we have handled it already, otherwise we might fall
638                  * into out new nodes. */
639                 mark_irn_visited(proj);
640         }
641 }
642
643 /**
644  * Translate a binop.
645  *
646  * Create an intrinsic Call.
647  */
648 static void lower_binop(ir_node *node, ir_mode *mode)
649 {
650         ir_node  *left  = get_binop_left(node);
651         ir_node  *right = get_binop_right(node);
652         dbg_info *dbgi  = get_irn_dbg_info(node);
653         ir_node  *block = get_nodes_block(node);
654         ir_graph *irg   = get_irn_irg(block);
655         ir_type  *mtp   = mode_is_signed(mode) ? binop_tp_s : binop_tp_u;
656         ir_node  *addr  = get_intrinsic_address(mtp, get_irn_op(node), mode, mode);
657         ir_node  *in[4];
658         ir_node  *call;
659         ir_node  *resproj;
660
661         if (env->params->little_endian) {
662                 in[0] = get_lowered_low(left);
663                 in[1] = get_lowered_high(left);
664                 in[2] = get_lowered_low(right);
665                 in[3] = get_lowered_high(right);
666         } else {
667                 in[0] = get_lowered_high(left);
668                 in[1] = get_lowered_low(left);
669                 in[2] = get_lowered_high(right);
670                 in[3] = get_lowered_low(right);
671         }
672         call    = new_rd_Call(dbgi, block, get_irg_no_mem(irg), addr, 4, in, mtp);
673         resproj = new_r_Proj(call, mode_T, pn_Call_T_result);
674         set_irn_pinned(call, get_irn_pinned(node));
675
676         if (env->params->little_endian) {
677                 ir_node *res_low  = new_r_Proj(resproj, env->low_unsigned, 0);
678                 ir_node *res_high = new_r_Proj(resproj, mode,              1);
679                 ir_set_dw_lowered(node, res_low, res_high);
680         } else {
681                 ir_node *res_low  = new_r_Proj(resproj, env->low_unsigned, 1);
682                 ir_node *res_high = new_r_Proj(resproj, mode,              0);
683                 ir_set_dw_lowered(node, res_low, res_high);
684         }
685 }
686
687 static ir_node *create_conv(ir_node *block, ir_node *node, ir_mode *dest_mode)
688 {
689         if (get_irn_mode(node) == dest_mode)
690                 return node;
691         return new_r_Conv(block, node, dest_mode);
692 }
693
694 /**
695  * Moves node and all predecessors of node from from_bl to to_bl.
696  * Does not move predecessors of Phi nodes (or block nodes).
697  */
698 static void move(ir_node *node, ir_node *from_bl, ir_node *to_bl)
699 {
700         int i, arity;
701
702         /* move this node */
703         set_nodes_block(node, to_bl);
704
705         /* move its Projs */
706         if (get_irn_mode(node) == mode_T) {
707                 const ir_edge_t *edge;
708                 foreach_out_edge(node, edge) {
709                         ir_node *proj = get_edge_src_irn(edge);
710                         if (!is_Proj(proj))
711                                 continue;
712                         move(proj, from_bl, to_bl);
713                 }
714         }
715
716         /* We must not move predecessors of Phi nodes, even if they are in
717          * from_bl. (because these are values from an earlier loop iteration
718          * which are not predecessors of node here)
719          */
720         if (is_Phi(node))
721                 return;
722
723         /* recursion ... */
724         arity = get_irn_arity(node);
725         for (i = 0; i < arity; i++) {
726                 ir_node *pred      = get_irn_n(node, i);
727                 ir_mode *pred_mode = get_irn_mode(pred);
728                 if (get_nodes_block(pred) == from_bl)
729                         move(pred, from_bl, to_bl);
730                 if (pred_mode == env->high_signed || pred_mode == env->high_unsigned) {
731                         ir_node *pred_low  = get_lowered_low(pred);
732                         ir_node *pred_high = get_lowered_high(pred);
733                         if (get_nodes_block(pred_low) == from_bl)
734                                 move(pred_low, from_bl, to_bl);
735                         if (pred_high != NULL && get_nodes_block(pred_high) == from_bl)
736                                 move(pred_high, from_bl, to_bl);
737                 }
738         }
739 }
740
741 /**
742  * We need a custom version of part_block_edges because during transformation
743  * not all data-dependencies are explicit yet if a lowered nodes users are not
744  * lowered yet.
745  * We can fix this by modifying move to look for such implicit dependencies.
746  * Additionally we have to keep the proj_2_block map updated
747  */
748 static ir_node *part_block_dw(ir_node *node)
749 {
750         ir_graph *irg        = get_irn_irg(node);
751         ir_node  *old_block  = get_nodes_block(node);
752         int       n_cfgpreds = get_Block_n_cfgpreds(old_block);
753         ir_node **cfgpreds   = get_Block_cfgpred_arr(old_block);
754         ir_node  *new_block  = new_r_Block(irg, n_cfgpreds, cfgpreds);
755         const ir_edge_t *edge;
756         const ir_edge_t *next;
757
758         /* old_block has no predecessors anymore for now */
759         set_irn_in(old_block, 0, NULL);
760
761         /* move node and its predecessors to new_block */
762         move(node, old_block, new_block);
763
764         /* move Phi nodes to new_block */
765         foreach_out_edge_safe(old_block, edge, next) {
766                 ir_node *phi = get_edge_src_irn(edge);
767                 if (!is_Phi(phi))
768                         continue;
769                 set_nodes_block(phi, new_block);
770         }
771         return old_block;
772 }
773
774 typedef ir_node* (*new_rd_shr_func)(dbg_info *dbgi, ir_node *block,
775                                     ir_node *left, ir_node *right,
776                                     ir_mode *mode);
777
778 static void lower_shr_helper(ir_node *node, ir_mode *mode,
779                              new_rd_shr_func new_rd_shrs)
780 {
781         ir_node  *right         = get_binop_right(node);
782         ir_node  *left          = get_binop_left(node);
783         ir_mode  *shr_mode      = get_irn_mode(node);
784         unsigned  modulo_shift  = get_mode_modulo_shift(shr_mode);
785         ir_mode  *low_unsigned  = env->low_unsigned;
786         unsigned  modulo_shift2 = get_mode_modulo_shift(mode);
787         ir_graph *irg           = get_irn_irg(node);
788         ir_node  *left_low      = get_lowered_low(left);
789         ir_node  *left_high     = get_lowered_high(left);
790         dbg_info *dbgi          = get_irn_dbg_info(node);
791         ir_node  *lower_block;
792         ir_node  *block;
793         ir_node  *cnst;
794         ir_node  *and;
795         ir_node  *cmp;
796         ir_node  *cond;
797         ir_node  *proj_true;
798         ir_node  *proj_false;
799         ir_node  *phi_low;
800         ir_node  *phi_high;
801         ir_node  *lower_in[2];
802         ir_node  *phi_low_in[2];
803         ir_node  *phi_high_in[2];
804
805         /* this version is optimized for modulo shift architectures
806          * (and can't handle anything else) */
807         if (modulo_shift != get_mode_size_bits(shr_mode)
808                         || modulo_shift2<<1 != modulo_shift) {
809                 panic("Shr lowering only implemented for modulo shift shr operations");
810         }
811         if (!is_po2(modulo_shift) || !is_po2(modulo_shift2)) {
812                 panic("Shr lowering only implemented for power-of-2 modes");
813         }
814         /* without 2-complement the -x instead of (bit_width-x) trick won't work */
815         if (get_mode_arithmetic(shr_mode) != irma_twos_complement) {
816                 panic("Shr lowering only implemented for two-complement modes");
817         }
818
819         /* if the right operand is a 64bit value, we're only interested in the
820          * lower word */
821         if (get_irn_mode(right) == env->high_unsigned) {
822                 right = get_lowered_low(right);
823         } else {
824                 /* shift should never have signed mode on the right */
825                 ir_node *block = get_nodes_block(node);
826                 assert(get_irn_mode(right) != env->high_signed);
827                 right = create_conv(block, right, low_unsigned);
828         }
829
830         lower_block = part_block_dw(node);
831         env->flags |= CF_CHANGED;
832         block = get_nodes_block(node);
833
834         /* add a Cmp to test if highest bit is set <=> whether we shift more
835          * than half the word width */
836         cnst       = new_r_Const_long(irg, low_unsigned, modulo_shift2);
837         and        = new_r_And(block, right, cnst, low_unsigned);
838         cnst       = new_r_Const(irg, get_mode_null(low_unsigned));
839         cmp        = new_rd_Cmp(dbgi, block, and, cnst, ir_relation_equal);
840         cond       = new_rd_Cond(dbgi, block, cmp);
841         proj_true  = new_r_Proj(cond, mode_X, pn_Cond_true);
842         proj_false = new_r_Proj(cond, mode_X, pn_Cond_false);
843
844         /* the true block => shift_width < 1word */
845         {
846                 /* In theory the low value (for 64bit shifts) is:
847                  *    Or(High << (32-x)), Low >> x)
848                  * In practice High << 32-x will fail when x is zero (since we have
849                  * modulo shift and 32 will be 0). So instead we use:
850                  *    Or(High<<1<<~x, Low >> x)
851                  */
852                 ir_node *in[1]        = { proj_true };
853                 ir_node *block_true   = new_r_Block(irg, ARRAY_SIZE(in), in);
854                 ir_node *res_high     = new_rd_shrs(dbgi, block_true, left_high,
855                                                     right, mode);
856                 ir_node *shift_low    = new_rd_Shr(dbgi, block_true, left_low, right,
857                                                    low_unsigned);
858                 ir_node *not_shiftval = new_rd_Not(dbgi, block_true, right,
859                                                    low_unsigned);
860                 ir_node *conv         = create_conv(block_true, left_high,
861                                                     low_unsigned);
862                 ir_node *one          = new_r_Const(irg, get_mode_one(low_unsigned));
863                 ir_node *carry0       = new_rd_Shl(dbgi, block_true, conv, one,
864                                                    low_unsigned);
865                 ir_node *carry1       = new_rd_Shl(dbgi, block_true, carry0,
866                                                    not_shiftval, low_unsigned);
867                 ir_node *res_low      = new_rd_Or(dbgi, block_true, shift_low, carry1,
868                                                   low_unsigned);
869                 lower_in[0]           = new_r_Jmp(block_true);
870                 phi_low_in[0]         = res_low;
871                 phi_high_in[0]        = res_high;
872         }
873
874         /* false block => shift_width > 1word */
875         {
876                 ir_node *in[1]       = { proj_false };
877                 ir_node *block_false = new_r_Block(irg, ARRAY_SIZE(in), in);
878                 ir_node *conv        = create_conv(block_false, left_high, low_unsigned);
879                 ir_node *res_low     = new_rd_shrs(dbgi, block_false, conv, right,
880                                                    low_unsigned);
881                 int      cnsti       = modulo_shift2-1;
882                 ir_node *cnst        = new_r_Const_long(irg, low_unsigned, cnsti);
883                 ir_node *res_high;
884                 if (new_rd_shrs == new_rd_Shrs) {
885                         res_high = new_rd_shrs(dbgi, block_false, left_high, cnst, mode);
886                 } else {
887                         res_high = new_r_Const(irg, get_mode_null(mode));
888                 }
889                 lower_in[1]          = new_r_Jmp(block_false);
890                 phi_low_in[1]        = res_low;
891                 phi_high_in[1]       = res_high;
892         }
893
894         /* patch lower block */
895         set_irn_in(lower_block, ARRAY_SIZE(lower_in), lower_in);
896         phi_low  = new_r_Phi(lower_block, ARRAY_SIZE(phi_low_in), phi_low_in,
897                              low_unsigned);
898         phi_high = new_r_Phi(lower_block, ARRAY_SIZE(phi_high_in), phi_high_in,
899                              mode);
900         ir_set_dw_lowered(node, phi_low, phi_high);
901 }
902
903 static void lower_Shr(ir_node *node, ir_mode *mode)
904 {
905         lower_shr_helper(node, mode, new_rd_Shr);
906 }
907
908 static void lower_Shrs(ir_node *node, ir_mode *mode)
909 {
910         lower_shr_helper(node, mode, new_rd_Shrs);
911 }
912
913 static void lower_Shl(ir_node *node, ir_mode *mode)
914 {
915         ir_node  *right         = get_binop_right(node);
916         ir_node  *left          = get_binop_left(node);
917         ir_mode  *shr_mode      = get_irn_mode(node);
918         unsigned  modulo_shift  = get_mode_modulo_shift(shr_mode);
919         ir_mode  *low_unsigned  = env->low_unsigned;
920         unsigned  modulo_shift2 = get_mode_modulo_shift(mode);
921         ir_graph *irg           = get_irn_irg(node);
922         ir_node  *left_low      = get_lowered_low(left);
923         ir_node  *left_high     = get_lowered_high(left);
924         dbg_info *dbgi          = get_irn_dbg_info(node);
925         ir_node  *lower_block   = get_nodes_block(node);
926         ir_node  *block;
927         ir_node  *cnst;
928         ir_node  *and;
929         ir_node  *cmp;
930         ir_node  *cond;
931         ir_node  *proj_true;
932         ir_node  *proj_false;
933         ir_node  *phi_low;
934         ir_node  *phi_high;
935         ir_node  *lower_in[2];
936         ir_node  *phi_low_in[2];
937         ir_node  *phi_high_in[2];
938
939         /* this version is optimized for modulo shift architectures
940          * (and can't handle anything else) */
941         if (modulo_shift != get_mode_size_bits(shr_mode)
942                         || modulo_shift2<<1 != modulo_shift) {
943                 panic("Shr lowering only implemented for modulo shift shr operations");
944         }
945         if (!is_po2(modulo_shift) || !is_po2(modulo_shift2)) {
946                 panic("Shr lowering only implemented for power-of-2 modes");
947         }
948         /* without 2-complement the -x instead of (bit_width-x) trick won't work */
949         if (get_mode_arithmetic(shr_mode) != irma_twos_complement) {
950                 panic("Shr lowering only implemented for two-complement modes");
951         }
952
953         /* if the right operand is a 64bit value, we're only interested in the
954          * lower word */
955         if (get_irn_mode(right) == env->high_unsigned) {
956                 right = get_lowered_low(right);
957         } else {
958                 /* shift should never have signed mode on the right */
959                 assert(get_irn_mode(right) != env->high_signed);
960                 right = create_conv(lower_block, right, low_unsigned);
961         }
962
963         part_block_dw(node);
964         env->flags |= CF_CHANGED;
965         block = get_nodes_block(node);
966
967         /* add a Cmp to test if highest bit is set <=> whether we shift more
968          * than half the word width */
969         cnst       = new_r_Const_long(irg, low_unsigned, modulo_shift2);
970         and        = new_r_And(block, right, cnst, low_unsigned);
971         cnst       = new_r_Const(irg, get_mode_null(low_unsigned));
972         cmp        = new_rd_Cmp(dbgi, block, and, cnst, ir_relation_equal);
973         cond       = new_rd_Cond(dbgi, block, cmp);
974         proj_true  = new_r_Proj(cond, mode_X, pn_Cond_true);
975         proj_false = new_r_Proj(cond, mode_X, pn_Cond_false);
976
977         /* the true block => shift_width < 1word */
978         {
979                 ir_node *in[1]        = { proj_true };
980                 ir_node *block_true   = new_r_Block(irg, ARRAY_SIZE(in), in);
981
982                 ir_node *res_low      = new_rd_Shl(dbgi, block_true, left_low,
983                                                    right, low_unsigned);
984                 ir_node *shift_high   = new_rd_Shl(dbgi, block_true, left_high, right,
985                                                    mode);
986                 ir_node *not_shiftval = new_rd_Not(dbgi, block_true, right,
987                                                    low_unsigned);
988                 ir_node *conv         = create_conv(block_true, left_low, mode);
989                 ir_node *one          = new_r_Const(irg, get_mode_one(low_unsigned));
990                 ir_node *carry0       = new_rd_Shr(dbgi, block_true, conv, one, mode);
991                 ir_node *carry1       = new_rd_Shr(dbgi, block_true, carry0,
992                                                    not_shiftval, mode);
993                 ir_node *res_high     = new_rd_Or(dbgi, block_true, shift_high, carry1,
994                                                   mode);
995                 lower_in[0]           = new_r_Jmp(block_true);
996                 phi_low_in[0]         = res_low;
997                 phi_high_in[0]        = res_high;
998         }
999
1000         /* false block => shift_width > 1word */
1001         {
1002                 ir_node *in[1]       = { proj_false };
1003                 ir_node *block_false = new_r_Block(irg, ARRAY_SIZE(in), in);
1004                 ir_node *res_low     = new_r_Const(irg, get_mode_null(low_unsigned));
1005                 ir_node *conv        = create_conv(block_false, left_low, mode);
1006                 ir_node *res_high    = new_rd_Shl(dbgi, block_false, conv, right, mode);
1007                 lower_in[1]          = new_r_Jmp(block_false);
1008                 phi_low_in[1]        = res_low;
1009                 phi_high_in[1]       = res_high;
1010         }
1011
1012         /* patch lower block */
1013         set_irn_in(lower_block, ARRAY_SIZE(lower_in), lower_in);
1014         phi_low  = new_r_Phi(lower_block, ARRAY_SIZE(phi_low_in), phi_low_in,
1015                              low_unsigned);
1016         phi_high = new_r_Phi(lower_block, ARRAY_SIZE(phi_high_in), phi_high_in,
1017                              mode);
1018         ir_set_dw_lowered(node, phi_low, phi_high);
1019 }
1020
1021 /**
1022  * Rebuild Rotl nodes into Or(Shl, Shr) and prepare all nodes.
1023  */
1024 static void prepare_links_and_handle_rotl(ir_node *node, void *data)
1025 {
1026         (void) data;
1027         if (is_Rotl(node)) {
1028                 ir_mode  *mode = get_irn_op_mode(node);
1029                 ir_node  *right;
1030                 ir_node  *left, *shl, *shr, *ornode, *block, *sub, *c;
1031                 ir_mode  *omode, *rmode;
1032                 ir_graph *irg;
1033                 dbg_info *dbg;
1034                 optimization_state_t state;
1035
1036                 if (mode != env->high_signed && mode != env->high_unsigned) {
1037                         prepare_links(node);
1038                         return;
1039                 }
1040
1041                 /* replace the Rotl(x,y) by an Or(Shl(x,y), Shr(x,64-y)) */
1042                 right = get_Rotl_right(node);
1043                 irg   = get_irn_irg(node);
1044                 dbg   = get_irn_dbg_info(node);
1045                 omode = get_irn_mode(node);
1046                 left  = get_Rotl_left(node);
1047                 block = get_nodes_block(node);
1048                 shl   = new_rd_Shl(dbg, block, left, right, omode);
1049                 rmode = get_irn_mode(right);
1050                 c     = new_r_Const_long(irg, rmode, get_mode_size_bits(omode));
1051                 sub   = new_rd_Sub(dbg, block, c, right, rmode);
1052                 shr   = new_rd_Shr(dbg, block, left, sub, omode);
1053
1054                 /* switch optimization off here, or we will get the Rotl back */
1055                 save_optimization_state(&state);
1056                 set_opt_algebraic_simplification(0);
1057                 ornode = new_rd_Or(dbg, block, shl, shr, omode);
1058                 restore_optimization_state(&state);
1059
1060                 exchange(node, ornode);
1061
1062                 /* do lowering on the new nodes */
1063                 prepare_links(shl);
1064                 prepare_links(c);
1065                 prepare_links(sub);
1066                 prepare_links(shr);
1067                 prepare_links(ornode);
1068                 return;
1069         }
1070
1071         prepare_links(node);
1072 }
1073
1074 /**
1075  * Translate an Unop.
1076  *
1077  * Create an intrinsic Call.
1078  */
1079 static void lower_unop(ir_node *node, ir_mode *mode)
1080 {
1081         ir_node  *op       = get_unop_op(node);
1082         dbg_info *dbgi     = get_irn_dbg_info(node);
1083         ir_node  *block    = get_nodes_block(node);
1084         ir_graph *irg      = get_irn_irg(block);
1085         ir_type  *mtp      = mode_is_signed(mode) ? unop_tp_s : unop_tp_u;
1086         ir_op    *irop     = get_irn_op(node);
1087         ir_node  *addr     = get_intrinsic_address(mtp, irop, mode, mode);
1088         ir_node  *nomem    = get_irg_no_mem(irg);
1089         ir_node  *in[2];
1090         ir_node  *call;
1091         ir_node  *resproj;
1092
1093         if (env->params->little_endian) {
1094                 in[0] = get_lowered_low(op);
1095                 in[1] = get_lowered_high(op);
1096         } else {
1097                 in[0] = get_lowered_high(op);
1098                 in[1] = get_lowered_low(op);
1099         }
1100         call    = new_rd_Call(dbgi, block, nomem, addr, 2, in, mtp);
1101         resproj = new_r_Proj(call, mode_T, pn_Call_T_result);
1102         set_irn_pinned(call, get_irn_pinned(node));
1103
1104         if (env->params->little_endian) {
1105                 ir_node *res_low  = new_r_Proj(resproj, env->low_unsigned, 0);
1106                 ir_node *res_high = new_r_Proj(resproj, mode,              1);
1107                 ir_set_dw_lowered(node, res_low, res_high);
1108         } else {
1109                 ir_node *res_low  = new_r_Proj(resproj, env->low_unsigned, 1);
1110                 ir_node *res_high = new_r_Proj(resproj, mode,              0);
1111                 ir_set_dw_lowered(node, res_low, res_high);
1112         }
1113 }
1114
1115 /**
1116  * Translate a logical binop.
1117  *
1118  * Create two logical binops.
1119  */
1120 static void lower_binop_logical(ir_node *node, ir_mode *mode,
1121                                                                 ir_node *(*constr_rd)(dbg_info *db, ir_node *block, ir_node *op1, ir_node *op2, ir_mode *mode) )
1122 {
1123         ir_node               *left        = get_binop_left(node);
1124         ir_node               *right       = get_binop_right(node);
1125         const lower64_entry_t *left_entry  = get_node_entry(left);
1126         const lower64_entry_t *right_entry = get_node_entry(right);
1127         dbg_info              *dbgi        = get_irn_dbg_info(node);
1128         ir_node               *block       = get_nodes_block(node);
1129         ir_node               *res_low
1130                 = constr_rd(dbgi, block, left_entry->low_word, right_entry->low_word,
1131                             env->low_unsigned);
1132         ir_node               *res_high
1133                 = constr_rd(dbgi, block, left_entry->high_word, right_entry->high_word,
1134                             mode);
1135         ir_set_dw_lowered(node, res_low, res_high);
1136 }
1137
1138 static void lower_And(ir_node *node, ir_mode *mode)
1139 {
1140         lower_binop_logical(node, mode, new_rd_And);
1141 }
1142
1143 static void lower_Or(ir_node *node, ir_mode *mode)
1144 {
1145         lower_binop_logical(node, mode, new_rd_Or);
1146 }
1147
1148 static void lower_Eor(ir_node *node, ir_mode *mode)
1149 {
1150         lower_binop_logical(node, mode, new_rd_Eor);
1151 }
1152
1153 /**
1154  * Translate a Not.
1155  *
1156  * Create two logical Nots.
1157  */
1158 static void lower_Not(ir_node *node, ir_mode *mode)
1159 {
1160         ir_node               *op       = get_Not_op(node);
1161         const lower64_entry_t *op_entry = get_node_entry(op);
1162         dbg_info              *dbgi     = get_irn_dbg_info(node);
1163         ir_node               *block    = get_nodes_block(node);
1164         ir_node               *res_low
1165                 = new_rd_Not(dbgi, block, op_entry->low_word, env->low_unsigned);
1166         ir_node               *res_high
1167                 = new_rd_Not(dbgi, block, op_entry->high_word, mode);
1168         ir_set_dw_lowered(node, res_low, res_high);
1169 }
1170
1171 static bool is_equality_cmp(const ir_node *node)
1172 {
1173         ir_relation relation = get_Cmp_relation(node);
1174         ir_node    *left     = get_Cmp_left(node);
1175         ir_node    *right    = get_Cmp_right(node);
1176         ir_mode    *mode     = get_irn_mode(left);
1177
1178         /* this probably makes no sense if unordered is involved */
1179         assert(!mode_is_float(mode));
1180
1181         if (relation == ir_relation_equal || relation == ir_relation_less_greater)
1182                 return true;
1183
1184         if (!is_Const(right) || !is_Const_null(right))
1185                 return false;
1186         if (mode_is_signed(mode)) {
1187                 return relation == ir_relation_less_greater;
1188         } else {
1189                 return relation == ir_relation_greater;
1190         }
1191 }
1192
1193 static ir_node *get_cfop_destination(const ir_node *cfop)
1194 {
1195         const ir_edge_t *first = get_irn_out_edge_first(cfop);
1196         /* we should only have 1 destination */
1197         assert(get_irn_n_edges(cfop) == 1);
1198         return get_edge_src_irn(first);
1199 }
1200
1201 /**
1202  * Translate a Cond.
1203  */
1204 static void lower_Cond(ir_node *node, ir_mode *mode)
1205 {
1206         ir_node *left, *right, *block;
1207         ir_node *sel = get_Cond_selector(node);
1208         ir_mode *m = get_irn_mode(sel);
1209         ir_mode *cmp_mode;
1210         const lower64_entry_t *lentry, *rentry;
1211         ir_node  *proj, *projT = NULL, *projF = NULL;
1212         ir_node  *new_bl, *irn;
1213         ir_node  *projHF, *projHT;
1214         ir_node  *dst_blk;
1215         ir_relation relation;
1216         ir_graph *irg;
1217         dbg_info *dbg;
1218         const ir_edge_t *edge;
1219         const ir_edge_t *next;
1220
1221         (void) mode;
1222
1223         if (m != mode_b) {
1224                 if (m == env->high_signed || m == env->high_unsigned) {
1225                         /* bad we can't really handle Switch with 64bit offsets */
1226                         panic("Cond with 64bit jumptable not supported");
1227                 }
1228                 lower_node(sel);
1229                 return;
1230         }
1231
1232         if (!is_Cmp(sel)) {
1233                 lower_node(sel);
1234                 return;
1235         }
1236
1237         left     = get_Cmp_left(sel);
1238         cmp_mode = get_irn_mode(left);
1239         if (cmp_mode != env->high_signed && cmp_mode != env->high_unsigned) {
1240                 lower_node(sel);
1241                 return;
1242         }
1243
1244         right  = get_Cmp_right(sel);
1245         lower_node(left);
1246         lower_node(right);
1247         lentry = get_node_entry(left);
1248         rentry = get_node_entry(right);
1249
1250         /* all right, build the code */
1251         foreach_out_edge_safe(node, edge, next) {
1252                 ir_node *proj    = get_edge_src_irn(edge);
1253                 long     proj_nr;
1254                 if (!is_Proj(proj))
1255                         continue;
1256                 proj_nr = get_Proj_proj(proj);
1257
1258                 if (proj_nr == pn_Cond_true) {
1259                         assert(projT == NULL && "more than one Proj(true)");
1260                         projT = proj;
1261                 } else {
1262                         assert(proj_nr == pn_Cond_false);
1263                         assert(projF == NULL && "more than one Proj(false)");
1264                         projF = proj;
1265                 }
1266                 mark_irn_visited(proj);
1267         }
1268         assert(projT && projF);
1269
1270         /* create a new high compare */
1271         block    = get_nodes_block(node);
1272         irg      = get_Block_irg(block);
1273         dbg      = get_irn_dbg_info(sel);
1274         relation = get_Cmp_relation(sel);
1275
1276         if (is_equality_cmp(sel)) {
1277                 /* x ==/!= y ==> or(x_low^y_low,x_high^y_high) ==/!= 0 */
1278                 ir_mode *mode       = env->low_unsigned;
1279                 ir_node *low_left   = new_rd_Conv(dbg, block, lentry->low_word, mode);
1280                 ir_node *high_left  = new_rd_Conv(dbg, block, lentry->high_word, mode);
1281                 ir_node *low_right  = new_rd_Conv(dbg, block, rentry->low_word, mode);
1282                 ir_node *high_right = new_rd_Conv(dbg, block, rentry->high_word, mode);
1283                 ir_node *xor_low    = new_rd_Eor(dbg, block, low_left, low_right, mode);
1284                 ir_node *xor_high   = new_rd_Eor(dbg, block, high_left, high_right, mode);
1285                 ir_node *ornode = new_rd_Or(dbg, block, xor_low, xor_high, mode);
1286                 ir_node *cmp    = new_rd_Cmp(dbg, block, ornode, new_r_Const_long(irg, mode, 0), relation);
1287                 set_Cond_selector(node, cmp);
1288                 return;
1289         }
1290
1291         if (relation == ir_relation_equal) {
1292                 /* simple case:a == b <==> a_h == b_h && a_l == b_l */
1293                 dst_blk = get_cfop_destination(projF);
1294
1295                 irn = new_rd_Cmp(dbg, block, lentry->high_word, rentry->high_word,
1296                                  ir_relation_equal);
1297                 dbg = get_irn_dbg_info(node);
1298                 irn = new_rd_Cond(dbg, block, irn);
1299
1300                 projHF = new_r_Proj(irn, mode_X, pn_Cond_false);
1301                 mark_irn_visited(projHF);
1302                 exchange(projF, projHF);
1303
1304                 projHT = new_r_Proj(irn, mode_X, pn_Cond_true);
1305                 mark_irn_visited(projHT);
1306
1307                 new_bl = new_r_Block(irg, 1, &projHT);
1308
1309                 dbg = get_irn_dbg_info(sel);
1310                 irn = new_rd_Cmp(dbg, new_bl, lentry->low_word, rentry->low_word,
1311                                   ir_relation_equal);
1312                 dbg = get_irn_dbg_info(node);
1313                 irn = new_rd_Cond(dbg, new_bl, irn);
1314
1315                 proj = new_r_Proj(irn, mode_X, pn_Cond_false);
1316                 mark_irn_visited(proj);
1317                 add_block_cf_input(dst_blk, projHF, proj);
1318
1319                 proj = new_r_Proj(irn, mode_X, pn_Cond_true);
1320                 mark_irn_visited(proj);
1321                 exchange(projT, proj);
1322         } else if (relation == ir_relation_less_greater) {
1323                 /* simple case:a != b <==> a_h != b_h || a_l != b_l */
1324                 dst_blk = get_cfop_destination(projT);
1325
1326                 irn = new_rd_Cmp(dbg, block, lentry->high_word, rentry->high_word,
1327                                  ir_relation_less_greater);
1328                 dbg = get_irn_dbg_info(node);
1329                 irn = new_rd_Cond(dbg, block, irn);
1330
1331                 projHT = new_r_Proj(irn, mode_X, pn_Cond_true);
1332                 mark_irn_visited(projHT);
1333                 exchange(projT, projHT);
1334
1335                 projHF = new_r_Proj(irn, mode_X, pn_Cond_false);
1336                 mark_irn_visited(projHF);
1337
1338                 new_bl = new_r_Block(irg, 1, &projHF);
1339
1340                 dbg = get_irn_dbg_info(sel);
1341                 irn = new_rd_Cmp(dbg, new_bl, lentry->low_word, rentry->low_word,
1342                                  ir_relation_less_greater);
1343                 dbg = get_irn_dbg_info(node);
1344                 irn = new_rd_Cond(dbg, new_bl, irn);
1345
1346                 proj = new_r_Proj(irn, mode_X, pn_Cond_true);
1347                 mark_irn_visited(proj);
1348                 add_block_cf_input(dst_blk, projHT, proj);
1349
1350                 proj = new_r_Proj(irn, mode_X, pn_Cond_false);
1351                 mark_irn_visited(proj);
1352                 exchange(projF, proj);
1353         } else {
1354                 /* a rel b <==> a_h REL b_h || (a_h == b_h && a_l rel b_l) */
1355                 ir_node *dstT, *dstF, *newbl_eq, *newbl_l;
1356                 ir_node *projEqF;
1357
1358                 dstT = get_cfop_destination(projT);
1359                 dstF = get_cfop_destination(projF);
1360
1361                 irn = new_rd_Cmp(dbg, block, lentry->high_word, rentry->high_word,
1362                                  relation & ~ir_relation_equal);
1363                 dbg = get_irn_dbg_info(node);
1364                 irn = new_rd_Cond(dbg, block, irn);
1365
1366                 projHT = new_r_Proj(irn, mode_X, pn_Cond_true);
1367                 mark_irn_visited(projHT);
1368
1369                 projHF = new_r_Proj(irn, mode_X, pn_Cond_false);
1370                 mark_irn_visited(projHF);
1371
1372                 newbl_eq = new_r_Block(irg, 1, &projHF);
1373
1374                 irn = new_rd_Cmp(dbg, block, lentry->high_word, rentry->high_word,
1375                                  ir_relation_equal);
1376                 irn = new_rd_Cond(dbg, newbl_eq, irn);
1377
1378                 projEqF = new_r_Proj(irn, mode_X, pn_Cond_false);
1379                 mark_irn_visited(projEqF);
1380
1381                 proj = new_r_Proj(irn, mode_X, pn_Cond_true);
1382                 mark_irn_visited(proj);
1383
1384                 newbl_l = new_r_Block(irg, 1, &proj);
1385
1386                 dbg = get_irn_dbg_info(sel);
1387                 irn = new_rd_Cmp(dbg, newbl_l, lentry->low_word, rentry->low_word,
1388                                  relation);
1389                 dbg = get_irn_dbg_info(node);
1390                 irn = new_rd_Cond(dbg, newbl_l, irn);
1391
1392                 proj = new_r_Proj(irn, mode_X, pn_Cond_true);
1393                 mark_irn_visited(proj);
1394                 add_block_cf_input(dstT, projT, proj);
1395
1396                 proj = new_r_Proj(irn, mode_X, pn_Cond_false);
1397                 mark_irn_visited(proj);
1398                 add_block_cf_input(dstF, projF, proj);
1399
1400                 exchange(projT, projHT);
1401                 exchange(projF, projEqF);
1402         }
1403
1404         /* we have changed the control flow */
1405         env->flags |= CF_CHANGED;
1406 }
1407
1408 /**
1409  * Translate a Conv to higher_signed
1410  */
1411 static void lower_Conv_to_Ll(ir_node *node)
1412 {
1413         ir_mode  *omode        = get_irn_mode(node);
1414         ir_node  *op           = get_Conv_op(node);
1415         ir_mode  *imode        = get_irn_mode(op);
1416         ir_graph *irg          = get_irn_irg(node);
1417         ir_node  *block        = get_nodes_block(node);
1418         dbg_info *dbg          = get_irn_dbg_info(node);
1419         ir_node  *res_low;
1420         ir_node  *res_high;
1421
1422         ir_mode  *low_unsigned = env->low_unsigned;
1423         ir_mode  *low_signed
1424                 = mode_is_signed(omode) ? env->low_signed : low_unsigned;
1425
1426         if (mode_is_int(imode) || mode_is_reference(imode)) {
1427                 if (imode == env->high_signed || imode == env->high_unsigned) {
1428                         /* a Conv from Lu to Ls or Ls to Lu */
1429                         const lower64_entry_t *op_entry = get_node_entry(op);
1430                         res_low  = op_entry->low_word;
1431                         res_high = new_rd_Conv(dbg, block, op_entry->high_word, low_signed);
1432                 } else {
1433                         /* simple case: create a high word */
1434                         if (imode != low_unsigned)
1435                                 op = new_rd_Conv(dbg, block, op, low_unsigned);
1436
1437                         res_low = op;
1438
1439                         if (mode_is_signed(imode)) {
1440                                 int      c       = get_mode_size_bits(low_signed) - 1;
1441                                 ir_node *cnst    = new_r_Const_long(irg, low_unsigned, c);
1442                                 if (get_irn_mode(op) != low_signed)
1443                                         op = new_rd_Conv(dbg, block, op, low_signed);
1444                                 res_high = new_rd_Shrs(dbg, block, op, cnst, low_signed);
1445                         } else {
1446                                 res_high = new_r_Const(irg, get_mode_null(low_signed));
1447                         }
1448                 }
1449         } else if (imode == mode_b) {
1450                 res_low  = new_rd_Conv(dbg, block, op, low_unsigned);
1451                 res_high = new_r_Const(irg, get_mode_null(low_signed));
1452         } else {
1453                 ir_node *irn, *call;
1454                 ir_type *mtp = get_conv_type(imode, omode);
1455
1456                 irn = get_intrinsic_address(mtp, get_irn_op(node), imode, omode);
1457                 call = new_rd_Call(dbg, block, get_irg_no_mem(irg), irn, 1, &op, mtp);
1458                 set_irn_pinned(call, get_irn_pinned(node));
1459                 irn = new_r_Proj(call, mode_T, pn_Call_T_result);
1460
1461                 res_low  = new_r_Proj(irn, low_unsigned, 0);
1462                 res_high = new_r_Proj(irn, low_signed, 1);
1463         }
1464         ir_set_dw_lowered(node, res_low, res_high);
1465 }
1466
1467 /**
1468  * Translate a Conv from higher_unsigned
1469  */
1470 static void lower_Conv_from_Ll(ir_node *node)
1471 {
1472         ir_node               *op    = get_Conv_op(node);
1473         ir_mode               *omode = get_irn_mode(node);
1474         ir_node               *block = get_nodes_block(node);
1475         dbg_info              *dbg   = get_irn_dbg_info(node);
1476         ir_graph              *irg   = get_irn_irg(node);
1477         const lower64_entry_t *entry = get_node_entry(op);
1478
1479         if (mode_is_int(omode) || mode_is_reference(omode)) {
1480                 op = entry->low_word;
1481
1482                 /* simple case: create a high word */
1483                 if (omode != env->low_unsigned)
1484                         op = new_rd_Conv(dbg, block, op, omode);
1485
1486                 set_Conv_op(node, op);
1487         } else if (omode == mode_b) {
1488                 /* llu ? true : false  <=> (low|high) ? true : false */
1489                 ir_mode *mode   = env->low_unsigned;
1490                 ir_node *ornode = new_rd_Or(dbg, block, entry->low_word,
1491                                             entry->high_word, mode);
1492                 set_Conv_op(node, ornode);
1493         } else {
1494                 ir_node *irn, *call, *in[2];
1495                 ir_mode *imode = get_irn_mode(op);
1496                 ir_type *mtp   = get_conv_type(imode, omode);
1497                 ir_node *res;
1498
1499                 irn   = get_intrinsic_address(mtp, get_irn_op(node), imode, omode);
1500                 in[0] = entry->low_word;
1501                 in[1] = entry->high_word;
1502
1503                 call = new_rd_Call(dbg, block, get_irg_no_mem(irg), irn, 2, in, mtp);
1504                 set_irn_pinned(call, get_irn_pinned(node));
1505                 irn = new_r_Proj(call, mode_T, pn_Call_T_result);
1506                 res = new_r_Proj(irn, omode, 0);
1507
1508                 exchange(node, res);
1509         }
1510 }
1511
1512 /**
1513  * lower Cmp
1514  */
1515 static void lower_Cmp(ir_node *cmp, ir_mode *m)
1516 {
1517         ir_node  *l    = get_Cmp_left(cmp);
1518         ir_mode  *mode = get_irn_mode(l);
1519         ir_node  *r, *low, *high, *t, *res;
1520         ir_relation relation;
1521         ir_node  *block;
1522         dbg_info *dbg;
1523         const lower64_entry_t *lentry;
1524         const lower64_entry_t *rentry;
1525         (void) m;
1526
1527         if (mode != env->high_signed && mode != env->high_unsigned)
1528                 return;
1529
1530         r        = get_Cmp_right(cmp);
1531         lentry   = get_node_entry(l);
1532         rentry   = get_node_entry(r);
1533         relation = get_Cmp_relation(cmp);
1534         block    = get_nodes_block(cmp);
1535         dbg      = get_irn_dbg_info(cmp);
1536
1537         /* easy case for x ==/!= 0 (see lower_Cond for details) */
1538         if (is_equality_cmp(cmp)) {
1539                 ir_graph *irg        = get_irn_irg(cmp);
1540                 ir_mode  *mode       = env->low_unsigned;
1541                 ir_node  *low_left   = new_rd_Conv(dbg, block, lentry->low_word, mode);
1542                 ir_node  *high_left  = new_rd_Conv(dbg, block, lentry->high_word, mode);
1543                 ir_node  *low_right  = new_rd_Conv(dbg, block, rentry->low_word, mode);
1544                 ir_node  *high_right = new_rd_Conv(dbg, block, rentry->high_word, mode);
1545                 ir_node  *xor_low    = new_rd_Eor(dbg, block, low_left, low_right, mode);
1546                 ir_node  *xor_high   = new_rd_Eor(dbg, block, high_left, high_right, mode);
1547                 ir_node  *ornode     = new_rd_Or(dbg, block, xor_low, xor_high, mode);
1548                 ir_node  *new_cmp    = new_rd_Cmp(dbg, block, ornode, new_r_Const_long(irg, mode, 0), relation);
1549                 exchange(cmp, new_cmp);
1550                 return;
1551         }
1552
1553         if (relation == ir_relation_equal) {
1554                 /* simple case:a == b <==> a_h == b_h && a_l == b_l */
1555                 low  = new_rd_Cmp(dbg, block, lentry->low_word, rentry->low_word,
1556                                   relation);
1557                 high = new_rd_Cmp(dbg, block, lentry->high_word, rentry->high_word,
1558                                   relation);
1559                 res  = new_rd_And(dbg, block, low, high, mode_b);
1560         } else if (relation == ir_relation_less_greater) {
1561                 /* simple case:a != b <==> a_h != b_h || a_l != b_l */
1562                 low  = new_rd_Cmp(dbg, block, lentry->low_word, rentry->low_word,
1563                                   relation);
1564                 high = new_rd_Cmp(dbg, block, lentry->high_word, rentry->high_word,
1565                                   relation);
1566                 res = new_rd_Or(dbg, block, low, high, mode_b);
1567         } else {
1568                 /* a rel b <==> a_h REL b_h || (a_h == b_h && a_l rel b_l) */
1569                 ir_node *high1 = new_rd_Cmp(dbg, block, lentry->high_word,
1570                         rentry->high_word, relation & ~ir_relation_equal);
1571                 low  = new_rd_Cmp(dbg, block, lentry->low_word, rentry->low_word,
1572                                   relation);
1573                 high = new_rd_Cmp(dbg, block, lentry->high_word, rentry->high_word,
1574                                   ir_relation_equal);
1575                 t = new_rd_And(dbg, block, low, high, mode_b);
1576                 res = new_rd_Or(dbg, block, high1, t, mode_b);
1577         }
1578         exchange(cmp, res);
1579 }
1580
1581 /**
1582  * Translate a Conv.
1583  */
1584 static void lower_Conv(ir_node *node, ir_mode *mode)
1585 {
1586         mode = get_irn_mode(node);
1587
1588         if (mode == env->high_signed || mode == env->high_unsigned) {
1589                 lower_Conv_to_Ll(node);
1590         } else {
1591                 ir_mode *op_mode = get_irn_mode(get_Conv_op(node));
1592
1593                 if (op_mode == env->high_signed || op_mode == env->high_unsigned) {
1594                         lower_Conv_from_Ll(node);
1595                 }
1596         }
1597 }
1598
1599 /**
1600  * Remember the new argument index of this value type entity in the lowered
1601  * method type.
1602  *
1603  * @param ent  the entity
1604  * @param pos  the argument index of this entity
1605  */
1606 static inline void set_entity_arg_idx(ir_entity *ent, size_t pos)
1607 {
1608         set_entity_link(ent, INT_TO_PTR(pos));
1609 }
1610
1611 /**
1612  * Retrieve the argument index of a value type entity.
1613  *
1614  * @param ent  the entity
1615  */
1616 static size_t get_entity_arg_idx(const ir_entity *ent) {
1617         return PTR_TO_INT(get_entity_link(ent));
1618 }
1619
1620 /**
1621  * Lower the method type.
1622  *
1623  * @param env  the lower environment
1624  * @param mtp  the method type to lower
1625  *
1626  * @return the lowered type
1627  */
1628 static ir_type *lower_mtp(ir_type *mtp)
1629 {
1630         pmap_entry *entry;
1631         ir_type    *res, *value_type;
1632
1633         entry = pmap_find(lowered_type, mtp);
1634         if (! entry) {
1635                 size_t i, orig_n_params, orig_n_res, n_param, n_res;
1636
1637                 /* count new number of params */
1638                 n_param = orig_n_params = get_method_n_params(mtp);
1639                 for (i = orig_n_params; i > 0;) {
1640                         ir_type *tp = get_method_param_type(mtp, --i);
1641
1642                         if (is_Primitive_type(tp)) {
1643                                 ir_mode *mode = get_type_mode(tp);
1644
1645                                 if (mode == env->high_signed || mode == env->high_unsigned)
1646                                         ++n_param;
1647                         }
1648                 }
1649
1650                 /* count new number of results */
1651                 n_res = orig_n_res = get_method_n_ress(mtp);
1652                 for (i = orig_n_res; i > 0;) {
1653                         ir_type *tp = get_method_res_type(mtp, --i);
1654
1655                         if (is_Primitive_type(tp)) {
1656                                 ir_mode *mode = get_type_mode(tp);
1657
1658                                 if (mode == env->high_signed || mode == env->high_unsigned)
1659                                         ++n_res;
1660                         }
1661                 }
1662
1663                 res = new_type_method(n_param, n_res);
1664
1665                 /* set param types and result types */
1666                 for (i = n_param = 0; i < orig_n_params; ++i) {
1667                         ir_type *tp = get_method_param_type(mtp, i);
1668
1669                         if (is_Primitive_type(tp)) {
1670                                 ir_mode *mode = get_type_mode(tp);
1671
1672                                 if (mode == env->high_signed) {
1673                                         if (env->params->little_endian) {
1674                                                 set_method_param_type(res, n_param++, tp_u);
1675                                                 set_method_param_type(res, n_param++, tp_s);
1676                                         } else {
1677                                                 set_method_param_type(res, n_param++, tp_s);
1678                                                 set_method_param_type(res, n_param++, tp_u);
1679                                         }
1680                                 } else if (mode == env->high_unsigned) {
1681                                         set_method_param_type(res, n_param++, tp_u);
1682                                         set_method_param_type(res, n_param++, tp_u);
1683                                 } else {
1684                                         set_method_param_type(res, n_param++, tp);
1685                                 }
1686                         } else {
1687                                 set_method_param_type(res, n_param++, tp);
1688                         }
1689                 }
1690                 for (i = n_res = 0; i < orig_n_res; ++i) {
1691                         ir_type *tp = get_method_res_type(mtp, i);
1692
1693                         if (is_Primitive_type(tp)) {
1694                                 ir_mode *mode = get_type_mode(tp);
1695
1696                                 if (mode == env->high_signed) {
1697                                         if (env->params->little_endian) {
1698                                                 set_method_res_type(res, n_res++, tp_u);
1699                                                 set_method_res_type(res, n_res++, tp_s);
1700                                         } else {
1701                                                 set_method_res_type(res, n_res++, tp_s);
1702                                                 set_method_res_type(res, n_res++, tp_u);
1703                                         }
1704                                 } else if (mode == env->high_unsigned) {
1705                                         set_method_res_type(res, n_res++, tp_u);
1706                                         set_method_res_type(res, n_res++, tp_u);
1707                                 } else {
1708                                         set_method_res_type(res, n_res++, tp);
1709                                 }
1710                         } else {
1711                                 set_method_res_type(res, n_res++, tp);
1712                         }
1713                 }
1714                 set_lowered_type(mtp, res);
1715                 pmap_insert(lowered_type, mtp, res);
1716
1717                 value_type = get_method_value_param_type(mtp);
1718                 if (value_type != NULL) {
1719                         /* this creates a new value parameter type */
1720                         (void)get_method_value_param_ent(res, 0);
1721
1722                         /* set new param positions for all entities of the value type */
1723                         for (i = n_param = 0; i < orig_n_params; ++i) {
1724                                 ir_type   *tp  = get_method_param_type(mtp, i);
1725                                 ir_entity *ent = get_method_value_param_ent(mtp, i);
1726
1727                                 set_entity_arg_idx(ent, n_param);
1728                                 if (is_Primitive_type(tp)) {
1729                                         ir_mode *mode = get_type_mode(tp);
1730
1731                                         if (mode == env->high_signed
1732                                             || mode == env->high_unsigned) {
1733                                                 n_param += 2;
1734                                                 continue;
1735                                         }
1736                                 }
1737                                 ++n_param;
1738                         }
1739
1740                         set_lowered_type(value_type, get_method_value_param_type(res));
1741                 }
1742         } else {
1743                 res = (ir_type*)entry->value;
1744         }
1745         return res;
1746 }
1747
1748 /**
1749  * Translate a Return.
1750  */
1751 static void lower_Return(ir_node *node, ir_mode *mode)
1752 {
1753         ir_graph  *irg = get_irn_irg(node);
1754         ir_entity *ent = get_irg_entity(irg);
1755         ir_type   *mtp = get_entity_type(ent);
1756         ir_node  **in;
1757         size_t     i, j, n;
1758         int        need_conv = 0;
1759         (void) mode;
1760
1761         /* check if this return must be lowered */
1762         for (i = 0, n = get_Return_n_ress(node); i < n; ++i) {
1763                 ir_node *pred = get_Return_res(node, i);
1764                 ir_mode *mode = get_irn_op_mode(pred);
1765
1766                 if (mode == env->high_signed || mode == env->high_unsigned)
1767                         need_conv = 1;
1768         }
1769         if (! need_conv)
1770                 return;
1771
1772         ent = get_irg_entity(irg);
1773         mtp = get_entity_type(ent);
1774
1775         mtp = lower_mtp(mtp);
1776         set_entity_type(ent, mtp);
1777
1778         /* create a new in array */
1779         NEW_ARR_A(ir_node *, in, get_method_n_ress(mtp) + 1);
1780         in[0] = get_Return_mem(node);
1781
1782         for (j = i = 0, n = get_Return_n_ress(node); i < n; ++i) {
1783                 ir_node *pred      = get_Return_res(node, i);
1784                 ir_mode *pred_mode = get_irn_mode(pred);
1785
1786                 if (pred_mode == env->high_signed || pred_mode == env->high_unsigned) {
1787                         const lower64_entry_t *entry = get_node_entry(pred);
1788                         if (env->params->little_endian) {
1789                                 in[++j] = entry->low_word;
1790                                 in[++j] = entry->high_word;
1791                         } else {
1792                                 in[++j] = entry->high_word;
1793                                 in[++j] = entry->low_word;
1794                         }
1795                 } else {
1796                         in[++j] = pred;
1797                 }
1798         }
1799
1800         set_irn_in(node, j+1, in);
1801 }
1802
1803 /**
1804  * Translate the parameters.
1805  */
1806 static void lower_Start(ir_node *node, ir_mode *mode)
1807 {
1808         ir_graph  *irg = get_irn_irg(node);
1809         ir_entity *ent = get_irg_entity(irg);
1810         ir_type   *tp  = get_entity_type(ent);
1811         ir_node   *args;
1812         long      *new_projs;
1813         size_t    i, j, n_params;
1814         const ir_edge_t *edge;
1815         const ir_edge_t *next;
1816         (void) mode;
1817
1818         if (!mtp_must_be_lowered(tp))
1819                 return;
1820
1821         n_params = get_method_n_params(tp);
1822
1823         NEW_ARR_A(long, new_projs, n_params);
1824
1825         /* Calculate mapping of proj numbers in new_projs */
1826         for (i = j = 0; i < n_params; ++i, ++j) {
1827                 ir_type *ptp = get_method_param_type(tp, i);
1828
1829                 new_projs[i] = j;
1830                 if (is_Primitive_type(ptp)) {
1831                         ir_mode *mode = get_type_mode(ptp);
1832
1833                         if (mode == env->high_signed || mode == env->high_unsigned)
1834                                 ++j;
1835                 }
1836         }
1837
1838         /* lower method type */
1839         tp = lower_mtp(tp);
1840         set_entity_type(ent, tp);
1841
1842         args = NULL;
1843         foreach_out_edge(node, edge) {
1844                 ir_node *proj = get_edge_src_irn(edge);
1845                 if (!is_Proj(proj))
1846                         continue;
1847                 if (get_Proj_proj(proj) == pn_Start_T_args) {
1848                         args = proj;
1849                         break;
1850                 }
1851         }
1852         if (args == NULL)
1853                 return;
1854
1855         /* fix all Proj's and create new ones */
1856         foreach_out_edge_safe(args, edge, next) {
1857                 ir_node *proj   = get_edge_src_irn(edge);
1858                 ir_mode *mode   = get_irn_mode(proj);
1859                 ir_mode *mode_l = env->low_unsigned;
1860                 ir_node *pred;
1861                 long     proj_nr;
1862                 ir_mode *mode_h;
1863                 ir_node *res_low;
1864                 ir_node *res_high;
1865                 dbg_info *dbg;
1866
1867                 if (!is_Proj(proj))
1868                         continue;
1869                 pred    = get_Proj_pred(proj);
1870                 proj_nr = get_Proj_proj(proj);
1871
1872                 if (mode == env->high_signed) {
1873                         mode_h = env->low_signed;
1874                 } else if (mode == env->high_unsigned) {
1875                         mode_h = env->low_unsigned;
1876                 } else {
1877                         long new_pn = new_projs[proj_nr];
1878                         set_Proj_proj(proj, new_pn);
1879                         continue;
1880                 }
1881
1882                 dbg = get_irn_dbg_info(proj);
1883                 if (env->params->little_endian) {
1884                         res_low  = new_rd_Proj(dbg, pred, mode_l, new_projs[proj_nr]);
1885                         res_high = new_rd_Proj(dbg, pred, mode_h, new_projs[proj_nr] + 1);
1886                 } else {
1887                         res_high = new_rd_Proj(dbg, pred, mode_h, new_projs[proj_nr]);
1888                         res_low  = new_rd_Proj(dbg, pred, mode_l, new_projs[proj_nr] + 1);
1889                 }
1890                 ir_set_dw_lowered(proj, res_low, res_high);
1891         }
1892 }
1893
1894 /**
1895  * Translate a Call.
1896  */
1897 static void lower_Call(ir_node *node, ir_mode *mode)
1898 {
1899         ir_type  *tp = get_Call_type(node);
1900         ir_node  **in;
1901         size_t   n_params, n_res;
1902         bool     need_lower = false;
1903         size_t   i, j;
1904         size_t   p;
1905         long     *res_numbers = NULL;
1906         ir_node  *resproj;
1907         const ir_edge_t *edge;
1908         const ir_edge_t *next;
1909         (void) mode;
1910
1911         n_params = get_method_n_params(tp);
1912         for (p = 0; p < n_params; ++p) {
1913                 ir_type *ptp = get_method_param_type(tp, p);
1914
1915                 if (is_Primitive_type(ptp)) {
1916                         ir_mode *mode = get_type_mode(ptp);
1917
1918                         if (mode == env->high_signed || mode == env->high_unsigned) {
1919                                 need_lower = true;
1920                                 break;
1921                         }
1922                 }
1923         }
1924         n_res = get_method_n_ress(tp);
1925         if (n_res > 0) {
1926                 NEW_ARR_A(long, res_numbers, n_res);
1927
1928                 for (i = j = 0; i < n_res; ++i, ++j) {
1929                         ir_type *ptp = get_method_res_type(tp, i);
1930
1931                         res_numbers[i] = j;
1932                         if (is_Primitive_type(ptp)) {
1933                                 ir_mode *mode = get_type_mode(ptp);
1934
1935                                 if (mode == env->high_signed || mode == env->high_unsigned) {
1936                                         need_lower = true;
1937                                         ++j;
1938                                 }
1939                         }
1940                 }
1941         }
1942
1943         if (! need_lower)
1944                 return;
1945
1946         /* let's lower it */
1947         tp = lower_mtp(tp);
1948         set_Call_type(node, tp);
1949
1950         NEW_ARR_A(ir_node *, in, get_method_n_params(tp) + 2);
1951
1952         in[0] = get_Call_mem(node);
1953         in[1] = get_Call_ptr(node);
1954
1955         for (j = 2, i = 0; i < n_params; ++i) {
1956                 ir_node *pred      = get_Call_param(node, i);
1957                 ir_mode *pred_mode = get_irn_mode(pred);
1958
1959                 if (pred_mode == env->high_signed || pred_mode == env->high_unsigned) {
1960                         const lower64_entry_t *pred_entry = get_node_entry(pred);
1961                         if (env->params->little_endian) {
1962                                 in[j++] = pred_entry->low_word;
1963                                 in[j++] = pred_entry->high_word;
1964                         } else {
1965                                 in[j++] = pred_entry->high_word;
1966                                 in[j++] = pred_entry->low_word;
1967                         }
1968                 } else {
1969                         in[j++] = pred;
1970                 }
1971         }
1972
1973         set_irn_in(node, j, in);
1974
1975         /* find results T */
1976         resproj = NULL;
1977         foreach_out_edge(node, edge) {
1978                 ir_node *proj = get_edge_src_irn(edge);
1979                 if (!is_Proj(proj))
1980                         continue;
1981                 if (get_Proj_proj(proj) == pn_Call_T_result) {
1982                         resproj = proj;
1983                         break;
1984                 }
1985         }
1986         if (resproj == NULL)
1987                 return;
1988
1989         /* fix the results */
1990         foreach_out_edge_safe(resproj, edge, next) {
1991                 ir_node  *proj      = get_edge_src_irn(edge);
1992                 ir_mode  *proj_mode = get_irn_mode(proj);
1993                 ir_mode  *mode_l    = env->low_unsigned;
1994                 ir_node  *pred;
1995                 long      proj_nr;
1996                 ir_mode  *mode_h;
1997                 ir_node  *res_low;
1998                 ir_node  *res_high;
1999                 dbg_info *dbg;
2000
2001                 if (!is_Proj(proj))
2002                         continue;
2003                 pred    = get_Proj_pred(proj);
2004                 proj_nr = get_Proj_proj(proj);
2005
2006                 if (proj_mode == env->high_signed) {
2007                         mode_h = env->low_signed;
2008                 } else if (proj_mode == env->high_unsigned) {
2009                         mode_h = env->low_unsigned;
2010                 } else {
2011                         long new_nr = res_numbers[proj_nr];
2012                         set_Proj_proj(proj, new_nr);
2013                         continue;
2014                 }
2015
2016                 dbg = get_irn_dbg_info(proj);
2017                 if (env->params->little_endian) {
2018                         res_low  = new_rd_Proj(dbg, pred, mode_l, res_numbers[proj_nr]);
2019                         res_high = new_rd_Proj(dbg, pred, mode_h, res_numbers[proj_nr] + 1);
2020                 } else {
2021                         res_high = new_rd_Proj(dbg, pred, mode_h, res_numbers[proj_nr]);
2022                         res_low  = new_rd_Proj(dbg, pred, mode_l, res_numbers[proj_nr] + 1);
2023                 }
2024                 ir_set_dw_lowered(proj, res_low, res_high);
2025         }
2026 }
2027
2028 /**
2029  * Translate an Unknown into two.
2030  */
2031 static void lower_Unknown(ir_node *node, ir_mode *mode)
2032 {
2033         ir_mode  *low_mode = env->low_unsigned;
2034         ir_graph *irg      = get_irn_irg(node);
2035         ir_node  *res_low  = new_r_Unknown(irg, low_mode);
2036         ir_node  *res_high = new_r_Unknown(irg, mode);
2037         ir_set_dw_lowered(node, res_low, res_high);
2038 }
2039
2040 /**
2041  * Translate a Bad into two.
2042  */
2043 static void lower_Bad(ir_node *node, ir_mode *mode)
2044 {
2045         ir_mode  *low_mode = env->low_unsigned;
2046         ir_graph *irg      = get_irn_irg(node);
2047         ir_node  *res_low  = new_r_Bad(irg, low_mode);
2048         ir_node  *res_high = new_r_Bad(irg, mode);
2049         ir_set_dw_lowered(node, res_low, res_high);
2050 }
2051
2052 /**
2053  * Translate a Phi.
2054  *
2055  * First step: just create two templates
2056  */
2057 static void lower_Phi(ir_node *phi)
2058 {
2059         ir_mode  *mode = get_irn_mode(phi);
2060         int       i;
2061         int       arity;
2062         ir_node **in_l;
2063         ir_node **in_h;
2064         ir_node  *unk_l;
2065         ir_node  *unk_h;
2066         ir_node  *phi_l;
2067         ir_node  *phi_h;
2068         dbg_info *dbg;
2069         ir_node  *block;
2070         ir_graph *irg;
2071         ir_mode  *mode_l;
2072         ir_mode  *mode_h;
2073
2074         /* enqueue predecessors */
2075         arity = get_Phi_n_preds(phi);
2076         for (i = 0; i < arity; ++i) {
2077                 ir_node *pred = get_Phi_pred(phi, i);
2078                 pdeq_putr(env->waitq, pred);
2079         }
2080
2081         if (mode != env->high_signed && mode != env->high_unsigned)
2082                 return;
2083
2084         /* first create a new in array */
2085         NEW_ARR_A(ir_node *, in_l, arity);
2086         NEW_ARR_A(ir_node *, in_h, arity);
2087         irg    = get_irn_irg(phi);
2088         mode_l = env->low_unsigned;
2089         mode_h = mode == env->high_signed ? env->low_signed : env->low_unsigned;
2090         unk_l  = new_r_Dummy(irg, mode_l);
2091         unk_h  = new_r_Dummy(irg, mode_h);
2092         for (i = 0; i < arity; ++i) {
2093                 in_l[i] = unk_l;
2094                 in_h[i] = unk_h;
2095         }
2096
2097         dbg   = get_irn_dbg_info(phi);
2098         block = get_nodes_block(phi);
2099         phi_l = new_rd_Phi(dbg, block, arity, in_l, mode_l);
2100         phi_h = new_rd_Phi(dbg, block, arity, in_h, mode_h);
2101
2102         ir_set_dw_lowered(phi, phi_l, phi_h);
2103
2104         /* remember that we need to fixup the predecessors later */
2105         ARR_APP1(ir_node*, env->lowered_phis, phi);
2106 }
2107
2108 static void fixup_phi(ir_node *phi)
2109 {
2110         const lower64_entry_t *entry = get_node_entry(phi);
2111         ir_node               *phi_l = entry->low_word;
2112         ir_node               *phi_h = entry->high_word;
2113         int                    arity = get_Phi_n_preds(phi);
2114         int                    i;
2115
2116         /* exchange phi predecessors which are lowered by now */
2117         for (i = 0; i < arity; ++i) {
2118                 ir_node               *pred       = get_Phi_pred(phi, i);
2119                 const lower64_entry_t *pred_entry = get_node_entry(pred);
2120
2121                 set_Phi_pred(phi_l, i, pred_entry->low_word);
2122                 set_Phi_pred(phi_h, i, pred_entry->high_word);
2123         }
2124 }
2125
2126 /**
2127  * Translate a Mux.
2128  */
2129 static void lower_Mux(ir_node *mux, ir_mode *mode)
2130 {
2131         ir_node               *truen       = get_Mux_true(mux);
2132         ir_node               *falsen      = get_Mux_false(mux);
2133         ir_node               *sel         = get_Mux_sel(mux);
2134         const lower64_entry_t *true_entry  = get_node_entry(truen);
2135         const lower64_entry_t *false_entry = get_node_entry(falsen);
2136         ir_node               *true_l      = true_entry->low_word;
2137         ir_node               *true_h      = true_entry->high_word;
2138         ir_node               *false_l     = false_entry->low_word;
2139         ir_node               *false_h     = false_entry->high_word;
2140         dbg_info              *dbgi        = get_irn_dbg_info(mux);
2141         ir_node               *block       = get_nodes_block(mux);
2142         ir_node               *res_low
2143                 = new_rd_Mux(dbgi, block, sel, false_l, true_l, env->low_unsigned);
2144         ir_node               *res_high
2145                 = new_rd_Mux(dbgi, block, sel, false_h, true_h, mode);
2146         ir_set_dw_lowered(mux, res_low, res_high);
2147 }
2148
2149 /**
2150  * Translate an ASM node.
2151  */
2152 static void lower_ASM(ir_node *asmn, ir_mode *mode)
2153 {
2154         ir_mode           *high_signed        = env->high_signed;
2155         ir_mode           *high_unsigned      = env->high_unsigned;
2156         int                n_outs             = get_ASM_n_output_constraints(asmn);
2157         ir_asm_constraint *output_constraints = get_ASM_output_constraints(asmn);
2158         ir_asm_constraint *input_constraints  = get_ASM_input_constraints(asmn);
2159         unsigned           n_64bit_outs       = 0;
2160         int      i;
2161
2162         (void)mode;
2163
2164         for (i = get_irn_arity(asmn) - 1; i >= 0; --i) {
2165                 ir_node *op      = get_irn_n(asmn, i);
2166                 ir_mode *op_mode = get_irn_mode(op);
2167                 if (op_mode == high_signed || op_mode == high_unsigned) {
2168                         panic("lowering ASM 64bit input unimplemented");
2169                 }
2170         }
2171
2172         for (i = 0; i < n_outs; ++i) {
2173                 const ir_asm_constraint *constraint = &output_constraints[i];
2174                 if (constraint->mode == high_signed || constraint->mode == high_unsigned) {
2175                         const char *constr = get_id_str(constraint->constraint);
2176                         ++n_64bit_outs;
2177                         /* TODO: How to do this architecture neutral? This is very
2178                          * i386 specific... */
2179                         if (constr[0] != '=' || constr[1] != 'A') {
2180                                 panic("lowering ASM 64bit output only supports '=A' currently");
2181                         }
2182                 }
2183         }
2184
2185         if (n_64bit_outs == 0)
2186                 return;
2187
2188         {
2189                 dbg_info          *dbgi       = get_irn_dbg_info(asmn);
2190                 ir_node           *block      = get_nodes_block(asmn);
2191                 int                arity      = get_irn_arity(asmn);
2192                 ir_node          **in         = get_irn_in(asmn) + 1;
2193                 int                n_outs     = get_ASM_n_output_constraints(asmn);
2194                 int                new_n_outs = 0;
2195                 int                n_clobber  = get_ASM_n_clobbers(asmn);
2196                 long              *proj_map   = ALLOCAN(long, n_outs);
2197                 ident            **clobbers   = get_ASM_clobbers(asmn);
2198                 ident             *asm_text   = get_ASM_text(asmn);
2199                 ir_asm_constraint *new_outputs
2200                         = ALLOCAN(ir_asm_constraint, n_outs+n_64bit_outs);
2201                 ir_node           *new_asm;
2202                 const ir_edge_t   *edge;
2203                 const ir_edge_t   *next;
2204
2205                 for (i = 0; i < n_outs; ++i) {
2206                         const ir_asm_constraint *constraint = &output_constraints[i];
2207                         if (constraint->mode == high_signed || constraint->mode == high_unsigned) {
2208                                 new_outputs[new_n_outs].pos        = constraint->pos;
2209                                 new_outputs[new_n_outs].constraint = new_id_from_str("=a");
2210                                 new_outputs[new_n_outs].mode       = env->low_unsigned;
2211                                 proj_map[i] = new_n_outs;
2212                                 ++new_n_outs;
2213                                 new_outputs[new_n_outs].pos        = constraint->pos;
2214                                 new_outputs[new_n_outs].constraint = new_id_from_str("=d");
2215                                 if (constraint->mode == high_signed)
2216                                         new_outputs[new_n_outs].mode = env->low_signed;
2217                                 else
2218                                         new_outputs[new_n_outs].mode = env->low_unsigned;
2219                                 ++new_n_outs;
2220                         } else {
2221                                 new_outputs[new_n_outs] = *constraint;
2222                                 proj_map[i] = new_n_outs;
2223                                 ++new_n_outs;
2224                         }
2225                 }
2226                 assert(new_n_outs == n_outs+(int)n_64bit_outs);
2227
2228                 new_asm = new_rd_ASM(dbgi, block, arity, in, input_constraints,
2229                                      new_n_outs, new_outputs, n_clobber, clobbers,
2230                                      asm_text);
2231
2232                 foreach_out_edge_safe(asmn, edge, next) {
2233                         ir_node *proj      = get_edge_src_irn(edge);
2234                         ir_mode *proj_mode = get_irn_mode(proj);
2235                         long     pn;
2236
2237                         if (!is_Proj(proj))
2238                                 continue;
2239                         pn = get_Proj_proj(proj);
2240
2241                         if (pn < n_outs)
2242                                 pn = proj_map[pn];
2243                         else
2244                                 pn = new_n_outs + pn - n_outs;
2245
2246                         if (proj_mode == high_signed || proj_mode == high_unsigned) {
2247                                 ir_mode *high_mode
2248                                         = proj_mode == high_signed ? env->low_signed : env->low_unsigned;
2249                                 ir_node *np_low  = new_r_Proj(new_asm, env->low_unsigned, pn);
2250                                 ir_node *np_high = new_r_Proj(new_asm, high_mode, pn+1);
2251                                 ir_set_dw_lowered(proj, np_low, np_high);
2252                         } else {
2253                                 ir_node *np = new_r_Proj(new_asm, proj_mode, pn);
2254                                 exchange(proj, np);
2255                         }
2256                 }
2257         }
2258 }
2259
2260 /**
2261  * Translate a Sel node.
2262  */
2263 static void lower_Sel(ir_node *sel, ir_mode *mode)
2264 {
2265         (void) mode;
2266
2267         /* we must only lower value parameter Sels if we change the
2268            value parameter type. */
2269         if (env->value_param_tp != NULL) {
2270                 ir_entity *ent = get_Sel_entity(sel);
2271             if (get_entity_owner(ent) == env->value_param_tp) {
2272                         size_t pos = get_entity_arg_idx(ent);
2273
2274                         ent = get_method_value_param_ent(env->l_mtp, pos);
2275                         set_Sel_entity(sel, ent);
2276                 }
2277         }
2278 }
2279
2280 /**
2281  * check for opcodes that must always be lowered.
2282  */
2283 static bool always_lower(unsigned code)
2284 {
2285         switch (code) {
2286         case iro_ASM:
2287         case iro_Proj:
2288         case iro_Start:
2289         case iro_Call:
2290         case iro_Return:
2291         case iro_Cond:
2292         case iro_Conv:
2293         case iro_Sel:
2294                 return true;
2295         default:
2296                 return false;
2297         }
2298 }
2299
2300 /**
2301  * Compare two op_mode_entry_t's.
2302  */
2303 static int cmp_op_mode(const void *elt, const void *key, size_t size)
2304 {
2305         const op_mode_entry_t *e1 = (const op_mode_entry_t*)elt;
2306         const op_mode_entry_t *e2 = (const op_mode_entry_t*)key;
2307         (void) size;
2308
2309         return (e1->op != e2->op) | (e1->imode != e2->imode) | (e1->omode != e2->omode);
2310 }
2311
2312 /**
2313  * Compare two conv_tp_entry_t's.
2314  */
2315 static int cmp_conv_tp(const void *elt, const void *key, size_t size)
2316 {
2317         const conv_tp_entry_t *e1 = (const conv_tp_entry_t*)elt;
2318         const conv_tp_entry_t *e2 = (const conv_tp_entry_t*)key;
2319         (void) size;
2320
2321         return (e1->imode != e2->imode) | (e1->omode != e2->omode);
2322 }
2323
2324 /**
2325  * Enter a lowering function into an ir_op.
2326  */
2327 void ir_register_dw_lower_function(ir_op *op, lower_dw_func func)
2328 {
2329         op->ops.generic = (op_func)func;
2330 }
2331
2332 /**
2333  * Returns non-zero if a method type must be lowered.
2334  *
2335  * @param mtp  the method type
2336  */
2337 static bool mtp_must_be_lowered(ir_type *mtp)
2338 {
2339         size_t i, n_params = get_method_n_params(mtp);
2340
2341         /* first check if we have parameters that must be fixed */
2342         for (i = 0; i < n_params; ++i) {
2343                 ir_type *tp = get_method_param_type(mtp, i);
2344
2345                 if (is_Primitive_type(tp)) {
2346                         ir_mode *mode = get_type_mode(tp);
2347
2348                         if (mode == env->high_signed || mode == env->high_unsigned)
2349                                 return true;
2350                 }
2351         }
2352         return false;
2353 }
2354
2355 /* Determine which modes need to be lowered */
2356 static void setup_modes(void)
2357 {
2358         unsigned           size_bits           = env->params->doubleword_size;
2359         ir_mode           *doubleword_signed   = NULL;
2360         ir_mode           *doubleword_unsigned = NULL;
2361         size_t             n_modes             = get_irp_n_modes();
2362         ir_mode_arithmetic arithmetic;
2363         unsigned           modulo_shift;
2364         size_t             i;
2365
2366         /* search for doubleword modes... */
2367         for (i = 0; i < n_modes; ++i) {
2368                 ir_mode *mode = get_irp_mode(i);
2369                 if (!mode_is_int(mode))
2370                         continue;
2371                 if (get_mode_size_bits(mode) != size_bits)
2372                         continue;
2373                 if (mode_is_signed(mode)) {
2374                         if (doubleword_signed != NULL) {
2375                                 /* sigh - the lowerer should really just lower all mode with
2376                                  * size_bits it finds. Unfortunately this required a bigger
2377                                  * rewrite. */
2378                                 panic("multiple double word signed modes found");
2379                         }
2380                         doubleword_signed = mode;
2381                 } else {
2382                         if (doubleword_unsigned != NULL) {
2383                                 /* sigh - the lowerer should really just lower all mode with
2384                                  * size_bits it finds. Unfortunately this required a bigger
2385                                  * rewrite. */
2386                                 panic("multiple double word unsigned modes found");
2387                         }
2388                         doubleword_unsigned = mode;
2389                 }
2390         }
2391         if (doubleword_signed == NULL || doubleword_unsigned == NULL) {
2392                 panic("Couldn't find doubleword modes");
2393         }
2394
2395         arithmetic   = get_mode_arithmetic(doubleword_signed);
2396         modulo_shift = get_mode_modulo_shift(doubleword_signed);
2397
2398         assert(get_mode_size_bits(doubleword_unsigned) == size_bits);
2399         assert(size_bits % 2 == 0);
2400         assert(get_mode_sign(doubleword_signed) == 1);
2401         assert(get_mode_sign(doubleword_unsigned) == 0);
2402         assert(get_mode_sort(doubleword_signed) == irms_int_number);
2403         assert(get_mode_sort(doubleword_unsigned) == irms_int_number);
2404         assert(get_mode_arithmetic(doubleword_unsigned) == arithmetic);
2405         assert(get_mode_modulo_shift(doubleword_unsigned) == modulo_shift);
2406
2407         /* try to guess a sensible modulo shift for the new mode.
2408          * (This is IMO another indication that this should really be a node
2409          *  attribute instead of a mode thing) */
2410         if (modulo_shift == size_bits) {
2411                 modulo_shift = modulo_shift / 2;
2412         } else if (modulo_shift == 0) {
2413                 /* fine */
2414         } else {
2415                 panic("Don't know what new modulo shift to use for lowered doubleword mode");
2416         }
2417         size_bits /= 2;
2418
2419         /* produce lowered modes */
2420         env->high_signed   = doubleword_signed;
2421         env->high_unsigned = doubleword_unsigned;
2422         env->low_signed    = new_ir_mode("WS", irms_int_number, size_bits, 1,
2423                                          arithmetic, modulo_shift);
2424         env->low_unsigned  = new_ir_mode("WU", irms_int_number, size_bits, 0,
2425                                          arithmetic, modulo_shift);
2426 }
2427
2428 static void enqueue_preds(ir_node *node)
2429 {
2430         int arity = get_irn_arity(node);
2431         int i;
2432
2433         for (i = 0; i < arity; ++i) {
2434                 ir_node *pred = get_irn_n(node, i);
2435                 pdeq_putr(env->waitq, pred);
2436         }
2437 }
2438
2439 static void lower_node(ir_node *node)
2440 {
2441         int              arity;
2442         int              i;
2443         lower_dw_func    func;
2444         ir_op           *op;
2445         ir_mode         *mode;
2446         unsigned         idx;
2447         lower64_entry_t *entry;
2448
2449         if (irn_visited_else_mark(node))
2450                 return;
2451
2452         /* cycles are always broken at Phi and Block nodes. So we don't need special
2453          * magic in all the other lower functions */
2454         if (is_Block(node)) {
2455                 enqueue_preds(node);
2456                 return;
2457         } else if (is_Phi(node)) {
2458                 lower_Phi(node);
2459                 return;
2460         }
2461
2462         /* depth-first: descend into operands */
2463         if (!is_Block(node)) {
2464                 ir_node *block = get_nodes_block(node);
2465                 lower_node(block);
2466         }
2467
2468         if (!is_Cond(node)) {
2469                 arity = get_irn_arity(node);
2470                 for (i = 0; i < arity; ++i) {
2471                         ir_node *pred = get_irn_n(node, i);
2472                         lower_node(pred);
2473                 }
2474         }
2475
2476         op   = get_irn_op(node);
2477         func = (lower_dw_func) op->ops.generic;
2478         if (func == NULL)
2479                 return;
2480
2481         idx   = get_irn_idx(node);
2482         entry = idx < env->n_entries ? env->entries[idx] : NULL;
2483         if (entry != NULL || always_lower(get_irn_opcode(node))) {
2484                 mode = get_irn_op_mode(node);
2485                 if (mode == env->high_signed) {
2486                         mode = env->low_signed;
2487                 } else {
2488                         mode = env->low_unsigned;
2489                 }
2490                 DB((dbg, LEVEL_1, "  %+F\n", node));
2491                 func(node, mode);
2492         }
2493 }
2494
2495 static void clear_node_and_phi_links(ir_node *node, void *data)
2496 {
2497         (void) data;
2498         if (get_irn_mode(node) == mode_T) {
2499                 set_irn_link(node, node);
2500         } else {
2501                 set_irn_link(node, NULL);
2502         }
2503         if (is_Block(node))
2504                 set_Block_phis(node, NULL);
2505         else if (is_Phi(node))
2506                 set_Phi_next(node, NULL);
2507 }
2508
2509 static void lower_irg(ir_graph *irg)
2510 {
2511         ir_entity *ent;
2512         ir_type   *mtp;
2513         unsigned   n_idx;
2514
2515         obstack_init(&env->obst);
2516
2517         /* just here for debugging */
2518         current_ir_graph = irg;
2519         edges_assure(irg);
2520
2521         n_idx = get_irg_last_idx(irg);
2522         n_idx = n_idx + (n_idx >> 2);  /* add 25% */
2523         env->n_entries = n_idx;
2524         env->entries   = NEW_ARR_F(lower64_entry_t*, n_idx);
2525         memset(env->entries, 0, sizeof(env->entries[0]) * n_idx);
2526
2527         env->irg            = irg;
2528         env->l_mtp          = NULL;
2529         env->flags          = 0;
2530         env->value_param_tp = NULL;
2531
2532         ent = get_irg_entity(irg);
2533         mtp = get_entity_type(ent);
2534
2535         if (mtp_must_be_lowered(mtp)) {
2536                 ir_type *ltp = lower_mtp(mtp);
2537                 /* Do not update the entity type yet, this will be done by lower_Start! */
2538                 env->flags |= MUST_BE_LOWERED;
2539                 env->l_mtp = ltp;
2540                 env->value_param_tp = get_method_value_param_type(mtp);
2541         }
2542
2543         /* first step: link all nodes and allocate data */
2544         ir_reserve_resources(irg, IR_RESOURCE_PHI_LIST | IR_RESOURCE_IRN_LINK);
2545         visit_all_identities(irg, clear_node_and_phi_links, NULL);
2546         irg_walk_graph(irg, NULL, prepare_links_and_handle_rotl, env);
2547
2548         if (env->flags & MUST_BE_LOWERED) {
2549                 size_t i;
2550                 ir_reserve_resources(irg, IR_RESOURCE_IRN_VISITED);
2551                 inc_irg_visited(irg);
2552
2553                 assert(pdeq_empty(env->waitq));
2554                 pdeq_putr(env->waitq, get_irg_end(irg));
2555
2556                 env->lowered_phis = NEW_ARR_F(ir_node*, 0);
2557                 while (!pdeq_empty(env->waitq)) {
2558                         ir_node *node = (ir_node*)pdeq_getl(env->waitq);
2559                         lower_node(node);
2560                 }
2561
2562                 /* we need to fixup phis */
2563                 for (i = 0; i < ARR_LEN(env->lowered_phis); ++i) {
2564                         ir_node *phi = env->lowered_phis[i];
2565                         fixup_phi(phi);
2566                 }
2567                 DEL_ARR_F(env->lowered_phis);
2568
2569
2570                 ir_free_resources(irg, IR_RESOURCE_IRN_VISITED);
2571
2572                 if (env->flags & CF_CHANGED) {
2573                         /* control flow changed, dominance info is invalid */
2574                         set_irg_doms_inconsistent(irg);
2575                         set_irg_extblk_inconsistent(irg);
2576                 }
2577                 edges_deactivate(irg);
2578         }
2579
2580         ir_free_resources(irg, IR_RESOURCE_PHI_LIST | IR_RESOURCE_IRN_LINK);
2581
2582         DEL_ARR_F(env->entries);
2583         obstack_free(&env->obst, NULL);
2584 }
2585
2586 static const lwrdw_param_t *param;
2587
2588 void ir_prepare_dw_lowering(const lwrdw_param_t *new_param)
2589 {
2590         assert(new_param != NULL);
2591         FIRM_DBG_REGISTER(dbg, "firm.lower.dw");
2592
2593         param = new_param;
2594
2595         clear_irp_opcodes_generic_func();
2596         ir_register_dw_lower_function(op_ASM,     lower_ASM);
2597         ir_register_dw_lower_function(op_Add,     lower_binop);
2598         ir_register_dw_lower_function(op_And,     lower_And);
2599         ir_register_dw_lower_function(op_Bad,     lower_Bad);
2600         ir_register_dw_lower_function(op_Call,    lower_Call);
2601         ir_register_dw_lower_function(op_Cmp,     lower_Cmp);
2602         ir_register_dw_lower_function(op_Cond,    lower_Cond);
2603         ir_register_dw_lower_function(op_Const,   lower_Const);
2604         ir_register_dw_lower_function(op_Conv,    lower_Conv);
2605         ir_register_dw_lower_function(op_Div,     lower_Div);
2606         ir_register_dw_lower_function(op_Eor,     lower_Eor);
2607         ir_register_dw_lower_function(op_Load,    lower_Load);
2608         ir_register_dw_lower_function(op_Minus,   lower_unop);
2609         ir_register_dw_lower_function(op_Mod,     lower_Mod);
2610         ir_register_dw_lower_function(op_Mul,     lower_binop);
2611         ir_register_dw_lower_function(op_Mux,     lower_Mux);
2612         ir_register_dw_lower_function(op_Not,     lower_Not);
2613         ir_register_dw_lower_function(op_Or,      lower_Or);
2614         ir_register_dw_lower_function(op_Return,  lower_Return);
2615         ir_register_dw_lower_function(op_Sel,     lower_Sel);
2616         ir_register_dw_lower_function(op_Shl,     lower_Shl);
2617         ir_register_dw_lower_function(op_Shr,     lower_Shr);
2618         ir_register_dw_lower_function(op_Shrs,    lower_Shrs);
2619         ir_register_dw_lower_function(op_Start,   lower_Start);
2620         ir_register_dw_lower_function(op_Store,   lower_Store);
2621         ir_register_dw_lower_function(op_Sub,     lower_binop);
2622         ir_register_dw_lower_function(op_Unknown, lower_Unknown);
2623 }
2624
2625 /*
2626  * Do the lowering.
2627  */
2628 void ir_lower_dw_ops(void)
2629 {
2630         lower_dw_env_t lenv;
2631         size_t      i, n;
2632
2633         memset(&lenv, 0, sizeof(lenv));
2634         lenv.params = param;
2635         env = &lenv;
2636
2637         setup_modes();
2638
2639         /* create the necessary maps */
2640         if (! intrinsic_fkt)
2641                 intrinsic_fkt = new_set(cmp_op_mode, iro_Last + 1);
2642         if (! conv_types)
2643                 conv_types = new_set(cmp_conv_tp, 16);
2644         if (! lowered_type)
2645                 lowered_type = pmap_create();
2646
2647         /* create a primitive unsigned and signed type */
2648         if (! tp_u)
2649                 tp_u = get_type_for_mode(lenv.low_unsigned);
2650         if (! tp_s)
2651                 tp_s = get_type_for_mode(lenv.low_signed);
2652
2653         /* create method types for the created binop calls */
2654         if (! binop_tp_u) {
2655                 binop_tp_u = new_type_method(4, 2);
2656                 set_method_param_type(binop_tp_u, 0, tp_u);
2657                 set_method_param_type(binop_tp_u, 1, tp_u);
2658                 set_method_param_type(binop_tp_u, 2, tp_u);
2659                 set_method_param_type(binop_tp_u, 3, tp_u);
2660                 set_method_res_type(binop_tp_u, 0, tp_u);
2661                 set_method_res_type(binop_tp_u, 1, tp_u);
2662         }
2663         if (! binop_tp_s) {
2664                 binop_tp_s = new_type_method(4, 2);
2665                 if (env->params->little_endian) {
2666                         set_method_param_type(binop_tp_s, 0, tp_u);
2667                         set_method_param_type(binop_tp_s, 1, tp_s);
2668                         set_method_param_type(binop_tp_s, 2, tp_u);
2669                         set_method_param_type(binop_tp_s, 3, tp_s);
2670                         set_method_res_type(binop_tp_s, 0, tp_u);
2671                         set_method_res_type(binop_tp_s, 1, tp_s);
2672                 } else {
2673                         set_method_param_type(binop_tp_s, 0, tp_s);
2674                         set_method_param_type(binop_tp_s, 1, tp_u);
2675                         set_method_param_type(binop_tp_s, 2, tp_s);
2676                         set_method_param_type(binop_tp_s, 3, tp_u);
2677                         set_method_res_type(binop_tp_s, 0, tp_s);
2678                         set_method_res_type(binop_tp_s, 1, tp_u);
2679                 }
2680         }
2681         if (! unop_tp_u) {
2682                 unop_tp_u = new_type_method(2, 2);
2683                 set_method_param_type(unop_tp_u, 0, tp_u);
2684                 set_method_param_type(unop_tp_u, 1, tp_u);
2685                 set_method_res_type(unop_tp_u, 0, tp_u);
2686                 set_method_res_type(unop_tp_u, 1, tp_u);
2687         }
2688         if (! unop_tp_s) {
2689                 unop_tp_s = new_type_method(2, 2);
2690                 if (env->params->little_endian) {
2691                         set_method_param_type(unop_tp_s, 0, tp_u);
2692                         set_method_param_type(unop_tp_s, 1, tp_s);
2693                         set_method_res_type(unop_tp_s, 0, tp_u);
2694                         set_method_res_type(unop_tp_s, 1, tp_s);
2695                 } else {
2696                         set_method_param_type(unop_tp_s, 0, tp_s);
2697                         set_method_param_type(unop_tp_s, 1, tp_u);
2698                         set_method_res_type(unop_tp_s, 0, tp_s);
2699                         set_method_res_type(unop_tp_s, 1, tp_u);
2700                 }
2701         }
2702
2703         lenv.tv_mode_bytes = new_tarval_from_long(param->doubleword_size/(2*8), lenv.low_unsigned);
2704         lenv.tv_mode_bits  = new_tarval_from_long(param->doubleword_size/2, lenv.low_unsigned);
2705         lenv.waitq         = new_pdeq();
2706         lenv.first_id      = new_id_from_chars(param->little_endian ? ".l" : ".h", 2);
2707         lenv.next_id       = new_id_from_chars(param->little_endian ? ".h" : ".l", 2);
2708
2709         /* transform all graphs */
2710         for (i = 0, n = get_irp_n_irgs(); i < n; ++i) {
2711                 ir_graph *irg = get_irp_irg(i);
2712                 lower_irg(irg);
2713         }
2714         del_pdeq(lenv.waitq);
2715
2716         env = NULL;
2717 }
2718
2719 /* Default implementation. */
2720 ir_entity *def_create_intrinsic_fkt(ir_type *method, const ir_op *op,
2721                                     const ir_mode *imode, const ir_mode *omode,
2722                                     void *context)
2723 {
2724         char buf[64];
2725         ident *id;
2726         ir_entity *ent;
2727         (void) context;
2728
2729         if (imode == omode) {
2730                 snprintf(buf, sizeof(buf), "__l%s%s", get_op_name(op), get_mode_name(imode));
2731         } else {
2732                 snprintf(buf, sizeof(buf), "__l%s%s%s", get_op_name(op),
2733                         get_mode_name(imode), get_mode_name(omode));
2734         }
2735         id = new_id_from_str(buf);
2736
2737         ent = new_entity(get_glob_type(), id, method);
2738         set_entity_ld_ident(ent, get_entity_ident(ent));
2739         set_entity_visibility(ent, ir_visibility_external);
2740         return ent;
2741 }