1//===-- PPCInstr64Bit.td - The PowerPC 64-bit Support ------*- tablegen -*-===//
2//
3//                     The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file describes the PowerPC 64-bit instructions.  These patterns are used
11// both when in ppc64 mode and when in "use 64-bit extensions in 32-bit" mode.
12//
13//===----------------------------------------------------------------------===//
14
15//===----------------------------------------------------------------------===//
16// 64-bit operands.
17//
18def s16imm64 : Operand<i64> {
19  let PrintMethod = "printS16ImmOperand";
20  let EncoderMethod = "getImm16Encoding";
21  let ParserMatchClass = PPCS16ImmAsmOperand;
22  let DecoderMethod = "decodeSImmOperand<16>";
23}
24def u16imm64 : Operand<i64> {
25  let PrintMethod = "printU16ImmOperand";
26  let EncoderMethod = "getImm16Encoding";
27  let ParserMatchClass = PPCU16ImmAsmOperand;
28  let DecoderMethod = "decodeUImmOperand<16>";
29}
30def s17imm64 : Operand<i64> {
31  // This operand type is used for addis/lis to allow the assembler parser
32  // to accept immediates in the range -65536..65535 for compatibility with
33  // the GNU assembler.  The operand is treated as 16-bit otherwise.
34  let PrintMethod = "printS16ImmOperand";
35  let EncoderMethod = "getImm16Encoding";
36  let ParserMatchClass = PPCS17ImmAsmOperand;
37  let DecoderMethod = "decodeSImmOperand<16>";
38}
39def tocentry : Operand<iPTR> {
40  let MIOperandInfo = (ops i64imm:$imm);
41}
42def tlsreg : Operand<i64> {
43  let EncoderMethod = "getTLSRegEncoding";
44  let ParserMatchClass = PPCTLSRegOperand;
45}
46def tlsgd : Operand<i64> {}
47def tlscall : Operand<i64> {
48  let PrintMethod = "printTLSCall";
49  let MIOperandInfo = (ops calltarget:$func, tlsgd:$sym);
50  let EncoderMethod = "getTLSCallEncoding";
51}
52
53//===----------------------------------------------------------------------===//
54// 64-bit transformation functions.
55//
56
57def SHL64 : SDNodeXForm<imm, [{
58  // Transformation function: 63 - imm
59  return getI32Imm(63 - N->getZExtValue(), SDLoc(N));
60}]>;
61
62def SRL64 : SDNodeXForm<imm, [{
63  // Transformation function: 64 - imm
64  return N->getZExtValue() ? getI32Imm(64 - N->getZExtValue(), SDLoc(N))
65                           : getI32Imm(0, SDLoc(N));
66}]>;
67
68
69//===----------------------------------------------------------------------===//
70// Calls.
71//
72
73let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
74let isTerminator = 1, isBarrier = 1, PPC970_Unit = 7 in {
75  let isReturn = 1, Uses = [LR8, RM] in
76    def BLR8 : XLForm_2_ext<19, 16, 20, 0, 0, (outs), (ins), "blr", IIC_BrB,
77                            [(retflag)]>, Requires<[In64BitMode]>;
78  let isBranch = 1, isIndirectBranch = 1, Uses = [CTR8] in {
79    def BCTR8 : XLForm_2_ext<19, 528, 20, 0, 0, (outs), (ins), "bctr", IIC_BrB,
80                             []>,
81        Requires<[In64BitMode]>;
82    def BCCCTR8 : XLForm_2_br<19, 528, 0, (outs), (ins pred:$cond),
83                              "b${cond:cc}ctr${cond:pm} ${cond:reg}", IIC_BrB,
84                              []>,
85        Requires<[In64BitMode]>;
86
87    def BCCTR8  : XLForm_2_br2<19, 528, 12, 0, (outs), (ins crbitrc:$bi),
88                               "bcctr 12, $bi, 0", IIC_BrB, []>,
89        Requires<[In64BitMode]>;
90    def BCCTR8n : XLForm_2_br2<19, 528, 4, 0, (outs), (ins crbitrc:$bi),
91                               "bcctr 4, $bi, 0", IIC_BrB, []>,
92        Requires<[In64BitMode]>;
93  }
94}
95
96let Defs = [LR8] in
97  def MovePCtoLR8 : Pseudo<(outs), (ins), "#MovePCtoLR8", []>,
98                    PPC970_Unit_BRU;
99
100let isBranch = 1, isTerminator = 1, hasCtrlDep = 1, PPC970_Unit = 7 in {
101  let Defs = [CTR8], Uses = [CTR8] in {
102    def BDZ8  : BForm_1<16, 18, 0, 0, (outs), (ins condbrtarget:$dst),
103                        "bdz $dst">;
104    def BDNZ8 : BForm_1<16, 16, 0, 0, (outs), (ins condbrtarget:$dst),
105                        "bdnz $dst">;
106  }
107
108  let isReturn = 1, Defs = [CTR8], Uses = [CTR8, LR8, RM] in {
109    def BDZLR8  : XLForm_2_ext<19, 16, 18, 0, 0, (outs), (ins),
110                              "bdzlr", IIC_BrB, []>;
111    def BDNZLR8 : XLForm_2_ext<19, 16, 16, 0, 0, (outs), (ins),
112                              "bdnzlr", IIC_BrB, []>;
113  }
114}
115
116
117
118let isCall = 1, PPC970_Unit = 7, Defs = [LR8] in {
119  // Convenient aliases for call instructions
120  let Uses = [RM] in {
121    def BL8  : IForm<18, 0, 1, (outs), (ins calltarget:$func),
122                     "bl $func", IIC_BrB, []>;  // See Pat patterns below.
123
124    def BL8_TLS  : IForm<18, 0, 1, (outs), (ins tlscall:$func),
125                         "bl $func", IIC_BrB, []>;
126
127    def BLA8 : IForm<18, 1, 1, (outs), (ins abscalltarget:$func),
128                     "bla $func", IIC_BrB, [(PPCcall (i64 imm:$func))]>;
129  }
130  let Uses = [RM], isCodeGenOnly = 1 in {
131    def BL8_NOP  : IForm_and_DForm_4_zero<18, 0, 1, 24,
132                             (outs), (ins calltarget:$func),
133                             "bl $func\n\tnop", IIC_BrB, []>;
134
135    def BL8_NOP_TLS : IForm_and_DForm_4_zero<18, 0, 1, 24,
136                                  (outs), (ins tlscall:$func),
137                                  "bl $func\n\tnop", IIC_BrB, []>;
138
139    def BLA8_NOP : IForm_and_DForm_4_zero<18, 1, 1, 24,
140                             (outs), (ins abscalltarget:$func),
141                             "bla $func\n\tnop", IIC_BrB,
142                             [(PPCcall_nop (i64 imm:$func))]>;
143  }
144  let Uses = [CTR8, RM] in {
145    def BCTRL8 : XLForm_2_ext<19, 528, 20, 0, 1, (outs), (ins),
146                              "bctrl", IIC_BrB, [(PPCbctrl)]>,
147                 Requires<[In64BitMode]>;
148
149    let isCodeGenOnly = 1 in {
150      def BCCCTRL8 : XLForm_2_br<19, 528, 1, (outs), (ins pred:$cond),
151                                 "b${cond:cc}ctrl${cond:pm} ${cond:reg}", IIC_BrB,
152                                 []>,
153          Requires<[In64BitMode]>;
154
155      def BCCTRL8  : XLForm_2_br2<19, 528, 12, 1, (outs), (ins crbitrc:$bi),
156                                  "bcctrl 12, $bi, 0", IIC_BrB, []>,
157          Requires<[In64BitMode]>;
158      def BCCTRL8n : XLForm_2_br2<19, 528, 4, 1, (outs), (ins crbitrc:$bi),
159                                  "bcctrl 4, $bi, 0", IIC_BrB, []>,
160          Requires<[In64BitMode]>;
161    }
162  }
163}
164
165let isCall = 1, PPC970_Unit = 7, isCodeGenOnly = 1,
166    Defs = [LR8, X2], Uses = [CTR8, RM], RST = 2 in {
167  def BCTRL8_LDinto_toc :
168    XLForm_2_ext_and_DSForm_1<19, 528, 20, 0, 1, 58, 0, (outs),
169                              (ins memrix:$src),
170                              "bctrl\n\tld 2, $src", IIC_BrB,
171                              [(PPCbctrl_load_toc ixaddr:$src)]>,
172    Requires<[In64BitMode]>;
173}
174
175} // Interpretation64Bit
176
177// FIXME: Duplicating this for the asm parser should be unnecessary, but the
178// previous definition must be marked as CodeGen only to prevent decoding
179// conflicts.
180let Interpretation64Bit = 1, isAsmParserOnly = 1 in
181let isCall = 1, PPC970_Unit = 7, Defs = [LR8], Uses = [RM] in
182def BL8_TLS_ : IForm<18, 0, 1, (outs), (ins tlscall:$func),
183                     "bl $func", IIC_BrB, []>;
184
185// Calls
186def : Pat<(PPCcall (i64 tglobaladdr:$dst)),
187          (BL8 tglobaladdr:$dst)>;
188def : Pat<(PPCcall_nop (i64 tglobaladdr:$dst)),
189          (BL8_NOP tglobaladdr:$dst)>;
190
191def : Pat<(PPCcall (i64 texternalsym:$dst)),
192          (BL8 texternalsym:$dst)>;
193def : Pat<(PPCcall_nop (i64 texternalsym:$dst)),
194          (BL8_NOP texternalsym:$dst)>;
195
196// Atomic operations
197let usesCustomInserter = 1 in {
198  let Defs = [CR0] in {
199    def ATOMIC_LOAD_ADD_I64 : Pseudo<
200      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_ADD_I64",
201      [(set i64:$dst, (atomic_load_add_64 xoaddr:$ptr, i64:$incr))]>;
202    def ATOMIC_LOAD_SUB_I64 : Pseudo<
203      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_SUB_I64",
204      [(set i64:$dst, (atomic_load_sub_64 xoaddr:$ptr, i64:$incr))]>;
205    def ATOMIC_LOAD_OR_I64 : Pseudo<
206      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_OR_I64",
207      [(set i64:$dst, (atomic_load_or_64 xoaddr:$ptr, i64:$incr))]>;
208    def ATOMIC_LOAD_XOR_I64 : Pseudo<
209      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_XOR_I64",
210      [(set i64:$dst, (atomic_load_xor_64 xoaddr:$ptr, i64:$incr))]>;
211    def ATOMIC_LOAD_AND_I64 : Pseudo<
212      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_AND_i64",
213      [(set i64:$dst, (atomic_load_and_64 xoaddr:$ptr, i64:$incr))]>;
214    def ATOMIC_LOAD_NAND_I64 : Pseudo<
215      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_NAND_I64",
216      [(set i64:$dst, (atomic_load_nand_64 xoaddr:$ptr, i64:$incr))]>;
217    def ATOMIC_LOAD_MIN_I64 : Pseudo<
218      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_MIN_I64",
219      [(set i64:$dst, (atomic_load_min_64 xoaddr:$ptr, i64:$incr))]>;
220    def ATOMIC_LOAD_MAX_I64 : Pseudo<
221      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_MAX_I64",
222      [(set i64:$dst, (atomic_load_max_64 xoaddr:$ptr, i64:$incr))]>;
223    def ATOMIC_LOAD_UMIN_I64 : Pseudo<
224      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_UMIN_I64",
225      [(set i64:$dst, (atomic_load_umin_64 xoaddr:$ptr, i64:$incr))]>;
226    def ATOMIC_LOAD_UMAX_I64 : Pseudo<
227      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$incr), "#ATOMIC_LOAD_UMAX_I64",
228      [(set i64:$dst, (atomic_load_umax_64 xoaddr:$ptr, i64:$incr))]>;
229
230    def ATOMIC_CMP_SWAP_I64 : Pseudo<
231      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$old, g8rc:$new), "#ATOMIC_CMP_SWAP_I64",
232      [(set i64:$dst, (atomic_cmp_swap_64 xoaddr:$ptr, i64:$old, i64:$new))]>;
233
234    def ATOMIC_SWAP_I64 : Pseudo<
235      (outs g8rc:$dst), (ins memrr:$ptr, g8rc:$new), "#ATOMIC_SWAP_I64",
236      [(set i64:$dst, (atomic_swap_64 xoaddr:$ptr, i64:$new))]>;
237  }
238}
239
240// Instructions to support atomic operations
241let mayLoad = 1, hasSideEffects = 0 in {
242def LDARX : XForm_1<31,  84, (outs g8rc:$rD), (ins memrr:$ptr),
243                    "ldarx $rD, $ptr", IIC_LdStLDARX, []>;
244
245// Instruction to support lock versions of atomics
246// (EH=1 - see Power ISA 2.07 Book II 4.4.2)
247def LDARXL : XForm_1<31,  84, (outs g8rc:$rD), (ins memrr:$ptr),
248                     "ldarx $rD, $ptr, 1", IIC_LdStLDARX, []>, isDOT;
249
250let hasExtraDefRegAllocReq = 1 in
251def LDAT : X_RD5_RS5_IM5<31, 614, (outs g8rc:$rD), (ins g8rc:$rA, u5imm:$FC),
252                         "ldat $rD, $rA, $FC", IIC_LdStLoad>, isPPC64,
253           Requires<[IsISA3_0]>;
254}
255
256let Defs = [CR0], mayStore = 1, mayLoad = 0, hasSideEffects = 0 in
257def STDCX : XForm_1<31, 214, (outs), (ins g8rc:$rS, memrr:$dst),
258                    "stdcx. $rS, $dst", IIC_LdStSTDCX, []>, isDOT;
259
260let mayStore = 1, mayLoad = 0, hasSideEffects = 0 in
261def STDAT : X_RD5_RS5_IM5<31, 742, (outs), (ins g8rc:$rS, g8rc:$rA, u5imm:$FC),
262                          "stdat $rS, $rA, $FC", IIC_LdStStore>, isPPC64,
263            Requires<[IsISA3_0]>;
264
265let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
266let isCall = 1, isTerminator = 1, isReturn = 1, isBarrier = 1, Uses = [RM] in
267def TCRETURNdi8 :Pseudo< (outs),
268                        (ins calltarget:$dst, i32imm:$offset),
269                 "#TC_RETURNd8 $dst $offset",
270                 []>;
271
272let isCall = 1, isTerminator = 1, isReturn = 1, isBarrier = 1, Uses = [RM] in
273def TCRETURNai8 :Pseudo<(outs), (ins abscalltarget:$func, i32imm:$offset),
274                 "#TC_RETURNa8 $func $offset",
275                 [(PPCtc_return (i64 imm:$func), imm:$offset)]>;
276
277let isCall = 1, isTerminator = 1, isReturn = 1, isBarrier = 1, Uses = [RM] in
278def TCRETURNri8 : Pseudo<(outs), (ins CTRRC8:$dst, i32imm:$offset),
279                 "#TC_RETURNr8 $dst $offset",
280                 []>;
281
282let isTerminator = 1, isBarrier = 1, PPC970_Unit = 7, isBranch = 1,
283    isIndirectBranch = 1, isCall = 1, isReturn = 1, Uses = [CTR8, RM] in
284def TAILBCTR8 : XLForm_2_ext<19, 528, 20, 0, 0, (outs), (ins), "bctr", IIC_BrB,
285                             []>,
286    Requires<[In64BitMode]>;
287
288let isBranch = 1, isTerminator = 1, hasCtrlDep = 1, PPC970_Unit = 7,
289    isBarrier = 1, isCall = 1, isReturn = 1, Uses = [RM] in
290def TAILB8   : IForm<18, 0, 0, (outs), (ins calltarget:$dst),
291                  "b $dst", IIC_BrB,
292                  []>;
293
294let isBranch = 1, isTerminator = 1, hasCtrlDep = 1, PPC970_Unit = 7,
295    isBarrier = 1, isCall = 1, isReturn = 1, Uses = [RM] in
296def TAILBA8   : IForm<18, 0, 0, (outs), (ins abscalltarget:$dst),
297                  "ba $dst", IIC_BrB,
298                  []>;
299} // Interpretation64Bit
300
301def : Pat<(PPCtc_return (i64 tglobaladdr:$dst),  imm:$imm),
302          (TCRETURNdi8 tglobaladdr:$dst, imm:$imm)>;
303
304def : Pat<(PPCtc_return (i64 texternalsym:$dst), imm:$imm),
305          (TCRETURNdi8 texternalsym:$dst, imm:$imm)>;
306
307def : Pat<(PPCtc_return CTRRC8:$dst, imm:$imm),
308          (TCRETURNri8 CTRRC8:$dst, imm:$imm)>;
309
310
311// 64-bit CR instructions
312let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
313let hasSideEffects = 0 in {
314// mtocrf's input needs to be prepared by shifting by an amount dependent
315// on the cr register selected. Thus, post-ra anti-dep breaking must not
316// later change that register assignment.
317let hasExtraDefRegAllocReq = 1 in {
318def MTOCRF8: XFXForm_5a<31, 144, (outs crbitm:$FXM), (ins g8rc:$ST),
319                        "mtocrf $FXM, $ST", IIC_BrMCRX>,
320            PPC970_DGroup_First, PPC970_Unit_CRU;
321
322// Similarly to mtocrf, the mask for mtcrf must be prepared in a way that
323// is dependent on the cr fields being set.
324def MTCRF8 : XFXForm_5<31, 144, (outs), (ins i32imm:$FXM, g8rc:$rS),
325                      "mtcrf $FXM, $rS", IIC_BrMCRX>,
326            PPC970_MicroCode, PPC970_Unit_CRU;
327} // hasExtraDefRegAllocReq = 1
328
329// mfocrf's input needs to be prepared by shifting by an amount dependent
330// on the cr register selected. Thus, post-ra anti-dep breaking must not
331// later change that register assignment.
332let hasExtraSrcRegAllocReq = 1 in {
333def MFOCRF8: XFXForm_5a<31, 19, (outs g8rc:$rT), (ins crbitm:$FXM),
334                        "mfocrf $rT, $FXM", IIC_SprMFCRF>,
335             PPC970_DGroup_First, PPC970_Unit_CRU;
336
337// Similarly to mfocrf, the mask for mfcrf must be prepared in a way that
338// is dependent on the cr fields being copied.
339def MFCR8 : XFXForm_3<31, 19, (outs g8rc:$rT), (ins),
340                     "mfcr $rT", IIC_SprMFCR>,
341                     PPC970_MicroCode, PPC970_Unit_CRU;
342} // hasExtraSrcRegAllocReq = 1
343} // hasSideEffects = 0
344
345let hasSideEffects = 1, isBarrier = 1, usesCustomInserter = 1 in {
346  let Defs = [CTR8] in
347  def EH_SjLj_SetJmp64  : Pseudo<(outs gprc:$dst), (ins memr:$buf),
348                            "#EH_SJLJ_SETJMP64",
349                            [(set i32:$dst, (PPCeh_sjlj_setjmp addr:$buf))]>,
350                          Requires<[In64BitMode]>;
351  let isTerminator = 1 in
352  def EH_SjLj_LongJmp64 : Pseudo<(outs), (ins memr:$buf),
353                            "#EH_SJLJ_LONGJMP64",
354                            [(PPCeh_sjlj_longjmp addr:$buf)]>,
355                          Requires<[In64BitMode]>;
356}
357
358def MFSPR8 : XFXForm_1<31, 339, (outs g8rc:$RT), (ins i32imm:$SPR),
359                       "mfspr $RT, $SPR", IIC_SprMFSPR>;
360def MTSPR8 : XFXForm_1<31, 467, (outs), (ins i32imm:$SPR, g8rc:$RT),
361                       "mtspr $SPR, $RT", IIC_SprMTSPR>;
362
363
364//===----------------------------------------------------------------------===//
365// 64-bit SPR manipulation instrs.
366
367let Uses = [CTR8] in {
368def MFCTR8 : XFXForm_1_ext<31, 339, 9, (outs g8rc:$rT), (ins),
369                           "mfctr $rT", IIC_SprMFSPR>,
370             PPC970_DGroup_First, PPC970_Unit_FXU;
371}
372let Pattern = [(PPCmtctr i64:$rS)], Defs = [CTR8] in {
373def MTCTR8 : XFXForm_7_ext<31, 467, 9, (outs), (ins g8rc:$rS),
374                           "mtctr $rS", IIC_SprMTSPR>,
375             PPC970_DGroup_First, PPC970_Unit_FXU;
376}
377let hasSideEffects = 1, Defs = [CTR8] in {
378let Pattern = [(int_ppc_mtctr i64:$rS)] in
379def MTCTR8loop : XFXForm_7_ext<31, 467, 9, (outs), (ins g8rc:$rS),
380                               "mtctr $rS", IIC_SprMTSPR>,
381                 PPC970_DGroup_First, PPC970_Unit_FXU;
382}
383
384let Pattern = [(set i64:$rT, readcyclecounter)] in
385def MFTB8 : XFXForm_1_ext<31, 339, 268, (outs g8rc:$rT), (ins),
386                          "mfspr $rT, 268", IIC_SprMFTB>,
387            PPC970_DGroup_First, PPC970_Unit_FXU;
388// Note that encoding mftb using mfspr is now the preferred form,
389// and has been since at least ISA v2.03. The mftb instruction has
390// now been phased out. Using mfspr, however, is known not to work on
391// the POWER3.
392
393let Defs = [X1], Uses = [X1] in
394def DYNALLOC8 : Pseudo<(outs g8rc:$result), (ins g8rc:$negsize, memri:$fpsi),"#DYNALLOC8",
395                       [(set i64:$result,
396                             (PPCdynalloc i64:$negsize, iaddr:$fpsi))]>;
397def DYNAREAOFFSET8 : Pseudo<(outs i64imm:$result), (ins memri:$fpsi), "#DYNAREAOFFSET8",
398                       [(set i64:$result, (PPCdynareaoffset iaddr:$fpsi))]>;
399
400let Defs = [LR8] in {
401def MTLR8  : XFXForm_7_ext<31, 467, 8, (outs), (ins g8rc:$rS),
402                           "mtlr $rS", IIC_SprMTSPR>,
403             PPC970_DGroup_First, PPC970_Unit_FXU;
404}
405let Uses = [LR8] in {
406def MFLR8  : XFXForm_1_ext<31, 339, 8, (outs g8rc:$rT), (ins),
407                           "mflr $rT", IIC_SprMFSPR>,
408             PPC970_DGroup_First, PPC970_Unit_FXU;
409}
410} // Interpretation64Bit
411
412//===----------------------------------------------------------------------===//
413// Fixed point instructions.
414//
415
416let PPC970_Unit = 1 in {  // FXU Operations.
417let Interpretation64Bit = 1 in {
418let hasSideEffects = 0 in {
419let isCodeGenOnly = 1 in {
420
421let isReMaterializable = 1, isAsCheapAsAMove = 1, isMoveImm = 1 in {
422def LI8  : DForm_2_r0<14, (outs g8rc:$rD), (ins s16imm64:$imm),
423                      "li $rD, $imm", IIC_IntSimple,
424                      [(set i64:$rD, imm64SExt16:$imm)]>;
425def LIS8 : DForm_2_r0<15, (outs g8rc:$rD), (ins s17imm64:$imm),
426                      "lis $rD, $imm", IIC_IntSimple,
427                      [(set i64:$rD, imm16ShiftedSExt:$imm)]>;
428}
429
430// Logical ops.
431let isCommutable = 1 in {
432defm NAND8: XForm_6r<31, 476, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
433                     "nand", "$rA, $rS, $rB", IIC_IntSimple,
434                     [(set i64:$rA, (not (and i64:$rS, i64:$rB)))]>;
435defm AND8 : XForm_6r<31,  28, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
436                     "and", "$rA, $rS, $rB", IIC_IntSimple,
437                     [(set i64:$rA, (and i64:$rS, i64:$rB))]>;
438} // isCommutable
439defm ANDC8: XForm_6r<31,  60, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
440                     "andc", "$rA, $rS, $rB", IIC_IntSimple,
441                     [(set i64:$rA, (and i64:$rS, (not i64:$rB)))]>;
442let isCommutable = 1 in {
443defm OR8  : XForm_6r<31, 444, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
444                     "or", "$rA, $rS, $rB", IIC_IntSimple,
445                     [(set i64:$rA, (or i64:$rS, i64:$rB))]>;
446defm NOR8 : XForm_6r<31, 124, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
447                     "nor", "$rA, $rS, $rB", IIC_IntSimple,
448                     [(set i64:$rA, (not (or i64:$rS, i64:$rB)))]>;
449} // isCommutable
450defm ORC8 : XForm_6r<31, 412, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
451                     "orc", "$rA, $rS, $rB", IIC_IntSimple,
452                     [(set i64:$rA, (or i64:$rS, (not i64:$rB)))]>;
453let isCommutable = 1 in {
454defm EQV8 : XForm_6r<31, 284, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
455                     "eqv", "$rA, $rS, $rB", IIC_IntSimple,
456                     [(set i64:$rA, (not (xor i64:$rS, i64:$rB)))]>;
457defm XOR8 : XForm_6r<31, 316, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
458                     "xor", "$rA, $rS, $rB", IIC_IntSimple,
459                     [(set i64:$rA, (xor i64:$rS, i64:$rB))]>;
460} // let isCommutable = 1
461
462// Logical ops with immediate.
463let Defs = [CR0] in {
464def ANDIo8  : DForm_4<28, (outs g8rc:$dst), (ins g8rc:$src1, u16imm64:$src2),
465                      "andi. $dst, $src1, $src2", IIC_IntGeneral,
466                      [(set i64:$dst, (and i64:$src1, immZExt16:$src2))]>,
467                      isDOT;
468def ANDISo8 : DForm_4<29, (outs g8rc:$dst), (ins g8rc:$src1, u16imm64:$src2),
469                     "andis. $dst, $src1, $src2", IIC_IntGeneral,
470                    [(set i64:$dst, (and i64:$src1, imm16ShiftedZExt:$src2))]>,
471                     isDOT;
472}
473def ORI8    : DForm_4<24, (outs g8rc:$dst), (ins g8rc:$src1, u16imm64:$src2),
474                      "ori $dst, $src1, $src2", IIC_IntSimple,
475                      [(set i64:$dst, (or i64:$src1, immZExt16:$src2))]>;
476def ORIS8   : DForm_4<25, (outs g8rc:$dst), (ins g8rc:$src1, u16imm64:$src2),
477                      "oris $dst, $src1, $src2", IIC_IntSimple,
478                    [(set i64:$dst, (or i64:$src1, imm16ShiftedZExt:$src2))]>;
479def XORI8   : DForm_4<26, (outs g8rc:$dst), (ins g8rc:$src1, u16imm64:$src2),
480                      "xori $dst, $src1, $src2", IIC_IntSimple,
481                      [(set i64:$dst, (xor i64:$src1, immZExt16:$src2))]>;
482def XORIS8  : DForm_4<27, (outs g8rc:$dst), (ins g8rc:$src1, u16imm64:$src2),
483                      "xoris $dst, $src1, $src2", IIC_IntSimple,
484                   [(set i64:$dst, (xor i64:$src1, imm16ShiftedZExt:$src2))]>;
485
486let isCommutable = 1 in
487defm ADD8  : XOForm_1r<31, 266, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
488                       "add", "$rT, $rA, $rB", IIC_IntSimple,
489                       [(set i64:$rT, (add i64:$rA, i64:$rB))]>;
490// ADD8 has a special form: reg = ADD8(reg, sym@tls) for use by the
491// initial-exec thread-local storage model.  We need to forbid r0 here -
492// while it works for add just fine, the linker can relax this to local-exec
493// addi, which won't work for r0.
494def ADD8TLS  : XOForm_1<31, 266, 0, (outs g8rc:$rT), (ins g8rc_nox0:$rA, tlsreg:$rB),
495                        "add $rT, $rA, $rB", IIC_IntSimple,
496                        [(set i64:$rT, (add i64:$rA, tglobaltlsaddr:$rB))]>;
497
498let isCommutable = 1 in
499defm ADDC8 : XOForm_1rc<31, 10, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
500                        "addc", "$rT, $rA, $rB", IIC_IntGeneral,
501                        [(set i64:$rT, (addc i64:$rA, i64:$rB))]>,
502                        PPC970_DGroup_Cracked;
503
504let Defs = [CARRY] in
505def ADDIC8 : DForm_2<12, (outs g8rc:$rD), (ins g8rc:$rA, s16imm64:$imm),
506                     "addic $rD, $rA, $imm", IIC_IntGeneral,
507                     [(set i64:$rD, (addc i64:$rA, imm64SExt16:$imm))]>;
508def ADDI8  : DForm_2<14, (outs g8rc:$rD), (ins g8rc_nox0:$rA, s16imm64:$imm),
509                     "addi $rD, $rA, $imm", IIC_IntSimple,
510                     [(set i64:$rD, (add i64:$rA, imm64SExt16:$imm))]>;
511def ADDIS8 : DForm_2<15, (outs g8rc:$rD), (ins g8rc_nox0:$rA, s17imm64:$imm),
512                     "addis $rD, $rA, $imm", IIC_IntSimple,
513                     [(set i64:$rD, (add i64:$rA, imm16ShiftedSExt:$imm))]>;
514
515let Defs = [CARRY] in {
516def SUBFIC8: DForm_2< 8, (outs g8rc:$rD), (ins g8rc:$rA, s16imm64:$imm),
517                     "subfic $rD, $rA, $imm", IIC_IntGeneral,
518                     [(set i64:$rD, (subc imm64SExt16:$imm, i64:$rA))]>;
519}
520defm SUBFC8 : XOForm_1rc<31, 8, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
521                        "subfc", "$rT, $rA, $rB", IIC_IntGeneral,
522                        [(set i64:$rT, (subc i64:$rB, i64:$rA))]>,
523                        PPC970_DGroup_Cracked;
524defm SUBF8 : XOForm_1r<31, 40, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
525                       "subf", "$rT, $rA, $rB", IIC_IntGeneral,
526                       [(set i64:$rT, (sub i64:$rB, i64:$rA))]>;
527defm NEG8    : XOForm_3r<31, 104, 0, (outs g8rc:$rT), (ins g8rc:$rA),
528                        "neg", "$rT, $rA", IIC_IntSimple,
529                        [(set i64:$rT, (ineg i64:$rA))]>;
530let Uses = [CARRY] in {
531let isCommutable = 1 in
532defm ADDE8   : XOForm_1rc<31, 138, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
533                          "adde", "$rT, $rA, $rB", IIC_IntGeneral,
534                          [(set i64:$rT, (adde i64:$rA, i64:$rB))]>;
535defm ADDME8  : XOForm_3rc<31, 234, 0, (outs g8rc:$rT), (ins g8rc:$rA),
536                          "addme", "$rT, $rA", IIC_IntGeneral,
537                          [(set i64:$rT, (adde i64:$rA, -1))]>;
538defm ADDZE8  : XOForm_3rc<31, 202, 0, (outs g8rc:$rT), (ins g8rc:$rA),
539                          "addze", "$rT, $rA", IIC_IntGeneral,
540                          [(set i64:$rT, (adde i64:$rA, 0))]>;
541defm SUBFE8  : XOForm_1rc<31, 136, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
542                          "subfe", "$rT, $rA, $rB", IIC_IntGeneral,
543                          [(set i64:$rT, (sube i64:$rB, i64:$rA))]>;
544defm SUBFME8 : XOForm_3rc<31, 232, 0, (outs g8rc:$rT), (ins g8rc:$rA),
545                          "subfme", "$rT, $rA", IIC_IntGeneral,
546                          [(set i64:$rT, (sube -1, i64:$rA))]>;
547defm SUBFZE8 : XOForm_3rc<31, 200, 0, (outs g8rc:$rT), (ins g8rc:$rA),
548                          "subfze", "$rT, $rA", IIC_IntGeneral,
549                          [(set i64:$rT, (sube 0, i64:$rA))]>;
550}
551} // isCodeGenOnly
552
553// FIXME: Duplicating this for the asm parser should be unnecessary, but the
554// previous definition must be marked as CodeGen only to prevent decoding
555// conflicts.
556let isAsmParserOnly = 1 in
557def ADD8TLS_ : XOForm_1<31, 266, 0, (outs g8rc:$rT), (ins g8rc:$rA, tlsreg:$rB),
558                        "add $rT, $rA, $rB", IIC_IntSimple, []>;
559
560let isCommutable = 1 in {
561defm MULHD : XOForm_1r<31, 73, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
562                       "mulhd", "$rT, $rA, $rB", IIC_IntMulHW,
563                       [(set i64:$rT, (mulhs i64:$rA, i64:$rB))]>;
564defm MULHDU : XOForm_1r<31, 9, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
565                       "mulhdu", "$rT, $rA, $rB", IIC_IntMulHWU,
566                       [(set i64:$rT, (mulhu i64:$rA, i64:$rB))]>;
567} // isCommutable
568}
569} // Interpretation64Bit
570
571let isCompare = 1, hasSideEffects = 0 in {
572  def CMPD   : XForm_16_ext<31, 0, (outs crrc:$crD), (ins g8rc:$rA, g8rc:$rB),
573                            "cmpd $crD, $rA, $rB", IIC_IntCompare>, isPPC64;
574  def CMPLD  : XForm_16_ext<31, 32, (outs crrc:$crD), (ins g8rc:$rA, g8rc:$rB),
575                            "cmpld $crD, $rA, $rB", IIC_IntCompare>, isPPC64;
576  def CMPDI  : DForm_5_ext<11, (outs crrc:$crD), (ins g8rc:$rA, s16imm64:$imm),
577                           "cmpdi $crD, $rA, $imm", IIC_IntCompare>, isPPC64;
578  def CMPLDI : DForm_6_ext<10, (outs crrc:$dst), (ins g8rc:$src1, u16imm64:$src2),
579                           "cmpldi $dst, $src1, $src2",
580                           IIC_IntCompare>, isPPC64;
581  let Interpretation64Bit = 1, isCodeGenOnly = 1 in
582  def CMPRB8 : X_BF3_L1_RS5_RS5<31, 192, (outs crbitrc:$BF),
583                                (ins u1imm:$L, g8rc:$rA, g8rc:$rB),
584                                "cmprb $BF, $L, $rA, $rB", IIC_IntCompare, []>,
585               Requires<[IsISA3_0]>;
586  def CMPEQB : X_BF3_RS5_RS5<31, 224, (outs crbitrc:$BF),
587                             (ins g8rc:$rA, g8rc:$rB), "cmpeqb $BF, $rA, $rB",
588                             IIC_IntCompare, []>, Requires<[IsISA3_0]>;
589}
590
591let hasSideEffects = 0 in {
592defm SLD  : XForm_6r<31,  27, (outs g8rc:$rA), (ins g8rc:$rS, gprc:$rB),
593                     "sld", "$rA, $rS, $rB", IIC_IntRotateD,
594                     [(set i64:$rA, (PPCshl i64:$rS, i32:$rB))]>, isPPC64;
595defm SRD  : XForm_6r<31, 539, (outs g8rc:$rA), (ins g8rc:$rS, gprc:$rB),
596                     "srd", "$rA, $rS, $rB", IIC_IntRotateD,
597                     [(set i64:$rA, (PPCsrl i64:$rS, i32:$rB))]>, isPPC64;
598defm SRAD : XForm_6rc<31, 794, (outs g8rc:$rA), (ins g8rc:$rS, gprc:$rB),
599                      "srad", "$rA, $rS, $rB", IIC_IntRotateD,
600                      [(set i64:$rA, (PPCsra i64:$rS, i32:$rB))]>, isPPC64;
601
602let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
603defm CNTLZW8 : XForm_11r<31,  26, (outs g8rc:$rA), (ins g8rc:$rS),
604                        "cntlzw", "$rA, $rS", IIC_IntGeneral, []>;
605defm CNTTZW8 : XForm_11r<31, 538, (outs g8rc:$rA), (ins g8rc:$rS),
606                        "cnttzw", "$rA, $rS", IIC_IntGeneral, []>,
607               Requires<[IsISA3_0]>;
608
609defm EXTSB8 : XForm_11r<31, 954, (outs g8rc:$rA), (ins g8rc:$rS),
610                        "extsb", "$rA, $rS", IIC_IntSimple,
611                        [(set i64:$rA, (sext_inreg i64:$rS, i8))]>;
612defm EXTSH8 : XForm_11r<31, 922, (outs g8rc:$rA), (ins g8rc:$rS),
613                        "extsh", "$rA, $rS", IIC_IntSimple,
614                        [(set i64:$rA, (sext_inreg i64:$rS, i16))]>;
615
616defm SLW8  : XForm_6r<31,  24, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
617                      "slw", "$rA, $rS, $rB", IIC_IntGeneral, []>;
618defm SRW8  : XForm_6r<31, 536, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
619                      "srw", "$rA, $rS, $rB", IIC_IntGeneral, []>;
620} // Interpretation64Bit
621
622// For fast-isel:
623let isCodeGenOnly = 1 in {
624def EXTSB8_32_64 : XForm_11<31, 954, (outs g8rc:$rA), (ins gprc:$rS),
625                           "extsb $rA, $rS", IIC_IntSimple, []>, isPPC64;
626def EXTSH8_32_64 : XForm_11<31, 922, (outs g8rc:$rA), (ins gprc:$rS),
627                           "extsh $rA, $rS", IIC_IntSimple, []>, isPPC64;
628} // isCodeGenOnly for fast-isel
629
630defm EXTSW  : XForm_11r<31, 986, (outs g8rc:$rA), (ins g8rc:$rS),
631                        "extsw", "$rA, $rS", IIC_IntSimple,
632                        [(set i64:$rA, (sext_inreg i64:$rS, i32))]>, isPPC64;
633let Interpretation64Bit = 1, isCodeGenOnly = 1 in
634defm EXTSW_32_64 : XForm_11r<31, 986, (outs g8rc:$rA), (ins gprc:$rS),
635                             "extsw", "$rA, $rS", IIC_IntSimple,
636                             [(set i64:$rA, (sext i32:$rS))]>, isPPC64;
637let isCodeGenOnly = 1 in
638def EXTSW_32 : XForm_11<31, 986, (outs gprc:$rA), (ins gprc:$rS),
639                        "extsw $rA, $rS", IIC_IntSimple,
640                        []>, isPPC64;
641
642defm SRADI  : XSForm_1rc<31, 413, (outs g8rc:$rA), (ins g8rc:$rS, u6imm:$SH),
643                         "sradi", "$rA, $rS, $SH", IIC_IntRotateDI,
644                         [(set i64:$rA, (sra i64:$rS, (i32 imm:$SH)))]>, isPPC64;
645
646defm EXTSWSLI : XSForm_1r<31, 445, (outs g8rc:$rA), (ins g8rc:$rS, u6imm:$SH),
647                          "extswsli", "$rA, $rS, $SH", IIC_IntRotateDI,
648                          []>, isPPC64;
649
650// For fast-isel:
651let isCodeGenOnly = 1, Defs = [CARRY] in
652def SRADI_32  : XSForm_1<31, 413, (outs gprc:$rA), (ins gprc:$rS, u6imm:$SH),
653                         "sradi $rA, $rS, $SH", IIC_IntRotateDI, []>, isPPC64;
654
655defm CNTLZD : XForm_11r<31,  58, (outs g8rc:$rA), (ins g8rc:$rS),
656                        "cntlzd", "$rA, $rS", IIC_IntGeneral,
657                        [(set i64:$rA, (ctlz i64:$rS))]>;
658defm CNTTZD : XForm_11r<31, 570, (outs g8rc:$rA), (ins g8rc:$rS),
659                        "cnttzd", "$rA, $rS", IIC_IntGeneral,
660                        [(set i64:$rA, (cttz i64:$rS))]>, Requires<[IsISA3_0]>;
661def POPCNTD : XForm_11<31, 506, (outs g8rc:$rA), (ins g8rc:$rS),
662                       "popcntd $rA, $rS", IIC_IntGeneral,
663                       [(set i64:$rA, (ctpop i64:$rS))]>;
664def BPERMD : XForm_6<31, 252, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
665                     "bpermd $rA, $rS, $rB", IIC_IntGeneral,
666                     [(set i64:$rA, (int_ppc_bpermd g8rc:$rS, g8rc:$rB))]>,
667                     isPPC64, Requires<[HasBPERMD]>;
668
669let isCodeGenOnly = 1, isCommutable = 1 in
670def CMPB8 : XForm_6<31, 508, (outs g8rc:$rA), (ins g8rc:$rS, g8rc:$rB),
671                    "cmpb $rA, $rS, $rB", IIC_IntGeneral,
672                    [(set i64:$rA, (PPCcmpb i64:$rS, i64:$rB))]>;
673
674// popcntw also does a population count on the high 32 bits (storing the
675// results in the high 32-bits of the output). We'll ignore that here (which is
676// safe because we never separately use the high part of the 64-bit registers).
677def POPCNTW : XForm_11<31, 378, (outs gprc:$rA), (ins gprc:$rS),
678                       "popcntw $rA, $rS", IIC_IntGeneral,
679                       [(set i32:$rA, (ctpop i32:$rS))]>;
680
681def POPCNTB : XForm_11<31, 122, (outs gprc:$rA), (ins gprc:$rS),
682                       "popcntb $rA, $rS", IIC_IntGeneral, []>;
683
684defm DIVD  : XOForm_1rcr<31, 489, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
685                          "divd", "$rT, $rA, $rB", IIC_IntDivD,
686                          [(set i64:$rT, (sdiv i64:$rA, i64:$rB))]>, isPPC64;
687defm DIVDU : XOForm_1rcr<31, 457, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
688                          "divdu", "$rT, $rA, $rB", IIC_IntDivD,
689                          [(set i64:$rT, (udiv i64:$rA, i64:$rB))]>, isPPC64;
690def DIVDE : XOForm_1<31, 425, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
691                     "divde $rT, $rA, $rB", IIC_IntDivD,
692                     [(set i64:$rT, (int_ppc_divde g8rc:$rA, g8rc:$rB))]>,
693                     isPPC64, Requires<[HasExtDiv]>;
694
695let Predicates = [IsISA3_0] in {
696def MADDHD : VAForm_1a<48, (outs g8rc :$RT), (ins g8rc:$RA, g8rc:$RB, g8rc:$RC),
697                       "maddhd $RT, $RA, $RB, $RC", IIC_IntMulHD, []>, isPPC64;
698def MADDHDU : VAForm_1a<49, (outs g8rc :$RT), (ins g8rc:$RA, g8rc:$RB, g8rc:$RC),
699                       "maddhdu $RT, $RA, $RB, $RC", IIC_IntMulHD, []>, isPPC64;
700def MADDLD : VAForm_1a<51, (outs g8rc :$RT), (ins g8rc:$RA, g8rc:$RB, g8rc:$RC),
701                       "maddld $RT, $RA, $RB, $RC", IIC_IntMulHD, []>, isPPC64;
702def SETB : XForm_44<31, 128, (outs g8rc:$RT), (ins crrc:$BFA),
703                     "setb $RT, $BFA", IIC_IntGeneral>, isPPC64;
704def DARN : XForm_45<31, 755, (outs g8rc:$RT), (ins i32imm:$L),
705                     "darn $RT, $L", IIC_LdStLD>, isPPC64;
706def ADDPCIS : DXForm<19, 2, (outs g8rc:$RT), (ins i32imm:$D),
707                     "addpcis $RT, $D", IIC_BrB, []>, isPPC64;
708def MODSD : XForm_8<31, 777, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
709                        "modsd $rT, $rA, $rB", IIC_IntDivW,
710                        [(set i64:$rT, (srem i64:$rA, i64:$rB))]>;
711def MODUD : XForm_8<31, 265, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
712                        "modud $rT, $rA, $rB", IIC_IntDivW,
713                        [(set i64:$rT, (urem i64:$rA, i64:$rB))]>;
714}
715
716let Defs = [CR0] in
717def DIVDEo : XOForm_1<31, 425, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
718                      "divde. $rT, $rA, $rB", IIC_IntDivD,
719                      []>, isDOT, PPC970_DGroup_Cracked, PPC970_DGroup_First,
720                      isPPC64, Requires<[HasExtDiv]>;
721def DIVDEU : XOForm_1<31, 393, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
722                      "divdeu $rT, $rA, $rB", IIC_IntDivD,
723                      [(set i64:$rT, (int_ppc_divdeu g8rc:$rA, g8rc:$rB))]>,
724                      isPPC64, Requires<[HasExtDiv]>;
725let Defs = [CR0] in
726def DIVDEUo : XOForm_1<31, 393, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
727                       "divdeu. $rT, $rA, $rB", IIC_IntDivD,
728                       []>, isDOT, PPC970_DGroup_Cracked, PPC970_DGroup_First,
729                        isPPC64, Requires<[HasExtDiv]>;
730let isCommutable = 1 in
731defm MULLD : XOForm_1r<31, 233, 0, (outs g8rc:$rT), (ins g8rc:$rA, g8rc:$rB),
732                       "mulld", "$rT, $rA, $rB", IIC_IntMulHD,
733                       [(set i64:$rT, (mul i64:$rA, i64:$rB))]>, isPPC64;
734let Interpretation64Bit = 1, isCodeGenOnly = 1 in
735def MULLI8 : DForm_2<7, (outs g8rc:$rD), (ins g8rc:$rA, s16imm64:$imm),
736                       "mulli $rD, $rA, $imm", IIC_IntMulLI,
737                       [(set i64:$rD, (mul i64:$rA, imm64SExt16:$imm))]>;
738}
739
740let hasSideEffects = 0 in {
741defm RLDIMI : MDForm_1r<30, 3, (outs g8rc:$rA),
742                        (ins g8rc:$rSi, g8rc:$rS, u6imm:$SH, u6imm:$MBE),
743                        "rldimi", "$rA, $rS, $SH, $MBE", IIC_IntRotateDI,
744                        []>, isPPC64, RegConstraint<"$rSi = $rA">,
745                        NoEncode<"$rSi">;
746
747// Rotate instructions.
748defm RLDCL  : MDSForm_1r<30, 8,
749                        (outs g8rc:$rA), (ins g8rc:$rS, gprc:$rB, u6imm:$MBE),
750                        "rldcl", "$rA, $rS, $rB, $MBE", IIC_IntRotateD,
751                        []>, isPPC64;
752defm RLDCR  : MDSForm_1r<30, 9,
753                        (outs g8rc:$rA), (ins g8rc:$rS, gprc:$rB, u6imm:$MBE),
754                        "rldcr", "$rA, $rS, $rB, $MBE", IIC_IntRotateD,
755                        []>, isPPC64;
756defm RLDICL : MDForm_1r<30, 0,
757                        (outs g8rc:$rA), (ins g8rc:$rS, u6imm:$SH, u6imm:$MBE),
758                        "rldicl", "$rA, $rS, $SH, $MBE", IIC_IntRotateDI,
759                        []>, isPPC64;
760// For fast-isel:
761let isCodeGenOnly = 1 in
762def RLDICL_32_64 : MDForm_1<30, 0,
763                            (outs g8rc:$rA),
764                            (ins gprc:$rS, u6imm:$SH, u6imm:$MBE),
765                            "rldicl $rA, $rS, $SH, $MBE", IIC_IntRotateDI,
766                            []>, isPPC64;
767// End fast-isel.
768let Interpretation64Bit = 1, isCodeGenOnly = 1 in
769defm RLDICL_32 : MDForm_1r<30, 0,
770                           (outs gprc:$rA),
771                           (ins gprc:$rS, u6imm:$SH, u6imm:$MBE),
772                           "rldicl", "$rA, $rS, $SH, $MBE", IIC_IntRotateDI,
773                           []>, isPPC64;
774defm RLDICR : MDForm_1r<30, 1,
775                        (outs g8rc:$rA), (ins g8rc:$rS, u6imm:$SH, u6imm:$MBE),
776                        "rldicr", "$rA, $rS, $SH, $MBE", IIC_IntRotateDI,
777                        []>, isPPC64;
778let isCodeGenOnly = 1 in
779def RLDICR_32 : MDForm_1<30, 1,
780                         (outs gprc:$rA), (ins gprc:$rS, u6imm:$SH, u6imm:$MBE),
781                         "rldicr $rA, $rS, $SH, $MBE", IIC_IntRotateDI,
782                         []>, isPPC64;
783defm RLDIC  : MDForm_1r<30, 2,
784                        (outs g8rc:$rA), (ins g8rc:$rS, u6imm:$SH, u6imm:$MBE),
785                        "rldic", "$rA, $rS, $SH, $MBE", IIC_IntRotateDI,
786                        []>, isPPC64;
787
788let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
789defm RLWINM8 : MForm_2r<21, (outs g8rc:$rA),
790                        (ins g8rc:$rS, u5imm:$SH, u5imm:$MB, u5imm:$ME),
791                        "rlwinm", "$rA, $rS, $SH, $MB, $ME", IIC_IntGeneral,
792                        []>;
793
794defm RLWNM8  : MForm_2r<23, (outs g8rc:$rA),
795                        (ins g8rc:$rS, g8rc:$rB, u5imm:$MB, u5imm:$ME),
796                        "rlwnm", "$rA, $rS, $rB, $MB, $ME", IIC_IntGeneral,
797                        []>;
798
799// RLWIMI can be commuted if the rotate amount is zero.
800let Interpretation64Bit = 1, isCodeGenOnly = 1 in
801defm RLWIMI8 : MForm_2r<20, (outs g8rc:$rA),
802                        (ins g8rc:$rSi, g8rc:$rS, u5imm:$SH, u5imm:$MB,
803                        u5imm:$ME), "rlwimi", "$rA, $rS, $SH, $MB, $ME",
804                        IIC_IntRotate, []>, PPC970_DGroup_Cracked,
805                        RegConstraint<"$rSi = $rA">, NoEncode<"$rSi">;
806
807let isSelect = 1 in
808def ISEL8   : AForm_4<31, 15,
809                     (outs g8rc:$rT), (ins g8rc_nox0:$rA, g8rc:$rB, crbitrc:$cond),
810                     "isel $rT, $rA, $rB, $cond", IIC_IntISEL,
811                     []>;
812}  // Interpretation64Bit
813}  // hasSideEffects = 0
814}  // End FXU Operations.
815
816
817//===----------------------------------------------------------------------===//
818// Load/Store instructions.
819//
820
821
822// Sign extending loads.
823let PPC970_Unit = 2 in {
824let Interpretation64Bit = 1, isCodeGenOnly = 1 in
825def LHA8: DForm_1<42, (outs g8rc:$rD), (ins memri:$src),
826                  "lha $rD, $src", IIC_LdStLHA,
827                  [(set i64:$rD, (sextloadi16 iaddr:$src))]>,
828                  PPC970_DGroup_Cracked;
829def LWA  : DSForm_1<58, 2, (outs g8rc:$rD), (ins memrix:$src),
830                    "lwa $rD, $src", IIC_LdStLWA,
831                    [(set i64:$rD,
832                          (aligned4sextloadi32 ixaddr:$src))]>, isPPC64,
833                    PPC970_DGroup_Cracked;
834let Interpretation64Bit = 1, isCodeGenOnly = 1 in
835def LHAX8: XForm_1<31, 343, (outs g8rc:$rD), (ins memrr:$src),
836                   "lhax $rD, $src", IIC_LdStLHA,
837                   [(set i64:$rD, (sextloadi16 xaddr:$src))]>,
838                   PPC970_DGroup_Cracked;
839def LWAX : XForm_1<31, 341, (outs g8rc:$rD), (ins memrr:$src),
840                   "lwax $rD, $src", IIC_LdStLHA,
841                   [(set i64:$rD, (sextloadi32 xaddr:$src))]>, isPPC64,
842                   PPC970_DGroup_Cracked;
843// For fast-isel:
844let isCodeGenOnly = 1, mayLoad = 1 in {
845def LWA_32  : DSForm_1<58, 2, (outs gprc:$rD), (ins memrix:$src),
846                      "lwa $rD, $src", IIC_LdStLWA, []>, isPPC64,
847                      PPC970_DGroup_Cracked;
848def LWAX_32 : XForm_1<31, 341, (outs gprc:$rD), (ins memrr:$src),
849                     "lwax $rD, $src", IIC_LdStLHA, []>, isPPC64,
850                     PPC970_DGroup_Cracked;
851} // end fast-isel isCodeGenOnly
852
853// Update forms.
854let mayLoad = 1, hasSideEffects = 0 in {
855let Interpretation64Bit = 1, isCodeGenOnly = 1 in
856def LHAU8 : DForm_1<43, (outs g8rc:$rD, ptr_rc_nor0:$ea_result),
857                    (ins memri:$addr),
858                    "lhau $rD, $addr", IIC_LdStLHAU,
859                    []>, RegConstraint<"$addr.reg = $ea_result">,
860                    NoEncode<"$ea_result">;
861// NO LWAU!
862
863let Interpretation64Bit = 1, isCodeGenOnly = 1 in
864def LHAUX8 : XForm_1<31, 375, (outs g8rc:$rD, ptr_rc_nor0:$ea_result),
865                    (ins memrr:$addr),
866                    "lhaux $rD, $addr", IIC_LdStLHAUX,
867                    []>, RegConstraint<"$addr.ptrreg = $ea_result">,
868                    NoEncode<"$ea_result">;
869def LWAUX : XForm_1<31, 373, (outs g8rc:$rD, ptr_rc_nor0:$ea_result),
870                    (ins memrr:$addr),
871                    "lwaux $rD, $addr", IIC_LdStLHAUX,
872                    []>, RegConstraint<"$addr.ptrreg = $ea_result">,
873                    NoEncode<"$ea_result">, isPPC64;
874}
875}
876
877let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
878// Zero extending loads.
879let PPC970_Unit = 2 in {
880def LBZ8 : DForm_1<34, (outs g8rc:$rD), (ins memri:$src),
881                  "lbz $rD, $src", IIC_LdStLoad,
882                  [(set i64:$rD, (zextloadi8 iaddr:$src))]>;
883def LHZ8 : DForm_1<40, (outs g8rc:$rD), (ins memri:$src),
884                  "lhz $rD, $src", IIC_LdStLoad,
885                  [(set i64:$rD, (zextloadi16 iaddr:$src))]>;
886def LWZ8 : DForm_1<32, (outs g8rc:$rD), (ins memri:$src),
887                  "lwz $rD, $src", IIC_LdStLoad,
888                  [(set i64:$rD, (zextloadi32 iaddr:$src))]>, isPPC64;
889
890def LBZX8 : XForm_1<31,  87, (outs g8rc:$rD), (ins memrr:$src),
891                   "lbzx $rD, $src", IIC_LdStLoad,
892                   [(set i64:$rD, (zextloadi8 xaddr:$src))]>;
893def LHZX8 : XForm_1<31, 279, (outs g8rc:$rD), (ins memrr:$src),
894                   "lhzx $rD, $src", IIC_LdStLoad,
895                   [(set i64:$rD, (zextloadi16 xaddr:$src))]>;
896def LWZX8 : XForm_1<31,  23, (outs g8rc:$rD), (ins memrr:$src),
897                   "lwzx $rD, $src", IIC_LdStLoad,
898                   [(set i64:$rD, (zextloadi32 xaddr:$src))]>;
899
900
901// Update forms.
902let mayLoad = 1, hasSideEffects = 0 in {
903def LBZU8 : DForm_1<35, (outs g8rc:$rD, ptr_rc_nor0:$ea_result), (ins memri:$addr),
904                    "lbzu $rD, $addr", IIC_LdStLoadUpd,
905                    []>, RegConstraint<"$addr.reg = $ea_result">,
906                    NoEncode<"$ea_result">;
907def LHZU8 : DForm_1<41, (outs g8rc:$rD, ptr_rc_nor0:$ea_result), (ins memri:$addr),
908                    "lhzu $rD, $addr", IIC_LdStLoadUpd,
909                    []>, RegConstraint<"$addr.reg = $ea_result">,
910                    NoEncode<"$ea_result">;
911def LWZU8 : DForm_1<33, (outs g8rc:$rD, ptr_rc_nor0:$ea_result), (ins memri:$addr),
912                    "lwzu $rD, $addr", IIC_LdStLoadUpd,
913                    []>, RegConstraint<"$addr.reg = $ea_result">,
914                    NoEncode<"$ea_result">;
915
916def LBZUX8 : XForm_1<31, 119, (outs g8rc:$rD, ptr_rc_nor0:$ea_result),
917                   (ins memrr:$addr),
918                   "lbzux $rD, $addr", IIC_LdStLoadUpdX,
919                   []>, RegConstraint<"$addr.ptrreg = $ea_result">,
920                   NoEncode<"$ea_result">;
921def LHZUX8 : XForm_1<31, 311, (outs g8rc:$rD, ptr_rc_nor0:$ea_result),
922                   (ins memrr:$addr),
923                   "lhzux $rD, $addr", IIC_LdStLoadUpdX,
924                   []>, RegConstraint<"$addr.ptrreg = $ea_result">,
925                   NoEncode<"$ea_result">;
926def LWZUX8 : XForm_1<31, 55, (outs g8rc:$rD, ptr_rc_nor0:$ea_result),
927                   (ins memrr:$addr),
928                   "lwzux $rD, $addr", IIC_LdStLoadUpdX,
929                   []>, RegConstraint<"$addr.ptrreg = $ea_result">,
930                   NoEncode<"$ea_result">;
931}
932}
933} // Interpretation64Bit
934
935
936// Full 8-byte loads.
937let PPC970_Unit = 2 in {
938def LD   : DSForm_1<58, 0, (outs g8rc:$rD), (ins memrix:$src),
939                    "ld $rD, $src", IIC_LdStLD,
940                    [(set i64:$rD, (aligned4load ixaddr:$src))]>, isPPC64;
941// The following four definitions are selected for small code model only.
942// Otherwise, we need to create two instructions to form a 32-bit offset,
943// so we have a custom matcher for TOC_ENTRY in PPCDAGToDAGIsel::Select().
944def LDtoc: Pseudo<(outs g8rc:$rD), (ins tocentry:$disp, g8rc:$reg),
945                  "#LDtoc",
946                  [(set i64:$rD,
947                     (PPCtoc_entry tglobaladdr:$disp, i64:$reg))]>, isPPC64;
948def LDtocJTI: Pseudo<(outs g8rc:$rD), (ins tocentry:$disp, g8rc:$reg),
949                  "#LDtocJTI",
950                  [(set i64:$rD,
951                     (PPCtoc_entry tjumptable:$disp, i64:$reg))]>, isPPC64;
952def LDtocCPT: Pseudo<(outs g8rc:$rD), (ins tocentry:$disp, g8rc:$reg),
953                  "#LDtocCPT",
954                  [(set i64:$rD,
955                     (PPCtoc_entry tconstpool:$disp, i64:$reg))]>, isPPC64;
956def LDtocBA: Pseudo<(outs g8rc:$rD), (ins tocentry:$disp, g8rc:$reg),
957                  "#LDtocCPT",
958                  [(set i64:$rD,
959                     (PPCtoc_entry tblockaddress:$disp, i64:$reg))]>, isPPC64;
960
961def LDX  : XForm_1<31,  21, (outs g8rc:$rD), (ins memrr:$src),
962                   "ldx $rD, $src", IIC_LdStLD,
963                   [(set i64:$rD, (load xaddr:$src))]>, isPPC64;
964def LDBRX : XForm_1<31,  532, (outs g8rc:$rD), (ins memrr:$src),
965                   "ldbrx $rD, $src", IIC_LdStLoad,
966                   [(set i64:$rD, (PPClbrx xoaddr:$src, i64))]>, isPPC64;
967
968let mayLoad = 1, hasSideEffects = 0, isCodeGenOnly = 1 in {
969def LHBRX8 : XForm_1<31, 790, (outs g8rc:$rD), (ins memrr:$src),
970                   "lhbrx $rD, $src", IIC_LdStLoad, []>;
971def LWBRX8 : XForm_1<31,  534, (outs g8rc:$rD), (ins memrr:$src),
972                   "lwbrx $rD, $src", IIC_LdStLoad, []>;
973}
974
975let mayLoad = 1, hasSideEffects = 0 in {
976def LDU  : DSForm_1<58, 1, (outs g8rc:$rD, ptr_rc_nor0:$ea_result), (ins memrix:$addr),
977                    "ldu $rD, $addr", IIC_LdStLDU,
978                    []>, RegConstraint<"$addr.reg = $ea_result">, isPPC64,
979                    NoEncode<"$ea_result">;
980
981def LDUX : XForm_1<31, 53, (outs g8rc:$rD, ptr_rc_nor0:$ea_result),
982                   (ins memrr:$addr),
983                   "ldux $rD, $addr", IIC_LdStLDUX,
984                   []>, RegConstraint<"$addr.ptrreg = $ea_result">,
985                   NoEncode<"$ea_result">, isPPC64;
986
987def LDMX : XForm_1<31, 309, (outs g8rc:$rD), (ins memrr:$src),
988                   "ldmx $rD, $src", IIC_LdStLD, []>, isPPC64,
989           Requires<[IsISA3_0]>;
990}
991}
992
993// Support for medium and large code model.
994let hasSideEffects = 0 in {
995let isReMaterializable = 1 in {
996def ADDIStocHA: Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, tocentry:$disp),
997                       "#ADDIStocHA", []>, isPPC64;
998def ADDItocL: Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, tocentry:$disp),
999                     "#ADDItocL", []>, isPPC64;
1000}
1001let mayLoad = 1 in
1002def LDtocL: Pseudo<(outs g8rc:$rD), (ins tocentry:$disp, g8rc_nox0:$reg),
1003                   "#LDtocL", []>, isPPC64;
1004}
1005
1006// Support for thread-local storage.
1007def ADDISgotTprelHA: Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, s16imm64:$disp),
1008                         "#ADDISgotTprelHA",
1009                         [(set i64:$rD,
1010                           (PPCaddisGotTprelHA i64:$reg,
1011                                               tglobaltlsaddr:$disp))]>,
1012                  isPPC64;
1013def LDgotTprelL: Pseudo<(outs g8rc:$rD), (ins s16imm64:$disp, g8rc_nox0:$reg),
1014                        "#LDgotTprelL",
1015                        [(set i64:$rD,
1016                          (PPCldGotTprelL tglobaltlsaddr:$disp, i64:$reg))]>,
1017                 isPPC64;
1018
1019let isPseudo = 1, Defs = [CR7], Itinerary = IIC_LdStSync in
1020def CFENCE8 : Pseudo<(outs), (ins g8rc:$cr), "#CFENCE8", []>;
1021
1022def : Pat<(PPCaddTls i64:$in, tglobaltlsaddr:$g),
1023          (ADD8TLS $in, tglobaltlsaddr:$g)>;
1024def ADDIStlsgdHA: Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, s16imm64:$disp),
1025                         "#ADDIStlsgdHA",
1026                         [(set i64:$rD,
1027                           (PPCaddisTlsgdHA i64:$reg, tglobaltlsaddr:$disp))]>,
1028                  isPPC64;
1029def ADDItlsgdL : Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, s16imm64:$disp),
1030                       "#ADDItlsgdL",
1031                       [(set i64:$rD,
1032                         (PPCaddiTlsgdL i64:$reg, tglobaltlsaddr:$disp))]>,
1033                 isPPC64;
1034// LR8 is a true define, while the rest of the Defs are clobbers.  X3 is
1035// explicitly defined when this op is created, so not mentioned here.
1036// This is lowered to BL8_NOP_TLS by the assembly printer, so the size must be
1037// correct because the branch select pass is relying on it.
1038let hasExtraSrcRegAllocReq = 1, hasExtraDefRegAllocReq = 1, Size = 8,
1039    Defs = [X0,X4,X5,X6,X7,X8,X9,X10,X11,X12,LR8,CTR8,CR0,CR1,CR5,CR6,CR7] in
1040def GETtlsADDR : Pseudo<(outs g8rc:$rD), (ins g8rc:$reg, tlsgd:$sym),
1041                        "#GETtlsADDR",
1042                        [(set i64:$rD,
1043                          (PPCgetTlsAddr i64:$reg, tglobaltlsaddr:$sym))]>,
1044                 isPPC64;
1045// Combined op for ADDItlsgdL and GETtlsADDR, late expanded.  X3 and LR8
1046// are true defines while the rest of the Defs are clobbers.
1047let hasExtraSrcRegAllocReq = 1, hasExtraDefRegAllocReq = 1,
1048    Defs = [X0,X3,X4,X5,X6,X7,X8,X9,X10,X11,X12,LR8,CTR8,CR0,CR1,CR5,CR6,CR7]
1049    in
1050def ADDItlsgdLADDR : Pseudo<(outs g8rc:$rD),
1051                            (ins g8rc_nox0:$reg, s16imm64:$disp, tlsgd:$sym),
1052                            "#ADDItlsgdLADDR",
1053                            [(set i64:$rD,
1054                              (PPCaddiTlsgdLAddr i64:$reg,
1055                                                 tglobaltlsaddr:$disp,
1056                                                 tglobaltlsaddr:$sym))]>,
1057                     isPPC64;
1058def ADDIStlsldHA: Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, s16imm64:$disp),
1059                         "#ADDIStlsldHA",
1060                         [(set i64:$rD,
1061                           (PPCaddisTlsldHA i64:$reg, tglobaltlsaddr:$disp))]>,
1062                  isPPC64;
1063def ADDItlsldL : Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, s16imm64:$disp),
1064                       "#ADDItlsldL",
1065                       [(set i64:$rD,
1066                         (PPCaddiTlsldL i64:$reg, tglobaltlsaddr:$disp))]>,
1067                 isPPC64;
1068// LR8 is a true define, while the rest of the Defs are clobbers.  X3 is
1069// explicitly defined when this op is created, so not mentioned here.
1070let hasExtraSrcRegAllocReq = 1, hasExtraDefRegAllocReq = 1,
1071    Defs = [X0,X4,X5,X6,X7,X8,X9,X10,X11,X12,LR8,CTR8,CR0,CR1,CR5,CR6,CR7] in
1072def GETtlsldADDR : Pseudo<(outs g8rc:$rD), (ins g8rc:$reg, tlsgd:$sym),
1073                          "#GETtlsldADDR",
1074                          [(set i64:$rD,
1075                            (PPCgetTlsldAddr i64:$reg, tglobaltlsaddr:$sym))]>,
1076                   isPPC64;
1077// Combined op for ADDItlsldL and GETtlsADDR, late expanded.  X3 and LR8
1078// are true defines, while the rest of the Defs are clobbers.
1079let hasExtraSrcRegAllocReq = 1, hasExtraDefRegAllocReq = 1,
1080    Defs = [X0,X3,X4,X5,X6,X7,X8,X9,X10,X11,X12,LR8,CTR8,CR0,CR1,CR5,CR6,CR7]
1081    in
1082def ADDItlsldLADDR : Pseudo<(outs g8rc:$rD),
1083                            (ins g8rc_nox0:$reg, s16imm64:$disp, tlsgd:$sym),
1084                            "#ADDItlsldLADDR",
1085                            [(set i64:$rD,
1086                              (PPCaddiTlsldLAddr i64:$reg,
1087                                                 tglobaltlsaddr:$disp,
1088                                                 tglobaltlsaddr:$sym))]>,
1089                     isPPC64;
1090def ADDISdtprelHA: Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, s16imm64:$disp),
1091                          "#ADDISdtprelHA",
1092                          [(set i64:$rD,
1093                            (PPCaddisDtprelHA i64:$reg,
1094                                              tglobaltlsaddr:$disp))]>,
1095                   isPPC64;
1096def ADDIdtprelL : Pseudo<(outs g8rc:$rD), (ins g8rc_nox0:$reg, s16imm64:$disp),
1097                         "#ADDIdtprelL",
1098                         [(set i64:$rD,
1099                           (PPCaddiDtprelL i64:$reg, tglobaltlsaddr:$disp))]>,
1100                  isPPC64;
1101
1102let PPC970_Unit = 2 in {
1103let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
1104// Truncating stores.
1105def STB8 : DForm_1<38, (outs), (ins g8rc:$rS, memri:$src),
1106                   "stb $rS, $src", IIC_LdStStore,
1107                   [(truncstorei8 i64:$rS, iaddr:$src)]>;
1108def STH8 : DForm_1<44, (outs), (ins g8rc:$rS, memri:$src),
1109                   "sth $rS, $src", IIC_LdStStore,
1110                   [(truncstorei16 i64:$rS, iaddr:$src)]>;
1111def STW8 : DForm_1<36, (outs), (ins g8rc:$rS, memri:$src),
1112                   "stw $rS, $src", IIC_LdStStore,
1113                   [(truncstorei32 i64:$rS, iaddr:$src)]>;
1114def STBX8 : XForm_8<31, 215, (outs), (ins g8rc:$rS, memrr:$dst),
1115                   "stbx $rS, $dst", IIC_LdStStore,
1116                   [(truncstorei8 i64:$rS, xaddr:$dst)]>,
1117                   PPC970_DGroup_Cracked;
1118def STHX8 : XForm_8<31, 407, (outs), (ins g8rc:$rS, memrr:$dst),
1119                   "sthx $rS, $dst", IIC_LdStStore,
1120                   [(truncstorei16 i64:$rS, xaddr:$dst)]>,
1121                   PPC970_DGroup_Cracked;
1122def STWX8 : XForm_8<31, 151, (outs), (ins g8rc:$rS, memrr:$dst),
1123                   "stwx $rS, $dst", IIC_LdStStore,
1124                   [(truncstorei32 i64:$rS, xaddr:$dst)]>,
1125                   PPC970_DGroup_Cracked;
1126} // Interpretation64Bit
1127
1128// Normal 8-byte stores.
1129def STD  : DSForm_1<62, 0, (outs), (ins g8rc:$rS, memrix:$dst),
1130                    "std $rS, $dst", IIC_LdStSTD,
1131                    [(aligned4store i64:$rS, ixaddr:$dst)]>, isPPC64;
1132def STDX  : XForm_8<31, 149, (outs), (ins g8rc:$rS, memrr:$dst),
1133                   "stdx $rS, $dst", IIC_LdStSTD,
1134                   [(store i64:$rS, xaddr:$dst)]>, isPPC64,
1135                   PPC970_DGroup_Cracked;
1136def STDBRX: XForm_8<31, 660, (outs), (ins g8rc:$rS, memrr:$dst),
1137                   "stdbrx $rS, $dst", IIC_LdStStore,
1138                   [(PPCstbrx i64:$rS, xoaddr:$dst, i64)]>, isPPC64,
1139                   PPC970_DGroup_Cracked;
1140}
1141
1142// Stores with Update (pre-inc).
1143let PPC970_Unit = 2, mayStore = 1, mayLoad = 0 in {
1144let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
1145def STBU8 : DForm_1<39, (outs ptr_rc_nor0:$ea_res), (ins g8rc:$rS, memri:$dst),
1146                   "stbu $rS, $dst", IIC_LdStStoreUpd, []>,
1147                   RegConstraint<"$dst.reg = $ea_res">, NoEncode<"$ea_res">;
1148def STHU8 : DForm_1<45, (outs ptr_rc_nor0:$ea_res), (ins g8rc:$rS, memri:$dst),
1149                   "sthu $rS, $dst", IIC_LdStStoreUpd, []>,
1150                   RegConstraint<"$dst.reg = $ea_res">, NoEncode<"$ea_res">;
1151def STWU8 : DForm_1<37, (outs ptr_rc_nor0:$ea_res), (ins g8rc:$rS, memri:$dst),
1152                   "stwu $rS, $dst", IIC_LdStStoreUpd, []>,
1153                   RegConstraint<"$dst.reg = $ea_res">, NoEncode<"$ea_res">;
1154
1155def STBUX8: XForm_8<31, 247, (outs ptr_rc_nor0:$ea_res), (ins g8rc:$rS, memrr:$dst),
1156                    "stbux $rS, $dst", IIC_LdStStoreUpd, []>,
1157                    RegConstraint<"$dst.ptrreg = $ea_res">, NoEncode<"$ea_res">,
1158                    PPC970_DGroup_Cracked;
1159def STHUX8: XForm_8<31, 439, (outs ptr_rc_nor0:$ea_res), (ins g8rc:$rS, memrr:$dst),
1160                    "sthux $rS, $dst", IIC_LdStStoreUpd, []>,
1161                    RegConstraint<"$dst.ptrreg = $ea_res">, NoEncode<"$ea_res">,
1162                    PPC970_DGroup_Cracked;
1163def STWUX8: XForm_8<31, 183, (outs ptr_rc_nor0:$ea_res), (ins g8rc:$rS, memrr:$dst),
1164                    "stwux $rS, $dst", IIC_LdStStoreUpd, []>,
1165                    RegConstraint<"$dst.ptrreg = $ea_res">, NoEncode<"$ea_res">,
1166                    PPC970_DGroup_Cracked;
1167} // Interpretation64Bit
1168
1169def STDU : DSForm_1<62, 1, (outs ptr_rc_nor0:$ea_res), (ins g8rc:$rS, memrix:$dst),
1170                   "stdu $rS, $dst", IIC_LdStSTDU, []>,
1171                   RegConstraint<"$dst.reg = $ea_res">, NoEncode<"$ea_res">,
1172                   isPPC64;
1173
1174def STDUX : XForm_8<31, 181, (outs ptr_rc_nor0:$ea_res), (ins g8rc:$rS, memrr:$dst),
1175                    "stdux $rS, $dst", IIC_LdStSTDUX, []>,
1176                    RegConstraint<"$dst.ptrreg = $ea_res">, NoEncode<"$ea_res">,
1177                    PPC970_DGroup_Cracked, isPPC64;
1178}
1179
1180// Patterns to match the pre-inc stores.  We can't put the patterns on
1181// the instruction definitions directly as ISel wants the address base
1182// and offset to be separate operands, not a single complex operand.
1183def : Pat<(pre_truncsti8 i64:$rS, iPTR:$ptrreg, iaddroff:$ptroff),
1184          (STBU8 $rS, iaddroff:$ptroff, $ptrreg)>;
1185def : Pat<(pre_truncsti16 i64:$rS, iPTR:$ptrreg, iaddroff:$ptroff),
1186          (STHU8 $rS, iaddroff:$ptroff, $ptrreg)>;
1187def : Pat<(pre_truncsti32 i64:$rS, iPTR:$ptrreg, iaddroff:$ptroff),
1188          (STWU8 $rS, iaddroff:$ptroff, $ptrreg)>;
1189def : Pat<(aligned4pre_store i64:$rS, iPTR:$ptrreg, iaddroff:$ptroff),
1190          (STDU $rS, iaddroff:$ptroff, $ptrreg)>;
1191
1192def : Pat<(pre_truncsti8 i64:$rS, iPTR:$ptrreg, iPTR:$ptroff),
1193          (STBUX8 $rS, $ptrreg, $ptroff)>;
1194def : Pat<(pre_truncsti16 i64:$rS, iPTR:$ptrreg, iPTR:$ptroff),
1195          (STHUX8 $rS, $ptrreg, $ptroff)>;
1196def : Pat<(pre_truncsti32 i64:$rS, iPTR:$ptrreg, iPTR:$ptroff),
1197          (STWUX8 $rS, $ptrreg, $ptroff)>;
1198def : Pat<(pre_store i64:$rS, iPTR:$ptrreg, iPTR:$ptroff),
1199          (STDUX $rS, $ptrreg, $ptroff)>;
1200
1201
1202//===----------------------------------------------------------------------===//
1203// Floating point instructions.
1204//
1205
1206
1207let PPC970_Unit = 3, hasSideEffects = 0,
1208    Uses = [RM] in {  // FPU Operations.
1209defm FCFID  : XForm_26r<63, 846, (outs f8rc:$frD), (ins f8rc:$frB),
1210                        "fcfid", "$frD, $frB", IIC_FPGeneral,
1211                        [(set f64:$frD, (PPCfcfid f64:$frB))]>, isPPC64;
1212defm FCTID  : XForm_26r<63, 814, (outs f8rc:$frD), (ins f8rc:$frB),
1213                        "fctid", "$frD, $frB", IIC_FPGeneral,
1214                        []>, isPPC64;
1215defm FCTIDU : XForm_26r<63, 942, (outs f8rc:$frD), (ins f8rc:$frB),
1216                        "fctidu", "$frD, $frB", IIC_FPGeneral,
1217                        []>, isPPC64;
1218defm FCTIDZ : XForm_26r<63, 815, (outs f8rc:$frD), (ins f8rc:$frB),
1219                        "fctidz", "$frD, $frB", IIC_FPGeneral,
1220                        [(set f64:$frD, (PPCfctidz f64:$frB))]>, isPPC64;
1221
1222defm FCFIDU  : XForm_26r<63, 974, (outs f8rc:$frD), (ins f8rc:$frB),
1223                        "fcfidu", "$frD, $frB", IIC_FPGeneral,
1224                        [(set f64:$frD, (PPCfcfidu f64:$frB))]>, isPPC64;
1225defm FCFIDS  : XForm_26r<59, 846, (outs f4rc:$frD), (ins f8rc:$frB),
1226                        "fcfids", "$frD, $frB", IIC_FPGeneral,
1227                        [(set f32:$frD, (PPCfcfids f64:$frB))]>, isPPC64;
1228defm FCFIDUS : XForm_26r<59, 974, (outs f4rc:$frD), (ins f8rc:$frB),
1229                        "fcfidus", "$frD, $frB", IIC_FPGeneral,
1230                        [(set f32:$frD, (PPCfcfidus f64:$frB))]>, isPPC64;
1231defm FCTIDUZ : XForm_26r<63, 943, (outs f8rc:$frD), (ins f8rc:$frB),
1232                        "fctiduz", "$frD, $frB", IIC_FPGeneral,
1233                        [(set f64:$frD, (PPCfctiduz f64:$frB))]>, isPPC64;
1234defm FCTIWUZ : XForm_26r<63, 143, (outs f8rc:$frD), (ins f8rc:$frB),
1235                        "fctiwuz", "$frD, $frB", IIC_FPGeneral,
1236                        [(set f64:$frD, (PPCfctiwuz f64:$frB))]>, isPPC64;
1237}
1238
1239
1240//===----------------------------------------------------------------------===//
1241// Instruction Patterns
1242//
1243
1244// Extensions and truncates to/from 32-bit regs.
1245def : Pat<(i64 (zext i32:$in)),
1246          (RLDICL (INSERT_SUBREG (i64 (IMPLICIT_DEF)), $in, sub_32),
1247                  0, 32)>;
1248def : Pat<(i64 (anyext i32:$in)),
1249          (INSERT_SUBREG (i64 (IMPLICIT_DEF)), $in, sub_32)>;
1250def : Pat<(i32 (trunc i64:$in)),
1251          (EXTRACT_SUBREG $in, sub_32)>;
1252
1253// Implement the 'not' operation with the NOR instruction.
1254// (we could use the default xori pattern, but nor has lower latency on some
1255// cores (such as the A2)).
1256def i64not : OutPatFrag<(ops node:$in),
1257                        (NOR8 $in, $in)>;
1258def        : Pat<(not i64:$in),
1259                 (i64not $in)>;
1260
1261// Extending loads with i64 targets.
1262def : Pat<(zextloadi1 iaddr:$src),
1263          (LBZ8 iaddr:$src)>;
1264def : Pat<(zextloadi1 xaddr:$src),
1265          (LBZX8 xaddr:$src)>;
1266def : Pat<(extloadi1 iaddr:$src),
1267          (LBZ8 iaddr:$src)>;
1268def : Pat<(extloadi1 xaddr:$src),
1269          (LBZX8 xaddr:$src)>;
1270def : Pat<(extloadi8 iaddr:$src),
1271          (LBZ8 iaddr:$src)>;
1272def : Pat<(extloadi8 xaddr:$src),
1273          (LBZX8 xaddr:$src)>;
1274def : Pat<(extloadi16 iaddr:$src),
1275          (LHZ8 iaddr:$src)>;
1276def : Pat<(extloadi16 xaddr:$src),
1277          (LHZX8 xaddr:$src)>;
1278def : Pat<(extloadi32 iaddr:$src),
1279          (LWZ8 iaddr:$src)>;
1280def : Pat<(extloadi32 xaddr:$src),
1281          (LWZX8 xaddr:$src)>;
1282
1283// Standard shifts.  These are represented separately from the real shifts above
1284// so that we can distinguish between shifts that allow 6-bit and 7-bit shift
1285// amounts.
1286def : Pat<(sra i64:$rS, i32:$rB),
1287          (SRAD $rS, $rB)>;
1288def : Pat<(srl i64:$rS, i32:$rB),
1289          (SRD $rS, $rB)>;
1290def : Pat<(shl i64:$rS, i32:$rB),
1291          (SLD $rS, $rB)>;
1292
1293// SUBFIC
1294def : Pat<(sub imm64SExt16:$imm, i64:$in),
1295          (SUBFIC8 $in, imm:$imm)>;
1296
1297// SHL/SRL
1298def : Pat<(shl i64:$in, (i32 imm:$imm)),
1299          (RLDICR $in, imm:$imm, (SHL64 imm:$imm))>;
1300def : Pat<(srl i64:$in, (i32 imm:$imm)),
1301          (RLDICL $in, (SRL64 imm:$imm), imm:$imm)>;
1302
1303// ROTL
1304def : Pat<(rotl i64:$in, i32:$sh),
1305          (RLDCL $in, $sh, 0)>;
1306def : Pat<(rotl i64:$in, (i32 imm:$imm)),
1307          (RLDICL $in, imm:$imm, 0)>;
1308
1309// Hi and Lo for Darwin Global Addresses.
1310def : Pat<(PPChi tglobaladdr:$in, 0), (LIS8 tglobaladdr:$in)>;
1311def : Pat<(PPClo tglobaladdr:$in, 0), (LI8  tglobaladdr:$in)>;
1312def : Pat<(PPChi tconstpool:$in , 0), (LIS8 tconstpool:$in)>;
1313def : Pat<(PPClo tconstpool:$in , 0), (LI8  tconstpool:$in)>;
1314def : Pat<(PPChi tjumptable:$in , 0), (LIS8 tjumptable:$in)>;
1315def : Pat<(PPClo tjumptable:$in , 0), (LI8  tjumptable:$in)>;
1316def : Pat<(PPChi tblockaddress:$in, 0), (LIS8 tblockaddress:$in)>;
1317def : Pat<(PPClo tblockaddress:$in, 0), (LI8  tblockaddress:$in)>;
1318def : Pat<(PPChi tglobaltlsaddr:$g, i64:$in),
1319          (ADDIS8 $in, tglobaltlsaddr:$g)>;
1320def : Pat<(PPClo tglobaltlsaddr:$g, i64:$in),
1321          (ADDI8 $in, tglobaltlsaddr:$g)>;
1322def : Pat<(add i64:$in, (PPChi tglobaladdr:$g, 0)),
1323          (ADDIS8 $in, tglobaladdr:$g)>;
1324def : Pat<(add i64:$in, (PPChi tconstpool:$g, 0)),
1325          (ADDIS8 $in, tconstpool:$g)>;
1326def : Pat<(add i64:$in, (PPChi tjumptable:$g, 0)),
1327          (ADDIS8 $in, tjumptable:$g)>;
1328def : Pat<(add i64:$in, (PPChi tblockaddress:$g, 0)),
1329          (ADDIS8 $in, tblockaddress:$g)>;
1330
1331// Patterns to match r+r indexed loads and stores for
1332// addresses without at least 4-byte alignment.
1333def : Pat<(i64 (unaligned4sextloadi32 xoaddr:$src)),
1334          (LWAX xoaddr:$src)>;
1335def : Pat<(i64 (unaligned4load xoaddr:$src)),
1336          (LDX xoaddr:$src)>;
1337def : Pat<(unaligned4store i64:$rS, xoaddr:$dst),
1338          (STDX $rS, xoaddr:$dst)>;
1339
1340// 64-bits atomic loads and stores
1341def : Pat<(atomic_load_64 ixaddr:$src), (LD  memrix:$src)>;
1342def : Pat<(atomic_load_64 xaddr:$src),  (LDX memrr:$src)>;
1343
1344def : Pat<(atomic_store_64 ixaddr:$ptr, i64:$val), (STD  g8rc:$val, memrix:$ptr)>;
1345def : Pat<(atomic_store_64 xaddr:$ptr,  i64:$val), (STDX g8rc:$val, memrr:$ptr)>;
1346
1347let Predicates = [IsISA3_0] in {
1348
1349class X_L1_RA5_RB5<bits<6> opcode, bits<10> xo, string opc, RegisterOperand ty,
1350                   InstrItinClass itin, list<dag> pattern>
1351  : X_L1_RS5_RS5<opcode, xo, (outs), (ins ty:$rA, ty:$rB, u1imm:$L),
1352                 !strconcat(opc, " $rA, $rB, $L"), itin, pattern>;
1353
1354let Interpretation64Bit = 1, isCodeGenOnly = 1 in {
1355def CP_COPY8   : X_L1_RA5_RB5<31, 774, "copy"  , g8rc, IIC_LdStCOPY, []>;
1356def CP_PASTE8  : X_L1_RA5_RB5<31, 902, "paste" , g8rc, IIC_LdStPASTE, []>;
1357def CP_PASTE8o : X_L1_RA5_RB5<31, 902, "paste.", g8rc, IIC_LdStPASTE, []>,isDOT;
1358}
1359
1360// SLB Invalidate Entry Global
1361def SLBIEG : XForm_26<31, 466, (outs), (ins gprc:$RS, gprc:$RB),
1362                      "slbieg $RS, $RB", IIC_SprSLBIEG, []>;
1363// SLB Synchronize
1364def SLBSYNC : XForm_0<31, 338, (outs), (ins), "slbsync", IIC_SprSLBSYNC, []>;
1365
1366} // IsISA3_0
1367