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1#
2# This file is part of the program psim.
3#
54273454 4# Copyright 1994, 1995, 1996, 1997, 2003, 2004 Andrew Cagney
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5#
6# --
7#
8# The pseudo-code that appears below, translated into C, was copied
9# by Andrew Cagney of Moss Vale, Australia.
10#
11# This pseudo-code is copied by permission from the publication
12# "The PowerPC Architecture: A Specification for A New Family of
13# RISC Processors" (ISBN 1-55860-316-6) copyright 1993, 1994 by
14# International Business Machines Corporation.
15#
16# THIS PERMISSION IS PROVIDED WITHOUT WARRANTY OF ANY KIND, EITHER
17# EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO IMPLIED WARRANTIES
18# OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
19#
20# --
21#
22# This program is free software; you can redistribute it and/or modify
23# it under the terms of the GNU General Public License as published by
3fd725ef 24# the Free Software Foundation; either version 3 of the License, or
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25# (at your option) any later version.
26#
27# This program is distributed in the hope that it will be useful,
28# but WITHOUT ANY WARRANTY; without even the implied warranty of
29# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
30# GNU General Public License for more details.
31#
32# You should have received a copy of the GNU General Public License
51b318de 33# along with this program; if not, see <http://www.gnu.org/licenses/>.
c906108c 34#
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35
36:cache::::RA:RA:
37:cache:::signed_word *:rA:RA:(cpu_registers(processor)->gpr + RA)
38:cache:::unsigned32:RA_BITMASK:RA:(1 << RA)
39:compute:::int:RA_is_0:RA:(RA == 0)
40:cache::::RT:RT:
41:cache:::signed_word *:rT:RT:(cpu_registers(processor)->gpr + RT)
42:cache:::unsigned32:RT_BITMASK:RT:(1 << RT)
43:cache::::RS:RS:
44:cache:::signed_word *:rS:RS:(cpu_registers(processor)->gpr + RS)
45:cache:::unsigned32:RS_BITMASK:RS:(1 << RS)
46:cache::::RB:RB:
47:cache:::signed_word *:rB:RB:(cpu_registers(processor)->gpr + RB)
48:cache:::unsigned32:RB_BITMASK:RB:(1 << RB)
49:scratch::::FRA:FRA:
50:cache:::unsigned64 *:frA:FRA:(cpu_registers(processor)->fpr + FRA)
51:cache:::unsigned32:FRA_BITMASK:FRA:(1 << FRA)
52:scratch::::FRB:FRB:
53:cache:::unsigned64 *:frB:FRB:(cpu_registers(processor)->fpr + FRB)
54:cache:::unsigned32:FRB_BITMASK:FRB:(1 << FRB)
55:scratch::::FRC:FRC:
56:cache:::unsigned64 *:frC:FRC:(cpu_registers(processor)->fpr + FRC)
57:cache:::unsigned32:FRC_BITMASK:FRC:(1 << FRC)
58:scratch::::FRS:FRS:
59:cache:::unsigned64 *:frS:FRS:(cpu_registers(processor)->fpr + FRS)
60:cache:::unsigned32:FRS_BITMASK:FRS:(1 << FRS)
61:scratch::::FRT:FRT:
62:cache:::unsigned64 *:frT:FRT:(cpu_registers(processor)->fpr + FRT)
63:cache:::unsigned32:FRT_BITMASK:FRT:(1 << FRT)
64:cache:::unsigned_word:EXTS_SI:SI:((signed_word)(signed16)instruction)
65:scratch::::BI:BI:
66:cache::::BIT32_BI:BI:BIT32(BI)
67:cache::::BF:BF:
68:cache:::unsigned32:BF_BITMASK:BF:(1 << BF)
69:scratch::::BA:BA:
70:cache::::BIT32_BA:BA:BIT32(BA)
71:cache:::unsigned32:BA_BITMASK:BA:(1 << BA)
72:scratch::::BB:BB:
73:cache::::BIT32_BB:BB:BIT32(BB)
74:cache:::unsigned32:BB_BITMASK:BB:(1 << BB)
75:cache::::BT:BT:
76:cache:::unsigned32:BT_BITMASK:BT:(1 << BT)
77:cache:::unsigned_word:EXTS_BD_0b00:BD:(((signed_word)(signed16)instruction) & ~3)
78:cache:::unsigned_word:EXTS_LI_0b00:LI:((((signed_word)(signed32)(instruction << 6)) >> 6) & ~0x3)
79:cache:::unsigned_word:EXTS_D:D:((signed_word)(signed16)(instruction))
80:cache:::unsigned_word:EXTS_DS_0b00:DS:(((signed_word)(signed16)instruction) & ~0x3)
81#:compute:::int:SPR_is_256:SPR:(SPR == 256)
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82\f
83# PowerPC models
84::model:604:ppc604: PPC_UNIT_BAD, PPC_UNIT_BAD, 1, 1, 0
85::model:603e:ppc603e:PPC_UNIT_BAD, PPC_UNIT_BAD, 1, 1, 0
86::model:603:ppc603: PPC_UNIT_BAD, PPC_UNIT_BAD, 1, 1, 0
87::model:601:ppc601: PPC_UNIT_BAD, PPC_UNIT_BAD, 1, 1, 0
88
89# Flags for model.h
90::model-macro:::
91 #define PPC_INSN_INT(OUT_MASK, IN_MASK, RC) \
92 do { \
93 if (CURRENT_MODEL_ISSUE > 0) { \
94 if (RC) \
95 ppc_insn_int_cr(MY_INDEX, cpu_model(processor), OUT_MASK, IN_MASK, 1 << 0); \
96 else \
97 ppc_insn_int(MY_INDEX, cpu_model(processor), OUT_MASK, IN_MASK); \
98 } \
99 } while (0)
100
101 #define PPC_INSN_INT_CR(OUT_MASK, IN_MASK, CR_MASK) \
102 do { \
103 if (CURRENT_MODEL_ISSUE > 0) \
104 ppc_insn_int_cr(MY_INDEX, cpu_model(processor), OUT_MASK, IN_MASK, CR_MASK); \
105 } while (0)
106
107 #define PPC_INSN_CR(OUT_MASK, IN_MASK) \
108 do { \
109 if (CURRENT_MODEL_ISSUE > 0) \
110 ppc_insn_cr(MY_INDEX, cpu_model(processor), OUT_MASK, IN_MASK); \
111 } while (0)
112
113 #define PPC_INSN_FLOAT(OUT_MASK, IN_MASK, RC) \
114 do { \
115 if (CURRENT_MODEL_ISSUE > 0) { \
116 if (RC) \
117 ppc_insn_float(MY_INDEX, cpu_model(processor), OUT_MASK, IN_MASK); \
118 else \
119 ppc_insn_float_cr(MY_INDEX, cpu_model(processor), OUT_MASK, IN_MASK, 1 << 0); \
120 } \
121 } while (0)
122
123 #define PPC_INSN_FLOAT_CR(OUT_MASK, IN_MASK, CR_MASK) \
124 do { \
125 if (CURRENT_MODEL_ISSUE > 0) \
126 ppc_insn_float_cr(MY_INDEX, cpu_model(processor), OUT_MASK, IN_MASK, CR_MASK); \
127 } while (0)
128
129 #define PPC_INSN_INT_FLOAT(OUT_INT_MASK, OUT_FP_MASK, IN_INT_MASK, IN_FP_MASK) \
130 do { \
131 if (CURRENT_MODEL_ISSUE > 0) \
132 ppc_insn_int_float(MY_INDEX, cpu_model(processor), OUT_INT_MASK, OUT_FP_MASK, IN_INT_MASK, IN_FP_MASK); \
133 } while (0)
134
135 #define PPC_INSN_FROM_SPR(INT_MASK, SPR) \
136 do { \
137 if (CURRENT_MODEL_ISSUE > 0) \
138 ppc_insn_from_spr(MY_INDEX, cpu_model(processor), INT_MASK, SPR); \
139 } while (0)
140
141 #define PPC_INSN_TO_SPR(INT_MASK, SPR) \
142 do { \
143 if (CURRENT_MODEL_ISSUE > 0) \
144 ppc_insn_to_spr(MY_INDEX, cpu_model(processor), INT_MASK, SPR); \
145 } while (0)
146
147 #define PPC_INSN_MFCR(INT_MASK) \
148 do { \
149 if (CURRENT_MODEL_ISSUE > 0) \
150 ppc_insn_mfcr(MY_INDEX, cpu_model(processor), INT_MASK); \
151 } while (0)
152
153 #define PPC_INSN_MTCR(INT_MASK, FXM) \
154 do { \
155 if (CURRENT_MODEL_ISSUE > 0) \
156 ppc_insn_mtcr(MY_INDEX, cpu_model(processor), INT_MASK, FXM); \
157 } while (0)
158
159::model-data:::
160 typedef enum _ppc_function_unit {
161 PPC_UNIT_BAD, /* unknown function unit */
162 PPC_UNIT_IU, /* integer unit (601/603 style) */
163 PPC_UNIT_SRU, /* system register unit (601/603 style) */
164 PPC_UNIT_SCIU1, /* 1st single cycle integer unit (604 style) */
165 PPC_UNIT_SCIU2, /* 2nd single cycle integer unit (604 style) */
166 PPC_UNIT_MCIU, /* multiple cycle integer unit (604 style) */
167 PPC_UNIT_FPU, /* floating point unit */
168 PPC_UNIT_LSU, /* load/store unit */
169 PPC_UNIT_BPU, /* branch unit */
170 nr_ppc_function_units
171 } ppc_function_unit;
172
173 /* Structure to hold timing information on a per instruction basis */
174 struct _model_time {
175 ppc_function_unit first_unit; /* first functional unit this insn could use */
176 ppc_function_unit second_unit; /* second functional unit this insn could use */
177 signed16 issue; /* # cycles before function unit can process other insns */
178 signed16 done; /* # cycles before insn is done */
179 unsigned32 flags; /* any flags that are needed */
180 };
181
182 /* Register mappings in status masks */
183 #define PPC_CR_REG 0 /* start of CR0 .. CR7 */
184 #define PPC_FPSCR_REG (PPC_CR_REG + 8) /* start of fpscr register */
185
186 #define PPC_NO_SPR (-1) /* flag for no SPR register */
187
188 /* Return if 1 bit set */
189 #define PPC_ONE_BIT_SET_P(x) (((x) & ((x)-1)) == 0)
190
191 /* Structure for each functional unit that is busy */
192 typedef struct _model_busy model_busy;
193 struct _model_busy {
194 model_busy *next; /* next function unit */
195 ppc_function_unit unit; /* function unit name */
196 unsigned32 int_busy; /* int registers that are busy */
197 unsigned32 fp_busy; /* floating point registers that are busy */
198 unsigned32 cr_fpscr_busy; /* CR/FPSCR registers that are busy */
199 signed16 spr_busy; /* SPR register that is busy or PPC_NO_SPR */
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200 unsigned32 vr_busy; /* AltiVec registers that are busy */
201 signed16 vscr_busy; /* AltiVec status register busy */
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202 signed16 issue; /* # of cycles until unit can accept another insn */
203 signed16 done; /* # of cycles until insn is done */
204 signed16 nr_writebacks; /* # of registers this unit writes back */
205 };
206
207 /* Structure to hold the current state information for the simulated CPU model */
208 struct _model_data {
209 cpu *processor; /* point back to processor */
210 const char *name; /* model name */
211 const model_time *timing; /* timing information */
212 model_busy busy_head; /* dummy entry to head list of busy function units */
213 model_busy *busy_tail; /* tail of list of busy function units */
214 model_busy *free_list; /* list of model_busy structs not in use */
215 count_type nr_cycles; /* # cycles */
216 count_type nr_branches; /* # branches */
217 count_type nr_branches_fallthrough; /* # conditional branches that fell through */
218 count_type nr_branch_predict_trues; /* # branches predicted correctly */
219 count_type nr_branch_predict_falses; /* # branches predicted incorrectly */
220 count_type nr_branch_conditional[32]; /* # of each type of bc */
221 count_type nr_mtcrf_crs[9]; /* # of CR's moved in a mtcrf instruction */
222 count_type nr_stalls_data; /* # of stalls for data */
223 count_type nr_stalls_unit; /* # of stalls waiting for a function unit */
224 count_type nr_stalls_serialize; /* # of stalls waiting for things to quiet down */
225 count_type nr_stalls_writeback; /* # of stalls waiting for a writeback slot */
226 count_type nr_units[nr_ppc_function_units]; /* function unit counts */
227 int max_nr_writebacks; /* max # of writeback slots available */
228 unsigned32 int_busy; /* int registers that are busy */
229 unsigned32 fp_busy; /* floating point registers that are busy */
230 unsigned32 cr_fpscr_busy; /* CR/FPSCR registers that are busy */
231 unsigned8 spr_busy[nr_of_sprs]; /* SPR registers that are busy */
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232 unsigned32 vr_busy; /* AltiVec registers that are busy */
233 unsigned8 vscr_busy; /* AltiVec SC register busy */
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234 unsigned8 busy[nr_ppc_function_units]; /* whether a function is busy or not */
235 };
236
237 static const char *const ppc_function_unit_name[ (int)nr_ppc_function_units ] = {
238 "unknown functional unit instruction",
239 "integer functional unit instruction",
240 "system register functional unit instruction",
241 "1st single cycle integer functional unit instruction",
242 "2nd single cycle integer functional unit instruction",
243 "multiple cycle integer functional unit instruction",
244 "floating point functional unit instruction",
245 "load/store functional unit instruction",
246 "branch functional unit instruction",
247 };
248
249 static const char *const ppc_branch_conditional_name[32] = {
250 "branch if --CTR != 0 and condition is FALSE", /* 0000y */
251 "branch if --CTR != 0 and condition is FALSE, reverse branch likely",
252 "branch if --CTR == 0 and condition is FALSE", /* 0001y */
253 "branch if --CTR == 0 and condition is FALSE, reverse branch likely",
254 "branch if the condition is FALSE", /* 001zy */
255 "branch if the condition is FALSE, reverse branch likely",
256 "branch if the condition is FALSE (ignored bit 1 set to 1)", /* 001zy */
257 "branch if the condition is FALSE, reverse branch likely (ignored bit 4 set to 1)",
258 "branch if --CTR != 0 and condition is TRUE", /* 0100y */
259 "branch if --CTR != 0 and condition is TRUE, reverse branch likely",
260 "branch if --CTR == 0 and condition is TRUE", /* 0101y */
261 "branch if --CTR == 0 and condition is TRUE, reverse branch likely",
262 "branch if the condition is TRUE", /* 011zy */
263 "branch if the condition is TRUE, reverse branch likely",
264 "branch if the condition is TRUE (ignored bit 1 set to 1)", /* 011zy */
265 "branch if the condition is TRUE, reverse branch likely (ignored bit 4 set to 1)",
266 "branch if --CTR != 0", /* 1z00y */
267 "branch if --CTR != 0, reverse branch likely",
268 "branch if --CTR == 0", /* 1z01y */
269 "branch if --CTR == 0, reverse branch likely",
270 "branch always", /* 1z1zz */
271 "branch always (ignored bit 5 set to 1)",
272 "branch always (ignored bit 4 set to 1)", /* 1z1zz */
273 "branch always (ignored bits 4,5 set to 1)",
274 "branch if --CTR != 0 (ignored bit 1 set to 1)", /* 1z00y */
275 "branch if --CTR != 0, reverse branch likely (ignored bit 1 set to 1)",
276 "branch if --CTR == 0 (ignored bit 1 set to 1)", /* 1z01y */
277 "branch if --CTR == 0, reverse branch likely (ignored bit 1 set to 1)",
278 "branch always (ignored bit 1 set to 1)", /* 1z1zz */
279 "branch always (ignored bits 1,5 set to 1)",
280 "branch always (ignored bits 1,4 set to 1)", /* 1z1zz */
281 "branch always (ignored bits 1,4,5 set to 1)",
282 };
283
284 static const char *const ppc_nr_mtcrf_crs[9] = {
285 "mtcrf moving 0 CRs",
286 "mtcrf moving 1 CR",
287 "mtcrf moving 2 CRs",
288 "mtcrf moving 3 CRs",
289 "mtcrf moving 4 CRs",
290 "mtcrf moving 5 CRs",
291 "mtcrf moving 6 CRs",
292 "mtcrf moving 7 CRs",
293 "mtcrf moving all CRs",
294 };
295\f
296# Trace releasing resources
297void::model-static::model_trace_release:model_data *model_ptr, model_busy *busy
298 int i;
299 TRACE(trace_model,("done, %s, %d writeback%s\n", ppc_function_unit_name[busy->unit],
300 busy->nr_writebacks, busy->nr_writebacks == 1 ? "" : "s"));
301 if (busy->int_busy) {
302 for(i = 0; i < 32; i++) {
303 if (((1 << i) & busy->int_busy) != 0) {
304 TRACE(trace_model, ("Register r%d is now available.\n", i));
305 }
306 }
307 }
308 if (busy->fp_busy) {
309 for(i = 0; i < 32; i++) {
310 if (((1 << i) & busy->fp_busy) != 0) {
311 TRACE(trace_model, ("Register f%d is now available.\n", i));
312 }
313 }
314 }
315 if (busy->cr_fpscr_busy) {
316 for(i = 0; i < 8; i++) {
317 if (((1 << i) & busy->cr_fpscr_busy) != 0) {
318 TRACE(trace_model, ("Register cr%d is now available.\n", i));
319 }
320 }
321 if (busy->cr_fpscr_busy & 0x100)
322 TRACE(trace_model, ("Register fpscr is now available.\n"));
323 }
324 if (busy->spr_busy != PPC_NO_SPR)
325 TRACE(trace_model, ("Register %s is now available.\n", spr_name(busy->spr_busy)));
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326 if (busy->vr_busy) {
327 for(i = 0; i < 32; i++) {
328 if (((1 << i) & busy->vr_busy) != 0) {
329 TRACE(trace_model, ("Register v%d is now available.\n", i));
330 }
331 }
332 }
333 if (busy->vscr_busy)
be2bc30f 334 TRACE(trace_model, ("VSCR Register %s is now available.\n", spr_name(busy->spr_busy)));
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335
336# Trace making registers busy
337void::model-static::model_trace_make_busy:model_data *model_ptr, unsigned32 int_mask, unsigned32 fp_mask, unsigned32 cr_mask
338 int i;
339 if (int_mask) {
340 for(i = 0; i < 32; i++) {
341 if (((1 << i) & int_mask) != 0) {
342 TRACE(trace_model, ("Register r%d is now busy.\n", i));
343 }
344 }
345 }
346 if (fp_mask) {
347 for(i = 0; i < 32; i++) {
348 if (((1 << i) & fp_mask) != 0) {
349 TRACE(trace_model, ("Register f%d is now busy.\n", i));
350 }
351 }
352 }
353 if (cr_mask) {
354 for(i = 0; i < 8; i++) {
355 if (((1 << i) & cr_mask) != 0) {
356 TRACE(trace_model, ("Register cr%d is now busy.\n", i));
357 }
358 }
359 }
360
361# Trace waiting for registers to become available
362void::model-static::model_trace_busy_p:model_data *model_ptr, unsigned32 int_busy, unsigned32 fp_busy, unsigned32 cr_or_fpscr_busy, int spr_busy
363 int i;
364 if (int_busy) {
365 int_busy &= model_ptr->int_busy;
366 for(i = 0; i < 32; i++) {
367 if (((1 << i) & int_busy) != 0) {
368 TRACE(trace_model, ("Waiting for register r%d.\n", i));
369 }
370 }
371 }
372 if (fp_busy) {
373 fp_busy &= model_ptr->fp_busy;
374 for(i = 0; i < 32; i++) {
375 if (((1 << i) & fp_busy) != 0) {
376 TRACE(trace_model, ("Waiting for register f%d.\n", i));
377 }
378 }
379 }
380 if (cr_or_fpscr_busy) {
381 cr_or_fpscr_busy &= model_ptr->cr_fpscr_busy;
382 for(i = 0; i < 8; i++) {
383 if (((1 << i) & cr_or_fpscr_busy) != 0) {
384 TRACE(trace_model, ("Waiting for register cr%d.\n", i));
385 }
386 }
387 if (cr_or_fpscr_busy & 0x100)
388 TRACE(trace_model, ("Waiting for register fpscr.\n"));
389 }
390 if (spr_busy != PPC_NO_SPR && model_ptr->spr_busy[spr_busy])
391 TRACE(trace_model, ("Waiting for register %s.\n", spr_name(spr_busy)));
392\f
393# Advance state to next cycle, releasing any registers allocated
394void::model-internal::model_new_cycle:model_data *model_ptr
395 model_busy *cur_busy = model_ptr->busy_head.next;
396 model_busy *free_list = model_ptr->free_list;
397 model_busy *busy_tail = &model_ptr->busy_head;
398 int nr_writebacks = model_ptr->max_nr_writebacks;
399 model_busy *next;
400
401 model_ptr->nr_cycles++;
402 TRACE(trace_model,("New cycle %lu\n", (unsigned long)model_ptr->nr_cycles));
403 for ( ; cur_busy; cur_busy = next) {
404 next = cur_busy->next;
405 if (--cur_busy->done <= 0) { /* function unit done, release registers if we have writeback slots */
406 nr_writebacks -= cur_busy->nr_writebacks;
407 if (nr_writebacks >= 0) {
408 model_ptr->int_busy &= ~cur_busy->int_busy;
409 model_ptr->fp_busy &= ~cur_busy->fp_busy;
410 model_ptr->cr_fpscr_busy &= ~cur_busy->cr_fpscr_busy;
411 if (cur_busy->spr_busy != PPC_NO_SPR)
412 model_ptr->spr_busy[cur_busy->spr_busy] = 0;
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413 model_ptr->vr_busy &= ~cur_busy->vr_busy;
414 model_ptr->vscr_busy = ~cur_busy->vscr_busy;
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415
416 if (WITH_TRACE && ppc_trace[trace_model])
417 model_trace_release(model_ptr, cur_busy);
418
419 model_ptr->busy[cur_busy->unit] = 0;
420 cur_busy->next = free_list;
421 free_list = cur_busy;
422 }
423 else { /* writeback slots not available */
424 TRACE(trace_model,("%d writeback slot%s not available for %s\n",
425 cur_busy->nr_writebacks,
426 cur_busy->nr_writebacks == 1 ? " is" : "s are",
427 ppc_function_unit_name[cur_busy->unit]));
428 cur_busy->done++; /* undo -- above */
429 model_ptr->nr_stalls_writeback++;
430 busy_tail->next = cur_busy;
431 busy_tail = cur_busy;
432 }
433 }
434 else if (--cur_busy->issue <= 0) { /* function unit pipelined, allow new use */
435 TRACE(trace_model,("pipeline, %s ready for next client\n", ppc_function_unit_name[cur_busy->unit]));
436 model_ptr->busy[cur_busy->unit] = 0;
437 busy_tail->next = cur_busy;
438 busy_tail = cur_busy;
439 }
440 else {
441 TRACE(trace_model,("%s still working, issue = %d, done = %d\n",
442 ppc_function_unit_name[cur_busy->unit],
443 cur_busy->issue,
444 cur_busy->done));
445 busy_tail->next = cur_busy;
446 busy_tail = cur_busy;
447 }
448 }
449
450 busy_tail->next = (model_busy *)0;
451 model_ptr->busy_tail = busy_tail;
452 model_ptr->free_list = free_list;
453
454# Mark a function unit as busy, return the busy structure
455model_busy *::model-internal::model_make_busy:model_data *model_ptr, ppc_function_unit unit, int issue, int done
456 model_busy *busy;
457
458 TRACE(trace_model,("unit = %s, issue = %d, done = %d\n", ppc_function_unit_name[unit], issue, done));
459
460 if (!model_ptr->free_list) {
461 busy = ZALLOC(model_busy);
462 }
463 else {
464 busy = model_ptr->free_list;
465 model_ptr->free_list = busy->next;
466 busy->next = (model_busy *)0;
467 busy->int_busy = 0;
468 busy->fp_busy = 0;
469 busy->cr_fpscr_busy = 0;
470 busy->nr_writebacks = 0;
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471 busy->vr_busy = 0;
472 busy->vscr_busy = 0;
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473 }
474
475 busy->unit = unit;
476 busy->issue = issue;
477 busy->done = done;
478 busy->spr_busy = PPC_NO_SPR;
479 model_ptr->busy_tail->next = busy;
480 model_ptr->busy_tail = busy;
481 model_ptr->busy[unit] = 1;
482 model_ptr->nr_units[unit]++;
483 return busy;
484\f
485# Wait until a function unit is non-busy, and then allocate a busy pointer & return the pointer
486model_busy *::model-internal::model_wait_for_unit:itable_index index, model_data *const model_ptr, const model_time *const time_ptr
487 ppc_function_unit first_unit = time_ptr->first_unit;
488 ppc_function_unit second_unit = time_ptr->second_unit;
489 int stall_increment = 0;
490
491 for (;;) {
492 if (!model_ptr->busy[first_unit])
493 return model_make_busy(model_ptr, first_unit,
494 model_ptr->timing[index].issue,
495 model_ptr->timing[index].done);
496
497 if (!model_ptr->busy[second_unit])
498 return model_make_busy(model_ptr, second_unit,
499 model_ptr->timing[index].issue,
500 model_ptr->timing[index].done);
501
502 TRACE(trace_model,("all function units are busy for %s\n", itable[index].name));
503 model_ptr->nr_stalls_unit += stall_increment; /* don't count first stall */
504 stall_increment = 1;
505 model_new_cycle(model_ptr);
506 }
507
508# Serialize the processor, waiting for all instructions to drain out before adding an instruction.
509void::model-function::model_serialize:itable_index index, model_data *model_ptr
510 while (model_ptr->busy_head.next) {
511 TRACE(trace_model,("waiting for pipeline to empty\n"));
512 model_ptr->nr_stalls_serialize++;
513 model_new_cycle(model_ptr);
514 }
515 (void) model_make_busy(model_ptr,
516 model_ptr->timing[index].first_unit,
517 model_ptr->timing[index].issue,
518 model_ptr->timing[index].done);
519
520# Wait for a CR to become unbusy
521void::model-function::model_wait_for_cr:model_data *model_ptr, unsigned CRBIT
522 unsigned u;
523 unsigned32 cr_mask;
524 int cr_var = 0;
525 for (u = 0xc0000000; (u != 0) && (CRBIT & u) == 0; u >>= 4 )
526 cr_var++;
527
528 cr_mask = (1 << cr_var);
529 while ((model_ptr->cr_fpscr_busy & cr_mask) != 0) {
530 TRACE(trace_model,("waiting for CR %d\n", cr_var));
531 model_ptr->nr_stalls_data++;
532 model_new_cycle(model_ptr);
533 }
534
535# Schedule an instruction that takes integer input registers and produces output registers
536void::model-function::ppc_insn_int:itable_index index, model_data *model_ptr, const unsigned32 out_mask, const unsigned32 in_mask
537 const unsigned32 int_mask = out_mask | in_mask;
538 model_busy *busy_ptr;
539
540 if ((model_ptr->int_busy & int_mask) != 0) {
541 model_new_cycle(model_ptr); /* don't count first dependency as a stall */
542
543 while ((model_ptr->int_busy & int_mask) != 0) {
544 if (WITH_TRACE && ppc_trace[trace_model])
545 model_trace_busy_p(model_ptr, int_mask, 0, 0, PPC_NO_SPR);
546
547 model_ptr->nr_stalls_data++;
548 model_new_cycle(model_ptr);
549 }
550 }
551
552 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
553 model_ptr->int_busy |= out_mask;
554 busy_ptr->int_busy |= out_mask;
555 if (out_mask)
556 busy_ptr->nr_writebacks = (PPC_ONE_BIT_SET_P(out_mask)) ? 1 : 2;
557
558 if (WITH_TRACE && ppc_trace[trace_model])
559 model_trace_make_busy(model_ptr, out_mask, 0, 0);
560
561# Schedule an instruction that takes integer input registers and produces output registers & sets a CR register
562void::model-function::ppc_insn_int_cr:itable_index index, model_data *model_ptr, const unsigned32 out_mask, const unsigned32 in_mask, const unsigned32 cr_mask
563 const unsigned32 int_mask = out_mask | in_mask;
564 model_busy *busy_ptr;
565
566 if ((model_ptr->int_busy & int_mask) || (model_ptr->cr_fpscr_busy & cr_mask)) {
567 model_new_cycle(model_ptr); /* don't count first dependency as a stall */
568
569 while ((model_ptr->int_busy & int_mask) || (model_ptr->cr_fpscr_busy & cr_mask)) {
570 if (WITH_TRACE && ppc_trace[trace_model])
571 model_trace_busy_p(model_ptr, int_mask, 0, cr_mask, PPC_NO_SPR);
572
573 model_ptr->nr_stalls_data++;
574 model_new_cycle(model_ptr);
575 }
576 }
577
578 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
579 model_ptr->int_busy |= out_mask;
580 busy_ptr->int_busy |= out_mask;
581 model_ptr->cr_fpscr_busy |= cr_mask;
582 busy_ptr->cr_fpscr_busy |= cr_mask;
583 if (out_mask)
584 busy_ptr->nr_writebacks = (PPC_ONE_BIT_SET_P(out_mask)) ? 1 : 2;
585
586 if (cr_mask)
587 busy_ptr->nr_writebacks++;
588
589 if (WITH_TRACE && ppc_trace[trace_model])
590 model_trace_make_busy(model_ptr, out_mask, 0, cr_mask);
591
592
593# Schedule an instruction that takes CR input registers and produces output CR registers
594void::model-function::ppc_insn_cr:itable_index index, model_data *model_ptr, const unsigned32 out_mask, const unsigned32 in_mask
595 const unsigned32 cr_mask = out_mask | in_mask;
596 model_busy *busy_ptr;
597
598 if ((model_ptr->cr_fpscr_busy & cr_mask) != 0) {
599 model_new_cycle(model_ptr); /* don't count first dependency as a stall */
600
601 while ((model_ptr->cr_fpscr_busy & cr_mask) != 0) {
602 if (WITH_TRACE && ppc_trace[trace_model])
603 model_trace_busy_p(model_ptr, 0, 0, cr_mask, PPC_NO_SPR);
604
605 model_ptr->nr_stalls_data++;
606 model_new_cycle(model_ptr);
607 }
608 }
609
610 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
611 model_ptr->cr_fpscr_busy |= out_mask;
612 busy_ptr->cr_fpscr_busy |= out_mask;
613 if (out_mask)
614 busy_ptr->nr_writebacks = 1;
615
616 if (WITH_TRACE && ppc_trace[trace_model])
617 model_trace_make_busy(model_ptr, 0, 0, out_mask);
618
619
620# Schedule an instruction that takes floating point input registers and produces an output fp register
621void::model-function::ppc_insn_float:itable_index index, model_data *model_ptr, const unsigned32 out_mask, const unsigned32 in_mask
622 const unsigned32 fp_mask = out_mask | in_mask;
623 model_busy *busy_ptr;
624
625 if ((model_ptr->fp_busy & fp_mask) != 0) {
626 model_new_cycle(model_ptr); /* don't count first dependency as a stall */
627
628 while ((model_ptr->fp_busy & fp_mask) != 0) {
629 if (WITH_TRACE && ppc_trace[trace_model])
630 model_trace_busy_p(model_ptr, 0, fp_mask, 0, PPC_NO_SPR);
631
632 model_ptr->nr_stalls_data++;
633 model_new_cycle(model_ptr);
634 }
635 }
636
637 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
638 model_ptr->fp_busy |= out_mask;
639 busy_ptr->fp_busy |= out_mask;
640 busy_ptr->nr_writebacks = 1;
641 if (WITH_TRACE && ppc_trace[trace_model])
642 model_trace_make_busy(model_ptr, 0, out_mask, 0);
643
644
645# Schedule an instruction that takes floating point input registers and produces an output fp register & sets a CR reg
646void::model-function::ppc_insn_float_cr:itable_index index, model_data *model_ptr, const unsigned32 out_mask, const unsigned32 in_mask, const unsigned32 cr_mask
647 const unsigned32 fp_mask = out_mask | in_mask;
648 model_busy *busy_ptr;
649
650 if ((model_ptr->fp_busy & fp_mask) || (model_ptr->cr_fpscr_busy & cr_mask)) {
651 model_new_cycle(model_ptr); /* don't count first dependency as a stall */
652
653 while ((model_ptr->fp_busy & fp_mask) || (model_ptr->cr_fpscr_busy & cr_mask)) {
654 if (WITH_TRACE && ppc_trace[trace_model])
655 model_trace_busy_p(model_ptr, 0, fp_mask, cr_mask, PPC_NO_SPR);
656
657 model_ptr->nr_stalls_data++;
658 model_new_cycle(model_ptr);
659 }
660 }
661
662 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
663 model_ptr->fp_busy |= out_mask;
664 busy_ptr->fp_busy |= out_mask;
665 model_ptr->cr_fpscr_busy |= cr_mask;
666 busy_ptr->cr_fpscr_busy |= cr_mask;
667 busy_ptr->nr_writebacks = (cr_mask) ? 2 : 1;
668 if (WITH_TRACE && ppc_trace[trace_model])
669 model_trace_make_busy(model_ptr, 0, out_mask, cr_mask);
670
671
672# Schedule an instruction that takes both int/float input registers and produces output int/float registers
673void::model-function::ppc_insn_int_float:itable_index index, model_data *model_ptr, const unsigned32 out_int_mask, const unsigned32 out_fp_mask, const unsigned32 in_int_mask, const unsigned32 in_fp_mask
674 const unsigned32 int_mask = out_int_mask | in_int_mask;
675 const unsigned32 fp_mask = out_fp_mask | in_fp_mask;
676 model_busy *busy_ptr;
677
678 if ((model_ptr->int_busy & int_mask) || (model_ptr->fp_busy & fp_mask)) {
679 model_new_cycle(model_ptr); /* don't count first dependency as a stall */
680
681 while ((model_ptr->int_busy & int_mask) || (model_ptr->fp_busy & fp_mask)) {
682 if (WITH_TRACE && ppc_trace[trace_model])
683 model_trace_busy_p(model_ptr, int_mask, fp_mask, 0, PPC_NO_SPR);
684
685 model_ptr->nr_stalls_data++;
686 model_new_cycle(model_ptr);
687 }
688
689 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
690 model_ptr->int_busy |= out_int_mask;
691 busy_ptr->int_busy |= out_int_mask;
692 model_ptr->fp_busy |= out_fp_mask;
693 busy_ptr->fp_busy |= out_fp_mask;
694 busy_ptr->nr_writebacks = ((out_int_mask) ? 1 : 0) + ((out_fp_mask) ? 1 : 0);
695 if (WITH_TRACE && ppc_trace[trace_model])
696 model_trace_make_busy(model_ptr, out_int_mask, out_fp_mask, 0);
697 return;
698 }
699
700# Schedule an MFSPR instruction that takes 1 special purpose register and produces an integer output register
701void::model-function::ppc_insn_from_spr:itable_index index, model_data *model_ptr, const unsigned32 int_mask, const unsigned nSPR
702 model_busy *busy_ptr;
703
704 while ((model_ptr->int_busy & int_mask) != 0 || model_ptr->spr_busy[nSPR] != 0) {
705 if (WITH_TRACE && ppc_trace[trace_model])
706 model_trace_busy_p(model_ptr, int_mask, 0, 0, nSPR);
707
708 model_ptr->nr_stalls_data++;
709 model_new_cycle(model_ptr);
710 }
711
712 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
713 model_ptr->int_busy |= int_mask;
714 busy_ptr->int_busy |= int_mask;
715 busy_ptr->nr_writebacks = 1;
716 if (WITH_TRACE && ppc_trace[trace_model])
717 model_trace_make_busy(model_ptr, int_mask, 0, 0);
718
719# Schedule an MTSPR instruction that takes 1 integer register and produces a special purpose output register
720void::model-function::ppc_insn_to_spr:itable_index index, model_data *model_ptr, const unsigned32 int_mask, const unsigned nSPR
721 model_busy *busy_ptr;
722
723 while ((model_ptr->int_busy & int_mask) != 0 || model_ptr->spr_busy[nSPR] != 0) {
724 if (WITH_TRACE && ppc_trace[trace_model])
725 model_trace_busy_p(model_ptr, int_mask, 0, 0, nSPR);
726
727 model_ptr->nr_stalls_data++;
728 model_new_cycle(model_ptr);
729 }
730
731 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
732 busy_ptr->spr_busy = nSPR;
733 model_ptr->spr_busy[nSPR] = 1;
734 busy_ptr->nr_writebacks = 1;
735 TRACE(trace_model,("Making register %s busy.\n", spr_name(nSPR)));
736
84f9f8c3 737# Schedule a MFCR instruction that moves the CR into an integer register
c906108c
SS
738void::model-function::ppc_insn_mfcr:itable_index index, model_data *model_ptr, unsigned32 int_mask
739 const unsigned32 cr_mask = 0xff;
740 model_busy *busy_ptr;
741
742 while (((model_ptr->int_busy & int_mask) | (model_ptr->cr_fpscr_busy & cr_mask)) != 0) {
743 if (WITH_TRACE && ppc_trace[trace_model])
744 model_trace_busy_p(model_ptr, int_mask, 0, cr_mask, PPC_NO_SPR);
745
746 model_ptr->nr_stalls_data++;
747 model_new_cycle(model_ptr);
748 }
749
750 busy_ptr = model_wait_for_unit(index, model_ptr, &model_ptr->timing[index]);
751 model_ptr->int_busy |= int_mask;
752 busy_ptr->int_busy |= int_mask;
753 busy_ptr->nr_writebacks = 1;
754 if (WITH_TRACE && ppc_trace[trace_model])
755 model_trace_make_busy(model_ptr, int_mask, 0, 0);
756
757# Schedule a MTCR instruction that moves an integer register into the CR
758void::model-function::ppc_insn_mtcr:itable_index index, model_data *model_ptr, unsigned32 int_mask, unsigned FXM
759 int f;
760 int nr_crs = 0;
761 unsigned32 cr_mask = 0;
762 const model_time *normal_time = &model_ptr->timing[index];
763 static const model_time ppc604_1bit_time = { PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0 };
764 model_busy *busy_ptr;
765
766 for (f = 0; f < 8; f++) {
767 if (FXM & (0x80 >> f)) {
768 cr_mask |= (1 << f);
769 nr_crs++;
770 }
771 }
772
773 while (((model_ptr->int_busy & int_mask) | (model_ptr->cr_fpscr_busy & cr_mask)) != 0) {
774 if (WITH_TRACE && ppc_trace[trace_model])
775 model_trace_busy_p(model_ptr, int_mask, 0, cr_mask, PPC_NO_SPR);
776
777 model_ptr->nr_stalls_data++;
778 model_new_cycle(model_ptr);
779 }
780
781 /* If only one CR is being moved, use the SCIU, not the MCIU on the 604 */
782 if (CURRENT_MODEL == MODEL_ppc604 && nr_crs == 1) {
783 normal_time = &ppc604_1bit_time;
784 }
785
786 busy_ptr = model_wait_for_unit(index, model_ptr, normal_time);
787 busy_ptr->cr_fpscr_busy |= cr_mask;
788 model_ptr->cr_fpscr_busy |= cr_mask;
789 model_ptr->nr_mtcrf_crs[nr_crs]++;
790 busy_ptr->nr_writebacks = 1;
791 if (WITH_TRACE && ppc_trace[trace_model])
792 model_trace_make_busy(model_ptr, 0, 0, cr_mask);
793\f
794model_data *::model-function::model_create:cpu *processor
795 model_data *model_ptr = ZALLOC(model_data);
796 model_ptr->name = model_name[CURRENT_MODEL];
797 model_ptr->timing = model_time_mapping[CURRENT_MODEL];
798 model_ptr->processor = processor;
799 model_ptr->nr_cycles = 1;
800 model_ptr->busy_tail = &model_ptr->busy_head;
801 switch (CURRENT_MODEL) {
802 case MODEL_ppc601: model_ptr->max_nr_writebacks = 1; break; /* ??? */
803 case MODEL_ppc603: model_ptr->max_nr_writebacks = 2; break;
804 case MODEL_ppc603e: model_ptr->max_nr_writebacks = 2; break;
805 case MODEL_ppc604: model_ptr->max_nr_writebacks = 2; break;
806 default: error ("Unknown model %d\n", CURRENT_MODEL);
807 }
808 return model_ptr;
809
810void::model-function::model_init:model_data *model_ptr
811
812void::model-function::model_halt:model_data *model_ptr
813 /* Let pipeline drain */
814 while (model_ptr->busy_head.next)
815 model_new_cycle(model_ptr);
816
817unsigned_word::model-function::model_get_number_of_stalls:model_data *model_ptr
818 return (model_ptr->nr_stalls_data
819 + model_ptr->nr_stalls_unit
820 + model_ptr->nr_stalls_serialize
821 + model_ptr->nr_stalls_writeback);
822
823unsigned_word::model-function::model_get_number_of_cycles:model_data *model_ptr
824 return (model_ptr->nr_cycles);
825
826model_print *::model-function::model_mon_info:model_data *model_ptr
827 model_print *head;
828 model_print *tail;
829 ppc_function_unit i;
830 count_type nr_insns;
831 int j;
832
833 head = tail = ZALLOC(model_print);
834 tail->count = model_ptr->nr_cycles;
835 tail->name = "cycle";
836 tail->suffix_plural = "s";
837 tail->suffix_singular = "";
838
839 if (model_ptr->nr_stalls_data) {
840 tail->next = ZALLOC(model_print);
841 tail = tail->next;
842 tail->count = model_ptr->nr_stalls_data;
843 tail->name = "stall";
844 tail->suffix_plural = "s waiting for data";
845 tail->suffix_singular = " waiting for data";
846 }
847
848 if (model_ptr->nr_stalls_unit) {
849 tail->next = ZALLOC(model_print);
850 tail = tail->next;
851 tail->count = model_ptr->nr_stalls_unit;
852 tail->name = "stall";
853 tail->suffix_plural = "s waiting for a function unit";
854 tail->suffix_singular = " waiting for a function unit";
855 }
856
857 if (model_ptr->nr_stalls_serialize) {
858 tail->next = ZALLOC(model_print);
859 tail = tail->next;
860 tail->count = model_ptr->nr_stalls_serialize;
861 tail->name = "stall";
862 tail->suffix_plural = "s waiting for serialization";
863 tail->suffix_singular = " waiting for serialization";
864 }
865
866 if (model_ptr->nr_stalls_writeback) {
867 tail->next = ZALLOC(model_print);
868 tail = tail->next;
869 tail->count = model_ptr->nr_stalls_writeback;
870 tail->name = "";
871 tail->suffix_plural = "times a write-back slot was unavailable";
872 tail->suffix_singular = "time a writeback was unavailable";
873 }
874
875 if (model_ptr->nr_branches) {
876 tail->next = ZALLOC(model_print);
877 tail = tail->next;
878 tail->count = model_ptr->nr_branches;
879 tail->name = "branch";
880 tail->suffix_plural = "es";
881 tail->suffix_singular = "";
882 }
883
884 if (model_ptr->nr_branches_fallthrough) {
885 tail->next = ZALLOC(model_print);
886 tail = tail->next;
887 tail->count = model_ptr->nr_branches_fallthrough;
888 tail->name = "conditional branch";
889 tail->suffix_plural = "es fell through";
890 tail->suffix_singular = " fell through";
891 }
892
893 if (model_ptr->nr_branch_predict_trues) {
894 tail->next = ZALLOC(model_print);
895 tail = tail->next;
896 tail->count = model_ptr->nr_branch_predict_trues;
897 tail->name = "successful branch prediction";
898 tail->suffix_plural = "s";
899 tail->suffix_singular = "";
900 }
901
902 if (model_ptr->nr_branch_predict_falses) {
903 tail->next = ZALLOC(model_print);
904 tail = tail->next;
905 tail->count = model_ptr->nr_branch_predict_falses;
906 tail->name = "unsuccessful branch prediction";
907 tail->suffix_plural = "s";
908 tail->suffix_singular = "";
909 }
910
13a590ca 911 for (j = 0; j < ARRAY_SIZE (ppc_branch_conditional_name); j++) {
c906108c
SS
912 if (model_ptr->nr_branch_conditional[j]) {
913 tail->next = ZALLOC(model_print);
914 tail = tail->next;
915 tail->count = model_ptr->nr_branch_conditional[j];
916 tail->name = ppc_branch_conditional_name[j];
917 tail->suffix_plural = " conditional branches";
918 tail->suffix_singular = " conditional branch";
919 }
920 }
921
922 for (j = 0; j < 9; j++) {
923 if (model_ptr->nr_mtcrf_crs[j]) {
924 tail->next = ZALLOC(model_print);
925 tail = tail->next;
926 tail->count = model_ptr->nr_mtcrf_crs[j];
927 tail->name = ppc_nr_mtcrf_crs[j];
928 tail->suffix_plural = " instructions";
929 tail->suffix_singular = " instruction";
930 }
931 }
932
933 nr_insns = 0;
934 for (i = PPC_UNIT_BAD; i < nr_ppc_function_units; i++) {
935 if (model_ptr->nr_units[i]) {
936 nr_insns += model_ptr->nr_units[i];
937 tail->next = ZALLOC(model_print);
938 tail = tail->next;
939 tail->count = model_ptr->nr_units[i];
940 tail->name = ppc_function_unit_name[i];
941 tail->suffix_plural = "s";
942 tail->suffix_singular = "";
943 }
944 }
945
946 tail->next = ZALLOC(model_print);
947 tail = tail->next;
948 tail->count = nr_insns;
949 tail->name = "instruction";
950 tail->suffix_plural = "s that were accounted for in timing info";
951 tail->suffix_singular = " that was accounted for in timing info";
952
953 tail->next = (model_print *)0;
954 return head;
955
956void::model-function::model_mon_info_free:model_data *model_ptr, model_print *ptr
957 while (ptr) {
958 model_print *next = ptr->next;
959 free((void *)ptr);
960 ptr = next;
961 }
962
963void::model-function::model_branches:model_data *model_ptr, int failed, int conditional
964 model_ptr->nr_units[PPC_UNIT_BPU]++;
965 if (failed)
966 model_ptr->nr_branches_fallthrough++;
967 else
968 model_ptr->nr_branches++;
969 if (conditional >= 0)
970 model_ptr->nr_branch_conditional[conditional]++;
971 model_new_cycle(model_ptr); /* A branch always ends the current cycle */
972
973void::model-function::model_branch_predict:model_data *model_ptr, int success
974 if (success)
975 model_ptr->nr_branch_predict_trues++;
976 else
977 model_ptr->nr_branch_predict_falses++;
978
979\f
980# The following (illegal) instruction is `known' by gen and is
981# called when ever an illegal instruction is encountered
982::internal::illegal
983 program_interrupt(processor, cia,
984 illegal_instruction_program_interrupt);
985
986
987# The following (floating point unavailable) instruction is `known' by gen
988# and is called when ever an a floating point instruction is to be
989# executed but floating point is make unavailable by the MSR
990::internal::floating_point_unavailable
991 floating_point_unavailable_interrupt(processor, cia);
992
993
994#
995# Floating point support functions
996#
997
998# Convert 32bit single to 64bit double
999unsigned64::function::DOUBLE:unsigned32 WORD
1000 unsigned64 FRT;
1001 if (EXTRACTED32(WORD, 1, 8) > 0
1002 && EXTRACTED32(WORD, 1, 8) < 255) {
1003 /* normalized operand */
1004 int not_word_1_1 = !EXTRACTED32(WORD, 1, 1); /*2.6.3 bug*/
1005 FRT = (INSERTED64(EXTRACTED32(WORD, 0, 1), 0, 1)
1006 | INSERTED64(not_word_1_1, 2, 2)
1007 | INSERTED64(not_word_1_1, 3, 3)
1008 | INSERTED64(not_word_1_1, 4, 4)
1009 | INSERTED64(EXTRACTED32(WORD, 2, 31), 5, (63 - 29)));
1010 }
1011 else if (EXTRACTED32(WORD, 1, 8) == 0
1012 && EXTRACTED32(WORD, 9, 31) != 0) {
1013 /* denormalized operand */
1014 int sign = EXTRACTED32(WORD, 0, 0);
1015 int exp = -126;
1016 unsigned64 frac = INSERTED64(EXTRACTED32(WORD, 9, 31), 1, (52 - 29));
1017 /* normalize the operand */
1018 while (MASKED64(frac, 0, 0) == 0) {
1019 frac <<= 1;
1020 exp -= 1;
1021 }
1022 FRT = (INSERTED64(sign, 0, 0)
1023 | INSERTED64(exp + 1023, 1, 11)
1024 | INSERTED64(EXTRACTED64(frac, 1, 52), 12, 63));
1025 }
1026 else if (EXTRACTED32(WORD, 1, 8) == 255
1027 || EXTRACTED32(WORD, 1, 31) == 0) {
1028 FRT = (INSERTED64(EXTRACTED32(WORD, 0, 1), 0, 1)
1029 | INSERTED64(EXTRACTED32(WORD, 1, 1), 2, 2)
1030 | INSERTED64(EXTRACTED32(WORD, 1, 1), 3, 3)
1031 | INSERTED64(EXTRACTED32(WORD, 1, 1), 4, 4)
1032 | INSERTED64(EXTRACTED32(WORD, 2, 31), 5, (63 - 29)));
1033 }
1034 else {
1035 error("DOUBLE - unknown case\n");
1036 FRT = 0;
1037 }
1038 return FRT;
1039
1040# Convert 64bit single to 32bit double
1041unsigned32::function::SINGLE:unsigned64 FRS
1042 unsigned32 WORD;
1043 if (EXTRACTED64(FRS, 1, 11) > 896
1044 || EXTRACTED64(FRS, 1, 63) == 0) {
1045 /* no denormalization required (includes Zero/Infinity/NaN) */
1046 WORD = (INSERTED32(EXTRACTED64(FRS, 0, 1), 0, 1)
1047 | INSERTED32(EXTRACTED64(FRS, 5, 34), 2, 31));
1048 }
1049 else if (874 <= EXTRACTED64(FRS, 1, 11)
1050 && EXTRACTED64(FRS, 1, 11) <= 896) {
1051 /* denormalization required */
1052 int sign = EXTRACTED64(FRS, 0, 0);
1053 int exp = EXTRACTED64(FRS, 1, 11) - 1023;
1054 unsigned64 frac = (BIT64(0)
1055 | INSERTED64(EXTRACTED64(FRS, 12, 63), 1, 52));
1056 /* denormalize the operand */
1057 while (exp < -126) {
1058 frac = INSERTED64(EXTRACTED64(frac, 0, 62), 1, 63);
1059 exp += 1;
1060 }
1061 WORD = (INSERTED32(sign, 0, 0)
1062 | INSERTED32(0x00, 1, 8)
1063 | INSERTED32(EXTRACTED64(frac, 1, 23), 9, 31));
1064 }
1065 else {
1066 WORD = 0x0; /* ??? */
1067 }
1068 return WORD;
1069
1070
1071# round 64bit double to 64bit but single
1072void::function::Round_Single:cpu *processor, int sign, int *exp, unsigned64 *frac_grx
1073 /* comparisons ignore u bits */
1074 unsigned64 out;
1075 int inc = 0;
1076 int lsb = EXTRACTED64(*frac_grx, 23, 23);
1077 int gbit = EXTRACTED64(*frac_grx, 24, 24);
1078 int rbit = EXTRACTED64(*frac_grx, 25, 25);
1079 int xbit = EXTRACTED64(*frac_grx, 26, 55) != 0;
1080 if ((FPSCR & fpscr_rn) == fpscr_rn_round_to_nearest) {
1081 if (lsb == 1 && gbit == 1) inc = 1;
1082 if (lsb == 0 && gbit == 1 && rbit == 1) inc = 1;
1083 if (lsb == 0 && gbit == 1 && xbit == 1) inc = 1;
1084 }
1085 if ((FPSCR & fpscr_rn) == fpscr_rn_round_towards_pos_infinity) {
1086 if (sign == 0 && gbit == 1) inc = 1;
1087 if (sign == 0 && rbit == 1) inc = 1;
1088 if (sign == 0 && xbit == 1) inc = 1;
1089 }
1090 if ((FPSCR & fpscr_rn) == fpscr_rn_round_towards_neg_infinity) {
1091 if (sign == 1 && gbit == 1) inc = 1;
1092 if (sign == 1 && rbit == 1) inc = 1;
1093 if (sign == 1 && xbit == 1) inc = 1;
1094 }
1095 /* work out addition in low 25 bits of out */
1096 out = EXTRACTED64(*frac_grx, 0, 23) + inc;
1097 *frac_grx = INSERTED64(out, 0, 23);
1098 if (out & BIT64(64 - 23 - 1 - 1)) {
1099 *frac_grx = (BIT64(0) |
1100 INSERTED64(EXTRACTED64(*frac_grx, 0, 22), 1, 23));
1101 *exp = *exp + 1;
1102 }
1103 /* frac_grx[24:52] = 0 already */
1104 FPSCR_SET_FR(inc);
1105 FPSCR_SET_FI(gbit || rbit || xbit);
1106
1107
1108#
1109void::function::Round_Integer:cpu *processor, int sign, unsigned64 *frac, int *frac64, int gbit, int rbit, int xbit, fpscreg round_mode
1110 int inc = 0;
1111 if (round_mode == fpscr_rn_round_to_nearest) {
1112 if (*frac64 == 1 && gbit == 1) inc = 1;
1113 if (*frac64 == 0 && gbit == 1 && rbit == 1) inc = 1;
1114 if (*frac64 == 0 && gbit == 1 && xbit == 1) inc = 1;
1115 }
1116 if (round_mode == fpscr_rn_round_towards_pos_infinity) {
1117 if (sign == 0 && gbit == 1) inc = 1;
1118 if (sign == 0 && rbit == 1) inc = 1;
1119 if (sign == 0 && xbit == 1) inc = 1;
1120 }
1121 if (round_mode == fpscr_rn_round_towards_neg_infinity) {
1122 if (sign == 1 && gbit == 1) inc = 1;
1123 if (sign == 1 && rbit == 1) inc = 1;
1124 if (sign == 1 && xbit == 1) inc = 1;
1125 }
1126 /* frac[0:64] = frac[0:64} + inc */
1127 *frac += (*frac64 && inc ? 1 : 0);
1128 *frac64 = (*frac64 + inc) & 0x1;
1129 FPSCR_SET_FR(inc);
1130 FPSCR_SET_FI(gbit | rbit | xbit);
1131
1132
1133void::function::Round_Float:cpu *processor, int sign, int *exp, unsigned64 *frac, fpscreg round_mode
1134 int carry_out;
1135 int inc = 0;
1136 int lsb = EXTRACTED64(*frac, 52, 52);
1137 int gbit = EXTRACTED64(*frac, 53, 53);
1138 int rbit = EXTRACTED64(*frac, 54, 54);
1139 int xbit = EXTRACTED64(*frac, 55, 55);
1140 if (round_mode == fpscr_rn_round_to_nearest) {
1141 if (lsb == 1 && gbit == 1) inc = 1;
1142 if (lsb == 0 && gbit == 1 && rbit == 1) inc = 1;
1143 if (lsb == 0 && gbit == 1 && xbit == 1) inc = 1;
1144 }
1145 if (round_mode == fpscr_rn_round_towards_pos_infinity) {
1146 if (sign == 0 && gbit == 1) inc = 1;
1147 if (sign == 0 && rbit == 1) inc = 1;
1148 if (sign == 0 && xbit == 1) inc = 1;
1149 }
1150 if (round_mode == fpscr_rn_round_towards_neg_infinity) {
1151 if (sign == 1 && gbit == 1) inc = 1;
1152 if (sign == 1 && rbit == 1) inc = 1;
1153 if (sign == 1 && xbit == 1) inc = 1;
1154 }
1155 /* frac//carry_out = frac + inc */
1156 *frac = (*frac >> 1) + (INSERTED64(inc, 52, 52) >> 1);
1157 carry_out = EXTRACTED64(*frac, 0, 0);
1158 *frac <<= 1;
1159 if (carry_out == 1) *exp = *exp + 1;
1160 FPSCR_SET_FR(inc);
1161 FPSCR_SET_FI(gbit | rbit | xbit);
1162 FPSCR_SET_XX(FPSCR & fpscr_fi);
1163
1164
1165# conversion of FP to integer
1166void::function::convert_to_integer:cpu *processor, unsigned_word cia, unsigned64 *frt, unsigned64 frb, fpscreg round_mode, int tgt_precision
1167 int i;
1168 int exp = 0;
1169 unsigned64 frac = 0;
1170 int frac64 = 0;
1171 int gbit = 0;
1172 int rbit = 0;
1173 int xbit = 0;
1174 int sign = EXTRACTED64(frb, 0, 0);
1175 /***/
1176 if (EXTRACTED64(frb, 1, 11) == 2047 && EXTRACTED64(frb, 12, 63) == 0)
1177 GOTO(Infinity_Operand);
1178 if (EXTRACTED64(frb, 1, 11) == 2047 && EXTRACTED64(frb, 12, 12) == 0)
1179 GOTO(SNaN_Operand);
1180 if (EXTRACTED64(frb, 1, 11) == 2047 && EXTRACTED64(frb, 12, 12) == 1)
1181 GOTO(QNaN_Operand);
1182 if (EXTRACTED64(frb, 1, 11) > 1086) GOTO(Large_Operand);
1183 if (EXTRACTED64(frb, 1, 11) > 0) exp = EXTRACTED64(frb, 1, 11) - 1023;
1184 if (EXTRACTED64(frb, 1, 11) == 0) exp = -1022;
1185 if (EXTRACTED64(frb, 1, 11) > 0) { /* normal */
1186 frac = BIT64(1) | INSERTED64(EXTRACTED64(frb, 12, 63), 2, 53);
1187 frac64 = 0;
1188 }
1189 if (EXTRACTED64(frb, 1, 11) == 0) { /* denorm */
1190 frac = INSERTED64(EXTRACTED64(frb, 12, 63), 2, 53);
1191 frac64 = 0;
1192 }
1193 gbit = 0, rbit = 0, xbit = 0;
1194 for (i = 1; i <= 63 - exp; i++) {
1195 xbit = rbit | xbit;
1196 rbit = gbit;
1197 gbit = frac64;
1198 frac64 = EXTRACTED64(frac, 63, 63);
1199 frac = INSERTED64(EXTRACTED64(frac, 0, 62), 1, 63);
1200 }
1201 Round_Integer(processor, sign, &frac, &frac64, gbit, rbit, xbit, round_mode);
1202 if (sign == 1) { /* frac[0:64] = ~frac[0:64] + 1 */
1203 frac = ~frac;
1204 frac64 ^= 1;
1205 frac += (frac64 ? 1 : 0);
1206 frac64 = (frac64 + 1) & 0x1;
1207 }
1208 if (tgt_precision == 32 /* can ignore frac64 in compare */
1209 && (signed64)frac > (signed64)MASK64(33+1, 63)/*2^31-1 >>1*/)
1210 GOTO(Large_Operand);
1211 if (tgt_precision == 64 /* can ignore frac64 in compare */
1212 && (signed64)frac > (signed64)MASK64(1+1, 63)/*2^63-1 >>1*/)
1213 GOTO(Large_Operand);
1214 if (tgt_precision == 32 /* can ignore frac64 in compare */
1215 && (signed64)frac < (signed64)MASK64(0, 32+1)/*-2^31 >>1*/)
1216 GOTO(Large_Operand);
1217 if (tgt_precision == 64 /* can ignore frac64 in compare */
1218 && (signed64)frac < (signed64)MASK64(0, 0+1)/*-2^63 >>1*/)
1219 GOTO(Large_Operand);
1220 FPSCR_SET_XX(FPSCR & fpscr_fi);
1221 if (tgt_precision == 32)
1222 *frt = MASKED64(*frt, 0, 31) | (EXTRACTED64(frac, 33, 63) << 1) | frac64;
1223 if (tgt_precision == 64)
1224 *frt = (EXTRACTED64(frac, 1, 63) << 1) | frac64;
1225 /*FPSCR[fprf] = undefined */
1226 GOTO(Done);
1227 /**/
1228 LABEL(Infinity_Operand):
1229 FPSCR_SET_FR(0);
1230 FPSCR_SET_FI(0);
1231 FPSCR_OR_VX(fpscr_vxcvi);
1232 if ((FPSCR & fpscr_ve) == 0) {
1233 if (tgt_precision == 32) {
1234 if (sign == 0) *frt = MASKED64(*frt, 0, 31) | 0x7FFFFFFF;
1235 if (sign == 1) *frt = MASKED64(*frt, 0, 31) | 0x80000000;
1236 }
1237 else {
1238 if (sign == 0) *frt = MASK64(1, 63); /*0x7FFF_FFFF_FFFF_FFFF*/
1239 if (sign == 1) *frt = BIT64(0); /*0x8000_0000_0000_0000*/
1240 }
1241 /* FPSCR[FPRF] = undefined */
1242 }
1243 GOTO(Done);
1244 /**/
1245 LABEL(SNaN_Operand):
1246 FPSCR_SET_FR(0);
1247 FPSCR_SET_FI(0);
1248 FPSCR_OR_VX(fpscr_vxsnan | fpscr_vxcvi);
1249 if ((FPSCR & fpscr_ve) == 0) {
1250 if (tgt_precision == 32) *frt = MASKED64(*frt, 0, 31) | 0x80000000;
1251 if (tgt_precision == 64) *frt = BIT64(0); /*0x8000_0000_0000_0000*/
1252 /* FPSCR[fprf] = undefined */
1253 }
1254 GOTO(Done);
1255 /**/
1256 LABEL(QNaN_Operand):
1257 FPSCR_SET_FR(0);
1258 FPSCR_SET_FI(0);
1259 FPSCR_OR_VX(fpscr_vxcvi);
1260 if ((FPSCR & fpscr_ve) == 0) {
1261 if (tgt_precision == 32) *frt = MASKED64(*frt, 0, 31) | 0x80000000;
1262 if (tgt_precision == 64) *frt = BIT64(0);/*0x8000_0000_0000_0000*/
1263 /* FPSCR[fprf] = undefined */
1264 }
1265 GOTO(Done);
1266 /**/
1267 LABEL(Large_Operand):
1268 FPSCR_SET_FR(0);
1269 FPSCR_SET_FI(0);
1270 FPSCR_OR_VX(fpscr_vxcvi);
1271 if ((FPSCR & fpscr_ve) == 0) {
1272 if (tgt_precision == 32) {
1273 if (sign == 0) *frt = MASKED64(*frt, 0, 31) | 0x7fffffff;
1274 if (sign == 1) *frt = MASKED64(*frt, 0, 31) | 0x80000000;
1275 }
1276 else {
1277 if (sign == 0) *frt = MASK64(1, 63); /*0x7FFF_FFFF_FFFF_FFFF*/
1278 if (sign == 1) *frt = BIT64(0); /*0x8000_0000_0000_0000*/
1279 }
1280 /* FPSCR[fprf] = undefined */
1281 }
1282 /**/
54273454 1283 LABEL(Done):;
c906108c
SS
1284
1285
1286# extract out raw fields of a FP number
1287int::function::sign:unsigned64 FRS
1288 return (MASKED64(FRS, 0, 0)
1289 ? -1
1290 : 1);
1291int::function::biased_exp:unsigned64 frs, int single
1292 if (single)
1293 return EXTRACTED64(frs, 1, 8);
1294 else
1295 return EXTRACTED64(frs, 1, 11);
1296unsigned64::function::fraction:unsigned64 frs, int single
1297 if (single)
1298 return EXTRACTED64(frs, 9, 31);
1299 else
1300 return EXTRACTED64(frs, 12, 63);
1301
1302# a number?, each of the below return +1 or -1 (based on sign bit)
1303# if true.
1304int::function::is_nor:unsigned64 frs, int single
1305 int exp = biased_exp(frs, single);
1306 return (exp >= 1
1307 && exp <= (single ? 254 : 2046));
1308int::function::is_zero:unsigned64 FRS
1309 return (MASKED64(FRS, 1, 63) == 0
1310 ? sign(FRS)
1311 : 0);
1312int::function::is_den:unsigned64 frs, int single
1313 int exp = biased_exp(frs, single);
1314 unsigned64 frac = fraction(frs, single);
1315 return (exp == 0 && frac != 0
1316 ? sign(frs)
1317 : 0);
1318int::function::is_inf:unsigned64 frs, int single
1319 int exp = biased_exp(frs, single);
1320 unsigned64 frac = fraction(frs, single);
1321 return (exp == (single ? 255 : 2047) && frac == 0
1322 ? sign(frs)
1323 : 0);
1324int::function::is_NaN:unsigned64 frs, int single
1325 int exp = biased_exp(frs, single);
1326 unsigned64 frac = fraction(frs, single);
1327 return (exp == (single ? 255 : 2047) && frac != 0
1328 ? sign(frs)
1329 : 0);
1330int::function::is_SNaN:unsigned64 frs, int single
1331 return (is_NaN(frs, single)
1332 && !(frs & (single ? MASK64(9, 9) : MASK64(12, 12)))
1333 ? sign(frs)
1334 : 0);
1335int::function::is_QNaN:unsigned64 frs, int single
1336 return (is_NaN(frs, single) && !is_SNaN(frs, single));
1337int::function::is_less_than:unsigned64 *fra, unsigned64 *frb
1338 return *(double*)fra < *(double*)frb;
1339int::function::is_greater_than:unsigned64 *fra, unsigned64 *frb
1340 return *(double*)fra > *(double*)frb;
1341int::function::is_equan_to:unsigned64 *fra, unsigned64 *frb
1342 return *(double*)fra == *(double*)frb;
1343
1344
1345# which quiet nan should become the result
1346unsigned64::function::select_qnan:unsigned64 fra, unsigned64 frb, unsigned64 frc, int instruction_is_frsp, int generate_qnan, int single
1347 unsigned64 frt = 0;
1348 if (is_NaN(fra, single))
1349 frt = fra;
1350 else if (is_NaN(frb, single))
1351 if (instruction_is_frsp)
1352 frt = MASKED64(frb, 0, 34);
1353 else
1354 frt = frb;
1355 else if (is_NaN(frc, single))
1356 frt = frc;
1357 else if (generate_qnan)
1358 frt = MASK64(1, 12); /* 0x7FF8_0000_0000_0000 */
1359 else
1360 error("select_qnan - default reached\n");
1361 return frt;
1362
1363
1364# detect invalid operation
1365int::function::is_invalid_operation:cpu *processor, unsigned_word cia, unsigned64 fra, unsigned64 frb, fpscreg check, int single, int negate
1366 int fail = 0;
1367 if ((check & fpscr_vxsnan)
1368 && (is_SNaN(fra, single) || is_SNaN(frb, single))) {
1369 FPSCR_OR_VX(fpscr_vxsnan);
1370 fail = 1;
1371 }
1372 if ((check & fpscr_vxisi)
1373 && (is_inf(fra, single) && is_inf(frb, single))
1374 && ((negate && sign(fra) != sign(frb))
1375 || (!negate && sign(fra) == sign(frb)))) {
1376 /*FIXME: don't handle inf-inf VS inf+-inf */
1377 FPSCR_OR_VX(fpscr_vxisi);
1378 fail = 1;
1379 }
1380 if ((check & fpscr_vxidi)
1381 && (is_inf(fra, single) && is_inf(frb, single))) {
1382 FPSCR_OR_VX(fpscr_vxidi);
1383 fail = 1;
1384 }
1385 if ((check & fpscr_vxzdz)
1386 && (is_zero(fra) && is_zero(frb))) {
1387 FPSCR_OR_VX(fpscr_vxzdz);
1388 fail = 1;
1389 }
1390 if ((check & fpscr_vximz)
1391 && (is_zero(fra) && is_inf(frb, single))) {
1392 FPSCR_OR_VX(fpscr_vximz);
1393 fail = 1;
1394 }
1395 if ((check & fpscr_vxvc)
1396 && (is_NaN(fra, single) || is_NaN(frb, single))) {
1397 FPSCR_OR_VX(fpscr_vxvc);
1398 fail = 1;
1399 }
1400 if ((check & fpscr_vxsoft)) {
1401 FPSCR_OR_VX(fpscr_vxsoft);
1402 fail = 1;
1403 }
1404 if ((check & fpscr_vxsqrt)
1405 && sign(fra) < 0) {
1406 FPSCR_OR_VX(fpscr_vxsqrt);
1407 fail = 1;
1408 }
1409 /* if ((check && fpscr_vxcvi) {
1410 && (is_inf(fra, single) || is_NaN(fra, single) || is_large(fra, single)))
1411 FPSCR_OR_VX(fpscr_vxcvi);
1412 fail = 1;
1413 }
1414 */
1415 return fail;
1416
1417
1418
1419
1420
1421# handle case of invalid operation
1422void::function::invalid_arithemetic_operation:cpu *processor, unsigned_word cia, unsigned64 *frt, unsigned64 fra, unsigned64 frb, unsigned64 frc, int instruction_is_frsp, int instruction_is_convert_to_64bit, int instruction_is_convert_to_32bit, int single
1423 if (FPSCR & fpscr_ve) {
1424 /* invalid operation exception enabled */
1425 /* FRT unchaged */
1426 FPSCR_SET_FR(0);
1427 FPSCR_SET_FI(0);
1428 /* fpscr_FPRF unchanged */
1429 }
1430 else {
1431 /* invalid operation exception disabled */
1432 if (instruction_is_convert_to_64bit) {
1433 error("oopsi");
1434 }
1435 else if (instruction_is_convert_to_32bit) {
1436 error("oopsi");
1437 }
1438 else { /* arrith, frsp */
1439 *frt = select_qnan(fra, frb, frc,
1440 instruction_is_frsp, 1/*generate*/, single);
1441 FPSCR_SET_FR(0);
1442 FPSCR_SET_FI(0);
1443 FPSCR_SET_FPRF(fpscr_rf_quiet_nan);
1444 }
1445 }
1446
1447
1448
1449
1450# detect divide by zero
1451int::function::is_invalid_zero_divide:cpu *processor, unsigned_word cia, unsigned64 fra, unsigned64 frb, int single
1452 int fail = 0;
1453 if (is_zero (frb)) {
1454 FPSCR_SET_ZX (1);
1455 fail = 1;
1456 }
1457 return fail;
1458
1459
1460
1461
1462# handle case of invalid operation
1463void::function::invalid_zero_divide_operation:cpu *processor, unsigned_word cia, unsigned64 *frt, unsigned64 fra, unsigned64 frb, int single
1464 if (FPSCR & fpscr_ze) {
1465 /* zero-divide exception enabled */
1466 /* FRT unchaged */
1467 FPSCR_SET_FR(0);
1468 FPSCR_SET_FI(0);
1469 /* fpscr_FPRF unchanged */
1470 }
1471 else {
1472 /* zero-divide exception disabled */
1473 FPSCR_SET_FR(0);
1474 FPSCR_SET_FI(0);
1475 if ((sign (fra) < 0 && sign (frb) < 0)
1476 || (sign (fra) > 0 && sign (frb) > 0)) {
1477 *frt = MASK64 (1, 11); /* 0 : 2047 : 0..0 */
1478 FPSCR_SET_FPRF(fpscr_rf_pos_infinity);
1479 }
1480 else {
1481 *frt = MASK64 (0, 11); /* 1 : 2047 : 0..0 */
1482 FPSCR_SET_FPRF(fpscr_rf_neg_infinity);
1483 }
1484 }
1485
1486
1487
1488
1489
1490#
1491# 0.0.0.0 Illegal instruction used for kernel mode emulation
1492#
14930.0,6./,11./,16./,21./,31.1:X:::instruction_call
1494 if (!os_emul_instruction_call(processor, cia, real_addr(cia, 1)))
1495 program_interrupt(processor, cia,
1496 illegal_instruction_program_interrupt);
1497
1498#
1499# I.2.4.1 Branch Instructions
1500#
15010.18,6.LI,30.AA,31.LK:I:::Branch
1502*601: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1503*603: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1504*603e:PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1505*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
7a292a7a 1506 /* option_mpc860c0:
c906108c
SS
1507 No problem here because this branch is predicted taken (unconditional). */
1508 if (AA) NIA = IEA(EXTS(LI_0b00));
1509 else NIA = IEA(CIA + EXTS(LI_0b00));
1510 if (LK) LR = (spreg)CIA+4;
1511 if (CURRENT_MODEL_ISSUE > 0)
1512 model_branches(cpu_model(processor), 1, -1);
1513
15140.16,6.BO,11.BI,16.BD,30.AA,31.LK:B:::Branch Conditional
1515*601: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1516*603: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1517*603e:PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1518*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1519 int M, ctr_ok, cond_ok, succeed;
1520 if (CURRENT_MODEL_ISSUE > 0 && ! BO{0})
1521 model_wait_for_cr(cpu_model(processor), BIT32_BI);
1522 if (is_64bit_implementation && is_64bit_mode) M = 0;
1523 else M = 32;
1524 if (!BO{2}) CTR = CTR - 1;
1525 ctr_ok = BO{2} || ((MASKED(CTR, M, 63) != 0) != (BO{3}));
1526 cond_ok = BO{0} || ((CR{BI}) == (BO{1}));
1527 if (ctr_ok && cond_ok) {
1528 if (AA) NIA = IEA(EXTS(BD_0b00));
1529 else NIA = IEA(CIA + EXTS(BD_0b00));
1530 succeed = 1;
1531 }
1532 else
1533 succeed = 0;
1534 if (LK) LR = (spreg)IEA(CIA + 4);
7a292a7a
SS
1535 if (option_mpc860c0 && (!BO{0} || !BO{2}) && !BO{4}) {
1536 /* This branch is predicted as "normal".
c906108c
SS
1537 If this is a forward branch and it is near the end of a page,
1538 we've detected a problematic branch. */
1539 if (succeed && NIA > CIA) {
a49dd19e 1540 if (MPC860C0_PAGE_SIZE - (CIA & (MPC860C0_PAGE_SIZE-1)) <= option_mpc860c0)
c906108c
SS
1541 program_interrupt(processor, cia, mpc860c0_instruction_program_interrupt);
1542 }
1543 }
c906108c
SS
1544 if (CURRENT_MODEL_ISSUE > 0)
1545 model_branches(cpu_model(processor), succeed, BO);
1546 if (! BO{0}) {
1547 int reverse;
1548 if (BO{4}) { /* branch prediction bit set, reverse sense of test */
1549 reverse = EXTS(BD_0b00) < 0;
1550 } else { /* branch prediction bit not set */
1551 reverse = EXTS(BD_0b00) >= 0;
1552 }
1553 if (CURRENT_MODEL_ISSUE > 0)
1554 model_branch_predict(cpu_model(processor), reverse ? !succeed : succeed);
1555 }
1556
15570.19,6.BO,11.BI,16./,21.16,31.LK:XL:::Branch Conditional to Link Register
1558*601: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1559*603: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1560*603e:PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1561*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1562 int M, ctr_ok, cond_ok, succeed;
1563 if (is_64bit_implementation && is_64bit_mode) M = 0;
1564 else M = 32;
1565 if (CURRENT_MODEL_ISSUE > 0 && ! BO{0})
1566 model_wait_for_cr(cpu_model(processor), BIT32_BI);
1567 if (!BO{2}) CTR = CTR - 1;
1568 ctr_ok = BO{2} || ((MASKED(CTR, M, 63) != 0) != BO{3});
1569 cond_ok = BO{0} || (CR{BI} == BO{1});
1570 if (ctr_ok && cond_ok) {
1571 NIA = IEA(LR_0b00);
1572 succeed = 1;
1573 }
1574 else
1575 succeed = 0;
1576 if (LK) LR = (spreg)IEA(CIA + 4);
7a292a7a 1577 if (option_mpc860c0 && (!BO{0} || !BO{2}) && !BO{4}) {
c906108c
SS
1578 /* This branch is predicted as not-taken.
1579 If this is a forward branch and it is near the end of a page,
1580 we've detected a problematic branch. */
1581 if (succeed && NIA > CIA) {
a49dd19e 1582 if (MPC860C0_PAGE_SIZE - (CIA & (MPC860C0_PAGE_SIZE-1)) <= option_mpc860c0)
c906108c
SS
1583 program_interrupt(processor, cia, mpc860c0_instruction_program_interrupt);
1584 }
1585 }
c906108c
SS
1586 if (CURRENT_MODEL_ISSUE > 0) {
1587 model_branches(cpu_model(processor), succeed, BO);
1588 if (! BO{0})
1589 model_branch_predict(cpu_model(processor), BO{4} ? !succeed : succeed);
1590 }
1591
15920.19,6.BO,11.BI,16./,21.528,31.LK:XL:::Branch Conditional to Count Register
1593*601: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1594*603: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1595*603e:PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1596*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1597 int cond_ok, succeed;
1598 if (CURRENT_MODEL_ISSUE > 0 && ! BO{0})
1599 model_wait_for_cr(cpu_model(processor), BIT32_BI);
1600 cond_ok = BO{0} || (CR{BI} == BO{1});
1601 if (cond_ok) {
1602 NIA = IEA(CTR_0b00);
1603 succeed = 1;
1604 }
1605 else
1606 succeed = 0;
1607 if (LK) LR = (spreg)IEA(CIA + 4);
7a292a7a 1608 if (option_mpc860c0 && (!BO{0} || !BO{2}) && !BO{4}) {
c906108c
SS
1609 /* This branch is predicted as not-taken.
1610 If this is a forward branch and it is near the end of a page,
1611 we've detected a problematic branch. */
1612 if (succeed && NIA > CIA) {
a49dd19e 1613 if (MPC860C0_PAGE_SIZE - (CIA & (MPC860C0_PAGE_SIZE-1)) <= option_mpc860c0)
c906108c
SS
1614 program_interrupt(processor, cia, mpc860c0_instruction_program_interrupt);
1615 }
1616 }
c906108c
SS
1617 if (CURRENT_MODEL_ISSUE > 0) {
1618 model_branches(cpu_model(processor), succeed, BO);
1619 if (! BO{0})
1620 model_branch_predict(cpu_model(processor), BO{4} ? !succeed : succeed);
1621 }
1622
1623#
1624# I.2.4.2 System Call Instruction
1625#
16260.17,6./,11./,16./,30.1,31./:SC:::System Call
1627*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1628*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 3, 3, 0
1629*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 3, 3, 0
1630*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
1631 if (CURRENT_MODEL_ISSUE > 0)
1632 model_serialize(MY_INDEX, cpu_model(processor));
1633 system_call_interrupt(processor, cia);
1634
1635#
1636# I.2.4.3 Condition Register Logical Instructions
1637#
16380.19,6.BT,11.BA,16.BB,21.257,31./:XL::crand:Condition Register AND
1639*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1640*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1641*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1642*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1643 BLIT32(CR, BT, CR{BA} && CR{BB});
1644 PPC_INSN_CR(BT_BITMASK, BA_BITMASK | BB_BITMASK);
1645
16460.19,6.BT,11.BA,16.BB,21.449,31./:XL::cror:Condition Register OR
1647*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1648*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1649*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1650*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1651 BLIT32(CR, BT, CR{BA} || CR{BB});
1652 PPC_INSN_CR(BT_BITMASK, BA_BITMASK | BB_BITMASK);
1653
16540.19,6.BT,11.BA,16.BB,21.193,31./:XL::crxor:Condition Register XOR
1655*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1656*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1657*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1658*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1659 BLIT32(CR, BT, CR{BA} != CR{BB});
1660 PPC_INSN_CR(BT_BITMASK, BA_BITMASK | BB_BITMASK);
1661
16620.19,6.BT,11.BA,16.BB,21.225,31./:XL::crnand:Condition Register NAND
1663*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1664*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1665*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1666*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1667 BLIT32(CR, BT, !(CR{BA} && CR{BB}));
1668 PPC_INSN_CR(BT_BITMASK, BA_BITMASK | BB_BITMASK);
1669
16700.19,6.BT,11.BA,16.BB,21.33,31./:XL::crnor:Condition Register NOR
1671*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1672*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1673*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1674*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1675 BLIT32(CR, BT, !(CR{BA} || CR{BB}));
1676 PPC_INSN_CR(BT_BITMASK, BA_BITMASK | BB_BITMASK);
1677
16780.19,6.BT,11.BA,16.BB,21.289,31./:XL::creqv:Condition Register Equivalent
1679*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1680*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1681*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1682*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1683 BLIT32(CR, BT, CR{BA} == CR{BB});
1684 PPC_INSN_CR(BT_BITMASK, BA_BITMASK | BB_BITMASK);
1685
16860.19,6.BT,11.BA,16.BB,21.129,31./:XL::crandc:Condition Register AND with Complement
1687*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1688*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1689*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1690*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1691 BLIT32(CR, BT, CR{BA} && !CR{BB});
1692 PPC_INSN_CR(BT_BITMASK, BA_BITMASK | BB_BITMASK);
1693
16940.19,6.BT,11.BA,16.BB,21.417,31./:XL::crorc:Condition Register OR with Complement
1695*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1696*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1697*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1698*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1699 BLIT32(CR, BT, CR{BA} || !CR{BB});
1700 PPC_INSN_CR(BT_BITMASK, BA_BITMASK | BB_BITMASK);
1701
1702#
1703# I.2.4.4 Condition Register Field Instruction
1704#
17050.19,6.BF,9./,11.BFA,14./,16./,21.0,31./:XL:::Move Condition Register Field
1706*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
1707*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1708*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
1709*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 1, 0
1710 MBLIT32(CR, 4*BF, 4*BF+3, EXTRACTED32(CR, 4*BFA, 4*BFA+3));
1711 PPC_INSN_CR(BF_BITMASK, 1 << BFA);
1712
1713
1714#
1715# I.3.3.2 Fixed-Point Load Instructions
1716#
1717
17180.34,6.RT,11.RA,16.D:D:::Load Byte and Zero
1719*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1720*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1721*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1722*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1723 unsigned_word b;
1724 unsigned_word EA;
1725 if (RA_is_0) b = 0;
1726 else b = *rA;
1727 EA = b + EXTS(D);
1728 *rT = MEM(unsigned, EA, 1);
1729 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1), 0);
1730
1731
17320.31,6.RT,11.RA,16.RB,21.87,31./:X:::Load Byte and Zero Indexed
1733*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1734*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1735*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1736*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1737 unsigned_word b;
1738 unsigned_word EA;
1739 if (RA_is_0) b = 0;
1740 else b = *rA;
1741 EA = b + *rB;
1742 *rT = MEM(unsigned, EA, 1);
1743 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
1744
17450.35,6.RT,11.RA,16.D:D:::Load Byte and Zero with Update
1746*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1747*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1748*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1749*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1750 unsigned_word EA;
1751 if (RA_is_0 || RA == RT)
1752 program_interrupt(processor, cia,
1753 illegal_instruction_program_interrupt);
1754 EA = *rA + EXTS(D);
1755 *rT = MEM(unsigned, EA, 1);
1756 *rA = EA;
1757 PPC_INSN_INT(RT_BITMASK | RA_BITMASK, RA_BITMASK, 0);
1758
17590.31,6.RT,11.RA,16.RB,21.119,31./:X:::Load Byte and Zero with Update Indexed
1760*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1761*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1762*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1763*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1764 unsigned_word EA;
1765 if (RA_is_0 || RA == RT)
1766 program_interrupt(processor, cia,
1767 illegal_instruction_program_interrupt);
1768 EA = *rA + *rB;
1769 *rT = MEM(unsigned, EA, 1);
1770 *rA = EA;
1771 PPC_INSN_INT(RT_BITMASK | RA_BITMASK, RA_BITMASK | RB_BITMASK, 0);
1772
17730.40,6.RT,11.RA,16.D:D:::Load Halfword and Zero
1774*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1775*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1776*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1777*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1778 unsigned_word b;
1779 unsigned_word EA;
1780 if (RA_is_0) b = 0;
1781 else b = *rA;
1782 EA = b + EXTS(D);
1783 *rT = MEM(unsigned, EA, 2);
1784 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1), 0);
1785
17860.31,6.RT,11.RA,16.RB,21.279,31./:X:::Load Halfword and Zero Indexed
1787*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1788*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1789*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1790*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1791 unsigned_word b;
1792 unsigned_word EA;
1793 if (RA_is_0) b = 0;
1794 else b = *rA;
1795 EA = b + *rB;
1796 *rT = MEM(unsigned, EA, 2);
1797 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
1798
17990.41,6.RT,11.RA,16.D:D:::Load Halfword and Zero with Update
1800*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1801*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1802*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1803*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1804 unsigned_word EA;
1805 if (RA_is_0 || RA == RT)
1806 program_interrupt(processor, cia,
1807 illegal_instruction_program_interrupt);
1808 EA = *rA + EXTS(D);
1809 *rT = MEM(unsigned, EA, 2);
1810 *rA = EA;
1811 PPC_INSN_INT(RT_BITMASK | RA_BITMASK, RA_BITMASK, 0);
1812
18130.31,6.RT,11.RA,16.RB,21.311,31./:X:::Load Halfword and Zero with Update Indexed
1814*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1815*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1816*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1817*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1818 unsigned_word EA;
1819 if (RA_is_0 || RA == RT)
1820 program_interrupt(processor, cia,
1821 illegal_instruction_program_interrupt);
1822 EA = *rA + *rB;
1823 *rT = MEM(unsigned, EA, 2);
1824 *rA = EA;
1825 PPC_INSN_INT(RT_BITMASK | RA_BITMASK, RA_BITMASK | RB_BITMASK, 0);
1826
18270.42,6.RT,11.RA,16.D:D:::Load Halfword Algebraic
1828*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1829*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1830*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1831*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1832 unsigned_word b;
1833 unsigned_word EA;
1834 if (RA_is_0) b = 0;
1835 else b = *rA;
1836 EA = b + EXTS(D);
1837 *rT = MEM(signed, EA, 2);
1838 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1), 0);
1839
18400.31,6.RT,11.RA,16.RB,21.343,31./:X:::Load Halfword Algebraic Indexed
1841*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1842*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1843*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1844*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1845 unsigned_word b;
1846 unsigned_word EA;
1847 if (RA_is_0) b = 0;
1848 else b = *rA;
1849 EA = b + *rB;
1850 *rT = MEM(signed, EA, 2);
1851 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
1852
18530.43,6.RT,11.RA,16.D:D:::Load Halfword Algebraic with Update
1854*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1855*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1856*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1857*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1858 unsigned_word EA;
1859 if (RA_is_0 || RA == RT)
1860 program_interrupt(processor, cia,
1861 illegal_instruction_program_interrupt);
1862 EA = *rA + EXTS(D);
1863 *rT = MEM(signed, EA, 2);
1864 *rA = EA;
1865 PPC_INSN_INT(RT_BITMASK | RA_BITMASK, RA_BITMASK, 0);
1866
18670.31,6.RT,11.RA,16.RB,21.375,31./:X:::Load Halfword Algebraic with Update Indexed
1868*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1869*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1870*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1871*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1872 unsigned_word EA;
1873 if (RA_is_0 || RA == RT)
1874 program_interrupt(processor, cia,
1875 illegal_instruction_program_interrupt);
1876 EA = *rA + *rB;
1877 *rT = MEM(signed, EA, 2);
1878 *rA = EA;
1879 PPC_INSN_INT(RT_BITMASK | RA_BITMASK, RA_BITMASK | RB_BITMASK, 0);
1880
18810.32,6.RT,11.RA,16.D:D:::Load Word and Zero
1882*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1883*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1884*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1885*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1886 unsigned_word b;
1887 unsigned_word EA;
1888 if (RA_is_0) b = 0;
1889 else b = *rA;
1890 EA = b + EXTS(D);
1891 *rT = MEM(unsigned, EA, 4);
1892 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1), 0);
1893
18940.31,6.RT,11.RA,16.RB,21.23,31./:X:::Load Word and Zero Indexed
1895*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1896*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1897*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1898*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1899 unsigned_word b;
1900 unsigned_word EA;
1901 if (RA_is_0) b = 0;
1902 else b = *rA;
1903 EA = b + *rB;
1904 *rT = MEM(unsigned, EA, 4);
1905 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
1906
19070.33,6.RT,11.RA,16.D:D:::Load Word and Zero with Update
1908*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1909*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1910*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1911*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1912 unsigned_word EA;
1913 if (RA_is_0 || RA == RT)
1914 program_interrupt(processor, cia,
1915 illegal_instruction_program_interrupt);
1916 EA = *rA + EXTS(D);
1917 *rT = MEM(unsigned, EA, 4);
1918 *rA = EA;
1919 PPC_INSN_INT(RT_BITMASK | RA_BITMASK, RA_BITMASK, 0);
1920
19210.31,6.RT,11.RA,16.RB,21.55,31./:X:::Load Word and Zero with Update Indexed
1922*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 2, 0
1923*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1924*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1925*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
1926 unsigned_word EA;
1927 if (RA_is_0 || RA == RT)
1928 program_interrupt(processor, cia,
1929 illegal_instruction_program_interrupt);
1930 EA = *rA + *rB;
1931 *rT = MEM(unsigned, EA, 4);
1932 *rA = EA;
1933 PPC_INSN_INT(RT_BITMASK | RA_BITMASK, RA_BITMASK | RB_BITMASK, 0);
1934
19350.58,6.RT,11.RA,16.DS,30.2:DS:64::Load Word Algebraic
1936# unsigned_word b;
1937# unsigned_word EA;
1938# if (RA_is_0) b = 0;
1939# else b = *rA;
1940# EA = b + EXTS(DS_0b00);
1941# *rT = MEM(signed, EA, 4);
1942
19430.31,6.RT,11.RA,16.RB,21.341,31./:X:64::Load Word Algebraic Indexed
1944# unsigned_word b;
1945# unsigned_word EA;
1946# if (RA_is_0) b = 0;
1947# else b = *rA;
1948# EA = b + *rB;;
1949# *rT = MEM(signed, EA, 4);
1950
19510.31,6.RT,11.RA,16.RB,21.373,31./:X:64::Load Word Algebraic with Update Indexed
1952# unsigned_word EA;
1953# if (RA_is_0 || RA == RT)
1954# program_interrupt(processor, cia
1955# illegal_instruction_program_interrupt);
1956# EA = *rA + *rB;
1957# *rT = MEM(signed, EA, 4);
1958# *rA = EA;
1959
19600.58,6.RT,11.RA,16.DS,30.0:DS:64::Load Doubleword
1961# unsigned_word b;
1962# unsigned_word EA;
1963# if (RA_is_0) b = 0;
1964# else b = *rA;
1965# EA = b + EXTS(DS_0b00);
1966# *rT = MEM(unsigned, EA, 8);
1967
19680.31,6.RT,11.RA,16.RB,21.21,31./:X:64::Load Doubleword Indexed
1969# unsigned_word b;
1970# unsigned_word EA;
1971# if (RA_is_0) b = 0;
1972# else b = *rA;
1973# EA = b + *rB;
1974# *rT = MEM(unsigned, EA, 8);
1975
19760.58,6.RT,11.RA,16.DS,30.1:DS:64::Load Doubleword with Update
1977# unsigned_word EA;
1978# if (RA_is_0 || RA == RT)
1979# program_interrupt(processor, cia
1980# illegal_instruction_program_interrupt);
1981# EA = *rA + EXTS(DS_0b00);
1982# *rT = MEM(unsigned, EA, 8);
1983# *rA = EA;
1984
19850.31,6.RT,11.RA,16.RB,21.53,31./:DS:64::Load Doubleword with Update Indexed
1986# unsigned_word EA;
1987# if (RA_is_0 || RA == RT)
1988# program_interrupt(processor, cia
1989# illegal_instruction_program_interrupt);
1990# EA = *rA + *rB;
1991# *rT = MEM(unsigned, EA, 8);
1992# *rA = EA;
1993
1994
1995
1996#
1997# I.3.3.3 Fixed-Point Store Instructions
1998#
1999
20000.38,6.RS,11.RA,16.D:D:::Store Byte
2001*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2002*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2003*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2004*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2005 unsigned_word b;
2006 unsigned_word EA;
2007 if (RA_is_0) b = 0;
2008 else b = *rA;
2009 EA = b + EXTS(D);
2010 STORE(EA, 1, *rS);
2011 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RS_BITMASK, 0);
2012
20130.31,6.RS,11.RA,16.RB,21.215,31./:X:::Store Byte Indexed
2014*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2015*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2016*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2017*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2018 unsigned_word b;
2019 unsigned_word EA;
2020 if (RA_is_0) b = 0;
2021 else b = *rA;
2022 EA = b + *rB;
2023 STORE(EA, 1, *rS);
2024 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK | RS_BITMASK, 0);
2025
20260.39,6.RS,11.RA,16.D:D:::Store Byte with Update
2027*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2028*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2029*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2030*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2031 unsigned_word EA;
2032 if (RA_is_0)
2033 program_interrupt(processor, cia,
2034 illegal_instruction_program_interrupt);
2035 EA = *rA + EXTS(D);
2036 STORE(EA, 1, *rS);
2037 *rA = EA;
2038 PPC_INSN_INT(RA_BITMASK, RA_BITMASK | RS_BITMASK, 0);
2039
20400.31,6.RS,11.RA,16.RB,21.247,31./:X:::Store Byte with Update Indexed
2041*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2042*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2043*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2044*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2045 unsigned_word EA;
2046 if (RA_is_0)
2047 program_interrupt(processor, cia,
2048 illegal_instruction_program_interrupt);
2049 EA = *rA + *rB;
2050 STORE(EA, 1, *rS);
2051 *rA = EA;
2052 PPC_INSN_INT(RA_BITMASK, RA_BITMASK | RB_BITMASK | RS_BITMASK, 0);
2053
20540.44,6.RS,11.RA,16.D:D:::Store Half Word
2055*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2056*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2057*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2058*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2059 unsigned_word b;
2060 unsigned_word EA;
2061 if (RA_is_0) b = 0;
2062 else b = *rA;
2063 EA = b + EXTS(D);
2064 STORE(EA, 2, *rS);
2065 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RS_BITMASK, 0);
2066
20670.31,6.RS,11.RA,16.RB,21.407,31./:X:::Store Half Word Indexed
2068*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2069*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2070*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2071*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2072 unsigned_word b;
2073 unsigned_word EA;
2074 if (RA_is_0) b = 0;
2075 else b = *rA;
2076 EA = b + *rB;
2077 STORE(EA, 2, *rS);
2078 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK | RS_BITMASK, 0);
2079
20800.45,6.RS,11.RA,16.D:D:::Store Half Word with Update
2081*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2082*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2083*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2084*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2085 unsigned_word EA;
2086 if (RA_is_0)
2087 program_interrupt(processor, cia,
2088 illegal_instruction_program_interrupt);
2089 EA = *rA + EXTS(D);
2090 STORE(EA, 2, *rS);
2091 *rA = EA;
2092 PPC_INSN_INT(RA_BITMASK, RA_BITMASK | RS_BITMASK, 0);
2093
20940.31,6.RS,11.RA,16.RB,21.439,31./:X:::Store Half Word with Update Indexed
2095*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2096*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2097*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2098*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2099 unsigned_word EA;
2100 if (RA_is_0)
2101 program_interrupt(processor, cia,
2102 illegal_instruction_program_interrupt);
2103 EA = *rA + *rB;
2104 STORE(EA, 2, *rS);
2105 *rA = EA;
2106 PPC_INSN_INT(RA_BITMASK, RA_BITMASK | RB_BITMASK | RS_BITMASK, 0);
2107
21080.36,6.RS,11.RA,16.D:D:::Store Word
2109*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2110*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2111*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2112*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2113 unsigned_word b;
2114 unsigned_word EA;
2115 if (RA_is_0) b = 0;
2116 else b = *rA;
2117 EA = b + EXTS(D);
2118 STORE(EA, 4, *rS);
2119 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RS_BITMASK, 0);
2120
21210.31,6.RS,11.RA,16.RB,21.151,31./:X:::Store Word Indexed
2122*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2123*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2124*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2125*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2126 unsigned_word b;
2127 unsigned_word EA;
2128 if (RA_is_0) b = 0;
2129 else b = *rA;
2130 EA = b + *rB;
2131 STORE(EA, 4, *rS);
2132 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK | RS_BITMASK, 0);
2133
21340.37,6.RS,11.RA,16.D:D:::Store Word with Update
2135*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2136*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2137*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2138*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2139 unsigned_word EA;
2140 if (RA_is_0)
2141 program_interrupt(processor, cia,
2142 illegal_instruction_program_interrupt);
2143 EA = *rA + EXTS(D);
2144 STORE(EA, 4, *rS);
2145 *rA = EA;
2146 PPC_INSN_INT(RA_BITMASK, RA_BITMASK | RS_BITMASK, 0);
2147
21480.31,6.RS,11.RA,16.RB,21.183,31./:X:::Store Word with Update Indexed
2149*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2150*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2151*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2152*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2153 unsigned_word EA;
2154 if (RA_is_0)
2155 program_interrupt(processor, cia,
2156 illegal_instruction_program_interrupt);
2157 EA = *rA + *rB;
2158 STORE(EA, 4, *rS);
2159 *rA = EA;
2160 PPC_INSN_INT(RA_BITMASK, RA_BITMASK | RB_BITMASK | RS_BITMASK, 0);
2161
21620.62,6.RS,11.RA,16.DS,30.0:DS:64::Store Doubleword
2163# unsigned_word b;
2164# unsigned_word EA;
2165# if (RA_is_0) b = 0;
2166# else b = *rA;
2167# EA = b + EXTS(DS_0b00);
2168# STORE(EA, 8, *rS);
21690.31,6.RS,11.RA,16.RB,21.149,31./:X:64::Store Doubleword Indexed
2170# unsigned_word b;
2171# unsigned_word EA;
2172# if (RA_is_0) b = 0;
2173# else b = *rA;
2174# EA = b + *rB;
2175# STORE(EA, 8, *rS);
21760.62,6.RS,11.RA,16.DS,30.1:DS:64::Store Doubleword with Update
2177# unsigned_word EA;
2178# if (RA_is_0)
2179# program_interrupt(processor, cia
2180# illegal_instruction_program_interrupt);
2181# EA = *rA + EXTS(DS_0b00);
2182# STORE(EA, 8, *rS);
2183# *rA = EA;
21840.31,6.RS,11.RA,16.RB,21.181,31./:X:64::Store Doubleword with Update Indexed
2185# unsigned_word EA;
2186# if (RA_is_0)
2187# program_interrupt(processor, cia
2188# illegal_instruction_program_interrupt);
2189# EA = *rA + *rB;
2190# STORE(EA, 8, *rS);
2191# *rA = EA;
2192
2193
2194#
2195# I.3.3.4 Fixed-Point Load and Store with Byte Reversal Instructions
2196#
2197
21980.31,6.RT,11.RA,16.RB,21.790,31./:X:::Load Halfword Byte-Reverse Indexed
2199*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2200*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2201*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2202*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2203 unsigned_word b;
2204 unsigned_word EA;
2205 if (RA_is_0) b = 0;
2206 else b = *rA;
2207 EA = b + *rB;
2208 *rT = SWAP_2(MEM(unsigned, EA, 2));
2209 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
2210
22110.31,6.RT,11.RA,16.RB,21.534,31./:X:::Load Word Byte-Reverse Indexed
2212*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2213*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2214*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2215*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2216 unsigned_word b;
2217 unsigned_word EA;
2218 if (RA_is_0) b = 0;
2219 else b = *rA;
2220 EA = b + *rB;
2221 *rT = SWAP_4(MEM(unsigned, EA, 4));
2222 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
2223
22240.31,6.RS,11.RA,16.RB,21.918,31./:X:::Store Half Word Byte-Reversed Indexed
2225*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2226*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2227*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2228*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2229 unsigned_word b;
2230 unsigned_word EA;
2231 if (RA_is_0) b = 0;
2232 else b = *rA;
2233 EA = b + *rB;
2234 STORE(EA, 2, SWAP_2(*rS));
2235 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK | RS_BITMASK, 0);
2236
22370.31,6.RS,11.RA,16.RB,21.662,31./:X:::Store Word Byte-Reversed Indexed
2238*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2239*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2240*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
2241*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2242 unsigned_word b;
2243 unsigned_word EA;
2244 if (RA_is_0) b = 0;
2245 else b = *rA;
2246 EA = b + *rB;
2247 STORE(EA, 4, SWAP_4(*rS));
2248 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK | RS_BITMASK, 0);
2249
2250
2251#
2252# I.3.3.5 Fixed-Point Load and Store Multiple Instrctions
2253#
2254
22550.46,6.RT,11.RA,16.D:D:::Load Multiple Word
2256 unsigned_word EA;
2257 unsigned_word b;
2258 int r;
2259 if (RA_is_0) b = 0;
2260 else b = *rA;
2261 EA = b + EXTS(D);
2262 r = RT;
2263 if (RA >= r)
2264 program_interrupt(processor, cia,
2265 illegal_instruction_program_interrupt);
2266 if (CURRENT_ALIGNMENT == STRICT_ALIGNMENT || (EA % 4 != 0))
2267 alignment_interrupt(processor, cia, EA);
2268 while (r <= 31) {
2269 GPR(r) = MEM(unsigned, EA, 4);
2270 r = r + 1;
2271 EA = EA + 4;
2272 }
2273
22740.47,6.RS,11.RA,16.D:D:::Store Multiple Word
2275 unsigned_word EA;
2276 unsigned_word b;
2277 int r;
2278 if (RA_is_0) b = 0;
2279 else b = *rA;
2280 EA = b + EXTS(D);
2281 if (CURRENT_ALIGNMENT == STRICT_ALIGNMENT
2282 || (EA % 4 != 0))
2283 alignment_interrupt(processor, cia, EA);
2284 r = RS;
2285 while (r <= 31) {
2286 STORE(EA, 4, GPR(r));
2287 r = r + 1;
2288 EA = EA + 4;
2289 }
2290
2291
2292#
2293# I.3.3.6 Fixed-Point Move Assist Instructions
2294#
2295
22960.31,6.RT,11.RA,16.NB,21.597,31./:X:::Load String Word Immediate
2297 unsigned_word EA;
2298 int n;
2299 int r;
2300 int i;
2301 int nr;
2302 if (RA_is_0) EA = 0;
2303 else EA = *rA;
2304 if (NB == 0) n = 32;
2305 else n = NB;
2306 r = RT - 1;
2307 i = 32;
2308 nr = (n + 3) / 4;
2309 if ((RT + nr >= 32)
2310 ? (RA >= RT || RA < (RT + nr) % 32)
2311 : (RA >= RT && RA < RT + nr))
2312 program_interrupt(processor, cia,
2313 illegal_instruction_program_interrupt);
2314 if (CURRENT_ALIGNMENT == STRICT_ALIGNMENT)
2315 alignment_interrupt(processor, cia, EA);
2316 while (n > 0) {
2317 if (i == 32) {
2318 r = (r + 1) % 32;
2319 GPR(r) = 0;
2320 }
2321 GPR(r) |= INSERTED(MEM(unsigned, EA, 1), i, i+7);
21f86aab 2322 i = i + 8;
c906108c
SS
2323 if (i == 64) i = 32;
2324 EA = EA + 1;
2325 n = n - 1;
2326 }
2327
23280.31,6.RT,11.RA,16.RB,21.533,31./:X:::Load String Word Indexed
2329 unsigned_word EA;
2330 unsigned_word b;
2331 int n;
2332 int r;
2333 int i;
2334 int nr;
2335 if (RA_is_0) b = 0;
2336 else b = *rA;
2337 EA = b + *rB;
2338 n = EXTRACTED32(XER, 25, 31);
2339 r = RT - 1;
2340 i = 32;
2341 nr = (n + 3) / 4;
ec80ed80
AC
2342 if (((RT + nr >= 32)
2343 ? ((RA >= RT || RA < (RT + nr) % 32)
2344 || (RB >= RT || RB < (RT + nr) % 32))
2345 : ((RA >= RT && RA < RT + nr)
2346 || (RB >= RT && RB < RT + nr)))
c906108c
SS
2347 || (RT == RA || RT == RB))
2348 program_interrupt(processor, cia,
2349 illegal_instruction_program_interrupt);
2350 if (CURRENT_ALIGNMENT == STRICT_ALIGNMENT)
2351 alignment_interrupt(processor, cia, EA);
2352 while (n > 0) {
2353 if (i == 32) {
2354 r = (r + 1) % 32;
ec80ed80 2355 GPR(r) = 0;
c906108c
SS
2356 }
2357 GPR(r) |= INSERTED(MEM(unsigned, EA, 1), i, i+7);
2358 i = i + 8;
2359 if (i == 64) i = 32;
2360 EA = EA + 1;
2361 n = n - 1;
2362 }
2363
23640.31,6.RS,11.RA,16.NB,21.725,31./:X:::Store String Word Immedate
2365 unsigned_word EA;
2366 int n;
2367 int r;
2368 int i;
2369 if (RA_is_0) EA = 0;
2370 else EA = *rA;
2371 if (NB == 0) n = 32;
2372 else n = NB;
2373 r = RS - 1;
2374 i = 32;
2375 if (CURRENT_ALIGNMENT == STRICT_ALIGNMENT)
2376 alignment_interrupt(processor, cia, EA);
2377 while (n > 0) {
2378 if (i == 32) r = (r + 1) % 32;
2379 STORE(EA, 1, EXTRACTED(GPR(r), i, i+7));
2380 i = i + 8;
2381 if (i == 64) i = 32;
2382 EA = EA + 1;
2383 n = n - 1;
2384 }
2385
23860.31,6.RS,11.RA,16.RB,21.661,31./:X:::Store String Word Indexed
2387 unsigned_word EA;
2388 unsigned_word b;
2389 int n;
2390 int r;
2391 int i;
2392 if (RA_is_0) b = 0;
2393 else b = *rA;
2394 EA = b + *rB;
2395 if (CURRENT_ALIGNMENT == STRICT_ALIGNMENT)
2396 alignment_interrupt(processor, cia, EA);
2397 n = EXTRACTED32(XER, 25, 31);
2398 r = RS - 1;
2399 i = 32;
2400 while (n > 0) {
2401 if (i == 32) r = (r + 1) % 32;
2402 STORE(EA, 1, EXTRACTED(GPR(r), i, i+7));
2403 i = i + 8;
2404 if (i == 64) i = 32;
2405 EA = EA + 1;
2406 n = n - 1;
2407 }
2408
2409
2410#
2411# I.3.3.7 Storage Synchronization Instructions
2412#
2413# HACK: Rather than monitor addresses looking for a reason
2414# to cancel a reservation. This code instead keeps
2415# a copy of the data read from memory. Before performing
2416# a store, the memory area is checked to see if it has
2417# been changed.
24180.31,6.RT,11.RA,16.RB,21.20,31./:X:::Load Word And Reserve Indexed
2419*601: PPC_UNIT_IU, PPC_UNIT_IU, 2, 2, 0
2420*603: PPC_UNIT_LSU, PPC_UNIT_IU, 1, 2, 0
2421*603e:PPC_UNIT_LSU, PPC_UNIT_IU, 1, 2, 0
2422*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
2423 unsigned_word b;
2424 unsigned_word EA;
2425 if (RA_is_0) b = 0;
2426 else b = *rA;
2427 EA = b + *rB;
2428 RESERVE = 1;
2429 RESERVE_ADDR = real_addr(EA, 1/*is-read?*/);
2430 RESERVE_DATA = MEM(unsigned, EA, 4);
2431 *rT = RESERVE_DATA;
2432 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
2433
24340.31,6.RT,11.RA,16.RB,21.84,31./:X:64::Load Doubleword And Reserve Indexed
2435 unsigned_word b;
2436 unsigned_word EA;
2437 if (RA_is_0) b = 0;
2438 else b = *rA;
2439 EA = b + *rB;
2440 RESERVE = 1;
2441 RESERVE_ADDR = real_addr(EA, 1/*is-read?*/);
2442 RESERVE_DATA = MEM(unsigned, EA, 8);
2443 *rT = RESERVE_DATA;
2444 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
2445
24460.31,6.RS,11.RA,16.RB,21.150,31.1:X:::Store Word Conditional Indexed
2447*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2448*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 8, 8, 0
2449*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 8, 8, 0
2450*604: PPC_UNIT_BPU, PPC_UNIT_BPU, 1, 3, 0
2451 unsigned_word b;
2452 unsigned_word EA;
2453 if (RA_is_0) b = 0;
2454 else b = *rA;
2455 EA = b + *rB;
2456 if (RESERVE) {
2457 if (RESERVE_ADDR == real_addr(EA, 0/*is-read?*/)
2458 && /*HACK*/ RESERVE_DATA == MEM(unsigned, EA, 4)) {
2459 STORE(EA, 4, *rS);
2460 CR_SET_XER_SO(0, cr_i_zero);
2461 }
2462 else {
2463 /* ment to randomly to store, we never do! */
2464 CR_SET_XER_SO(0, 0);
2465 }
2466 RESERVE = 0;
2467 }
2468 else {
2469 CR_SET_XER_SO(0, 0);
2470 }
2471 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK | RS_BITMASK, 1/*Rc*/);
2472
24730.31,6.RS,11.RA,16.RB,21.214,31.1:X:64::Store Doubleword Conditional Indexed
2474 unsigned_word b;
2475 unsigned_word EA;
2476 if (RA_is_0) b = 0;
2477 else b = *rA;
2478 EA = b + *rB;
2479 if (RESERVE) {
2480 if (RESERVE_ADDR == real_addr(EA, 0/*is-read?*/)
2481 && /*HACK*/ RESERVE_DATA == MEM(unsigned, EA, 8)) {
2482 STORE(EA, 8, *rS);
2483 CR_SET_XER_SO(0, cr_i_zero);
2484 }
2485 else {
2486 /* ment to randomly to store, we never do */
2487 CR_SET_XER_SO(0, 0);
2488 }
2489 RESERVE = 0;
2490 }
2491 else {
2492 CR_SET_XER_SO(0, 0);
2493 }
2494 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK | RS_BITMASK, 1/*Rc*/);
2495
7631938e 24960.31,6./,9.L,11./,16./,21.598,31./:X::sync:Synchronize
c906108c
SS
2497*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2498*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
2499*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
2500*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 1, 0
2501 /* do nothing */
2502
2503
2504#
2505# I.3.3.9 Fixed-Point Arithmetic Instructions
2506#
2507
25080.14,6.RT,11.RA,16.SI:D:::Add Immediate
2509*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2510*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2511*603e:PPC_UNIT_IU, PPC_UNIT_SRU, 1, 1, 0
2512*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2513 if (RA_is_0) *rT = EXTS(SI);
2514 else *rT = *rA + EXTS(SI);
2515 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rT, (long)*rT));
2516 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1), 0);
2517
25180.15,6.RT,11.RA,16.SI:D:::Add Immediate Shifted
2519*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2520*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2521*603e:PPC_UNIT_IU, PPC_UNIT_SRU, 1, 1, 0
2522*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2523 if (RA_is_0) *rT = EXTS(SI) << 16;
2524 else *rT = *rA + (EXTS(SI) << 16);
2525 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rT, (long)*rT));
2526 PPC_INSN_INT(RT_BITMASK, (RA_BITMASK & ~1), 0);
2527
25280.31,6.RT,11.RA,16.RB,21.OE,22.266,31.Rc:XO:::Add
2529*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2530*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2531*603e:PPC_UNIT_IU, PPC_UNIT_SRU, 1, 1, 0
2532*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2533 ALU_BEGIN(*rA);
2534 ALU_ADD(*rB);
2535 ALU_END(*rT, 0/*CA*/, OE, Rc);
2536 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2537
25380.31,6.RT,11.RA,16.RB,21.OE,22.40,31.Rc:XO:::Subtract From
2539*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2540*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2541*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2542*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2543 ALU_BEGIN(*rA);
2544 ALU_NOT;
2545 ALU_ADD(*rB);
2546 ALU_ADD(1);
2547 ALU_END(*rT, 0/*CA*/, OE, Rc);
2548 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2549
25500.12,6.RT,11.RA,16.SI:D:::Add Immediate Carrying
2551*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2552*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2553*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2554*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2555 ALU_BEGIN(*rA);
2556 ALU_ADD(EXTS(SI));
2557 ALU_END(*rT, 1/*CA*/, 0/*OE*/, 0/*Rc*/);
2558 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, 0/*Rc*/);
2559
25600.13,6.RT,11.RA,16.SI:D:::Add Immediate Carrying and Record
2561*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2562*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2563*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2564*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2565 ALU_BEGIN(*rA);
2566 ALU_ADD(EXTS(SI));
2567 ALU_END(*rT, 1/*CA*/, 0/*OE*/, 1/*Rc*/);
2568 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, 1/*Rc*/);
2569
25700.8,6.RT,11.RA,16.SI:D:::Subtract From Immediate Carrying
2571*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2572*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2573*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2574*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2575 ALU_BEGIN(*rA);
2576 ALU_NOT;
2577 ALU_ADD(EXTS(SI));
2578 ALU_ADD(1);
2579 ALU_END(*rT, 1/*CA*/, 0/*OE*/, 0/*Rc*/);
2580 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, 0/*Rc*/);
2581
25820.31,6.RT,11.RA,16.RB,21.OE,22.10,31.Rc:XO:::Add Carrying
2583*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2584*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2585*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2586*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2587 ALU_BEGIN(*rA);
2588 ALU_ADD(*rB);
2589 ALU_END(*rT, 1/*CA*/, OE, Rc);
2590 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2591
25920.31,6.RT,11.RA,16.RB,21.OE,22.8,31.Rc:XO:::Subtract From Carrying
2593*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2594*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2595*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2596*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2597 /* RT <- ~RA + RB + 1 === RT <- RB - RA */
2598 ALU_BEGIN(*rA);
2599 ALU_NOT;
2600 ALU_ADD(*rB);
2601 ALU_ADD(1);
2602 ALU_END(*rT, 1/*CA*/, OE, Rc);
2603 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2604
26050.31,6.RT,11.RA,16.RB,21.OE,22.138,31.Rc:XO:::Add Extended
2606*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2607*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2608*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2609*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2610 ALU_BEGIN(*rA);
2611 ALU_ADD(*rB);
2612 ALU_ADD_CA;
2613 ALU_END(*rT, 1/*CA*/, OE, Rc);
2614 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2615
26160.31,6.RT,11.RA,16.RB,21.OE,22.136,31.Rc:XO:::Subtract From Extended
2617*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2618*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2619*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2620*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2621 ALU_BEGIN(*rA);
2622 ALU_NOT;
2623 ALU_ADD(*rB);
2624 ALU_ADD_CA;
2625 ALU_END(*rT, 1/*CA*/, OE, Rc);
2626 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2627
26280.31,6.RT,11.RA,16./,21.OE,22.234,31.Rc:XO:::Add to Minus One Extended
2629*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2630*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2631*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2632*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2633 ALU_BEGIN(*rA);
2634 ALU_ADD_CA;
2635 ALU_ADD(-1);
2636 ALU_END(*rT, 1/*CA*/, OE, Rc);
2637 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, Rc);
2638
26390.31,6.RT,11.RA,16./,21.OE,22.232,31.Rc:XO:::Subtract From Minus One Extended
2640*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2641*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2642*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2643*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2644 ALU_BEGIN(*rA);
2645 ALU_NOT;
2646 ALU_ADD_CA;
2647 ALU_ADD(-1);
2648 ALU_END(*rT, 1/*CA*/, OE, Rc);
2649 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, Rc);
2650
26510.31,6.RT,11.RA,16./,21.OE,22.202,31.Rc:XO::addze:Add to Zero Extended
2652*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2653*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2654*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2655*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2656 ALU_BEGIN(*rA);
2657 ALU_ADD_CA;
2658 ALU_END(*rT, 1/*CA*/, OE, Rc);
2659 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, Rc);
2660
26610.31,6.RT,11.RA,16./,21.OE,22.200,31.Rc:XO:::Subtract from Zero Extended
2662*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2663*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2664*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2665*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2666 ALU_BEGIN(*rA);
2667 ALU_NOT;
2668 ALU_ADD_CA;
2669 ALU_END(*rT, 1/*CA*/, OE, Rc);
2670 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, Rc);
2671
26720.31,6.RT,11.RA,16./,21.OE,22.104,31.Rc:XO:::Negate
2673*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2674*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2675*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2676*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2677 ALU_BEGIN(*rA);
2678 ALU_NOT;
2679 ALU_ADD(1);
2680 ALU_END(*rT,0/*CA*/,OE,Rc);
2681 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, Rc);
2682
26830.7,6.RT,11.RA,16.SI:D::mulli:Multiply Low Immediate
2684*601: PPC_UNIT_IU, PPC_UNIT_IU, 5, 5, 0
2685*603: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
2686*603e:PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
2687*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 3, 3, 0
2688 signed_word prod = *rA * EXTS(SI);
2689 *rT = prod;
2690 PPC_INSN_INT(RT_BITMASK, RA_BITMASK, 0/*Rc*/);
2691
26920.31,6.RT,11.RA,16.RB,21.OE,22.233,31.Rc:D:64::Multiply Low Doubleword
2693
26940.31,6.RT,11.RA,16.RB,21.OE,22.235,31.Rc:XO::mullw:Multiply Low Word
2695*601: PPC_UNIT_IU, PPC_UNIT_IU, 5, 5, 0
2696*603: PPC_UNIT_IU, PPC_UNIT_IU, 5, 5, 0
2697*603e:PPC_UNIT_IU, PPC_UNIT_IU, 5, 5, 0
2698*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 4, 4, 0
2699 signed64 a = (signed32)(*rA);
2700 signed64 b = (signed32)(*rB);
2701 signed64 prod = a * b;
2702 signed_word t = prod;
2703 *rT = *rA * *rB;
2704 if (t != prod && OE)
2705 XER |= (xer_overflow | xer_summary_overflow);
2706 CR0_COMPARE(t, 0, Rc);
2707 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2708
27090.31,6.RT,11.RA,16.RB,21./,22.73,31.Rc:XO:64::Multiply High Doubleword
2710
27110.31,6.RT,11.RA,16.RB,21./,22.75,31.Rc:XO::mulhw:Multiply High Word
2712*601: PPC_UNIT_IU, PPC_UNIT_IU, 5, 5, 0
2713*603: PPC_UNIT_IU, PPC_UNIT_IU, 5, 5, 0
2714*603e:PPC_UNIT_IU, PPC_UNIT_IU, 5, 5, 0
2715*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 4, 4, 0
2716 signed64 a = (signed32)(*rA);
2717 signed64 b = (signed32)(*rB);
2718 signed64 prod = a * b;
2719 signed_word t = EXTRACTED64(prod, 0, 31);
2720 *rT = t;
2721 CR0_COMPARE(t, 0, Rc);
2722 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2723
27240.31,6.RT,11.RA,16.RB,21./,22.9,31.Rc:XO:64::Multiply High Doubleword Unsigned
2725
27260.31,6.RT,11.RA,16.RB,21./,22.11,31.Rc:XO::mulhwu:Multiply High Word Unsigned
2727*601: PPC_UNIT_IU, PPC_UNIT_IU, 10, 10, 0
2728*603: PPC_UNIT_IU, PPC_UNIT_IU, 6, 6, 0
2729*603e:PPC_UNIT_IU, PPC_UNIT_IU, 6, 6, 0
2730*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 4, 4, 0
2731 unsigned64 a = (unsigned32)(*rA);
2732 unsigned64 b = (unsigned32)(*rB);
2733 unsigned64 prod = a * b;
2734 signed_word t = EXTRACTED64(prod, 0, 31);
2735 *rT = t;
2736 CR0_COMPARE(t, 0, Rc);
2737 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2738
27390.31,6.RT,11.RA,16.RB,21.OE,22.489,31.Rc:XO:64::Divide Doubleword
2740
27410.31,6.RT,11.RA,16.RB,21.OE,22.491,31.Rc:XO::divw:Divide Word
2742*601: PPC_UNIT_IU, PPC_UNIT_IU, 36, 36, 0
2743*603: PPC_UNIT_IU, PPC_UNIT_IU, 37, 37, 0
2744*603e:PPC_UNIT_IU, PPC_UNIT_IU, 37, 37, 0
2745*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 20, 20, 0
2746 signed64 dividend = (signed32)(*rA);
2747 signed64 divisor = (signed32)(*rB);
2748 if (divisor == 0 /* nb 0x8000..0 is sign extended */
2749 || (dividend == 0x80000000 && divisor == -1)) {
2750 if (OE)
2751 XER |= (xer_overflow | xer_summary_overflow);
2752 CR0_COMPARE(0, 0, Rc);
2753 }
2754 else {
2755 signed64 quotent = dividend / divisor;
2756 *rT = quotent;
2757 CR0_COMPARE((signed_word)quotent, 0, Rc);
2758 }
2759 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2760
27610.31,6.RT,11.RA,16.RB,21.OE,22.457,31.Rc:XO:64::Divide Doubleword Unsigned
2762
27630.31,6.RT,11.RA,16.RB,21.OE,22.459,31.Rc:XO::divwu:Divide Word Unsigned
2764*601: PPC_UNIT_IU, PPC_UNIT_IU, 36, 36, 0
2765*603: PPC_UNIT_IU, PPC_UNIT_IU, 37, 37, 0
2766*603e:PPC_UNIT_IU, PPC_UNIT_IU, 37, 37, 0
2767*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 20, 20, 0
2768 unsigned64 dividend = (unsigned32)(*rA);
2769 unsigned64 divisor = (unsigned32)(*rB);
2770 if (divisor == 0) {
2771 if (OE)
2772 XER |= (xer_overflow | xer_summary_overflow);
2773 CR0_COMPARE(0, 0, Rc);
2774 }
2775 else {
2776 unsigned64 quotent = dividend / divisor;
2777 *rT = quotent;
2778 CR0_COMPARE((signed_word)quotent, 0, Rc);
2779 }
2780 PPC_INSN_INT(RT_BITMASK, RA_BITMASK | RB_BITMASK, Rc);
2781
2782
2783#
2784# I.3.3.10 Fixed-Point Compare Instructions
2785#
2786
27870.11,6.BF,9./,10.L,11.RA,16.SI:D:::Compare Immediate
2788*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2789*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2790*603e:PPC_UNIT_IU, PPC_UNIT_SRU, 1, 1, 0
2791*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2792 if (!is_64bit_mode && L)
2793 program_interrupt(processor, cia,
2794 illegal_instruction_program_interrupt);
2795 else {
2796 signed_word a;
2797 signed_word b = EXTS(SI);
2798 if (L == 0)
2799 a = EXTENDED(*rA);
2800 else
2801 a = *rA;
2802 CR_COMPARE(BF, a, b);
2803 }
2804 PPC_INSN_INT_CR(0, RA_BITMASK, BF_BITMASK);
2805
28060.31,6.BF,9./,10.L,11.RA,16.RB,21.0,31./:X:::Compare
2807*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2808*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2809*603e:PPC_UNIT_IU, PPC_UNIT_SRU, 1, 1, 0
2810*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2811 if (!is_64bit_mode && L)
2812 program_interrupt(processor, cia,
2813 illegal_instruction_program_interrupt);
2814 else {
2815 signed_word a;
2816 signed_word b;
2817 if (L == 0) {
2818 a = EXTENDED(*rA);
2819 b = EXTENDED(*rB);
2820 }
2821 else {
2822 a = *rA;
2823 b = *rB;
2824 }
2825 CR_COMPARE(BF, a, b);
2826 }
2827 PPC_INSN_INT_CR(0, RA_BITMASK | RB_BITMASK, BF_BITMASK);
2828
28290.10,6.BF,9./,10.L,11.RA,16.UI:D:::Compare Logical Immediate
2830*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2831*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2832*603e:PPC_UNIT_IU, PPC_UNIT_SRU, 1, 1, 0
2833*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2834 if (!is_64bit_mode && L)
2835 program_interrupt(processor, cia,
2836 illegal_instruction_program_interrupt);
2837 else {
2838 unsigned_word a;
2839 unsigned_word b = UI;
2840 if (L == 0)
2841 a = MASKED(*rA, 32, 63);
2842 else
2843 a = *rA;
2844 CR_COMPARE(BF, a, b);
2845 }
2846 PPC_INSN_INT_CR(0, RA_BITMASK, BF_BITMASK);
2847
28480.31,6.BF,9./,10.L,11.RA,16.RB,21.32,31./:X:::Compare Logical
2849*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2850*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2851*603e:PPC_UNIT_IU, PPC_UNIT_SRU, 1, 1, 0
2852*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2853 if (!is_64bit_mode && L)
2854 program_interrupt(processor, cia,
2855 illegal_instruction_program_interrupt);
2856 else {
2857 unsigned_word a;
2858 unsigned_word b;
2859 if (L == 0) {
2860 a = MASKED(*rA, 32, 63);
2861 b = MASKED(*rB, 32, 63);
2862 }
2863 else {
2864 a = *rA;
2865 b = *rB;
2866 }
2867 CR_COMPARE(BF, a, b);
2868 }
2869 PPC_INSN_INT_CR(0, RA_BITMASK | RB_BITMASK, BF_BITMASK);
2870
2871
2872#
2873# I.3.3.11 Fixed-Point Trap Instructions
2874#
2875
28760.2,6.TO,11.RA,16.SI:D:64::Trap Doubleword Immediate
2877 if (!is_64bit_mode)
2878 program_interrupt(processor, cia,
2879 illegal_instruction_program_interrupt);
2880 else {
2881 signed_word a = *rA;
2882 signed_word b = EXTS(SI);
2883 if ((a < b && TO{0})
2884 || (a > b && TO{1})
2885 || (a == b && TO{2})
2886 || ((unsigned_word)a < (unsigned_word)b && TO{3})
2887 || ((unsigned_word)a > (unsigned_word)b && TO{4})
2888 )
2889 program_interrupt(processor, cia,
2890 trap_program_interrupt);
2891 }
2892
28930.3,6.TO,11.RA,16.SI:D:::Trap Word Immediate
2894*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2895*603: PPC_UNIT_IU, PPC_UNIT_IU, 2, 2, 0
2896*603e:PPC_UNIT_IU, PPC_UNIT_IU, 2, 2, 0
2897*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2898 signed_word a = EXTENDED(*rA);
2899 signed_word b = EXTS(SI);
2900 if ((a < b && TO{0})
2901 || (a > b && TO{1})
2902 || (a == b && TO{2})
2903 || ((unsigned_word)a < (unsigned_word)b && TO{3})
2904 || ((unsigned_word)a > (unsigned_word)b && TO{4})
2905 )
2906 program_interrupt(processor, cia,
2907 trap_program_interrupt);
2908
29090.31,6.TO,11.RA,16.RB,21.68,31./:X:64::Trap Doubleword
2910 if (!is_64bit_mode)
2911 program_interrupt(processor, cia,
2912 illegal_instruction_program_interrupt);
2913 else {
2914 signed_word a = *rA;
2915 signed_word b = *rB;
2916 if ((a < b && TO{0})
2917 || (a > b && TO{1})
2918 || (a == b && TO{2})
2919 || ((unsigned_word)a < (unsigned_word)b && TO{3})
2920 || ((unsigned_word)a > (unsigned_word)b && TO{4})
2921 )
2922 program_interrupt(processor, cia,
2923 trap_program_interrupt);
2924 }
2925
29260.31,6.TO,11.RA,16.RB,21.4,31./:X:::Trap Word
2927*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2928*603: PPC_UNIT_IU, PPC_UNIT_IU, 2, 2, 0
2929*603e:PPC_UNIT_IU, PPC_UNIT_IU, 2, 2, 0
2930*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2931 signed_word a = EXTENDED(*rA);
2932 signed_word b = EXTENDED(*rB);
2933 if (TO == 12 && rA == rB) {
2934 ITRACE(trace_breakpoint, ("breakpoint\n"));
2935 cpu_halt(processor, cia, was_trap, 0);
2936 }
2937 else if ((a < b && TO{0})
2938 || (a > b && TO{1})
2939 || (a == b && TO{2})
2940 || ((unsigned_word)a < (unsigned_word)b && TO{3})
2941 || ((unsigned_word)a > (unsigned_word)b && TO{4})
2942 )
2943 program_interrupt(processor, cia,
2944 trap_program_interrupt);
2945
2946#
2947# I.3.3.12 Fixed-Point Logical Instructions
2948#
2949
29500.28,6.RS,11.RA,16.UI:D:::AND Immediate
2951*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2952*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2953*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2954*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2955 *rA = *rS & UI;
2956 CR0_COMPARE(*rA, 0, 1/*Rc*/);
2957 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
2958 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, 1/*Rc*/);
2959
29600.29,6.RS,11.RA,16.UI:D:::AND Immediate Shifted
2961*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2962*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2963*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2964*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2965 *rA = *rS & (UI << 16);
2966 CR0_COMPARE(*rA, 0, 1/*Rc*/);
2967 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
2968 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, 1/*Rc*/);
2969
29700.24,6.RS,11.RA,16.UI:D:::OR Immediate
2971*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2972*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2973*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2974*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2975 *rA = *rS | UI;
2976 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
2977 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, 0/*Rc*/);
2978
29790.25,6.RS,11.RA,16.UI:D:::OR Immediate Shifted
2980*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2981*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2982*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2983*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2984 *rA = *rS | (UI << 16);
2985 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
2986 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, 0/*Rc*/);
2987
29880.26,6.RS,11.RA,16.UI:D:::XOR Immediate
2989*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2990*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2991*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2992*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
2993 *rA = *rS ^ UI;
2994 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
2995 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, 0/*Rc*/);
2996
29970.27,6.RS,11.RA,16.UI:D:::XOR Immediate Shifted
2998*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
2999*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3000*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3001*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3002 *rA = *rS ^ (UI << 16);
3003 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3004 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, 0/*Rc*/);
3005
30060.31,6.RS,11.RA,16.RB,21.28,31.Rc:X:::AND
3007*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3008*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3009*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3010*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3011 *rA = *rS & *rB;
3012 CR0_COMPARE(*rA, 0, Rc);
3013 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3014 PPC_INSN_INT(RA_BITMASK, RS_BITMASK | RB_BITMASK, Rc);
3015
30160.31,6.RS,11.RA,16.RB,21.444,31.Rc:X:::OR
3017*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3018*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3019*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3020*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3021 *rA = *rS | *rB;
3022 CR0_COMPARE(*rA, 0, Rc);
3023 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3024 PPC_INSN_INT(RA_BITMASK, RS_BITMASK | RB_BITMASK, Rc);
3025
30260.31,6.RS,11.RA,16.RB,21.316,31.Rc:X:::XOR
3027*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3028*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3029*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3030*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3031 *rA = *rS ^ *rB;
3032 CR0_COMPARE(*rA, 0, Rc);
3033 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3034 PPC_INSN_INT(RA_BITMASK, RS_BITMASK | RB_BITMASK, Rc);
3035
30360.31,6.RS,11.RA,16.RB,21.476,31.Rc:X:::NAND
3037*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3038*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3039*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3040*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3041 *rA = ~(*rS & *rB);
3042 CR0_COMPARE(*rA, 0, Rc);
3043 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3044 PPC_INSN_INT(RA_BITMASK, RS_BITMASK | RB_BITMASK, Rc);
3045
30460.31,6.RS,11.RA,16.RB,21.124,31.Rc:X:::NOR
3047*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3048*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3049*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3050*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3051 *rA = ~(*rS | *rB);
3052 CR0_COMPARE(*rA, 0, Rc);
3053 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3054 PPC_INSN_INT(RA_BITMASK, RS_BITMASK | RB_BITMASK, Rc);
3055
30560.31,6.RS,11.RA,16.RB,21.284,31.Rc:X:::Equivalent
3057*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3058*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3059*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3060*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3061 *rA = ~(*rS ^ *rB); /* A === B */
3062 CR0_COMPARE(*rA, 0, Rc);
3063 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3064 PPC_INSN_INT(RA_BITMASK, RS_BITMASK | RB_BITMASK, Rc);
3065
30660.31,6.RS,11.RA,16.RB,21.60,31.Rc:X:::AND with Complement
3067*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3068*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3069*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3070*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3071 *rA = *rS & ~*rB;
3072 CR0_COMPARE(*rA, 0, Rc);
3073 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3074 PPC_INSN_INT(RA_BITMASK, RS_BITMASK | RB_BITMASK, Rc);
3075
30760.31,6.RS,11.RA,16.RB,21.412,31.Rc:X:::OR with Complement
3077*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3078*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3079*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3080*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3081 *rA = *rS | ~*rB;
3082 CR0_COMPARE(*rA, 0, Rc);
3083 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3084 PPC_INSN_INT(RA_BITMASK, RS_BITMASK | RB_BITMASK, Rc);
3085
30860.31,6.RS,11.RA,16./,21.954,31.Rc:X::extsb:Extend Sign Byte
3087*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3088*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3089*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3090*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3091 *rA = (signed_word)(signed8)*rS;
3092 CR0_COMPARE(*rA, 0, Rc);
3093 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3094 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, Rc);
3095
30960.31,6.RS,11.RA,16./,21.922,31.Rc:X::extsh:Extend Sign Half Word
3097*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3098*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3099*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3100*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3101 *rA = (signed_word)(signed16)*rS;
3102 CR0_COMPARE(*rA, 0, Rc);
3103 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3104 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, Rc);
3105
31060.31,6.RS,11.RA,16./,21.986,31.Rc:X:64::Extend Sign Word
3107*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3108*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3109*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3110*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3111# *rA = (signed_word)(signed32)*rS;
3112# CR0_COMPARE(*rA, 0, Rc);
3113
31140.31,6.RS,11.RA,16./,21.58,31.Rc:X:64::Count Leading Zeros Doubleword
3115# int count = 0;
3116# unsigned64 mask = BIT64(0);
3117# unsigned64 source = *rS;
3118# while (!(source & mask) && mask != 0) {
3119# mask >>= 1;
3120# count++;
3121# }
3122# *rA = count;
3123# CR0_COMPARE(count, 0, Rc); /* FIXME - is this correct */
3124
31250.31,6.RS,11.RA,16./,21.26,31.Rc:X:::Count Leading Zeros Word
3126*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3127*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3128*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3129*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3130 int count = 0;
3131 unsigned32 mask = BIT32(0);
3132 unsigned32 source = *rS;
3133 while (!(source & mask) && mask != 0) {
3134 mask >>= 1;
3135 count++;
3136 }
3137 *rA = count;
3138 ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3139 CR0_COMPARE(count, 0, Rc); /* FIXME - is this correct */
3140
3141
3142#
3143# I.3.3.13 Fixed-Point Rotate and Shift Instructions
3144#
3145
31460.30,6.RS,11.RA,16.sh_0_4,21.mb,27.0,30.sh_5,31.Rc:MD:64::Rotate Left Doubleword Immediate then Clear Left
3147# long n = (sh_5 << 4) | sh_0_4;
3148# unsigned_word r = ROTL64(*rS, n);
3149# long b = (mb_5 << 4) | mb_0_4;
3150# unsigned_word m = MASK(b, 63);
3151# signed_word result = r & m;
3152# *rA = result;
3153# ITRACE(trace_alu, (" Result = %ld (0x%lx)\n", (long)*rA, (long)*rA));
3154# CR0_COMPARE(result, 0, Rc); /* FIXME - is this correct */
3155
31560.30,6.RS,11.RA,16.sh_0_4,21.me,27.1,30.sh_5,31.Rc:MD:64::Rotate Left Doubleword Immediate then Clear Right
3157# long n = (sh_5 << 4) | sh_0_4;
3158# unsigned_word r = ROTL64(*rS, n);
3159# long e = (me_5 << 4) | me_0_4;
3160# unsigned_word m = MASK(0, e);
3161# signed_word result = r & m;
3162# *rA = result;
3163# CR0_COMPARE(result, 0, Rc); /* FIXME - is this correct */
3164
31650.30,6.RS,11.RA,16.sh_0_4,21.mb,27.2,30.sh_5,31.Rc:MD:64::Rotate Left Doubleword Immediate then Clear
3166# long n = (sh_5 << 4) | sh_0_4;
3167# unsigned_word r = ROTL64(*rS, n);
3168# long b = (mb_5 << 4) | mb_0_4;
3169# unsigned_word m = MASK(0, (64-n));
3170# signed_word result = r & m;
3171# *rA = result;
3172# CR0_COMPARE(result, 0, Rc); /* FIXME - is this correct */
3173
31740.21,6.RS,11.RA,16.SH,21.MB,26.ME,31.Rc:M:::Rotate Left Word Immediate then AND with Mask
3175*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3176*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3177*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3178*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3179 long n = SH;
3180 unsigned32 s = *rS;
3181 unsigned32 r = ROTL32(s, n);
3182 unsigned32 m = MASK(MB+32, ME+32);
3183 signed_word result = r & m;
3184 *rA = result;
3185 CR0_COMPARE(result, 0, Rc);
3186 ITRACE(trace_alu,
3187 ("n=%ld, s=0x%lx, r=0x%lx, m=0x%lx, result=0x%lx, cr=0x%lx\n",
3188 n, (unsigned long)s, (unsigned long)r, (unsigned long)m,
3189 (unsigned long)result, (unsigned long)CR));
3190 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, Rc);
3191
31920.30,6.RS,11.RA,16.RB,21.mb,27.8,31.Rc:MDS:64::Rotate Left Doubleword then Clear Left
3193# long n = MASKED(*rB, 58, 63);
3194# unsigned_word r = ROTL64(*rS, n);
3195# long b = (mb_5 << 4) | mb_0_4;
3196# unsigned_word m = MASK(b, 63);
3197# signed_word result = r & m;
3198# *rA = result;
3199# CR0_COMPARE(result, 0, Rc);
3200
32010.30,6.RS,11.RA,16.RB,21.me,27.9,31.Rc:MDS:64::Rotate Left Doubleword then Clear Right
3202# long n = MASKED(*rB, 58, 63);
3203# unsigned_word r = ROTL64(*rS, n);
3204# long e = (me_5 << 4) | me_0_4;
3205# unsigned_word m = MASK(0, e);
3206# signed_word result = r & m;
3207# *rA = result;
3208# CR0_COMPARE(result, 0, Rc);
3209
32100.23,6.RS,11.RA,16.RB,21.MB,26.ME,31.Rc:M:::Rotate Left Word then AND with Mask
3211 long n = MASKED(*rB, 59, 63);
3212 unsigned32 r = ROTL32(*rS, n);
3213 unsigned32 m = MASK(MB+32, ME+32);
3214 signed_word result = r & m;
3215 *rA = result;
3216 CR0_COMPARE(result, 0, Rc);
3217
32180.30,6.RS,11.RA,16.sh_0_4,21.mb,27.3,30.sh_5,31.Rc:MD:64::Rotate Left Doubleword Immediate then Mask Insert
3219# long n = (sh_5 << 4) | sh_0_4;
3220# unsigned_word r = ROTL64(*rS, n);
3221# long b = (mb_5 << 4) | mb_0_4;
3222# unsigned_word m = MASK(b, (64-n));
3223# signed_word result = (r & m) | (*rA & ~m)
3224# *rA = result;
3225# CR0_COMPARE(result, 0, Rc);
3226
32270.20,6.RS,11.RA,16.SH,21.MB,26.ME,31.Rc:M::rlwimi:Rotate Left Word Immediate then Mask Insert
3228*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3229*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3230*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3231*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3232 long n = SH;
3233 unsigned32 r = ROTL32(*rS, n);
3234 unsigned32 m = MASK(MB+32, ME+32);
3235 signed_word result = (r & m) | (*rA & ~m);
3236 *rA = result;
3237 ITRACE(trace_alu, (": n=%ld *rS=0x%lx r=0x%lx m=0x%lx result=0x%lx\n",
3238 n, (unsigned long)*rS, (unsigned long)r, (unsigned long)m,
3239 (unsigned long)result));
3240 CR0_COMPARE(result, 0, Rc);
3241 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, Rc);
3242
3243
32440.31,6.RS,11.RA,16.RB,21.27,31.Rc:X:64::Shift Left Doubleword
3245
32460.31,6.RS,11.RA,16.RB,21.24,31.Rc:X:::Shift Left Word
3247*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3248*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3249*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3250*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3251 int n = MASKED(*rB, 58, 63);
3252 unsigned32 source = *rS;
3253 signed_word shifted;
3254 if (n < 32)
3255 shifted = (source << n);
3256 else
3257 shifted = 0;
3258 *rA = shifted;
3259 CR0_COMPARE(shifted, 0, Rc);
3260 ITRACE(trace_alu,
3261 ("n=%d, source=0x%lx, shifted=0x%lx\n",
3262 n, (unsigned long)source, (unsigned long)shifted));
3263 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, Rc);
3264
32650.31,6.RS,11.RA,16.RB,21.539,31.Rc:X:64::Shift Right Doubleword
3266
32670.31,6.RS,11.RA,16.RB,21.536,31.Rc:X:::Shift Right Word
3268*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3269*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3270*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3271*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3272 int n = MASKED(*rB, 58, 63);
3273 unsigned32 source = *rS;
3274 signed_word shifted;
3275 if (n < 32)
3276 shifted = (source >> n);
3277 else
3278 shifted = 0;
3279 *rA = shifted;
3280 CR0_COMPARE(shifted, 0, Rc);
3281 ITRACE(trace_alu, \
3282 ("n=%d, source=0x%lx, shifted=0x%lx\n",
3283 n, (unsigned long)source, (unsigned long)shifted));
3284 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, Rc);
3285
32860.31,6.RS,11.RA,16.sh_0_4,21.413,30.sh_5,31.Rc:XS:64::Shift Right Algebraic Doubleword Immediate
3287
32880.31,6.RS,11.RA,16.SH,21.824,31.Rc:X:::Shift Right Algebraic Word Immediate
3289*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3290*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3291*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3292*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3293 int n = SH;
3294 signed_word r = ROTL32(*rS, /*64*/32-n);
3295 signed_word m = MASK(n+32, 63);
3296 int S = MASKED(*rS, 32, 32);
3297 signed_word shifted = (r & m) | (S ? ~m : 0);
3298 *rA = shifted;
3299 if (S && ((r & ~m) & MASK(32, 63)) != 0)
3300 XER |= xer_carry;
3301 else
3302 XER &= ~xer_carry;
3303 CR0_COMPARE(shifted, 0, Rc);
3304 ITRACE(trace_alu, (" Result = %ld (0x%lx), XER = %ld\n",
3305 (long)*rA, (long)*rA, (long)XER));
3306 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, Rc);
3307
33080.31,6.RS,11.RA,16.RB,21.794,31.Rc:X:64::Shift Right Algebraic Doubleword
3309
33100.31,6.RS,11.RA,16.RB,21.792,31.Rc:X:::Shift Right Algebraic Word
3311*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3312*603: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3313*603e:PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3314*604: PPC_UNIT_SCIU1, PPC_UNIT_SCIU2, 1, 1, 0
3315 unsigned64 mask;
3316 int n = MASKED(*rB, 59, 63);
3317 signed32 source = (signed32)*rS; /* signed to keep sign bit */
c906108c
SS
3318 int S = (MASKED(*rS,32,32) != 0);
3319 signed64 r = ((unsigned64) source);
3320 r = ((unsigned64) source) << 32 | (unsigned32) source;
3321 r = ROTL64(r,64-n);
3322 if (MASKED(*rB,58,58) == 0)
3323 mask = (unsigned64) MASK64(n+32,63);
3324 else
3325 mask = (unsigned64) 0;
be2bc30f 3326 *rA = (signed_word) ((r & mask) | (((signed64) -1*S) & ~mask)); /* if 64bit will sign extend */
c906108c
SS
3327 if (S && (MASKED(r & ~mask,32,63)!=0))
3328 XER |= xer_carry;
3329 else
3330 XER &= ~xer_carry;
3331 CR0_COMPARE(*rA, 0, Rc);
3332 ITRACE(trace_alu, (" Result = %ld (0x%lx), XER = %ld\n",
3333 (long)*rA, (long)*rA, (long)XER));
3334 PPC_INSN_INT(RA_BITMASK, RS_BITMASK, Rc);
3335
3336#
3337# I.3.3.14 Move to/from System Register Instructions
3338#
3339
33400.31,6.RS,11.SPR,21.467,31./:XFX::mtspr %SPR, %RS:Move to Special Purpose Register
3341*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3342*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 2, 2, 0
3343*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 2, 2, 0
3344*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 1, 1, 0
3345 int n = (SPR{5:9} << 5) | SPR{0:4};
3346 if (SPR{0} && IS_PROBLEM_STATE(processor))
3347 program_interrupt(processor, cia,
3348 privileged_instruction_program_interrupt);
3349 else if (!spr_is_valid(n)
3350 || spr_is_readonly(n))
3351 program_interrupt(processor, cia,
3352 illegal_instruction_program_interrupt);
3353 else {
3354 spreg new_val = (spr_length(n) == 64
3355 ? *rS
3356 : MASKED(*rS, 32, 63));
576054f1 3357 /* HACK - time base registers need to be updated immediately */
c906108c
SS
3358 if (WITH_TIME_BASE) {
3359 switch (n) {
3360 case spr_tbu:
3361 cpu_set_time_base(processor,
3362 (MASKED64(cpu_get_time_base(processor), 32, 63)
3363 | INSERTED64(new_val, 0, 31)));
3364 break;
3365 case spr_tbl:
3366 cpu_set_time_base(processor,
3367 (MASKED64(cpu_get_time_base(processor), 0, 31)
3368 | INSERTED64(new_val, 32, 63)));
3369 break;
3370 case spr_dec:
3371 cpu_set_decrementer(processor, new_val);
3372 break;
3373 default:
3374 SPREG(n) = new_val;
3375 break;
3376 }
3377 }
3378 else {
3379 SPREG(n) = new_val;
3380 }
3381 }
3382 PPC_INSN_TO_SPR(RS_BITMASK, n);
3383
33840.31,6.RT,11.SPR,21.339,31./:XFX::mfspr %RT, %SPR:Move from Special Purpose Register
3385*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3386*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
3387*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
3388*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 3, 3, 0
3389 int n = (SPR{5:9} << 5) | SPR{0:4};
3390 if (SPR{0} && IS_PROBLEM_STATE(processor))
3391 program_interrupt(processor, cia,
3392 privileged_instruction_program_interrupt);
3393 else if (!spr_is_valid(n))
3394 program_interrupt(processor, cia,
3395 illegal_instruction_program_interrupt);
3396 else {
3397 /* HACK - time base registers need to be calculated */
3398 if (WITH_TIME_BASE) {
3399 switch (n) {
3400 case spr_dec:
3401 *rT = cpu_get_decrementer(processor);
3402 break;
e3b96e32
JS
3403 case spr_tbrl:
3404 if (is_64bit_implementation) *rT = TB;
3405 else *rT = EXTRACTED64(TB, 32, 63);
3406 break;
3407 case spr_tbru:
3408 if (is_64bit_implementation) *rT = EXTRACTED64(TB, 0, 31);
3409 else *rT = EXTRACTED64(TB, 0, 31);
3410 break;
c906108c
SS
3411 case spr_tbu:
3412 case spr_tbl:
3413 /* NOTE - these SPR's are not readable. Use mftb[ul] */
3414 default:
3415 *rT = SPREG(n);
3416 break;
3417 }
3418 }
3419 else {
3420 *rT = SPREG(n);
3421 }
3422 }
3423 PPC_INSN_FROM_SPR(RT_BITMASK, n);
3424
34250.31,6.RS,11./,12.FXM,20./,21.144,31./:XFX::mtfcr:Move to Condition Register Fields
3426*601: PPC_UNIT_IU, PPC_UNIT_IU, 2, 2, 0
3427*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
3428*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
3429*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 1, 1, 0
3430 if (FXM == 0xff) {
3431 CR = *rS;
3432 }
3433 else {
3434 unsigned_word mask = 0;
3435 unsigned_word f;
3436 for (f = 0; f < 8; f++) {
3437 if (FXM & (0x80 >> f))
3438 mask |= (0xf << 4*(7-f));
3439 }
3440 CR = (MASKED(*rS, 32, 63) & mask) | (CR & ~mask);
3441 }
3442 PPC_INSN_MTCR(RS_BITMASK, FXM);
3443
34440.31,6.BF,9./,11./,16./,21.512,31./:X:::Move to Condition Register from XER
3445# CR_SET(BF, EXTRACTED32(XER, 0, 3));
3446# MBLIT32(XER, 0, 3, 0);
3447
34480.31,6.RT,11./,16./,21.19,31./:X:::Move From Condition Register
3449*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3450*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
3451*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
3452*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 3, 3, 0
3453 *rT = (unsigned32)CR;
3454 PPC_INSN_MFCR(RT_BITMASK);
3455
3456#
3457# I.4.6.2 Floating-Point Load Instructions
3458#
3459
34600.48,6.FRT,11.RA,16.D:D:f:lfs:Load Floating-Point Single
3461*601: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
3462*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3463*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3464*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3465 unsigned_word b;
3466 unsigned_word EA;
3467 if (RA_is_0) b = 0;
3468 else b = *rA;
3469 EA = b + EXTS(D);
3470 *frT = DOUBLE(MEM(unsigned, EA, 4));
3471 PPC_INSN_INT_FLOAT(0, FRT_BITMASK, (RA_BITMASK & ~1), 0);
3472
34730.31,6.FRT,11.RA,16.RB,21.535,31./:X:f::Load Floating-Point Single Indexed
3474*601: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
3475*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3476*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3477*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3478 unsigned_word b;
3479 unsigned_word EA;
3480 if (RA_is_0) b = 0;
3481 else b = *rA;
3482 EA = b + *rB;
3483 *frT = DOUBLE(MEM(unsigned, EA, 4));
3484 PPC_INSN_INT_FLOAT(0, FRT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
3485
34860.49,6.FRT,11.RA,16.D:D:f::Load Floating-Point Single with Update
3487*601: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
3488*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3489*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3490*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3491 unsigned_word EA;
3492 if (RA_is_0)
3493 program_interrupt(processor, cia,
3494 illegal_instruction_program_interrupt);
3495 EA = *rA + EXTS(D);
3496 *frT = DOUBLE(MEM(unsigned, EA, 4));
3497 *rA = EA;
3498 PPC_INSN_INT_FLOAT(RA_BITMASK, FRT_BITMASK, (RA_BITMASK & ~1), 0);
3499
ae02957b 35000.31,6.FRT,11.RA,16.RB,21.567,31./:X:f::Load Floating-Point Single with Update Indexed
c906108c
SS
3501*601: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
3502*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3503*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3504*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3505 unsigned_word EA;
3506 if (RA_is_0)
3507 program_interrupt(processor, cia,
3508 illegal_instruction_program_interrupt);
3509 EA = *rA + *rB;
3510 *frT = DOUBLE(MEM(unsigned, EA, 4));
3511 *rA = EA;
3512 PPC_INSN_INT_FLOAT(RA_BITMASK, FRT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
3513
35140.50,6.FRT,11.RA,16.D:D:f::Load Floating-Point Double
3515*601: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
3516*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3517*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3518*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3519 unsigned_word b;
3520 unsigned_word EA;
3521 if (RA_is_0) b = 0;
3522 else b = *rA;
3523 EA = b + EXTS(D);
3524 *frT = MEM(unsigned, EA, 8);
3525 PPC_INSN_INT_FLOAT(0, FRT_BITMASK, (RA_BITMASK & ~1), 0);
3526
35270.31,6.FRT,11.RA,16.RB,21.599,31./:X:f::Load Floating-Point Double Indexed
3528*601: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
3529*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3530*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3531*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3532 unsigned_word b;
3533 unsigned_word EA;
3534 if (RA_is_0) b = 0;
3535 else b = *rA;
3536 EA = b + *rB;
3537 *frT = MEM(unsigned, EA, 8);
3538 PPC_INSN_INT_FLOAT(0, FRT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
3539
35400.51,6.FRT,11.RA,16.D:D:f::Load Floating-Point Double with Update
3541*601: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
3542*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3543*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3544*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3545 unsigned_word EA;
3546 if (RA_is_0)
3547 program_interrupt(processor, cia,
3548 illegal_instruction_program_interrupt);
3549 EA = *rA + EXTS(D);
3550 *frT = MEM(unsigned, EA, 8);
3551 *rA = EA;
3552 PPC_INSN_INT_FLOAT(RA_BITMASK, FRT_BITMASK, (RA_BITMASK & ~1), 0);
3553
35540.31,6.FRT,11.RA,16.RB,21.631,31./:X:f::Load Floating-Point Double with Update Indexed
3555*601: PPC_UNIT_IU, PPC_UNIT_IU, 3, 3, 0
3556*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3557*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3558*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3559 unsigned_word EA;
3560 if (RA_is_0)
3561 program_interrupt(processor, cia,
3562 illegal_instruction_program_interrupt);
3563 EA = *rA + *rB;
3564 *frT = MEM(unsigned, EA, 8);
3565 *rA = EA;
3566 PPC_INSN_INT_FLOAT(RA_BITMASK, FRT_BITMASK, (RA_BITMASK & ~1) | RB_BITMASK, 0);
3567
3568
3569#
3570# I.4.6.3 Floating-Point Store Instructions
3571#
3572
35730.52,6.FRS,11.RA,16.D:D:f::Store Floating-Point Single
3574*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3575*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3576*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3577*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3578 unsigned_word b;
3579 unsigned_word EA;
3580 if (RA_is_0) b = 0;
3581 else b = *rA;
3582 EA = b + EXTS(D);
3583 STORE(EA, 4, SINGLE(*frS));
3584 PPC_INSN_INT_FLOAT(0, 0, (RA_BITMASK & ~1), FRS_BITMASK);
3585
35860.31,6.FRS,11.RA,16.RB,21.663,31./:X:f::Store Floating-Point Single Indexed
3587*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3588*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3589*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3590*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3591 unsigned_word b;
3592 unsigned_word EA;
3593 if (RA_is_0) b = 0;
3594 else b = *rA;
3595 EA = b + *rB;
3596 STORE(EA, 4, SINGLE(*frS));
3597 PPC_INSN_INT_FLOAT(0, 0, (RA_BITMASK & ~1) | RB_BITMASK, FRS_BITMASK);
3598
35990.53,6.FRS,11.RA,16.D:D:f::Store Floating-Point Single with Update
3600*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3601*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3602*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3603*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3604 unsigned_word EA;
3605 if (RA_is_0)
3606 program_interrupt(processor, cia,
3607 illegal_instruction_program_interrupt);
3608 EA = *rA + EXTS(D);
3609 STORE(EA, 4, SINGLE(*frS));
3610 *rA = EA;
3611 PPC_INSN_INT_FLOAT(RA_BITMASK, 0, (RA_BITMASK & ~1), FRS_BITMASK);
3612
36130.31,6.FRS,11.RA,16.RB,21.695,31./:X:f::Store Floating-Point Single with Update Indexed
3614*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3615*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3616*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3617*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3618 unsigned_word EA;
3619 if (RA_is_0)
3620 program_interrupt(processor, cia,
3621 illegal_instruction_program_interrupt);
3622 EA = *rA + *rB;
3623 STORE(EA, 4, SINGLE(*frS));
3624 *rA = EA;
3625 PPC_INSN_INT_FLOAT(RA_BITMASK, 0, (RA_BITMASK & ~1) | RB_BITMASK, FRS_BITMASK);
3626
36270.54,6.FRS,11.RA,16.D:D:f::Store Floating-Point Double
3628*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3629*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3630*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3631*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3632 unsigned_word b;
3633 unsigned_word EA;
3634 if (RA_is_0) b = 0;
3635 else b = *rA;
3636 EA = b + EXTS(D);
3637 STORE(EA, 8, *frS);
3638 PPC_INSN_INT_FLOAT(0, 0, (RA_BITMASK & ~1), FRS_BITMASK);
3639
36400.31,6.FRS,11.RA,16.RB,21.727,31./:X:f::Store Floating-Point Double Indexed
3641*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3642*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3643*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3644*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3645 unsigned_word b;
3646 unsigned_word EA;
3647 if (RA_is_0) b = 0;
3648 else b = *rA;
3649 EA = b + *rB;
3650 STORE(EA, 8, *frS);
3651 PPC_INSN_INT_FLOAT(0, 0, (RA_BITMASK & ~1) | RB_BITMASK, FRS_BITMASK);
3652
6a58c676
AC
36530.31,6.FRS,11.RA,16.RB,21.983,31./:X:f::Store Floating-Point Integer Word Indexed
3654*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3655*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3656*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3657 unsigned_word b;
3658 unsigned_word EA;
3659 if (RA_is_0) b = 0;
3660 else b = *rA;
3661 EA = b + *rB;
3662 STORE(EA, 4, *frS);
3663 PPC_INSN_INT_FLOAT(0, 0, (RA_BITMASK & ~1) | RB_BITMASK, FRS_BITMASK);
3664
c906108c
SS
36650.55,6.FRS,11.RA,16.D:D:f::Store Floating-Point Double with Update
3666*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3667*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3668*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3669*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3670 unsigned_word EA;
3671 if (RA_is_0)
3672 program_interrupt(processor, cia,
3673 illegal_instruction_program_interrupt);
3674 EA = *rA + EXTS(D);
3675 STORE(EA, 8, *frS);
3676 *rA = EA;
3677 PPC_INSN_INT_FLOAT(RA_BITMASK, 0, (RA_BITMASK & ~1), FRS_BITMASK);
3678
36790.31,6.FRS,11.RA,16.RB,21.759,31./:X:f::Store Floating-Point Double with Update Indexed
3680*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
3681*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3682*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 2, 0
3683*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
3684 unsigned_word EA;
3685 if (RA_is_0)
3686 program_interrupt(processor, cia,
3687 illegal_instruction_program_interrupt);
3688 EA = *rA + *rB;
3689 STORE(EA, 8, *frS);
3690 *rA = EA;
3691 PPC_INSN_INT_FLOAT(RA_BITMASK, 0, (RA_BITMASK & ~1) | RB_BITMASK, FRS_BITMASK);
3692
3693
3694#
3695# I.4.6.4 Floating-Point Move Instructions
3696#
3697
36980.63,6.FRT,11./,16.FRB,21.72,31.Rc:X:f::Floating Move Register
3699*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3700*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3701*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3702*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3703 *frT = *frB;
3704 CR1_UPDATE(Rc);
3705 PPC_INSN_FLOAT(FRT_BITMASK, FRB_BITMASK, Rc);
3706
37070.63,6.FRT,11./,16.FRB,21.40,31.Rc:X:f::Floating Negate
3708*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3709*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3710*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3711*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3712 *frT = *frB ^ BIT64(0);
3713 CR1_UPDATE(Rc);
3714 PPC_INSN_FLOAT(FRT_BITMASK, FRB_BITMASK, Rc);
3715
37160.63,6.FRT,11./,16.FRB,21.264,31.Rc:X:f::Floating Absolute Value
3717*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3718*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3719*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3720*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3721 *frT = *frB & ~BIT64(0);
3722 CR1_UPDATE(Rc);
3723 PPC_INSN_FLOAT(FRT_BITMASK, FRB_BITMASK, Rc);
3724
37250.63,6.FRT,11./,16.FRB,21.136,31.Rc:X:f::Floating Negative Absolute Value
3726*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3727*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3728*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3729*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3730 *frT = *frB | BIT64(0);
3731 CR1_UPDATE(Rc);
3732 PPC_INSN_FLOAT(FRT_BITMASK, FRB_BITMASK, Rc);
3733
3734
3735#
3736# I.4.6.5 Floating-Point Arithmetic Instructions
3737#
3738
37390.63,6.FRT,11.FRA,16.FRB,21./,26.21,31.Rc:A:f:fadd:Floating Add
3740*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3741*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3742*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3743*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3744 FPSCR_BEGIN;
3745 if (is_invalid_operation(processor, cia,
3746 *frA, *frB,
3747 fpscr_vxsnan | fpscr_vxisi,
3748 0, /*single?*/
3749 0) /*negate?*/) {
3750 invalid_arithemetic_operation(processor, cia,
3751 frT, *frA, *frB, 0,
3752 0, /*instruction_is_frsp*/
3753 0, /*instruction_is_convert_to_64bit*/
3754 0, /*instruction_is_convert_to_32bit*/
3755 0); /*single-precision*/
3756 }
3757 else {
3758 /*HACK!*/
3759 double s = *(double*)frA + *(double*)frB;
3760 *(double*)frT = s;
3761 }
3762 FPSCR_END(Rc);
3763 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK, Rc);
3764
37650.59,6.FRT,11.FRA,16.FRB,21./,26.21,31.Rc:A:f:fadds:Floating Add Single
3766*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3767*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3768*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3769*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3770 FPSCR_BEGIN;
3771 if (is_invalid_operation(processor, cia,
3772 *frA, *frB,
3773 fpscr_vxsnan | fpscr_vxisi,
3774 1, /*single?*/
3775 0) /*negate?*/) {
3776 invalid_arithemetic_operation(processor, cia,
3777 frT, *frA, *frB, 0,
3778 0, /*instruction_is_frsp*/
3779 0, /*instruction_is_convert_to_64bit*/
3780 0, /*instruction_is_convert_to_32bit*/
3781 1); /*single-precision*/
3782 }
3783 else {
3784 /*HACK!*/
3785 float s = *(double*)frA + *(double*)frB;
3786 *(double*)frT = s;
3787 }
3788 FPSCR_END(Rc);
3789 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK, Rc);
3790
37910.63,6.FRT,11.FRA,16.FRB,21./,26.20,31.Rc:A:f:fsub:Floating Subtract
3792*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3793*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3794*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3795*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3796 FPSCR_BEGIN;
3797 if (is_invalid_operation(processor, cia,
3798 *frA, *frB,
3799 fpscr_vxsnan | fpscr_vxisi,
3800 0, /*single?*/
3801 1) /*negate?*/) {
3802 invalid_arithemetic_operation(processor, cia,
3803 frT, *frA, *frB, 0,
3804 0, /*instruction_is_frsp*/
3805 0, /*instruction_is_convert_to_64bit*/
3806 0, /*instruction_is_convert_to_32bit*/
3807 0); /*single-precision*/
3808 }
3809 else {
3810 /*HACK!*/
3811 double s = *(double*)frA - *(double*)frB;
3812 *(double*)frT = s;
3813 }
3814 FPSCR_END(Rc);
3815 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK, Rc);
3816
38170.59,6.FRT,11.FRA,16.FRB,21./,26.20,31.Rc:A:f:fsubs:Floating Subtract Single
3818*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3819*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3820*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3821*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3822 FPSCR_BEGIN;
3823 if (is_invalid_operation(processor, cia,
3824 *frA, *frB,
3825 fpscr_vxsnan | fpscr_vxisi,
3826 1, /*single?*/
3827 1) /*negate?*/) {
3828 invalid_arithemetic_operation(processor, cia,
3829 frT, *frA, *frB, 0,
3830 0, /*instruction_is_frsp*/
3831 0, /*instruction_is_convert_to_64bit*/
3832 0, /*instruction_is_convert_to_32bit*/
3833 1); /*single-precision*/
3834 }
3835 else {
3836 /*HACK!*/
3837 float s = *(double*)frA - *(double*)frB;
3838 *(double*)frT = s;
3839 }
3840 FPSCR_END(Rc);
3841 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK, Rc);
3842
38430.63,6.FRT,11.FRA,16./,21.FRC,26.25,31.Rc:A:f:fmul:Floating Multiply
3844*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 5, 5, 0
3845*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
3846*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
3847*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3848 FPSCR_BEGIN;
3849 if (is_invalid_operation(processor, cia,
3850 *frA, *frC,
3851 fpscr_vxsnan | fpscr_vximz,
3852 0, /*single?*/
3853 0) /*negate?*/) {
3854 invalid_arithemetic_operation(processor, cia,
3855 frT, *frA, 0, *frC,
3856 0, /*instruction_is_frsp*/
3857 0, /*instruction_is_convert_to_64bit*/
3858 0, /*instruction_is_convert_to_32bit*/
3859 0); /*single-precision*/
3860 }
3861 else {
3862 /*HACK!*/
3863 double s = *(double*)frA * *(double*)frC;
3864 *(double*)frT = s;
3865 }
3866 FPSCR_END(Rc);
3867 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRC_BITMASK, Rc);
3868
38690.59,6.FRT,11.FRA,16./,21.FRC,26.25,31.Rc:A:f:fmuls:Floating Multiply Single
3870*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
3871*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3872*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3873*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3874 FPSCR_BEGIN;
3875 if (is_invalid_operation(processor, cia,
3876 *frA, *frC,
3877 fpscr_vxsnan | fpscr_vximz,
3878 1, /*single?*/
3879 0) /*negate?*/) {
3880 invalid_arithemetic_operation(processor, cia,
3881 frT, *frA, 0, *frC,
3882 0, /*instruction_is_frsp*/
3883 0, /*instruction_is_convert_to_64bit*/
3884 0, /*instruction_is_convert_to_32bit*/
3885 1); /*single-precision*/
3886 }
3887 else {
3888 /*HACK!*/
3889 float s = *(double*)frA * *(double*)frC;
3890 *(double*)frT = s;
3891 }
3892 FPSCR_END(Rc);
3893 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRC_BITMASK, Rc);
3894
38950.63,6.FRT,11.FRA,16.FRB,21./,26.18,31.Rc:A:f:fdiv:Floating Divide
3896*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 31, 31, 0
3897*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 33, 33, 0
3898*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 33, 33, 0
3899*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 32, 32, 0
3900 FPSCR_BEGIN;
3901 if (is_invalid_operation(processor, cia,
3902 *frA, *frB,
3903 fpscr_vxsnan | fpscr_vxzdz,
3904 0, /*single?*/
3905 0) /*negate?*/) {
3906 invalid_arithemetic_operation(processor, cia,
3907 frT, *frA, *frB, 0,
3908 0, /*instruction_is_frsp*/
3909 0, /*instruction_is_convert_to_64bit*/
3910 0, /*instruction_is_convert_to_32bit*/
3911 0); /*single-precision*/
3912 }
3913 else if (is_invalid_zero_divide (processor, cia,
3914 *frA, *frB,
3915 0 /*single?*/)) {
3916 invalid_zero_divide_operation (processor, cia,
3917 frT, *frA, *frB,
3918 0 /*single?*/);
3919 }
3920 else {
3921 /*HACK!*/
3922 double s = *(double*)frA / *(double*)frB;
3923 *(double*)frT = s;
3924 }
3925 FPSCR_END(Rc);
3926 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK, Rc);
3927
39280.59,6.FRT,11.FRA,16.FRB,21./,26.18,31.Rc:A:f:fdivs:Floating Divide Single
3929*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 17, 17, 0
3930*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 18, 18, 0
3931*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 18, 18, 0
3932*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 18, 18, 0
3933 FPSCR_BEGIN;
3934 if (is_invalid_operation(processor, cia,
3935 *frA, *frB,
3936 fpscr_vxsnan | fpscr_vxzdz,
3937 1, /*single?*/
3938 0) /*negate?*/) {
3939 invalid_arithemetic_operation(processor, cia,
3940 frT, *frA, *frB, 0,
3941 0, /*instruction_is_frsp*/
3942 0, /*instruction_is_convert_to_64bit*/
3943 0, /*instruction_is_convert_to_32bit*/
3944 1); /*single-precision*/
3945 }
3946 else if (is_invalid_zero_divide (processor, cia,
3947 *frA, *frB,
3948 1 /*single?*/)) {
3949 invalid_zero_divide_operation (processor, cia,
3950 frT, *frA, *frB,
3951 1 /*single?*/);
3952 }
3953 else {
3954 /*HACK!*/
3955 float s = *(double*)frA / *(double*)frB;
3956 *(double*)frT = s;
3957 }
3958 FPSCR_END(Rc);
3959 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK, Rc);
3960
39610.63,6.FRT,11.FRA,16.FRB,21.FRC,26.29,31.Rc:A:f:fmadd:Floating Multiply-Add
3962*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 5, 5, 0
3963*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
3964*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
3965*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
3966 FPSCR_BEGIN;
3967 double product; /*HACK! - incorrectly loosing precision ... */
3968 /* compute the multiply */
3969 if (is_invalid_operation(processor, cia,
3970 *frA, *frC,
3971 fpscr_vxsnan | fpscr_vximz,
3972 0, /*single?*/
3973 0) /*negate?*/) {
2ad0ff16 3974 union { double d; unsigned64 u; } tmp;
c906108c 3975 invalid_arithemetic_operation(processor, cia,
2ad0ff16 3976 &tmp.u, *frA, 0, *frC,
c906108c
SS
3977 0, /*instruction_is_frsp*/
3978 0, /*instruction_is_convert_to_64bit*/
3979 0, /*instruction_is_convert_to_32bit*/
3980 0); /*single-precision*/
2ad0ff16 3981 product = tmp.d;
c906108c
SS
3982 }
3983 else {
3984 /*HACK!*/
3985 product = *(double*)frA * *(double*)frC;
3986 }
3987 /* compute the add */
3988 if (is_invalid_operation(processor, cia,
3989 product, *frB,
3990 fpscr_vxsnan | fpscr_vxisi,
3991 0, /*single?*/
3992 0) /*negate?*/) {
3993 invalid_arithemetic_operation(processor, cia,
3994 frT, product, *frB, 0,
3995 0, /*instruction_is_frsp*/
3996 0, /*instruction_is_convert_to_64bit*/
3997 0, /*instruction_is_convert_to_32bit*/
3998 0); /*single-precision*/
3999 }
4000 else {
4001 /*HACK!*/
4002 double s = product + *(double*)frB;
4003 *(double*)frT = s;
4004 }
4005 FPSCR_END(Rc);
4006 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4007
40080.59,6.FRT,11.FRA,16.FRB,21.FRC,26.29,31.Rc:A:f::Floating Multiply-Add Single
4009*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
4010*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4011*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4012*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4013 FPSCR_BEGIN;
4014 float product; /*HACK! - incorrectly loosing precision ... */
4015 /* compute the multiply */
4016 if (is_invalid_operation(processor, cia,
4017 *frA, *frC,
4018 fpscr_vxsnan | fpscr_vximz,
4019 1, /*single?*/
4020 0) /*negate?*/) {
2ad0ff16 4021 union { double d; unsigned64 u; } tmp;
c906108c 4022 invalid_arithemetic_operation(processor, cia,
2ad0ff16 4023 &tmp.u, *frA, 0, *frC,
c906108c
SS
4024 0, /*instruction_is_frsp*/
4025 0, /*instruction_is_convert_to_64bit*/
4026 0, /*instruction_is_convert_to_32bit*/
4027 0); /*single-precision*/
2ad0ff16 4028 product = tmp.d;
c906108c
SS
4029 }
4030 else {
4031 /*HACK!*/
4032 product = *(double*)frA * *(double*)frC;
4033 }
4034 /* compute the add */
4035 if (is_invalid_operation(processor, cia,
4036 product, *frB,
4037 fpscr_vxsnan | fpscr_vxisi,
4038 1, /*single?*/
4039 0) /*negate?*/) {
4040 invalid_arithemetic_operation(processor, cia,
4041 frT, product, *frB, 0,
4042 0, /*instruction_is_frsp*/
4043 0, /*instruction_is_convert_to_64bit*/
4044 0, /*instruction_is_convert_to_32bit*/
4045 0); /*single-precision*/
4046 }
4047 else {
4048 /*HACK!*/
4049 float s = product + *(double*)frB;
4050 *(double*)frT = (double)s;
4051 }
4052 FPSCR_END(Rc);
4053 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4054
40550.63,6.FRT,11.FRA,16.FRB,21.FRC,26.28,31.Rc:A:f::Floating Multiply-Subtract
4056*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 5, 5, 0
4057*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
4058*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
4059*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4060 FPSCR_BEGIN;
4061 double product; /*HACK! - incorrectly loosing precision ... */
4062 /* compute the multiply */
4063 if (is_invalid_operation(processor, cia,
4064 *frA, *frC,
4065 fpscr_vxsnan | fpscr_vximz,
4066 0, /*single?*/
4067 0) /*negate?*/) {
2ad0ff16 4068 union { double d; unsigned64 u; } tmp;
c906108c 4069 invalid_arithemetic_operation(processor, cia,
2ad0ff16 4070 &tmp.u, *frA, 0, *frC,
c906108c
SS
4071 0, /*instruction_is_frsp*/
4072 0, /*instruction_is_convert_to_64bit*/
4073 0, /*instruction_is_convert_to_32bit*/
4074 0); /*single-precision*/
2ad0ff16 4075 product = tmp.d;
c906108c
SS
4076 }
4077 else {
4078 /*HACK!*/
4079 product = *(double*)frA * *(double*)frC;
4080 }
4081 /* compute the subtract */
4082 if (is_invalid_operation(processor, cia,
4083 product, *frB,
4084 fpscr_vxsnan | fpscr_vxisi,
4085 0, /*single?*/
4086 0) /*negate?*/) {
4087 invalid_arithemetic_operation(processor, cia,
4088 frT, product, *frB, 0,
4089 0, /*instruction_is_frsp*/
4090 0, /*instruction_is_convert_to_64bit*/
4091 0, /*instruction_is_convert_to_32bit*/
4092 0); /*single-precision*/
4093 }
4094 else {
4095 /*HACK!*/
4096 double s = product - *(double*)frB;
4097 *(double*)frT = s;
4098 }
4099 FPSCR_END(Rc);
4100 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4101
41020.59,6.FRT,11.FRA,16.FRB,21.FRC,26.28,31.Rc:A:f::Floating Multiply-Subtract Single
4103*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
4104*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4105*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4106*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4107 FPSCR_BEGIN;
4108 float product; /*HACK! - incorrectly loosing precision ... */
4109 /* compute the multiply */
4110 if (is_invalid_operation(processor, cia,
4111 *frA, *frC,
4112 fpscr_vxsnan | fpscr_vximz,
4113 1, /*single?*/
4114 0) /*negate?*/) {
2ad0ff16 4115 union { double d; unsigned64 u; } tmp;
c906108c 4116 invalid_arithemetic_operation(processor, cia,
2ad0ff16 4117 &tmp.u, *frA, 0, *frC,
c906108c
SS
4118 0, /*instruction_is_frsp*/
4119 0, /*instruction_is_convert_to_64bit*/
4120 0, /*instruction_is_convert_to_32bit*/
4121 0); /*single-precision*/
2ad0ff16 4122 product = tmp.d;
c906108c
SS
4123 }
4124 else {
4125 /*HACK!*/
4126 product = *(double*)frA * *(double*)frC;
4127 }
4128 /* compute the subtract */
4129 if (is_invalid_operation(processor, cia,
4130 product, *frB,
4131 fpscr_vxsnan | fpscr_vxisi,
4132 1, /*single?*/
4133 0) /*negate?*/) {
4134 invalid_arithemetic_operation(processor, cia,
4135 frT, product, *frB, 0,
4136 0, /*instruction_is_frsp*/
4137 0, /*instruction_is_convert_to_64bit*/
4138 0, /*instruction_is_convert_to_32bit*/
4139 0); /*single-precision*/
4140 }
4141 else {
4142 /*HACK!*/
4143 float s = product - *(double*)frB;
4144 *(double*)frT = (double)s;
4145 }
4146 FPSCR_END(Rc);
4147 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4148
41490.63,6.FRT,11.FRA,16.FRB,21.FRC,26.31,31.Rc:A:f::Floating Negative Multiply-Add
4150*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 5, 5, 0
4151*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
4152*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
4153*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4154 FPSCR_BEGIN;
4155 double product; /*HACK! - incorrectly loosing precision ... */
4156 /* compute the multiply */
4157 if (is_invalid_operation(processor, cia,
4158 *frA, *frC,
4159 fpscr_vxsnan | fpscr_vximz,
4160 0, /*single?*/
4161 0) /*negate?*/) {
2ad0ff16 4162 union { double d; unsigned64 u; } tmp;
c906108c 4163 invalid_arithemetic_operation(processor, cia,
2ad0ff16 4164 &tmp.u, *frA, 0, *frC,
c906108c
SS
4165 0, /*instruction_is_frsp*/
4166 0, /*instruction_is_convert_to_64bit*/
4167 0, /*instruction_is_convert_to_32bit*/
4168 0); /*single-precision*/
aaea6334 4169 product = tmp.d;
c906108c
SS
4170 }
4171 else {
4172 /*HACK!*/
4173 product = *(double*)frA * *(double*)frC;
4174 }
4175 /* compute the add */
4176 if (is_invalid_operation(processor, cia,
4177 product, *frB,
4178 fpscr_vxsnan | fpscr_vxisi,
4179 0, /*single?*/
4180 0) /*negate?*/) {
4181 invalid_arithemetic_operation(processor, cia,
4182 frT, product, *frB, 0,
4183 0, /*instruction_is_frsp*/
4184 0, /*instruction_is_convert_to_64bit*/
4185 0, /*instruction_is_convert_to_32bit*/
4186 0); /*single-precision*/
4187 }
4188 else {
4189 /*HACK!*/
4190 double s = -(product + *(double*)frB);
4191 *(double*)frT = s;
4192 }
4193 FPSCR_END(Rc);
4194 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4195
41960.59,6.FRT,11.FRA,16.FRB,21.FRC,26.31,31.Rc:A:f::Floating Negative Multiply-Add Single
4197*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
4198*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4199*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4200*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4201 FPSCR_BEGIN;
4202 float product; /*HACK! - incorrectly loosing precision ... */
4203 /* compute the multiply */
4204 if (is_invalid_operation(processor, cia,
4205 *frA, *frC,
4206 fpscr_vxsnan | fpscr_vximz,
4207 1, /*single?*/
4208 0) /*negate?*/) {
2ad0ff16 4209 union { double d; unsigned64 u; } tmp;
c906108c 4210 invalid_arithemetic_operation(processor, cia,
2ad0ff16 4211 &tmp.u, *frA, 0, *frC,
c906108c
SS
4212 0, /*instruction_is_frsp*/
4213 0, /*instruction_is_convert_to_64bit*/
4214 0, /*instruction_is_convert_to_32bit*/
4215 0); /*single-precision*/
2ad0ff16 4216 product = tmp.d;
c906108c
SS
4217 }
4218 else {
4219 /*HACK!*/
4220 product = *(double*)frA * *(double*)frC;
4221 }
4222 /* compute the add */
4223 if (is_invalid_operation(processor, cia,
4224 product, *frB,
4225 fpscr_vxsnan | fpscr_vxisi,
4226 1, /*single?*/
4227 0) /*negate?*/) {
4228 invalid_arithemetic_operation(processor, cia,
4229 frT, product, *frB, 0,
4230 0, /*instruction_is_frsp*/
4231 0, /*instruction_is_convert_to_64bit*/
4232 0, /*instruction_is_convert_to_32bit*/
4233 0); /*single-precision*/
4234 }
4235 else {
4236 /*HACK!*/
4237 float s = -(product + *(double*)frB);
4238 *(double*)frT = (double)s;
4239 }
4240 FPSCR_END(Rc);
4241 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4242
42430.63,6.FRT,11.FRA,16.FRB,21.FRC,26.30,31.Rc:A:f::Floating Negative Multiply-Subtract
4244*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 5, 5, 0
4245*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
4246*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 2, 4, 0
4247*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4248 FPSCR_BEGIN;
4249 double product; /*HACK! - incorrectly loosing precision ... */
4250 /* compute the multiply */
4251 if (is_invalid_operation(processor, cia,
4252 *frA, *frC,
4253 fpscr_vxsnan | fpscr_vximz,
4254 0, /*single?*/
4255 0) /*negate?*/) {
2ad0ff16 4256 union { double d; unsigned64 u; } tmp;
c906108c 4257 invalid_arithemetic_operation(processor, cia,
2ad0ff16 4258 &tmp.u, *frA, 0, *frC,
c906108c
SS
4259 0, /*instruction_is_frsp*/
4260 0, /*instruction_is_convert_to_64bit*/
4261 0, /*instruction_is_convert_to_32bit*/
4262 0); /*single-precision*/
2ad0ff16 4263 product = tmp.d;
c906108c
SS
4264 }
4265 else {
4266 /*HACK!*/
4267 product = *(double*)frA * *(double*)frC;
4268 }
4269 /* compute the subtract */
4270 if (is_invalid_operation(processor, cia,
4271 product, *frB,
4272 fpscr_vxsnan | fpscr_vxisi,
4273 0, /*single?*/
4274 0) /*negate?*/) {
4275 invalid_arithemetic_operation(processor, cia,
4276 frT, product, *frB, 0,
4277 0, /*instruction_is_frsp*/
4278 0, /*instruction_is_convert_to_64bit*/
4279 0, /*instruction_is_convert_to_32bit*/
4280 0); /*single-precision*/
4281 }
4282 else {
4283 /*HACK!*/
4284 double s = -(product - *(double*)frB);
4285 *(double*)frT = s;
4286 }
4287 FPSCR_END(Rc);
4288 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4289
42900.59,6.FRT,11.FRA,16.FRB,21.FRC,26.30,31.Rc:A:f::Floating Negative Multiply-Subtract Single
4291*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
4292*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4293*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4294*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4295 FPSCR_BEGIN;
4296 float product; /*HACK! - incorrectly loosing precision ... */
4297 /* compute the multiply */
4298 if (is_invalid_operation(processor, cia,
4299 *frA, *frC,
4300 fpscr_vxsnan | fpscr_vximz,
4301 1, /*single?*/
4302 0) /*negate?*/) {
2ad0ff16 4303 union { double d; unsigned64 u; } tmp;
c906108c 4304 invalid_arithemetic_operation(processor, cia,
2ad0ff16 4305 &tmp.u, *frA, 0, *frC,
c906108c
SS
4306 0, /*instruction_is_frsp*/
4307 0, /*instruction_is_convert_to_64bit*/
4308 0, /*instruction_is_convert_to_32bit*/
4309 0); /*single-precision*/
2ad0ff16 4310 product = tmp.d;
c906108c
SS
4311 }
4312 else {
4313 /*HACK!*/
4314 product = *(double*)frA * *(double*)frC;
4315 }
4316 /* compute the subtract */
4317 if (is_invalid_operation(processor, cia,
4318 product, *frB,
4319 fpscr_vxsnan | fpscr_vxisi,
4320 1, /*single?*/
4321 0) /*negate?*/) {
4322 invalid_arithemetic_operation(processor, cia,
4323 frT, product, *frB, 0,
4324 0, /*instruction_is_frsp*/
4325 0, /*instruction_is_convert_to_64bit*/
4326 0, /*instruction_is_convert_to_32bit*/
4327 0); /*single-precision*/
4328 }
4329 else {
4330 /*HACK!*/
4331 float s = -(product - *(double*)frB);
4332 *(double*)frT = (double)s;
4333 }
4334 FPSCR_END(Rc);
4335 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4336
4337
4338#
4339# I.4.6.6 Floating-Point Rounding and Conversion Instructions
4340#
4341
43420.63,6.FRT,11./,16.FRB,21.12,31.Rc:X:f::Floating Round to Single-Precision
4343*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
4344*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4345*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4346*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4347 int sign;
4348 int exp;
4349 unsigned64 frac_grx;
4350 /***/
4351 /* split off cases for what to do */
4352 if (EXTRACTED64(*frB, 1, 11) < 897
4353 && EXTRACTED64(*frB, 1, 63) > 0) {
4354 if ((FPSCR & fpscr_ue) == 0) GOTO(Disabled_Exponent_Underflow);
4355 if ((FPSCR & fpscr_ue) != 0) GOTO(Enabled_Exponent_Underflow);
4356 }
4357 if (EXTRACTED64(*frB, 1, 11) > 1150
4358 && EXTRACTED64(*frB, 1, 11) < 2047) {
4359 if ((FPSCR & fpscr_oe) == 0) GOTO(Disabled_Exponent_Overflow);
4360 if ((FPSCR & fpscr_oe) != 0) GOTO(Enabled_Exponent_Overflow);
4361 }
4362 if (EXTRACTED64(*frB, 1, 11) > 896
4363 && EXTRACTED64(*frB, 1, 11) < 1151) GOTO(Normal_Operand);
4364 if (EXTRACTED64(*frB, 1, 63) == 0) GOTO(Zero_Operand);
4365 if (EXTRACTED64(*frB, 1, 11) == 2047) {
4366 if (EXTRACTED64(*frB, 12, 63) == 0) GOTO(Infinity_Operand);
4367 if (EXTRACTED64(*frB, 12, 12) == 1) GOTO(QNaN_Operand);
4368 if (EXTRACTED64(*frB, 12, 12) == 0
4369 && EXTRACTED64(*frB, 13, 63) > 0) GOTO(SNaN_Operand);
4370 }
4371 /**/
4372 LABEL(Disabled_Exponent_Underflow):
4373 sign = EXTRACTED64(*frB, 0, 0);
4374 if (EXTRACTED64(*frB, 1, 11) == 0) {
4375 exp = -1022;
4376 frac_grx = INSERTED64(EXTRACTED64(*frB, 12, 63), 1, 52);
4377 }
4378 if (EXTRACTED64(*frB, 1, 11) > 0) {
4379 exp = EXTRACTED64(*frB, 1, 11) - 1023;
4380 frac_grx = BIT64(0) | INSERTED64(EXTRACTED64(*frB, 12, 63), 1, 52);
4381 }
4382 /* G|R|X == zero from above */
4383 while (exp < -126) {
9ff590a5 4384 exp = exp + 1;
c906108c
SS
4385 frac_grx = (INSERTED64(EXTRACTED64(frac_grx, 0, 54), 1, 55)
4386 | MASKED64(frac_grx, 55, 55));
4387 }
4388 FPSCR_SET_UX(EXTRACTED64(frac_grx, 24, 55) > 0);
4389 Round_Single(processor, sign, &exp, &frac_grx);
4390 FPSCR_SET_XX(FPSCR & fpscr_fi);
4391 if (EXTRACTED64(frac_grx, 0, 52) == 0) {
4392 *frT = INSERTED64(sign, 0, 0);
4393 if (sign == 0) FPSCR_SET_FPRF(fpscr_rf_pos_zero);
4394 if (sign == 1) FPSCR_SET_FPRF(fpscr_rf_neg_zero);
4395 }
4396 if (EXTRACTED64(frac_grx, 0, 52) > 0) {
4397 if (EXTRACTED64(frac_grx, 0, 0) == 1) {
4398 if (sign == 0) FPSCR_SET_FPRF(fpscr_rf_pos_normal_number);
4399 if (sign == 1) FPSCR_SET_FPRF(fpscr_rf_neg_normal_number);
4400 }
4401 if (EXTRACTED64(frac_grx, 0, 0) == 0) {
4402 if (sign == 0) FPSCR_SET_FPRF(fpscr_rf_pos_denormalized_number);
4403 if (sign == 1) FPSCR_SET_FPRF(fpscr_rf_neg_denormalized_number);
4404 }
4405 /*Normalize_Operand:*/
4406 while (EXTRACTED64(frac_grx, 0, 0) == 0) {
4407 exp = exp - 1;
4408 frac_grx = INSERTED64(EXTRACTED64(frac_grx, 1, 52), 0, 51);
4409 }
4410 *frT = (INSERTED64(sign, 0, 0)
4411 | INSERTED64(exp + 1023, 1, 11)
4412 | INSERTED64(EXTRACTED64(frac_grx, 1, 52), 12, 63));
4413 }
4414 GOTO(Done);
4415 /**/
4416 LABEL(Enabled_Exponent_Underflow):
4417 FPSCR_SET_UX(1);
4418 sign = EXTRACTED64(*frB, 0, 0);
4419 if (EXTRACTED64(*frB, 1, 11) == 0) {
4420 exp = -1022;
4421 frac_grx = INSERTED64(EXTRACTED64(*frB, 12, 63), 1, 52);
4422 }
4423 if (EXTRACTED64(*frB, 1, 11) > 0) {
4424 exp = EXTRACTED64(*frB, 1, 11) - 1023;
4425 frac_grx = (BIT64(0) |
4426 INSERTED64(EXTRACTED64(*frB, 12, 63), 1, 52));
4427 }
4428 /*Normalize_Operand:*/
4429 while (EXTRACTED64(frac_grx, 0, 0) == 0) {
4430 exp = exp - 1;
4431 frac_grx = INSERTED64(EXTRACTED64(frac_grx, 1, 52), 0, 51);
4432 }
4433 Round_Single(processor, sign, &exp, &frac_grx);
4434 FPSCR_SET_XX(FPSCR & fpscr_fi);
4435 exp = exp + 192;
4436 *frT = (INSERTED64(sign, 0, 0)
4437 | INSERTED64(exp + 1023, 1, 11)
4438 | INSERTED64(EXTRACTED64(frac_grx, 1, 52), 12, 63));
4439 if (sign == 0) FPSCR_SET_FPRF(fpscr_rf_pos_normal_number);
4440 if (sign == 1) FPSCR_SET_FPRF(fpscr_rf_neg_normal_number);
4441 GOTO(Done);
4442 /**/
4443 LABEL(Disabled_Exponent_Overflow):
4444 FPSCR_SET_OX(1);
4445 if ((FPSCR & fpscr_rn) == fpscr_rn_round_to_nearest) {
4446 if (EXTRACTED64(*frB, 0, 0) == 0) {
4447 *frT = INSERTED64(0x7FF00000, 0, 31) | 0x00000000;
4448 FPSCR_SET_FPRF(fpscr_rf_pos_infinity);
4449 }
4450 if (EXTRACTED64(*frB, 0, 0) == 1) {
4451 *frT = INSERTED64(0xFFF00000, 0, 31) | 0x00000000;
4452 FPSCR_SET_FPRF(fpscr_rf_neg_infinity);
4453 }
4454 }
4455 if ((FPSCR & fpscr_rn) == fpscr_rn_round_towards_zero) {
4456 if (EXTRACTED64(*frB, 0, 0) == 0) {
4457 *frT = INSERTED64(0x47EFFFFF, 0, 31) | 0xE0000000;
4458 FPSCR_SET_FPRF(fpscr_rf_pos_normal_number);
4459 }
4460 if (EXTRACTED64(*frB, 0, 0) == 1) {
4461 *frT = INSERTED64(0xC7EFFFFF, 0, 31) | 0xE0000000;
4462 FPSCR_SET_FPRF(fpscr_rf_neg_normal_number);
4463 }
4464 }
4465 if ((FPSCR & fpscr_rn) == fpscr_rn_round_towards_pos_infinity) {
4466 if (EXTRACTED64(*frB, 0, 0) == 0) {
4467 *frT = INSERTED64(0x7FF00000, 0, 31) | 0x00000000;
4468 FPSCR_SET_FPRF(fpscr_rf_pos_infinity);
4469 }
4470 if (EXTRACTED64(*frB, 0, 0) == 1) {
4471 *frT = INSERTED64(0xC7EFFFFF, 0, 31) | 0xE0000000;
4472 FPSCR_SET_FPRF(fpscr_rf_neg_normal_number);
4473 }
4474 }
4475 if ((FPSCR & fpscr_rn) == fpscr_rn_round_towards_neg_infinity) {
4476 if (EXTRACTED64(*frB, 0, 0) == 0) {
4477 *frT = INSERTED64(0x47EFFFFF, 0, 31) | 0xE0000000;
4478 FPSCR_SET_FPRF(fpscr_rf_pos_normal_number);
4479 }
4480 if (EXTRACTED64(*frB, 0, 0) == 1) {
4481 *frT = INSERTED64(0xFFF00000, 0, 31) | 0x00000000;
4482 FPSCR_SET_FPRF(fpscr_rf_neg_infinity);
4483 }
4484 }
4485 /* FPSCR[FR] <- undefined */
4486 FPSCR_SET_FI(1);
4487 FPSCR_SET_XX(1);
4488 GOTO(Done);
4489 /**/
4490 LABEL(Enabled_Exponent_Overflow):
4491 sign = EXTRACTED64(*frB, 0, 0);
4492 exp = EXTRACTED64(*frB, 1, 11) - 1023;
4493 frac_grx = BIT64(0) | INSERTED64(EXTRACTED64(*frB, 12, 63), 1, 52);
4494 Round_Single(processor, sign, &exp, &frac_grx);
4495 FPSCR_SET_XX(FPSCR & fpscr_fi);
4496 /**/
4497 LABEL(Enabled_Overflow):
4498 FPSCR_SET_OX(1);
4499 exp = exp - 192;
4500 *frT = (INSERTED64(sign, 0, 0)
4501 | INSERTED64(exp + 1023, 1, 11)
4502 | INSERTED64(EXTRACTED64(frac_grx, 1, 52), 12, 63));
4503 if (sign == 0) FPSCR_SET_FPRF(fpscr_rf_pos_normal_number);
4504 if (sign == 1) FPSCR_SET_FPRF(fpscr_rf_neg_normal_number);
4505 GOTO(Done);
4506 /**/
4507 LABEL(Zero_Operand):
4508 *frT = *frB;
4509 if (EXTRACTED64(*frB, 0, 0) == 0) FPSCR_SET_FPRF(fpscr_rf_pos_zero);
4510 if (EXTRACTED64(*frB, 0, 0) == 1) FPSCR_SET_FPRF(fpscr_rf_neg_zero);
4511 FPSCR_SET_FR(0);
4512 FPSCR_SET_FI(0);
4513 GOTO(Done);
4514 /**/
4515 LABEL(Infinity_Operand):
4516 *frT = *frB;
4517 if (EXTRACTED64(*frB, 0, 0) == 0) FPSCR_SET_FPRF(fpscr_rf_pos_infinity);
4518 if (EXTRACTED64(*frB, 0, 0) == 1) FPSCR_SET_FPRF(fpscr_rf_neg_infinity);
4519 FPSCR_SET_FR(0);
4520 FPSCR_SET_FI(0);
4521 GOTO(Done);
4522 /**/
4523 LABEL(QNaN_Operand):
4524 *frT = INSERTED64(EXTRACTED64(*frB, 0, 34), 0, 34);
4525 FPSCR_SET_FPRF(fpscr_rf_quiet_nan);
4526 FPSCR_SET_FR(0);
4527 FPSCR_SET_FI(0);
4528 GOTO(Done);
4529 /**/
4530 LABEL(SNaN_Operand):
4531 FPSCR_OR_VX(fpscr_vxsnan);
4532 if ((FPSCR & fpscr_ve) == 0) {
4533 *frT = (MASKED64(*frB, 0, 11)
4534 | BIT64(12)
4535 | MASKED64(*frB, 13, 34));
4536 FPSCR_SET_FPRF(fpscr_rf_quiet_nan);
4537 }
4538 FPSCR_SET_FR(0);
4539 FPSCR_SET_FI(0);
4540 GOTO(Done);
4541 /**/
4542 LABEL(Normal_Operand):
4543 sign = EXTRACTED64(*frB, 0, 0);
4544 exp = EXTRACTED64(*frB, 1, 11) - 1023;
4545 frac_grx = BIT64(0) | INSERTED64(EXTRACTED64(*frB, 12, 63), 1, 52);
4546 Round_Single(processor, sign, &exp, &frac_grx);
4547 FPSCR_SET_XX(FPSCR & fpscr_fi);
4548 if (exp > 127 && (FPSCR & fpscr_oe) == 0) GOTO(Disabled_Exponent_Overflow);
4549 if (exp > 127 && (FPSCR & fpscr_oe) != 0) GOTO(Enabled_Overflow);
4550 *frT = (INSERTED64(sign, 0, 0)
4551 | INSERTED64(exp + 1023, 1, 11)
4552 | INSERTED64(EXTRACTED64(frac_grx, 1, 52), 12, 63));
4553 if (sign == 0) FPSCR_SET_FPRF(fpscr_rf_pos_normal_number);
4554 if (sign == 1) FPSCR_SET_FPRF(fpscr_rf_neg_normal_number);
4555 GOTO(Done);
4556 /**/
4557 LABEL(Done):
4558 PPC_INSN_FLOAT(FRT_BITMASK, FRB_BITMASK, Rc);
4559
4560
45610.63,6.FRT,11./,16.FRB,21.814,31.Rc:X:64,f::Floating Convert To Integer Doubleword
4562 floating_point_assist_interrupt(processor, cia);
4563
45640.63,6.FRT,11./,16.FRB,21.815,31.Rc:X:64,f::Floating Convert To Integer Doubleword with round towards Zero
4565 floating_point_assist_interrupt(processor, cia);
4566
45670.63,6.FRT,11./,16.FRB,21.14,31.Rc:X:f::Floating Convert To Integer Word
4568 floating_point_assist_interrupt(processor, cia);
4569
45700.63,6.FRT,11./,16.FRB,21.15,31.Rc:X:f:fctiwz:Floating Convert To Integer Word with round towards Zero
4571*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
4572*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4573*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4574*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4575 FPSCR_BEGIN;
4576 convert_to_integer(processor, cia,
4577 frT, *frB,
4578 fpscr_rn_round_towards_zero, 32);
4579 FPSCR_END(Rc);
4580 PPC_INSN_FLOAT(FRT_BITMASK, FRB_BITMASK, Rc);
4581
45820.63,6.FRT,11./,16.FRB,21.846,31.Rc:X:64,f::Floating Convert from Integer Doubleword
4583 int sign = EXTRACTED64(*frB, 0, 0);
4584 int exp = 63;
4585 unsigned64 frac = *frB;
4586 /***/
4587 if (frac == 0) GOTO(Zero_Operand);
4588 if (sign == 1) frac = ~frac + 1;
4589 while (EXTRACTED64(frac, 0, 0) == 0) {
4590 /*??? do the loop 0 times if (FRB) = max negative integer */
4591 frac = INSERTED64(EXTRACTED64(frac, 1, 63), 0, 62);
4592 exp = exp - 1;
4593 }
4594 Round_Float(processor, sign, &exp, &frac, FPSCR & fpscr_rn);
4595 if (sign == 0) FPSCR_SET_FPRF(fpscr_rf_pos_normal_number);
4596 if (sign == 1) FPSCR_SET_FPRF(fpscr_rf_pos_normal_number);
4597 *frT = (INSERTED64(sign, 0, 0)
4598 | INSERTED64(exp + 1023, 1, 11)
4599 | INSERTED64(EXTRACTED64(frac, 1, 52), 12, 63));
4600 GOTO(Done);
4601 /**/
4602 LABEL(Zero_Operand):
4603 FPSCR_SET_FR(0);
4604 FPSCR_SET_FI(0);
4605 FPSCR_SET_FPRF(fpscr_rf_pos_zero);
4606 *frT = 0;
4607 GOTO(Done);
4608 /**/
4609 LABEL(Done):
4610 PPC_INSN_FLOAT(FRT_BITMASK, FRB_BITMASK, Rc);
4611
4612
4613#
4614# I.4.6.7 Floating-Point Compare Instructions
4615#
4616
46170.63,6.BF,9./,11.FRA,16.FRB,21.0,31./:X:f:fcmpu:Floating Compare Unordered
4618*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
4619*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4620*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4621*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4622 FPSCR_BEGIN;
4623 unsigned c;
4624 if (is_NaN(*frA, 0) || is_NaN(*frB, 0))
4625 c = cr_i_summary_overflow; /* 0b0001 - (FRA) ? (FRB) */
4626 else if (is_less_than(frA, frB))
4627 c = cr_i_negative; /* 0b1000 - (FRA) < (FRB) */
4628 else if (is_greater_than(frA, frB))
4629 c = cr_i_positive; /* 0b0100 - (FRA) > (FRB) */
4630 else
4631 c = cr_i_zero; /* 0b0010 - (FRA) = (FRB) */
4632 FPSCR_SET_FPCC(c);
4633 CR_SET(BF, c); /* CR[4*BF..4*BF+3] = c */
4634 if (is_SNaN(*frA, 0) || is_SNaN(*frB, 0))
4635 FPSCR_OR_VX(fpscr_vxsnan);
4636 FPSCR_END(0);
4637 PPC_INSN_FLOAT_CR(0, FRA_BITMASK | FRB_BITMASK, BF_BITMASK);
4638
46390.63,6.BF,9./,11.FRA,16.FRB,21.32,31./:X:f:fcmpo:Floating Compare Ordered
4640*601: PPC_UNIT_FPU, PPC_UNIT_FPU, 4, 4, 0
4641*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4642*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4643*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4644 FPSCR_BEGIN;
4645 unsigned c;
4646 if (is_NaN(*frA, 0) || is_NaN(*frB, 0))
4647 c = cr_i_summary_overflow; /* 0b0001 - (FRA) ? (FRB) */
4648 else if (is_less_than(frA, frB))
4649 c = cr_i_negative; /* 0b1000 - (FRA) < (FRB) */
4650 else if (is_greater_than(frA, frB))
4651 c = cr_i_positive; /* 0b0100 - (FRA) > (FRB) */
4652 else
4653 c = cr_i_zero; /* 0b0010 - (FRA) = (FRB) */
4654 FPSCR_SET_FPCC(c);
4655 CR_SET(BF, c); /* CR[4*BF..4*BF+3] = c */
4656 if (is_SNaN(*frA, 0) || is_SNaN(*frB, 0)) {
4657 FPSCR_OR_VX(fpscr_vxsnan);
4658 if ((FPSCR & fpscr_ve) == 0)
4659 FPSCR_OR_VX(fpscr_vxvc);
4660 }
4661 else if (is_QNaN(*frA, 0) || is_QNaN(*frB, 0)) {
4662 FPSCR_OR_VX(fpscr_vxvc);
4663 }
4664 FPSCR_END(0);
4665 PPC_INSN_FLOAT_CR(0, FRA_BITMASK | FRB_BITMASK, BF_BITMASK);
4666
4667
4668#
4669# I.4.6.8 Floating-Point Status and Control Register Instructions
4670#
4671
46720.63,6.FRT,11./,16./,21.583,31.Rc:X:f::Move From FPSCR
4673 FPSCR_BEGIN;
4674 *frT = FPSCR;
4675 FPSCR_END(Rc);
4676
46770.63,6.BF,9./,11.BFA,14./,16./,21.64,31./:X:f::Move to Condition Register from FPSCR
4678 FPSCR_BEGIN;
4679 unsigned field = FPSCR_FIELD(BFA);
4680 CR_SET(BF, field);
4681 FPSCR_SET(BFA, 0); /* FPSCR_END fixes up FEX/VX */
4682 FPSCR_END(0);
4683
ec80ed80 46840.63,6.BF,9./,11./,16.U,20./,21.134,31.Rc:X:f::Move To FPSCR Field Immediate
c906108c
SS
4685 FPSCR_BEGIN;
4686 FPSCR_SET(BF, U);
4687 FPSCR_END(Rc);
4688
46890.63,6./,7.FLM,15./,16.FRB,21.711,31.Rc:XFL:f::Move To FPSCR Fields
4690 FPSCR_BEGIN;
4691 int i;
4692 for (i = 0; i < 8; i++) {
4693 if ((FLM & BIT8(i))) {
4694 FPSCR &= ~MASK32(i*4, i*4+3);
4695 FPSCR |= MASKED32(*frB, i*4, i*4+3);
4696 }
4697 }
4698 FPSCR_END(Rc);
4699
47000.63,6.BT,11./,16./,21.70,31.Rc:X:f::Move To FPSCR Bit 0
4701 FPSCR_BEGIN;
4702 unsigned32 bit = BIT32(BT);
4703 FPSCR &= ~bit;
4704 FPSCR_END(Rc);
4705
47060.63,6.BT,11./,16./,21.38,31.Rc:X:f::Move To FPSCR Bit 1
4707 FPSCR_BEGIN;
4708 unsigned32 bit = BIT32(BT);
4709 if (bit & fpscr_fi)
4710 bit |= fpscr_xx;
4711 if ((bit & fpscr_vx_bits))
4712 bit |= fpscr_fx;
4713 /* note - omit vx bit */
4714 if ((bit & (fpscr_ox | fpscr_ux | fpscr_zx | fpscr_xx)))
4715 bit |= fpscr_fx;
4716 FPSCR |= bit;
4717 FPSCR_END(Rc);
4718
c906108c
SS
4719#
4720# I.A.1.2 Floating-Point Arithmetic Instructions
4721#
4722
47230.63,6.FRT,11./,16.FRB,21./,26.22,31.Rc:A:f,o::Floating Square Root
4724 program_interrupt(processor, cia, optional_instruction_program_interrupt);
4725
47260.59,6.FRT,11./,16.FRB,21./,26.22,31.Rc:A:f,o::Floating Square Root Single
4727 program_interrupt(processor, cia, optional_instruction_program_interrupt);
4728
47290.59,6.FRT,11./,16.FRB,21./,26.24,31.Rc:A:f,o::Floating Reciprocal Estimate Single
4730 program_interrupt(processor, cia, optional_instruction_program_interrupt);
4731
47320.63,6.FRT,11./,16.FRB,21./,26.26,31.Rc:A:f,o::Floating Reciprocal Square Root Estimate
4733 program_interrupt(processor, cia, optional_instruction_program_interrupt);
4734
4735#
4736# I.A.1.3 Floating-Point Select Instruction
4737#
4738
47390.63,6.FRT,11.FRA,16.FRB,21.FRC,26.23,31.Rc:A:f,o::Floating Select
4740*601: PPC_UNIT_BAD, PPC_UNIT_BAD, 0, 0, 0
4741*603: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4742*603e:PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4743*604: PPC_UNIT_FPU, PPC_UNIT_FPU, 1, 3, 0
4744 if (CURRENT_MODEL == MODEL_ppc601) {
4745 program_interrupt(processor, cia, optional_instruction_program_interrupt);
4746 } else {
4747 unsigned64 zero = 0;
4748 FPSCR_BEGIN;
4749 if (is_NaN(*frA, 0) || is_less_than (frA, &zero)) *frT = *frB;
4750 else *frT = *frC;
4751 FPSCR_END(Rc);
4752 PPC_INSN_FLOAT(FRT_BITMASK, FRA_BITMASK | FRB_BITMASK | FRC_BITMASK, Rc);
4753 }
4754
4755#
4756# II.3.2 Cache Management Instructions
4757#
4758
47590.31,6./,11.RA,16.RB,21.982,31./:X::icbi:Instruction Cache Block Invalidate
4760*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4761*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
4762*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
4763*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 1, 0
4764 /* blindly flush all instruction cache entries */
4765 #if WITH_IDECODE_CACHE_SIZE
4766 cpu_flush_icache(processor);
4767 #endif
4768 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK, 0);
4769
47700.19,6./,11./,16./,21.150,31./:XL::isync:Instruction Synchronize
4771*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4772*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
4773*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
4774*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 1, 0
4775 cpu_synchronize_context(processor, cia);
4776 PPC_INSN_INT(0, 0, 0);
4777
4778
4779#
4780# II.3.2.2 Data Cache Instructions
4781#
4782
47830.31,6./,11.RA,16.RB,21.278,31./:X:::Data Cache Block Touch
4784*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4785*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 2, 2, 0
4786*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 2, 2, 0
4787*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 1, 0
4788 TRACE(trace_tbd,("Data Cache Block Touch\n"));
4789 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK, 0/*Rc*/);
4790
47910.31,6./,11.RA,16.RB,21.246,31./:X:::Data Cache Block Touch for Store
4792*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4793*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 2, 2, 0
4794*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 2, 2, 0
4795*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
4796 TRACE(trace_tbd,("Data Cache Block Touch for Store\n"));
4797 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK, 0/*Rc*/);
4798
47990.31,6./,11.RA,16.RB,21.1014,31./:X:::Data Cache Block set to Zero
4800*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4801*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 10, 10, 0
4802*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 10, 10, 0
4803*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
4804 TRACE(trace_tbd,("Data Cache Block set to Zero\n"));
4805 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK, 0/*Rc*/);
4806
48070.31,6./,11.RA,16.RB,21.54,31./:X:::Data Cache Block Store
4808*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4809*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 5, 5, 0
4810*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 5, 5, 0
4811*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 1, 0
4812 TRACE(trace_tbd,("Data Cache Block Store\n"));
4813 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK, 0/*Rc*/);
4814
48150.31,6./,11.RA,16.RB,21.86,31./:X:::Data Cache Block Flush
4816*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4817*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 5, 5, 0
4818*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 5, 5, 0
4819*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 1, 0
4820 TRACE(trace_tbd,("Data Cache Block Flush\n"));
4821 PPC_INSN_INT(0, (RA_BITMASK & ~1) | RB_BITMASK, 0/*Rc*/);
4822
4823#
4824# II.3.3 Enforce In-order Execution of I/O Instruction
4825#
4826
48270.31,6./,11./,16./,21.854,31./:X::eieio:Enforce In-order Execution of I/O
4828 /* Since this model has no instruction overlap
4829 this instruction need do nothing */
4830
4831#
4832# II.4.1 Time Base Instructions
4833#
4834
48350.31,6.RT,11.tbr,21.371,31./:XFX::mftb:Move From Time Base
4836*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
4837*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
4838*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 3, 3, 0
4839 int n = (tbr{5:9} << 5) | tbr{0:4};
4840 if (n == 268) {
4841 if (is_64bit_implementation) *rT = TB;
4842 else *rT = EXTRACTED64(TB, 32, 63);
4843 }
4844 else if (n == 269) {
4845 if (is_64bit_implementation) *rT = EXTRACTED64(TB, 0, 31);
4846 else *rT = EXTRACTED64(TB, 0, 31);
4847 }
4848 else
4849 program_interrupt(processor, cia,
4850 illegal_instruction_program_interrupt);
4851
4852
4853#
4854# III.2.3.1 System Linkage Instructions
4855#
4856
48570.19,6./,11./,16./,21.50,31./:XL::rfi:Return From Interrupt
4858*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4859*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 3, 3, 0
4860*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 3, 3, 0
4861*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 3, 3, 0
4862 if (IS_PROBLEM_STATE(processor)) {
4863 program_interrupt(processor, cia,
4864 privileged_instruction_program_interrupt);
4865 }
4866 else {
4867 MSR = (MASKED(SRR1, 0, 32)
4868 | MASKED(SRR1, 37, 41)
4869 | MASKED(SRR1, 48, 63));
4870 NIA = MASKED(SRR0, 0, 61);
4871 cpu_synchronize_context(processor, cia);
4872 check_masked_interrupts(processor);
4873 }
4874
4875#
4876# III.3.4.1 Move to/from System Register Instructions
4877#
4878
4879#0.31,6.RS,11.SPR,21.467,31./:XFX:::Move To Special Purpose Register
4880#0.31,6.RT,11.SPR,21.339,31./:XFX:::Move From Special Purpose Register
48810.31,6.RS,11./,16./,21.146,31./:X:::Move To Machine State Register
4882*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4883*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 2, 2, 0
4884*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 2, 2, 0
4885*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 1, 1, 0
4886 if (IS_PROBLEM_STATE(processor))
4887 program_interrupt(processor, cia,
4888 privileged_instruction_program_interrupt);
4889 else {
4890 MSR = *rS;
4891 check_masked_interrupts(processor);
4892 }
4893
48940.31,6.RT,11./,16./,21.83,31./:X:::Move From Machine State Register
4895*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4896*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
4897*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 1, 1, 0
4898*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 3, 3, 0
4899 if (IS_PROBLEM_STATE(processor))
4900 program_interrupt(processor, cia,
4901 privileged_instruction_program_interrupt);
4902 else {
4903 *rT = MSR;
4904 check_masked_interrupts(processor);
4905 }
4906
4907
4908#
4909# III.4.11.1 Cache Management Instructions
4910#
4911
49120.31,6./,11.RA,16.RB,21.470,31./:X::dcbi:Data Cache Block Invalidate
4913*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4914*603: PPC_UNIT_LSU, PPC_UNIT_LSU, 2, 2, 0
4915*603e:PPC_UNIT_LSU, PPC_UNIT_LSU, 2, 2, 0
4916*604: PPC_UNIT_LSU, PPC_UNIT_LSU, 1, 3, 0
4917 if (IS_PROBLEM_STATE(processor))
4918 program_interrupt(processor, cia,
4919 privileged_instruction_program_interrupt);
4920 else
4921 TRACE(trace_tbd,("Data Cache Block Invalidate\n"));
4922
4923#
4924# III.4.11.2 Segment Register Manipulation Instructions
4925#
4926
49270.31,6.RS,11./,12.SR,16./,21.210,31./:X:32:mtsr %SR,%RS:Move To Segment Register
4928*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4929*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 2, 2, 0
4930*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 2, 2, 0
4931*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 1, 1, 0
4932 if (IS_PROBLEM_STATE(processor))
4933 program_interrupt(processor, cia,
4934 privileged_instruction_program_interrupt);
4935 else
4936 SEGREG(SR) = *rS;
4937
49380.31,6.RS,11./,16.RB,21.242,31./:X:32:mtsrin %RS,%RB:Move To Segment Register Indirect
4939*601: PPC_UNIT_IU, PPC_UNIT_IU, 1, 1, 0
4940*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 2, 2, 0
4941*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 2, 2, 0
4942*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 1, 1, 0
4943 if (IS_PROBLEM_STATE(processor))
4944 program_interrupt(processor, cia,
4945 privileged_instruction_program_interrupt);
4946 else
4947 SEGREG(EXTRACTED32(*rB, 0, 3)) = *rS;
4948
49490.31,6.RT,11./,12.SR,16./,21.595,31./:X:32:mfsr %RT,%RS:Move From Segment Register
4950*601: PPC_UNIT_IU, PPC_UNIT_IU, 2, 2, 0
4951*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 3, 3, 0
4952*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 3, 3, 0
4953*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 1, 1, 0
4954 if (IS_PROBLEM_STATE(processor))
4955 program_interrupt(processor, cia,
4956 privileged_instruction_program_interrupt);
4957 else
4958 *rT = SEGREG(SR);
4959
49600.31,6.RT,11./,16.RB,21.659,31./:X:32:mfsrin %RT,%RB:Move From Segment Register Indirect
4961*601: PPC_UNIT_IU, PPC_UNIT_IU, 2, 2, 0
4962*603: PPC_UNIT_SRU, PPC_UNIT_SRU, 3, 3, 0
4963*603e:PPC_UNIT_SRU, PPC_UNIT_SRU, 3, 3, 0
4964*604: PPC_UNIT_MCIU, PPC_UNIT_MCIU, 1, 1, 0
4965 if (IS_PROBLEM_STATE(processor))
4966 program_interrupt(processor, cia,
4967 privileged_instruction_program_interrupt);
4968 else
4969 *rT = SEGREG(EXTRACTED32(*rB, 0, 3));
4970
4971
4972#
4973# III.4.11.3 Lookaside Buffer Management Instructions (Optional)
4974#
4975
49760.31,6./,11./,16.RB,21.434,31./:X:64::SLB Invalidate Entry
4977
49780.31,6./,11./,16./,21.498,31./:X:64::SLB Invalidate All
4979
49800.31,6./,11./,16.RB,21.306,31./:X:::TLB Invalidate Entry
4981 if (IS_PROBLEM_STATE(processor))
4982 program_interrupt(processor, cia,
4983 privileged_instruction_program_interrupt);
4984 else {
4985 int nr = 0;
4986 cpu *proc;
4987 while (1) {
4988 proc = psim_cpu(cpu_system(processor), nr);
4989 if (proc == NULL) break;
4990 cpu_page_tlb_invalidate_entry(proc, *rB);
4991 nr++;
4992 }
4993 }
4994
49950.31,6./,11./,16./,21.370,31./:X:::TLB Invalidate All
4996 if (IS_PROBLEM_STATE(processor))
4997 program_interrupt(processor, cia,
4998 privileged_instruction_program_interrupt);
4999 else {
5000 int nr = 0;
5001 cpu *proc;
5002 while (1) {
5003 proc = psim_cpu(cpu_system(processor), nr);
5004 if (proc == NULL) break;
5005 cpu_page_tlb_invalidate_all(proc);
5006 nr++;
5007 }
5008 }
5009
50100.31,6./,11./,16./,21.566,31./:X:::TLB Synchronize
5011 /* nothing happens here - always in sync */
5012
5013#
5014# III.A.1.2 External Access Instructions
5015#
5016
50170.31,6.RT,11.RA,16.RB,21.310,31./:X:earwax::External Control In Word Indexed
5018
50190.31,6.RS,11.RA,16.RB,21.438,31./:X:earwax::External Control Out Word Indexed
345d88d9
AC
5020
5021:include:::altivec.igen
5022:include:::e500.igen