f4ec72077ffd4fea8c8749087ea4711d290cb073
[fw/sdcc] / src / pic16 / pcode.c
1 /*-------------------------------------------------------------------------
2
3   pcode.c - post code generation
4
5    Written By -  Scott Dattalo scott@dattalo.com
6    Ported to PIC16 By -  Martin Dubuc m.dubuc@rogers.com
7
8    This program is free software; you can redistribute it and/or modify it
9    under the terms of the GNU General Public License as published by the
10    Free Software Foundation; either version 2, or (at your option) any
11    later version.
12    
13    This program is distributed in the hope that it will be useful,
14    but WITHOUT ANY WARRANTY; without even the implied warranty of
15    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16    GNU General Public License for more details.
17    
18    You should have received a copy of the GNU General Public License
19    along with this program; if not, write to the Free Software
20    Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
21 -------------------------------------------------------------------------*/
22
23 #include <stdio.h>
24
25 #include "common.h"   // Include everything in the SDCC src directory
26 #include "newalloc.h"
27
28
29 #include "main.h"
30 #include "pcode.h"
31 #include "pcodeflow.h"
32 #include "ralloc.h"
33 #include "device.h"
34
35 #if defined(__BORLANDC__) || defined(_MSC_VER)
36 #define STRCASECMP stricmp
37 #else
38 #define STRCASECMP strcasecmp
39 #endif
40
41 /****************************************************************/
42 /****************************************************************/
43
44 static peepCommand peepCommands[] = {
45
46   {NOTBITSKIP, "_NOTBITSKIP_"},
47   {BITSKIP, "_BITSKIP_"},
48   {INVERTBITSKIP, "_INVERTBITSKIP_"},
49
50   {-1, NULL}
51 };
52
53
54
55 // Eventually this will go into device dependent files:
56 pCodeOpReg pic16_pc_status    = {{PO_STATUS,  "STATUS"}, -1, NULL,0,NULL};
57 pCodeOpReg pic16_pc_intcon    = {{PO_INTCON,  "INTCON"}, -1, NULL,0,NULL};
58 pCodeOpReg pic16_pc_pcl       = {{PO_PCL,     "PCL"}, -1, NULL,0,NULL};
59 pCodeOpReg pic16_pc_pclath    = {{PO_PCLATH,  "PCLATH"}, -1, NULL,0,NULL};
60 pCodeOpReg pic16_pc_pclatu    = {{PO_PCLATU,  "PCLATU"}, -1, NULL,0,NULL}; // patch 14
61 pCodeOpReg pic16_pc_wreg      = {{PO_WREG,    "WREG"}, -1, NULL,0,NULL};
62 pCodeOpReg pic16_pc_bsr       = {{PO_BSR,     "BSR"}, -1, NULL,0,NULL};
63
64 pCodeOpReg pic16_pc_tosl      = {{PO_SFR_REGISTER,   "TOSL"}, -1, NULL,0,NULL}; // patch 14
65 pCodeOpReg pic16_pc_tosh      = {{PO_SFR_REGISTER,   "TOSH"}, -1, NULL,0,NULL}; //
66 pCodeOpReg pic16_pc_tosu      = {{PO_SFR_REGISTER,   "TOSU"}, -1, NULL,0,NULL}; // patch 14
67
68 pCodeOpReg pic16_pc_tblptrl   = {{PO_SFR_REGISTER,   "TBLPTRL"}, -1, NULL,0,NULL}; // patch 15
69 pCodeOpReg pic16_pc_tblptrh   = {{PO_SFR_REGISTER,   "TBLPTRH"}, -1, NULL,0,NULL}; //
70 pCodeOpReg pic16_pc_tblptru   = {{PO_SFR_REGISTER,   "TBLPTRU"}, -1, NULL,0,NULL}; //
71 pCodeOpReg pic16_pc_tablat    = {{PO_SFR_REGISTER,   "TABLAT"}, -1, NULL,0,NULL};  // patch 15
72
73 //pCodeOpReg pic16_pc_fsr0      = {{PO_FSR0,    "FSR0"}, -1, NULL,0,NULL}; //deprecated !
74
75 pCodeOpReg pic16_pc_fsr0l       = {{PO_FSR0,    "FSR0L"}, -1, NULL, 0, NULL};
76 pCodeOpReg pic16_pc_fsr0h       = {{PO_FSR0,    "FSR0H"}, -1, NULL, 0, NULL};
77 pCodeOpReg pic16_pc_fsr1l       = {{PO_FSR0,    "FSR1L"}, -1, NULL, 0, NULL};
78 pCodeOpReg pic16_pc_fsr1h       = {{PO_FSR0,    "FSR1H"}, -1, NULL, 0, NULL};
79 pCodeOpReg pic16_pc_fsr2l       = {{PO_FSR0,    "FSR2L"}, -1, NULL, 0, NULL};
80 pCodeOpReg pic16_pc_fsr2h       = {{PO_FSR0,    "FSR2H"}, -1, NULL, 0, NULL};
81
82 pCodeOpReg pic16_pc_indf0       = {{PO_INDF0,   "INDF0"}, -1, NULL,0,NULL};
83 pCodeOpReg pic16_pc_postinc0    = {{PO_INDF0,   "POSTINC0"}, -1, NULL, 0, NULL};
84 pCodeOpReg pic16_pc_postdec0    = {{PO_INDF0,   "POSTDEC0"}, -1, NULL, 0, NULL};
85 pCodeOpReg pic16_pc_preinc0     = {{PO_INDF0,   "PREINC0"}, -1, NULL, 0, NULL};
86 pCodeOpReg pic16_pc_plusw0      = {{PO_INDF0,   "PLUSW0"}, -1, NULL, 0, NULL};
87
88 pCodeOpReg pic16_pc_indf1       = {{PO_INDF0,   "INDF1"}, -1, NULL,0,NULL};
89 pCodeOpReg pic16_pc_postinc1    = {{PO_INDF0,   "POSTINC1"}, -1, NULL, 0, NULL};
90 pCodeOpReg pic16_pc_postdec1    = {{PO_INDF0,   "POSTDEC1"}, -1, NULL, 0, NULL};
91 pCodeOpReg pic16_pc_preinc1     = {{PO_INDF0,   "PREINC1"}, -1, NULL, 0, NULL};
92 pCodeOpReg pic16_pc_plusw1      = {{PO_INDF0,   "PLUSW1"}, -1, NULL, 0, NULL};
93
94 pCodeOpReg pic16_pc_indf2       = {{PO_INDF0,   "INDF2"}, -1, NULL,0,NULL};
95 pCodeOpReg pic16_pc_postinc2    = {{PO_INDF0,   "POSTINC2"}, -1, NULL, 0, NULL};
96 pCodeOpReg pic16_pc_postdec2    = {{PO_INDF0,   "POSTDEC2"}, -1, NULL, 0, NULL};
97 pCodeOpReg pic16_pc_preinc2     = {{PO_INDF0,   "PREINC2"}, -1, NULL, 0, NULL};
98 pCodeOpReg pic16_pc_plusw2      = {{PO_INDF0,   "PLUSW2"}, -1, NULL, 0, NULL};
99
100 pCodeOpReg pic16_pc_prodl       = {{PO_PRODL, "PRODL"}, -1, NULL, 0, NULL};
101 pCodeOpReg pic16_pc_prodh       = {{PO_PRODH, "PRODH"}, -1, NULL, 0, NULL};
102
103 /* EEPROM registers */
104 pCodeOpReg pic16_pc_eecon1      = {{PO_SFR_REGISTER, "EECON1"}, -1, NULL, 0, NULL};
105 pCodeOpReg pic16_pc_eecon2      = {{PO_SFR_REGISTER, "EECON2"}, -1, NULL, 0, NULL};
106 pCodeOpReg pic16_pc_eedata      = {{PO_SFR_REGISTER, "EEDATA"}, -1, NULL, 0, NULL};
107 pCodeOpReg pic16_pc_eeadr       = {{PO_SFR_REGISTER, "EEADR"}, -1, NULL, 0, NULL};
108
109
110
111 pCodeOpReg pic16_pc_kzero     = {{PO_GPR_REGISTER,  "KZ"}, -1, NULL,0,NULL};
112 pCodeOpReg pic16_pc_wsave     = {{PO_GPR_REGISTER,  "WSAVE"}, -1, NULL,0,NULL};
113 pCodeOpReg pic16_pc_ssave     = {{PO_GPR_REGISTER,  "SSAVE"}, -1, NULL,0,NULL};
114
115 static int mnemonics_initialized = 0;
116
117
118 static hTab *pic16MnemonicsHash = NULL;
119 static hTab *pic16pCodePeepCommandsHash = NULL;
120
121 static pFile *the_pFile = NULL;
122 static pBlock *pb_dead_pcodes = NULL;
123
124 /* Hardcoded flags to change the behavior of the PIC port */
125 static int peepOptimizing = 1;        /* run the peephole optimizer if nonzero */
126 static int functionInlining = 1;      /* inline functions if nonzero */
127 int pic16_debug_verbose = 0;                /* Set true to inundate .asm file */
128
129 int pic16_pcode_verbose = 0;
130
131 //static int GpCodeSequenceNumber = 1;
132 static int GpcFlowSeq = 1;
133
134 extern void pic16_RemoveUnusedRegisters(void);
135 extern void pic16_RegsUnMapLiveRanges(void);
136 extern void pic16_BuildFlowTree(pBlock *pb);
137 extern void pic16_pCodeRegOptimizeRegUsage(int level);
138 extern int pic16_picIsInitialized(void);
139 extern void SAFE_snprintf(char **str, size_t *size, const char *format, ...);
140 extern int mnem2key(char const *mnem);
141
142 /****************************************************************/
143 /*                      Forward declarations                    */
144 /****************************************************************/
145
146 void pic16_unlinkpCode(pCode *pc);
147 #if 0
148 static void genericAnalyze(pCode *pc);
149 static void AnalyzeGOTO(pCode *pc);
150 static void AnalyzeSKIP(pCode *pc);
151 static void AnalyzeRETURN(pCode *pc);
152 #endif
153
154 static void genericDestruct(pCode *pc);
155 static void genericPrint(FILE *of,pCode *pc);
156
157 static void pCodePrintLabel(FILE *of, pCode *pc);
158 static void pCodePrintFunction(FILE *of, pCode *pc);
159 static void pCodeOpPrint(FILE *of, pCodeOp *pcop);
160 static char *pic16_get_op_from_instruction( pCodeInstruction *pcc);
161 char *pic16_get_op(pCodeOp *pcop,char *buff,size_t buf_size);
162 int pCodePeepMatchLine(pCodePeep *peepBlock, pCode *pcs, pCode *pcd);
163 int pic16_pCodePeepMatchRule(pCode *pc);
164 static void pBlockStats(FILE *of, pBlock *pb);
165 static pBlock *newpBlock(void);
166 extern void pic16_pCodeInsertAfter(pCode *pc1, pCode *pc2);
167 extern pCodeOp *pic16_popCopyReg(pCodeOpReg *pc);
168 pCodeOp *pic16_popCopyGPR2Bit(pCodeOp *pc, int bitval);
169 void pic16_pCodeRegMapLiveRanges(pBlock *pb);
170
171 char *dumpPicOptype(PIC_OPTYPE type);
172
173 /****************************************************************/
174 /*                    PIC Instructions                          */
175 /****************************************************************/
176
177 pCodeInstruction pic16_pciADDWF = {
178   {PC_OPCODE, NULL, NULL, 0, NULL, 
179    //   genericAnalyze,
180    genericDestruct,
181    genericPrint},
182   POC_ADDWF,
183   "ADDWF",
184   NULL, // from branch
185   NULL, // to branch
186   NULL, // label
187   NULL, // operand
188   NULL, // flow block
189   NULL, // C source 
190   3,    // num ops
191   1,0,  // dest, bit instruction
192   0,0,  // branch, skip
193   0,    // literal operand
194   1,    // RAM access bit
195   0,    // fast call/return mode select bit
196   0,    // second memory operand
197   0,    // second literal operand
198   POC_NOP,
199   (PCC_W | PCC_REGISTER),   // inCond
200   (PCC_REGISTER | PCC_Z), // outCond
201   PCI_MAGIC
202 };
203
204 pCodeInstruction pic16_pciADDFW = {
205   {PC_OPCODE, NULL, NULL, 0, NULL, 
206    //   genericAnalyze,
207    genericDestruct,
208    genericPrint},
209   POC_ADDFW,
210   "ADDWF",
211   NULL, // from branch
212   NULL, // to branch
213   NULL, // label
214   NULL, // operand
215   NULL, // flow block
216   NULL, // C source 
217   3,    // num ops
218   0,0,  // dest, bit instruction
219   0,0,  // branch, skip
220   0,    // literal operand
221   1,    // RAM access bit
222   0,    // fast call/return mode select bit
223   0,    // second memory operand
224   0,    // second literal operand
225   POC_NOP,
226   (PCC_W | PCC_REGISTER),   // inCond
227   (PCC_W | PCC_Z), // outCond
228   PCI_MAGIC
229 };
230
231 pCodeInstruction pic16_pciADDWFC = { // mdubuc - New
232   {PC_OPCODE, NULL, NULL, 0, NULL, 
233    //   genericAnalyze,
234    genericDestruct,
235    genericPrint},
236   POC_ADDWFC,
237   "ADDWFC",
238   NULL, // from branch
239   NULL, // to branch
240   NULL, // label
241   NULL, // operand
242   NULL, // flow block
243   NULL, // C source 
244   3,    // num ops
245   1,0,  // dest, bit instruction
246   0,0,  // branch, skip
247   0,    // literal operand
248   1,    // RAM access bit
249   0,    // fast call/return mode select bit
250   0,    // second memory operand
251   0,    // second literal operand
252   POC_NOP,
253   (PCC_W | PCC_REGISTER | PCC_C),   // inCond
254   (PCC_REGISTER | PCC_Z), // outCond
255   PCI_MAGIC
256 };
257
258 pCodeInstruction pic16_pciADDFWC = {
259   {PC_OPCODE, NULL, NULL, 0, NULL, 
260    //   genericAnalyze,
261    genericDestruct,
262    genericPrint},
263   POC_ADDFWC,
264   "ADDWFC",
265   NULL, // from branch
266   NULL, // to branch
267   NULL, // label
268   NULL, // operand
269   NULL, // flow block
270   NULL, // C source 
271   3,    // num ops
272   0,0,  // dest, bit instruction
273   0,0,  // branch, skip
274   0,    // literal operand
275   1,    // RAM access bit
276   0,    // fast call/return mode select bit
277   0,    // second memory operand
278   0,    // second literal operand
279   POC_NOP,
280   (PCC_W | PCC_REGISTER | PCC_C),   // inCond
281   (PCC_W | PCC_Z), // outCond
282   PCI_MAGIC
283 };
284
285 pCodeInstruction pic16_pciADDLW = {
286   {PC_OPCODE, NULL, NULL, 0, NULL, 
287    //   genericAnalyze,
288    genericDestruct,
289    genericPrint},
290   POC_ADDLW,
291   "ADDLW",
292   NULL, // from branch
293   NULL, // to branch
294   NULL, // label
295   NULL, // operand
296   NULL, // flow block
297   NULL, // C source 
298   1,    // num ops
299   0,0,  // dest, bit instruction
300   0,0,  // branch, skip
301   1,    // literal operand
302   0,    // RAM access bit
303   0,    // fast call/return mode select bit
304   0,    // second memory operand
305   0,    // second literal operand
306   POC_NOP,
307   (PCC_W | PCC_LITERAL),   // inCond
308   (PCC_W | PCC_Z | PCC_C | PCC_DC | PCC_OV | PCC_N), // outCond
309   PCI_MAGIC
310 };
311
312 pCodeInstruction pic16_pciANDLW = {
313   {PC_OPCODE, NULL, NULL, 0, NULL, 
314    //   genericAnalyze,
315    genericDestruct,
316    genericPrint},
317   POC_ANDLW,
318   "ANDLW",
319   NULL, // from branch
320   NULL, // to branch
321   NULL, // label
322   NULL, // operand
323   NULL, // flow block
324   NULL, // C source 
325   1,    // num ops
326   0,0,  // dest, bit instruction
327   0,0,  // branch, skip
328   1,    // literal operand
329   0,    // RAM access bit
330   0,    // fast call/return mode select bit
331   0,    // second memory operand
332   0,    // second literal operand
333   POC_NOP,
334   (PCC_W | PCC_LITERAL),   // inCond
335   (PCC_W | PCC_Z | PCC_N), // outCond
336   PCI_MAGIC
337 };
338
339 pCodeInstruction pic16_pciANDWF = {
340   {PC_OPCODE, NULL, NULL, 0, NULL, 
341    //   genericAnalyze,
342    genericDestruct,
343    genericPrint},
344   POC_ANDWF,
345   "ANDWF",
346   NULL, // from branch
347   NULL, // to branch
348   NULL, // label
349   NULL, // operand
350   NULL, // flow block
351   NULL, // C source 
352   3,    // num ops
353   1,0,  // dest, bit instruction
354   0,0,  // branch, skip
355   0,    // literal operand
356   1,    // RAM access bit
357   0,    // fast call/return mode select bit
358   0,    // second memory operand
359   0,    // second literal operand
360   POC_NOP,
361   (PCC_W | PCC_REGISTER),   // inCond
362   (PCC_REGISTER | PCC_Z | PCC_N), // outCond
363   PCI_MAGIC
364 };
365
366 pCodeInstruction pic16_pciANDFW = {
367   {PC_OPCODE, NULL, NULL, 0, NULL, 
368    //   genericAnalyze,
369    genericDestruct,
370    genericPrint},
371   POC_ANDFW,
372   "ANDWF",
373   NULL, // from branch
374   NULL, // to branch
375   NULL, // label
376   NULL, // operand
377   NULL, // flow block
378   NULL, // C source 
379   3,    // num ops
380   0,0,  // dest, bit instruction
381   0,0,  // branch, skip
382   0,    // literal operand
383   1,    // RAM access bit
384   0,    // fast call/return mode select bit
385   0,    // second memory operand
386   0,    // second literal operand
387   POC_NOP,
388   (PCC_W | PCC_REGISTER),   // inCond
389   (PCC_W | PCC_Z) // outCond
390 };
391
392 pCodeInstruction pic16_pciBC = { // mdubuc - New
393   {PC_OPCODE, NULL, NULL, 0, NULL, 
394    //   genericAnalyze,
395    genericDestruct,
396    genericPrint},
397   POC_BC,
398   "BC",
399   NULL, // from branch
400   NULL, // to branch
401   NULL, // label
402   NULL, // operand
403   NULL, // flow block
404   NULL, // C source 
405   1,    // num ops
406   0,0,  // dest, bit instruction
407   1,0,  // branch, skip
408   0,    // literal operand
409   0,    // RAM access bit
410   0,    // fast call/return mode select bit
411   0,    // second memory operand
412   0,    // second literal operand
413   POC_NOP,
414   (PCC_REL_ADDR | PCC_C),   // inCond
415   PCC_NONE,    // outCond
416   PCI_MAGIC
417 };
418
419 pCodeInstruction pic16_pciBCF = {
420   {PC_OPCODE, NULL, NULL, 0, NULL, 
421    //   genericAnalyze,
422    genericDestruct,
423    genericPrint},
424   POC_BCF,
425   "BCF",
426   NULL, // from branch
427   NULL, // to branch
428   NULL, // label
429   NULL, // operand
430   NULL, // flow block
431   NULL, // C source 
432   3,    // num ops
433   1,1,  // dest, bit instruction
434   0,0,  // branch, skip
435   0,    // literal operand
436   1,    // RAM access bit
437   0,    // fast call/return mode select bit
438   0,    // second memory operand
439   0,    // second literal operand
440   POC_BSF,
441   (PCC_REGISTER | PCC_EXAMINE_PCOP),   // inCond
442   PCC_REGISTER, // outCond
443   PCI_MAGIC
444 };
445
446 pCodeInstruction pic16_pciBN = { // mdubuc - New
447   {PC_OPCODE, NULL, NULL, 0, NULL, 
448    //   genericAnalyze,
449    genericDestruct,
450    genericPrint},
451   POC_BN,
452   "BN",
453   NULL, // from branch
454   NULL, // to branch
455   NULL, // label
456   NULL, // operand
457   NULL, // flow block
458   NULL, // C source 
459   1,    // num ops
460   0,0,  // dest, bit instruction
461   1,0,  // branch, skip
462   0,    // literal operand
463   0,    // RAM access bit
464   0,    // fast call/return mode select bit
465   0,    // second memory operand
466   0,    // second literal operand
467   POC_NOP,
468   (PCC_REL_ADDR | PCC_N),   // inCond
469   PCC_NONE   , // outCond
470   PCI_MAGIC
471 };
472
473 pCodeInstruction pic16_pciBNC = { // mdubuc - New
474   {PC_OPCODE, NULL, NULL, 0, NULL, 
475    //   genericAnalyze,
476    genericDestruct,
477    genericPrint},
478   POC_BNC,
479   "BNC",
480   NULL, // from branch
481   NULL, // to branch
482   NULL, // label
483   NULL, // operand
484   NULL, // flow block
485   NULL, // C source 
486   1,    // num ops
487   0,0,  // dest, bit instruction
488   1,0,  // branch, skip
489   0,    // literal operand
490   0,    // RAM access bit
491   0,    // fast call/return mode select bit
492   0,    // second memory operand
493   0,    // second literal operand
494   POC_NOP,
495   (PCC_REL_ADDR | PCC_C),   // inCond
496   PCC_NONE   , // outCond
497   PCI_MAGIC
498 };
499
500 pCodeInstruction pic16_pciBNN = { // mdubuc - New
501   {PC_OPCODE, NULL, NULL, 0, NULL, 
502    //   genericAnalyze,
503    genericDestruct,
504    genericPrint},
505   POC_BNN,
506   "BNN",
507   NULL, // from branch
508   NULL, // to branch
509   NULL, // label
510   NULL, // operand
511   NULL, // flow block
512   NULL, // C source 
513   1,    // num ops
514   0,0,  // dest, bit instruction
515   1,0,  // branch, skip
516   0,    // literal operand
517   0,    // RAM access bit
518   0,    // fast call/return mode select bit
519   0,    // second memory operand
520   0,    // second literal operand
521   POC_NOP,
522   (PCC_REL_ADDR | PCC_N),   // inCond
523   PCC_NONE   , // outCond
524   PCI_MAGIC
525 };
526
527 pCodeInstruction pic16_pciBNOV = { // mdubuc - New
528   {PC_OPCODE, NULL, NULL, 0, NULL, 
529    //   genericAnalyze,
530    genericDestruct,
531    genericPrint},
532   POC_BNOV,
533   "BNOV",
534   NULL, // from branch
535   NULL, // to branch
536   NULL, // label
537   NULL, // operand
538   NULL, // flow block
539   NULL, // C source 
540   1,    // num ops
541   0,0,  // dest, bit instruction
542   1,0,  // branch, skip
543   0,    // literal operand
544   0,    // RAM access bit
545   0,    // fast call/return mode select bit
546   0,    // second memory operand
547   0,    // second literal operand
548   POC_NOP,
549   (PCC_REL_ADDR | PCC_OV),   // inCond
550   PCC_NONE   , // outCond
551   PCI_MAGIC
552 };
553
554 pCodeInstruction pic16_pciBNZ = { // mdubuc - New
555   {PC_OPCODE, NULL, NULL, 0, NULL, 
556    //   genericAnalyze,
557    genericDestruct,
558    genericPrint},
559   POC_BNZ,
560   "BNZ",
561   NULL, // from branch
562   NULL, // to branch
563   NULL, // label
564   NULL, // operand
565   NULL, // flow block
566   NULL, // C source 
567   1,    // num ops
568   0,0,  // dest, bit instruction
569   1,0,  // branch, skip
570   0,    // literal operand
571   0,    // RAM access bit
572   0,    // fast call/return mode select bit
573   0,    // second memory operand
574   0,    // second literal operand
575   POC_NOP,
576   (PCC_REL_ADDR | PCC_Z),   // inCond
577   PCC_NONE   , // outCond
578   PCI_MAGIC
579 };
580
581 pCodeInstruction pic16_pciBOV = { // mdubuc - New
582   {PC_OPCODE, NULL, NULL, 0, NULL, 
583    //   genericAnalyze,
584    genericDestruct,
585    genericPrint},
586   POC_BOV,
587   "BOV",
588   NULL, // from branch
589   NULL, // to branch
590   NULL, // label
591   NULL, // operand
592   NULL, // flow block
593   NULL, // C source 
594   1,    // num ops
595   0,0,  // dest, bit instruction
596   1,0,  // branch, skip
597   0,    // literal operand
598   0,    // RAM access bit
599   0,    // fast call/return mode select bit
600   0,    // second memory operand
601   0,    // second literal operand
602   POC_NOP,
603   (PCC_REL_ADDR | PCC_OV),   // inCond
604   PCC_NONE , // outCond
605   PCI_MAGIC
606 };
607
608 pCodeInstruction pic16_pciBRA = { // mdubuc - New
609   {PC_OPCODE, NULL, NULL, 0, NULL, 
610    //   genericAnalyze,
611    genericDestruct,
612    genericPrint},
613   POC_BRA,
614   "BRA",
615   NULL, // from branch
616   NULL, // to branch
617   NULL, // label
618   NULL, // operand
619   NULL, // flow block
620   NULL, // C source 
621   1,    // num ops
622   0,0,  // dest, bit instruction
623   1,0,  // branch, skip
624   0,    // literal operand
625   0,    // RAM access bit
626   0,    // fast call/return mode select bit
627   0,    // second memory operand
628   0,    // second literal operand
629   POC_NOP,
630   PCC_REL_ADDR,   // inCond
631   PCC_NONE   , // outCond
632   PCI_MAGIC
633 };
634
635 pCodeInstruction pic16_pciBSF = {
636   {PC_OPCODE, NULL, NULL, 0, NULL, 
637    //   genericAnalyze,
638    genericDestruct,
639    genericPrint},
640   POC_BSF,
641   "BSF",
642   NULL, // from branch
643   NULL, // to branch
644   NULL, // label
645   NULL, // operand
646   NULL, // flow block
647   NULL, // C source 
648   3,    // num ops
649   1,1,  // dest, bit instruction
650   0,0,  // branch, skip
651   0,    // literal operand
652   1,    // RAM access bit
653   0,    // fast call/return mode select bit
654   0,    // second memory operand
655   0,    // second literal operand
656   POC_BCF,
657   (PCC_REGISTER | PCC_EXAMINE_PCOP),   // inCond
658   (PCC_REGISTER | PCC_EXAMINE_PCOP), // outCond
659   PCI_MAGIC
660 };
661
662 pCodeInstruction pic16_pciBTFSC = {
663   {PC_OPCODE, NULL, NULL, 0, NULL, 
664    //   AnalyzeSKIP,
665    genericDestruct,
666    genericPrint},
667   POC_BTFSC,
668   "BTFSC",
669   NULL, // from branch
670   NULL, // to branch
671   NULL, // label
672   NULL, // operand
673   NULL, // flow block
674   NULL, // C source 
675   3,    // num ops
676   0,1,  // dest, bit instruction
677   1,1,  // branch, skip
678   0,    // literal operand
679   1,    // RAM access bit
680   0,    // fast call/return mode select bit
681   0,    // second memory operand
682   0,    // second literal operand
683   POC_BTFSS,
684   (PCC_REGISTER | PCC_EXAMINE_PCOP),   // inCond
685   PCC_EXAMINE_PCOP, // outCond
686   PCI_MAGIC
687 };
688
689 pCodeInstruction pic16_pciBTFSS = {
690   {PC_OPCODE, NULL, NULL, 0, NULL, 
691    //   AnalyzeSKIP,
692    genericDestruct,
693    genericPrint},
694   POC_BTFSS,
695   "BTFSS",
696   NULL, // from branch
697   NULL, // to branch
698   NULL, // label
699   NULL, // operand
700   NULL, // flow block
701   NULL, // C source 
702   3,    // num ops
703   0,1,  // dest, bit instruction
704   1,1,  // branch, skip
705   0,    // literal operand
706   1,    // RAM access bit
707   0,    // fast call/return mode select bit
708   0,    // second memory operand
709   0,    // second literal operand
710   POC_BTFSC,
711   (PCC_REGISTER | PCC_EXAMINE_PCOP),   // inCond
712   PCC_EXAMINE_PCOP, // outCond
713   PCI_MAGIC
714 };
715
716 pCodeInstruction pic16_pciBTG = { // mdubuc - New
717   {PC_OPCODE, NULL, NULL, 0, NULL, 
718    //   genericAnalyze,
719    genericDestruct,
720    genericPrint},
721   POC_BTG,
722   "BTG",
723   NULL, // from branch
724   NULL, // to branch
725   NULL, // label
726   NULL, // operand
727   NULL, // flow block
728   NULL, // C source 
729   3,    // num ops
730   0,1,  // dest, bit instruction
731   0,0,  // branch, skip
732   0,    // literal operand
733   1,    // RAM access bit
734   0,    // fast call/return mode select bit
735   0,    // second memory operand
736   0,    // second literal operand
737   POC_NOP,
738   (PCC_REGISTER | PCC_EXAMINE_PCOP),   // inCond
739   (PCC_REGISTER | PCC_EXAMINE_PCOP), // outCond
740   PCI_MAGIC
741 };
742
743 pCodeInstruction pic16_pciBZ = { // mdubuc - New
744   {PC_OPCODE, NULL, NULL, 0, NULL, 
745    //   genericAnalyze,
746    genericDestruct,
747    genericPrint},
748   POC_BZ,
749   "BZ",
750   NULL, // from branch
751   NULL, // to branch
752   NULL, // label
753   NULL, // operand
754   NULL, // flow block
755   NULL, // C source 
756   1,    // num ops
757   0,0,  // dest, bit instruction
758   1,0,  // branch, skip
759   0,    // literal operand
760   0,    // RAM access bit
761   0,    // fast call/return mode select bit
762   0,    // second memory operand
763   0,    // second literal operand
764   POC_NOP,
765   PCC_Z,   // inCond
766   PCC_NONE, // outCond
767   PCI_MAGIC
768 };
769
770 pCodeInstruction pic16_pciCALL = {
771   {PC_OPCODE, NULL, NULL, 0, NULL, 
772    //   genericAnalyze,
773    genericDestruct,
774    genericPrint},
775   POC_CALL,
776   "CALL",
777   NULL, // from branch
778   NULL, // to branch
779   NULL, // label
780   NULL, // operand
781   NULL, // flow block
782   NULL, // C source 
783   2,    // num ops
784   0,0,  // dest, bit instruction
785   1,0,  // branch, skip
786   0,    // literal operand
787   0,    // RAM access bit
788   1,    // fast call/return mode select bit
789   0,    // second memory operand
790   0,    // second literal operand
791   POC_NOP,
792   PCC_NONE, // inCond
793   PCC_NONE , // outCond
794   PCI_MAGIC
795 };
796
797 pCodeInstruction pic16_pciCOMF = {
798   {PC_OPCODE, NULL, NULL, 0, NULL, 
799    //   genericAnalyze,
800    genericDestruct,
801    genericPrint},
802   POC_COMF,
803   "COMF",
804   NULL, // from branch
805   NULL, // to branch
806   NULL, // label
807   NULL, // operand
808   NULL, // flow block
809   NULL, // C source 
810   3,    // num ops
811   1,0,  // dest, bit instruction
812   0,0,  // branch, skip
813   0,    // literal operand
814   1,    // RAM access bit
815   0,    // fast call/return mode select bit
816   0,    // second memory operand
817   0,    // second literal operand
818   POC_NOP,
819   PCC_REGISTER,  // inCond
820   PCC_REGISTER  , // outCond
821   PCI_MAGIC
822 };
823
824 pCodeInstruction pic16_pciCOMFW = {
825   {PC_OPCODE, NULL, NULL, 0, NULL, 
826    //   genericAnalyze,
827    genericDestruct,
828    genericPrint},
829   POC_COMFW,
830   "COMF",
831   NULL, // from branch
832   NULL, // to branch
833   NULL, // label
834   NULL, // operand
835   NULL, // flow block
836   NULL, // C source 
837   3,    // num ops
838   0,0,  // dest, bit instruction
839   0,0,  // branch, skip
840   0,    // literal operand
841   1,    // RAM access bit
842   0,    // fast call/return mode select bit
843   0,    // second memory operand
844   0,    // second literal operand
845   POC_NOP,
846   PCC_REGISTER,  // inCond
847   PCC_W  , // outCond
848   PCI_MAGIC
849 };
850
851 pCodeInstruction pic16_pciCLRF = {
852   {PC_OPCODE, NULL, NULL, 0, NULL, 
853    //   genericAnalyze,
854    genericDestruct,
855    genericPrint},
856   POC_CLRF,
857   "CLRF",
858   NULL, // from branch
859   NULL, // to branch
860   NULL, // label
861   NULL, // operand
862   NULL, // flow block
863   NULL, // C source 
864   2,    // num ops
865   0,0,  // dest, bit instruction
866   0,0,  // branch, skip
867   0,    // literal operand
868   1,    // RAM access bit
869   0,    // fast call/return mode select bit
870   0,    // second memory operand
871   0,    // second literal operand
872   POC_NOP,
873   PCC_REGISTER, // inCond
874   PCC_REGISTER , // outCond
875   PCI_MAGIC
876 };
877
878 pCodeInstruction pic16_pciCLRWDT = {
879   {PC_OPCODE, NULL, NULL, 0, NULL, 
880    //   genericAnalyze,
881    genericDestruct,
882    genericPrint},
883   POC_CLRWDT,
884   "CLRWDT",
885   NULL, // from branch
886   NULL, // to branch
887   NULL, // label
888   NULL, // operand
889   NULL, // flow block
890   NULL, // C source 
891   0,    // num ops
892   0,0,  // dest, bit instruction
893   0,0,  // branch, skip
894   0,    // literal operand
895   0,    // RAM access bit
896   0,    // fast call/return mode select bit
897   0,    // second memory operand
898   0,    // second literal operand
899   POC_NOP,
900   PCC_NONE, // inCond
901   PCC_NONE , // outCond
902   PCI_MAGIC
903 };
904
905 pCodeInstruction pic16_pciCPFSEQ = { // mdubuc - New
906   {PC_OPCODE, NULL, NULL, 0, NULL, 
907    //   genericAnalyze,
908    genericDestruct,
909    genericPrint},
910   POC_CPFSEQ,
911   "CPFSEQ",
912   NULL, // from branch
913   NULL, // to branch
914   NULL, // label
915   NULL, // operand
916   NULL, // flow block
917   NULL, // C source 
918   2,    // num ops
919   0,0,  // dest, bit instruction
920   1,1,  // branch, skip
921   0,    // literal operand
922   1,    // RAM access bit
923   0,    // fast call/return mode select bit
924   0,    // second memory operand
925   0,    // second literal operand
926   POC_NOP,
927   (PCC_W | PCC_REGISTER), // inCond
928   PCC_NONE , // outCond
929   PCI_MAGIC
930 };
931
932 pCodeInstruction pic16_pciCPFSGT = { // mdubuc - New
933   {PC_OPCODE, NULL, NULL, 0, NULL, 
934    //   genericAnalyze,
935    genericDestruct,
936    genericPrint},
937   POC_CPFSGT,
938   "CPFSGT",
939   NULL, // from branch
940   NULL, // to branch
941   NULL, // label
942   NULL, // operand
943   NULL, // flow block
944   NULL, // C source 
945   2,    // num ops
946   0,0,  // dest, bit instruction
947   1,1,  // branch, skip
948   0,    // literal operand
949   1,    // RAM access bit
950   0,    // fast call/return mode select bit
951   0,    // second memory operand
952   0,    // second literal operand
953   POC_NOP,
954   (PCC_W | PCC_REGISTER), // inCond
955   PCC_NONE , // outCond
956   PCI_MAGIC
957 };
958
959 pCodeInstruction pic16_pciCPFSLT = { // mdubuc - New
960   {PC_OPCODE, NULL, NULL, 0, NULL, 
961    //   genericAnalyze,
962    genericDestruct,
963    genericPrint},
964   POC_CPFSLT,
965   "CPFSLT",
966   NULL, // from branch
967   NULL, // to branch
968   NULL, // label
969   NULL, // operand
970   NULL, // flow block
971   NULL, // C source 
972   2,    // num ops
973   1,0,  // dest, bit instruction
974   1,1,  // branch, skip
975   0,    // literal operand
976   1,    // RAM access bit
977   0,    // fast call/return mode select bit
978   0,    // second memory operand
979   0,    // second literal operand
980   POC_NOP,
981   (PCC_W | PCC_REGISTER), // inCond
982   PCC_NONE , // outCond
983   PCI_MAGIC
984 };
985
986 pCodeInstruction pic16_pciDAW = {
987   {PC_OPCODE, NULL, NULL, 0, NULL, 
988    //   genericAnalyze,
989    genericDestruct,
990    genericPrint},
991   POC_DAW,
992   "DAW",
993   NULL, // from branch
994   NULL, // to branch
995   NULL, // label
996   NULL, // operand
997   NULL, // flow block
998   NULL, // C source 
999   0,    // num ops
1000   0,0,  // dest, bit instruction
1001   0,0,  // branch, skip
1002   0,    // literal operand
1003   0,    // RAM access bit
1004   0,    // fast call/return mode select bit
1005   0,    // second memory operand
1006   0,    // second literal operand
1007   POC_NOP,
1008   PCC_W, // inCond
1009   (PCC_W | PCC_C), // outCond
1010   PCI_MAGIC
1011 };
1012
1013 pCodeInstruction pic16_pciDCFSNZ = { // mdubuc - New
1014   {PC_OPCODE, NULL, NULL, 0, NULL, 
1015    //   genericAnalyze,
1016    genericDestruct,
1017    genericPrint},
1018   POC_DCFSNZ,
1019   "DCFSNZ",
1020   NULL, // from branch
1021   NULL, // to branch
1022   NULL, // label
1023   NULL, // operand
1024   NULL, // flow block
1025   NULL, // C source 
1026   3,    // num ops
1027   1,0,  // dest, bit instruction
1028   1,1,  // branch, skip
1029   0,    // literal operand
1030   1,    // RAM access bit
1031   0,    // fast call/return mode select bit
1032   0,    // second memory operand
1033   0,    // second literal operand
1034   POC_NOP,
1035   PCC_REGISTER, // inCond
1036   PCC_REGISTER , // outCond
1037   PCI_MAGIC
1038 };
1039
1040 pCodeInstruction pic16_pciDCFSNZW = { // mdubuc - New
1041   {PC_OPCODE, NULL, NULL, 0, NULL, 
1042    //   genericAnalyze,
1043    genericDestruct,
1044    genericPrint},
1045   POC_DCFSNZW,
1046   "DCFSNZ",
1047   NULL, // from branch
1048   NULL, // to branch
1049   NULL, // label
1050   NULL, // operand
1051   NULL, // flow block
1052   NULL, // C source 
1053   3,    // num ops
1054   0,0,  // dest, bit instruction
1055   1,1,  // branch, skip
1056   0,    // literal operand
1057   1,    // RAM access bit
1058   0,    // fast call/return mode select bit
1059   0,    // second memory operand
1060   0,    // second literal operand
1061   POC_NOP,
1062   PCC_REGISTER, // inCond
1063   PCC_W , // outCond
1064   PCI_MAGIC
1065 };
1066
1067 pCodeInstruction pic16_pciDECF = {
1068   {PC_OPCODE, NULL, NULL, 0, NULL, 
1069    //   genericAnalyze,
1070    genericDestruct,
1071    genericPrint},
1072   POC_DECF,
1073   "DECF",
1074   NULL, // from branch
1075   NULL, // to branch
1076   NULL, // label
1077   NULL, // operand
1078   NULL, // flow block
1079   NULL, // C source 
1080   3,    // num ops
1081   1,0,  // dest, bit instruction
1082   0,0,  // branch, skip
1083   0,    // literal operand
1084   1,    // RAM access bit
1085   0,    // fast call/return mode select bit
1086   0,    // second memory operand
1087   0,    // second literal operand
1088   POC_NOP,
1089   PCC_REGISTER,   // inCond
1090   PCC_REGISTER   , // outCond
1091   PCI_MAGIC
1092 };
1093
1094 pCodeInstruction pic16_pciDECFW = {
1095   {PC_OPCODE, NULL, NULL, 0, NULL, 
1096    //   genericAnalyze,
1097    genericDestruct,
1098    genericPrint},
1099   POC_DECFW,
1100   "DECF",
1101   NULL, // from branch
1102   NULL, // to branch
1103   NULL, // label
1104   NULL, // operand
1105   NULL, // flow block
1106   NULL, // C source 
1107   3,    // num ops
1108   0,0,  // dest, bit instruction
1109   0,0,  // branch, skip
1110   0,    // literal operand
1111   1,    // RAM access bit
1112   0,    // fast call/return mode select bit
1113   0,    // second memory operand
1114   0,    // second literal operand
1115   POC_NOP,
1116   PCC_REGISTER,   // inCond
1117   PCC_W   , // outCond
1118   PCI_MAGIC
1119 };
1120
1121 pCodeInstruction pic16_pciDECFSZ = {
1122   {PC_OPCODE, NULL, NULL, 0, NULL, 
1123    //   AnalyzeSKIP,
1124    genericDestruct,
1125    genericPrint},
1126   POC_DECFSZ,
1127   "DECFSZ",
1128   NULL, // from branch
1129   NULL, // to branch
1130   NULL, // label
1131   NULL, // operand
1132   NULL, // flow block
1133   NULL, // C source 
1134   3,    // num ops
1135   1,0,  // dest, bit instruction
1136   1,1,  // branch, skip
1137   0,    // literal operand
1138   1,    // RAM access bit
1139   0,    // fast call/return mode select bit
1140   0,    // second memory operand
1141   0,    // second literal operand
1142   POC_NOP,
1143   PCC_REGISTER,   // inCond
1144   PCC_REGISTER   , // outCond
1145   PCI_MAGIC
1146 };
1147
1148 pCodeInstruction pic16_pciDECFSZW = {
1149   {PC_OPCODE, NULL, NULL, 0, NULL, 
1150    //   AnalyzeSKIP,
1151    genericDestruct,
1152    genericPrint},
1153   POC_DECFSZW,
1154   "DECFSZ",
1155   NULL, // from branch
1156   NULL, // to branch
1157   NULL, // label
1158   NULL, // operand
1159   NULL, // flow block
1160   NULL, // C source 
1161   3,    // num ops
1162   0,0,  // dest, bit instruction
1163   1,1,  // branch, skip
1164   0,    // literal operand
1165   1,    // RAM access bit
1166   0,    // fast call/return mode select bit
1167   0,    // second memory operand
1168   0,    // second literal operand
1169   POC_NOP,
1170   PCC_REGISTER,   // inCond
1171   PCC_W          , // outCond
1172   PCI_MAGIC
1173 };
1174
1175 pCodeInstruction pic16_pciGOTO = {
1176   {PC_OPCODE, NULL, NULL, 0, NULL, 
1177    //   AnalyzeGOTO,
1178    genericDestruct,
1179    genericPrint},
1180   POC_GOTO,
1181   "GOTO",
1182   NULL, // from branch
1183   NULL, // to branch
1184   NULL, // label
1185   NULL, // operand
1186   NULL, // flow block
1187   NULL, // C source 
1188   1,    // num ops
1189   0,0,  // dest, bit instruction
1190   1,0,  // branch, skip
1191   0,    // literal operand
1192   0,    // RAM access bit
1193   0,    // fast call/return mode select bit
1194   0,    // second memory operand
1195   0,    // second literal operand
1196   POC_NOP,
1197   PCC_REL_ADDR,   // inCond
1198   PCC_NONE   , // outCond
1199   PCI_MAGIC
1200 };
1201
1202 pCodeInstruction pic16_pciINCF = {
1203   {PC_OPCODE, NULL, NULL, 0, NULL, 
1204    //   genericAnalyze,
1205    genericDestruct,
1206    genericPrint},
1207   POC_INCF,
1208   "INCF",
1209   NULL, // from branch
1210   NULL, // to branch
1211   NULL, // label
1212   NULL, // operand
1213   NULL, // flow block
1214   NULL, // C source 
1215   3,    // num ops
1216   1,0,  // dest, bit instruction
1217   0,0,  // branch, skip
1218   0,    // literal operand
1219   1,    // RAM access bit
1220   0,    // fast call/return mode select bit
1221   0,    // second memory operand
1222   0,    // second literal operand
1223   POC_NOP,
1224   PCC_REGISTER,   // inCond
1225   (PCC_REGISTER | PCC_C | PCC_DC | PCC_Z | PCC_OV | PCC_N), // outCond
1226   PCI_MAGIC
1227 };
1228
1229 pCodeInstruction pic16_pciINCFW = {
1230   {PC_OPCODE, NULL, NULL, 0, NULL, 
1231    //   genericAnalyze,
1232    genericDestruct,
1233    genericPrint},
1234   POC_INCFW,
1235   "INCF",
1236   NULL, // from branch
1237   NULL, // to branch
1238   NULL, // label
1239   NULL, // operand
1240   NULL, // flow block
1241   NULL, // C source 
1242   3,    // num ops
1243   0,0,  // dest, bit instruction
1244   0,0,  // branch, skip
1245   0,    // literal operand
1246   1,    // RAM access bit
1247   0,    // fast call/return mode select bit
1248   0,    // second memory operand
1249   0,    // second literal operand
1250   POC_NOP,
1251   PCC_REGISTER,   // inCond
1252   PCC_W   , // outCond
1253   PCI_MAGIC
1254 };
1255
1256 pCodeInstruction pic16_pciINCFSZ = {
1257   {PC_OPCODE, NULL, NULL, 0, NULL, 
1258    //   AnalyzeSKIP,
1259    genericDestruct,
1260    genericPrint},
1261   POC_INCFSZ,
1262   "INCFSZ",
1263   NULL, // from branch
1264   NULL, // to branch
1265   NULL, // label
1266   NULL, // operand
1267   NULL, // flow block
1268   NULL, // C source 
1269   3,    // num ops
1270   1,0,  // dest, bit instruction
1271   1,1,  // branch, skip
1272   0,    // literal operand
1273   1,    // RAM access bit
1274   0,    // fast call/return mode select bit
1275   0,    // second memory operand
1276   0,    // second literal operand
1277   POC_NOP,
1278   PCC_REGISTER,   // inCond
1279   PCC_REGISTER   , // outCond
1280   PCI_MAGIC
1281 };
1282
1283 pCodeInstruction pic16_pciINCFSZW = {
1284   {PC_OPCODE, NULL, NULL, 0, NULL, 
1285    //   AnalyzeSKIP,
1286    genericDestruct,
1287    genericPrint},
1288   POC_INCFSZW,
1289   "INCFSZ",
1290   NULL, // from branch
1291   NULL, // to branch
1292   NULL, // label
1293   NULL, // operand
1294   NULL, // flow block
1295   NULL, // C source 
1296   3,    // num ops
1297   0,0,  // dest, bit instruction
1298   1,1,  // branch, skip
1299   0,    // literal operand
1300   1,    // RAM access bit
1301   0,    // fast call/return mode select bit
1302   0,    // second memory operand
1303   0,    // second literal operand
1304   POC_NOP,
1305   PCC_REGISTER,   // inCond
1306   PCC_W          , // outCond
1307   PCI_MAGIC
1308 };
1309
1310 pCodeInstruction pic16_pciINFSNZ = { // mdubuc - New
1311   {PC_OPCODE, NULL, NULL, 0, NULL, 
1312    //   AnalyzeSKIP,
1313    genericDestruct,
1314    genericPrint},
1315   POC_INFSNZ,
1316   "INCFSNZ",
1317   NULL, // from branch
1318   NULL, // to branch
1319   NULL, // label
1320   NULL, // operand
1321   NULL, // flow block
1322   NULL, // C source 
1323   3,    // num ops
1324   1,0,  // dest, bit instruction
1325   1,1,  // branch, skip
1326   0,    // literal operand
1327   1,    // RAM access bit
1328   0,    // fast call/return mode select bit
1329   0,    // second memory operand
1330   0,    // second literal operand
1331   POC_NOP,
1332   PCC_REGISTER,   // inCond
1333   PCC_REGISTER   , // outCond
1334   PCI_MAGIC
1335 };
1336
1337 pCodeInstruction pic16_pciIORWF = {
1338   {PC_OPCODE, NULL, NULL, 0, NULL, 
1339    //   genericAnalyze,
1340    genericDestruct,
1341    genericPrint},
1342   POC_IORWF,
1343   "IORWF",
1344   NULL, // from branch
1345   NULL, // to branch
1346   NULL, // label
1347   NULL, // operand
1348   NULL, // flow block
1349   NULL, // C source 
1350   3,    // num ops
1351   1,0,  // dest, bit instruction
1352   0,0,  // branch, skip
1353   0,    // literal operand
1354   1,    // RAM access bit
1355   0,    // fast call/return mode select bit
1356   0,    // second memory operand
1357   0,    // second literal operand
1358   POC_NOP,
1359   (PCC_W | PCC_REGISTER),   // inCond
1360   (PCC_REGISTER | PCC_Z | PCC_N), // outCond
1361   PCI_MAGIC
1362 };
1363
1364 pCodeInstruction pic16_pciIORFW = {
1365   {PC_OPCODE, NULL, NULL, 0, NULL, 
1366    //   genericAnalyze,
1367    genericDestruct,
1368    genericPrint},
1369   POC_IORFW,
1370   "IORWF",
1371   NULL, // from branch
1372   NULL, // to branch
1373   NULL, // label
1374   NULL, // operand
1375   NULL, // flow block
1376   NULL, // C source 
1377   3,    // num ops
1378   0,0,  // dest, bit instruction
1379   0,0,  // branch, skip
1380   0,    // literal operand
1381   1,    // RAM access bit
1382   0,    // fast call/return mode select bit
1383   0,    // second memory operand
1384   0,    // second literal operand
1385   POC_NOP,
1386   (PCC_W | PCC_REGISTER),   // inCond
1387   (PCC_W | PCC_Z | PCC_N), // outCond
1388   PCI_MAGIC
1389 };
1390
1391 pCodeInstruction pic16_pciIORLW = {
1392   {PC_OPCODE, NULL, NULL, 0, NULL, 
1393    //   genericAnalyze,
1394    genericDestruct,
1395    genericPrint},
1396   POC_IORLW,
1397   "IORLW",
1398   NULL, // from branch
1399   NULL, // to branch
1400   NULL, // label
1401   NULL, // operand
1402   NULL, // flow block
1403   NULL, // C source 
1404   1,    // num ops
1405   0,0,  // dest, bit instruction
1406   0,0,  // branch, skip
1407   1,    // literal operand
1408   0,    // RAM access bit
1409   0,    // fast call/return mode select bit
1410   0,    // second memory operand
1411   0,    // second literal operand
1412   POC_NOP,
1413   (PCC_W | PCC_LITERAL),   // inCond
1414   (PCC_W | PCC_Z | PCC_N), // outCond
1415   PCI_MAGIC
1416 };
1417
1418 pCodeInstruction pic16_pciLFSR = { // mdubuc - New
1419   {PC_OPCODE, NULL, NULL, 0, NULL, 
1420    //   genericAnalyze,
1421    genericDestruct,
1422    genericPrint},
1423   POC_LFSR,
1424   "LFSR",
1425   NULL, // from branch
1426   NULL, // to branch
1427   NULL, // label
1428   NULL, // operand
1429   NULL, // flow block
1430   NULL, // C source 
1431   2,    // num ops
1432   0,0,  // dest, bit instruction
1433   0,0,  // branch, skip
1434   1,    // literal operand
1435   0,    // RAM access bit
1436   0,    // fast call/return mode select bit
1437   0,    // second memory operand
1438   1,    // second literal operand
1439   POC_NOP,
1440   (PCC_REGISTER | PCC_LITERAL),
1441   PCC_REGISTER, // outCond
1442   PCI_MAGIC
1443 };
1444
1445 pCodeInstruction pic16_pciMOVF = {
1446   {PC_OPCODE, NULL, NULL, 0, NULL, 
1447    //   genericAnalyze,
1448    genericDestruct,
1449    genericPrint},
1450   POC_MOVF,
1451   "MOVF",
1452   NULL, // from branch
1453   NULL, // to branch
1454   NULL, // label
1455   NULL, // operand
1456   NULL, // flow block
1457   NULL, // C source 
1458   3,    // num ops
1459   1,0,  // dest, bit instruction
1460   0,0,  // branch, skip
1461   0,    // literal operand
1462   1,    // RAM access bit
1463   0,    // fast call/return mode select bit
1464   0,    // second memory operand
1465   0,    // second literal operand
1466   POC_NOP,
1467   PCC_REGISTER,   // inCond
1468   (PCC_Z | PCC_N), // outCond
1469   PCI_MAGIC
1470 };
1471
1472 pCodeInstruction pic16_pciMOVFW = {
1473   {PC_OPCODE, NULL, NULL, 0, NULL, 
1474    //   genericAnalyze,
1475    genericDestruct,
1476    genericPrint},
1477   POC_MOVFW,
1478   "MOVF",
1479   NULL, // from branch
1480   NULL, // to branch
1481   NULL, // label
1482   NULL, // operand
1483   NULL, // flow block
1484   NULL, // C source 
1485   3,    // num ops
1486   0,0,  // dest, bit instruction
1487   0,0,  // branch, skip
1488   0,    // literal operand
1489   1,    // RAM access bit
1490   0,    // fast call/return mode select bit
1491   0,    // second memory operand
1492   0,    // second literal operand
1493   POC_NOP,
1494   PCC_REGISTER,   // inCond
1495   (PCC_W | PCC_Z), // outCond
1496   PCI_MAGIC
1497 };
1498
1499 pCodeInstruction pic16_pciMOVFF = { // mdubuc - New
1500   {PC_OPCODE, NULL, NULL, 0, NULL, 
1501    //   genericAnalyze,
1502    genericDestruct,
1503    genericPrint},
1504   POC_MOVFF,
1505   "MOVFF",
1506   NULL, // from branch
1507   NULL, // to branch
1508   NULL, // label
1509   NULL, // operand
1510   NULL, // flow block
1511   NULL, // C source 
1512   2,    // num ops
1513   0,0,  // dest, bit instruction
1514   0,0,  // branch, skip
1515   0,    // literal operand
1516   0,    // RAM access bit
1517   0,    // fast call/return mode select bit
1518   1,    // second memory operand
1519   0,    // second literal operand
1520   POC_NOP,
1521   PCC_REGISTER,   // inCond
1522   PCC_REGISTER, // outCond
1523   PCI_MAGIC
1524 };
1525
1526 pCodeInstruction pic16_pciMOVLB = { // mdubuc - New
1527   {PC_OPCODE, NULL, NULL, 0, NULL, 
1528    genericDestruct,
1529    genericPrint},
1530   POC_MOVLB,
1531   "MOVLB",
1532   NULL, // from branch
1533   NULL, // to branch
1534   NULL, // label
1535   NULL, // operand
1536   NULL, // flow block
1537   NULL, // C source 
1538   1,    // num ops
1539   0,0,  // dest, bit instruction
1540   0,0,  // branch, skip
1541   1,    // literal operand
1542   0,    // RAM access bit
1543   0,    // fast call/return mode select bit
1544   0,    // second memory operand
1545   0,    // second literal operand
1546   POC_NOP,
1547   (PCC_NONE | PCC_LITERAL),   // inCond
1548   PCC_REGISTER, // outCond - BSR
1549   PCI_MAGIC
1550 };
1551
1552 pCodeInstruction pic16_pciMOVLW = {
1553   {PC_OPCODE, NULL, NULL, 0, NULL, 
1554    genericDestruct,
1555    genericPrint},
1556   POC_MOVLW,
1557   "MOVLW",
1558   NULL, // from branch
1559   NULL, // to branch
1560   NULL, // label
1561   NULL, // operand
1562   NULL, // flow block
1563   NULL, // C source 
1564   1,    // num ops
1565   0,0,  // dest, bit instruction
1566   0,0,  // branch, skip
1567   1,    // literal operand
1568   0,    // RAM access bit
1569   0,    // fast call/return mode select bit
1570   0,    // second memory operand
1571   0,    // second literal operand
1572   POC_NOP,
1573   (PCC_NONE | PCC_LITERAL),   // inCond
1574   PCC_W, // outCond
1575   PCI_MAGIC
1576 };
1577
1578 pCodeInstruction pic16_pciMOVWF = {
1579   {PC_OPCODE, NULL, NULL, 0, NULL, 
1580    //   genericAnalyze,
1581    genericDestruct,
1582    genericPrint},
1583   POC_MOVWF,
1584   "MOVWF",
1585   NULL, // from branch
1586   NULL, // to branch
1587   NULL, // label
1588   NULL, // operand
1589   NULL, // flow block
1590   NULL, // C source 
1591   2,    // num ops
1592   0,0,  // dest, bit instruction
1593   0,0,  // branch, skip
1594   0,    // literal operand
1595   1,    // RAM access bit
1596   0,    // fast call/return mode select bit
1597   0,    // second memory operand
1598   0,    // second literal operand
1599   POC_NOP,
1600   PCC_REGISTER,   // inCond
1601   PCC_W, // outCond
1602   PCI_MAGIC
1603 };
1604
1605 pCodeInstruction pic16_pciMULLW = { // mdubuc - New
1606   {PC_OPCODE, NULL, NULL, 0, NULL, 
1607    genericDestruct,
1608    genericPrint},
1609   POC_MULLW,
1610   "MULLW",
1611   NULL, // from branch
1612   NULL, // to branch
1613   NULL, // label
1614   NULL, // operand
1615   NULL, // flow block
1616   NULL, // C source 
1617   1,    // num ops
1618   0,0,  // dest, bit instruction
1619   0,0,  // branch, skip
1620   1,    // literal operand
1621   0,    // RAM access bit
1622   0,    // fast call/return mode select bit
1623   0,    // second memory operand
1624   0,    // second literal operand
1625   POC_NOP,
1626   (PCC_W | PCC_LITERAL),   // inCond
1627   PCC_REGISTER, // outCond - PROD
1628   PCI_MAGIC
1629 };
1630
1631 pCodeInstruction pic16_pciMULWF = { // mdubuc - New
1632   {PC_OPCODE, NULL, NULL, 0, NULL, 
1633    genericDestruct,
1634    genericPrint},
1635   POC_MULWF,
1636   "MULWF",
1637   NULL, // from branch
1638   NULL, // to branch
1639   NULL, // label
1640   NULL, // operand
1641   NULL, // flow block
1642   NULL, // C source 
1643   2,    // num ops
1644   0,0,  // dest, bit instruction
1645   0,0,  // branch, skip
1646   0,    // literal operand
1647   1,    // RAM access bit
1648   0,    // fast call/return mode select bit
1649   0,    // second memory operand
1650   0,    // second literal operand
1651   POC_NOP,
1652   (PCC_W | PCC_REGISTER),   // inCond
1653   PCC_REGISTER, // outCond - PROD
1654   PCI_MAGIC
1655 };
1656
1657 pCodeInstruction pic16_pciNEGF = { // mdubuc - New
1658   {PC_OPCODE, NULL, NULL, 0, NULL, 
1659    genericDestruct,
1660    genericPrint},
1661   POC_NEGF,
1662   "NEGF",
1663   NULL, // from branch
1664   NULL, // to branch
1665   NULL, // label
1666   NULL, // operand
1667   NULL, // flow block
1668   NULL, // C source 
1669   2,    // num ops
1670   0,0,  // dest, bit instruction
1671   0,0,  // branch, skip
1672   0,    // literal operand
1673   1,    // RAM access bit
1674   0,    // fast call/return mode select bit
1675   0,    // second memory operand
1676   0,    // second literal operand
1677   POC_NOP,
1678   PCC_REGISTER, // inCond
1679   (PCC_REGISTER | PCC_C | PCC_DC | PCC_OV | PCC_N), // outCond
1680   PCI_MAGIC
1681 };
1682
1683 pCodeInstruction pic16_pciNOP = {
1684   {PC_OPCODE, NULL, NULL, 0, NULL, 
1685    genericDestruct,
1686    genericPrint},
1687   POC_NOP,
1688   "NOP",
1689   NULL, // from branch
1690   NULL, // to branch
1691   NULL, // label
1692   NULL, // operand
1693   NULL, // flow block
1694   NULL, // C source 
1695   0,    // num ops
1696   0,0,  // dest, bit instruction
1697   0,0,  // branch, skip
1698   0,    // literal operand
1699   0,    // RAM access bit
1700   0,    // fast call/return mode select bit
1701   0,    // second memory operand
1702   0,    // second literal operand
1703   POC_NOP,
1704   PCC_NONE,   // inCond
1705   PCC_NONE, // outCond
1706   PCI_MAGIC
1707 };
1708
1709 pCodeInstruction pic16_pciPOP = { // mdubuc - New
1710   {PC_OPCODE, NULL, NULL, 0, NULL, 
1711    genericDestruct,
1712    genericPrint},
1713   POC_POP,
1714   "POP",
1715   NULL, // from branch
1716   NULL, // to branch
1717   NULL, // label
1718   NULL, // operand
1719   NULL, // flow block
1720   NULL, // C source 
1721   0,    // num ops
1722   0,0,  // dest, bit instruction
1723   0,0,  // branch, skip
1724   0,    // literal operand
1725   0,    // RAM access bit
1726   0,    // fast call/return mode select bit
1727   0,    // second memory operand
1728   0,    // second literal operand
1729   POC_NOP,
1730   PCC_NONE,  // inCond
1731   PCC_NONE  , // outCond
1732   PCI_MAGIC
1733 };
1734
1735 pCodeInstruction pic16_pciPUSH = {
1736   {PC_OPCODE, NULL, NULL, 0, NULL, 
1737    genericDestruct,
1738    genericPrint},
1739   POC_PUSH,
1740   "PUSH",
1741   NULL, // from branch
1742   NULL, // to branch
1743   NULL, // label
1744   NULL, // operand
1745   NULL, // flow block
1746   NULL, // C source 
1747   0,    // num ops
1748   0,0,  // dest, bit instruction
1749   0,0,  // branch, skip
1750   0,    // literal operand
1751   0,    // RAM access bit
1752   0,    // fast call/return mode select bit
1753   0,    // second memory operand
1754   0,    // second literal operand
1755   POC_NOP,
1756   PCC_NONE,  // inCond
1757   PCC_NONE  , // outCond
1758   PCI_MAGIC
1759 };
1760
1761 pCodeInstruction pic16_pciRCALL = { // mdubuc - New
1762   {PC_OPCODE, NULL, NULL, 0, NULL, 
1763    genericDestruct,
1764    genericPrint},
1765   POC_RCALL,
1766   "RCALL",
1767   NULL, // from branch
1768   NULL, // to branch
1769   NULL, // label
1770   NULL, // operand
1771   NULL, // flow block
1772   NULL, // C source 
1773   1,    // num ops
1774   0,0,  // dest, bit instruction
1775   0,0,  // branch, skip
1776   0,    // literal operand
1777   0,    // RAM access bit
1778   0,    // fast call/return mode select bit
1779   0,    // second memory operand
1780   0,    // second literal operand
1781   POC_NOP,
1782   PCC_REL_ADDR,  // inCond
1783   PCC_NONE  , // outCond
1784   PCI_MAGIC
1785 };
1786
1787 pCodeInstruction pic16_pciRETFIE = {
1788   {PC_OPCODE, NULL, NULL, 0, NULL, 
1789    //   AnalyzeRETURN,
1790    genericDestruct,
1791    genericPrint},
1792   POC_RETFIE,
1793   "RETFIE",
1794   NULL, // from branch
1795   NULL, // to branch
1796   NULL, // label
1797   NULL, // operand
1798   NULL, // flow block
1799   NULL, // C source 
1800   1,    // num ops
1801   0,0,  // dest, bit instruction
1802   1,0,  // branch, skip
1803   0,    // literal operand
1804   0,    // RAM access bit
1805   1,    // fast call/return mode select bit
1806   0,    // second memory operand
1807   0,    // second literal operand
1808   POC_NOP,
1809   PCC_NONE,   // inCond
1810   PCC_NONE,    // outCond (not true... affects the GIE bit too)
1811   PCI_MAGIC
1812 };
1813
1814 pCodeInstruction pic16_pciRETLW = {
1815   {PC_OPCODE, NULL, NULL, 0, NULL, 
1816    //   AnalyzeRETURN,
1817    genericDestruct,
1818    genericPrint},
1819   POC_RETLW,
1820   "RETLW",
1821   NULL, // from branch
1822   NULL, // to branch
1823   NULL, // label
1824   NULL, // operand
1825   NULL, // flow block
1826   NULL, // C source 
1827   1,    // num ops
1828   0,0,  // dest, bit instruction
1829   1,0,  // branch, skip
1830   1,    // literal operand
1831   0,    // RAM access bit
1832   0,    // fast call/return mode select bit
1833   0,    // second memory operand
1834   0,    // second literal operand
1835   POC_NOP,
1836   PCC_LITERAL,   // inCond
1837   PCC_W, // outCond
1838   PCI_MAGIC
1839 };
1840
1841 pCodeInstruction pic16_pciRETURN = {
1842   {PC_OPCODE, NULL, NULL, 0, NULL, 
1843    //   AnalyzeRETURN,
1844    genericDestruct,
1845    genericPrint},
1846   POC_RETURN,
1847   "RETURN",
1848   NULL, // from branch
1849   NULL, // to branch
1850   NULL, // label
1851   NULL, // operand
1852   NULL, // flow block
1853   NULL, // C source 
1854   1,    // num ops
1855   0,0,  // dest, bit instruction
1856   1,0,  // branch, skip
1857   0,    // literal operand
1858   0,    // RAM access bit
1859   1,    // fast call/return mode select bit
1860   0,    // second memory operand
1861   0,    // second literal operand
1862   POC_NOP,
1863   PCC_NONE,   // inCond
1864   PCC_NONE, // outCond
1865   PCI_MAGIC
1866 };
1867 pCodeInstruction pic16_pciRLCF = { // mdubuc - New
1868   {PC_OPCODE, NULL, NULL, 0, NULL, 
1869    //   genericAnalyze,
1870    genericDestruct,
1871    genericPrint},
1872   POC_RLCF,
1873   "RLCF",
1874   NULL, // from branch
1875   NULL, // to branch
1876   NULL, // label
1877   NULL, // operand
1878   NULL, // flow block
1879   NULL, // C source 
1880   3,    // num ops
1881   1,0,  // dest, bit instruction
1882   0,0,  // branch, skip
1883   0,    // literal operand
1884   1,    // RAM access bit
1885   0,    // fast call/return mode select bit
1886   0,    // second memory operand
1887   0,    // second literal operand
1888   POC_NOP,
1889   (PCC_C | PCC_REGISTER),   // inCond
1890   (PCC_REGISTER | PCC_C | PCC_Z | PCC_N), // outCond
1891   PCI_MAGIC
1892 };
1893
1894 pCodeInstruction pic16_pciRLCFW = { // mdubuc - New
1895   {PC_OPCODE, NULL, NULL, 0, NULL, 
1896    //   genericAnalyze,
1897    genericDestruct,
1898    genericPrint},
1899   POC_RLCFW,
1900   "RLCF",
1901   NULL, // from branch
1902   NULL, // to branch
1903   NULL, // label
1904   NULL, // operand
1905   NULL, // flow block
1906   NULL, // C source 
1907   3,    // num ops
1908   0,0,  // dest, bit instruction
1909   0,0,  // branch, skip
1910   0,    // literal operand
1911   1,    // RAM access bit
1912   0,    // fast call/return mode select bit
1913   0,    // second memory operand
1914   0,    // second literal operand
1915   POC_NOP,
1916   (PCC_C | PCC_REGISTER),   // inCond
1917   (PCC_W | PCC_C | PCC_Z | PCC_N), // outCond
1918   PCI_MAGIC
1919 };
1920
1921 pCodeInstruction pic16_pciRLNCF = { // mdubuc - New
1922   {PC_OPCODE, NULL, NULL, 0, NULL, 
1923    //   genericAnalyze,
1924    genericDestruct,
1925    genericPrint},
1926   POC_RLNCF,
1927   "RLNCF",
1928   NULL, // from branch
1929   NULL, // to branch
1930   NULL, // label
1931   NULL, // operand
1932   NULL, // flow block
1933   NULL, // C source 
1934   3,    // num ops
1935   1,0,  // dest, bit instruction
1936   0,0,  // branch, skip
1937   0,    // literal operand
1938   1,    // RAM access bit
1939   0,    // fast call/return mode select bit
1940   0,    // second memory operand
1941   0,    // second literal operand
1942   POC_NOP,
1943   PCC_REGISTER,   // inCond
1944   (PCC_REGISTER | PCC_Z | PCC_N), // outCond
1945   PCI_MAGIC
1946 };
1947 pCodeInstruction pic16_pciRLNCFW = { // mdubuc - New
1948   {PC_OPCODE, NULL, NULL, 0, NULL, 
1949    //   genericAnalyze,
1950    genericDestruct,
1951    genericPrint},
1952   POC_RLNCFW,
1953   "RLNCF",
1954   NULL, // from branch
1955   NULL, // to branch
1956   NULL, // label
1957   NULL, // operand
1958   NULL, // flow block
1959   NULL, // C source 
1960   3,    // num ops
1961   0,0,  // dest, bit instruction
1962   0,0,  // branch, skip
1963   0,    // literal operand
1964   1,    // RAM access bit
1965   0,    // fast call/return mode select bit
1966   0,    // second memory operand
1967   0,    // second literal operand
1968   POC_NOP,
1969   PCC_REGISTER,   // inCond
1970   (PCC_W | PCC_Z | PCC_N), // outCond
1971   PCI_MAGIC
1972 };
1973 pCodeInstruction pic16_pciRRCF = { // mdubuc - New
1974   {PC_OPCODE, NULL, NULL, 0, NULL, 
1975    //   genericAnalyze,
1976    genericDestruct,
1977    genericPrint},
1978   POC_RRCF,
1979   "RRCF",
1980   NULL, // from branch
1981   NULL, // to branch
1982   NULL, // label
1983   NULL, // operand
1984   NULL, // flow block
1985   NULL, // C source 
1986   3,    // num ops
1987   1,0,  // dest, bit instruction
1988   0,0,  // branch, skip
1989   0,    // literal operand
1990   1,    // RAM access bit
1991   0,    // fast call/return mode select bit
1992   0,    // second memory operand
1993   0,    // second literal operand
1994   POC_NOP,
1995   (PCC_C | PCC_REGISTER),   // inCond
1996   (PCC_REGISTER | PCC_C | PCC_Z | PCC_N), // outCond
1997   PCI_MAGIC
1998 };
1999 pCodeInstruction pic16_pciRRCFW = { // mdubuc - New
2000   {PC_OPCODE, NULL, NULL, 0, NULL, 
2001    //   genericAnalyze,
2002    genericDestruct,
2003    genericPrint},
2004   POC_RRCFW,
2005   "RRCF",
2006   NULL, // from branch
2007   NULL, // to branch
2008   NULL, // label
2009   NULL, // operand
2010   NULL, // flow block
2011   NULL, // C source 
2012   3,    // num ops
2013   0,0,  // dest, bit instruction
2014   0,0,  // branch, skip
2015   0,    // literal operand
2016   1,    // RAM access bit
2017   0,    // fast call/return mode select bit
2018   0,    // second memory operand
2019   0,    // second literal operand
2020   POC_NOP,
2021   (PCC_C | PCC_REGISTER),   // inCond
2022   (PCC_W | PCC_C | PCC_Z | PCC_N), // outCond
2023   PCI_MAGIC
2024 };
2025 pCodeInstruction pic16_pciRRNCF = { // mdubuc - New
2026   {PC_OPCODE, NULL, NULL, 0, NULL, 
2027    //   genericAnalyze,
2028    genericDestruct,
2029    genericPrint},
2030   POC_RRNCF,
2031   "RRNCF",
2032   NULL, // from branch
2033   NULL, // to branch
2034   NULL, // label
2035   NULL, // operand
2036   NULL, // flow block
2037   NULL, // C source 
2038   3,    // num ops
2039   1,0,  // dest, bit instruction
2040   0,0,  // branch, skip
2041   0,    // literal operand
2042   1,    // RAM access bit
2043   0,    // fast call/return mode select bit
2044   0,    // second memory operand
2045   0,    // second literal operand
2046   POC_NOP,
2047   PCC_REGISTER,   // inCond
2048   (PCC_REGISTER | PCC_Z | PCC_N), // outCond
2049   PCI_MAGIC
2050 };
2051
2052 pCodeInstruction pic16_pciRRNCFW = { // mdubuc - New
2053   {PC_OPCODE, NULL, NULL, 0, NULL, 
2054    //   genericAnalyze,
2055    genericDestruct,
2056    genericPrint},
2057   POC_RRNCFW,
2058   "RRNCF",
2059   NULL, // from branch
2060   NULL, // to branch
2061   NULL, // label
2062   NULL, // operand
2063   NULL, // flow block
2064   NULL, // C source 
2065   3,    // num ops
2066   0,0,  // dest, bit instruction
2067   0,0,  // branch, skip
2068   0,    // literal operand
2069   1,    // RAM access bit
2070   0,    // fast call/return mode select bit
2071   0,    // second memory operand
2072   0,    // second literal operand
2073   POC_NOP,
2074   PCC_REGISTER,   // inCond
2075   (PCC_W | PCC_Z | PCC_N), // outCond
2076   PCI_MAGIC
2077 };
2078
2079 pCodeInstruction pic16_pciSETF = { // mdubuc - New
2080   {PC_OPCODE, NULL, NULL, 0, NULL, 
2081    //   genericAnalyze,
2082    genericDestruct,
2083    genericPrint},
2084   POC_SETF,
2085   "SETF",
2086   NULL, // from branch
2087   NULL, // to branch
2088   NULL, // label
2089   NULL, // operand
2090   NULL, // flow block
2091   NULL, // C source 
2092   2,    // num ops
2093   0,0,  // dest, bit instruction
2094   0,0,  // branch, skip
2095   0,    // literal operand
2096   1,    // RAM access bit
2097   0,    // fast call/return mode select bit
2098   0,    // second memory operand
2099   0,    // second literal operand
2100   POC_NOP,
2101   PCC_REGISTER,  // inCond
2102   PCC_REGISTER  , // outCond
2103   PCI_MAGIC
2104 };
2105
2106 pCodeInstruction pic16_pciSUBLW = {
2107   {PC_OPCODE, NULL, NULL, 0, NULL, 
2108    //   genericAnalyze,
2109    genericDestruct,
2110    genericPrint},
2111   POC_SUBLW,
2112   "SUBLW",
2113   NULL, // from branch
2114   NULL, // to branch
2115   NULL, // label
2116   NULL, // operand
2117   NULL, // flow block
2118   NULL, // C source 
2119   1,    // num ops
2120   0,0,  // dest, bit instruction
2121   0,0,  // branch, skip
2122   1,    // literal operand
2123   0,    // RAM access bit
2124   0,    // fast call/return mode select bit
2125   0,    // second memory operand
2126   0,    // second literal operand
2127   POC_NOP,
2128   (PCC_W | PCC_LITERAL),   // inCond
2129   (PCC_W | PCC_C | PCC_DC | PCC_Z | PCC_OV | PCC_N), // outCond
2130   PCI_MAGIC
2131 };
2132
2133 pCodeInstruction pic16_pciSUBFWB = {
2134   {PC_OPCODE, NULL, NULL, 0, NULL, 
2135    //   genericAnalyze,
2136    genericDestruct,
2137    genericPrint},
2138   POC_SUBFWB,
2139   "SUBFWB",
2140   NULL, // from branch
2141   NULL, // to branch
2142   NULL, // label
2143   NULL, // operand
2144   NULL, // flow block
2145   NULL, // C source 
2146   3,    // num ops
2147   1,0,  // dest, bit instruction
2148   0,0,  // branch, skip
2149   0,    // literal operand
2150   1,    // RAM access bit
2151   0,    // fast call/return mode select bit
2152   0,    // second memory operand
2153   0,    // second literal operand
2154   POC_NOP,
2155   (PCC_W | PCC_REGISTER | PCC_C),   // inCond
2156   (PCC_W | PCC_C | PCC_DC | PCC_Z | PCC_OV | PCC_N), // outCond
2157   PCI_MAGIC
2158 };
2159
2160 pCodeInstruction pic16_pciSUBWF = {
2161   {PC_OPCODE, NULL, NULL, 0, NULL, 
2162    //   genericAnalyze,
2163    genericDestruct,
2164    genericPrint},
2165   POC_SUBWF,
2166   "SUBWF",
2167   NULL, // from branch
2168   NULL, // to branch
2169   NULL, // label
2170   NULL, // operand
2171   NULL, // flow block
2172   NULL, // C source 
2173   3,    // num ops
2174   1,0,  // dest, bit instruction
2175   0,0,  // branch, skip
2176   0,    // literal operand
2177   1,    // RAM access bit
2178   0,    // fast call/return mode select bit
2179   0,    // second memory operand
2180   0,    // second literal operand
2181   POC_NOP,
2182   (PCC_W | PCC_REGISTER),   // inCond
2183   (PCC_REGISTER | PCC_Z), // outCond
2184   PCI_MAGIC
2185 };
2186
2187 pCodeInstruction pic16_pciSUBFW = {
2188   {PC_OPCODE, NULL, NULL, 0, NULL, 
2189    //   genericAnalyze,
2190    genericDestruct,
2191    genericPrint},
2192   POC_SUBFW,
2193   "SUBWF",
2194   NULL, // from branch
2195   NULL, // to branch
2196   NULL, // label
2197   NULL, // operand
2198   NULL, // flow block
2199   NULL, // C source 
2200   3,    // num ops
2201   0,0,  // dest, bit instruction
2202   0,0,  // branch, skip
2203   0,    // literal operand
2204   1,    // RAM access bit
2205   0,    // fast call/return mode select bit
2206   0,    // second memory operand
2207   0,    // second literal operand
2208   POC_NOP,
2209   (PCC_W | PCC_REGISTER),   // inCond
2210   (PCC_W | PCC_Z | PCC_OV | PCC_N), // outCond
2211   PCI_MAGIC
2212 };
2213
2214 pCodeInstruction pic16_pciSUBFWB_D1 = { // mdubuc - New
2215   {PC_OPCODE, NULL, NULL, 0, NULL, 
2216    //   genericAnalyze,
2217    genericDestruct,
2218    genericPrint},
2219   POC_SUBFWB_D1,
2220   "SUBFWB",
2221   NULL, // from branch
2222   NULL, // to branch
2223   NULL, // label
2224   NULL, // operand
2225   NULL, // flow block
2226   NULL, // C source 
2227   3,    // num ops
2228   1,0,  // dest, bit instruction
2229   0,0,  // branch, skip
2230   0,    // literal operand
2231   1,    // RAM access bit
2232   0,    // fast call/return mode select bit
2233   0,    // second memory operand
2234   0,    // second literal operand
2235   POC_NOP,
2236   (PCC_W | PCC_REGISTER | PCC_C),   // inCond
2237   (PCC_REGISTER | PCC_Z | PCC_C | PCC_DC | PCC_OV | PCC_N), // outCond
2238   PCI_MAGIC
2239 };
2240
2241 pCodeInstruction pic16_pciSUBFWB_D0 = { // mdubuc - New
2242   {PC_OPCODE, NULL, NULL, 0, NULL, 
2243    //   genericAnalyze,
2244    genericDestruct,
2245    genericPrint},
2246   POC_SUBFWB_D0,
2247   "SUBFWB",
2248   NULL, // from branch
2249   NULL, // to branch
2250   NULL, // label
2251   NULL, // operand
2252   NULL, // flow block
2253   NULL, // C source 
2254   3,    // num ops
2255   0,0,  // dest, bit instruction
2256   0,0,  // branch, skip
2257   0,    // literal operand
2258   1,    // RAM access bit
2259   0,    // fast call/return mode select bit
2260   0,    // second memory operand
2261   0,    // second literal operand
2262   POC_NOP,
2263   (PCC_W | PCC_REGISTER | PCC_C),   // inCond
2264   (PCC_W | PCC_Z | PCC_C | PCC_DC | PCC_OV | PCC_N), // outCond
2265   PCI_MAGIC
2266 };
2267
2268 pCodeInstruction pic16_pciSUBWFB_D1 = { // mdubuc - New
2269   {PC_OPCODE, NULL, NULL, 0, NULL, 
2270    //   genericAnalyze,
2271    genericDestruct,
2272    genericPrint},
2273   POC_SUBWFB_D1,
2274   "SUBWFB",
2275   NULL, // from branch
2276   NULL, // to branch
2277   NULL, // label
2278   NULL, // operand
2279   NULL, // flow block
2280   NULL, // C source 
2281   3,    // num ops
2282   1,0,  // dest, bit instruction
2283   0,0,  // branch, skip
2284   0,    // literal operand
2285   1,    // RAM access bit
2286   0,    // fast call/return mode select bit
2287   0,    // second memory operand
2288   0,    // second literal operand
2289   POC_NOP,
2290   (PCC_W | PCC_REGISTER | PCC_C),   // inCond
2291   (PCC_REGISTER | PCC_Z | PCC_C | PCC_DC | PCC_OV | PCC_N), // outCond
2292   PCI_MAGIC
2293 };
2294
2295 pCodeInstruction pic16_pciSUBWFB_D0 = { // mdubuc - New
2296   {PC_OPCODE, NULL, NULL, 0, NULL, 
2297    //   genericAnalyze,
2298    genericDestruct,
2299    genericPrint},
2300   POC_SUBWFB_D0,
2301   "SUBWFB",
2302   NULL, // from branch
2303   NULL, // to branch
2304   NULL, // label
2305   NULL, // operand
2306   NULL, // flow block
2307   NULL, // C source 
2308   3,    // num ops
2309   0,0,  // dest, bit instruction
2310   0,0,  // branch, skip
2311   0,    // literal operand
2312   1,    // RAM access bit
2313   0,    // fast call/return mode select bit
2314   0,    // second memory operand
2315   0,    // second literal operand
2316   POC_NOP,
2317   (PCC_W | PCC_REGISTER | PCC_C),   // inCond
2318   (PCC_W | PCC_Z | PCC_C | PCC_DC | PCC_OV | PCC_N), // outCond
2319   PCI_MAGIC
2320 };
2321
2322 pCodeInstruction pic16_pciSWAPF = {
2323   {PC_OPCODE, NULL, NULL, 0, NULL, 
2324    //   genericAnalyze,
2325    genericDestruct,
2326    genericPrint},
2327   POC_SWAPF,
2328   "SWAPF",
2329   NULL, // from branch
2330   NULL, // to branch
2331   NULL, // label
2332   NULL, // operand
2333   NULL, // flow block
2334   NULL, // C source 
2335   3,    // num ops
2336   1,0,  // dest, bit instruction
2337   0,0,  // branch, skip
2338   0,    // literal operand
2339   1,    // RAM access bit
2340   0,    // fast call/return mode select bit
2341   0,    // second memory operand
2342   0,    // second literal operand
2343   POC_NOP,
2344   (PCC_REGISTER),   // inCond
2345   (PCC_REGISTER), // outCond
2346   PCI_MAGIC
2347 };
2348
2349 pCodeInstruction pic16_pciSWAPFW = {
2350   {PC_OPCODE, NULL, NULL, 0, NULL, 
2351    //   genericAnalyze,
2352    genericDestruct,
2353    genericPrint},
2354   POC_SWAPFW,
2355   "SWAPF",
2356   NULL, // from branch
2357   NULL, // to branch
2358   NULL, // label
2359   NULL, // operand
2360   NULL, // flow block
2361   NULL, // C source 
2362   3,    // num ops
2363   0,0,  // dest, bit instruction
2364   0,0,  // branch, skip
2365   0,    // literal operand
2366   1,    // RAM access bit
2367   0,    // fast call/return mode select bit
2368   0,    // second memory operand
2369   0,    // second literal operand
2370   POC_NOP,
2371   (PCC_REGISTER),   // inCond
2372   (PCC_W), // outCond
2373   PCI_MAGIC
2374 };
2375
2376 pCodeInstruction pic16_pciTBLRD = {     // patch 15
2377   {PC_OPCODE, NULL, NULL, 0, NULL, 
2378    genericDestruct,
2379    genericPrint},
2380   POC_TBLRD,
2381   "TBLRD*",
2382   NULL, // from branch
2383   NULL, // to branch
2384   NULL, // label
2385   NULL, // operand
2386   NULL, // flow block
2387   NULL, // C source 
2388   0,    // num ops
2389   0,0,  // dest, bit instruction
2390   0,0,  // branch, skip
2391   0,    // literal operand
2392   0,    // RAM access bit
2393   0,    // fast call/return mode select bit
2394   0,    // second memory operand
2395   0,    // second literal operand
2396   POC_NOP,
2397   PCC_NONE,  // inCond
2398   PCC_NONE  , // outCond
2399   PCI_MAGIC
2400 };
2401
2402 pCodeInstruction pic16_pciTBLRD_POSTINC = {     // patch 15
2403   {PC_OPCODE, NULL, NULL, 0, NULL, 
2404    genericDestruct,
2405    genericPrint},
2406   POC_TBLRD_POSTINC,
2407   "TBLRD*+",
2408   NULL, // from branch
2409   NULL, // to branch
2410   NULL, // label
2411   NULL, // operand
2412   NULL, // flow block
2413   NULL, // C source 
2414   0,    // num ops
2415   0,0,  // dest, bit instruction
2416   0,0,  // branch, skip
2417   0,    // literal operand
2418   0,    // RAM access bit
2419   0,    // fast call/return mode select bit
2420   0,    // second memory operand
2421   0,    // second literal operand
2422   POC_NOP,
2423   PCC_NONE,  // inCond
2424   PCC_NONE  , // outCond
2425   PCI_MAGIC
2426 };
2427
2428 pCodeInstruction pic16_pciTBLRD_POSTDEC = {     // patch 15
2429   {PC_OPCODE, NULL, NULL, 0, NULL, 
2430    genericDestruct,
2431    genericPrint},
2432   POC_TBLRD_POSTDEC,
2433   "TBLRD*-",
2434   NULL, // from branch
2435   NULL, // to branch
2436   NULL, // label
2437   NULL, // operand
2438   NULL, // flow block
2439   NULL, // C source 
2440   0,    // num ops
2441   0,0,  // dest, bit instruction
2442   0,0,  // branch, skip
2443   0,    // literal operand
2444   0,    // RAM access bit
2445   0,    // fast call/return mode select bit
2446   0,    // second memory operand
2447   0,    // second literal operand
2448   POC_NOP,
2449   PCC_NONE,  // inCond
2450   PCC_NONE  , // outCond
2451   PCI_MAGIC
2452 };
2453
2454 pCodeInstruction pic16_pciTBLRD_PREINC = {      // patch 15
2455   {PC_OPCODE, NULL, NULL, 0, NULL, 
2456    genericDestruct,
2457    genericPrint},
2458   POC_TBLRD_PREINC,
2459   "TBLRD+*",
2460   NULL, // from branch
2461   NULL, // to branch
2462   NULL, // label
2463   NULL, // operand
2464   NULL, // flow block
2465   NULL, // C source 
2466   0,    // num ops
2467   0,0,  // dest, bit instruction
2468   0,0,  // branch, skip
2469   0,    // literal operand
2470   0,    // RAM access bit
2471   0,    // fast call/return mode select bit
2472   0,    // second memory operand
2473   0,    // second literal operand
2474   POC_NOP,
2475   PCC_NONE,  // inCond
2476   PCC_NONE  , // outCond
2477   PCI_MAGIC
2478 };
2479
2480 pCodeInstruction pic16_pciTBLWT = {     // patch 15
2481   {PC_OPCODE, NULL, NULL, 0, NULL, 
2482    genericDestruct,
2483    genericPrint},
2484   POC_TBLWT,
2485   "TBLWT*",
2486   NULL, // from branch
2487   NULL, // to branch
2488   NULL, // label
2489   NULL, // operand
2490   NULL, // flow block
2491   NULL, // C source 
2492   0,    // num ops
2493   0,0,  // dest, bit instruction
2494   0,0,  // branch, skip
2495   0,    // literal operand
2496   0,    // RAM access bit
2497   0,    // fast call/return mode select bit
2498   0,    // second memory operand
2499   0,    // second literal operand
2500   POC_NOP,
2501   PCC_NONE,  // inCond
2502   PCC_NONE  , // outCond
2503   PCI_MAGIC
2504 };
2505
2506 pCodeInstruction pic16_pciTBLWT_POSTINC = {     // patch 15
2507   {PC_OPCODE, NULL, NULL, 0, NULL, 
2508    genericDestruct,
2509    genericPrint},
2510   POC_TBLWT_POSTINC,
2511   "TBLWT*+",
2512   NULL, // from branch
2513   NULL, // to branch
2514   NULL, // label
2515   NULL, // operand
2516   NULL, // flow block
2517   NULL, // C source 
2518   0,    // num ops
2519   0,0,  // dest, bit instruction
2520   0,0,  // branch, skip
2521   0,    // literal operand
2522   0,    // RAM access bit
2523   0,    // fast call/return mode select bit
2524   0,    // second memory operand
2525   0,    // second literal operand
2526   POC_NOP,
2527   PCC_NONE,  // inCond
2528   PCC_NONE  , // outCond
2529   PCI_MAGIC
2530 };
2531
2532 pCodeInstruction pic16_pciTBLWT_POSTDEC = {     // patch 15
2533   {PC_OPCODE, NULL, NULL, 0, NULL, 
2534    genericDestruct,
2535    genericPrint},
2536   POC_TBLWT_POSTDEC,
2537   "TBLWT*-",
2538   NULL, // from branch
2539   NULL, // to branch
2540   NULL, // label
2541   NULL, // operand
2542   NULL, // flow block
2543   NULL, // C source 
2544   0,    // num ops
2545   0,0,  // dest, bit instruction
2546   0,0,  // branch, skip
2547   0,    // literal operand
2548   0,    // RAM access bit
2549   0,    // fast call/return mode select bit
2550   0,    // second memory operand
2551   0,    // second literal operand
2552   POC_NOP,
2553   PCC_NONE,  // inCond
2554   PCC_NONE  , // outCond
2555   PCI_MAGIC
2556 };
2557
2558 pCodeInstruction pic16_pciTBLWT_PREINC = {      // patch 15
2559   {PC_OPCODE, NULL, NULL, 0, NULL, 
2560    genericDestruct,
2561    genericPrint},
2562   POC_TBLWT_PREINC,
2563   "TBLWT+*",
2564   NULL, // from branch
2565   NULL, // to branch
2566   NULL, // label
2567   NULL, // operand
2568   NULL, // flow block
2569   NULL, // C source 
2570   0,    // num ops
2571   0,0,  // dest, bit instruction
2572   0,0,  // branch, skip
2573   0,    // literal operand
2574   0,    // RAM access bit
2575   0,    // fast call/return mode select bit
2576   0,    // second memory operand
2577   0,    // second literal operand
2578   POC_NOP,
2579   PCC_NONE,  // inCond
2580   PCC_NONE  , // outCond
2581   PCI_MAGIC
2582 };
2583
2584 pCodeInstruction pic16_pciTSTFSZ = { // mdubuc - New
2585   {PC_OPCODE, NULL, NULL, 0, NULL, 
2586    //   genericAnalyze,
2587    genericDestruct,
2588    genericPrint},
2589   POC_TSTFSZ,
2590   "TSTFSZ",
2591   NULL, // from branch
2592   NULL, // to branch
2593   NULL, // label
2594   NULL, // operand
2595   NULL, // flow block
2596   NULL, // C source 
2597   2,    // num ops
2598   0,0,  // dest, bit instruction
2599   1,1,  // branch, skip
2600   0,    // literal operand
2601   1,    // RAM access bit
2602   0,    // fast call/return mode select bit
2603   0,    // second memory operand
2604   0,    // second literal operand
2605   POC_NOP,
2606   PCC_REGISTER,   // inCond
2607   PCC_NONE, // outCond
2608   PCI_MAGIC
2609 };
2610
2611 pCodeInstruction pic16_pciXORWF = {
2612   {PC_OPCODE, NULL, NULL, 0, NULL, 
2613    //   genericAnalyze,
2614    genericDestruct,
2615    genericPrint},
2616   POC_XORWF,
2617   "XORWF",
2618   NULL, // from branch
2619   NULL, // to branch
2620   NULL, // label
2621   NULL, // operand
2622   NULL, // flow block
2623   NULL, // C source 
2624   3,    // num ops
2625   1,0,  // dest, bit instruction
2626   0,0,  // branch, skip
2627   0,    // literal operand
2628   1,    // RAM access bit
2629   0,    // fast call/return mode select bit
2630   0,    // second memory operand
2631   0,    // second literal operand
2632   POC_NOP,
2633   (PCC_W | PCC_REGISTER),   // inCond
2634   (PCC_REGISTER | PCC_Z | PCC_N), // outCond
2635   PCI_MAGIC
2636 };
2637
2638 pCodeInstruction pic16_pciXORFW = {
2639   {PC_OPCODE, NULL, NULL, 0, NULL, 
2640    //   genericAnalyze,
2641    genericDestruct,
2642    genericPrint},
2643   POC_XORFW,
2644   "XORWF",
2645   NULL, // from branch
2646   NULL, // to branch
2647   NULL, // label
2648   NULL, // operand
2649   NULL, // flow block
2650   NULL, // C source 
2651   3,    // num ops
2652   0,0,  // dest, bit instruction
2653   0,0,  // branch, skip
2654   0,    // literal operand
2655   1,    // RAM access bit
2656   0,    // fast call/return mode select bit
2657   0,    // second memory operand
2658   0,    // second literal operand
2659   POC_NOP,
2660   (PCC_W | PCC_REGISTER),   // inCond
2661   (PCC_W | PCC_Z | PCC_N), // outCond
2662   PCI_MAGIC
2663 };
2664
2665 pCodeInstruction pic16_pciXORLW = {
2666   {PC_OPCODE, NULL, NULL, 0, NULL, 
2667    //   genericAnalyze,
2668    genericDestruct,
2669    genericPrint},
2670   POC_XORLW,
2671   "XORLW",
2672   NULL, // from branch
2673   NULL, // to branch
2674   NULL, // label
2675   NULL, // operand
2676   NULL, // flow block
2677   NULL, // C source 
2678   1,    // num ops
2679   0,0,  // dest, bit instruction
2680   0,0,  // branch, skip
2681   1,    // literal operand
2682   1,    // RAM access bit
2683   0,    // fast call/return mode select bit
2684   0,    // second memory operand
2685   0,    // second literal operand
2686   POC_NOP,
2687   (PCC_W | PCC_LITERAL),   // inCond
2688   (PCC_W | PCC_Z | PCC_C | PCC_DC | PCC_N), // outCond
2689   PCI_MAGIC
2690 };
2691
2692
2693 pCodeInstruction pic16_pciBANKSEL = {
2694   {PC_OPCODE, NULL, NULL, 0, NULL, 
2695    genericDestruct,
2696    genericPrint},
2697   POC_BANKSEL,
2698   "BANKSEL",
2699   NULL, // from branch
2700   NULL, // to branch
2701   NULL, // label
2702   NULL, // operand
2703   NULL, // flow block
2704   NULL, // C source 
2705   0,    // num ops
2706   0,0,  // dest, bit instruction
2707   0,0,  // branch, skip
2708   0,    // literal operand
2709   0,    // RAM access bit
2710   0,    // fast call/return mode select bit
2711   0,    // second memory operand
2712   0,    // second literal operand
2713   POC_NOP,
2714   PCC_NONE,   // inCond
2715   PCC_NONE, // outCond
2716   PCI_MAGIC
2717 };
2718
2719
2720 #define MAX_PIC16MNEMONICS 100
2721 pCodeInstruction *pic16Mnemonics[MAX_PIC16MNEMONICS];
2722
2723 //#define USE_VSNPRINTF
2724 #if OPT_DISABLE_PIC
2725
2726 #ifdef USE_VSNPRINTF
2727   // Alas, vsnprintf is not ANSI standard, and does not exist
2728   // on Solaris (and probably other non-Gnu flavored Unixes).
2729
2730 /*-----------------------------------------------------------------*/
2731 /* SAFE_snprintf - like snprintf except the string pointer is      */
2732 /*                 after the string has been printed to. This is   */
2733 /*                 useful for printing to string as though if it   */
2734 /*                 were a stream.                                  */
2735 /*-----------------------------------------------------------------*/
2736 void SAFE_snprintf(char **str, size_t *size, const  char  *format, ...)
2737 {
2738   va_list val;
2739   int len;
2740
2741   if(!str || !*str)
2742     return;
2743
2744   va_start(val, format);
2745
2746   vsnprintf(*str, *size, format, val);
2747
2748   va_end (val);
2749
2750   len = strlen(*str);
2751   if(len > *size) {
2752     fprintf(stderr,"WARNING, it looks like %s has overflowed\n",__FUNCTION__);
2753     fprintf(stderr,"len = %d is > str size %d\n",len,*size);
2754   }
2755
2756   *str += len;
2757   *size -= len;
2758
2759 }
2760
2761 #else
2762 // This version is *not* safe, despite the name.
2763
2764 void SAFE_snprintf(char **str, size_t *size, const  char  *format, ...)
2765 {
2766   va_list val;
2767   int len;
2768   static char buffer[1024]; /* grossly conservative, but still not inherently safe */
2769
2770   if(!str || !*str)
2771     return;
2772
2773   va_start(val, format);
2774
2775   vsprintf(buffer, format, val);
2776   va_end (val);
2777
2778   len = strlen(buffer);
2779   if(len > *size) {
2780     fprintf(stderr,"WARNING, it looks like %s has overflowed\n",__FUNCTION__);
2781     fprintf(stderr,"len = %d is > str size %d\n",len, (int) *size);
2782   }
2783
2784   strcpy(*str, buffer);
2785   *str += len;
2786   *size -= len;
2787
2788 }
2789
2790 #endif    //  USE_VSNPRINTF
2791 #endif
2792
2793 extern  void pic16_initStack(int base_address, int size);
2794 extern regs *pic16_allocProcessorRegister(int rIdx, char * name, short po_type, int alias);
2795 extern regs *pic16_allocInternalRegister(int rIdx, char * name, short po_type, int alias);
2796 extern void pic16_init_pic(char *);
2797
2798 void  pic16_pCodeInitRegisters(void)
2799 {
2800   static int initialized=0;
2801
2802         if(initialized)
2803                 return;
2804         
2805         initialized = 1;
2806
2807 //      pic16_initStack(0xfff, 8);
2808         pic16_init_pic(port->processor);
2809
2810         pic16_pc_status.r = pic16_allocProcessorRegister(IDX_STATUS,"STATUS", PO_STATUS, 0x80);
2811         pic16_pc_pcl.r = pic16_allocProcessorRegister(IDX_PCL,"PCL", PO_PCL, 0x80);
2812         pic16_pc_pclath.r = pic16_allocProcessorRegister(IDX_PCLATH,"PCLATH", PO_PCLATH, 0x80);
2813         pic16_pc_pclatu.r = pic16_allocProcessorRegister(IDX_PCLATU,"PCLATU", PO_PCLATU, 0x80);
2814         pic16_pc_intcon.r = pic16_allocProcessorRegister(IDX_INTCON,"INTCON", PO_INTCON, 0x80);
2815         pic16_pc_wreg.r = pic16_allocProcessorRegister(IDX_WREG,"WREG", PO_WREG, 0x80);
2816         pic16_pc_bsr.r = pic16_allocProcessorRegister(IDX_BSR,"BSR", PO_BSR, 0x80);
2817
2818         pic16_pc_tosl.r = pic16_allocProcessorRegister(IDX_TOSL,"TOSL", PO_SFR_REGISTER, 0x80);
2819         pic16_pc_tosh.r = pic16_allocProcessorRegister(IDX_TOSH,"TOSH", PO_SFR_REGISTER, 0x80);
2820         pic16_pc_tosu.r = pic16_allocProcessorRegister(IDX_TOSU,"TOSU", PO_SFR_REGISTER, 0x80);
2821
2822         pic16_pc_tblptrl.r = pic16_allocProcessorRegister(IDX_TBLPTRL,"TBLPTRL", PO_SFR_REGISTER, 0x80);
2823         pic16_pc_tblptrh.r = pic16_allocProcessorRegister(IDX_TBLPTRH,"TBLPTRH", PO_SFR_REGISTER, 0x80);
2824         pic16_pc_tblptru.r = pic16_allocProcessorRegister(IDX_TBLPTRU,"TBLPTRU", PO_SFR_REGISTER, 0x80);
2825         pic16_pc_tablat.r = pic16_allocProcessorRegister(IDX_TABLAT,"TABLAT", PO_SFR_REGISTER, 0x80);
2826
2827         pic16_pc_fsr0l.r = pic16_allocProcessorRegister(IDX_FSR0L, "FSR0L", PO_FSR0, 0x80);
2828         pic16_pc_fsr0h.r = pic16_allocProcessorRegister(IDX_FSR0H, "FSR0H", PO_FSR0, 0x80);
2829         pic16_pc_fsr1l.r = pic16_allocProcessorRegister(IDX_FSR1L, "FSR1L", PO_FSR0, 0x80);
2830         pic16_pc_fsr1h.r = pic16_allocProcessorRegister(IDX_FSR1H, "FSR1H", PO_FSR0, 0x80);
2831         pic16_pc_fsr2l.r = pic16_allocProcessorRegister(IDX_FSR2L, "FSR2L", PO_FSR0, 0x80);
2832         pic16_pc_fsr2h.r = pic16_allocProcessorRegister(IDX_FSR2H, "FSR2H", PO_FSR0, 0x80);
2833
2834         pic16_pc_indf0.r = pic16_allocProcessorRegister(IDX_INDF0,"INDF0", PO_INDF0, 0x80);
2835         pic16_pc_postinc0.r = pic16_allocProcessorRegister(IDX_POSTINC0, "POSTINC0", PO_INDF0, 0x80);
2836         pic16_pc_postdec0.r = pic16_allocProcessorRegister(IDX_POSTDEC0, "POSTDEC0", PO_INDF0, 0x80);
2837         pic16_pc_preinc0.r = pic16_allocProcessorRegister(IDX_PREINC0, "PREINC0", PO_INDF0, 0x80);
2838         pic16_pc_plusw0.r = pic16_allocProcessorRegister(IDX_PLUSW0, "PLUSW0", PO_INDF0, 0x80);
2839         
2840         pic16_pc_indf1.r = pic16_allocProcessorRegister(IDX_INDF1,"INDF1", PO_INDF0, 0x80);
2841         pic16_pc_postinc1.r = pic16_allocProcessorRegister(IDX_POSTINC1, "POSTINC1", PO_INDF0, 0x80);
2842         pic16_pc_postdec1.r = pic16_allocProcessorRegister(IDX_POSTDEC1, "POSTDEC1", PO_INDF0, 0x80);
2843         pic16_pc_preinc1.r = pic16_allocProcessorRegister(IDX_PREINC1, "PREINC1", PO_INDF0, 0x80);
2844         pic16_pc_plusw1.r = pic16_allocProcessorRegister(IDX_PLUSW1, "PLUSW1", PO_INDF0, 0x80);
2845
2846         pic16_pc_indf2.r = pic16_allocProcessorRegister(IDX_INDF2,"INDF2", PO_INDF0, 0x80);
2847         pic16_pc_postinc2.r = pic16_allocProcessorRegister(IDX_POSTINC2, "POSTINC2", PO_INDF0, 0x80);
2848         pic16_pc_postdec2.r = pic16_allocProcessorRegister(IDX_POSTDEC2, "POSTDEC2", PO_INDF0, 0x80);
2849         pic16_pc_preinc2.r = pic16_allocProcessorRegister(IDX_PREINC2, "PREINC2", PO_INDF0, 0x80);
2850         pic16_pc_plusw2.r = pic16_allocProcessorRegister(IDX_PLUSW2, "PLUSW2", PO_INDF0, 0x80);
2851         
2852         pic16_pc_prodl.r = pic16_allocProcessorRegister(IDX_PRODL, "PRODL", PO_PRODL, 0x80);
2853         pic16_pc_prodh.r = pic16_allocProcessorRegister(IDX_PRODH, "PRODH", PO_PRODH, 0x80);
2854
2855
2856         pic16_pc_eecon1.r = pic16_allocProcessorRegister(IDX_EECON1, "EECON1", PO_SFR_REGISTER, 0x80);
2857         pic16_pc_eecon2.r = pic16_allocProcessorRegister(IDX_EECON2, "EECON2", PO_SFR_REGISTER, 0x80);
2858         pic16_pc_eedata.r = pic16_allocProcessorRegister(IDX_EEDATA, "EEDATA", PO_SFR_REGISTER, 0x80);
2859         pic16_pc_eeadr.r = pic16_allocProcessorRegister(IDX_EEADR, "EEADR", PO_SFR_REGISTER, 0x80);
2860
2861         
2862         pic16_pc_status.rIdx = IDX_STATUS;
2863         pic16_pc_intcon.rIdx = IDX_INTCON;
2864         pic16_pc_pcl.rIdx = IDX_PCL;
2865         pic16_pc_pclath.rIdx = IDX_PCLATH;
2866         pic16_pc_pclatu.rIdx = IDX_PCLATU;
2867         pic16_pc_wreg.rIdx = IDX_WREG;
2868         pic16_pc_bsr.rIdx = IDX_BSR;
2869
2870         pic16_pc_tosl.rIdx = IDX_TOSL;
2871         pic16_pc_tosh.rIdx = IDX_TOSH;
2872         pic16_pc_tosu.rIdx = IDX_TOSU;
2873
2874         pic16_pc_tblptrl.rIdx = IDX_TBLPTRL;
2875         pic16_pc_tblptrh.rIdx = IDX_TBLPTRH;
2876         pic16_pc_tblptru.rIdx = IDX_TBLPTRU;
2877         pic16_pc_tablat.rIdx = IDX_TABLAT;
2878
2879         pic16_pc_fsr0l.rIdx = IDX_FSR0L;
2880         pic16_pc_fsr0h.rIdx = IDX_FSR0H;
2881         pic16_pc_fsr1l.rIdx = IDX_FSR1L;
2882         pic16_pc_fsr1h.rIdx = IDX_FSR1H;
2883         pic16_pc_fsr2l.rIdx = IDX_FSR2L;
2884         pic16_pc_fsr2h.rIdx = IDX_FSR2H;
2885         pic16_pc_indf0.rIdx = IDX_INDF0;
2886         pic16_pc_postinc0.rIdx = IDX_POSTINC0;
2887         pic16_pc_postdec0.rIdx = IDX_POSTDEC0;
2888         pic16_pc_preinc0.rIdx = IDX_PREINC0;
2889         pic16_pc_plusw0.rIdx = IDX_PLUSW0;
2890         pic16_pc_indf1.rIdx = IDX_INDF1;
2891         pic16_pc_postinc1.rIdx = IDX_POSTINC1;
2892         pic16_pc_postdec1.rIdx = IDX_POSTDEC1;
2893         pic16_pc_preinc1.rIdx = IDX_PREINC1;
2894         pic16_pc_plusw1.rIdx = IDX_PLUSW1;
2895         pic16_pc_indf2.rIdx = IDX_INDF2;
2896         pic16_pc_postinc2.rIdx = IDX_POSTINC2;
2897         pic16_pc_postdec2.rIdx = IDX_POSTDEC2;
2898         pic16_pc_preinc2.rIdx = IDX_PREINC2;
2899         pic16_pc_plusw2.rIdx = IDX_PLUSW2;
2900         pic16_pc_prodl.rIdx = IDX_PRODL;
2901         pic16_pc_prodh.rIdx = IDX_PRODH;
2902         
2903         pic16_pc_kzero.r = pic16_allocInternalRegister(IDX_KZ,"KZ",PO_GPR_REGISTER,0);
2904         pic16_pc_ssave.r = pic16_allocInternalRegister(IDX_SSAVE,"SSAVE", PO_GPR_REGISTER, 0);
2905         pic16_pc_wsave.r = pic16_allocInternalRegister(IDX_WSAVE,"WSAVE", PO_GPR_REGISTER, 0);
2906         
2907         pic16_pc_kzero.rIdx = IDX_KZ;
2908         pic16_pc_wsave.rIdx = IDX_WSAVE;
2909         pic16_pc_ssave.rIdx = IDX_SSAVE;
2910
2911         pic16_pc_eecon1.rIdx = IDX_EECON1;
2912         pic16_pc_eecon2.rIdx = IDX_EECON2;
2913         pic16_pc_eedata.rIdx = IDX_EEDATA;
2914         pic16_pc_eeadr.rIdx = IDX_EEADR;
2915         
2916
2917         /* probably should put this in a separate initialization routine */
2918         pb_dead_pcodes = newpBlock();
2919
2920 }
2921
2922 #if OPT_DISABLE_PIC
2923 /*-----------------------------------------------------------------*/
2924 /*  mnem2key - convert a pic mnemonic into a hash key              */
2925 /*   (BTW - this spreads the mnemonics quite well)                 */
2926 /*                                                                 */
2927 /*-----------------------------------------------------------------*/
2928
2929 int mnem2key(char const *mnem)
2930 {
2931   int key = 0;
2932
2933   if(!mnem)
2934     return 0;
2935
2936   while(*mnem) {
2937
2938     key += toupper(*mnem++) +1;
2939
2940   }
2941
2942   return (key & 0x1f);
2943
2944 }
2945 #endif
2946
2947 void pic16initMnemonics(void)
2948 {
2949   int i = 0;
2950   int key;
2951   //  char *str;
2952   pCodeInstruction *pci;
2953
2954   if(mnemonics_initialized)
2955     return;
2956
2957   // NULL out the array before making the assignments
2958   // since we check the array contents below this initialization.
2959
2960   for (i = 0; i < MAX_PIC16MNEMONICS; i++) {
2961     pic16Mnemonics[i] = NULL;
2962   }
2963
2964   pic16Mnemonics[POC_ADDLW] = &pic16_pciADDLW;
2965   pic16Mnemonics[POC_ADDWF] = &pic16_pciADDWF;
2966   pic16Mnemonics[POC_ADDFW] = &pic16_pciADDFW;
2967   pic16Mnemonics[POC_ADDWFC] = &pic16_pciADDWFC;
2968   pic16Mnemonics[POC_ADDFWC] = &pic16_pciADDFWC;
2969   pic16Mnemonics[POC_ANDLW] = &pic16_pciANDLW;
2970   pic16Mnemonics[POC_ANDWF] = &pic16_pciANDWF;
2971   pic16Mnemonics[POC_ANDFW] = &pic16_pciANDFW;
2972   pic16Mnemonics[POC_BC] = &pic16_pciBC;
2973   pic16Mnemonics[POC_BCF] = &pic16_pciBCF;
2974   pic16Mnemonics[POC_BN] = &pic16_pciBN;
2975   pic16Mnemonics[POC_BNC] = &pic16_pciBNC;
2976   pic16Mnemonics[POC_BNN] = &pic16_pciBNN;
2977   pic16Mnemonics[POC_BNOV] = &pic16_pciBNOV;
2978   pic16Mnemonics[POC_BNZ] = &pic16_pciBNZ;
2979   pic16Mnemonics[POC_BOV] = &pic16_pciBOV;
2980   pic16Mnemonics[POC_BRA] = &pic16_pciBRA;
2981   pic16Mnemonics[POC_BSF] = &pic16_pciBSF;
2982   pic16Mnemonics[POC_BTFSC] = &pic16_pciBTFSC;
2983   pic16Mnemonics[POC_BTFSS] = &pic16_pciBTFSS;
2984   pic16Mnemonics[POC_BTG] = &pic16_pciBTG;
2985   pic16Mnemonics[POC_BZ] = &pic16_pciBZ;
2986   pic16Mnemonics[POC_CALL] = &pic16_pciCALL;
2987   pic16Mnemonics[POC_CLRF] = &pic16_pciCLRF;
2988   pic16Mnemonics[POC_CLRWDT] = &pic16_pciCLRWDT;
2989   pic16Mnemonics[POC_COMF] = &pic16_pciCOMF;
2990   pic16Mnemonics[POC_COMFW] = &pic16_pciCOMFW;
2991   pic16Mnemonics[POC_CPFSEQ] = &pic16_pciCPFSEQ;
2992   pic16Mnemonics[POC_CPFSGT] = &pic16_pciCPFSGT;
2993   pic16Mnemonics[POC_CPFSLT] = &pic16_pciCPFSLT;
2994   pic16Mnemonics[POC_DAW] = &pic16_pciDAW;
2995   pic16Mnemonics[POC_DCFSNZ] = &pic16_pciDCFSNZ;
2996   pic16Mnemonics[POC_DECF] = &pic16_pciDECF;
2997   pic16Mnemonics[POC_DECFW] = &pic16_pciDECFW;
2998   pic16Mnemonics[POC_DECFSZ] = &pic16_pciDECFSZ;
2999   pic16Mnemonics[POC_DECFSZW] = &pic16_pciDECFSZW;
3000   pic16Mnemonics[POC_GOTO] = &pic16_pciGOTO;
3001   pic16Mnemonics[POC_INCF] = &pic16_pciINCF;
3002   pic16Mnemonics[POC_INCFW] = &pic16_pciINCFW;
3003   pic16Mnemonics[POC_INCFSZ] = &pic16_pciINCFSZ;
3004   pic16Mnemonics[POC_INCFSZW] = &pic16_pciINCFSZW;
3005   pic16Mnemonics[POC_INFSNZ] = &pic16_pciINFSNZ;
3006   pic16Mnemonics[POC_IORWF] = &pic16_pciIORWF;
3007   pic16Mnemonics[POC_IORFW] = &pic16_pciIORFW;
3008   pic16Mnemonics[POC_IORLW] = &pic16_pciIORLW;
3009   pic16Mnemonics[POC_LFSR] = &pic16_pciLFSR;
3010   pic16Mnemonics[POC_MOVF] = &pic16_pciMOVF;
3011   pic16Mnemonics[POC_MOVFW] = &pic16_pciMOVFW;
3012   pic16Mnemonics[POC_MOVFF] = &pic16_pciMOVFF;
3013   pic16Mnemonics[POC_MOVLB] = &pic16_pciMOVLB;
3014   pic16Mnemonics[POC_MOVLW] = &pic16_pciMOVLW;
3015   pic16Mnemonics[POC_MOVWF] = &pic16_pciMOVWF;
3016   pic16Mnemonics[POC_MULLW] = &pic16_pciMULLW;
3017   pic16Mnemonics[POC_MULWF] = &pic16_pciMULWF;
3018   pic16Mnemonics[POC_NEGF] = &pic16_pciNEGF;
3019   pic16Mnemonics[POC_NOP] = &pic16_pciNOP;
3020   pic16Mnemonics[POC_POP] = &pic16_pciPOP;
3021   pic16Mnemonics[POC_PUSH] = &pic16_pciPUSH;
3022   pic16Mnemonics[POC_RCALL] = &pic16_pciRCALL;
3023   pic16Mnemonics[POC_RETFIE] = &pic16_pciRETFIE;
3024   pic16Mnemonics[POC_RETLW] = &pic16_pciRETLW;
3025   pic16Mnemonics[POC_RETURN] = &pic16_pciRETURN;
3026   pic16Mnemonics[POC_RLCF] = &pic16_pciRLCF;
3027   pic16Mnemonics[POC_RLCFW] = &pic16_pciRLCFW;
3028   pic16Mnemonics[POC_RLNCF] = &pic16_pciRLNCF;
3029   pic16Mnemonics[POC_RLNCFW] = &pic16_pciRLNCFW;
3030   pic16Mnemonics[POC_RRCF] = &pic16_pciRRCF;
3031   pic16Mnemonics[POC_RRCFW] = &pic16_pciRRCFW;
3032   pic16Mnemonics[POC_RRNCF] = &pic16_pciRRNCF;
3033   pic16Mnemonics[POC_RRNCFW] = &pic16_pciRRNCFW;
3034   pic16Mnemonics[POC_SETF] = &pic16_pciSETF;
3035   pic16Mnemonics[POC_SUBLW] = &pic16_pciSUBLW;
3036   pic16Mnemonics[POC_SUBWF] = &pic16_pciSUBWF;
3037   pic16Mnemonics[POC_SUBFW] = &pic16_pciSUBFW;
3038   pic16Mnemonics[POC_SUBWFB_D0] = &pic16_pciSUBWFB_D0;
3039   pic16Mnemonics[POC_SUBWFB_D1] = &pic16_pciSUBWFB_D1;
3040   pic16Mnemonics[POC_SUBFWB_D0] = &pic16_pciSUBFWB_D0;
3041   pic16Mnemonics[POC_SUBFWB_D1] = &pic16_pciSUBFWB_D1;
3042   pic16Mnemonics[POC_SWAPF] = &pic16_pciSWAPF;
3043   pic16Mnemonics[POC_SWAPFW] = &pic16_pciSWAPFW;
3044   pic16Mnemonics[POC_TBLRD] = &pic16_pciTBLRD;
3045   pic16Mnemonics[POC_TBLRD_POSTINC] = &pic16_pciTBLRD_POSTINC;
3046   pic16Mnemonics[POC_TBLRD_POSTDEC] = &pic16_pciTBLRD_POSTDEC;
3047   pic16Mnemonics[POC_TBLRD_PREINC] = &pic16_pciTBLRD_PREINC;
3048   pic16Mnemonics[POC_TBLWT] = &pic16_pciTBLWT;
3049   pic16Mnemonics[POC_TBLWT_POSTINC] = &pic16_pciTBLWT_POSTINC;
3050   pic16Mnemonics[POC_TBLWT_POSTDEC] = &pic16_pciTBLWT_POSTDEC;
3051   pic16Mnemonics[POC_TBLWT_PREINC] = &pic16_pciTBLWT_PREINC;
3052   pic16Mnemonics[POC_TSTFSZ] = &pic16_pciTSTFSZ;
3053   pic16Mnemonics[POC_XORLW] = &pic16_pciXORLW;
3054   pic16Mnemonics[POC_XORWF] = &pic16_pciXORWF;
3055   pic16Mnemonics[POC_XORFW] = &pic16_pciXORFW;
3056   pic16Mnemonics[POC_BANKSEL] = &pic16_pciBANKSEL;
3057
3058   for(i=0; i<MAX_PIC16MNEMONICS; i++)
3059     if(pic16Mnemonics[i])
3060       hTabAddItem(&pic16MnemonicsHash, mnem2key(pic16Mnemonics[i]->mnemonic), pic16Mnemonics[i]);
3061   pci = hTabFirstItem(pic16MnemonicsHash, &key);
3062
3063   while(pci) {
3064     DFPRINTF((stderr, "element %d key %d, mnem %s\n",i++,key,pci->mnemonic));
3065     pci = hTabNextItem(pic16MnemonicsHash, &key);
3066   }
3067
3068   mnemonics_initialized = 1;
3069 }
3070
3071 int pic16_getpCodePeepCommand(char *cmd);
3072
3073 int pic16_getpCode(char *mnem,unsigned dest)
3074 {
3075
3076   pCodeInstruction *pci;
3077   int key = mnem2key(mnem);
3078
3079   if(!mnemonics_initialized)
3080     pic16initMnemonics();
3081
3082   pci = hTabFirstItemWK(pic16MnemonicsHash, key);
3083
3084   while(pci) {
3085
3086     if(STRCASECMP(pci->mnemonic, mnem) == 0) {
3087       if((pci->num_ops <= 1)
3088         || (pci->isModReg == dest)
3089         || (pci->isBitInst)
3090         || (pci->num_ops <= 2 && pci->isAccess)
3091         || (pci->num_ops <= 2 && pci->isFastCall)
3092         || (pci->num_ops <= 2 && pci->is2MemOp)
3093         || (pci->num_ops <= 2 && pci->is2LitOp) )
3094         return(pci->op);
3095     }
3096
3097     pci = hTabNextItemWK (pic16MnemonicsHash);
3098   
3099   }
3100
3101   return -1;
3102 }
3103
3104 /*-----------------------------------------------------------------*
3105  * pic16initpCodePeepCommands
3106  *
3107  *-----------------------------------------------------------------*/
3108 void pic16initpCodePeepCommands(void)
3109 {
3110
3111   int key, i;
3112   peepCommand *pcmd;
3113
3114   i = 0;
3115   do {
3116     hTabAddItem(&pic16pCodePeepCommandsHash, 
3117                 mnem2key(peepCommands[i].cmd), &peepCommands[i]);
3118     i++;
3119   } while (peepCommands[i].cmd);
3120
3121   pcmd = hTabFirstItem(pic16pCodePeepCommandsHash, &key);
3122
3123   while(pcmd) {
3124     //fprintf(stderr, "peep command %s  key %d\n",pcmd->cmd,pcmd->id);
3125     pcmd = hTabNextItem(pic16pCodePeepCommandsHash, &key);
3126   }
3127
3128 }
3129
3130 /*-----------------------------------------------------------------
3131  *
3132  *
3133  *-----------------------------------------------------------------*/
3134
3135 int pic16_getpCodePeepCommand(char *cmd)
3136 {
3137
3138   peepCommand *pcmd;
3139   int key = mnem2key(cmd);
3140
3141
3142   pcmd = hTabFirstItemWK(pic16pCodePeepCommandsHash, key);
3143
3144   while(pcmd) {
3145     // fprintf(stderr," comparing %s to %s\n",pcmd->cmd,cmd);
3146     if(STRCASECMP(pcmd->cmd, cmd) == 0) {
3147       return pcmd->id;
3148     }
3149
3150     pcmd = hTabNextItemWK (pic16pCodePeepCommandsHash);
3151   
3152   }
3153
3154   return -1;
3155 }
3156
3157 static char getpBlock_dbName(pBlock *pb)
3158 {
3159   if(!pb)
3160     return 0;
3161
3162   if(pb->cmemmap)
3163     return pb->cmemmap->dbName;
3164
3165   return pb->dbName;
3166 }
3167 void pic16_pBlockConvert2ISR(pBlock *pb)
3168 {
3169         if(!pb)return;
3170
3171         if(pb->cmemmap)pb->cmemmap = NULL;
3172
3173         pb->dbName = 'I';
3174
3175         if(pic16_pcode_verbose)
3176                 fprintf(stderr, "%s:%d converting to 'I'interrupt pBlock\n", __FILE__, __LINE__);
3177 }
3178
3179 void pic16_pBlockConvert2Absolute(pBlock *pb)
3180 {
3181         if(!pb)return;
3182         if(pb->cmemmap)pb->cmemmap = NULL;
3183         
3184         pb->dbName = 'A';
3185         
3186         if(pic16_pcode_verbose)
3187                 fprintf(stderr, "%s:%d converting to 'A'bsolute pBlock\n", __FILE__, __LINE__);
3188 }
3189   
3190 /*-----------------------------------------------------------------*/
3191 /* pic16_movepBlock2Head - given the dbname of a pBlock, move all  */
3192 /*                   instances to the front of the doubly linked   */
3193 /*                   list of pBlocks                               */
3194 /*-----------------------------------------------------------------*/
3195
3196 void pic16_movepBlock2Head(char dbName)
3197 {
3198   pBlock *pb;
3199
3200
3201   /* this can happen in sources without code,
3202    * only variable definitions */
3203   if(!the_pFile)return;
3204
3205   pb = the_pFile->pbHead;
3206
3207   while(pb) {
3208
3209     if(getpBlock_dbName(pb) == dbName) {
3210       pBlock *pbn = pb->next;
3211       pb->next = the_pFile->pbHead;
3212       the_pFile->pbHead->prev = pb;
3213       the_pFile->pbHead = pb;
3214
3215       if(pb->prev)
3216         pb->prev->next = pbn;
3217
3218       // If the pBlock that we just moved was the last
3219       // one in the link of all of the pBlocks, then we
3220       // need to point the tail to the block just before
3221       // the one we moved.
3222       // Note: if pb->next is NULL, then pb must have 
3223       // been the last pBlock in the chain.
3224
3225       if(pbn)
3226         pbn->prev = pb->prev;
3227       else
3228         the_pFile->pbTail = pb->prev;
3229
3230       pb = pbn;
3231
3232     } else
3233       pb = pb->next;
3234
3235   }
3236
3237 }
3238
3239 void pic16_copypCode(FILE *of, char dbName)
3240 {
3241   pBlock *pb;
3242
3243         if(!of || !the_pFile)
3244                 return;
3245
3246         for(pb = the_pFile->pbHead; pb; pb = pb->next) {
3247                 if(getpBlock_dbName(pb) == dbName) {
3248 //                      fprintf(stderr, "%s:%d: output of pb= 0x%p\n", __FILE__, __LINE__, pb);
3249                         pBlockStats(of,pb);
3250                         pic16_printpBlock(of,pb);
3251                 }
3252         }
3253
3254 }
3255 void pic16_pcode_test(void)
3256 {
3257
3258   DFPRINTF((stderr,"pcode is alive!\n"));
3259
3260   //initMnemonics();
3261
3262   if(the_pFile) {
3263
3264     pBlock *pb;
3265     FILE *pFile;
3266     char buffer[100];
3267
3268     /* create the file name */
3269     strcpy(buffer,dstFileName);
3270     strcat(buffer,".p");
3271
3272     if( !(pFile = fopen(buffer, "w" ))) {
3273       werror(E_FILE_OPEN_ERR,buffer);
3274       exit(1);
3275     }
3276
3277     fprintf(pFile,"pcode dump\n\n");
3278
3279     for(pb = the_pFile->pbHead; pb; pb = pb->next) {
3280       fprintf(pFile,"\n\tNew pBlock\n\n");
3281       if(pb->cmemmap)
3282         fprintf(pFile,"%s",pb->cmemmap->sname);
3283       else
3284         fprintf(pFile,"internal pblock");
3285
3286       fprintf(pFile,", dbName =%c\n",getpBlock_dbName(pb));
3287       pic16_printpBlock(pFile,pb);
3288     }
3289   }
3290 }
3291 /*-----------------------------------------------------------------*/
3292 /* int RegCond(pCodeOp *pcop) - if pcop points to the STATUS reg-  */
3293 /*      ister, RegCond will return the bit being referenced.       */
3294 /*                                                                 */
3295 /* fixme - why not just OR in the pcop bit field                   */
3296 /*-----------------------------------------------------------------*/
3297
3298 static int RegCond(pCodeOp *pcop)
3299 {
3300
3301   if(!pcop)
3302     return 0;
3303
3304   if(pcop->type == PO_GPR_BIT  && !strcmp(pcop->name, pic16_pc_status.pcop.name)) {
3305     switch(PCORB(pcop)->bit) {
3306     case PIC_C_BIT:
3307       return PCC_C;
3308     case PIC_DC_BIT:
3309         return PCC_DC;
3310     case PIC_Z_BIT:
3311       return PCC_Z;
3312     }
3313
3314   }
3315
3316   return 0;
3317 }
3318
3319 /*-----------------------------------------------------------------*/
3320 /* pic16_newpCode - create and return a newly initialized pCode          */
3321 /*                                                                 */
3322 /*  fixme - rename this                                            */
3323 /*                                                                 */
3324 /* The purpose of this routine is to create a new Instruction      */
3325 /* pCode. This is called by gen.c while the assembly code is being */
3326 /* generated.                                                      */
3327 /*                                                                 */
3328 /* Inouts:                                                         */
3329 /*  PIC_OPCODE op - the assembly instruction we wish to create.    */
3330 /*                  (note that the op is analogous to but not the  */
3331 /*                  same thing as the opcode of the instruction.)  */
3332 /*  pCdoeOp *pcop - pointer to the operand of the instruction.     */
3333 /*                                                                 */
3334 /* Outputs:                                                        */
3335 /*  a pointer to the new malloc'd pCode is returned.               */
3336 /*                                                                 */
3337 /*                                                                 */
3338 /*                                                                 */
3339 /*-----------------------------------------------------------------*/
3340 pCode *pic16_newpCode (PIC_OPCODE op, pCodeOp *pcop)
3341 {
3342   pCodeInstruction *pci ;
3343
3344   if(!mnemonics_initialized)
3345     pic16initMnemonics();
3346     
3347   pci = Safe_calloc(1, sizeof(pCodeInstruction));
3348
3349   if((op>=0) && (op < MAX_PIC16MNEMONICS) && pic16Mnemonics[op]) {
3350     memcpy(pci, pic16Mnemonics[op], sizeof(pCodeInstruction));
3351     pci->pcop = pcop;
3352
3353     if(pci->inCond & PCC_EXAMINE_PCOP)
3354       pci->inCond  |= RegCond(pcop);
3355
3356     if(pci->outCond & PCC_EXAMINE_PCOP)
3357       pci->outCond  |= RegCond(pcop);
3358
3359     pci->pc.prev = pci->pc.next = NULL;
3360     return (pCode *)pci;
3361   }
3362
3363   fprintf(stderr, "pCode mnemonic error %s,%d\n",__FUNCTION__,__LINE__);
3364   exit(1);
3365
3366   return NULL;
3367 }       
3368
3369 /*-----------------------------------------------------------------*/
3370 /* pic16_newpCodeWild - create a "wild" as in wild card pCode            */
3371 /*                                                                 */
3372 /* Wild pcodes are used during the peep hole optimizer to serve    */
3373 /* as place holders for any instruction. When a snippet of code is */
3374 /* compared to a peep hole rule, the wild card opcode will match   */
3375 /* any instruction. However, the optional operand and label are    */
3376 /* additional qualifiers that must also be matched before the      */
3377 /* line (of assembly code) is declared matched. Note that the      */
3378 /* operand may be wild too.                                        */
3379 /*                                                                 */
3380 /*   Note, a wild instruction is specified just like a wild var:   */
3381 /*      %4     ; A wild instruction,                               */
3382 /*  See the peeph.def file for additional examples                 */
3383 /*                                                                 */
3384 /*-----------------------------------------------------------------*/
3385
3386 pCode *pic16_newpCodeWild(int pCodeID, pCodeOp *optional_operand, pCodeOp *optional_label)
3387 {
3388
3389   pCodeWild *pcw;
3390     
3391   pcw = Safe_calloc(1,sizeof(pCodeWild));
3392
3393   pcw->pci.pc.type = PC_WILD;
3394   pcw->pci.pc.prev = pcw->pci.pc.next = NULL;
3395   pcw->pci.from = pcw->pci.to = pcw->pci.label = NULL;
3396   pcw->pci.pc.pb = NULL;
3397
3398   //  pcw->pci.pc.analyze = genericAnalyze;
3399   pcw->pci.pc.destruct = genericDestruct;
3400   pcw->pci.pc.print = genericPrint;
3401
3402   pcw->id = pCodeID;              // this is the 'n' in %n
3403   pcw->operand = optional_operand;
3404   pcw->label   = optional_label;
3405
3406   pcw->mustBeBitSkipInst = 0;
3407   pcw->mustNotBeBitSkipInst = 0;
3408   pcw->invertBitSkipInst = 0;
3409
3410   return ( (pCode *)pcw);
3411   
3412 }
3413
3414  /*-----------------------------------------------------------------*/
3415 /* newPcodeInlineP - create a new pCode from a char string           */
3416 /*-----------------------------------------------------------------*/
3417
3418
3419 pCode *pic16_newpCodeInlineP(char *cP)
3420 {
3421
3422   pCodeComment *pcc ;
3423     
3424   pcc = Safe_calloc(1,sizeof(pCodeComment));
3425
3426   pcc->pc.type = PC_INLINE;
3427   pcc->pc.prev = pcc->pc.next = NULL;
3428   //pcc->pc.from = pcc->pc.to = pcc->pc.label = NULL;
3429   pcc->pc.pb = NULL;
3430
3431   //  pcc->pc.analyze = genericAnalyze;
3432   pcc->pc.destruct = genericDestruct;
3433   pcc->pc.print = genericPrint;
3434
3435   if(cP)
3436     pcc->comment = Safe_strdup(cP);
3437   else
3438     pcc->comment = NULL;
3439
3440   return ( (pCode *)pcc);
3441
3442 }
3443
3444 /*-----------------------------------------------------------------*/
3445 /* newPcodeCharP - create a new pCode from a char string           */
3446 /*-----------------------------------------------------------------*/
3447
3448 pCode *pic16_newpCodeCharP(char *cP)
3449 {
3450
3451   pCodeComment *pcc ;
3452     
3453   pcc = Safe_calloc(1,sizeof(pCodeComment));
3454
3455   pcc->pc.type = PC_COMMENT;
3456   pcc->pc.prev = pcc->pc.next = NULL;
3457   //pcc->pc.from = pcc->pc.to = pcc->pc.label = NULL;
3458   pcc->pc.pb = NULL;
3459
3460   //  pcc->pc.analyze = genericAnalyze;
3461   pcc->pc.destruct = genericDestruct;
3462   pcc->pc.print = genericPrint;
3463
3464   if(cP)
3465     pcc->comment = Safe_strdup(cP);
3466   else
3467     pcc->comment = NULL;
3468
3469   return ( (pCode *)pcc);
3470
3471 }
3472
3473 /*-----------------------------------------------------------------*/
3474 /* pic16_newpCodeFunction -                                              */
3475 /*-----------------------------------------------------------------*/
3476
3477
3478 pCode *pic16_newpCodeFunction(char *mod,char *f)
3479 {
3480   pCodeFunction *pcf;
3481
3482   pcf = Safe_calloc(1,sizeof(pCodeFunction));
3483
3484   pcf->pc.type = PC_FUNCTION;
3485   pcf->pc.prev = pcf->pc.next = NULL;
3486   //pcf->pc.from = pcf->pc.to = pcf->pc.label = NULL;
3487   pcf->pc.pb = NULL;
3488
3489   //  pcf->pc.analyze = genericAnalyze;
3490   pcf->pc.destruct = genericDestruct;
3491   pcf->pc.print = pCodePrintFunction;
3492
3493   pcf->ncalled = 0;
3494   pcf->absblock = 0;
3495   
3496   if(mod) {
3497     pcf->modname = Safe_calloc(1,strlen(mod)+1);
3498     strcpy(pcf->modname,mod);
3499   } else
3500     pcf->modname = NULL;
3501
3502   if(f) {
3503     pcf->fname = Safe_calloc(1,strlen(f)+1);
3504     strcpy(pcf->fname,f);
3505   } else
3506     pcf->fname = NULL;
3507
3508   pcf->stackusage = 0;
3509
3510   return ( (pCode *)pcf);
3511 }
3512
3513 /*-----------------------------------------------------------------*/
3514 /* pic16_newpCodeFlow                                                    */
3515 /*-----------------------------------------------------------------*/
3516 static void destructpCodeFlow(pCode *pc)
3517 {
3518   if(!pc || !isPCFL(pc))
3519     return;
3520
3521 /*
3522   if(PCFL(pc)->from)
3523   if(PCFL(pc)->to)
3524 */
3525   pic16_unlinkpCode(pc);
3526
3527   deleteSet(&PCFL(pc)->registers);
3528   deleteSet(&PCFL(pc)->from);
3529   deleteSet(&PCFL(pc)->to);
3530
3531   /* Instead of deleting the memory used by this pCode, mark
3532    * the object as bad so that if there's a pointer to this pCode
3533    * dangling around somewhere then (hopefully) when the type is
3534    * checked we'll catch it.
3535    */
3536
3537   pc->type = PC_BAD;
3538   pic16_addpCode2pBlock(pb_dead_pcodes, pc);
3539
3540 //  free(pc);
3541
3542 }
3543
3544 pCode *pic16_newpCodeFlow(void )
3545 {
3546   pCodeFlow *pcflow;
3547
3548   //_ALLOC(pcflow,sizeof(pCodeFlow));
3549   pcflow = Safe_calloc(1,sizeof(pCodeFlow));
3550
3551   pcflow->pc.type = PC_FLOW;
3552   pcflow->pc.prev = pcflow->pc.next = NULL;
3553   pcflow->pc.pb = NULL;
3554
3555   //  pcflow->pc.analyze = genericAnalyze;
3556   pcflow->pc.destruct = destructpCodeFlow;
3557   pcflow->pc.print = genericPrint;
3558
3559   pcflow->pc.seq = GpcFlowSeq++;
3560
3561   pcflow->from = pcflow->to = NULL;
3562
3563   pcflow->inCond = PCC_NONE;
3564   pcflow->outCond = PCC_NONE;
3565
3566   pcflow->firstBank = -1;
3567   pcflow->lastBank = -1;
3568
3569   pcflow->FromConflicts = 0;
3570   pcflow->ToConflicts = 0;
3571
3572   pcflow->end = NULL;
3573
3574   pcflow->registers = newSet();
3575
3576   return ( (pCode *)pcflow);
3577
3578 }
3579
3580 /*-----------------------------------------------------------------*/
3581 /*-----------------------------------------------------------------*/
3582 pCodeFlowLink *pic16_newpCodeFlowLink(pCodeFlow *pcflow)
3583 {
3584   pCodeFlowLink *pcflowLink;
3585
3586   pcflowLink = Safe_calloc(1,sizeof(pCodeFlowLink));
3587
3588   pcflowLink->pcflow = pcflow;
3589   pcflowLink->bank_conflict = 0;
3590
3591   return pcflowLink;
3592 }
3593
3594 /*-----------------------------------------------------------------*/
3595 /* pic16_newpCodeCSource - create a new pCode Source Symbol        */
3596 /*-----------------------------------------------------------------*/
3597
3598 pCode *pic16_newpCodeCSource(int ln, char *f, char *l)
3599 {
3600
3601   pCodeCSource *pccs;
3602     
3603   pccs = Safe_calloc(1,sizeof(pCodeCSource));
3604
3605   pccs->pc.type = PC_CSOURCE;
3606   pccs->pc.prev = pccs->pc.next = NULL;
3607   pccs->pc.pb = NULL;
3608
3609   pccs->pc.destruct = genericDestruct;
3610   pccs->pc.print = genericPrint;
3611
3612   pccs->line_number = ln;
3613   if(l)
3614     pccs->line = Safe_strdup(l);
3615   else
3616     pccs->line = NULL;
3617
3618   if(f)
3619     pccs->file_name = Safe_strdup(f);
3620   else
3621     pccs->file_name = NULL;
3622
3623   return ( (pCode *)pccs);
3624
3625 }
3626
3627
3628 /*******************************************************************/
3629 /* pic16_newpCodeAsmDir - create a new pCode Assembler Directive   */
3630 /*                      added by VR 6-Jun-2003                     */
3631 /*******************************************************************/
3632
3633 pCode *pic16_newpCodeAsmDir(char *asdir, char *argfmt, ...)
3634 {
3635   pCodeAsmDir *pcad;
3636   va_list ap;
3637   char buffer[512];
3638   char *lbp=buffer;
3639   
3640         pcad = Safe_calloc(1, sizeof(pCodeAsmDir));
3641         pcad->pci.pc.type = PC_ASMDIR;
3642         pcad->pci.pc.prev = pcad->pci.pc.next = NULL;
3643         pcad->pci.pc.pb = NULL;
3644         
3645         pcad->pci.pc.destruct = genericDestruct;
3646         pcad->pci.pc.print = genericPrint;
3647
3648         if(asdir && *asdir) {
3649                 
3650                 while(isspace(*asdir))asdir++;  // strip any white space from the beginning
3651                 
3652                 pcad->directive = Safe_strdup( asdir );
3653         }
3654         
3655         va_start(ap, argfmt);
3656         
3657         memset(buffer, 0, sizeof(buffer));
3658         if(argfmt && *argfmt)
3659                 vsprintf(buffer, argfmt, ap);
3660         
3661         va_end(ap);
3662         
3663         while(isspace(*lbp))lbp++;
3664         
3665         if(lbp && *lbp)
3666                 pcad->arg = Safe_strdup( lbp );
3667
3668   return ((pCode *)pcad);
3669 }
3670
3671 /*-----------------------------------------------------------------*/
3672 /* pCodeLabelDestruct - free memory used by a label.               */
3673 /*-----------------------------------------------------------------*/
3674 static void pCodeLabelDestruct(pCode *pc)
3675 {
3676
3677   if(!pc)
3678     return;
3679
3680   if((pc->type == PC_LABEL) && PCL(pc)->label)
3681     free(PCL(pc)->label);
3682
3683   /* Instead of deleting the memory used by this pCode, mark
3684    * the object as bad so that if there's a pointer to this pCode
3685    * dangling around somewhere then (hopefully) when the type is
3686    * checked we'll catch it.
3687    */
3688
3689   pc->type = PC_BAD;
3690   pic16_addpCode2pBlock(pb_dead_pcodes, pc);
3691
3692 //  free(pc);
3693
3694 }
3695
3696 pCode *pic16_newpCodeLabel(char *name, int key)
3697 {
3698
3699   char *s = buffer;
3700   pCodeLabel *pcl;
3701     
3702   pcl = Safe_calloc(1,sizeof(pCodeLabel) );
3703
3704   pcl->pc.type = PC_LABEL;
3705   pcl->pc.prev = pcl->pc.next = NULL;
3706   //pcl->pc.from = pcl->pc.to = pcl->pc.label = NULL;
3707   pcl->pc.pb = NULL;
3708
3709   //  pcl->pc.analyze = genericAnalyze;
3710   pcl->pc.destruct = pCodeLabelDestruct;
3711   pcl->pc.print = pCodePrintLabel;
3712
3713   pcl->key = key;
3714   pcl->force = 0;
3715   
3716   pcl->label = NULL;
3717   if(key>0) {
3718     sprintf(s,"_%05d_DS_",key);
3719   } else
3720     s = name;
3721
3722   if(s)
3723     pcl->label = Safe_strdup(s);
3724
3725 //  if(pic16_pcode_verbose)
3726 //      fprintf(stderr, "%s:%d label name: %s\n", __FILE__, __LINE__, pcl->label);
3727
3728
3729   return ( (pCode *)pcl);
3730
3731 }
3732
3733 pCode *pic16_newpCodeLabelFORCE(char *name, int key)
3734 {
3735   pCodeLabel *pcl = (pCodeLabel *)pic16_newpCodeLabel(name, key);
3736   
3737         pcl->force = 1;
3738   
3739   return ( (pCode *)pcl );
3740 }
3741
3742
3743 /*-----------------------------------------------------------------*/
3744 /* newpBlock - create and return a pointer to a new pBlock         */
3745 /*-----------------------------------------------------------------*/
3746 static pBlock *newpBlock(void)
3747 {
3748
3749   pBlock *PpB;
3750
3751   PpB = Safe_calloc(1,sizeof(pBlock) );
3752   PpB->next = PpB->prev = NULL;
3753
3754   PpB->function_entries = PpB->function_exits = PpB->function_calls = NULL;
3755   PpB->tregisters = NULL;
3756   PpB->visited = 0;
3757   PpB->FlowTree = NULL;
3758
3759   return PpB;
3760
3761 }
3762
3763 /*-----------------------------------------------------------------*/
3764 /* pic16_newpCodeChain - create a new chain of pCodes                    */
3765 /*-----------------------------------------------------------------*
3766  *
3767  *  This function will create a new pBlock and the pointer to the
3768  *  pCode that is passed in will be the first pCode in the block.
3769  *-----------------------------------------------------------------*/
3770
3771
3772 pBlock *pic16_newpCodeChain(memmap *cm,char c, pCode *pc)
3773 {
3774
3775   pBlock *pB  = newpBlock();
3776
3777   pB->pcHead  = pB->pcTail = pc;
3778   pB->cmemmap = cm;
3779   pB->dbName  = c;
3780
3781   return pB;
3782 }
3783
3784 /*-----------------------------------------------------------------*/
3785 /* pic16_newpCodeOpLabel - Create a new label given the key              */
3786 /*  Note, a negative key means that the label is part of wild card */
3787 /*  (and hence a wild card label) used in the pCodePeep            */
3788 /*   optimizations).                                               */
3789 /*-----------------------------------------------------------------*/
3790
3791 pCodeOp *pic16_newpCodeOpLabel(char *name, int key)
3792 {
3793   char *s=NULL;
3794   static int label_key=-1;
3795
3796   pCodeOp *pcop;
3797
3798   pcop = Safe_calloc(1,sizeof(pCodeOpLabel) );
3799   pcop->type = PO_LABEL;
3800
3801   pcop->name = NULL;
3802
3803   if(key>0)
3804     sprintf(s=buffer,"_%05d_DS_",key);
3805   else 
3806     s = name, key = label_key--;
3807
3808   if(s)
3809     pcop->name = Safe_strdup(s);
3810
3811   ((pCodeOpLabel *)pcop)->key = key;
3812
3813   //fprintf(stderr,"pic16_newpCodeOpLabel: key=%d, name=%s\n",key,((s)?s:""));
3814   return pcop;
3815 }
3816
3817 /*-----------------------------------------------------------------*/
3818 /*-----------------------------------------------------------------*/
3819 pCodeOp *pic16_newpCodeOpLit(int lit)
3820 {
3821   char *s = buffer;
3822   pCodeOp *pcop;
3823
3824
3825   pcop = Safe_calloc(1,sizeof(pCodeOpLit) );
3826   pcop->type = PO_LITERAL;
3827
3828   pcop->name = NULL;
3829   if(lit>=0) {
3830     sprintf(s,"0x%02x",lit);
3831     if(s)
3832       pcop->name = Safe_strdup(s);
3833   }
3834
3835   ((pCodeOpLit *)pcop)->lit = lit;
3836
3837   return pcop;
3838 }
3839
3840 /*-----------------------------------------------------------------*/
3841 /*-----------------------------------------------------------------*/
3842 pCodeOp *pic16_newpCodeOpLit2(int lit, pCodeOp *arg2)
3843 {
3844   char *s = buffer, tbuf[256], *tb=tbuf;
3845   pCodeOp *pcop;
3846
3847
3848   tb = pic16_get_op(arg2, NULL, 0);
3849   pcop = Safe_calloc(1,sizeof(pCodeOpLit2) );
3850   pcop->type = PO_LITERAL;
3851
3852   pcop->name = NULL;
3853   if(lit>=0) {
3854     sprintf(s,"0x%02x, %s",lit, tb);
3855     if(s)
3856       pcop->name = Safe_strdup(s);
3857   }
3858
3859   ((pCodeOpLit2 *)pcop)->lit = lit;
3860   ((pCodeOpLit2 *)pcop)->arg2 = arg2;
3861
3862   return pcop;
3863 }
3864
3865 /*-----------------------------------------------------------------*/
3866 /*-----------------------------------------------------------------*/
3867 pCodeOp *pic16_newpCodeOpImmd(char *name, int offset, int index, int code_space)
3868 {
3869   pCodeOp *pcop;
3870
3871         pcop = Safe_calloc(1,sizeof(pCodeOpImmd) );
3872         pcop->type = PO_IMMEDIATE;
3873         if(name) {
3874                 regs *r = pic16_dirregWithName(name);
3875                 pcop->name = Safe_strdup(name);
3876                 PCOI(pcop)->r = r;
3877                 
3878                 if(r) {
3879 //                      fprintf(stderr, "%s:%d %s reg %s exists (r: %p)\n",__FILE__, __LINE__, __FUNCTION__, name, r);
3880                         PCOI(pcop)->rIdx = r->rIdx;
3881                 } else {
3882 //                      fprintf(stderr, "%s:%d %s reg %s doesn't exist\n", __FILE__, __LINE__, __FUNCTION__, name);
3883                         PCOI(pcop)->rIdx = -1;
3884                 }
3885 //                      fprintf(stderr,"%s %s %d\n",__FUNCTION__,name,offset);
3886         } else {
3887                 pcop->name = NULL;
3888         }
3889
3890         PCOI(pcop)->index = index;
3891         PCOI(pcop)->offset = offset;
3892         PCOI(pcop)->_const = code_space;
3893
3894   return pcop;
3895 }
3896
3897 /*-----------------------------------------------------------------*/
3898 /*-----------------------------------------------------------------*/
3899 pCodeOp *pic16_newpCodeOpWild(int id, pCodeWildBlock *pcwb, pCodeOp *subtype)
3900 {
3901   char *s = buffer;
3902   pCodeOp *pcop;
3903
3904
3905   if(!pcwb || !subtype) {
3906     fprintf(stderr, "Wild opcode declaration error: %s-%d\n",__FILE__,__LINE__);
3907     exit(1);
3908   }
3909
3910   pcop = Safe_calloc(1,sizeof(pCodeOpWild));
3911   pcop->type = PO_WILD;
3912   sprintf(s,"%%%d",id);
3913   pcop->name = Safe_strdup(s);
3914
3915   PCOW(pcop)->id = id;
3916   PCOW(pcop)->pcwb = pcwb;
3917   PCOW(pcop)->subtype = subtype;
3918   PCOW(pcop)->matched = NULL;
3919
3920   PCOW(pcop)->pcop2 = NULL;
3921   
3922   return pcop;
3923 }
3924
3925 /*-----------------------------------------------------------------*/
3926 /*-----------------------------------------------------------------*/
3927 pCodeOp *pic16_newpCodeOpWild2(int id, int id2, pCodeWildBlock *pcwb, pCodeOp *subtype, pCodeOp *subtype2)
3928 {
3929   char *s = buffer;
3930   pCodeOp *pcop;
3931
3932
3933         if(!pcwb || !subtype || !subtype2) {
3934                 fprintf(stderr, "Wild opcode declaration error: %s-%d\n",__FILE__,__LINE__);
3935                 exit(1);
3936         }
3937
3938         pcop = Safe_calloc(1,sizeof(pCodeOpWild));
3939         pcop->type = PO_WILD;
3940         sprintf(s,"%%%d",id);
3941         pcop->name = Safe_strdup(s);
3942
3943         PCOW(pcop)->id = id;
3944         PCOW(pcop)->pcwb = pcwb;
3945         PCOW(pcop)->subtype = subtype;
3946         PCOW(pcop)->matched = NULL;
3947
3948         PCOW(pcop)->pcop2 = Safe_calloc(1, sizeof(pCodeOpWild));
3949
3950         if(!subtype2->name) {
3951                 PCOW(pcop)->pcop2 = Safe_calloc(1, sizeof(pCodeOpWild));
3952                 PCOW2(pcop)->pcop.type = PO_WILD;
3953                 sprintf(s, "%%%d", id2);
3954                 PCOW2(pcop)->pcop.name = Safe_strdup(s);
3955                 PCOW2(pcop)->id = id2;
3956                 PCOW2(pcop)->subtype = subtype2;
3957
3958 //              fprintf(stderr, "%s:%d %s [wild,wild] for name: %s (%d)\tname2: %s (%d)\n", __FILE__, __LINE__, __FUNCTION__,
3959 //                              pcop->name, id, PCOW2(pcop)->pcop.name, id2);
3960         } else {
3961                 PCOW2(pcop)->pcop2 = pic16_pCodeOpCopy( subtype2 );
3962
3963 //              fprintf(stderr, "%s:%d %s [wild,str] for name: %s (%d)\tname2: %s (%d)\n", __FILE__, __LINE__, __FUNCTION__,
3964 //                              pcop->name, id, PCOW2(pcop)->pcop.name, id2);
3965         }
3966   
3967
3968
3969   return pcop;
3970 }
3971
3972
3973 /*-----------------------------------------------------------------*/
3974 /*-----------------------------------------------------------------*/
3975 pCodeOp *pic16_newpCodeOpBit(char *s, int bit, int inBitSpace, PIC_OPTYPE subt)
3976 {
3977   pCodeOp *pcop;
3978   
3979   pcop = Safe_calloc(1,sizeof(pCodeOpRegBit) );
3980   pcop->type = PO_GPR_BIT;
3981   if(s)
3982     pcop->name = Safe_strdup(s);   
3983   else
3984     pcop->name = NULL;
3985
3986   PCORB(pcop)->bit = bit;
3987   PCORB(pcop)->inBitSpace = inBitSpace;
3988   PCORB(pcop)->subtype = subt;
3989
3990   /* pCodeOpBit is derived from pCodeOpReg. We need to init this too */
3991   PCOR(pcop)->r = pic16_regWithName(s); //NULL;
3992 //  fprintf(stderr, "%s:%d %s for reg: %s\treg= %p\n", __FILE__, __LINE__, __FUNCTION__, s, PCOR(pcop)->r);
3993 //  PCOR(pcop)->rIdx = 0;
3994   return pcop;
3995 }
3996
3997
3998 /*-----------------------------------------------------------------*
3999  * pCodeOp *pic16_newpCodeOpReg(int rIdx) - allocate a new register
4000  *
4001  * If rIdx >=0 then a specific register from the set of registers
4002  * will be selected. If rIdx <0, then a new register will be searched
4003  * for.
4004  *-----------------------------------------------------------------*/
4005
4006 pCodeOp *pic16_newpCodeOpReg(int rIdx)
4007 {
4008   pCodeOp *pcop;
4009
4010   pcop = Safe_calloc(1,sizeof(pCodeOpReg) );
4011
4012   pcop->name = NULL;
4013
4014   if(rIdx >= 0) {
4015     PCOR(pcop)->rIdx = rIdx;
4016     PCOR(pcop)->r = pic16_regWithIdx(rIdx);
4017   } else {
4018     PCOR(pcop)->r = pic16_findFreeReg(REG_GPR);
4019
4020     if(PCOR(pcop)->r)
4021       PCOR(pcop)->rIdx = PCOR(pcop)->r->rIdx;
4022     else {
4023         fprintf(stderr, "%s:%d Could not find a free GPR register\n",
4024                 __FUNCTION__, __LINE__);
4025         exit(-1);
4026     }
4027   }
4028
4029   pcop->type = PCOR(pcop)->r->pc_type;
4030
4031   return pcop;
4032 }
4033
4034 pCodeOp *pic16_newpCodeOpRegFromStr(char *name)
4035 {
4036   pCodeOp *pcop;
4037   regs *r;
4038
4039         pcop = Safe_calloc(1,sizeof(pCodeOpReg) );
4040         PCOR(pcop)->r = r = pic16_allocRegByName(name, 1, NULL);
4041         PCOR(pcop)->rIdx = PCOR(pcop)->r->rIdx;
4042         pcop->type = PCOR(pcop)->r->pc_type;
4043         pcop->name = PCOR(pcop)->r->name;
4044
4045 //      if(pic16_pcode_verbose) {
4046 //              fprintf(stderr, "%s:%d %s allocates register %s rIdx:0x%02x\n",
4047 //                      __FILE__, __LINE__, __FUNCTION__, r->name, r->rIdx);
4048 //      }
4049
4050   return pcop;
4051 }
4052
4053 /*-----------------------------------------------------------------*/
4054 /*-----------------------------------------------------------------*/
4055
4056 pCodeOp *pic16_newpCodeOp(char *name, PIC_OPTYPE type)
4057 {
4058   pCodeOp *pcop;
4059
4060   switch(type) {
4061   case PO_BIT:
4062   case PO_GPR_BIT:
4063     pcop = pic16_newpCodeOpBit(name, -1,0, type);
4064     break;
4065
4066   case PO_LITERAL:
4067     pcop = pic16_newpCodeOpLit(-1);
4068     break;
4069
4070   case PO_LABEL:
4071     pcop = pic16_newpCodeOpLabel(NULL,-1);
4072     break;
4073   case PO_GPR_TEMP:
4074     pcop = pic16_newpCodeOpReg(-1);
4075     break;
4076
4077   case PO_GPR_REGISTER:
4078     if(name)
4079       pcop = pic16_newpCodeOpRegFromStr(name);
4080     else
4081       pcop = pic16_newpCodeOpReg(-1);
4082     break;
4083
4084   default:
4085     pcop = Safe_calloc(1,sizeof(pCodeOp) );
4086     pcop->type = type;
4087     if(name)
4088       pcop->name = Safe_strdup(name);   
4089     else
4090       pcop->name = NULL;
4091   }
4092
4093   return pcop;
4094 }
4095
4096 #define DB_ITEMS_PER_LINE       8
4097
4098 typedef struct DBdata
4099   {
4100     int count;
4101     char buffer[256];
4102   } DBdata;
4103
4104 struct DBdata DBd;
4105 static int DBd_init = -1;
4106
4107 /*-----------------------------------------------------------------*/
4108 /*    Initialiase "DB" data buffer                                 */
4109 /*-----------------------------------------------------------------*/
4110 void pic16_initDB(void)
4111 {
4112         DBd_init = -1;
4113 }
4114
4115
4116 /*-----------------------------------------------------------------*/
4117 /*    Flush pending "DB" data to a pBlock                          */
4118 /*                                                                 */
4119 /* ptype - type of p pointer, 'f' file pointer, 'p' pBlock pointer */
4120 /*-----------------------------------------------------------------*/
4121 void pic16_flushDB(char ptype, void *p)
4122 {
4123         if (DBd.count>0) {
4124                 if(ptype == 'p')
4125                         pic16_addpCode2pBlock(((pBlock *)p),pic16_newpCodeAsmDir("DB", "%s", DBd.buffer));
4126                 else
4127                 if(ptype == 'f')
4128                         fprintf(((FILE *)p), "\tdb\t%s\n", DBd.buffer);
4129                 else {
4130                         /* sanity check */
4131                         fprintf(stderr, "PIC16 port error: could not emit initial value data\n");
4132                 }
4133
4134                 DBd.count = 0;
4135                 DBd.buffer[0] = '\0';
4136         }
4137 }
4138
4139
4140 /*-----------------------------------------------------------------*/
4141 /*    Add "DB" directives to a pBlock                              */
4142 /*-----------------------------------------------------------------*/
4143 void pic16_emitDB(char c, char ptype, void *p)
4144 {
4145   int l;
4146
4147         if (DBd_init<0) {
4148          // we need to initialize
4149                 DBd_init = 0;
4150                 DBd.count = 0;
4151                 DBd.buffer[0] = '\0';
4152         }
4153
4154         l = strlen(DBd.buffer);
4155         sprintf(DBd.buffer+l,"%s0x%02x", (DBd.count>0?", ":""), c & 0xff);
4156
4157 //      fprintf(stderr, "%s:%d DBbuffer: '%s'\n", __FILE__, __LINE__, DBd.buffer);
4158         
4159         DBd.count++;
4160         if (DBd.count>= DB_ITEMS_PER_LINE)
4161                 pic16_flushDB(ptype, p);
4162 }
4163
4164 void pic16_emitDS(char *s, char ptype, void *p)
4165 {
4166   int l;
4167
4168         if (DBd_init<0) {
4169          // we need to initialize
4170                 DBd_init = 0;
4171                 DBd.count = 0;
4172                 DBd.buffer[0] = '\0';
4173         }
4174
4175         l = strlen(DBd.buffer);
4176         sprintf(DBd.buffer+l,"%s%s", (DBd.count>0?", ":""), s);
4177
4178 //      fprintf(stderr, "%s:%d DBbuffer: '%s'\n", __FILE__, __LINE__, DBd.buffer);
4179
4180         DBd.count++;    //=strlen(s);
4181         if (DBd.count>=16)
4182                 pic16_flushDB(ptype, p);
4183 }
4184
4185
4186 /*-----------------------------------------------------------------*/
4187 /*-----------------------------------------------------------------*/
4188 void pic16_pCodeConstString(char *name, char *value)
4189 {
4190   pBlock *pb;
4191
4192   //  fprintf(stderr, " %s  %s  %s\n",__FUNCTION__,name,value);
4193
4194   if(!name || !value)
4195     return;
4196
4197   pb = pic16_newpCodeChain(NULL, 'P',pic16_newpCodeCharP("; Starting pCode block"));
4198
4199   pic16_addpBlock(pb);
4200
4201   sprintf(buffer,"; %s = %s",name,value);
4202   
4203   pic16_addpCode2pBlock(pb,pic16_newpCodeCharP(buffer));
4204   pic16_addpCode2pBlock(pb,pic16_newpCodeLabel(name,-1));
4205
4206   do {
4207         pic16_emitDB(*value, 'p', (void *)pb);
4208   }while (*value++);
4209   pic16_flushDB('p', (void *)pb);
4210 }
4211
4212 /*-----------------------------------------------------------------*/
4213 /*-----------------------------------------------------------------*/
4214 #if 0
4215 static void pCodeReadCodeTable(void)
4216 {
4217   pBlock *pb;
4218
4219   fprintf(stderr, " %s\n",__FUNCTION__);
4220
4221   pb = pic16_newpCodeChain(NULL, 'P',pic16_newpCodeCharP("; Starting pCode block"));
4222
4223   pic16_addpBlock(pb);
4224
4225   pic16_addpCode2pBlock(pb,pic16_newpCodeCharP("; ReadCodeTable - built in function"));
4226   pic16_addpCode2pBlock(pb,pic16_newpCodeCharP("; Inputs: temp1,temp2 = code pointer"));
4227   pic16_addpCode2pBlock(pb,pic16_newpCodeCharP("; Outpus: W (from RETLW at temp2:temp1)"));
4228   pic16_addpCode2pBlock(pb,pic16_newpCodeLabel("ReadCodeTable:",-1));
4229
4230   pic16_addpCode2pBlock(pb,pic16_newpCode(POC_MOVFW,pic16_newpCodeOpRegFromStr("temp2")));
4231   pic16_addpCode2pBlock(pb,pic16_newpCode(POC_MOVWF,pic16_newpCodeOpRegFromStr("PCLATH")));
4232   pic16_addpCode2pBlock(pb,pic16_newpCode(POC_MOVFW,pic16_newpCodeOpRegFromStr("temp1")));
4233   pic16_addpCode2pBlock(pb,pic16_newpCode(POC_MOVWF,pic16_newpCodeOpRegFromStr("PCL")));
4234
4235
4236 }
4237 #endif
4238 /*-----------------------------------------------------------------*/
4239 /* pic16_addpCode2pBlock - place the pCode into the pBlock linked list   */
4240 /*-----------------------------------------------------------------*/
4241 void pic16_addpCode2pBlock(pBlock *pb, pCode *pc)
4242 {
4243
4244   if(!pc)
4245     return;
4246
4247   if(!pb->pcHead) {
4248     /* If this is the first pcode to be added to a block that
4249      * was initialized with a NULL pcode, then go ahead and
4250      * make this pcode the head and tail */
4251     pb->pcHead  = pb->pcTail = pc;
4252   } else {
4253     //    if(pb->pcTail)
4254     pb->pcTail->next = pc;
4255
4256     pc->prev = pb->pcTail;
4257     pc->pb = pb;
4258
4259     pb->pcTail = pc;
4260   }
4261 }
4262
4263 /*-----------------------------------------------------------------*/
4264 /* pic16_addpBlock - place a pBlock into the pFile                 */
4265 /*-----------------------------------------------------------------*/
4266 void pic16_addpBlock(pBlock *pb)
4267 {
4268   // fprintf(stderr," Adding pBlock: dbName =%c\n",getpBlock_dbName(pb));
4269
4270   if(!the_pFile) {
4271     /* First time called, we'll pass through here. */
4272     //_ALLOC(the_pFile,sizeof(pFile));
4273     the_pFile = Safe_calloc(1,sizeof(pFile));
4274     the_pFile->pbHead = the_pFile->pbTail = pb;
4275     the_pFile->functions = NULL;
4276     return;
4277   }
4278
4279   the_pFile->pbTail->next = pb;
4280   pb->prev = the_pFile->pbTail;
4281   pb->next = NULL;
4282   the_pFile->pbTail = pb;
4283 }
4284
4285 /*-----------------------------------------------------------------*/
4286 /* removepBlock - remove a pBlock from the pFile                   */
4287 /*-----------------------------------------------------------------*/
4288 static void removepBlock(pBlock *pb)
4289 {
4290   pBlock *pbs;
4291
4292   if(!the_pFile)
4293     return;
4294
4295
4296   //fprintf(stderr," Removing pBlock: dbName =%c\n",getpBlock_dbName(pb));
4297
4298   for(pbs = the_pFile->pbHead; pbs; pbs = pbs->next) {
4299     if(pbs == pb) {
4300
4301       if(pbs == the_pFile->pbHead)
4302         the_pFile->pbHead = pbs->next;
4303
4304       if (pbs == the_pFile->pbTail) 
4305         the_pFile->pbTail = pbs->prev;
4306
4307       if(pbs->next)
4308         pbs->next->prev = pbs->prev;
4309
4310       if(pbs->prev)
4311         pbs->prev->next = pbs->next;
4312
4313       return;
4314
4315     }
4316   }
4317
4318   fprintf(stderr, "Warning: call to %s:%s didn't find pBlock\n",__FILE__,__FUNCTION__);
4319
4320 }
4321
4322 /*-----------------------------------------------------------------*/
4323 /* printpCode - write the contents of a pCode to a file            */
4324 /*-----------------------------------------------------------------*/
4325 static void printpCode(FILE *of, pCode *pc)
4326 {
4327
4328   if(!pc || !of)
4329     return;
4330
4331   if(pc->print) {
4332     pc->print(of,pc);
4333     return;
4334   }
4335
4336   fprintf(of,"warning - unable to print pCode\n");
4337 }
4338
4339 /*-----------------------------------------------------------------*/
4340 /* pic16_printpBlock - write the contents of a pBlock to a file    */
4341 /*-----------------------------------------------------------------*/
4342 void pic16_printpBlock(FILE *of, pBlock *pb)
4343 {
4344   pCode *pc;
4345
4346         if(!pb)return;
4347
4348         if(!of)of=stderr;
4349
4350         for(pc = pb->pcHead; pc; pc = pc->next) {
4351                 if(isPCF(pc) && PCF(pc)->fname) {
4352                         fprintf(of, "S_%s_%s\tcode", PCF(pc)->modname, PCF(pc)->fname);
4353                         if(pb->dbName == 'A') {
4354                           absSym *ab;
4355                                 for(ab=setFirstItem(absSymSet); ab; ab=setNextItem(absSymSet)) {
4356                                         if(!strcmp(ab->name, PCF(pc)->fname)) {
4357                                                 fprintf(of, "\t0X%06X", ab->address);
4358                                                 break;
4359                                         }
4360                                 }
4361                         }
4362                         fprintf(of, "\n");
4363                 }
4364                 printpCode(of,pc);
4365         }
4366 }
4367
4368 /*-----------------------------------------------------------------*/
4369 /*                                                                 */
4370 /*       pCode processing                                          */
4371 /*                                                                 */
4372 /*                                                                 */
4373 /*                                                                 */
4374 /*-----------------------------------------------------------------*/
4375
4376 void pic16_unlinkpCode(pCode *pc)
4377 {
4378
4379
4380   if(pc) {
4381 #ifdef PCODE_DEBUG
4382     fprintf(stderr,"Unlinking: ");
4383     printpCode(stderr, pc);
4384 #endif
4385     if(pc->prev) 
4386       pc->prev->next = pc->next;
4387     if(pc->next)
4388       pc->next->prev = pc->prev;
4389
4390     pc->prev = pc->next = NULL;
4391   }
4392 }
4393
4394 /*-----------------------------------------------------------------*/
4395 /*-----------------------------------------------------------------*/
4396
4397 static void genericDestruct(pCode *pc)
4398 {
4399
4400   pic16_unlinkpCode(pc);
4401
4402   if(isPCI(pc)) {
4403     /* For instructions, tell the register (if there's one used)
4404      * that it's no longer needed */
4405     regs *reg = pic16_getRegFromInstruction(pc);
4406     if(reg)
4407       deleteSetItem (&(reg->reglives.usedpCodes),pc);
4408
4409         if(PCI(pc)->is2MemOp) {
4410                 reg = pic16_getRegFromInstruction2(pc);
4411                 if(reg)
4412                         deleteSetItem(&(reg->reglives.usedpCodes), pc);
4413         }
4414   }
4415
4416   /* Instead of deleting the memory used by this pCode, mark
4417    * the object as bad so that if there's a pointer to this pCode
4418    * dangling around somewhere then (hopefully) when the type is
4419    * checked we'll catch it.
4420    */
4421
4422   pc->type = PC_BAD;
4423   pic16_addpCode2pBlock(pb_dead_pcodes, pc);
4424
4425   //free(pc);
4426 }
4427
4428
4429 void DEBUGpic16_emitcode (char *inst,char *fmt, ...);
4430 /*-----------------------------------------------------------------*/
4431 /*-----------------------------------------------------------------*/
4432 /* modifiers for constant immediate */
4433 const char *immdmod[3]={"LOW", "HIGH", "UPPER"};
4434
4435 char *pic16_get_op(pCodeOp *pcop,char *buffer, size_t size)
4436 {
4437   regs *r;
4438   static char b[50];
4439   char *s;
4440   int use_buffer = 1;    // copy the string to the passed buffer pointer
4441
4442         if(!buffer) {
4443                 buffer = b;
4444                 size = sizeof(b);
4445                 use_buffer = 0;     // Don't bother copying the string to the buffer.
4446         } 
4447
4448         if(pcop) {
4449                 switch(pcop->type) {
4450                         case PO_W:
4451                         case PO_WREG:
4452                         case PO_PRODL:
4453                         case PO_PRODH:
4454                         case PO_INDF0:
4455                         case PO_FSR0:
4456                                 if(use_buffer) {
4457                                         SAFE_snprintf(&buffer,&size,"%s",PCOR(pcop)->r->name);
4458                                         return buffer;
4459                                 }
4460                                 return PCOR(pcop)->r->name;
4461                                 break;
4462                         case PO_GPR_TEMP:
4463                                 r = pic16_regWithIdx(PCOR(pcop)->r->rIdx);
4464                                 if(use_buffer) {
4465                                         SAFE_snprintf(&buffer,&size,"%s",r->name);
4466                                         return buffer;
4467                                 }
4468                                 return r->name;
4469
4470                         case PO_IMMEDIATE:
4471                                 s = buffer;
4472                                 if(PCOI(pcop)->offset && PCOI(pcop)->offset<4) {
4473                                         if(PCOI(pcop)->index) {
4474                                                 SAFE_snprintf(&s,&size, "%s(%s + %d)",
4475                                                         immdmod[ PCOI(pcop)->offset ],
4476                                                         pcop->name,
4477                                                         PCOI(pcop)->index);
4478                                         } else {
4479                                                 SAFE_snprintf(&s,&size,"%s(%s)",
4480                                                         immdmod[ PCOI(pcop)->offset ],
4481                                                         pcop->name);
4482                                         }
4483                                 } else {
4484                                         if(PCOI(pcop)->index) {
4485                                                 SAFE_snprintf(&s,&size, "%s(%s + %d)",
4486                                                         immdmod[ 0 ],
4487                                                         pcop->name,
4488                                                         PCOI(pcop)->index);
4489                                         } else {
4490                                                 SAFE_snprintf(&s,&size, "%s(%s)",
4491                                                         immdmod[ 0 ],
4492                                                         pcop->name);
4493                                         }
4494                                 }
4495                                 return buffer;
4496
4497                         case PO_GPR_REGISTER:
4498                         case PO_DIR:
4499                                 s = buffer;
4500 //                              size = sizeof(buffer);
4501                                 if( PCOR(pcop)->instance) {
4502                                         SAFE_snprintf(&s,&size,"(%s + %d)",
4503                                                 pcop->name,
4504                                                 PCOR(pcop)->instance );
4505                                 } else {
4506                                         SAFE_snprintf(&s,&size,"%s",pcop->name);
4507                                 }
4508                                 return buffer;
4509
4510                         default:
4511                                 if(pcop->name) {
4512                                         if(use_buffer) {
4513                                                 SAFE_snprintf(&buffer,&size,"%s",pcop->name);
4514                                                 return buffer;
4515                                         }
4516                                 return pcop->name;
4517                                 }
4518
4519                 }
4520         }
4521
4522   return "NO operand1";
4523 }
4524
4525 /*-----------------------------------------------------------------*/
4526 /* pic16_get_op2 - variant to support two memory operand commands  */
4527 /*-----------------------------------------------------------------*/
4528 char *pic16_get_op2(pCodeOp *pcop,char *buffer, size_t size)
4529 {
4530   regs *r;
4531   static char b[50];
4532   char *s;
4533   int use_buffer = 1;    // copy the string to the passed buffer pointer
4534
4535         if(!buffer) {
4536                 buffer = b;
4537                 size = sizeof(b);
4538                 use_buffer = 0;     // Don't bother copying the string to the buffer.
4539         } 
4540
4541 #if 0
4542         fprintf(stderr, "%s:%d second operand %s is %d\tPO_DIR(%d) PO_GPR_TEMP(%d) PO_IMMEDIATE(%d) PO_INDF0(%d) PO_FSR0(%d)\n",
4543                 __FUNCTION__, __LINE__, PCOR(PCOR2(pcop)->pcop2)->r->name, PCOR2(pcop)->pcop2->type,
4544                 PO_DIR, PO_GPR_TEMP, PO_IMMEDIATE, PO_INDF0, PO_FSR0);
4545 #endif
4546
4547         if(pcop) {
4548                 switch(PCOR2(pcop)->pcop2->type) {
4549                         case PO_W:
4550                         case PO_WREG:
4551                         case PO_PRODL:
4552                         case PO_PRODH:
4553                         case PO_INDF0:
4554                         case PO_FSR0:
4555                                 if(use_buffer) {
4556                                         SAFE_snprintf(&buffer,&size,"%s",PCOR(PCOR2(pcop)->pcop2)->r->name);
4557                                         return buffer;
4558                                 }
4559                                 return PCOR(PCOR2(pcop)->pcop2)->r->name;
4560                                 break;
4561                         case PO_GPR_TEMP:
4562                                 r = pic16_regWithIdx(PCOR(PCOR2(pcop)->pcop2)->r->rIdx);
4563
4564                                 if(use_buffer) {
4565                                         SAFE_snprintf(&buffer,&size,"%s",r->name);
4566                                         return buffer;
4567                                 }
4568                                 return r->name;
4569
4570                         case PO_IMMEDIATE:
4571                                         assert( 0 );
4572                                 break;
4573 #if 0
4574                                 s = buffer;
4575
4576                                 if(PCOI(pcop)->_const) {
4577                                         if( PCOI(pcop)->offset && PCOI(pcop)->offset<4) {
4578                                                 SAFE_snprintf(&s,&size,"(((%s+%d) >> %d)&0xff)",
4579                                                         pcop->name,
4580                                                         PCOI(pcop)->index,
4581                                                         8 * PCOI(pcop)->offset );
4582                                         } else
4583                                                 SAFE_snprintf(&s,&size,"LOW(%s+%d)",pcop->name,PCOI(pcop)->index);
4584                                 } else {
4585                                         if( PCOI(pcop)->index) {
4586                                                 SAFE_snprintf(&s,&size,"(%s + %d)",
4587                                                         pcop->name,
4588                                                         PCOI(pcop)->index );
4589                                         } else {
4590                                                 if(PCOI(pcop)->offset)
4591                                                         SAFE_snprintf(&s,&size,"(%s >> %d)&0xff",pcop->name, 8*PCOI(pcop)->offset);
4592                                                 else
4593                                                         SAFE_snprintf(&s,&size,"%s",pcop->name);
4594                                         }
4595                                 }
4596                                 return buffer;
4597 #endif
4598                         case PO_DIR:
4599                                 s = buffer;
4600                                 if( PCOR(PCOR2(pcop)->pcop2)->instance) {
4601                                         SAFE_snprintf(&s,&size,"(%s + %d)",
4602                                                 PCOR(PCOR2(pcop)->pcop2)->r->name,
4603                                                 PCOR(PCOR2(pcop)->pcop2)->instance );
4604                                 } else {
4605                                         SAFE_snprintf(&s,&size,"%s",PCOR(PCOR2(pcop)->pcop2)->r->name);
4606                                 }
4607                                 return buffer;
4608
4609                         default:
4610                                 if(PCOR(PCOR2(pcop)->pcop2)->r->name) {
4611                                         if(use_buffer) {
4612                                                 SAFE_snprintf(&buffer,&size,"%s",PCOR(PCOR2(pcop)->pcop2)->r->name);
4613                                                 return buffer;
4614                                         }
4615                                         return PCOR(PCOR2(pcop)->pcop2)->r->name;
4616                                 }
4617                 }
4618         }
4619
4620   return "NO operand2";
4621 }
4622
4623 /*-----------------------------------------------------------------*/
4624 /*-----------------------------------------------------------------*/
4625 static char *pic16_get_op_from_instruction( pCodeInstruction *pcc)
4626 {
4627
4628   if(pcc )
4629     return pic16_get_op(pcc->pcop,NULL,0);
4630
4631   /* gcc 3.2:  warning: concatenation of string literals with __FUNCTION__ is deprecated 
4632    *   return ("ERROR Null: "__FUNCTION__);
4633    */
4634   return ("ERROR Null: pic16_get_op_from_instruction");
4635
4636 }
4637
4638 /*-----------------------------------------------------------------*/
4639 /*-----------------------------------------------------------------*/
4640 static void pCodeOpPrint(FILE *of, pCodeOp *pcop)
4641 {
4642
4643   fprintf(of,"pcodeopprint- not implemented\n");
4644 }
4645
4646 /*-----------------------------------------------------------------*/
4647 /* pic16_pCode2str - convert a pCode instruction to string               */
4648 /*-----------------------------------------------------------------*/
4649 char *pic16_pCode2str(char *str, size_t size, pCode *pc)
4650 {
4651   char *s = str;
4652   regs *r;
4653
4654 #if 0
4655         if(isPCI(pc) && (PCI(pc)->pci_magic != PCI_MAGIC)) {
4656                 fprintf(stderr, "%s:%d: pCodeInstruction initialization error in instruction %s, magic is %x (defaut: %x)\n",
4657                         __FILE__, __LINE__, PCI(pc)->mnemonic, PCI(pc)->pci_magic, PCI_MAGIC);
4658                 exit(-1);
4659         }
4660 #endif
4661
4662   switch(pc->type) {
4663
4664   case PC_OPCODE:
4665     SAFE_snprintf(&s,&size, "\t%s\t", PCI(pc)->mnemonic);
4666
4667     if( (PCI(pc)->num_ops >= 1) && (PCI(pc)->pcop)) {
4668
4669         if(PCI(pc)->is2MemOp) {
4670                 SAFE_snprintf(&s,&size, "%s, %s", 
4671                 pic16_get_op(PCOP(PCI(pc)->pcop), NULL, 0),
4672                 pic16_get_op2(PCOP(PCI(pc)->pcop), NULL, 0));
4673                 break;
4674         }
4675
4676         if(PCI(pc)->is2LitOp) {
4677                 SAFE_snprintf(&s,&size, "%s", PCOP(PCI(pc)->pcop)->name);
4678                 break;
4679         }
4680
4681       if(PCI(pc)->isBitInst) {
4682         if(PCI(pc)->pcop->type == PO_GPR_BIT) {
4683           if( (((pCodeOpRegBit *)(PCI(pc)->pcop))->inBitSpace) )
4684             SAFE_snprintf(&s,&size,"(%s >> 3), (%s & 7)", 
4685                           PCI(pc)->pcop->name ,
4686                           PCI(pc)->pcop->name );
4687           else
4688             SAFE_snprintf(&s,&size,"%s,%d", pic16_get_op_from_instruction(PCI(pc)), 
4689                           (((pCodeOpRegBit *)(PCI(pc)->pcop))->bit ));
4690         } else if(PCI(pc)->pcop->type == PO_GPR_BIT) {
4691           SAFE_snprintf(&s,&size,"%s,%d", pic16_get_op_from_instruction(PCI(pc)),PCORB(PCI(pc)->pcop)->bit);
4692         }else
4693           SAFE_snprintf(&s,&size,"%s,0 ; ?bug", pic16_get_op_from_instruction(PCI(pc)));
4694         //PCI(pc)->pcop->t.bit );
4695       } else {
4696
4697         if(PCI(pc)->pcop->type == PO_GPR_BIT) {
4698           if( PCI(pc)->num_ops == 3)
4699             SAFE_snprintf(&s,&size,"(%s >> 3),%c",pic16_get_op_from_instruction(PCI(pc)),((PCI(pc)->isModReg) ? 'F':'W'));
4700           else
4701             SAFE_snprintf(&s,&size,"(1 << (%s & 7))",pic16_get_op_from_instruction(PCI(pc)));
4702
4703         }else {
4704           SAFE_snprintf(&s,&size,"%s", pic16_get_op_from_instruction(PCI(pc)));
4705
4706                 if( PCI(pc)->num_ops == 3 || ((PCI(pc)->num_ops == 2) && (PCI(pc)->isAccess))) {
4707                         if(PCI(pc)->num_ops == 3)
4708                                 SAFE_snprintf(&s,&size,", %c", ( (PCI(pc)->isModReg) ? 'F':'W'));
4709
4710                         r = pic16_getRegFromInstruction(pc);
4711 //                      fprintf(stderr, "%s:%d reg = %p\tname= %s, accessBank= %d\n",
4712 //                                      __FUNCTION__, __LINE__, r, (r)?r->name:"<null>", (r)?r->accessBank:-1);
4713
4714                         if(r && !r->accessBank)SAFE_snprintf(&s,&size,", %s", (!pic16_mplab_comp?"B":"BANKED"));
4715           }
4716         }
4717       }
4718
4719     }
4720     break;
4721
4722   case PC_COMMENT:
4723     /* assuming that comment ends with a \n */
4724     SAFE_snprintf(&s,&size,";%s", ((pCodeComment *)pc)->comment);
4725     break;
4726
4727   case PC_INLINE:
4728     /* assuming that inline code ends with a \n */
4729     SAFE_snprintf(&s,&size,"%s", ((pCodeComment *)pc)->comment);
4730     break;
4731
4732   case PC_LABEL:
4733     SAFE_snprintf(&s,&size,";label=%s, key=%d\n",PCL(pc)->label,PCL(pc)->key);
4734     break;
4735   case PC_FUNCTION:
4736     SAFE_snprintf(&s,&size,";modname=%s,function=%s: id=%d\n",PCF(pc)->modname,PCF(pc)->fname);
4737     break;
4738   case PC_WILD:
4739     SAFE_snprintf(&s,&size,";\tWild opcode: id=%d\n",PCW(pc)->id);
4740     break;
4741   case PC_FLOW:
4742     SAFE_snprintf(&s,&size,";\t--FLOW change\n");
4743     break;
4744   case PC_CSOURCE:
4745 //    SAFE_snprintf(&s,&size,";#CSRC\t%s %d\t%s\n", PCCS(pc)->file_name, PCCS(pc)->line_number, PCCS(pc)->line);
4746       SAFE_snprintf(&s,&size,"%s#LINE\t%d; %s\t%s\n", (pic16_mplab_comp?";":""),
4747         PCCS(pc)->line_number, PCCS(pc)->file_name, PCCS(pc)->line);
4748     break;
4749   case PC_ASMDIR:
4750         if(PCAD(pc)->directive) {
4751                 SAFE_snprintf(&s,&size,"\t%s%s%s\n", PCAD(pc)->directive, PCAD(pc)->arg?"\t":"", PCAD(pc)->arg?PCAD(pc)->arg:"");
4752         } else
4753         if(PCAD(pc)->arg) {
4754                 /* special case to handle inline labels without a tab */
4755                 SAFE_snprintf(&s,&size,"%s\n", PCAD(pc)->arg);
4756         }
4757         break;
4758
4759   case PC_BAD:
4760     SAFE_snprintf(&s,&size,";A bad pCode is being used\n");
4761   }
4762
4763   return str;
4764
4765 }
4766
4767 /*-----------------------------------------------------------------*/
4768 /* genericPrint - the contents of a pCode to a file                */
4769 /*-----------------------------------------------------------------*/
4770 static void genericPrint(FILE *of, pCode *pc)
4771 {
4772
4773   if(!pc || !of)
4774     return;
4775
4776   switch(pc->type) {
4777   case PC_COMMENT:
4778     fprintf(of,";%s\n", ((pCodeComment *)pc)->comment);
4779     break;
4780
4781   case PC_INLINE:
4782     fprintf(of,"%s\n", ((pCodeComment *)pc)->comment);
4783      break;
4784
4785   case PC_OPCODE:
4786     // If the opcode has a label, print that first
4787     {
4788       pBranch *pbl = PCI(pc)->label;
4789       while(pbl && pbl->pc) {
4790         if(pbl->pc->type == PC_LABEL)
4791           pCodePrintLabel(of, pbl->pc);
4792         pbl = pbl->next;
4793       }
4794     }
4795
4796     if(PCI(pc)->cline) 
4797       genericPrint(of,PCODE(PCI(pc)->cline));
4798
4799     {
4800       char str[256];
4801       
4802       pic16_pCode2str(str, 256, pc);
4803
4804       fprintf(of,"%s",str);
4805       /* Debug */
4806       if(pic16_debug_verbose) {
4807         fprintf(of, "\t;key=%03x",pc->seq);
4808         if(PCI(pc)->pcflow)
4809           fprintf(of,", flow seq=%03x",PCI(pc)->pcflow->pc.seq);
4810       }
4811     }
4812     fprintf(of, "\n");
4813     break;
4814       
4815   case PC_WILD:
4816     fprintf(of,";\tWild opcode: id=%d\n",PCW(pc)->id);
4817     if(PCW(pc)->pci.label)
4818       pCodePrintLabel(of, PCW(pc)->pci.label->pc);
4819
4820     if(PCW(pc)->operand) {
4821       fprintf(of,";\toperand  ");
4822       pCodeOpPrint(of,PCW(pc)->operand );
4823     }
4824     break;
4825
4826   case PC_FLOW:
4827     if(pic16_debug_verbose) {
4828       fprintf(of,";<>Start of new flow, seq=0x%x",pc->seq);
4829       if(PCFL(pc)->ancestor)
4830         fprintf(of," ancestor = 0x%x", PCODE(PCFL(pc)->ancestor)->seq);
4831       fprintf(of,"\n");
4832
4833     }
4834     break;
4835
4836   case PC_CSOURCE:
4837 //    fprintf(of,";#CSRC\t%s %d\t\t%s\n", PCCS(pc)->file_name, PCCS(pc)->line_number, PCCS(pc)->line);
4838     fprintf(of,"%s#LINE\t%d; %s\t%s\n", (pic16_mplab_comp?";":""),
4839         PCCS(pc)->line_number, PCCS(pc)->file_name, PCCS(pc)->line);
4840          
4841     break;
4842
4843   case PC_ASMDIR:
4844         {
4845           pBranch *pbl = PCAD(pc)->pci.label;
4846                 while(pbl && pbl->pc) {
4847                         if(pbl->pc->type == PC_LABEL)
4848                                 pCodePrintLabel(of, pbl->pc);
4849                         pbl = pbl->next;
4850                 }
4851         }
4852         if(PCAD(pc)->directive) {
4853                 fprintf(of, "\t%s%s%s\n", PCAD(pc)->directive, PCAD(pc)->arg?"\t":"", PCAD(pc)->arg?PCAD(pc)->arg:"");
4854         } else
4855         if(PCAD(pc)->arg) {
4856                 /* special case to handle inline labels without tab */
4857                 fprintf(of, "%s\n", PCAD(pc)->arg);
4858         }
4859         break;
4860         
4861   case PC_LABEL:
4862   default:
4863     fprintf(of,"unknown pCode type %d\n",pc->type);
4864   }
4865
4866 }
4867
4868 /*-----------------------------------------------------------------*/
4869 /* pCodePrintFunction - prints function begin/end                  */
4870 /*-----------------------------------------------------------------*/
4871
4872 static void pCodePrintFunction(FILE *of, pCode *pc)
4873 {
4874
4875   if(!pc || !of)
4876     return;
4877
4878 #if 0
4879   if( ((pCodeFunction *)pc)->modname) 
4880     fprintf(of,"F_%s",((pCodeFunction *)pc)->modname);
4881 #endif
4882
4883   if(!PCF(pc)->absblock) {
4884       if(PCF(pc)->fname) {
4885       pBranch *exits = PCF(pc)->to;
4886       int i=0;
4887
4888       fprintf(of,"%s:", PCF(pc)->fname);
4889     
4890       if(pic16_pcode_verbose)
4891         fprintf(of, "\t;Function start");
4892     
4893       fprintf(of, "\n");
4894     
4895       while(exits) {
4896         i++;
4897         exits = exits->next;
4898       }
4899       //if(i) i--;
4900
4901       if(pic16_pcode_verbose)
4902         fprintf(of,"; %d exit point%c\n",i, ((i==1) ? ' ':'s'));
4903     
4904     } else {
4905         if((PCF(pc)->from && 
4906                 PCF(pc)->from->pc->type == PC_FUNCTION &&
4907                 PCF(PCF(pc)->from->pc)->fname) ) {
4908
4909                 if(pic16_pcode_verbose)
4910                         fprintf(of,"; exit point of %s\n",PCF(PCF(pc)->from->pc)->fname);
4911         } else {
4912                 if(pic16_pcode_verbose)
4913                         fprintf(of,"; exit point [can't find entry point]\n");
4914         }
4915         fprintf(of, "\n");
4916     }
4917   }
4918 }
4919 /*-----------------------------------------------------------------*/
4920 /* pCodePrintLabel - prints label                                  */
4921 /*-----------------------------------------------------------------*/
4922
4923 static void pCodePrintLabel(FILE *of, pCode *pc)
4924 {
4925
4926   if(!pc || !of)
4927     return;
4928
4929   if(PCL(pc)->label) 
4930     fprintf(of,"%s:\n",PCL(pc)->label);
4931   else if (PCL(pc)->key >=0) 
4932     fprintf(of,"_%05d_DS_:\n",PCL(pc)->key);
4933   else
4934     fprintf(of,";wild card label: id=%d\n",-PCL(pc)->key);
4935
4936 }
4937 /*-----------------------------------------------------------------*/
4938 /* unlinkpCodeFromBranch - Search for a label in a pBranch and     */
4939 /*                         remove it if it is found.               */
4940 /*-----------------------------------------------------------------*/
4941 static void unlinkpCodeFromBranch(pCode *pcl , pCode *pc)
4942 {
4943   pBranch *b, *bprev;
4944
4945
4946   bprev = NULL;
4947
4948   if(pcl->type == PC_OPCODE)
4949     b = PCI(pcl)->label;
4950   else {
4951     fprintf(stderr, "LINE %d. can't unlink from non opcode\n",__LINE__);
4952     exit(1);
4953
4954   }
4955
4956   //fprintf (stderr, "%s \n",__FUNCTION__);
4957   //pcl->print(stderr,pcl);
4958   //pc->print(stderr,pc);
4959   while(b) {
4960     if(b->pc == pc) {
4961       //fprintf (stderr, "found label\n");
4962       //pc->print(stderr, pc);
4963
4964       /* Found a label */
4965       if(bprev) {
4966         bprev->next = b->next;  /* Not first pCode in chain */
4967         free(b);
4968       } else {
4969         pc->destruct(pc);
4970         PCI(pcl)->label = b->next;   /* First pCode in chain */
4971         free(b);
4972       }
4973       return;  /* A label can't occur more than once */
4974     }
4975     bprev = b;
4976     b = b->next;
4977   }
4978
4979 }
4980
4981 /*-----------------------------------------------------------------*/
4982 /*-----------------------------------------------------------------*/
4983 pBranch * pic16_pBranchAppend(pBranch *h, pBranch *n)
4984 {
4985   pBranch *b;
4986
4987   if(!h)
4988     return n;
4989
4990   if(h == n)
4991     return n;
4992
4993   b = h;
4994   while(b->next)
4995     b = b->next;
4996
4997   b->next = n;
4998
4999   return h;
5000   
5001 }  
5002 /*-----------------------------------------------------------------*/
5003 /* pBranchLink - given two pcodes, this function will link them    */
5004 /*               together through their pBranches                  */
5005 /*-----------------------------------------------------------------*/
5006 static void pBranchLink(pCodeFunction *f, pCodeFunction *t)
5007 {
5008   pBranch *b;
5009
5010   // Declare a new branch object for the 'from' pCode.
5011
5012   //_ALLOC(b,sizeof(pBranch));
5013   b = Safe_calloc(1,sizeof(pBranch));
5014   b->pc = PCODE(t);             // The link to the 'to' pCode.
5015   b->next = NULL;
5016
5017   f->to = pic16_pBranchAppend(f->to,b);
5018
5019   // Now do the same for the 'to' pCode.
5020
5021   //_ALLOC(b,sizeof(pBranch));
5022   b = Safe_calloc(1,sizeof(pBranch));
5023   b->pc = PCODE(f);
5024   b->next = NULL;
5025
5026   t->from = pic16_pBranchAppend(t->from,b);
5027   
5028 }
5029
5030 #if 0
5031 /*-----------------------------------------------------------------*/
5032 /* pBranchFind - find the pBranch in a pBranch chain that contains */
5033 /*               a pCode                                           */
5034 /*-----------------------------------------------------------------*/
5035 static pBranch *pBranchFind(pBranch *pb,pCode *pc)
5036 {
5037   while(pb) {
5038
5039     if(pb->pc == pc)
5040       return pb;
5041
5042     pb = pb->next;
5043   }
5044
5045   return NULL;
5046 }
5047
5048 /*-----------------------------------------------------------------*/
5049 /* pic16_pCodeUnlink - Unlink the given pCode from its pCode chain.      */
5050 /*-----------------------------------------------------------------*/
5051 void pic16_pCodeUnlink(pCode *pc)
5052 {
5053   pBranch *pb1,*pb2;
5054   pCode *pc1;
5055
5056   if(!pc->prev || !pc->next) {
5057     fprintf(stderr,"unlinking bad pCode in %s:%d\n",__FILE__,__LINE__);
5058     exit(1);
5059   }
5060
5061   /* first remove the pCode from the chain */
5062   pc->prev->next = pc->next;
5063   pc->next->prev = pc->prev;
5064
5065   /* Now for the hard part... */
5066
5067   /* Remove the branches */
5068
5069   pb1 = PCI(pc)->from;
5070   while(pb1) {
5071     PCI(pc1) = pb1->pc;    /* Get the pCode that branches to the
5072                        * one we're unlinking */
5073
5074     /* search for the link back to this pCode (the one we're
5075      * unlinking) */
5076     if((pb2 = pBranchFind(PCI(pc1)->to,pc))) {
5077       pb2->pc = PCI(pc)->to->pc;  // make the replacement
5078
5079       /* if the pCode we're unlinking contains multiple 'to'
5080        * branches (e.g. this a skip instruction) then we need
5081        * to copy these extra branches to the chain. */
5082       if(PCI(pc)->to->next)
5083         pic16_pBranchAppend(pb2, PCI(pc)->to->next);
5084     }
5085     
5086     pb1 = pb1->next;
5087   }
5088
5089
5090 }
5091 #endif
5092 /*-----------------------------------------------------------------*/
5093 /*-----------------------------------------------------------------*/
5094 #if 0
5095 static void genericAnalyze(pCode *pc)
5096 {
5097   switch(pc->type) {
5098   case PC_WILD:
5099   case PC_COMMENT:
5100     return;
5101   case PC_LABEL:
5102   case PC_FUNCTION:
5103   case PC_OPCODE:
5104     {
5105       // Go through the pCodes that are in pCode chain and link
5106       // them together through the pBranches. Note, the pCodes
5107       // are linked together as a contiguous stream like the 
5108       // assembly source code lines. The linking here mimics this
5109       // except that comments are not linked in.
5110       // 
5111       pCode *npc = pc->next;
5112       while(npc) {
5113         if(npc->type == PC_OPCODE || npc->type == PC_LABEL) {
5114           pBranchLink(pc,npc);
5115           return;
5116         } else
5117           npc = npc->next;
5118       }
5119       /* reached the end of the pcode chain without finding
5120        * an instruction we could link to. */
5121     }
5122     break;
5123   case PC_FLOW:
5124     fprintf(stderr,"analyze PC_FLOW\n");
5125
5126     return;
5127   case PC_BAD:
5128     fprintf(stderr,,";A bad pCode is being used\n");
5129
5130   }
5131 }
5132 #endif
5133
5134 /*-----------------------------------------------------------------*/
5135 /*-----------------------------------------------------------------*/
5136 static int compareLabel(pCode *pc, pCodeOpLabel *pcop_label)
5137 {
5138   pBranch *pbr;
5139
5140   if(pc->type == PC_LABEL) {
5141     if( ((pCodeLabel *)pc)->key ==  pcop_label->key)
5142       return TRUE;
5143   }
5144   if((pc->type == PC_OPCODE)
5145         || (pc->type == PC_ASMDIR)
5146         ) {
5147     pbr = PCI(pc)->label;
5148     while(pbr) {
5149       if(pbr->pc->type == PC_LABEL) {
5150         if( ((pCodeLabel *)(pbr->pc))->key ==  pcop_label->key)
5151           return TRUE;
5152       }
5153       pbr = pbr->next;
5154     }
5155   }
5156
5157   return FALSE;
5158 }
5159
5160 /*-----------------------------------------------------------------*/
5161 /*-----------------------------------------------------------------*/
5162 static int checkLabel(pCode *pc)
5163 {
5164   pBranch *pbr;
5165
5166   if(pc && isPCI(pc)) {
5167     pbr = PCI(pc)->label;
5168     while(pbr) {
5169       if(isPCL(pbr->pc) && (PCL(pbr->pc)->key >= 0))
5170         return TRUE;
5171
5172       pbr = pbr->next;
5173     }
5174   }
5175
5176   return FALSE;
5177 }
5178
5179 /*-----------------------------------------------------------------*/
5180 /* findLabelinpBlock - Search the pCode for a particular label     */
5181 /*-----------------------------------------------------------------*/
5182 static pCode * findLabelinpBlock(pBlock *pb,pCodeOpLabel *pcop_label)
5183 {
5184   pCode  *pc;
5185
5186   if(!pb)
5187     return NULL;
5188
5189   for(pc = pb->pcHead; pc; pc = pc->next) 
5190     if(compareLabel(pc,pcop_label))
5191       return pc;
5192     
5193   return NULL;
5194 }
5195 #if 0
5196 /*-----------------------------------------------------------------*/
5197 /* findLabel - Search the pCode for a particular label             */
5198 /*-----------------------------------------------------------------*/
5199 static pCode * findLabel(pCodeOpLabel *pcop_label)
5200 {
5201   pBlock *pb;
5202   pCode  *pc;
5203
5204   if(!the_pFile)
5205     return NULL;
5206
5207   for(pb = the_pFile->pbHead; pb; pb = pb->next) {
5208     if( (pc = findLabelinpBlock(pb,pcop_label)) != NULL)
5209       return pc;
5210   }
5211
5212   fprintf(stderr,"Couldn't find label %s", pcop_label->pcop.name);
5213   return NULL;
5214 }
5215 #endif
5216 /*-----------------------------------------------------------------*/
5217 /* pic16_findNextpCode - given a pCode, find the next of type 'pct'      */
5218 /*                 in the linked list                              */
5219 /*-----------------------------------------------------------------*/
5220 pCode * pic16_findNextpCode(pCode *pc, PC_TYPE pct)
5221 {
5222
5223   while(pc) {
5224     if(pc->type == pct)
5225       return pc;
5226
5227     pc = pc->next;
5228   }
5229
5230   return NULL;
5231 }
5232
5233 /*-----------------------------------------------------------------*/
5234 /* findPrevpCode - given a pCode, find the previous of type 'pct'  */
5235 /*                 in the linked list                              */
5236 /*-----------------------------------------------------------------*/
5237 static pCode * findPrevpCode(pCode *pc, PC_TYPE pct)
5238 {
5239
5240   while(pc) {
5241     if(pc->type == pct)
5242       return pc;
5243
5244     pc = pc->prev;
5245   }
5246
5247   return NULL;
5248 }
5249
5250
5251 //#define PCODE_DEBUG
5252 /*-----------------------------------------------------------------*/
5253 /* pic16_findNextInstruction - given a pCode, find the next instruction  */
5254 /*                       in the linked list                        */
5255 /*-----------------------------------------------------------------*/
5256 pCode * pic16_findNextInstruction(pCode *pci)
5257 {
5258   pCode *pc = pci;
5259
5260   while(pc) {
5261     if((pc->type == PC_OPCODE)
5262         || (pc->type == PC_WILD)
5263         || (pc->type == PC_ASMDIR)
5264         )
5265       return pc;
5266
5267 #ifdef PCODE_DEBUG
5268     fprintf(stderr,"pic16_findNextInstruction:  ");
5269     printpCode(stderr, pc);
5270 #endif
5271     pc = pc->next;
5272   }
5273
5274   //fprintf(stderr,"Couldn't find instruction\n");
5275   return NULL;
5276 }
5277
5278 /*-----------------------------------------------------------------*/
5279 /* pic16_findPrevInstruction - given a pCode, find the next instruction  */
5280 /*                       in the linked list                        */
5281 /*-----------------------------------------------------------------*/
5282 pCode * pic16_findPrevInstruction(pCode *pci)
5283 {
5284   pCode *pc = pci;
5285
5286   while(pc) {
5287
5288     if((pc->type == PC_OPCODE)
5289         || (pc->type == PC_WILD)
5290         || (pc->type == PC_ASMDIR)
5291         )
5292       return pc;
5293       
5294
5295 #ifdef PCODE_DEBUG
5296     fprintf(stderr,"pic16_findPrevInstruction:  ");
5297     printpCode(stderr, pc);
5298 #endif
5299     pc = pc->prev;
5300   }
5301
5302   //fprintf(stderr,"Couldn't find instruction\n");
5303   return NULL;
5304 }
5305
5306 #undef PCODE_DEBUG
5307
5308 #if 0
5309 /*-----------------------------------------------------------------*/
5310 /* findFunctionEnd - given a pCode find the end of the function    */
5311 /*                   that contains it                              */
5312 /*-----------------------------------------------------------------*/
5313 static pCode * findFunctionEnd(pCode *pc)
5314 {
5315
5316   while(pc) {
5317     if(pc->type == PC_FUNCTION &&  !(PCF(pc)->fname))
5318       return pc;
5319
5320     pc = pc->next;
5321   }
5322
5323   fprintf(stderr,"Couldn't find function end\n");
5324   return NULL;
5325 }
5326 #endif
5327 #if 0
5328 /*-----------------------------------------------------------------*/
5329 /* AnalyzeLabel - if the pCode is a label, then merge it with the  */
5330 /*                instruction with which it is associated.         */
5331 /*-----------------------------------------------------------------*/
5332 static void AnalyzeLabel(pCode *pc)
5333 {
5334
5335   pic16_pCodeUnlink(pc);
5336
5337 }
5338 #endif
5339
5340 #if 0
5341 static void AnalyzeGOTO(pCode *pc)
5342 {
5343
5344   pBranchLink(pc,findLabel( (pCodeOpLabel *) (PCI(pc)->pcop) ));
5345
5346 }
5347
5348 static void AnalyzeSKIP(pCode *pc)
5349 {
5350
5351   pBranchLink(pc,pic16_findNextInstruction(pc->next));
5352   pBranchLink(pc,pic16_findNextInstruction(pc->next->next));
5353
5354 }
5355
5356 static void AnalyzeRETURN(pCode *pc)
5357 {
5358
5359   //  branch_link(pc,findFunctionEnd(pc->next));
5360
5361 }
5362
5363 #endif
5364
5365 /*-----------------------------------------------------------------*/
5366 /*-----------------------------------------------------------------*/
5367 regs * pic16_getRegFromInstruction(pCode *pc)
5368 {
5369
5370   if(!pc                   || 
5371      !isPCI(pc)            ||
5372      !PCI(pc)->pcop        ||
5373      PCI(pc)->num_ops == 0 ||
5374      (PCI(pc)->num_ops == 1 && PCI(pc)->isFastCall))
5375     return NULL;
5376
5377 #if 0
5378   fprintf(stderr, "pic16_getRegFromInstruction - reg type %s (%d)\n",
5379         dumpPicOptype( PCI(pc)->pcop->type), PCI(pc)->pcop->type);
5380 #endif
5381
5382   switch(PCI(pc)->pcop->type) {
5383   case PO_PRODL:
5384   case PO_PRODH:
5385
5386   case PO_INDF0:
5387   case PO_FSR0:
5388     return PCOR(PCI(pc)->pcop)->r;
5389
5390   case PO_BIT:
5391   case PO_GPR_TEMP:
5392 //      fprintf(stderr, "pic16_getRegFromInstruction - bit or temp\n");
5393     return PCOR(PCI(pc)->pcop)->r;
5394
5395   case PO_IMMEDIATE:
5396 //    return pic16_dirregWithName(PCOI(PCI(pc)->pcop)->r->name);
5397
5398     if(PCOI(PCI(pc)->pcop)->r)
5399       return (PCOI(PCI(pc)->pcop)->r);
5400     else
5401       return NULL;
5402     
5403   case PO_GPR_BIT:
5404     return PCOR(PCI(pc)->pcop)->r;
5405
5406   case PO_GPR_REGISTER:
5407   case PO_DIR:
5408 //      fprintf(stderr, "pic16_getRegFromInstruction - dir\n");
5409     return PCOR(PCI(pc)->pcop)->r;
5410
5411   case PO_LITERAL:
5412     //fprintf(stderr, "pic16_getRegFromInstruction - literal\n");
5413     break;
5414
5415   default:
5416 //      fprintf(stderr, "pic16_getRegFromInstruction - unknown reg type %d\n",PCI(pc)->pcop->type);
5417 //      genericPrint(stderr, pc);
5418 //      assert( 0 );
5419         break;
5420   }
5421
5422   return NULL;
5423 }
5424
5425 /*-------------------------------------------------------------------------------*/
5426 /* pic16_getRegFromInstruction2 - variant to support two memory operand commands */
5427 /*-------------------------------------------------------------------------------*/
5428 regs * pic16_getRegFromInstruction2(pCode *pc)
5429 {
5430
5431   if(!pc                   || 
5432      !isPCI(pc)            ||
5433      !PCI(pc)->pcop        ||
5434      PCI(pc)->num_ops == 0 ||
5435      (PCI(pc)->num_ops == 1))           // accept only 2 operand commands
5436     return NULL;
5437
5438
5439 #if 0
5440   fprintf(stderr, "pic16_getRegFromInstruction2 - reg type %s (%d)\n",
5441         dumpPicOptype( PCI(pc)->pcop->type), PCI(pc)->pcop->type);
5442 #endif
5443
5444 /*
5445  * operands supported in MOVFF:
5446  *  PO_INF0/PO_FSR0
5447  *  PO_GPR_TEMP
5448  *  PO_IMMEDIATE
5449  *  PO_DIR
5450  *
5451  */
5452   switch(PCI(pc)->pcop->type) {
5453   case PO_PRODL:
5454   case PO_PRODH:
5455
5456   case PO_INDF0:
5457   case PO_FSR0:
5458     return PCOR(PCOR2(PCI(pc)->pcop)->pcop2)->r;
5459
5460     //    return typeRegWithIdx (PCOR(PCI(pc)->pcop)->rIdx, REG_SFR, 0);
5461
5462 //  case PO_BIT:
5463   case PO_GPR_TEMP:
5464     //fprintf(stderr, "pic16_getRegFromInstruction2 - bit or temp\n");
5465     return PCOR(PCOR2(PCI(pc)->pcop)->pcop2)->r;
5466
5467   case PO_IMMEDIATE:
5468 #if 0
5469 //    if(PCOI(PCI(pc)->pcop)->r)
5470 //      return (PCOI(PCOR2(PCI(pc)->pcop)->pcop2)->r);
5471
5472     //fprintf(stderr, "pic16_getRegFromInstruction2 - immediate\n");
5473     return pic16_dirregWithName(PCOI(PCOR2(PCI(pc)->pcop)->pcop2)->r->name);
5474 #endif
5475
5476     if(PCOI(PCOR2(PCI(pc)->pcop)->pcop2)->r)
5477       return (PCOI(PCOR2(PCI(pc)->pcop)->pcop2)->r);
5478     else
5479       return NULL;
5480
5481
5482   case PO_GPR_BIT:
5483         break;
5484 //    return PCOR2(PCI(pc)->pcop)->r;
5485
5486   case PO_GPR_REGISTER:
5487   case PO_DIR:
5488     //fprintf(stderr, "pic16_getRegFromInstruction2 - dir\n");
5489     return PCOR(PCOR2(PCI(pc)->pcop)->pcop2)->r;
5490
5491   case PO_LITERAL:
5492         break;
5493     //fprintf(stderr, "pic16_getRegFromInstruction2 - literal\n");
5494
5495   default:
5496     //fprintf(stderr, "pic16_getRegFromInstruction2 - unknown reg type %d\n",PCI(pc)->pcop->type);
5497     //genericPrint(stderr, pc);
5498     break;
5499   }
5500
5501   return NULL;
5502
5503 }
5504
5505 /*-----------------------------------------------------------------*/
5506 /*-----------------------------------------------------------------*/
5507
5508 static void AnalyzepBlock(pBlock *pb)
5509 {
5510   pCode *pc;
5511
5512   if(!pb)
5513     return;
5514
5515   /* Find all of the registers used in this pBlock 
5516    * by looking at each instruction and examining it's
5517    * operands
5518    */
5519   for(pc = pb->pcHead; pc; pc = pc->next) {
5520
5521     /* Is this an instruction with operands? */
5522     if(pc->type == PC_OPCODE && PCI(pc)->pcop) {
5523
5524       if(PCI(pc)->pcop->type == PO_GPR_TEMP) {
5525
5526         /* Loop through all of the registers declared so far in
5527            this block and see if we find this one there */
5528
5529         regs *r = setFirstItem(pb->tregisters);
5530
5531         while(r) {
5532           if(r->rIdx == PCOR(PCI(pc)->pcop)->r->rIdx) {
5533             PCOR(PCI(pc)->pcop)->r = r;
5534             break;
5535           }
5536           r = setNextItem(pb->tregisters);
5537         }
5538
5539         if(!r) {
5540           /* register wasn't found */
5541           //r = Safe_calloc(1, sizeof(regs));
5542           //memcpy(r,PCOR(PCI(pc)->pcop)->r, sizeof(regs));
5543           //addSet(&pb->tregisters, r);
5544           addSet(&pb->tregisters, PCOR(PCI(pc)->pcop)->r);
5545           //PCOR(PCI(pc)->pcop)->r = r;
5546           //fprintf(stderr,"added register to pblock: reg %d\n",r->rIdx);
5547         }/* else 
5548           fprintf(stderr,"found register in pblock: reg %d\n",r->rIdx);
5549          */
5550       }
5551       if(PCI(pc)->pcop->type == PO_GPR_REGISTER) {
5552         if(PCOR(PCI(pc)->pcop)->r) {
5553           pic16_allocWithIdx (PCOR(PCI(pc)->pcop)->r->rIdx);
5554           DFPRINTF((stderr,"found register in pblock: reg 0x%x\n",PCOR(PCI(pc)->pcop)->r->rIdx));
5555         } else {
5556           if(PCI(pc)->pcop->name)
5557             fprintf(stderr,"ERROR: %s is a NULL register\n",PCI(pc)->pcop->name );
5558           else
5559             fprintf(stderr,"ERROR: NULL register\n");
5560         }
5561       }
5562     }
5563
5564
5565   }
5566 }
5567
5568 /*-----------------------------------------------------------------*/
5569 /* */
5570 /*-----------------------------------------------------------------*/
5571 #define PCI_HAS_LABEL(x) ((x) && (PCI(x)->label != NULL))
5572
5573 static void InsertpFlow(pCode *pc, pCode **pflow)
5574 {
5575   if(*pflow)
5576     PCFL(*pflow)->end = pc;
5577
5578   if(!pc || !pc->next)
5579     return;
5580
5581   *pflow = pic16_newpCodeFlow();
5582   pic16_pCodeInsertAfter(pc, *pflow);
5583 }
5584
5585 /*-----------------------------------------------------------------*/
5586 /* pic16_BuildFlow(pBlock *pb) - examine the code in a pBlock and build  */
5587 /*                         the flow blocks.                        */
5588 /*
5589  * pic16_BuildFlow inserts pCodeFlow objects into the pCode chain at each
5590  * point the instruction flow changes. 
5591  */
5592 /*-----------------------------------------------------------------*/
5593 void pic16_BuildFlow(pBlock *pb)
5594 {
5595   pCode *pc;
5596   pCode *last_pci=NULL;
5597   pCode *pflow=NULL;
5598   int seq = 0;
5599
5600   if(!pb)
5601     return;
5602
5603   //fprintf (stderr,"build flow start seq %d  ",GpcFlowSeq);
5604   /* Insert a pCodeFlow object at the beginning of a pBlock */
5605
5606   InsertpFlow(pb->pcHead, &pflow);
5607
5608   //pflow = pic16_newpCodeFlow();    /* Create a new Flow object */
5609   //pflow->next = pb->pcHead;  /* Make the current head the next object */
5610   //pb->pcHead->prev = pflow;  /* let the current head point back to the flow object */
5611   //pb->pcHead = pflow;        /* Make the Flow object the head */
5612   //pflow->pb = pb;
5613
5614   for( pc = pic16_findNextInstruction(pb->pcHead);
5615        pc != NULL;
5616        pc=pic16_findNextInstruction(pc)) { 
5617
5618     pc->seq = seq++;
5619     PCI(pc)->pcflow = PCFL(pflow);
5620
5621     //fprintf(stderr," build: ");
5622     //pflow->print(stderr,pflow);
5623
5624     if( PCI(pc)->isSkip) {
5625
5626       /* The two instructions immediately following this one 
5627        * mark the beginning of a new flow segment */
5628
5629       while(pc && PCI(pc)->isSkip) {
5630
5631         PCI(pc)->pcflow = PCFL(pflow);
5632         pc->seq = seq-1;
5633         seq = 1;
5634
5635         InsertpFlow(pc, &pflow);
5636         pc=pic16_findNextInstruction(pc->next);
5637       }
5638
5639       seq = 0;
5640
5641       if(!pc)
5642         break;
5643
5644       PCI(pc)->pcflow = PCFL(pflow);
5645       pc->seq = 0;
5646       InsertpFlow(pc, &pflow);
5647
5648     } else if ( PCI(pc)->isBranch && !checkLabel(pic16_findNextInstruction(pc->next)))  {
5649
5650       InsertpFlow(pc, &pflow);
5651       seq = 0;
5652
5653     } else if (checkLabel(pc)) { 
5654
5655       /* This instruction marks the beginning of a
5656        * new flow segment */
5657
5658       pc->seq = 0;
5659       seq = 1;
5660
5661       /* If the previous pCode is not a flow object, then 
5662        * insert a new flow object. (This check prevents 
5663        * two consecutive flow objects from being insert in
5664        * the case where a skip instruction preceeds an
5665        * instruction containing a label.) */
5666
5667       if(last_pci && (PCI(last_pci)->pcflow == PCFL(pflow)))
5668         InsertpFlow(pic16_findPrevInstruction(pc->prev), &pflow);
5669
5670       PCI(pc)->pcflow = PCFL(pflow);
5671       
5672     }
5673     last_pci = pc;
5674     pc = pc->next;
5675   }
5676
5677   //fprintf (stderr,",end seq %d",GpcFlowSeq);
5678   if(pflow)
5679     PCFL(pflow)->end = pb->pcTail;
5680 }
5681
5682 /*-------------------------------------------------------------------*/
5683 /* unBuildFlow(pBlock *pb) - examine the code in a pBlock and build  */
5684 /*                           the flow blocks.                        */
5685 /*
5686  * unBuildFlow removes pCodeFlow objects from a pCode chain
5687  */
5688 /*-----------------------------------------------------------------*/
5689 static void unBuildFlow(pBlock *pb)
5690 {
5691   pCode *pc,*pcnext;
5692
5693   if(!pb)
5694     return;
5695
5696   pc = pb->pcHead;
5697
5698   while(pc) {
5699     pcnext = pc->next;
5700
5701     if(isPCI(pc)) {
5702
5703       pc->seq = 0;
5704       if(PCI(pc)->pcflow) {
5705         //free(PCI(pc)->pcflow);
5706         PCI(pc)->pcflow = NULL;
5707       }
5708
5709     } else if(isPCFL(pc) )
5710       pc->destruct(pc);
5711
5712     pc = pcnext;
5713   }
5714
5715
5716 }
5717 #if 0
5718 /*-----------------------------------------------------------------*/
5719 /*-----------------------------------------------------------------*/
5720 static void dumpCond(int cond)
5721 {
5722
5723   static char *pcc_str[] = {
5724     //"PCC_NONE",
5725     "PCC_REGISTER",
5726     "PCC_C",
5727     "PCC_Z",
5728     "PCC_DC",
5729     "PCC_OV",
5730     "PCC_N",
5731     "PCC_W",
5732     "PCC_EXAMINE_PCOP",
5733     "PCC_LITERAL",
5734     "PCC_REL_ADDR"
5735   };
5736
5737   int ncond = sizeof(pcc_str) / sizeof(char *);
5738   int i,j;
5739
5740   fprintf(stderr, "0x%04X\n",cond);
5741
5742   for(i=0,j=1; i<ncond; i++, j<<=1)
5743     if(cond & j)
5744       fprintf(stderr, "  %s\n",pcc_str[i]);
5745
5746 }
5747 #endif
5748
5749 #if 0
5750 /*-----------------------------------------------------------------*/
5751 /*-----------------------------------------------------------------*/
5752 static void FlowStats(pCodeFlow *pcflow)
5753 {
5754
5755   pCode *pc;
5756
5757   if(!isPCFL(pcflow))
5758     return;
5759
5760   fprintf(stderr, " FlowStats - flow block (seq=%d)\n", pcflow->pc.seq);
5761
5762   pc = pic16_findNextpCode(PCODE(pcflow), PC_OPCODE); 
5763
5764   if(!pc) {
5765     fprintf(stderr, " FlowStats - empty flow (seq=%d)\n", pcflow->pc.seq);
5766     return;
5767   }
5768
5769
5770   fprintf(stderr, "  FlowStats inCond: ");
5771   dumpCond(pcflow->inCond);
5772   fprintf(stderr, "  FlowStats outCond: ");
5773   dumpCond(pcflow->outCond);
5774
5775 }
5776 #endif
5777 /*-----------------------------------------------------------------*
5778  * int isBankInstruction(pCode *pc) - examine the pCode *pc to determine
5779  *    if it affects the banking bits. 
5780  * 
5781  * return: -1 == Banking bits are unaffected by this pCode.
5782  *
5783  * return: > 0 == Banking bits are affected.
5784  *
5785  *  If the banking bits are affected, then the returned value describes
5786  * which bits are affected and how they're affected. The lower half
5787  * of the integer maps to the bits that are affected, the upper half
5788  * to whether they're set or cleared.
5789  *
5790  *-----------------------------------------------------------------*/
5791
5792 static int isBankInstruction(pCode *pc)
5793 {
5794   regs *reg;
5795   int bank = -1;
5796
5797   if(!isPCI(pc))
5798     return -1;
5799
5800   if( PCI(pc)->op == POC_MOVLB ||
5801       (( (reg = pic16_getRegFromInstruction(pc)) != NULL) && isBSR_REG(reg))) {
5802     bank = PCOL(pc)->lit;
5803   }
5804
5805   return bank;
5806 }
5807
5808
5809 /*-----------------------------------------------------------------*/
5810 /*-----------------------------------------------------------------*/
5811 static void FillFlow(pCodeFlow *pcflow)
5812 {
5813
5814   pCode *pc;
5815   int cur_bank;
5816
5817   if(!isPCFL(pcflow))
5818     return;
5819
5820   //  fprintf(stderr, " FillFlow - flow block (seq=%d)\n", pcflow->pc.seq);
5821
5822   pc = pic16_findNextpCode(PCODE(pcflow), PC_OPCODE); 
5823
5824   if(!pc) {
5825     //fprintf(stderr, " FillFlow - empty flow (seq=%d)\n", pcflow->pc.seq);
5826     return;
5827   }
5828
5829   cur_bank = -1;
5830
5831   do {
5832     isBankInstruction(pc);
5833     pc = pc->next;
5834   } while (pc && (pc != pcflow->end) && !isPCFL(pc));
5835
5836 /*
5837   if(!pc ) {
5838     fprintf(stderr, "  FillFlow - Bad end of flow\n");
5839   } else {
5840     fprintf(stderr, "  FillFlow - Ending flow with\n  ");
5841     pc->print(stderr,pc);
5842   }
5843
5844   fprintf(stderr, "  FillFlow inCond: ");
5845   dumpCond(pcflow->inCond);
5846   fprintf(stderr, "  FillFlow outCond: ");
5847   dumpCond(pcflow->outCond);
5848 */
5849 }
5850
5851 /*-----------------------------------------------------------------*/
5852 /*-----------------------------------------------------------------*/
5853 static void LinkFlow_pCode(pCodeInstruction *from, pCodeInstruction *to)
5854 {
5855   pCodeFlowLink *fromLink, *toLink;
5856
5857   if(!from || !to || !to->pcflow || !from->pcflow)
5858     return;
5859
5860   fromLink = pic16_newpCodeFlowLink(from->pcflow);
5861   toLink   = pic16_newpCodeFlowLink(to->pcflow);
5862
5863   addSetIfnotP(&(from->pcflow->to), toLink);   //to->pcflow);
5864   addSetIfnotP(&(to->pcflow->from), fromLink); //from->pcflow);
5865
5866 }
5867
5868 /*-----------------------------------------------------------------*
5869  * void LinkFlow(pBlock *pb)
5870  *
5871  * In pic16_BuildFlow, the PIC code has been partitioned into contiguous
5872  * non-branching segments. In LinkFlow, we determine the execution
5873  * order of these segments. For example, if one of the segments ends
5874  * with a skip, then we know that there are two possible flow segments
5875  * to which control may be passed.
5876  *-----------------------------------------------------------------*/
5877 static void LinkFlow(pBlock *pb)
5878 {
5879   pCode *pc=NULL;
5880   pCode *pcflow;
5881   pCode *pct;
5882
5883   //fprintf(stderr,"linkflow \n");
5884
5885   for( pcflow = pic16_findNextpCode(pb->pcHead, PC_FLOW); 
5886        pcflow != NULL;
5887        pcflow = pic16_findNextpCode(pcflow->next, PC_FLOW) ) {
5888
5889     if(!isPCFL(pcflow))
5890       fprintf(stderr, "LinkFlow - pcflow is not a flow object ");
5891
5892     //fprintf(stderr," link: ");
5893     //pcflow->print(stderr,pcflow);
5894
5895     //FillFlow(PCFL(pcflow));
5896
5897     pc = PCFL(pcflow)->end;
5898
5899     //fprintf(stderr, "LinkFlow - flow block (seq=%d) ", pcflow->seq);
5900     if(isPCI_SKIP(pc)) {
5901       //fprintf(stderr, "ends with skip\n");
5902       //pc->print(stderr,pc);
5903       pct=pic16_findNextInstruction(pc->next);
5904       LinkFlow_pCode(PCI(pc),PCI(pct));
5905       pct=pic16_findNextInstruction(pct->next);
5906       LinkFlow_pCode(PCI(pc),PCI(pct));
5907       continue;
5908     }
5909
5910     if(isPCI_BRANCH(pc)) {
5911       pCodeOpLabel *pcol = PCOLAB(PCI(pc)->pcop);
5912
5913       //fprintf(stderr, "ends with branch\n  ");
5914       //pc->print(stderr,pc);
5915
5916       if(!(pcol && isPCOLAB(pcol))) {
5917         if((PCI(pc)->op != POC_RETLW)
5918                 && (PCI(pc)->op != POC_RETURN) && (PCI(pc)->op != POC_CALL) && (PCI(pc)->op != POC_RETFIE) ) {
5919         
5920                 /* continue if label is '$' which assembler knows how to parse */
5921                 if(((PCI(pc)->pcop->type == PO_STR) && !strcmp(PCI(pc)->pcop->name, "$")))continue;
5922
5923                 if(pic16_pcode_verbose) {
5924                         pc->print(stderr,pc);
5925                         fprintf(stderr, "ERROR: %s, branch instruction doesn't have label\n",__FUNCTION__);
5926                 }
5927         }
5928         continue;
5929       }
5930
5931       if( (pct = findLabelinpBlock(pb,pcol)) != NULL)
5932         LinkFlow_pCode(PCI(pc),PCI(pct));
5933       else
5934         fprintf(stderr, "ERROR: %s, couldn't find label. key=%d,lab=%s\n",
5935                 __FUNCTION__,pcol->key,((PCOP(pcol)->name)?PCOP(pcol)->name:"-"));
5936
5937 //      fprintf(stderr,"pic16_newpCodeOpLabel: key=%d, name=%s\n",pcol->key,(PCOP(pcol)->name)?(PCOP(pcol)->name):"<unknown>");
5938
5939       continue;
5940     }
5941
5942     if(isPCI(pc)) {
5943       //fprintf(stderr, "ends with non-branching instruction:\n");
5944       //pc->print(stderr,pc);
5945
5946       LinkFlow_pCode(PCI(pc),PCI(pic16_findNextInstruction(pc->next)));
5947
5948       continue;
5949     }
5950
5951     if(pc) {
5952       //fprintf(stderr, "ends with unknown\n");
5953       //pc->print(stderr,pc);
5954       continue;
5955     }
5956
5957     //fprintf(stderr, "ends with nothing: ERROR\n");
5958     
5959   }
5960 }
5961 /*-----------------------------------------------------------------*/
5962 /*-----------------------------------------------------------------*/
5963
5964 /*-----------------------------------------------------------------*/
5965 /*-----------------------------------------------------------------*/
5966 int pic16_isPCinFlow(pCode *pc, pCode *pcflow)
5967 {
5968
5969   if(!pc || !pcflow)
5970     return 0;
5971
5972   if(!isPCI(pc) || !PCI(pc)->pcflow || !isPCFL(pcflow) )
5973     return 0;
5974
5975   if( PCI(pc)->pcflow->pc.seq == pcflow->seq)
5976     return 1;
5977
5978   return 0;
5979 }
5980
5981
5982
5983
5984
5985 /*-----------------------------------------------------------------*/
5986 /* insertBankSwitch - inserts a bank switch statement in the       */
5987 /*                    assembly listing                             */
5988 /*                                                                 */
5989 /* position == 0: insert before                                    */
5990 /* position == 1: insert after pc                                  */
5991 /* position == 2: like 0 but previous was a skip instruction       */
5992 /*-----------------------------------------------------------------*/
5993 pCodeOp *pic16_popGetLabel(unsigned int key);
5994 extern int pic16_labelOffset;
5995
5996 static void insertBankSwitch(int position, pCode *pc)
5997 {
5998   pCode *new_pc;
5999
6000         if(!pc)
6001                 return;
6002
6003         /* emit BANKSEL [symbol] */
6004
6005
6006         new_pc = pic16_newpCodeAsmDir("BANKSEL", "%s", pic16_get_op_from_instruction(PCI(pc)));
6007         
6008 //      position = 0;           // position is always before (sanity check!)
6009
6010 #if 0
6011         fprintf(stderr, "%s:%d: inserting bank switch\n", __FUNCTION__, __LINE__);
6012         pc->print(stderr, pc);
6013 #endif
6014
6015         switch(position) {
6016                 case 1: {
6017                         /* insert the bank switch after this pc instruction */
6018                         pCode *pcnext = pic16_findNextInstruction(pc);
6019
6020                                 pic16_pCodeInsertAfter(pc, new_pc);
6021                                 if(pcnext)pc = pcnext;
6022                 }; break;
6023                 
6024                 case 0:
6025                         /* insert the bank switch BEFORE this pc instruction */
6026                         pic16_pCodeInsertAfter(pc->prev, new_pc);
6027                         break;
6028
6029                 case 2: {
6030                           symbol *tlbl;
6031                           pCode *pcnext, *pcprev, *npci;
6032                           PIC_OPCODE ipci;
6033                         /* just like 0, but previous was a skip instruction,
6034                          * so some care should be taken */
6035                           
6036                                 pic16_labelOffset += 10000;
6037                                 tlbl = newiTempLabel(NULL);
6038                                 
6039                                 /* invert skip instruction */
6040                                 pcprev = pic16_findPrevInstruction(pc->prev);
6041                                 ipci = PCI(pcprev)->inverted_op;
6042                                 npci = pic16_newpCode(ipci, PCI(pcprev)->pcop);
6043
6044 #if 1
6045                                 PCI(npci)->from = PCI(pcprev)->from;
6046                                 PCI(npci)->to = PCI(pcprev)->to;
6047                                 PCI(npci)->label = PCI(pcprev)->label;
6048                                 PCI(npci)->pcflow = PCI(pcprev)->pcflow;
6049                                 PCI(npci)->cline = PCI(pcprev)->cline;
6050 #endif
6051
6052 //                              memmove(PCI(pcprev), PCI(npci), sizeof(pCode) + sizeof(PIC_OPCODE) + sizeof(char const * const));
6053
6054 #if 1
6055                                 pic16_pCodeInsertAfter(pcprev->prev, npci);
6056                                 /* unlink the pCode */
6057                                 pcprev->prev->next = pcprev->next;
6058                                 pcprev->next->prev = pcprev->prev;
6059 #endif
6060                                 
6061                                 pcnext = pic16_newpCode(POC_GOTO, pic16_popGetLabel(tlbl->key));
6062                                 pic16_pCodeInsertAfter(pc->prev, pcnext);
6063                                 pic16_pCodeInsertAfter(pc->prev, new_pc);
6064                                 
6065                                 pcnext = pic16_newpCodeLabel(NULL,tlbl->key+100+pic16_labelOffset);
6066                                 pic16_pCodeInsertAfter(pc, pcnext);
6067                         }; break;
6068         }
6069         
6070
6071         /* Move the label, if there is one */
6072         if(PCI(pc)->label) {
6073 //              fprintf(stderr, "%s:%d: moving label due to bank switch directive src= 0x%p dst= 0x%p\n",
6074 //                      __FILE__, __LINE__, pc, new_pc);
6075                 PCAD(new_pc)->pci.label = PCI(pc)->label;
6076                 PCI(pc)->label = NULL;
6077         }
6078 }
6079
6080
6081 /*-----------------------------------------------------------------*/
6082 /*int compareBankFlow - compare the banking requirements between   */
6083 /*  flow objects. */
6084 /*-----------------------------------------------------------------*/
6085 static int compareBankFlow(pCodeFlow *pcflow, pCodeFlowLink *pcflowLink, int toORfrom)
6086 {
6087
6088   if(!pcflow || !pcflowLink || !pcflowLink->pcflow)
6089     return 0;
6090
6091   if(!isPCFL(pcflow) || !isPCFL(pcflowLink->pcflow))
6092     return 0;
6093
6094   if(pcflow->firstBank == -1)
6095     return 0;
6096
6097
6098   if(pcflowLink->pcflow->firstBank == -1) {
6099     pCodeFlowLink *pctl = setFirstItem( toORfrom ? 
6100                                         pcflowLink->pcflow->to : 
6101                                         pcflowLink->pcflow->from);
6102     return compareBankFlow(pcflow, pctl, toORfrom);
6103   }
6104
6105   if(toORfrom) {
6106     if(pcflow->lastBank == pcflowLink->pcflow->firstBank)
6107       return 0;
6108
6109     pcflowLink->bank_conflict++;
6110     pcflowLink->pcflow->FromConflicts++;
6111     pcflow->ToConflicts++;
6112   } else {
6113     
6114     if(pcflow->firstBank == pcflowLink->pcflow->lastBank)
6115       return 0;
6116
6117     pcflowLink->bank_conflict++;
6118     pcflowLink->pcflow->ToConflicts++;
6119     pcflow->FromConflicts++;
6120
6121   }
6122   /*
6123   fprintf(stderr,"compare flow found conflict: seq %d from conflicts %d, to conflicts %d\n",
6124           pcflowLink->pcflow->pc.seq,
6125           pcflowLink->pcflow->FromConflicts,
6126           pcflowLink->pcflow->ToConflicts);
6127   */
6128   return 1;
6129
6130 }
6131
6132 #if 0
6133 /*-----------------------------------------------------------------*/
6134 /*-----------------------------------------------------------------*/
6135 static void DumpFlow(pBlock *pb)
6136 {
6137   pCode *pc=NULL;
6138   pCode *pcflow;
6139   pCodeFlowLink *pcfl;
6140
6141
6142   fprintf(stderr,"Dump flow \n");
6143   pb->pcHead->print(stderr, pb->pcHead);
6144
6145   pcflow = pic16_findNextpCode(pb->pcHead, PC_FLOW);
6146   pcflow->print(stderr,pcflow);
6147
6148   for( pcflow = pic16_findNextpCode(pb->pcHead, PC_FLOW); 
6149        pcflow != NULL;
6150        pcflow = pic16_findNextpCode(pcflow->next, PC_FLOW) ) {
6151
6152     if(!isPCFL(pcflow)) {
6153       fprintf(stderr, "DumpFlow - pcflow is not a flow object ");
6154       continue;
6155     }
6156     fprintf(stderr,"dumping: ");
6157     pcflow->print(stderr,pcflow);
6158     FlowStats(PCFL(pcflow));
6159
6160     for(pcfl = setFirstItem(PCFL(pcflow)->to); pcfl; pcfl=setNextItem(PCFL(pcflow)->to)) {
6161
6162       pc = PCODE(pcfl->pcflow);
6163
6164       fprintf(stderr, "    from seq %d:\n",pc->seq);
6165       if(!isPCFL(pc)) {
6166         fprintf(stderr,"oops dumpflow - from is not a pcflow\n");
6167         pc->print(stderr,pc);
6168       }
6169
6170     }
6171
6172     for(pcfl = setFirstItem(PCFL(pcflow)->to); pcfl; pcfl=setNextItem(PCFL(pcflow)->to)) {
6173
6174       pc = PCODE(pcfl->pcflow);
6175
6176       fprintf(stderr, "    to seq %d:\n",pc->seq);
6177       if(!isPCFL(pc)) {
6178         fprintf(stderr,"oops dumpflow - to is not a pcflow\n");
6179         pc->print(stderr,pc);
6180       }
6181
6182     }
6183
6184   }
6185
6186 }
6187 #endif
6188 /*-----------------------------------------------------------------*/
6189 /*-----------------------------------------------------------------*/
6190 static int OptimizepBlock(pBlock *pb)
6191 {
6192   pCode *pc, *pcprev;
6193   int matches =0;
6194
6195   if(!pb || !peepOptimizing)
6196     return 0;
6197
6198   DFPRINTF((stderr," Optimizing pBlock: %c\n",getpBlock_dbName(pb)));
6199 /*
6200   for(pc = pb->pcHead; pc; pc = pc->next)
6201     matches += pic16_pCodePeepMatchRule(pc);
6202 */
6203
6204   pc = pic16_findNextInstruction(pb->pcHead);
6205   if(!pc)
6206     return 0;
6207
6208   pcprev = pc->prev;
6209   do {
6210
6211
6212     if(pic16_pCodePeepMatchRule(pc)) {
6213
6214       matches++;
6215
6216       if(pcprev)
6217         pc = pic16_findNextInstruction(pcprev->next);
6218       else 
6219         pc = pic16_findNextInstruction(pb->pcHead);
6220     } else
6221       pc = pic16_findNextInstruction(pc->next);
6222   } while(pc);
6223
6224   if(matches)
6225     DFPRINTF((stderr," Optimizing pBlock: %c - matches=%d\n",getpBlock_dbName(pb),matches));
6226   return matches;
6227
6228 }
6229
6230 /*-----------------------------------------------------------------*/
6231 /*-----------------------------------------------------------------*/
6232 static pCode * findInstructionUsingLabel(pCodeLabel *pcl, pCode *pcs)
6233 {
6234   pCode *pc;
6235
6236   for(pc = pcs; pc; pc = pc->next) {
6237
6238     if(((pc->type == PC_OPCODE) || (pc->type == PC_INLINE)) && 
6239        (PCI(pc)->pcop) && 
6240        (PCI(pc)->pcop->type == PO_LABEL) &&
6241        (PCOLAB(PCI(pc)->pcop)->key == pcl->key))
6242       return pc;
6243   }
6244  
6245
6246   return NULL;
6247 }
6248
6249 /*-----------------------------------------------------------------*/
6250 /*-----------------------------------------------------------------*/
6251 static void exchangeLabels(pCodeLabel *pcl, pCode *pc)
6252 {
6253
6254   char *s=NULL;
6255
6256   if(isPCI(pc) && 
6257      (PCI(pc)->pcop) && 
6258      (PCI(pc)->pcop->type == PO_LABEL)) {
6259
6260     pCodeOpLabel *pcol = PCOLAB(PCI(pc)->pcop);
6261
6262 //      fprintf(stderr,"changing label key from %d to %d\n",pcol->key, pcl->key);
6263     if(pcol->pcop.name)
6264       free(pcol->pcop.name);
6265
6266     /* If the key is negative, then we (probably) have a label to
6267      * a function and the name is already defined */
6268        
6269     if(pcl->key>0)
6270       sprintf(s=buffer,"_%05d_DS_",pcl->key);
6271     else 
6272       s = pcl->label;
6273
6274     //sprintf(buffer,"_%05d_DS_",pcl->key);
6275     if(!s) {
6276       fprintf(stderr, "ERROR %s:%d function label is null\n",__FUNCTION__,__LINE__);
6277     }
6278     pcol->pcop.name = Safe_strdup(s);
6279     pcol->key = pcl->key;
6280     //pc->print(stderr,pc);
6281
6282   }
6283
6284
6285 }
6286
6287 /*-----------------------------------------------------------------*/
6288 /* pBlockRemoveUnusedLabels - remove the pCode labels from the     */
6289 /*                            pCode chain if they're not used.     */
6290 /*-----------------------------------------------------------------*/
6291 static void pBlockRemoveUnusedLabels(pBlock *pb)
6292 {
6293   pCode *pc; pCodeLabel *pcl;
6294
6295   if(!pb)
6296     return;
6297
6298   for(pc = pb->pcHead; (pc=pic16_findNextInstruction(pc->next)) != NULL; ) {
6299
6300     pBranch *pbr = PCI(pc)->label;
6301     if(pbr && pbr->next) {
6302       pCode *pcd = pb->pcHead;
6303
6304 //      fprintf(stderr, "multiple labels\n");
6305 //      pc->print(stderr,pc);
6306
6307       pbr = pbr->next;
6308       while(pbr) {
6309
6310         while ( (pcd = findInstructionUsingLabel(PCL(PCI(pc)->label->pc), pcd)) != NULL) {
6311           //fprintf(stderr,"Used by:\n");
6312           //pcd->print(stderr,pcd);
6313
6314           exchangeLabels(PCL(pbr->pc),pcd);
6315
6316           pcd = pcd->next;
6317         }
6318         pbr = pbr->next;
6319       }
6320     }
6321   }
6322
6323   for(pc = pb->pcHead; pc; pc = pc->next) {
6324
6325     if(isPCL(pc)) // pc->type == PC_LABEL)
6326       pcl = PCL(pc);
6327     else if (isPCI(pc) && PCI(pc)->label) //((pc->type == PC_OPCODE) && PCI(pc)->label)
6328       pcl = PCL(PCI(pc)->label->pc);
6329     else continue;
6330
6331 //      fprintf(stderr," found  A LABEL !!! key = %d, %s\n", pcl->key,pcl->label);
6332
6333     /* This pCode is a label, so search the pBlock to see if anyone
6334      * refers to it */
6335
6336     if( (pcl->key>0) && (!findInstructionUsingLabel(pcl, pb->pcHead))
6337         && (!pcl->force)) {
6338     //if( !findInstructionUsingLabel(pcl, pb->pcHead)) {
6339       /* Couldn't find an instruction that refers to this label
6340        * So, unlink the pCode label from it's pCode chain
6341        * and destroy the label */
6342 //      fprintf(stderr," removed  A LABEL !!! key = %d, %s\n", pcl->key,pcl->label);
6343
6344       DFPRINTF((stderr," !!! REMOVED A LABEL !!! key = %d, %s\n", pcl->key,pcl->label));
6345       if(pc->type == PC_LABEL) {
6346         pic16_unlinkpCode(pc);
6347         pCodeLabelDestruct(pc);
6348       } else {
6349         unlinkpCodeFromBranch(pc, PCODE(pcl));
6350         /*if(pc->label->next == NULL && pc->label->pc == NULL) {
6351           free(pc->label);
6352         }*/
6353       }
6354
6355     }
6356   }
6357
6358 }
6359
6360
6361 /*-----------------------------------------------------------------*/
6362 /* pic16_pBlockMergeLabels - remove the pCode labels from the pCode      */
6363 /*                     chain and put them into pBranches that are  */
6364 /*                     associated with the appropriate pCode       */
6365 /*                     instructions.                               */
6366 /*-----------------------------------------------------------------*/
6367 void pic16_pBlockMergeLabels(pBlock *pb)
6368 {
6369   pBranch *pbr;
6370   pCode *pc, *pcnext=NULL;
6371
6372   if(!pb)
6373     return;
6374
6375   /* First, Try to remove any unused labels */
6376   //pBlockRemoveUnusedLabels(pb);
6377
6378   /* Now loop through the pBlock and merge the labels with the opcodes */
6379
6380   pc = pb->pcHead;
6381   //  for(pc = pb->pcHead; pc; pc = pc->next) {
6382
6383   while(pc) {
6384     pCode *pcn = pc->next;
6385
6386     if(pc->type == PC_LABEL) {
6387
6388 //      fprintf(stderr," checking merging label %s\n",PCL(pc)->label);
6389 //      fprintf(stderr,"Checking label key = %d\n",PCL(pc)->key);
6390
6391       if((pcnext = pic16_findNextInstruction(pc) )) {
6392
6393 //              pcnext->print(stderr, pcnext);
6394
6395         // Unlink the pCode label from it's pCode chain
6396         pic16_unlinkpCode(pc);
6397         
6398 //      fprintf(stderr,"Merged label key = %d\n",PCL(pc)->key);
6399         // And link it into the instruction's pBranch labels. (Note, since
6400         // it's possible to have multiple labels associated with one instruction
6401         // we must provide a means to accomodate the additional labels. Thus
6402         // the labels are placed into the singly-linked list "label" as 
6403         // opposed to being a single member of the pCodeInstruction.)
6404
6405         //_ALLOC(pbr,sizeof(pBranch));
6406 #if 1
6407         pbr = Safe_calloc(1,sizeof(pBranch));
6408         pbr->pc = pc;
6409         pbr->next = NULL;
6410
6411         PCI(pcnext)->label = pic16_pBranchAppend(PCI(pcnext)->label,pbr);
6412 #endif
6413       } else {
6414         if(pic16_pcode_verbose)
6415         fprintf(stderr, "WARNING: couldn't associate label %s with an instruction\n",PCL(pc)->label);
6416       }
6417     } else if(pc->type == PC_CSOURCE) {
6418
6419       /* merge the source line symbolic info into the next instruction */
6420       if((pcnext = pic16_findNextInstruction(pc) )) {
6421
6422         // Unlink the pCode label from it's pCode chain
6423         pic16_unlinkpCode(pc);
6424         PCI(pcnext)->cline = PCCS(pc);
6425         //fprintf(stderr, "merging CSRC\n");
6426         //genericPrint(stderr,pcnext);
6427       }
6428
6429     }
6430     pc = pcn;
6431   }
6432   pBlockRemoveUnusedLabels(pb);
6433
6434 }
6435
6436 /*-----------------------------------------------------------------*/
6437 /*-----------------------------------------------------------------*/
6438 static int OptimizepCode(char dbName)
6439 {
6440 #define MAX_PASSES 4
6441
6442   int matches = 0;
6443   int passes = 0;
6444   pBlock *pb;
6445
6446   if(!the_pFile)
6447     return 0;
6448
6449   DFPRINTF((stderr," Optimizing pCode\n"));
6450
6451   do {
6452     matches = 0;
6453     for(pb = the_pFile->pbHead; pb; pb = pb->next) {
6454       if('*' == dbName || getpBlock_dbName(pb) == dbName)
6455         matches += OptimizepBlock(pb);
6456     }
6457   }
6458   while(matches && ++passes < MAX_PASSES);
6459
6460   return matches;
6461 }
6462
6463
6464
6465 const char *pic16_pCodeOpType(pCodeOp *pcop);
6466 const char *pic16_pCodeOpSubType(pCodeOp *pcop);
6467
6468
6469 /*-----------------------------------------------------------------*/
6470 /* pic16_popCopyGPR2Bit - copy a pcode operator                          */
6471 /*-----------------------------------------------------------------*/
6472
6473 pCodeOp *pic16_popCopyGPR2Bit(pCodeOp *pc, int bitval)
6474 {
6475   pCodeOp *pcop;
6476
6477 //  fprintf(stderr, "%s:%d pc type: %s\n", __FILE__, __LINE__, pic16_pCodeOpType(pc));
6478   pcop = pic16_newpCodeOpBit(pc->name, bitval, 0, pc->type);
6479
6480   if( !( (pcop->type == PO_LABEL) ||
6481          (pcop->type == PO_LITERAL) ||
6482          (pcop->type == PO_STR) ))
6483     PCOR(pcop)->r = PCOR(pc)->r;  /* This is dangerous... */
6484     PCOR(pcop)->r->wasUsed = 1;
6485
6486   return pcop;
6487 }
6488
6489
6490 /*----------------------------------------------------------------------*
6491  * pic16_areRegsSame - check to see if the names of two registers match *
6492  *----------------------------------------------------------------------*/
6493 int pic16_areRegsSame(regs *r1, regs *r2)
6494 {
6495         if(!strcmp(r1->name, r2->name))return 1;
6496
6497   return 0;
6498 }
6499
6500
6501 /*-----------------------------------------------------------------*/
6502 /*-----------------------------------------------------------------*/
6503 static void pic16_FixRegisterBanking(pBlock *pb)
6504 {
6505   pCode *pc=NULL;
6506   pCode *pcprev=NULL;
6507   regs *reg, *prevreg;
6508   int flag=0;
6509   
6510         if(!pb)
6511                 return;
6512
6513         pc = pic16_findNextpCode(pb->pcHead, PC_OPCODE);
6514         if(!pc)return;
6515
6516         /* loop through all of the flow blocks with in one pblock */
6517
6518 //      fprintf(stderr,"%s:%d: Register banking\n", __FUNCTION__, __LINE__);
6519
6520         prevreg = NULL;
6521         do {
6522                 /* at this point, pc should point to a PC_FLOW object */
6523                 /* for each flow block, determine the register banking 
6524                  * requirements */
6525
6526                 if(!isPCI(pc))goto loop;
6527
6528                 if(PCI(pc)->is2MemOp)goto loop;
6529        
6530                 reg = pic16_getRegFromInstruction(pc);
6531
6532 #if 0
6533                 pc->print(stderr, pc);
6534                 fprintf(stderr, "reg = %p\n", reg);
6535
6536                 if(reg) {
6537                         fprintf(stderr, "%s:%d:  %s  %d\n",__FUNCTION__, __LINE__, reg->name, reg->rIdx);
6538                         fprintf(stderr, "addr = 0x%03x, bit=%d\tfix=%d\n",
6539                                 reg->address,reg->isBitField, reg->isFixed);
6540                 }
6541 #endif
6542
6543                 /* now make some tests to make sure that instruction needs bank switch */
6544
6545                 /* if no register exists, and if not a bit opcode goto loop */
6546                 if(!reg) {
6547                         if(!(PCI(pc)->pcop && PCI(pc)->pcop->type == PO_GPR_BIT))goto loop;
6548                 }
6549                  
6550                 if(isPCI_SKIP(pc)) {
6551 //                      fprintf(stderr, "instruction is SKIP instruction\n");
6552                 }
6553                 if(reg && isACCESS_BANK(reg))goto loop;
6554
6555                 if(!isBankInstruction(pc))goto loop;
6556
6557                 if(isPCI_LIT(pc))goto loop;
6558          
6559                 if(PCI(pc)->op == POC_CALL)goto loop;
6560
6561                 /* Examine the instruction before this one to make sure it is
6562                  * not a skip type instruction */
6563                 pcprev = findPrevpCode(pc->prev, PC_OPCODE);
6564
6565                 /* FIXME: if previous is SKIP pCode, we should move the BANKSEL
6566                  * before SKIP, but we have to check if the SKIP uses BANKSEL, etc... */
6567                 flag = 0;
6568                 if(pcprev && isPCI_SKIP(pcprev))flag=2; //goto loop;
6569                  
6570                 prevreg = reg;
6571                 insertBankSwitch(flag, pc);
6572                 pcprev = pc;
6573
6574 //              fprintf(stderr, "BANK SWITCH inserted\n");
6575                 
6576 loop:
6577                 pc = pc->next;
6578         } while (pc);
6579 }
6580
6581
6582
6583 static void pBlockDestruct(pBlock *pb)
6584 {
6585
6586   if(!pb)
6587     return;
6588
6589
6590   free(pb);
6591
6592 }
6593
6594 /*-----------------------------------------------------------------*/
6595 /* void mergepBlocks(char dbName) - Search for all pBlocks with the*/
6596 /*                                  name dbName and combine them   */
6597 /*                                  into one block                 */
6598 /*-----------------------------------------------------------------*/
6599 static void mergepBlocks(char dbName)
6600 {
6601
6602   pBlock *pb, *pbmerged = NULL,*pbn;
6603
6604   pb = the_pFile->pbHead;
6605
6606   //fprintf(stderr," merging blocks named %c\n",dbName);
6607   while(pb) {
6608
6609     pbn = pb->next;
6610     //fprintf(stderr,"looking at %c\n",getpBlock_dbName(pb));
6611     if( getpBlock_dbName(pb) == dbName) {
6612
6613       //fprintf(stderr," merged block %c\n",dbName);
6614
6615       if(!pbmerged) {
6616         pbmerged = pb;
6617       } else {
6618         pic16_addpCode2pBlock(pbmerged, pb->pcHead);
6619         /* pic16_addpCode2pBlock doesn't handle the tail: */
6620         pbmerged->pcTail = pb->pcTail;
6621
6622         pb->prev->next = pbn;
6623         if(pbn) 
6624           pbn->prev = pb->prev;
6625
6626
6627         pBlockDestruct(pb);
6628       }
6629       //pic16_printpBlock(stderr, pbmerged);
6630     } 
6631     pb = pbn;
6632   }
6633
6634 }
6635
6636 /*-----------------------------------------------------------------*/
6637 /* AnalyzeFlow - Examine the flow of the code and optimize         */
6638 /*                                                                 */
6639 /* level 0 == minimal optimization                                 */
6640 /*   optimize registers that are used only by two instructions     */
6641 /* level 1 == maximal optimization                                 */
6642 /*   optimize by looking at pairs of instructions that use the     */
6643 /*   register.                                                     */
6644 /*-----------------------------------------------------------------*/
6645
6646 static void AnalyzeFlow(int level)
6647 {
6648   static int times_called=0;
6649   pBlock *pb;
6650
6651         if(!the_pFile) {
6652
6653                 /* remove unused allocated registers before exiting */
6654                 pic16_RemoveUnusedRegisters();
6655         
6656           return;
6657         }
6658
6659
6660   /* if this is not the first time this function has been called,
6661      then clean up old flow information */
6662         if(times_called++) {
6663                 for(pb = the_pFile->pbHead; pb; pb = pb->next)
6664                         unBuildFlow(pb);
6665
6666                 pic16_RegsUnMapLiveRanges();
6667         }
6668
6669         GpcFlowSeq = 1;
6670
6671   /* Phase 2 - Flow Analysis - Register Banking
6672    *
6673    * In this phase, the individual flow blocks are examined
6674    * and register banking is fixed.
6675    */
6676
6677 #if 0
6678         for(pb = the_pFile->pbHead; pb; pb = pb->next)
6679                 pic16_FixRegisterBanking(pb);
6680 #endif
6681
6682   /* Phase 2 - Flow Analysis
6683    *
6684    * In this phase, the pCode is partition into pCodeFlow 
6685    * blocks. The flow blocks mark the points where a continuous
6686    * stream of instructions changes flow (e.g. because of
6687    * a call or goto or whatever).
6688    */
6689
6690         for(pb = the_pFile->pbHead; pb; pb = pb->next)
6691                 pic16_BuildFlow(pb);
6692
6693
6694   /* Phase 2 - Flow Analysis - linking flow blocks
6695    *
6696    * In this phase, the individual flow blocks are examined
6697    * to determine their order of excution.
6698    */
6699
6700         for(pb = the_pFile->pbHead; pb; pb = pb->next)
6701                 LinkFlow(pb);
6702
6703   /* Phase 3 - Flow Analysis - Flow Tree
6704    *
6705    * In this phase, the individual flow blocks are examined
6706    * to determine their order of execution.
6707    */
6708
6709         for(pb = the_pFile->pbHead; pb; pb = pb->next)
6710                 pic16_BuildFlowTree(pb);
6711
6712
6713   /* Phase x - Flow Analysis - Used Banks
6714    *
6715    * In this phase, the individual flow blocks are examined
6716    * to determine the Register Banks they use
6717    */
6718
6719 #if 0
6720         for(pb = the_pFile->pbHead; pb; pb = pb->next)
6721                 FixBankFlow(pb);
6722 #endif
6723
6724
6725         for(pb = the_pFile->pbHead; pb; pb = pb->next)
6726                 pic16_pCodeRegMapLiveRanges(pb);
6727
6728         pic16_RemoveUnusedRegisters();
6729
6730   //  for(pb = the_pFile->pbHead; pb; pb = pb->next)
6731         pic16_pCodeRegOptimizeRegUsage(level);
6732
6733
6734         if(!options.nopeep)
6735                 OptimizepCode('*');
6736
6737
6738 #if 0
6739         for(pb = the_pFile->pbHead; pb; pb = pb->next)
6740                 DumpFlow(pb);
6741 #endif
6742
6743   /* debug stuff */ 
6744         for(pb = the_pFile->pbHead; pb; pb = pb->next) {
6745           pCode *pcflow;
6746                 for( pcflow = pic16_findNextpCode(pb->pcHead, PC_FLOW); 
6747                         (pcflow = pic16_findNextpCode(pcflow, PC_FLOW)) != NULL;
6748                         pcflow = pcflow->next) {
6749
6750                         FillFlow(PCFL(pcflow));
6751                 }
6752         }
6753
6754 #if 0
6755         for(pb = the_pFile->pbHead; pb; pb = pb->next) {
6756           pCode *pcflow;
6757
6758                 for( pcflow = pic16_findNextpCode(pb->pcHead, PC_FLOW); 
6759                         (pcflow = pic16_findNextpCode(pcflow, PC_FLOW)) != NULL;
6760                         pcflow = pcflow->next) {
6761
6762                         FlowStats(PCFL(pcflow));
6763                 }
6764         }
6765 #endif
6766 }
6767
6768 /* VR -- no need to analyze banking in flow, but left here :
6769  *      1. because it may be used in the future for other purposes
6770  *      2. because if omitted we'll miss some optimization done here
6771  *
6772  * Perhaps I should rename it to something else
6773  */
6774
6775 /*-----------------------------------------------------------------*/
6776 /* pic16_AnalyzeBanking - Called after the memory addresses have been    */
6777 /*                  assigned to the registers.                     */
6778 /*                                                                 */
6779 /*-----------------------------------------------------------------*/
6780
6781 void pic16_AnalyzeBanking(void)
6782 {
6783   pBlock  *pb;
6784
6785
6786         /* Phase x - Flow Analysis - Used Banks
6787          *
6788          * In this phase, the individual flow blocks are examined
6789          * to determine the Register Banks they use
6790          */
6791
6792         AnalyzeFlow(0);
6793         AnalyzeFlow(1);
6794
6795         if(!the_pFile)return;
6796
6797         if(!pic16_options.no_banksel) {
6798                 for(pb = the_pFile->pbHead; pb; pb = pb->next) {
6799 //                      fprintf(stderr, "%s:%d: Fix register banking in pb= 0x%p\n", __FILE__, __LINE__, pb);
6800                         pic16_FixRegisterBanking(pb);
6801                 }
6802         }
6803
6804 }
6805
6806 /*-----------------------------------------------------------------*/
6807 /* buildCallTree - Look at the flow and extract all of the calls.  */
6808 /*-----------------------------------------------------------------*/
6809 static set *register_usage(pBlock *pb);
6810
6811 static void buildCallTree(void    )
6812 {
6813   pBranch *pbr;
6814   pBlock  *pb;
6815   pCode   *pc;
6816   regs *r;
6817   
6818   if(!the_pFile)
6819     return;
6820
6821
6822
6823   /* Now build the call tree.
6824      First we examine all of the pCodes for functions.
6825      Keep in mind that the function boundaries coincide
6826      with pBlock boundaries. 
6827
6828      The algorithm goes something like this:
6829      We have two nested loops. The outer loop iterates
6830      through all of the pBlocks/functions. The inner
6831      loop iterates through all of the pCodes for
6832      a given pBlock. When we begin iterating through
6833      a pBlock, the variable pc_fstart, pCode of the start
6834      of a function, is cleared. We then search for pCodes
6835      of type PC_FUNCTION. When one is encountered, we
6836      initialize pc_fstart to this and at the same time
6837      associate a new pBranch object that signifies a 
6838      branch entry. If a return is found, then this signifies
6839      a function exit point. We'll link the pCodes of these
6840      returns to the matching pc_fstart.
6841
6842      When we're done, a doubly linked list of pBranches
6843      will exist. The head of this list is stored in
6844      `the_pFile', which is the meta structure for all
6845      of the pCode. Look at the pic16_printCallTree function
6846      on how the pBranches are linked together.
6847
6848    */
6849   for(pb = the_pFile->pbHead; pb; pb = pb->next) {
6850     pCode *pc_fstart=NULL;
6851     for(pc = pb->pcHead; pc; pc = pc->next) {
6852
6853         if(isPCI(pc) && pc_fstart) {
6854                 if(PCI(pc)->is2MemOp) {
6855                         r = pic16_getRegFromInstruction2(pc);
6856                         if(r && !strcmp(r->name, "POSTDEC1"))
6857                                 PCF(pc_fstart)->stackusage++;
6858                 } else {
6859                         r = pic16_getRegFromInstruction(pc);
6860                         if(r && !strcmp(r->name, "PREINC1"))
6861                                 PCF(pc_fstart)->stackusage--;
6862                 }
6863         }
6864
6865       if(isPCF(pc)) {
6866         if (PCF(pc)->fname) {
6867
6868           if(STRCASECMP(PCF(pc)->fname, "_main") == 0) {
6869             //fprintf(stderr," found main \n");
6870             pb->cmemmap = NULL;  /* FIXME do we need to free ? */
6871             pb->dbName = 'M';
6872           }
6873
6874           pbr = Safe_calloc(1,sizeof(pBranch));
6875           pbr->pc = pc_fstart = pc;
6876           pbr->next = NULL;
6877
6878           the_pFile->functions = pic16_pBranchAppend(the_pFile->functions,pbr);
6879
6880           // Here's a better way of doing the same:
6881           addSet(&pb->function_entries, pc);
6882
6883         } else {
6884           // Found an exit point in a function, e.g. return
6885           // (Note, there may be more than one return per function)
6886           if(pc_fstart)
6887             pBranchLink(PCF(pc_fstart), PCF(pc));
6888
6889           addSet(&pb->function_exits, pc);
6890         }
6891       } else if(isCALL(pc)) {
6892         addSet(&pb->function_calls,pc);
6893       }
6894     }
6895   }
6896
6897
6898 #if 0
6899   /* This is not needed because currently all register used
6900    * by a function are stored in stack -- VR */
6901    
6902   /* Re-allocate the registers so that there are no collisions
6903    * between local variables when one function call another */
6904
6905   // this is weird...
6906   //  pic16_deallocateAllRegs();
6907
6908   for(pb = the_pFile->pbHead; pb; pb = pb->next) {
6909     if(!pb->visited)
6910       register_usage(pb);
6911   }
6912 #endif
6913
6914 }
6915
6916 /*-----------------------------------------------------------------*/
6917 /* pic16_AnalyzepCode - parse the pCode that has been generated and form */
6918 /*                all of the logical connections.                  */
6919 /*                                                                 */
6920 /* Essentially what's done here is that the pCode flow is          */
6921 /* determined.                                                     */
6922 /*-----------------------------------------------------------------*/
6923
6924 void pic16_AnalyzepCode(char dbName)
6925 {
6926   pBlock *pb;
6927   int i,changes;
6928
6929   if(!the_pFile)
6930     return;
6931
6932   mergepBlocks('D');
6933
6934
6935   /* Phase 1 - Register allocation and peep hole optimization
6936    *
6937    * The first part of the analysis is to determine the registers
6938    * that are used in the pCode. Once that is done, the peep rules
6939    * are applied to the code. We continue to loop until no more
6940    * peep rule optimizations are found (or until we exceed the
6941    * MAX_PASSES threshold). 
6942    *
6943    * When done, the required registers will be determined.
6944    *
6945    */
6946   i = 0;
6947   do {
6948
6949     DFPRINTF((stderr," Analyzing pCode: PASS #%d\n",i+1));
6950     //fprintf(stderr," Analyzing pCode: PASS #%d\n",i+1);
6951
6952     /* First, merge the labels with the instructions */
6953     for(pb = the_pFile->pbHead; pb; pb = pb->next) {
6954       if('*' == dbName || getpBlock_dbName(pb) == dbName) {
6955
6956         DFPRINTF((stderr," analyze and merging block %c\n",dbName));
6957         //fprintf(stderr," analyze and merging block %c\n",dbName);
6958         pic16_pBlockMergeLabels(pb);
6959         AnalyzepBlock(pb);
6960       } else {
6961         DFPRINTF((stderr," skipping block analysis dbName=%c blockname=%c\n",dbName,getpBlock_dbName));
6962       }
6963     }
6964
6965         if(!options.nopeep)
6966                 changes = OptimizepCode(dbName);
6967         else changes = 0;
6968
6969   } while(changes && (i++ < MAX_PASSES));
6970
6971   buildCallTree();
6972 }
6973
6974 /*-----------------------------------------------------------------*/
6975 /* ispCodeFunction - returns true if *pc is the pCode of a         */
6976 /*                   function                                      */
6977 /*-----------------------------------------------------------------*/
6978 static bool ispCodeFunction(pCode *pc)
6979 {
6980
6981   if(pc && pc->type == PC_FUNCTION && PCF(pc)->fname)
6982     return 1;
6983
6984   return 0;
6985 }
6986
6987 /*-----------------------------------------------------------------*/
6988 /* findFunction - Search for a function by name (given the name)   */
6989 /*                in the set of all functions that are in a pBlock */
6990 /* (note - I expect this to change because I'm planning to limit   */
6991 /*  pBlock's to just one function declaration                      */
6992 /*-----------------------------------------------------------------*/
6993 static pCode *findFunction(char *fname)
6994 {
6995   pBlock *pb;
6996   pCode *pc;
6997   if(!fname)
6998     return NULL;
6999
7000   for(pb = the_pFile->pbHead; pb; pb = pb->next) {
7001
7002     pc = setFirstItem(pb->function_entries);
7003     while(pc) {
7004     
7005       if((pc->type == PC_FUNCTION) &&
7006          (PCF(pc)->fname) && 
7007          (strcmp(fname, PCF(pc)->fname)==0))
7008         return pc;
7009
7010       pc = setNextItem(pb->function_entries);
7011
7012     }
7013
7014   }
7015   return NULL;
7016 }
7017
7018 static void MarkUsedRegisters(set *regset)
7019 {
7020
7021   regs *r1,*r2;
7022
7023   for(r1=setFirstItem(regset); r1; r1=setNextItem(regset)) {
7024 //      fprintf(stderr, "marking register = %s\t", r1->name);
7025     r2 = pic16_regWithIdx(r1->rIdx);
7026 //      fprintf(stderr, "to register = %s\n", r2->name);
7027     r2->isFree = 0;
7028     r2->wasUsed = 1;
7029   }
7030 }
7031
7032 static void pBlockStats(FILE *of, pBlock *pb)
7033 {
7034
7035   pCode *pc;
7036   regs  *r;
7037
7038         if(!pic16_pcode_verbose)return;
7039         
7040   fprintf(of,";***\n;  pBlock Stats: dbName = %c\n;***\n",getpBlock_dbName(pb));
7041
7042   // for now just print the first element of each set
7043   pc = setFirstItem(pb->function_entries);
7044   if(pc) {
7045     fprintf(of,";entry:  ");
7046     pc->print(of,pc);
7047   }
7048   pc = setFirstItem(pb->function_exits);
7049   if(pc) {
7050     fprintf(of,";has an exit\n");
7051     //pc->print(of,pc);
7052   }
7053
7054   pc = setFirstItem(pb->function_calls);
7055   if(pc) {
7056     fprintf(of,";functions called:\n");
7057
7058     while(pc) {
7059       if(pc->type == PC_OPCODE && PCI(pc)->op == POC_CALL) {
7060         fprintf(of,";   %s\n",pic16_get_op_from_instruction(PCI(pc)));
7061       }
7062       pc = setNextItem(pb->function_calls);
7063     }
7064   }
7065
7066   r = setFirstItem(pb->tregisters);
7067   if(r) {
7068     int n = elementsInSet(pb->tregisters);
7069
7070     fprintf(of,";%d compiler assigned register%c:\n",n, ( (n!=1) ? 's' : ' '));
7071
7072     while (r) {
7073       fprintf(of,";   %s\n",r->name);
7074       r = setNextItem(pb->tregisters);
7075     }
7076   }
7077   
7078   fprintf(of, "; uses %d bytes of stack\n", 1+ elementsInSet(pb->tregisters));
7079 }
7080
7081 /*-----------------------------------------------------------------*/
7082 /*-----------------------------------------------------------------*/
7083 #if 0
7084 static void sequencepCode(void)
7085 {
7086   pBlock *pb;
7087   pCode *pc;
7088
7089
7090   for(pb = the_pFile->pbHead; pb; pb = pb->next) {
7091
7092     pb->seq = GpCodeSequenceNumber+1;
7093
7094     for( pc = pb->pcHead; pc; pc = pc->next)
7095       pc->seq = ++GpCodeSequenceNumber;
7096   }
7097
7098 }
7099 #endif
7100
7101 /*-----------------------------------------------------------------*/
7102 /*-----------------------------------------------------------------*/
7103 static set *register_usage(pBlock *pb)
7104 {
7105   pCode *pc,*pcn;
7106   set *registers=NULL;
7107   set *registersInCallPath = NULL;
7108
7109   /* check recursion */
7110
7111   pc = setFirstItem(pb->function_entries);
7112
7113   if(!pc)
7114     return registers;
7115
7116   pb->visited = 1;
7117
7118   if(pc->type != PC_FUNCTION)
7119     fprintf(stderr,"%s, first pc is not a function???\n",__FUNCTION__);
7120
7121   pc = setFirstItem(pb->function_calls);
7122   for( ; pc; pc = setNextItem(pb->function_calls)) {
7123
7124     if(pc->type == PC_OPCODE && PCI(pc)->op == POC_CALL) {
7125       char *dest = pic16_get_op_from_instruction(PCI(pc));
7126
7127       pcn = findFunction(dest);
7128       if(pcn) 
7129         registersInCallPath = register_usage(pcn->pb);
7130     } else
7131       fprintf(stderr,"BUG? pCode isn't a POC_CALL %d\n",__LINE__);
7132
7133   }
7134
7135 #ifdef PCODE_DEBUG
7136   pBlockStats(stderr,pb);  // debug
7137 #endif
7138
7139   // Mark the registers in this block as used.
7140
7141   MarkUsedRegisters(pb->tregisters);
7142   if(registersInCallPath) {
7143     /* registers were used in the functions this pBlock has called */
7144     /* so now, we need to see if these collide with the ones we are */
7145     /* using here */
7146
7147     regs *r1,*r2, *newreg;
7148
7149     DFPRINTF((stderr,"comparing registers\n"));
7150
7151     r1 = setFirstItem(registersInCallPath);
7152     while(r1) {
7153
7154       r2 = setFirstItem(pb->tregisters);
7155
7156       while(r2 && (r1->type != REG_STK)) {
7157
7158         if(r2->rIdx == r1->rIdx) {
7159           newreg = pic16_findFreeReg(REG_GPR);
7160
7161
7162           if(!newreg) {
7163             DFPRINTF((stderr,"Bummer, no more registers.\n"));
7164             exit(1);
7165           }
7166
7167           DFPRINTF((stderr,"Cool found register collision nIdx=%d moving to %d\n",
7168                   r1->rIdx, newreg->rIdx));
7169           r2->rIdx = newreg->rIdx;
7170           //if(r2->name) free(r2->name);
7171           if(newreg->name)
7172             r2->name = Safe_strdup(newreg->name);
7173           else
7174             r2->name = NULL;
7175           newreg->isFree = 0;
7176           newreg->wasUsed = 1;
7177         }
7178         r2 = setNextItem(pb->tregisters);
7179       }
7180
7181       r1 = setNextItem(registersInCallPath);
7182     }
7183
7184     /* Collisions have been resolved. Now free the registers in the call path */
7185     r1 = setFirstItem(registersInCallPath);
7186     while(r1) {
7187       if(r1->type != REG_STK) {
7188         newreg = pic16_regWithIdx(r1->rIdx);
7189         newreg->isFree = 1;
7190       }
7191       r1 = setNextItem(registersInCallPath);
7192     }
7193
7194   }// else
7195   //    MarkUsedRegisters(pb->registers);
7196
7197   registers = unionSets(pb->tregisters, registersInCallPath, THROW_NONE);
7198 #ifdef PCODE_DEBUG
7199   if(registers) 
7200     DFPRINTF((stderr,"returning regs\n"));
7201   else
7202     DFPRINTF((stderr,"not returning regs\n"));
7203
7204   DFPRINTF((stderr,"pBlock after register optim.\n"));
7205   pBlockStats(stderr,pb);  // debug
7206 #endif
7207
7208   return registers;
7209 }
7210
7211 /*-----------------------------------------------------------------*/
7212 /* pct2 - writes the call tree to a file                           */
7213 /*                                                                 */
7214 /*-----------------------------------------------------------------*/
7215 static void pct2(FILE *of,pBlock *pb,int indent,int usedstack)
7216 {
7217   pCode *pc,*pcn;
7218   int i;
7219   //  set *registersInCallPath = NULL;
7220
7221   if(!of)
7222     return;
7223
7224   if(indent > 10) {
7225         fprintf(of, "recursive function\n");
7226     return; //recursion ?
7227   }
7228
7229   pc = setFirstItem(pb->function_entries);
7230
7231   if(!pc)
7232     return;
7233
7234   pb->visited = 0;
7235
7236   for(i=0;i<indent;i++)   // Indentation
7237         fputs("+   ", of);
7238   fputs("+- ", of);
7239
7240   if(pc->type == PC_FUNCTION) {
7241     usedstack += PCF(pc)->stackusage;
7242     fprintf(of,"%s (stack: %i)\n",PCF(pc)->fname, usedstack);
7243   } else return;  // ???
7244
7245
7246   pc = setFirstItem(pb->function_calls);
7247   for( ; pc; pc = setNextItem(pb->function_calls)) {
7248
7249     if(pc->type == PC_OPCODE && PCI(pc)->op == POC_CALL) {
7250       char *dest = pic16_get_op_from_instruction(PCI(pc));
7251
7252       pcn = findFunction(dest);
7253       if(pcn) 
7254         pct2(of,pcn->pb,indent+1, usedstack);   // + PCF(pcn)->stackusage);
7255     } else
7256       fprintf(of,"BUG? pCode isn't a POC_CALL %d\n",__LINE__);
7257
7258   }
7259
7260
7261 }
7262
7263
7264 /*-----------------------------------------------------------------*/
7265 /* pic16_printCallTree - writes the call tree to a file                  */
7266 /*                                                                 */
7267 /*-----------------------------------------------------------------*/
7268
7269 void pic16_printCallTree(FILE *of)
7270 {
7271   pBranch *pbr;
7272   pBlock  *pb;
7273   pCode   *pc;
7274
7275   if(!the_pFile)
7276     return;
7277
7278   if(!of)
7279     of = stderr;
7280
7281   fprintf(of, "\npBlock statistics\n");
7282   for(pb = the_pFile->pbHead; pb;  pb = pb->next )
7283     pBlockStats(of,pb);
7284
7285
7286   fprintf(of,"Call Tree\n");
7287   pbr = the_pFile->functions;
7288   while(pbr) {
7289     if(pbr->pc) {
7290       pc = pbr->pc;
7291       if(!ispCodeFunction(pc))
7292         fprintf(of,"bug in call tree");
7293
7294
7295       fprintf(of,"Function: %s\n", PCF(pc)->fname);
7296
7297       while(pc->next && !ispCodeFunction(pc->next)) {
7298         pc = pc->next;
7299         if(pc->type == PC_OPCODE && PCI(pc)->op == POC_CALL)
7300           fprintf(of,"\t%s\n",pic16_get_op_from_instruction(PCI(pc)));
7301       }
7302     }
7303
7304     pbr = pbr->next;
7305   }
7306
7307
7308   fprintf(of,"\n**************\n\na better call tree\n");
7309   for(pb = the_pFile->pbHead; pb; pb = pb->next) {
7310 //    if(pb->visited)
7311       pct2(of,pb,0,0);
7312   }
7313
7314   for(pb = the_pFile->pbHead; pb; pb = pb->next) {
7315     fprintf(of,"block dbname: %c\n", getpBlock_dbName(pb));
7316   }
7317 }
7318
7319
7320
7321 /*-----------------------------------------------------------------*/
7322 /*                                                                 */
7323 /*-----------------------------------------------------------------*/
7324
7325 static void InlineFunction(pBlock *pb)
7326 {
7327   pCode *pc;
7328   pCode *pc_call;
7329
7330   if(!pb)
7331     return;
7332
7333   pc = setFirstItem(pb->function_calls);
7334
7335   for( ; pc; pc = setNextItem(pb->function_calls)) {
7336
7337     if(isCALL(pc)) {
7338       pCode *pcn = findFunction(pic16_get_op_from_instruction(PCI(pc)));
7339       pCode *pct;
7340       pCode *pce;
7341
7342       pBranch *pbr;
7343
7344       if(pcn && isPCF(pcn) && (PCF(pcn)->ncalled == 0)) {               /* change 0 to 1 to enable inlining */
7345         
7346         //fprintf(stderr,"Cool can inline:\n");
7347         //pcn->print(stderr,pcn);
7348
7349         //fprintf(stderr,"recursive call Inline\n");
7350         InlineFunction(pcn->pb);
7351         //fprintf(stderr,"return from recursive call Inline\n");
7352
7353         /*
7354           At this point, *pc points to a CALL mnemonic, and
7355           *pcn points to the function that is being called.
7356
7357           To in-line this call, we need to remove the CALL
7358           and RETURN(s), and link the function pCode in with
7359           the CALLee pCode.
7360
7361         */
7362
7363
7364         /* Remove the CALL */
7365         pc_call = pc;
7366         pc = pc->prev;
7367
7368         /* remove callee pBlock from the pBlock linked list */
7369         removepBlock(pcn->pb);
7370
7371         pce = pcn;
7372         while(pce) {
7373           pce->pb = pb;
7374           pce = pce->next;
7375         }
7376
7377         /* Remove the Function pCode */
7378         pct = pic16_findNextInstruction(pcn->next);
7379
7380         /* Link the function with the callee */
7381         pc->next = pcn->next;
7382         pcn->next->prev = pc;
7383         
7384         /* Convert the function name into a label */
7385
7386         pbr = Safe_calloc(1,sizeof(pBranch));
7387         pbr->pc = pic16_newpCodeLabel(PCF(pcn)->fname, -1);
7388         pbr->next = NULL;
7389         PCI(pct)->label = pic16_pBranchAppend(PCI(pct)->label,pbr);
7390         PCI(pct)->label = pic16_pBranchAppend(PCI(pct)->label,PCI(pc_call)->label);
7391
7392         /* turn all of the return's except the last into goto's */
7393         /* check case for 2 instruction pBlocks */
7394         pce = pic16_findNextInstruction(pcn->next);
7395         while(pce) {
7396           pCode *pce_next = pic16_findNextInstruction(pce->next);
7397
7398           if(pce_next == NULL) {
7399             /* found the last return */
7400             pCode *pc_call_next =  pic16_findNextInstruction(pc_call->next);
7401
7402             //fprintf(stderr,"found last return\n");
7403             //pce->print(stderr,pce);
7404             pce->prev->next = pc_call->next;
7405             pc_call->next->prev = pce->prev;
7406             PCI(pc_call_next)->label = pic16_pBranchAppend(PCI(pc_call_next)->label,
7407                                                       PCI(pce)->label);
7408           }
7409
7410           pce = pce_next;
7411         }
7412
7413
7414       }
7415     } else
7416       fprintf(stderr,"BUG? pCode isn't a POC_CALL %d\n",__LINE__);
7417
7418   }
7419
7420 }
7421
7422 /*-----------------------------------------------------------------*/
7423 /*                                                                 */
7424 /*-----------------------------------------------------------------*/
7425
7426 void pic16_InlinepCode(void)
7427 {
7428
7429   pBlock  *pb;
7430   pCode   *pc;
7431
7432   if(!the_pFile)
7433     return;
7434
7435   if(!functionInlining)
7436     return;
7437
7438   /* Loop through all of the function definitions and count the
7439    * number of times each one is called */
7440   //fprintf(stderr,"inlining %d\n",__LINE__);
7441
7442   for(pb = the_pFile->pbHead; pb; pb = pb->next) {
7443
7444     pc = setFirstItem(pb->function_calls);
7445
7446     for( ; pc; pc = setNextItem(pb->function_calls)) {
7447
7448       if(isCALL(pc)) {
7449         pCode *pcn = findFunction(pic16_get_op_from_instruction(PCI(pc)));
7450         if(pcn && isPCF(pcn)) {
7451           PCF(pcn)->ncalled++;
7452         }
7453       } else
7454         fprintf(stderr,"BUG? pCode isn't a POC_CALL %d\n",__LINE__);
7455
7456     }
7457   }
7458
7459   //fprintf(stderr,"inlining %d\n",__LINE__);
7460
7461   /* Now, Loop through the function definitions again, but this
7462    * time inline those functions that have only been called once. */
7463   
7464   InlineFunction(the_pFile->pbHead);
7465   //fprintf(stderr,"inlining %d\n",__LINE__);
7466
7467   for(pb = the_pFile->pbHead; pb; pb = pb->next)
7468     unBuildFlow(pb);
7469
7470 }
7471
7472 char *pic_optype_names[]={
7473         "PO_NONE",         // No operand e.g. NOP
7474         "PO_W",              // The working register (as a destination)
7475         "PO_WREG",           // The working register (as a file register)
7476         "PO_STATUS",         // The 'STATUS' register
7477         "PO_BSR",            // The 'BSR' register
7478         "PO_FSR0",           // The "file select register" (in PIC18 family it's one 
7479                              // of three)
7480         "PO_INDF0",          // The Indirect register
7481         "PO_INTCON",         // Interrupt Control register
7482         "PO_GPR_REGISTER",   // A general purpose register
7483         "PO_GPR_BIT",        // A bit of a general purpose register
7484         "PO_GPR_TEMP",       // A general purpose temporary register
7485         "PO_SFR_REGISTER",   // A special function register (e.g. PORTA)
7486         "PO_PCL",            // Program counter Low register
7487         "PO_PCLATH",         // Program counter Latch high register
7488         "PO_PCLATU",         // Program counter Latch upper register
7489         "PO_PRODL",          // Product Register Low
7490         "PO_PRODH",          // Product Register High
7491         "PO_LITERAL",        // A constant
7492         "PO_REL_ADDR",       // A relative address
7493         "PO_IMMEDIATE",      //  (8051 legacy)
7494         "PO_DIR",            // Direct memory (8051 legacy)
7495         "PO_CRY",            // bit memory (8051 legacy)
7496         "PO_BIT",            // bit operand.
7497         "PO_STR",            //  (8051 legacy)
7498         "PO_LABEL",
7499         "PO_WILD"            // Wild card operand in peep optimizer
7500 };
7501
7502
7503 char *dumpPicOptype(PIC_OPTYPE type)
7504 {
7505         return (pic_optype_names[ type ]);
7506 }