arm_mve.td 71 KB

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  1. //===- arm_mve.td - ACLE intrinsic functions for MVE architecture ---------===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. //
  9. // This file defines the set of ACLE-specified source-level intrinsic
  10. // functions wrapping the MVE vector instruction set and scalar shift
  11. // operations.
  12. //
  13. // Refer to comments in arm_mve_defs.td for the infrastructure used in
  14. // here, and to MveEmitter.cpp for how those are used in turn to
  15. // generate code.
  16. //
  17. //===----------------------------------------------------------------------===//
  18. include "arm_mve_defs.td"
  19. let params = T.Usual in
  20. foreach n = [ 2, 4 ] in {
  21. def "vst"#n#"q": Intrinsic<Void, (args Ptr<Scalar>, MultiVector<n>),
  22. (CustomCodegen<"VST24"> n:$NumVectors,
  23. "Intrinsic::arm_mve_vst"#n#"q":$IRIntr)>;
  24. def "vld"#n#"q": Intrinsic<MultiVector<n>, (args CPtr<Scalar>),
  25. (CustomCodegen<"VLD24"> n:$NumVectors,
  26. "Intrinsic::arm_mve_vld"#n#"q":$IRIntr)>;
  27. }
  28. multiclass bit_op_fp<IRBuilder bitop> {
  29. def "": Intrinsic<Vector, (args Vector:$a, Vector:$b),
  30. (bitcast (bitop (bitcast $a, UVector), (bitcast $b, UVector)), Vector)>;
  31. }
  32. multiclass bit_op_fp_with_inv<IRBuilder bitop> {
  33. def "": Intrinsic<Vector, (args Vector:$a, Vector:$b),
  34. (bitcast (bitop (bitcast $a, UVector), (not (bitcast $b, UVector))), Vector)>;
  35. }
  36. let params = T.Signed in {
  37. def vqaddq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  38. (IRIntBase<"sadd_sat", [Vector]> $a, $b)>;
  39. def vqsubq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  40. (IRIntBase<"ssub_sat", [Vector]> $a, $b)>;
  41. let pnt = PNT_NType in {
  42. def vqaddq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  43. (IRIntBase<"sadd_sat", [Vector]> $a, (splat $b))>;
  44. def vqsubq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  45. (IRIntBase<"ssub_sat", [Vector]> $a, (splat $b))>;
  46. }
  47. }
  48. let params = T.Unsigned in {
  49. def vqaddq_u: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  50. (IRIntBase<"uadd_sat", [Vector]> $a, $b)>,
  51. NameOverride<"vqaddq">;
  52. def vqsubq_u: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  53. (IRIntBase<"usub_sat", [Vector]> $a, $b)>,
  54. NameOverride<"vqsubq">;
  55. let pnt = PNT_NType in {
  56. def vqaddq_u_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  57. (IRIntBase<"uadd_sat", [Vector]> $a, (splat $b))>,
  58. NameOverride<"vqaddq_n">;
  59. def vqsubq_u_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  60. (IRIntBase<"usub_sat", [Vector]> $a, (splat $b))>,
  61. NameOverride<"vqsubq_n">;
  62. }
  63. }
  64. // Some intrinsics below are implemented not as IR fragments, but as
  65. // special-purpose IR intrinsics. This is because such a general form
  66. // (such as NEON uses) required a variable-width vector size, and we are
  67. // restricted to 128 bit. Although we can possibly get clever with lane
  68. // operations, the consequent IR representation would be very hard to
  69. // write sensibly. In particular, doubling a vector's width would be a
  70. // mess. Other intrinsics just don't translate nicely into IR.
  71. let params = T.Int in {
  72. def vaddq: Intrinsic<Vector, (args Vector:$a, Vector:$b), (add $a, $b)>;
  73. def vhaddq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  74. (IRInt<"vhadd", [Vector]> $a, $b, (unsignedflag Scalar))>;
  75. def vrhaddq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  76. (IRInt<"vrhadd", [Vector]> $a, $b, (unsignedflag Scalar))>;
  77. def vandq: Intrinsic<Vector, (args Vector:$a, Vector:$b), (and $a, $b)>;
  78. def vbicq: Intrinsic<Vector, (args Vector:$a, Vector:$b), (and $a, (not $b))>;
  79. def veorq: Intrinsic<Vector, (args Vector:$a, Vector:$b), (xor $a, $b)>;
  80. def vornq: Intrinsic<Vector, (args Vector:$a, Vector:$b), (or $a, (not $b))>;
  81. def vorrq: Intrinsic<Vector, (args Vector:$a, Vector:$b), (or $a, $b)>;
  82. def vsubq: Intrinsic<Vector, (args Vector:$a, Vector:$b), (sub $a, $b)>;
  83. def vhsubq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  84. (IRInt<"vhsub", [Vector]> $a, $b, (unsignedflag Scalar))>;
  85. def vmulq: Intrinsic<Vector, (args Vector:$a, Vector:$b), (mul $a, $b)>;
  86. def vmulhq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  87. (IRInt<"vmulh", [Vector]> $a, $b, (unsignedflag Scalar))>;
  88. def vrmulhq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  89. (IRInt<"vrmulh", [Vector]> $a, $b, (unsignedflag Scalar))>;
  90. def vmullbq_int: Intrinsic<DblVector, (args Vector:$a, Vector:$b),
  91. (IRInt<"vmull", [DblVector, Vector]>
  92. $a, $b, (unsignedflag Scalar), 0)>;
  93. def vmulltq_int: Intrinsic<DblVector, (args Vector:$a, Vector:$b),
  94. (IRInt<"vmull", [DblVector, Vector]>
  95. $a, $b, (unsignedflag Scalar), 1)>;
  96. let pnt = PNT_NType in {
  97. def vaddq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  98. (add $a, (splat $b))>;
  99. def vsubq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  100. (sub $a, (splat $b))>;
  101. def vmulq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  102. (mul $a, (splat $b))>;
  103. def vhaddq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  104. (IRInt<"vhadd", [Vector]> $a, (splat $b),
  105. (unsignedflag Scalar))>;
  106. def vhsubq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  107. (IRInt<"vhsub", [Vector]> $a, (splat $b),
  108. (unsignedflag Scalar))>;
  109. }
  110. }
  111. let params = T.Signed in {
  112. def vqdmulhq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  113. (IRInt<"vqdmulh", [Vector]> $a, $b)>;
  114. def vqrdmulhq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  115. (IRInt<"vqrdmulh", [Vector]> $a, $b)>;
  116. let pnt = PNT_NType in {
  117. def vqdmulhq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  118. (IRInt<"vqdmulh", [Vector]> $a, (splat $b))>;
  119. def vqrdmulhq_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  120. (IRInt<"vqrdmulh", [Vector]> $a, (splat $b))>;
  121. }
  122. }
  123. let params = T.Poly, overrideKindLetter = "p" in {
  124. def vmullbq_poly: Intrinsic<DblVector, (args Vector:$a, Vector:$b),
  125. (IRInt<"vmull_poly", [DblVector, Vector]>
  126. $a, $b, 0)>;
  127. def vmulltq_poly: Intrinsic<DblVector, (args Vector:$a, Vector:$b),
  128. (IRInt<"vmull_poly", [DblVector, Vector]>
  129. $a, $b, 1)>;
  130. }
  131. let params = T.Float in {
  132. def vaddqf: Intrinsic<Vector, (args Vector:$a, Vector:$b), (fadd $a, $b)>,
  133. NameOverride<"vaddq">;
  134. defm vandqf: bit_op_fp<and>, NameOverride<"vandq">;
  135. defm vbicqf: bit_op_fp_with_inv<and>, NameOverride<"vbicq">;
  136. defm veorqf: bit_op_fp<xor>, NameOverride<"veorq">;
  137. defm vornqf: bit_op_fp_with_inv<or>, NameOverride<"vornq">;
  138. defm vorrqf: bit_op_fp<or>, NameOverride<"vorrq">;
  139. def vsubqf: Intrinsic<Vector, (args Vector:$a, Vector:$b), (fsub $a, $b)>,
  140. NameOverride<"vsubq">;
  141. def vmulqf: Intrinsic<Vector, (args Vector:$a, Vector:$b), (fmul $a, $b)>,
  142. NameOverride<"vmulq">;
  143. let pnt = PNT_NType in {
  144. def vaddqf_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  145. (fadd $a, (splat $b))>,
  146. NameOverride<"vaddq_n">;
  147. def vsubqf_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  148. (fsub $a, (splat $b))>,
  149. NameOverride<"vsubq_n">;
  150. def vmulqf_n: Intrinsic<Vector, (args Vector:$a, unpromoted<Scalar>:$b),
  151. (fmul $a, (splat $b))>,
  152. NameOverride<"vmulq_n">;
  153. }
  154. }
  155. multiclass FMA<bit add> {
  156. // FMS instructions are defined in the ArmARM as if they negate the
  157. // second multiply input.
  158. defvar m2_cg = !if(add, (id $m2), (fneg $m2));
  159. defvar unpred_cg = (IRIntBase<"fma", [Vector]> $m1, m2_cg, $addend);
  160. defvar pred_cg = (IRInt<"fma_predicated", [Vector, Predicate]>
  161. $m1, m2_cg, $addend, $pred);
  162. def q: Intrinsic<Vector, (args Vector:$addend, Vector:$m1, Vector:$m2),
  163. unpred_cg>;
  164. def q_m: Intrinsic<Vector, (args Vector:$addend, Vector:$m1, Vector:$m2,
  165. Predicate:$pred), pred_cg>;
  166. // Only FMA has the vector/scalar variants, not FMS
  167. if add then let pnt = PNT_NType in {
  168. def q_n: Intrinsic<Vector, (args Vector:$addend, Vector:$m1,
  169. unpromoted<Scalar>:$m2_s),
  170. (seq (splat $m2_s):$m2, unpred_cg)>;
  171. def sq_n: Intrinsic<Vector, (args Vector:$m1, Vector:$m2,
  172. unpromoted<Scalar>:$addend_s),
  173. (seq (splat $addend_s):$addend, unpred_cg)>;
  174. def q_m_n: Intrinsic<Vector, (args Vector:$addend, Vector:$m1,
  175. unpromoted<Scalar>:$m2_s,
  176. Predicate:$pred),
  177. (seq (splat $m2_s):$m2, pred_cg)>;
  178. def sq_m_n: Intrinsic<Vector, (args Vector:$m1, Vector:$m2,
  179. unpromoted<Scalar>:$addend_s,
  180. Predicate:$pred),
  181. (seq (splat $addend_s):$addend, pred_cg)>;
  182. }
  183. }
  184. let params = T.Float in {
  185. defm vfma: FMA<1>;
  186. defm vfms: FMA<0>;
  187. }
  188. let params = T.Int, pnt = PNT_NType in {
  189. def vmlaq_n: Intrinsic<
  190. Vector, (args Vector:$addend, Vector:$m1, unpromoted<Scalar>:$m2_s),
  191. (add (mul $m1, (splat $m2_s)), $addend)>;
  192. def vmlasq_n: Intrinsic<
  193. Vector, (args Vector:$m1, Vector:$m2, unpromoted<Scalar>:$addend_s),
  194. (add (mul $m1, $m2), (splat $addend_s))>;
  195. def vmlaq_m_n: Intrinsic<
  196. Vector, (args Vector:$addend, Vector:$m1, Scalar:$m2_s, Predicate:$pred),
  197. (IRInt<"vmla_n_predicated", [Vector, Predicate]>
  198. $addend, $m1, $m2_s, $pred)>;
  199. def vmlasq_m_n: Intrinsic<
  200. Vector, (args Vector:$m1, Vector:$m2, Scalar:$addend_s, Predicate:$pred),
  201. (IRInt<"vmlas_n_predicated", [Vector, Predicate]>
  202. $m1, $m2, $addend_s, $pred)>;
  203. }
  204. multiclass VQDMLA {
  205. def hq_n: Intrinsic<
  206. Vector, (args Vector:$addend, Vector:$m1, Scalar:$m2_s),
  207. (IRInt<NAME # "h", [Vector]> $addend, $m1, $m2_s)>;
  208. def shq_n: Intrinsic<
  209. Vector, (args Vector:$m1, Vector:$m2, Scalar:$addend_s),
  210. (IRInt<NAME # "sh", [Vector]> $m1, $m2, $addend_s)>;
  211. def hq_m_n: Intrinsic<
  212. Vector, (args Vector:$addend, Vector:$m1, Scalar:$m2_s, Predicate:$pred),
  213. (IRInt<NAME # "h_predicated", [Vector, Predicate]>
  214. $addend, $m1, $m2_s, $pred)>;
  215. def shq_m_n: Intrinsic<
  216. Vector, (args Vector:$m1, Vector:$m2, Scalar:$addend_s, Predicate:$pred),
  217. (IRInt<NAME # "sh_predicated", [Vector, Predicate]>
  218. $m1, $m2, $addend_s, $pred)>;
  219. }
  220. let params = T.Signed, pnt = PNT_NType in {
  221. defm vqdmla: VQDMLA;
  222. defm vqrdmla: VQDMLA;
  223. }
  224. multiclass VQDMLAD<int exchange, int round, int subtract> {
  225. def "": Intrinsic<Vector, (args Vector:$a, Vector:$b, Vector:$c),
  226. (IRInt<"vqdmlad", [Vector]> $a, $b, $c,
  227. (u32 exchange), (u32 round), (u32 subtract))>;
  228. def _m: Intrinsic<Vector, (args Vector:$a, Vector:$b, Vector:$c,
  229. Predicate:$pred),
  230. (IRInt<"vqdmlad_predicated", [Vector, Predicate]> $a, $b, $c,
  231. (u32 exchange), (u32 round), (u32 subtract), $pred)>;
  232. }
  233. let params = T.Signed in {
  234. defm vqdmladhq: VQDMLAD<0, 0, 0>;
  235. defm vqdmladhxq: VQDMLAD<1, 0, 0>;
  236. defm vqdmlsdhq: VQDMLAD<0, 0, 1>;
  237. defm vqdmlsdhxq: VQDMLAD<1, 0, 1>;
  238. defm vqrdmladhq: VQDMLAD<0, 1, 0>;
  239. defm vqrdmladhxq: VQDMLAD<1, 1, 0>;
  240. defm vqrdmlsdhq: VQDMLAD<0, 1, 1>;
  241. defm vqrdmlsdhxq: VQDMLAD<1, 1, 1>;
  242. }
  243. let params = !listconcat(T.Int16, T.Int32) in {
  244. let pnt = PNT_None in {
  245. def vmvnq_n: Intrinsic<Vector, (args imm_simd_vmvn:$imm),
  246. (not (splat (Scalar $imm)))>;
  247. }
  248. defm vmvnq: IntrinsicMX<Vector, (args imm_simd_vmvn:$imm, Predicate:$pred),
  249. (select $pred, (not (splat (Scalar $imm))), $inactive),
  250. 1, "_n", PNT_NType, PNT_None>;
  251. let pnt = PNT_NType in {
  252. def vbicq_n: Intrinsic<Vector, (args Vector:$v, imm_simd_restrictive:$imm),
  253. (and $v, (not (splat (Scalar $imm))))>;
  254. def vorrq_n: Intrinsic<Vector, (args Vector:$v, imm_simd_restrictive:$imm),
  255. (or $v, (splat (Scalar $imm)))>;
  256. }
  257. def vbicq_m_n: Intrinsic<
  258. Vector, (args Vector:$v, imm_simd_restrictive:$imm, Predicate:$pred),
  259. (select $pred, (and $v, (not (splat (Scalar $imm)))), $v)>;
  260. def vorrq_m_n: Intrinsic<
  261. Vector, (args Vector:$v, imm_simd_restrictive:$imm, Predicate:$pred),
  262. (select $pred, (or $v, (splat (Scalar $imm))), $v)>;
  263. }
  264. let params = T.Usual in {
  265. let pnt = PNT_None in
  266. def vdupq_n: Intrinsic<Vector, (args unpromoted<Scalar>:$s), (splat $s)>;
  267. defm vdupq: IntrinsicMX<
  268. Vector, (args unpromoted<Scalar>:$s, Predicate:$pred),
  269. (select $pred, (splat $s), $inactive), 1, "_n", PNT_NType, PNT_None>;
  270. }
  271. multiclass vxdup_mc<dag paramsIn, dag paramsOut> {
  272. defvar UnpredInt = IRInt<NAME, [Vector]>;
  273. defvar PredInt = IRInt<NAME # "_predicated", [Vector, Predicate]>;
  274. defvar UnpredIntCall = !con((UnpredInt $base), paramsOut);
  275. defvar PredIntCall = !con((PredInt $inactive, $base), paramsOut, (? $pred));
  276. // Straightforward case with neither writeback nor predication
  277. let pnt = PNT_N in
  278. def q_n: Intrinsic<Vector, !con((args u32:$base), paramsIn),
  279. (xval UnpredIntCall, 0)>;
  280. // Predicated form without writeback
  281. defm q: IntrinsicMX<
  282. Vector, !con((args u32:$base), paramsIn, (? Predicate:$pred)),
  283. (xval PredIntCall, 0), 1, "_n", PNT_NType, PNT_N>;
  284. // Writeback without predication
  285. let pnt = PNT_WB in
  286. def q_wb: Intrinsic<
  287. Vector, !con((args Ptr<u32>:$baseaddr), paramsIn),
  288. (seq (load $baseaddr):$base,
  289. UnpredIntCall:$pair,
  290. (store (xval $pair, 1), $baseaddr),
  291. (xval $pair, 0))>;
  292. // Both writeback and predicated
  293. defm q: IntrinsicMX<
  294. Vector, !con((args Ptr<u32>:$baseaddr), paramsIn, (? Predicate:$pred)),
  295. (seq (load $baseaddr):$base,
  296. PredIntCall:$pair,
  297. (store (xval $pair, 1), $baseaddr),
  298. (xval $pair, 0)), 1, "_wb", PNT_WBType, PNT_WB>;
  299. }
  300. let params = T.Unsigned in {
  301. defm vidup: vxdup_mc<(? imm_1248:$step), (? $step)>;
  302. defm vddup: vxdup_mc<(? imm_1248:$step), (? $step)>;
  303. defm viwdup: vxdup_mc<(? u32:$limit, imm_1248:$step), (? $limit, $step)>;
  304. defm vdwdup: vxdup_mc<(? u32:$limit, imm_1248:$step), (? $limit, $step)>;
  305. }
  306. let params = T.Int in {
  307. def vmvnq: Intrinsic<Vector, (args Vector:$a),
  308. (xor $a, (uint_max Vector))>;
  309. defm vmvnq: IntrinsicMX<Vector, (args Vector:$a, Predicate:$pred),
  310. (IRInt<"mvn_predicated", [Vector, Predicate]> $a, $pred, $inactive)>;
  311. def vclzq: Intrinsic<Vector, (args Vector:$a),
  312. (IRIntBase<"ctlz", [Vector]> $a, (i1 0))>;
  313. defm vclzq: IntrinsicMX<Vector, (args Vector:$a, Predicate:$pred),
  314. (IRInt<"clz_predicated", [Vector, Predicate]> $a, $pred, $inactive)>;
  315. }
  316. let params = T.Signed in {
  317. def vclsq: Intrinsic<Vector, (args Vector:$a), (IRInt<"vcls", [Vector]> $a)>;
  318. defm vclsq: IntrinsicMX<Vector, (args Vector:$a, Predicate:$pred),
  319. (IRInt<"cls_predicated", [Vector, Predicate]> $a, $pred, $inactive)>;
  320. def vnegq: Intrinsic<Vector, (args Vector:$a),
  321. (sub (zeroinit Vector), $a)>;
  322. def vabsq: Intrinsic<Vector, (args Vector:$a),
  323. (select (icmp_slt $a, (zeroinit Vector)),
  324. (sub (zeroinit Vector), $a), $a)>;
  325. def vqnegq: Intrinsic<Vector, (args Vector:$a),
  326. (select (icmp_eq $a, (int_min Vector)),
  327. (int_max Vector),
  328. (sub (zeroinit Vector), $a))>;
  329. def vqabsq: Intrinsic<Vector, (args Vector:$a),
  330. (select (icmp_sgt $a, (zeroinit Vector)), $a,
  331. (select (icmp_eq $a, (int_min Vector)),
  332. (int_max Vector),
  333. (sub (zeroinit Vector), $a)))>;
  334. foreach name = ["qneg", "qabs"] in {
  335. defm v#name#q: IntrinsicMX<Vector, (args Vector:$a, Predicate:$pred),
  336. (IRInt<name#"_predicated", [Vector, Predicate]> $a, $pred, $inactive),
  337. 0 /* no _x variant for saturating intrinsics */>;
  338. }
  339. }
  340. let params = !listconcat(T.Signed, T.Float) in {
  341. foreach name = ["neg", "abs"] in {
  342. defm v#name#q: IntrinsicMX<Vector, (args Vector:$a, Predicate:$pred),
  343. (IRInt<name#"_predicated", [Vector, Predicate]> $a, $pred, $inactive)>;
  344. }
  345. }
  346. let params = T.Float in {
  347. def vnegq_f: Intrinsic<Vector, (args Vector:$a), (fneg $a)>,
  348. NameOverride<"vnegq">;
  349. def vabsq_f: Intrinsic<Vector, (args Vector:$a),
  350. (IRIntBase<"fabs", [Vector]> $a)>, NameOverride<"vabsq">;
  351. }
  352. // The bitcasting below is not overcomplicating the IR because while
  353. // Vector and UVector may be different vector types at the C level i.e.
  354. // vectors of same size signed/unsigned ints. Once they're lowered
  355. // to IR, they are just bit vectors with no sign at all, so the
  356. // bitcasts will be automatically elided by IRBuilder.
  357. multiclass predicated_bit_op_fp<string int_op> {
  358. def "": Intrinsic<Vector, (args Vector:$inactive, Vector:$a, Vector:$b,
  359. Predicate:$pred),
  360. (bitcast (IRInt<int_op, [UVector, Predicate]>
  361. (bitcast $a, UVector),
  362. (bitcast $b, UVector),
  363. $pred,
  364. (bitcast $inactive, UVector)), Vector)>;
  365. }
  366. // Plain intrinsics
  367. let params = T.Usual in {
  368. def vabdq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  369. (IRInt<"vabd", [Vector]> $a, $b, (unsignedflag Scalar))>;
  370. }
  371. multiclass VectorVectorArithmetic<string operation, dag extraArgs = (?),
  372. bit wantXVariant = 1> {
  373. defm "" : IntrinsicMX<
  374. Vector, (args Vector:$a, Vector:$b, Predicate:$pred),
  375. !con((IRInt<operation, [Vector, Predicate]> $a, $b),
  376. extraArgs, (? $pred, $inactive)), wantXVariant>;
  377. }
  378. multiclass VectorScalarArithmetic<string operation, string basename,
  379. dag extraArgs = (?),
  380. bit wantXVariant = 1> {
  381. defm "" : IntrinsicMXNameOverride<
  382. Vector, (args Vector:$a, unpromoted<Scalar>:$b, Predicate:$pred),
  383. !con((IRInt<operation, [Vector, Predicate]> $a, (splat $b)),
  384. extraArgs, (? $pred, $inactive)), basename, wantXVariant, "_n",
  385. PNT_NType, PNT_NType>;
  386. }
  387. multiclass VectorVectorArithmeticBitcast<string operation> {
  388. defm "" : IntrinsicMX<Vector, (args Vector:$a, Vector:$b,
  389. Predicate:$pred),
  390. (bitcast (IRInt<operation, [UVector, Predicate]>
  391. (bitcast $a, UVector),
  392. (bitcast $b, UVector),
  393. $pred,
  394. (bitcast $inactive, UVector)), Vector)>;
  395. }
  396. // Predicated intrinsics
  397. let params = T.Usual in {
  398. defm vabdq : VectorVectorArithmetic<"abd_predicated", (? (unsignedflag Scalar))>;
  399. defm vaddq : VectorVectorArithmetic<"add_predicated">;
  400. defm vsubq : VectorVectorArithmetic<"sub_predicated">;
  401. defm vmulq : VectorVectorArithmetic<"mul_predicated">;
  402. defm vandq : VectorVectorArithmeticBitcast<"and_predicated">;
  403. defm vbicq : VectorVectorArithmeticBitcast<"bic_predicated">;
  404. defm veorq : VectorVectorArithmeticBitcast<"eor_predicated">;
  405. defm vornq : VectorVectorArithmeticBitcast<"orn_predicated">;
  406. defm vorrq : VectorVectorArithmeticBitcast<"orr_predicated">;
  407. defm : VectorScalarArithmetic<"add_predicated", "vaddq">;
  408. defm : VectorScalarArithmetic<"sub_predicated", "vsubq">;
  409. defm : VectorScalarArithmetic<"mul_predicated", "vmulq">;
  410. }
  411. multiclass DblVectorVectorArithmetic<string operation, dag extraArgs = (?),
  412. bit wantXVariant = 1> {
  413. defm "" : IntrinsicMX<
  414. DblVector, (args Vector:$a, Vector:$b, DblPredicate:$pred),
  415. !con((IRInt<operation, [DblVector, Vector, DblPredicate]> $a, $b),
  416. extraArgs, (? $pred, $inactive)), wantXVariant>;
  417. }
  418. multiclass DblVectorScalarArithmetic<string operation, string basename,
  419. dag extraArgs = (?),
  420. bit wantXVariant = 1> {
  421. defm "" : IntrinsicMXNameOverride<
  422. DblVector, (args Vector:$a, unpromoted<Scalar>:$b, DblPredicate:$pred),
  423. !con((IRInt<operation, [DblVector, Vector, DblPredicate]> $a, (splat $b)),
  424. extraArgs, (? $pred, $inactive)), basename, wantXVariant, "_n",
  425. PNT_NType, PNT_NType>;
  426. }
  427. // Predicated intrinsics - Int types only
  428. let params = T.Int in {
  429. defm vminq : VectorVectorArithmetic<"min_predicated", (? (unsignedflag Scalar))>;
  430. defm vmaxq : VectorVectorArithmetic<"max_predicated", (? (unsignedflag Scalar))>;
  431. defm vmulhq : VectorVectorArithmetic<"mulh_predicated", (? (unsignedflag Scalar))>;
  432. defm vrmulhq : VectorVectorArithmetic<"rmulh_predicated", (? (unsignedflag Scalar))>;
  433. defm vqaddq : VectorVectorArithmetic<"qadd_predicated", (? (unsignedflag Scalar)), 0>;
  434. defm vhaddq : VectorVectorArithmetic<"hadd_predicated", (? (unsignedflag Scalar))>;
  435. defm vrhaddq : VectorVectorArithmetic<"rhadd_predicated", (? (unsignedflag Scalar))>;
  436. defm vqsubq : VectorVectorArithmetic<"qsub_predicated", (? (unsignedflag Scalar)), 0>;
  437. defm vhsubq : VectorVectorArithmetic<"hsub_predicated", (? (unsignedflag Scalar))>;
  438. defm vmullbq_int : DblVectorVectorArithmetic<"mull_int_predicated", (? (unsignedflag Scalar), (u32 0))>;
  439. defm vmulltq_int : DblVectorVectorArithmetic<"mull_int_predicated", (? (unsignedflag Scalar), (u32 1))>;
  440. defm : VectorScalarArithmetic<"qadd_predicated", "vqaddq", (? (unsignedflag Scalar)), 0>;
  441. defm : VectorScalarArithmetic<"hadd_predicated", "vhaddq", (? (unsignedflag Scalar))>;
  442. defm : VectorScalarArithmetic<"qsub_predicated", "vqsubq", (? (unsignedflag Scalar)), 0>;
  443. defm : VectorScalarArithmetic<"hsub_predicated", "vhsubq", (? (unsignedflag Scalar))>;
  444. }
  445. let params = T.Signed in {
  446. defm vqdmulhq : VectorVectorArithmetic<"qdmulh_predicated", (?), 0>;
  447. defm vqrdmulhq : VectorVectorArithmetic<"qrdmulh_predicated", (?), 0>;
  448. def vminaq_m: Intrinsic<UVector, (args UVector:$a, Vector:$b, Predicate:$pred),
  449. (IRInt<"vmina_predicated", [UVector,Predicate]> $a, $b, $pred)>;
  450. def vmaxaq_m: Intrinsic<UVector, (args UVector:$a, Vector:$b, Predicate:$pred),
  451. (IRInt<"vmaxa_predicated", [UVector,Predicate]> $a, $b, $pred)>;
  452. defm : VectorScalarArithmetic<"qdmulh_predicated", "vqdmulhq", (?), 0>;
  453. defm : VectorScalarArithmetic<"qrdmulh_predicated", "vqrdmulhq", (?), 0>;
  454. }
  455. let params = T.Poly, overrideKindLetter = "p" in {
  456. defm vmullbq_poly : DblVectorVectorArithmetic<"mull_poly_predicated", (? (u32 0))>;
  457. defm vmulltq_poly : DblVectorVectorArithmetic<"mull_poly_predicated", (? (u32 1))>;
  458. }
  459. let params = [s16, s32] in {
  460. def vqdmullbq: Intrinsic<DblVector, (args Vector:$a, Vector:$b),
  461. (IRInt<"vqdmull", [DblVector, Vector]> $a, $b, 0)>;
  462. def vqdmulltq: Intrinsic<DblVector, (args Vector:$a, Vector:$b),
  463. (IRInt<"vqdmull", [DblVector, Vector]> $a, $b, 1)>;
  464. defm vqdmullbq: DblVectorVectorArithmetic<"vqdmull_predicated", (? (u32 0)), 0>;
  465. defm vqdmulltq: DblVectorVectorArithmetic<"vqdmull_predicated", (? (u32 1)), 0>;
  466. let pnt = PNT_NType in {
  467. def vqdmullbq_n: Intrinsic<DblVector, (args Vector:$a, unpromoted<Scalar>:$b),
  468. (IRInt<"vqdmull", [DblVector, Vector]>
  469. $a, (splat $b), 0)>;
  470. def vqdmulltq_n: Intrinsic<DblVector, (args Vector:$a, unpromoted<Scalar>:$b),
  471. (IRInt<"vqdmull", [DblVector, Vector]>
  472. $a, (splat $b), 1)>;
  473. }
  474. defm vqdmullbq_n: DblVectorScalarArithmetic<"vqdmull_predicated",
  475. "vqdmullbq", (? (u32 0)), 0>;
  476. defm vqdmulltq_n: DblVectorScalarArithmetic<"vqdmull_predicated",
  477. "vqdmulltq", (? (u32 1)), 0>;
  478. }
  479. // Predicated intrinsics - Float types only
  480. let params = T.Float in {
  481. defm vminnmq : VectorVectorArithmetic<"min_predicated", (? (u32 0))>;
  482. defm vmaxnmq : VectorVectorArithmetic<"max_predicated", (? (u32 0))>;
  483. def vminnmaq_m: Intrinsic<Vector, (args Vector:$a, Vector:$b, Predicate:$pred),
  484. (IRInt<"vminnma_predicated", [Vector,Predicate]> $a, $b, $pred)>;
  485. def vmaxnmaq_m: Intrinsic<Vector, (args Vector:$a, Vector:$b, Predicate:$pred),
  486. (IRInt<"vmaxnma_predicated", [Vector,Predicate]> $a, $b, $pred)>;
  487. }
  488. multiclass Reduction<Type Accumulator, string basename, list<Type> basetypes,
  489. bit needSign = 0,
  490. dag postCG = (seq (id $ret)),
  491. dag accArg = (args Accumulator:$prev),
  492. dag preCG = (seq)> {
  493. defvar intArgsBase = (? $prev, $vec);
  494. defvar intArgsUnpred = !con(intArgsBase,
  495. !if(needSign, (? (unsignedflag Scalar)), (?)));
  496. defvar intArgsPred = !con(intArgsUnpred, (? $pred));
  497. defvar intUnpred = !setdagop(intArgsUnpred, IRInt<basename, basetypes>);
  498. defvar intPred = !setdagop(intArgsPred, IRInt<
  499. basename#"_predicated", !listconcat(basetypes, [Predicate])>);
  500. def "": Intrinsic<
  501. Accumulator, !con(accArg, (args Vector:$vec)),
  502. !con(preCG, (seq intUnpred:$ret), postCG)>;
  503. def _p: Intrinsic<
  504. Accumulator, !con(accArg, (args Vector:$vec, Predicate:$pred)),
  505. !con(preCG, (seq intPred:$ret), postCG)>;
  506. }
  507. let params = T.Int in {
  508. defm vminvq: Reduction<Scalar, "minv", [Vector], 1, (seq (Scalar $ret))>;
  509. defm vmaxvq: Reduction<Scalar, "maxv", [Vector], 1, (seq (Scalar $ret))>;
  510. }
  511. let params = T.Signed in {
  512. defm vminavq: Reduction<UScalar, "minav", [Vector], 0, (seq (UScalar $ret))>;
  513. defm vmaxavq: Reduction<UScalar, "maxav", [Vector], 0, (seq (UScalar $ret))>;
  514. }
  515. let params = T.Float in {
  516. defm vminnmvq: Reduction<Scalar, "minnmv", [Scalar, Vector]>;
  517. defm vmaxnmvq: Reduction<Scalar, "maxnmv", [Scalar, Vector]>;
  518. defm vminnmavq: Reduction<Scalar, "minnmav", [Scalar, Vector]>;
  519. defm vmaxnmavq: Reduction<Scalar, "maxnmav", [Scalar, Vector]>;
  520. }
  521. foreach half = [ "b", "t" ] in {
  522. defvar halfconst = !ne(half, "b");
  523. let params = [f32], pnt = PNT_None in {
  524. def vcvt#half#q_f16: Intrinsic<
  525. VecOf<f16>, (args VecOf<f16>:$inactive, Vector:$a),
  526. (IRInt<"vcvt_narrow"> $inactive, $a, halfconst)>;
  527. def vcvt#half#q_m_f16: Intrinsic<
  528. VecOf<f16>, (args VecOf<f16>:$inactive, Vector:$a, PredOf<f32>:$pred),
  529. (IRInt<"vcvt_narrow_predicated"> $inactive, $a, halfconst, $pred)>;
  530. } // params = [f32], pnt = PNT_None
  531. let params = [f16], pnt = PNT_None in {
  532. def vcvt#half#q_f32: Intrinsic<VecOf<f32>, (args Vector:$a),
  533. (IRInt<"vcvt_widen"> $a, halfconst)>;
  534. defm vcvt#half#q: IntrinsicMX<
  535. VecOf<f32>, (args Vector:$a, PredOf<f32>:$pred),
  536. (IRInt<"vcvt_widen_predicated"> $inactive, $a, halfconst, $pred),
  537. 1, "_f32">;
  538. } // params = [f16], pnt = PNT_None
  539. } // loop over half = "b", "t"
  540. multiclass float_int_conversions<Type FScalar, Type IScalar, IRBuilderBase ftoi, IRBuilderBase itof> {
  541. defvar FVector = VecOf<FScalar>;
  542. defvar IVector = VecOf<IScalar>;
  543. let params = [IScalar] in {
  544. let pnt = PNT_2Type in {
  545. def : Intrinsic<FVector, (args IVector:$a), (itof $a, FVector)>,
  546. NameOverride<"vcvtq_" # FScalar>;
  547. }
  548. defm vcvtq: IntrinsicMX<FVector, (args IVector:$a, Predicate:$pred),
  549. (IRInt<"vcvt_fp_int_predicated", [FVector, IVector, Predicate]>
  550. $a, (unsignedflag IScalar), $pred, $inactive),
  551. 1, "_" # FScalar, PNT_2Type, PNT_2Type>;
  552. }
  553. let params = [FScalar] in {
  554. let pnt = PNT_None in {
  555. def : Intrinsic<IVector, (args FVector:$a), (ftoi $a, IVector)>,
  556. NameOverride<"vcvtq_" # IScalar>;
  557. foreach suffix = ["a","n","p","m"] in
  558. def : Intrinsic<IVector, (args FVector:$a),
  559. (IRInt<"vcvt"#suffix, [IVector, FVector]>
  560. (unsignedflag IScalar), $a)>,
  561. NameOverride<"vcvt"#suffix#"q_" # IScalar>;
  562. }
  563. defm vcvtq: IntrinsicMX<IVector, (args FVector:$a, Predicate:$pred),
  564. (IRInt<"vcvt_fp_int_predicated", [IVector, FVector, Predicate]>
  565. $a, (unsignedflag IScalar), $pred, $inactive),
  566. 1, "_" # IScalar, PNT_2Type, PNT_None>;
  567. foreach suffix = ["a","n","p","m"] in {
  568. defm "vcvt"#suffix#"q" : IntrinsicMX<
  569. IVector, (args FVector:$a, Predicate:$pred),
  570. (IRInt<"vcvt"#suffix#"_predicated", [IVector, FVector, Predicate]>
  571. (unsignedflag IScalar), $inactive, $a, $pred),
  572. 1, "_" # IScalar, PNT_2Type, PNT_None>;
  573. }
  574. }
  575. }
  576. defm "" : float_int_conversions<f32, u32, fptoui, uitofp>;
  577. defm "" : float_int_conversions<f16, u16, fptoui, uitofp>;
  578. defm "" : float_int_conversions<f32, s32, fptosi, sitofp>;
  579. defm "" : float_int_conversions<f16, s16, fptosi, sitofp>;
  580. multiclass vmovl<bit top> {
  581. let params = [s8, u8, s16, u16] in {
  582. def "": Intrinsic<DblVector, (args Vector:$a),
  583. (extend (unzip $a, top), DblVector, (unsignedflag Scalar))>;
  584. defm "": IntrinsicMX<DblVector, (args Vector:$a, DblPredicate:$pred),
  585. (IRInt<"vmovl_predicated", [DblVector, Vector, DblPredicate]>
  586. $a, (unsignedflag Scalar), top, $pred, $inactive)>;
  587. }
  588. }
  589. defm vmovlbq: vmovl<0>;
  590. defm vmovltq: vmovl<1>;
  591. multiclass vmovn<bit top, dag wide_result> {
  592. let params = [s16, u16, s32, u32] in {
  593. def "": Intrinsic<HalfVector, (args HalfVector:$inactive, Vector:$a),
  594. (trunc wide_result, HalfVector)>;
  595. def _m: Intrinsic<HalfVector, (args HalfVector:$inactive, Vector:$a,
  596. Predicate:$pred),
  597. (IRInt<"vmovn_predicated", [HalfVector, Vector, Predicate]>
  598. $inactive, $a, top, $pred)>;
  599. }
  600. }
  601. defm vmovntq: vmovn<1, (zip (vreinterpret $inactive, Vector), $a)>;
  602. defm vmovnbq: vmovn<0,
  603. (zip $a, (vreinterpret (vrev $inactive, (bitsize Scalar)), Vector))>;
  604. multiclass vqmovn<bit top, Type RetScalar> {
  605. defvar RetVector = VecOf<RetScalar>;
  606. let params = [s16, u16, s32, u32] in {
  607. def : Intrinsic<
  608. RetVector, (args RetVector:$inactive, Vector:$a),
  609. (IRInt<"vqmovn", [RetVector, Vector]>
  610. $inactive, $a, (unsignedflag RetScalar), (unsignedflag Scalar), top)>,
  611. NameOverride<NAME>;
  612. def: Intrinsic<
  613. RetVector, (args RetVector:$inactive, Vector:$a, Predicate:$pred),
  614. (IRInt<"vqmovn_predicated", [RetVector, Vector, Predicate]>
  615. $inactive, $a, (unsignedflag RetScalar), (unsignedflag Scalar),
  616. top, $pred)>,
  617. NameOverride<NAME # "_m">;
  618. }
  619. }
  620. let params = [s16, s32, u16, u32] in {
  621. defm vqmovntq: vqmovn<1, HalfScalar>;
  622. defm vqmovnbq: vqmovn<0, HalfScalar>;
  623. }
  624. let params = [s16, s32] in {
  625. defm vqmovuntq: vqmovn<1, UHalfScalar>;
  626. defm vqmovunbq: vqmovn<0, UHalfScalar>;
  627. }
  628. multiclass vrnd<IRIntBase ir_int, string suffix> {
  629. let params = T.Float in {
  630. def "": Intrinsic<Vector, (args Vector:$a), (ir_int $a)>;
  631. defm "": IntrinsicMX<Vector, (args Vector:$a, Predicate:$pred),
  632. (IRInt<"vrint"#suffix#"_predicated", [Vector, Predicate]>
  633. $a, $pred, $inactive)>;
  634. }
  635. }
  636. defm vrndq: vrnd<IRIntBase<"trunc", [Vector]>, "z">;
  637. defm vrndmq: vrnd<IRIntBase<"floor", [Vector]>, "m">;
  638. defm vrndpq: vrnd<IRIntBase<"ceil", [Vector]>, "p">;
  639. defm vrndaq: vrnd<IRIntBase<"round", [Vector]>, "a">;
  640. defm vrndxq: vrnd<IRIntBase<"rint", [Vector]>, "x">;
  641. defm vrndnq: vrnd<IRInt<"vrintn", [Vector]>, "n">;
  642. multiclass compare_with_pred<string condname, dag arguments,
  643. dag cmp, string suffix> {
  644. // Make the predicated and unpredicated versions of a single comparison.
  645. def: Intrinsic<Predicate, arguments,
  646. (u16 (IRInt<"pred_v2i", [Predicate]> cmp))>,
  647. NameOverride<"vcmp" # condname # "q" # suffix>;
  648. def: Intrinsic<Predicate, !con(arguments, (args Predicate:$inpred)),
  649. (u16 (IRInt<"pred_v2i", [Predicate]> (and $inpred, cmp)))>,
  650. NameOverride<"vcmp" # condname # "q_m" # suffix>;
  651. }
  652. multiclass compare<string condname, IRBuilder cmpop> {
  653. // Make all four variants of a comparison: the vector/vector and
  654. // vector/scalar forms, each using compare_with_pred to make a
  655. // predicated and unpredicated version.
  656. defm: compare_with_pred<condname, (args Vector:$va, Vector:$vb),
  657. (cmpop $va, $vb), "">;
  658. let pnt = PNT_NType in {
  659. defm: compare_with_pred<condname, (args Vector:$va, unpromoted<Scalar>:$sb),
  660. (cmpop $va, (splat $sb)), "_n">;
  661. }
  662. }
  663. let params = T.Int in {
  664. defm: compare<"eq", icmp_eq>;
  665. defm: compare<"ne", icmp_ne>;
  666. }
  667. let params = T.Signed in {
  668. defm: compare<"gt", icmp_sgt>;
  669. defm: compare<"ge", icmp_sge>;
  670. defm: compare<"lt", icmp_slt>;
  671. defm: compare<"le", icmp_sle>;
  672. }
  673. let params = T.Unsigned in {
  674. defm: compare<"hi", icmp_ugt>;
  675. defm: compare<"cs", icmp_uge>;
  676. }
  677. let params = T.Float in {
  678. defm: compare<"eq", fcmp_eq>;
  679. defm: compare<"ne", fcmp_ne>;
  680. defm: compare<"gt", fcmp_gt>;
  681. defm: compare<"ge", fcmp_ge>;
  682. defm: compare<"lt", fcmp_lt>;
  683. defm: compare<"le", fcmp_le>;
  684. }
  685. let params = T.Signed in {
  686. def vminq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  687. (select (icmp_sle $a, $b), $a, $b)>;
  688. def vmaxq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  689. (select (icmp_sge $a, $b), $a, $b)>;
  690. def vminaq: Intrinsic<UVector, (args UVector:$a, Vector:$b),
  691. (seq (select (icmp_slt $b, (zeroinit Vector)),
  692. (sub (zeroinit Vector), $b), $b):$absb,
  693. (select (icmp_ule $a, $absb), $a, $absb))>;
  694. def vmaxaq: Intrinsic<UVector, (args UVector:$a, Vector:$b),
  695. (seq (select (icmp_slt $b, (zeroinit Vector)),
  696. (sub (zeroinit Vector), $b), $b):$absb,
  697. (select (icmp_uge $a, $absb), $a, $absb))>;
  698. }
  699. let params = T.Unsigned in {
  700. def vminqu: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  701. (select (icmp_ule $a, $b), $a, $b)>,
  702. NameOverride<"vminq">;
  703. def vmaxqu: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  704. (select (icmp_uge $a, $b), $a, $b)>,
  705. NameOverride<"vmaxq">;
  706. }
  707. let params = T.Float in {
  708. def vminnmq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  709. (IRIntBase<"minnum", [Vector]> $a, $b)>;
  710. def vmaxnmq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  711. (IRIntBase<"maxnum", [Vector]> $a, $b)>;
  712. def vminnmaq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  713. (IRIntBase<"minnum", [Vector]>
  714. (IRIntBase<"fabs", [Vector]> $a),
  715. (IRIntBase<"fabs", [Vector]> $b))>;
  716. def vmaxnmaq: Intrinsic<Vector, (args Vector:$a, Vector:$b),
  717. (IRIntBase<"maxnum", [Vector]>
  718. (IRIntBase<"fabs", [Vector]> $a),
  719. (IRIntBase<"fabs", [Vector]> $b))>;
  720. }
  721. def vpselq: Intrinsic<Vector, (args Vector:$t, Vector:$f, Predicate:$pred),
  722. (select $pred, $t, $f)> { let params = T.Usual; }
  723. def vpselq_64: Intrinsic<
  724. Vector, (args Vector:$t, Vector:$f, PredOf<u32>:$pred),
  725. (bitcast (select $pred, (bitcast $t, VecOf<u32>),
  726. (bitcast $f, VecOf<u32>)), Vector)>,
  727. NameOverride<"vpselq"> { let params = T.All64; }
  728. let params = [Void], pnt = PNT_None in {
  729. multiclass vctp<Type pred, string intname> {
  730. def "": Intrinsic<pred, (args u32:$val),
  731. (u16 (IRInt<"pred_v2i", [pred]> (IRIntBase<intname> $val)))>;
  732. def _m: Intrinsic<pred, (args u32:$val, pred:$inpred),
  733. (u16 (IRInt<"pred_v2i", [pred]> (and $inpred,
  734. (IRIntBase<intname> $val))))>;
  735. }
  736. defm vctp8q: vctp<PredOf<u8>, "arm_mve_vctp8">;
  737. defm vctp16q: vctp<PredOf<u16>, "arm_mve_vctp16">;
  738. defm vctp32q: vctp<PredOf<u32>, "arm_mve_vctp32">;
  739. defm vctp64q: vctp<PredOf<u64>, "arm_mve_vctp64">;
  740. def vpnot: Intrinsic<PredOf<u8>, (args unpromoted<PredOf<u8>>:$pred),
  741. (xor $pred, (u16 65535))>;
  742. }
  743. multiclass contiguous_load<string mnemonic, PrimitiveType memtype,
  744. list<Type> same_size, list<Type> wider> {
  745. // Intrinsics named with explicit memory and element sizes that match:
  746. // vldrbq_?8, vldrhq_?16, vldrwq_?32.
  747. let params = same_size, pnt = PNT_None in {
  748. def: Intrinsic<Vector, (args CPtr<CopyKind<same_size[0], Scalar>>:$addr),
  749. (load (address (CPtr<Vector> $addr), !srl(memtype.size,3)))>,
  750. NameOverride<mnemonic>;
  751. def: Intrinsic<Vector, (args CPtr<CopyKind<same_size[0], Scalar>>:$addr,
  752. Predicate:$pred),
  753. (IRIntBase<"masked_load", [Vector, CPtr<Vector>]>
  754. (CPtr<Vector> $addr), !srl(memtype.size,3),
  755. $pred, (zeroinit Vector))>,
  756. NameOverride<mnemonic # "_z">;
  757. }
  758. // Synonyms for the above, with the generic name vld1q that just means
  759. // 'memory and element sizes match', and allows convenient polymorphism with
  760. // the memory and element types covariant.
  761. let params = same_size in {
  762. def: Intrinsic<Vector, (args CPtr<CopyKind<same_size[0], Scalar>>:$addr),
  763. (load (address (CPtr<Vector> $addr), !srl(memtype.size,3)))>,
  764. NameOverride<"vld1q">;
  765. def: Intrinsic<Vector, (args CPtr<CopyKind<same_size[0], Scalar>>:$addr,
  766. Predicate:$pred),
  767. (IRIntBase<"masked_load", [Vector, CPtr<Vector>]>
  768. (CPtr<Vector> $addr), !srl(memtype.size,3),
  769. $pred, (zeroinit Vector))>,
  770. NameOverride<"vld1q_z">;
  771. }
  772. // Intrinsics with the memory size narrower than the vector element, so that
  773. // they load less than 128 bits of memory and sign/zero extend each loaded
  774. // value into a wider vector lane.
  775. let params = wider, pnt = PNT_None in {
  776. def: Intrinsic<Vector, (args CPtr<CopyKind<same_size[0], Scalar>>:$addr),
  777. (extend (load (address (CPtr<NarrowedVecOf<memtype,Vector>>
  778. $addr), !srl(memtype.size,3))),
  779. Vector, (unsignedflag Scalar))>,
  780. NameOverride<mnemonic>;
  781. def: Intrinsic<Vector, (args CPtr<CopyKind<same_size[0], Scalar>>:$addr,
  782. Predicate:$pred),
  783. (extend (IRIntBase<"masked_load",
  784. [NarrowedVecOf<memtype,Vector>,
  785. CPtr<NarrowedVecOf<memtype,Vector>>]>
  786. (CPtr<NarrowedVecOf<memtype,Vector>> $addr),
  787. !srl(memtype.size,3), $pred,
  788. (zeroinit NarrowedVecOf<memtype,Vector>)),
  789. Vector, (unsignedflag Scalar))>,
  790. NameOverride<mnemonic # "_z">;
  791. }
  792. }
  793. defm: contiguous_load<"vldrbq", u8, T.All8, !listconcat(T.Int16, T.Int32)>;
  794. defm: contiguous_load<"vldrhq", u16, T.All16, T.Int32>;
  795. defm: contiguous_load<"vldrwq", u32, T.All32, []>;
  796. multiclass contiguous_store<string mnemonic, PrimitiveType memtype,
  797. list<Type> same_size, list<Type> wider> {
  798. // Intrinsics named with explicit memory and element sizes that match:
  799. // vstrbq_?8, vstrhq_?16, vstrwq_?32.
  800. let params = same_size in {
  801. def: Intrinsic<Void, (args Ptr<CopyKind<same_size[0], Scalar>>:$addr,
  802. Vector:$value),
  803. (store $value,
  804. (address (Ptr<Vector> $addr), !srl(memtype.size,3)))>,
  805. NameOverride<mnemonic>;
  806. def: Intrinsic<Void, (args Ptr<CopyKind<same_size[0], Scalar>>:$addr,
  807. Vector:$value, Predicate:$pred),
  808. (IRIntBase<"masked_store", [Vector, Ptr<Vector>]>
  809. $value, (Ptr<Vector> $addr),
  810. !srl(memtype.size,3), $pred)>,
  811. NameOverride<mnemonic # "_p">;
  812. }
  813. // Synonyms for the above, with the generic name vst1q that just means
  814. // 'memory and element sizes match', and allows convenient polymorphism with
  815. // the memory and element types covariant.
  816. let params = same_size in {
  817. def: Intrinsic<Void, (args Ptr<CopyKind<same_size[0], Scalar>>:$addr,
  818. Vector:$value),
  819. (store $value,
  820. (address (Ptr<Vector> $addr), !srl(memtype.size,3)))>,
  821. NameOverride<"vst1q">;
  822. def: Intrinsic<Void, (args Ptr<CopyKind<same_size[0], Scalar>>:$addr,
  823. Vector:$value, Predicate:$pred),
  824. (IRIntBase<"masked_store", [Vector, Ptr<Vector>]>
  825. $value, (Ptr<Vector> $addr),
  826. !srl(memtype.size,3), $pred)>,
  827. NameOverride<"vst1q_p">;
  828. }
  829. // Intrinsics with the memory size narrower than the vector element, so that
  830. // they store less than 128 bits of memory, truncating each vector lane into
  831. // a narrower value to store.
  832. let params = wider in {
  833. def: Intrinsic<Void, (args Ptr<CopyKind<same_size[0], Scalar>>:$addr,
  834. Vector:$value),
  835. (store (trunc $value, NarrowedVecOf<memtype,Vector>),
  836. (address (Ptr<NarrowedVecOf<memtype,Vector>> $addr),
  837. !srl(memtype.size,3)))>,
  838. NameOverride<mnemonic>;
  839. def: Intrinsic<Void, (args Ptr<CopyKind<same_size[0], Scalar>>:$addr,
  840. Vector:$value, Predicate:$pred),
  841. (IRIntBase<"masked_store",
  842. [NarrowedVecOf<memtype,Vector>,
  843. Ptr<NarrowedVecOf<memtype,Vector>>]>
  844. (trunc $value, NarrowedVecOf<memtype,Vector>),
  845. (Ptr<NarrowedVecOf<memtype,Vector>> $addr),
  846. !srl(memtype.size,3), $pred)>,
  847. NameOverride<mnemonic # "_p">;
  848. }
  849. }
  850. defm: contiguous_store<"vstrbq", u8, T.All8, !listconcat(T.Int16, T.Int32)>;
  851. defm: contiguous_store<"vstrhq", u16, T.All16, T.Int32>;
  852. defm: contiguous_store<"vstrwq", u32, T.All32, []>;
  853. multiclass gather_base<list<Type> types, int size> {
  854. let params = types, pnt = PNT_None in {
  855. def _gather_base: Intrinsic<
  856. Vector, (args UVector:$addr, imm_mem7bit<size>:$offset),
  857. (IRInt<"vldr_gather_base", [Vector, UVector]> $addr, $offset)>;
  858. def _gather_base_z: Intrinsic<
  859. Vector, (args UVector:$addr, imm_mem7bit<size>:$offset, Predicate:$pred),
  860. (IRInt<"vldr_gather_base_predicated", [Vector, UVector, Predicate]>
  861. $addr, $offset, $pred)>;
  862. def _gather_base_wb: Intrinsic<
  863. Vector, (args Ptr<UVector>:$addr, imm_mem7bit<size>:$offset),
  864. (seq (IRInt<"vldr_gather_base_wb", [Vector, UVector]>
  865. (load $addr), $offset):$pair,
  866. (store (xval $pair, 1), $addr),
  867. (xval $pair, 0))>;
  868. def _gather_base_wb_z: Intrinsic<
  869. Vector, (args Ptr<UVector>:$addr, imm_mem7bit<size>:$offset,
  870. Predicate:$pred),
  871. (seq (IRInt<"vldr_gather_base_wb_predicated",
  872. [Vector, UVector, Predicate]>
  873. (load $addr), $offset, $pred):$pair,
  874. (store (xval $pair, 1), $addr),
  875. (xval $pair, 0))>;
  876. }
  877. }
  878. defm vldrwq: gather_base<T.All32, 4>;
  879. defm vldrdq: gather_base<T.All64, 8>;
  880. multiclass scatter_base<list<Type> types, int size> {
  881. let params = types in {
  882. def _scatter_base: Intrinsic<
  883. Void, (args UVector:$addr, imm_mem7bit<size>:$offset, Vector:$data),
  884. (IRInt<"vstr_scatter_base", [UVector, Vector]> $addr, $offset, $data)>;
  885. def _scatter_base_p: Intrinsic<
  886. Void, (args UVector:$addr, imm_mem7bit<size>:$offset, Vector:$data,
  887. Predicate:$pred),
  888. (IRInt<"vstr_scatter_base_predicated", [UVector, Vector, Predicate]>
  889. $addr, $offset, $data, $pred)>;
  890. def _scatter_base_wb: Intrinsic<
  891. Void, (args Ptr<UVector>:$addr, imm_mem7bit<size>:$offset, Vector:$data),
  892. (seq (IRInt<"vstr_scatter_base_wb", [UVector, Vector]>
  893. (load $addr), $offset, $data):$wbaddr,
  894. (store $wbaddr, $addr))>;
  895. def _scatter_base_wb_p: Intrinsic<
  896. Void, (args Ptr<UVector>:$addr, imm_mem7bit<size>:$offset,
  897. Vector:$data, Predicate:$pred),
  898. (seq (IRInt<"vstr_scatter_base_wb_predicated",
  899. [UVector, Vector, Predicate]>
  900. (load $addr), $offset, $data, $pred):$wbaddr,
  901. (store $wbaddr, $addr))>;
  902. }
  903. }
  904. defm vstrwq: scatter_base<T.All32, 4>;
  905. defm vstrdq: scatter_base<T.All64, 8>;
  906. multiclass gather_offset_unshifted<list<Type> types, PrimitiveType memtype> {
  907. let params = types in {
  908. def _gather_offset: Intrinsic<
  909. Vector, (args CPtr<CopyKind<memtype, Scalar>>:$base, UVector:$offsets),
  910. (IRInt<"vldr_gather_offset",
  911. [Vector, CPtr<CopyKind<memtype, Scalar>>, UVector]>
  912. $base, $offsets, memtype.size, 0, (unsignedflag Scalar))>;
  913. def _gather_offset_z: Intrinsic<
  914. Vector, (args CPtr<CopyKind<memtype, Scalar>>:$base, UVector:$offsets,
  915. Predicate:$pred),
  916. (IRInt<"vldr_gather_offset_predicated",
  917. [Vector, CPtr<CopyKind<memtype, Scalar>>, UVector, Predicate]>
  918. $base, $offsets, memtype.size, 0, (unsignedflag Scalar), $pred)>;
  919. }
  920. }
  921. multiclass gather_offset_shifted<list<Type> types, PrimitiveType memtype,
  922. int shift> {
  923. let params = types in {
  924. def _gather_shifted_offset: Intrinsic<
  925. Vector, (args CPtr<CopyKind<memtype, Scalar>>:$base, UVector:$offsets),
  926. (IRInt<"vldr_gather_offset",
  927. [Vector, CPtr<CopyKind<memtype, Scalar>>, UVector]>
  928. $base, $offsets, memtype.size, shift, (unsignedflag Scalar))>;
  929. def _gather_shifted_offset_z: Intrinsic<
  930. Vector, (args CPtr<CopyKind<memtype, Scalar>>:$base, UVector:$offsets,
  931. Predicate:$pred),
  932. (IRInt<"vldr_gather_offset_predicated",
  933. [Vector, CPtr<CopyKind<memtype, Scalar>>, UVector, Predicate]>
  934. $base, $offsets, memtype.size, shift, (unsignedflag Scalar), $pred)>;
  935. }
  936. }
  937. multiclass gather_offset_both<list<Type> types, PrimitiveType memtype,
  938. int shift> {
  939. defm "": gather_offset_unshifted<types, memtype>;
  940. defm "": gather_offset_shifted<types, memtype, shift>;
  941. }
  942. defm vldrbq: gather_offset_unshifted<!listconcat(T.All8, T.Int16, T.Int32), u8>;
  943. defm vldrhq: gather_offset_both<!listconcat(T.All16, T.Int32), u16, 1>;
  944. defm vldrwq: gather_offset_both<T.All32, u32, 2>;
  945. defm vldrdq: gather_offset_both<T.Int64, u64, 3>;
  946. multiclass scatter_offset_unshifted<list<Type> types, PrimitiveType memtype> {
  947. let params = types in {
  948. def _scatter_offset: Intrinsic<
  949. Void, (args Ptr<CopyKind<memtype, Scalar>>:$base, UVector:$offsets,
  950. Vector:$data),
  951. (IRInt<"vstr_scatter_offset",
  952. [Ptr<CopyKind<memtype, Scalar>>, UVector, Vector]>
  953. $base, $offsets, $data, memtype.size, 0)>;
  954. def _scatter_offset_p: Intrinsic<
  955. Void, (args Ptr<CopyKind<memtype, Scalar>>:$base, UVector:$offsets,
  956. Vector:$data, Predicate:$pred),
  957. (IRInt<"vstr_scatter_offset_predicated",
  958. [Ptr<CopyKind<memtype, Scalar>>, UVector, Vector, Predicate]>
  959. $base, $offsets, $data, memtype.size, 0, $pred)>;
  960. }
  961. }
  962. multiclass scatter_offset_shifted<list<Type> types, PrimitiveType memtype,
  963. int shift> {
  964. let params = types in {
  965. def _scatter_shifted_offset: Intrinsic<
  966. Void, (args Ptr<CopyKind<memtype, Scalar>>:$base, UVector:$offsets,
  967. Vector:$data),
  968. (IRInt<"vstr_scatter_offset",
  969. [Ptr<CopyKind<memtype, Scalar>>, UVector, Vector]>
  970. $base, $offsets, $data, memtype.size, shift)>;
  971. def _scatter_shifted_offset_p: Intrinsic<
  972. Void, (args Ptr<CopyKind<memtype, Scalar>>:$base, UVector:$offsets,
  973. Vector:$data, Predicate:$pred),
  974. (IRInt<"vstr_scatter_offset_predicated",
  975. [Ptr<CopyKind<memtype, Scalar>>, UVector, Vector, Predicate]>
  976. $base, $offsets, $data, memtype.size, shift, $pred)>;
  977. }
  978. }
  979. multiclass scatter_offset_both<list<Type> types, PrimitiveType memtype,
  980. int shift> {
  981. defm "": scatter_offset_unshifted<types, memtype>;
  982. defm "": scatter_offset_shifted<types, memtype, shift>;
  983. }
  984. defm vstrbq: scatter_offset_unshifted<!listconcat(T.All8,T.Int16,T.Int32), u8>;
  985. defm vstrhq: scatter_offset_both<!listconcat(T.All16, T.Int32), u16, 1>;
  986. defm vstrwq: scatter_offset_both<T.All32, u32, 2>;
  987. defm vstrdq: scatter_offset_both<T.Int64, u64, 3>;
  988. let params = T.Int in {
  989. def vshlq_n: Intrinsic<Vector, (args Vector:$v, imm_0toNm1:$sh),
  990. (shl $v, (splat (Scalar $sh)))>;
  991. defm vshlq: IntrinsicMX<Vector, (args Vector:$v, imm_0toNm1:$sh,
  992. Predicate:$pred),
  993. (IRInt<"shl_imm_predicated", [Vector, Predicate]>
  994. $v, $sh, $pred, $inactive), 1, "_n">;
  995. let pnt = PNT_NType in {
  996. def vshrq_n: Intrinsic<Vector, (args Vector:$v, imm_1toN:$sh),
  997. (immshr $v, $sh, (unsignedflag Scalar))>;
  998. defm vshrq: IntrinsicMX<Vector, (args Vector:$v, imm_1toN:$sh,
  999. Predicate:$pred),
  1000. (IRInt<"shr_imm_predicated", [Vector, Predicate]>
  1001. $v, $sh, (unsignedflag Scalar), $pred, $inactive), 1, "_n">;
  1002. }
  1003. }
  1004. let params = T.Int in {
  1005. def vqshlq_n: Intrinsic<Vector, (args Vector:$v, imm_0toNm1:$sh),
  1006. (IRInt<"vqshl_imm", [Vector]> $v, $sh, (unsignedflag Scalar))>;
  1007. def vqshlq_m_n: Intrinsic<Vector, (args Vector:$inactive, Vector:$v,
  1008. imm_0toNm1:$sh, Predicate:$pred),
  1009. (IRInt<"vqshl_imm_predicated", [Vector, Predicate]>
  1010. $v, $sh, (unsignedflag Scalar), $pred, $inactive)>;
  1011. let pnt = PNT_NType in {
  1012. def vrshrq_n: Intrinsic<Vector, (args Vector:$v, imm_1toN:$sh),
  1013. (IRInt<"vrshr_imm", [Vector]> $v, $sh, (unsignedflag Scalar))>;
  1014. defm vrshrq: IntrinsicMX<Vector, (args Vector:$v, imm_1toN:$sh,
  1015. Predicate:$pred),
  1016. (IRInt<"vrshr_imm_predicated", [Vector, Predicate]>
  1017. $v, $sh, (unsignedflag Scalar), $pred, $inactive), 1, "_n">;
  1018. }
  1019. }
  1020. let params = T.Signed, pnt = PNT_NType in {
  1021. def vqshluq_n: Intrinsic<UVector, (args Vector:$v, imm_0toNm1:$sh),
  1022. (IRInt<"vqshlu_imm", [Vector]> $v, $sh)>;
  1023. def vqshluq_m_n: Intrinsic<UVector, (args UVector:$inactive, Vector:$v,
  1024. imm_0toNm1:$sh, Predicate:$pred),
  1025. (IRInt<"vqshlu_imm_predicated", [Vector, Predicate]>
  1026. $v, $sh, $pred, $inactive)>;
  1027. }
  1028. multiclass vshll_imm<int top> {
  1029. let params = !listconcat(T.Int8, T.Int16), pnt = PNT_NType in {
  1030. def _n: Intrinsic<DblVector, (args Vector:$v, imm_1toN:$sh),
  1031. (IRInt<"vshll_imm", [DblVector, Vector]>
  1032. $v, $sh, (unsignedflag Scalar), top)>;
  1033. defm "": IntrinsicMX<DblVector, (args Vector:$v, imm_1toN:$sh,
  1034. DblPredicate:$pred),
  1035. (IRInt<"vshll_imm_predicated", [DblVector, Vector, DblPredicate]>
  1036. $v, $sh, (unsignedflag Scalar), top, $pred, $inactive), 1, "_n">;
  1037. }
  1038. }
  1039. defm vshllbq : vshll_imm<0>;
  1040. defm vshlltq : vshll_imm<1>;
  1041. multiclass DyadicImmShift<Type outtype, Immediate imm, string intname = NAME,
  1042. dag extraargs = (?)> {
  1043. defvar intparams = !if(!eq(outtype, Vector), [Vector], [outtype, Vector]);
  1044. def q_n: Intrinsic<
  1045. outtype, (args outtype:$a, Vector:$b, imm:$sh),
  1046. !con((IRInt<intname, intparams> $a, $b, $sh), extraargs)>;
  1047. def q_m_n: Intrinsic<
  1048. outtype, (args outtype:$a, Vector:$b, imm:$sh, Predicate:$pred),
  1049. !con((IRInt<intname # "_predicated", intparams # [Predicate]>
  1050. $a, $b, $sh), extraargs, (? $pred))>;
  1051. }
  1052. multiclass VSHRN<Type outtype, Immediate imm, dag extraargs> {
  1053. defm b: DyadicImmShift<outtype, imm, "vshrn", !con(extraargs, (? 0))>;
  1054. defm t: DyadicImmShift<outtype, imm, "vshrn", !con(extraargs, (? 1))>;
  1055. }
  1056. let params = [s16, s32, u16, u32], pnt = PNT_NType in {
  1057. defvar U = (unsignedflag Scalar);
  1058. defm vshrn : VSHRN<HalfVector, imm_1toHalfN, (? 0,0,U,U)>;
  1059. defm vqshrn : VSHRN<HalfVector, imm_1toHalfN, (? 1,0,U,U)>;
  1060. defm vrshrn : VSHRN<HalfVector, imm_1toHalfN, (? 0,1,U,U)>;
  1061. defm vqrshrn : VSHRN<HalfVector, imm_1toHalfN, (? 1,1,U,U)>;
  1062. }
  1063. let params = [s16, s32], pnt = PNT_NType in {
  1064. defm vqshrun : VSHRN<UHalfVector, imm_1toHalfN, (? 1,0,1,0)>;
  1065. defm vqrshrun : VSHRN<UHalfVector, imm_1toHalfN, (? 1,1,1,0)>;
  1066. }
  1067. let params = T.Int, pnt = PNT_NType in {
  1068. defm vsli : DyadicImmShift<Vector, imm_0toNm1>;
  1069. defm vsri : DyadicImmShift<Vector, imm_1toN>;
  1070. }
  1071. multiclass VSHL_non_imm<string scalarSuffix, int q, int r,
  1072. PolymorphicNameType pnt_scalar_unpred = PNT_Type> {
  1073. let pnt = pnt_scalar_unpred in {
  1074. def scalarSuffix: Intrinsic<
  1075. Vector, (args Vector:$in, s32:$sh),
  1076. (IRInt<"vshl_scalar", [Vector]> $in, $sh,
  1077. q, r, (unsignedflag Scalar))>;
  1078. }
  1079. def "_m" # scalarSuffix: Intrinsic<
  1080. Vector, (args Vector:$in, s32:$sh, Predicate:$pred),
  1081. (IRInt<"vshl_scalar_predicated", [Vector, Predicate]> $in, $sh,
  1082. q, r, (unsignedflag Scalar), $pred)>;
  1083. def "": Intrinsic<
  1084. Vector, (args Vector:$in, SVector:$sh),
  1085. (IRInt<"vshl_vector", [Vector, SVector]> $in, $sh,
  1086. q, r, (unsignedflag Scalar))>;
  1087. defm "": IntrinsicMX<
  1088. Vector, (args Vector:$in, SVector:$sh, Predicate:$pred),
  1089. (IRInt<"vshl_vector_predicated", [Vector, SVector, Predicate]> $in, $sh,
  1090. q, r, (unsignedflag Scalar), $pred, $inactive),
  1091. // The saturating shift intrinsics don't have an x variant, so we
  1092. // set wantXVariant to 1 iff q == 0
  1093. !eq(q, 0)>;
  1094. }
  1095. let params = T.Int in {
  1096. defm vshlq : VSHL_non_imm<"_r", 0, 0>;
  1097. defm vqshlq : VSHL_non_imm<"_r", 1, 0>;
  1098. defm vrshlq : VSHL_non_imm<"_n", 0, 1, PNT_NType>;
  1099. defm vqrshlq : VSHL_non_imm<"_n", 1, 1, PNT_NType>;
  1100. }
  1101. // Base class for the scalar shift intrinsics.
  1102. class ScalarShift<Type argtype, dag shiftCountArg, dag shiftCodeGen>:
  1103. Intrinsic<argtype, !con((args argtype:$value), shiftCountArg), shiftCodeGen> {
  1104. let params = [Void];
  1105. let pnt = PNT_None;
  1106. }
  1107. // Subclass that includes the machinery to take a 64-bit input apart
  1108. // into halves, retrieve the two halves of a shifted output as a pair,
  1109. // and glue the pieces of the pair back into an i64 for output.
  1110. class LongScalarShift<Type argtype, dag shiftCountArg, dag shiftCodeGen>:
  1111. ScalarShift<argtype, shiftCountArg,
  1112. (seq (u32 (lshr $value, (argtype 32))):$hi,
  1113. (u32 $value):$lo,
  1114. shiftCodeGen:$pair,
  1115. (or (shl (u64 (xval $pair, 1)), (u64 32)),
  1116. (u64 (xval $pair, 0))))>;
  1117. // The family of saturating/rounding scalar shifts that take an
  1118. // immediate shift count. They come in matched 32- and 64-bit pairs.
  1119. multiclass ScalarSaturatingShiftImm<Type arg32, Type arg64> {
  1120. def "": ScalarShift<arg32, (args imm_1to32:$sh),
  1121. (IRInt<NAME> $value, $sh)>;
  1122. def l: LongScalarShift<arg64, (args imm_1to32:$sh),
  1123. (IRInt<NAME # "l"> $lo, $hi, $sh)>;
  1124. }
  1125. defm uqshl: ScalarSaturatingShiftImm<u32, u64>;
  1126. defm urshr: ScalarSaturatingShiftImm<u32, u64>;
  1127. defm sqshl: ScalarSaturatingShiftImm<s32, s64>;
  1128. defm srshr: ScalarSaturatingShiftImm<s32, s64>;
  1129. // The family of saturating/rounding scalar shifts that take a
  1130. // register shift count. They also have 32- and 64-bit forms, but the
  1131. // 64-bit form also has a version that saturates to 48 bits, so the IR
  1132. // intrinsic takes an extra saturation-type operand.
  1133. multiclass ScalarSaturatingShiftReg<Type arg32, Type arg64> {
  1134. def "": ScalarShift<arg32, (args s32:$sh),
  1135. (IRInt<NAME> $value, $sh)>;
  1136. def l: LongScalarShift<arg64, (args s32:$sh),
  1137. (IRInt<NAME # "l"> $lo, $hi, $sh, 64)>;
  1138. def l_sat48: LongScalarShift<arg64, (args s32:$sh),
  1139. (IRInt<NAME # "l"> $lo, $hi, $sh, 48)>;
  1140. }
  1141. defm uqrshl: ScalarSaturatingShiftReg<u32, u64>;
  1142. defm sqrshr: ScalarSaturatingShiftReg<s32, s64>;
  1143. // The intrinsics for LSLL and ASRL come in 64-bit versions only, with
  1144. // no saturation count.
  1145. def lsll: LongScalarShift<u64, (args s32:$sh), (IRInt<"lsll"> $lo, $hi, $sh)>;
  1146. def asrl: LongScalarShift<s64, (args s32:$sh), (IRInt<"asrl"> $lo, $hi, $sh)>;
  1147. multiclass vadcsbc {
  1148. def q: Intrinsic<Vector, (args Vector:$a, Vector:$b, Ptr<uint>:$carry),
  1149. (seq (IRInt<NAME, [Vector]> $a, $b, (shl (load $carry), 29)):$pair,
  1150. (store (and 1, (lshr (xval $pair, 1), 29)), $carry),
  1151. (xval $pair, 0))>;
  1152. def iq: Intrinsic<Vector, (args Vector:$a, Vector:$b, Ptr<uint>:$carry),
  1153. (seq (IRInt<NAME, [Vector]> $a, $b, 0):$pair,
  1154. (store (and 1, (lshr (xval $pair, 1), 29)), $carry),
  1155. (xval $pair, 0))>;
  1156. def q_m: Intrinsic<Vector, (args Vector:$inactive, Vector:$a, Vector:$b,
  1157. Ptr<uint>:$carry, Predicate:$pred),
  1158. (seq (IRInt<NAME # "_predicated", [Vector, Predicate]> $inactive, $a, $b,
  1159. (shl (load $carry), 29), $pred):$pair,
  1160. (store (and 1, (lshr (xval $pair, 1), 29)), $carry),
  1161. (xval $pair, 0))>;
  1162. def iq_m: Intrinsic<Vector, (args Vector:$inactive, Vector:$a, Vector:$b,
  1163. Ptr<uint>:$carry, Predicate:$pred),
  1164. (seq (IRInt<NAME # "_predicated", [Vector, Predicate]> $inactive, $a, $b,
  1165. 0, $pred):$pair,
  1166. (store (and 1, (lshr (xval $pair, 1), 29)), $carry),
  1167. (xval $pair, 0))>;
  1168. }
  1169. let params = T.Int32 in {
  1170. defm vadc: vadcsbc;
  1171. defm vsbc: vadcsbc;
  1172. }
  1173. let params = T.Int in {
  1174. def vshlcq: Intrinsic<
  1175. Vector, (args Vector:$v, Ptr<u32>:$ps, imm_1to32:$imm),
  1176. (seq (load $ps):$s,
  1177. (IRInt<"vshlc", [Vector]> $v, $s, $imm):$pair,
  1178. (store (xval $pair, 0), $ps),
  1179. (xval $pair, 1))>;
  1180. def vshlcq_m: Intrinsic<
  1181. Vector, (args Vector:$v, Ptr<u32>:$ps, imm_1to32:$imm, Predicate:$pred),
  1182. (seq (load $ps):$s,
  1183. (IRInt<"vshlc_predicated", [Vector, Predicate]>
  1184. $v, $s, $imm, $pred):$pair,
  1185. (store (xval $pair, 0), $ps),
  1186. (xval $pair, 1))>;
  1187. }
  1188. multiclass VectorComplexAddPred<dag not_halving, dag angle> {
  1189. def "" : Intrinsic<Vector, (args Vector:$a, Vector:$b),
  1190. (IRInt<"vcaddq", [Vector]> not_halving, angle, $a, $b)>;
  1191. defm "" : IntrinsicMX<Vector, (args Vector:$a, Vector:$b, Predicate:$pred),
  1192. (IRInt<"vcaddq_predicated", [Vector, Predicate]>
  1193. not_halving, angle, $inactive, $a, $b, $pred)>;
  1194. }
  1195. multiclass VectorComplexMulPred<dag angle> {
  1196. def "" : Intrinsic<Vector, (args Vector:$a, Vector:$b),
  1197. (IRInt<"vcmulq", [Vector]> angle, $a, $b)>;
  1198. defm "" : IntrinsicMX<Vector, (args Vector:$a, Vector:$b, Predicate:$pred),
  1199. (IRInt<"vcmulq_predicated", [Vector, Predicate]> angle, $inactive, $a, $b,
  1200. $pred)>;
  1201. }
  1202. multiclass VectorComplexMLAPred<dag angle> {
  1203. def "" : Intrinsic<Vector, (args Vector:$a, Vector:$b, Vector:$c),
  1204. (IRInt<"vcmlaq", [Vector]> angle, $a, $b, $c)>;
  1205. def _m : Intrinsic<Vector, (args Vector:$a, Vector:$b, Vector:$c,
  1206. Predicate:$pred),
  1207. (IRInt<"vcmlaq_predicated", [Vector, Predicate]> angle, $a, $b, $c, $pred)>;
  1208. }
  1209. multiclass VectorComplexAddAngle<dag not_halving> {
  1210. defm _rot90 : VectorComplexAddPred<not_halving, (u32 0)>;
  1211. defm _rot270 : VectorComplexAddPred<not_halving, (u32 1)>;
  1212. }
  1213. multiclass VectorComplexMulAngle {
  1214. defm "" : VectorComplexMulPred<(u32 0)>;
  1215. defm _rot90 : VectorComplexMulPred<(u32 1)>;
  1216. defm _rot180 : VectorComplexMulPred<(u32 2)>;
  1217. defm _rot270 : VectorComplexMulPred<(u32 3)>;
  1218. }
  1219. multiclass VectorComplexMLAAngle {
  1220. defm "" : VectorComplexMLAPred<(u32 0)>;
  1221. defm _rot90 : VectorComplexMLAPred<(u32 1)>;
  1222. defm _rot180 : VectorComplexMLAPred<(u32 2)>;
  1223. defm _rot270 : VectorComplexMLAPred<(u32 3)>;
  1224. }
  1225. let params = T.Usual in
  1226. defm vcaddq : VectorComplexAddAngle<(u32 1)>;
  1227. let params = T.Signed in
  1228. defm vhcaddq : VectorComplexAddAngle<(u32 0)>;
  1229. let params = T.Float in {
  1230. defm vcmulq : VectorComplexMulAngle;
  1231. defm vcmlaq : VectorComplexMLAAngle;
  1232. }
  1233. multiclass MVEBinaryVectorHoriz32<dag subtract, dag exchange, string xsuffix> {
  1234. def xsuffix#"q"
  1235. : Intrinsic<Scalar32, (args Vector:$a, Vector:$b),
  1236. (IRInt<"vmldava", [Vector]>
  1237. (unsignedflag Scalar), subtract, exchange,
  1238. (zeroinit Scalar32), $a, $b)>;
  1239. def xsuffix#"q_p"
  1240. : Intrinsic<Scalar32, (args Vector:$a, Vector:$b, Predicate:$pred),
  1241. (IRInt<"vmldava_predicated", [Vector, Predicate]>
  1242. (unsignedflag Scalar), subtract, exchange,
  1243. (zeroinit Scalar32), $a, $b, $pred)>;
  1244. def "a"#xsuffix#"q"
  1245. : Intrinsic<Scalar32, (args Scalar32:$a, Vector:$b, Vector:$c),
  1246. (IRInt<"vmldava", [Vector]>
  1247. (unsignedflag Scalar), subtract, exchange,
  1248. $a, $b, $c)>;
  1249. def "a"#xsuffix#"q_p"
  1250. : Intrinsic<Scalar32, (args Scalar32:$a, Vector:$b, Vector:$c,
  1251. Predicate:$pred),
  1252. (IRInt<"vmldava_predicated", [Vector, Predicate]>
  1253. (unsignedflag Scalar), subtract, exchange,
  1254. $a, $b, $c, $pred)>;
  1255. }
  1256. class IntrSplit64<Type resty, dag args, dag codegen>
  1257. : Intrinsic<resty, args,
  1258. (seq (u32 (lshr $a, (u64 32))):$hi,
  1259. (u32 $a):$lo,
  1260. codegen:$pair,
  1261. (or (shl (u64 (xval $pair, 1)), (u64 32)),
  1262. (u64 (xval $pair, 0))))>;
  1263. class IntrSplit64ZeroInit<Type resty, dag args, dag codegen>
  1264. : Intrinsic<resty, args,
  1265. (seq (zeroinit u32):$hi,
  1266. (zeroinit u32):$lo,
  1267. codegen:$pair,
  1268. (or (shl (u64 (xval $pair, 1)), (u64 32)),
  1269. (u64 (xval $pair, 0))))>;
  1270. multiclass MVEBinaryVectorHoriz64Base<dag subtract, dag exchange,
  1271. string xsuffix, string irname> {
  1272. def xsuffix#"q"
  1273. : IntrSplit64ZeroInit<Scalar64, (args Vector:$a, Vector:$b),
  1274. (IRInt<irname, [Vector]>
  1275. (unsignedflag Scalar), subtract, exchange,
  1276. $lo, $hi, $a, $b)>;
  1277. def xsuffix#"q_p"
  1278. : IntrSplit64ZeroInit<Scalar64, (args Vector:$a, Vector:$b,
  1279. Predicate:$pred),
  1280. (IRInt<irname#"_predicated", [Vector, Predicate]>
  1281. (unsignedflag Scalar), subtract, exchange,
  1282. $lo, $hi, $a, $b, $pred)>;
  1283. def "a"#xsuffix#"q"
  1284. : IntrSplit64<Scalar64, (args Scalar64:$a, Vector:$b, Vector:$c),
  1285. (IRInt<irname, [Vector]>
  1286. (unsignedflag Scalar), subtract, exchange,
  1287. $lo, $hi, $b, $c)>;
  1288. def "a"#xsuffix#"q_p"
  1289. : IntrSplit64<Scalar64, (args Scalar64:$a, Vector:$b, Vector:$c,
  1290. Predicate:$pred),
  1291. (IRInt<irname#"_predicated", [Vector, Predicate]>
  1292. (unsignedflag Scalar), subtract, exchange,
  1293. $lo, $hi, $b, $c, $pred)>;
  1294. }
  1295. multiclass MVEBinaryVectorHoriz64<dag subtract, dag exchange, string xsuffix> {
  1296. defm "" : MVEBinaryVectorHoriz64Base<subtract, exchange, xsuffix, "vmlldava">;
  1297. }
  1298. multiclass MVEBinaryVectorHoriz64R<dag subtract, dag exchange, string xsuffix> {
  1299. defm "" : MVEBinaryVectorHoriz64Base<subtract, exchange, xsuffix,
  1300. "vrmlldavha">;
  1301. }
  1302. multiclass VADDV<bit acc, bit pred, string intbase, Type Scalar> {
  1303. defvar accArg = !if(acc, (args Scalar:$acc), (args));
  1304. defvar predArg = !if(pred, (args Predicate:$pred), (args));
  1305. defvar intrinsic = !if(pred,
  1306. IRInt<intbase # "_predicated", [Vector, Predicate]>,
  1307. IRInt<intbase, [Vector]>);
  1308. defvar intCG = !con((intrinsic $v, (unsignedflag Scalar)),
  1309. !if(pred, (? $pred), (?)));
  1310. defvar accCG = !if(acc, (add intCG, $acc), intCG);
  1311. def "": Intrinsic<Scalar, !con(accArg, (args Vector:$v), predArg), accCG>;
  1312. }
  1313. let params = T.Int in {
  1314. defm vaddvq : VADDV<0, 0, "addv", Scalar32>;
  1315. defm vaddvaq : VADDV<1, 0, "addv", Scalar32>;
  1316. defm vaddvq_p : VADDV<0, 1, "addv", Scalar32>;
  1317. defm vaddvaq_p : VADDV<1, 1, "addv", Scalar32>;
  1318. }
  1319. let params = [s32, u32] in {
  1320. defm vaddlvq : VADDV<0, 0, "addlv", Scalar64>;
  1321. defm vaddlvaq : VADDV<1, 0, "addlv", Scalar64>;
  1322. defm vaddlvq_p : VADDV<0, 1, "addlv", Scalar64>;
  1323. defm vaddlvaq_p : VADDV<1, 1, "addlv", Scalar64>;
  1324. }
  1325. let params = T.Int in {
  1326. def vabavq : Intrinsic<u32, (args u32:$a, Vector:$b, Vector:$c),
  1327. (IRInt<"vabav", [Vector]> (unsignedflag Scalar), $a, $b, $c)>;
  1328. def vabavq_p : Intrinsic<u32, (args u32:$a, Vector:$b, Vector:$c,
  1329. Predicate:$pred),
  1330. (IRInt<"vabav_predicated", [Vector, Predicate]>
  1331. (unsignedflag Scalar), $a, $b, $c, $pred)>;
  1332. defm vmladav : MVEBinaryVectorHoriz32<V.False, V.False, "">;
  1333. }
  1334. let params = T.Signed in {
  1335. defm vmladav : MVEBinaryVectorHoriz32<V.False, V.True, "x">;
  1336. defm vmlsdav : MVEBinaryVectorHoriz32<V.True, V.False, "">;
  1337. defm vmlsdav : MVEBinaryVectorHoriz32<V.True, V.True, "x">;
  1338. }
  1339. let params = [u16, s16, u32, s32] in
  1340. defm vmlaldav : MVEBinaryVectorHoriz64<V.False, V.False, "">;
  1341. let params = [s16, s32] in {
  1342. defm vmlaldav : MVEBinaryVectorHoriz64<V.False, V.True, "x">;
  1343. defm vmlsldav : MVEBinaryVectorHoriz64<V.True, V.False, "">;
  1344. defm vmlsldav : MVEBinaryVectorHoriz64<V.True, V.True, "x">;
  1345. }
  1346. let params = T.Int32 in
  1347. defm vrmlaldavh : MVEBinaryVectorHoriz64R<V.False, V.False, "">;
  1348. let params = [s32] in {
  1349. defm vrmlaldavh : MVEBinaryVectorHoriz64R<V.False, V.True, "x">;
  1350. defm vrmlsldavh : MVEBinaryVectorHoriz64R<V.True, V.False, "">;
  1351. defm vrmlsldavh : MVEBinaryVectorHoriz64R<V.True, V.True, "x">;
  1352. }
  1353. multiclass vrev_predicated<int revsize> {
  1354. defm "" : IntrinsicMX<Vector, (args Vector:$a, Predicate:$pred),
  1355. (IRInt<"vrev_predicated", [Vector, Predicate]>
  1356. $a, revsize, $pred, $inactive)>;
  1357. }
  1358. let params = T.All8 in {
  1359. def vrev16q : Intrinsic<Vector, (args Vector:$a), (vrev $a, 16)>;
  1360. defm vrev16q: vrev_predicated<16>;
  1361. }
  1362. let params = !listconcat(T.All8, T.All16) in {
  1363. def vrev32q : Intrinsic<Vector, (args Vector:$a), (vrev $a, 32)>;
  1364. defm vrev32q: vrev_predicated<32>;
  1365. }
  1366. let params = T.Usual in {
  1367. def vrev64q : Intrinsic<Vector, (args Vector:$a), (vrev $a, 64)>;
  1368. defm vrev64q: vrev_predicated<64>;
  1369. }
  1370. foreach desttype = T.All in {
  1371. // We want a vreinterpretq between every pair of supported vector types
  1372. // _except_ that there shouldn't be one from a type to itself.
  1373. let params = !filter(srctype, T.All, !ne(srctype, desttype)) in {
  1374. def "vreinterpretq_" # desttype: Intrinsic<
  1375. VecOf<desttype>, (args Vector:$x), (vreinterpret $x, VecOf<desttype>)>;
  1376. }
  1377. }
  1378. let params = T.All in {
  1379. let pnt = PNT_None in {
  1380. def vcreateq: Intrinsic<Vector, (args u64:$a, u64:$b),
  1381. (vreinterpret (ielt_const (ielt_const (undef VecOf<u64>), $a, 0),
  1382. $b, 1), Vector)>;
  1383. def vuninitializedq: Intrinsic<Vector, (args), (undef Vector)>;
  1384. }
  1385. // This is the polymorphic form of vuninitializedq, which takes no type
  1386. // suffix, but takes an _unevaluated_ vector parameter and returns an
  1387. // uninitialized vector of the same vector type.
  1388. //
  1389. // This intrinsic has no _non_-polymorphic form exposed to the user. But each
  1390. // separately typed version of it still has to have its own clang builtin id,
  1391. // which can't be called vuninitializedq_u32 or similar because that would
  1392. // collide with the explicit nullary versions above. So I'm calling them
  1393. // vuninitializedq_polymorphic_u32 (and so on) for builtin id purposes; that
  1394. // full name never appears in the header file due to the polymorphicOnly
  1395. // flag, and the _polymorphic suffix is omitted from the shortened name by
  1396. // the custom PolymorphicNameType here.
  1397. let polymorphicOnly = 1, nonEvaluating = 1,
  1398. pnt = PolymorphicNameType<1, "polymorphic"> in {
  1399. def vuninitializedq_polymorphic: Intrinsic<
  1400. Vector, (args Vector), (undef Vector)>;
  1401. }
  1402. def vgetq_lane: Intrinsic<Scalar, (args Vector:$v, imm_lane:$lane),
  1403. (xelt_var $v, $lane)>;
  1404. def vsetq_lane: Intrinsic<Vector, (args unpromoted<Scalar>:$e, Vector:$v, imm_lane:$lane),
  1405. (ielt_var $v, $e, $lane)>;
  1406. }
  1407. foreach desttype = !listconcat(T.Int16, T.Int32, T.Float) in {
  1408. defvar is_dest_float = !eq(desttype.kind, "f");
  1409. defvar is_dest_unsigned = !eq(desttype.kind, "u");
  1410. // First immediate operand of the LLVM intrinsic
  1411. defvar unsigned_flag = !cond(is_dest_float: (unsignedflag Scalar),
  1412. is_dest_unsigned: V.True,
  1413. true: V.False);
  1414. // For float->int conversions _n and _x_n intrinsics are not polymorphic
  1415. // because the signedness of the destination type cannot be inferred.
  1416. defvar pnt_nx = !if(is_dest_float, PNT_2Type, PNT_None);
  1417. let params = !if(is_dest_float,
  1418. !if(!eq(desttype.size, 16), T.Int16, T.Int32),
  1419. !if(!eq(desttype.size, 16), [f16], [f32])) in {
  1420. let pnt = pnt_nx in
  1421. def "vcvtq_n_"#desttype : Intrinsic<VecOf<desttype>,
  1422. (args Vector:$a, imm_1toN:$b),
  1423. (IRInt<"vcvt_fix", [VecOf<desttype>, Vector]> unsigned_flag, $a, $b)>;
  1424. defm "vcvtq" : IntrinsicMX<VecOf<desttype>,
  1425. (args Vector:$a, imm_1toN:$b, Predicate:$p),
  1426. (IRInt<"vcvt_fix_predicated", [VecOf<desttype>, Vector, Predicate]>
  1427. unsigned_flag, $inactive, $a, $b, $p),
  1428. 1, "_n_"#desttype, PNT_2Type, pnt_nx>;
  1429. }
  1430. }
  1431. let params = T.Usual in {
  1432. let pnt = PNT_NType in
  1433. def vbrsrq_n: Intrinsic<Vector, (args Vector:$a, s32:$b),
  1434. (IRInt<"vbrsr", [Vector]> $a, $b)>;
  1435. defm vbrsrq : IntrinsicMX<Vector, (args Vector:$a, s32:$b, Predicate:$pred),
  1436. (IRInt<"vbrsr_predicated", [Vector, Predicate]>
  1437. $inactive, $a, $b, $pred), 1, "_n",
  1438. PNT_NType, PNT_NType>;
  1439. }