nir_opt_algebraic.py revision 01e04c3f
1# 2# Copyright (C) 2014 Intel Corporation 3# 4# Permission is hereby granted, free of charge, to any person obtaining a 5# copy of this software and associated documentation files (the "Software"), 6# to deal in the Software without restriction, including without limitation 7# the rights to use, copy, modify, merge, publish, distribute, sublicense, 8# and/or sell copies of the Software, and to permit persons to whom the 9# Software is furnished to do so, subject to the following conditions: 10# 11# The above copyright notice and this permission notice (including the next 12# paragraph) shall be included in all copies or substantial portions of the 13# Software. 14# 15# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 16# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 17# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 18# THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 19# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING 20# FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS 21# IN THE SOFTWARE. 22# 23# Authors: 24# Jason Ekstrand (jason@jlekstrand.net) 25 26from __future__ import print_function 27 28from collections import OrderedDict 29import nir_algebraic 30import itertools 31 32# Convenience variables 33a = 'a' 34b = 'b' 35c = 'c' 36d = 'd' 37 38# Written in the form (<search>, <replace>) where <search> is an expression 39# and <replace> is either an expression or a value. An expression is 40# defined as a tuple of the form ([~]<op>, <src0>, <src1>, <src2>, <src3>) 41# where each source is either an expression or a value. A value can be 42# either a numeric constant or a string representing a variable name. 43# 44# If the opcode in a search expression is prefixed by a '~' character, this 45# indicates that the operation is inexact. Such operations will only get 46# applied to SSA values that do not have the exact bit set. This should be 47# used by by any optimizations that are not bit-for-bit exact. It should not, 48# however, be used for backend-requested lowering operations as those need to 49# happen regardless of precision. 50# 51# Variable names are specified as "[#]name[@type][(cond)]" where "#" inicates 52# that the given variable will only match constants and the type indicates that 53# the given variable will only match values from ALU instructions with the 54# given output type, and (cond) specifies an additional condition function 55# (see nir_search_helpers.h). 56# 57# For constants, you have to be careful to make sure that it is the right 58# type because python is unaware of the source and destination types of the 59# opcodes. 60# 61# All expression types can have a bit-size specified. For opcodes, this 62# looks like "op@32", for variables it is "a@32" or "a@uint32" to specify a 63# type and size, and for literals, you can write "2.0@32". In the search half 64# of the expression this indicates that it should only match that particular 65# bit-size. In the replace half of the expression this indicates that the 66# constructed value should have that bit-size. 67 68optimizations = [ 69 70 (('imul', a, '#b@32(is_pos_power_of_two)'), ('ishl', a, ('find_lsb', b))), 71 (('imul', a, '#b@32(is_neg_power_of_two)'), ('ineg', ('ishl', a, ('find_lsb', ('iabs', b))))), 72 (('udiv', a, 1), a), 73 (('idiv', a, 1), a), 74 (('umod', a, 1), 0), 75 (('imod', a, 1), 0), 76 (('udiv', a, '#b@32(is_pos_power_of_two)'), ('ushr', a, ('find_lsb', b))), 77 (('idiv', a, '#b@32(is_pos_power_of_two)'), ('imul', ('isign', a), ('ushr', ('iabs', a), ('find_lsb', b))), 'options->lower_idiv'), 78 (('idiv', a, '#b@32(is_neg_power_of_two)'), ('ineg', ('imul', ('isign', a), ('ushr', ('iabs', a), ('find_lsb', ('iabs', b))))), 'options->lower_idiv'), 79 (('umod', a, '#b(is_pos_power_of_two)'), ('iand', a, ('isub', b, 1))), 80 81 (('fneg', ('fneg', a)), a), 82 (('ineg', ('ineg', a)), a), 83 (('fabs', ('fabs', a)), ('fabs', a)), 84 (('fabs', ('fneg', a)), ('fabs', a)), 85 (('fabs', ('u2f32', a)), ('u2f32', a)), 86 (('iabs', ('iabs', a)), ('iabs', a)), 87 (('iabs', ('ineg', a)), ('iabs', a)), 88 (('~fadd', a, 0.0), a), 89 (('iadd', a, 0), a), 90 (('usadd_4x8', a, 0), a), 91 (('usadd_4x8', a, ~0), ~0), 92 (('~fadd', ('fmul', a, b), ('fmul', a, c)), ('fmul', a, ('fadd', b, c))), 93 (('iadd', ('imul', a, b), ('imul', a, c)), ('imul', a, ('iadd', b, c))), 94 (('~fadd', ('fneg', a), a), 0.0), 95 (('iadd', ('ineg', a), a), 0), 96 (('iadd', ('ineg', a), ('iadd', a, b)), b), 97 (('iadd', a, ('iadd', ('ineg', a), b)), b), 98 (('~fadd', ('fneg', a), ('fadd', a, b)), b), 99 (('~fadd', a, ('fadd', ('fneg', a), b)), b), 100 (('~fmul', a, 0.0), 0.0), 101 (('imul', a, 0), 0), 102 (('umul_unorm_4x8', a, 0), 0), 103 (('umul_unorm_4x8', a, ~0), a), 104 (('fmul', a, 1.0), a), 105 (('imul', a, 1), a), 106 (('fmul', a, -1.0), ('fneg', a)), 107 (('imul', a, -1), ('ineg', a)), 108 # If a < 0: fsign(a)*a*a => -1*a*a => -a*a => abs(a)*a 109 # If a > 0: fsign(a)*a*a => 1*a*a => a*a => abs(a)*a 110 # If a == 0: fsign(a)*a*a => 0*0*0 => abs(0)*0 111 (('fmul', ('fsign', a), ('fmul', a, a)), ('fmul', ('fabs', a), a)), 112 (('fmul', ('fmul', ('fsign', a), a), a), ('fmul', ('fabs', a), a)), 113 (('~ffma', 0.0, a, b), b), 114 (('~ffma', a, 0.0, b), b), 115 (('~ffma', a, b, 0.0), ('fmul', a, b)), 116 (('ffma', a, 1.0, b), ('fadd', a, b)), 117 (('ffma', 1.0, a, b), ('fadd', a, b)), 118 (('~flrp', a, b, 0.0), a), 119 (('~flrp', a, b, 1.0), b), 120 (('~flrp', a, a, b), a), 121 (('~flrp', 0.0, a, b), ('fmul', a, b)), 122 (('~flrp', a, b, ('b2f', c)), ('bcsel', c, b, a), 'options->lower_flrp32'), 123 (('~flrp', a, 0.0, c), ('fadd', ('fmul', ('fneg', a), c), a)), 124 (('flrp@32', a, b, c), ('fadd', ('fmul', c, ('fsub', b, a)), a), 'options->lower_flrp32'), 125 (('flrp@64', a, b, c), ('fadd', ('fmul', c, ('fsub', b, a)), a), 'options->lower_flrp64'), 126 (('ffract', a), ('fsub', a, ('ffloor', a)), 'options->lower_ffract'), 127 (('~fadd', ('fmul', a, ('fadd', 1.0, ('fneg', ('b2f', c)))), ('fmul', b, ('b2f', c))), ('bcsel', c, b, a), 'options->lower_flrp32'), 128 (('~fadd@32', ('fmul', a, ('fadd', 1.0, ('fneg', c ))), ('fmul', b, c )), ('flrp', a, b, c), '!options->lower_flrp32'), 129 (('~fadd@64', ('fmul', a, ('fadd', 1.0, ('fneg', c ))), ('fmul', b, c )), ('flrp', a, b, c), '!options->lower_flrp64'), 130 (('~fadd', a, ('fmul', ('b2f', c), ('fadd', b, ('fneg', a)))), ('bcsel', c, b, a), 'options->lower_flrp32'), 131 (('~fadd@32', a, ('fmul', c , ('fadd', b, ('fneg', a)))), ('flrp', a, b, c), '!options->lower_flrp32'), 132 (('~fadd@64', a, ('fmul', c , ('fadd', b, ('fneg', a)))), ('flrp', a, b, c), '!options->lower_flrp64'), 133 (('ffma', a, b, c), ('fadd', ('fmul', a, b), c), 'options->lower_ffma'), 134 (('~fadd', ('fmul', a, b), c), ('ffma', a, b, c), 'options->fuse_ffma'), 135 136 (('fdot4', ('vec4', a, b, c, 1.0), d), ('fdph', ('vec3', a, b, c), d)), 137 (('fdot4', ('vec4', a, 0.0, 0.0, 0.0), b), ('fmul', a, b)), 138 (('fdot4', ('vec4', a, b, 0.0, 0.0), c), ('fdot2', ('vec2', a, b), c)), 139 (('fdot4', ('vec4', a, b, c, 0.0), d), ('fdot3', ('vec3', a, b, c), d)), 140 141 (('fdot3', ('vec3', a, 0.0, 0.0), b), ('fmul', a, b)), 142 (('fdot3', ('vec3', a, b, 0.0), c), ('fdot2', ('vec2', a, b), c)), 143 144 # (a * #b + #c) << #d 145 # ((a * #b) << #d) + (#c << #d) 146 # (a * (#b << #d)) + (#c << #d) 147 (('ishl', ('iadd', ('imul', a, '#b'), '#c'), '#d'), 148 ('iadd', ('imul', a, ('ishl', b, d)), ('ishl', c, d))), 149 150 # (a * #b) << #c 151 # a * (#b << #c) 152 (('ishl', ('imul', a, '#b'), '#c'), ('imul', a, ('ishl', b, c))), 153 154 # Comparison simplifications 155 (('~inot', ('flt', a, b)), ('fge', a, b)), 156 (('~inot', ('fge', a, b)), ('flt', a, b)), 157 (('~inot', ('feq', a, b)), ('fne', a, b)), 158 (('~inot', ('fne', a, b)), ('feq', a, b)), 159 (('inot', ('ilt', a, b)), ('ige', a, b)), 160 (('inot', ('ult', a, b)), ('uge', a, b)), 161 (('inot', ('ige', a, b)), ('ilt', a, b)), 162 (('inot', ('uge', a, b)), ('ult', a, b)), 163 (('inot', ('ieq', a, b)), ('ine', a, b)), 164 (('inot', ('ine', a, b)), ('ieq', a, b)), 165 166 # 0.0 >= b2f(a) 167 # b2f(a) <= 0.0 168 # b2f(a) == 0.0 because b2f(a) can only be 0 or 1 169 # inot(a) 170 (('fge', 0.0, ('b2f', a)), ('inot', a)), 171 172 (('fge', ('fneg', ('b2f', a)), 0.0), ('inot', a)), 173 174 (('fne', ('fadd', ('b2f', a), ('b2f', b)), 0.0), ('ior', a, b)), 175 (('fne', ('fmax', ('b2f', a), ('b2f', b)), 0.0), ('ior', a, b)), 176 (('fne', ('bcsel', a, 1.0, ('b2f', b)) , 0.0), ('ior', a, b)), 177 (('fne', ('b2f', a), ('fneg', ('b2f', b))), ('ior', a, b)), 178 (('fne', ('fmul', ('b2f', a), ('b2f', b)), 0.0), ('iand', a, b)), 179 (('fne', ('fmin', ('b2f', a), ('b2f', b)), 0.0), ('iand', a, b)), 180 (('fne', ('bcsel', a, ('b2f', b), 0.0) , 0.0), ('iand', a, b)), 181 (('fne', ('fadd', ('b2f', a), ('fneg', ('b2f', b))), 0.0), ('ixor', a, b)), 182 (('fne', ('b2f', a) , ('b2f', b) ), ('ixor', a, b)), 183 (('fne', ('fneg', ('b2f', a)), ('fneg', ('b2f', b))), ('ixor', a, b)), 184 (('feq', ('fadd', ('b2f', a), ('b2f', b)), 0.0), ('inot', ('ior', a, b))), 185 (('feq', ('fmax', ('b2f', a), ('b2f', b)), 0.0), ('inot', ('ior', a, b))), 186 (('feq', ('bcsel', a, 1.0, ('b2f', b)) , 0.0), ('inot', ('ior', a, b))), 187 (('feq', ('b2f', a), ('fneg', ('b2f', b))), ('inot', ('ior', a, b))), 188 (('feq', ('fmul', ('b2f', a), ('b2f', b)), 0.0), ('inot', ('iand', a, b))), 189 (('feq', ('fmin', ('b2f', a), ('b2f', b)), 0.0), ('inot', ('iand', a, b))), 190 (('feq', ('bcsel', a, ('b2f', b), 0.0) , 0.0), ('inot', ('iand', a, b))), 191 (('feq', ('fadd', ('b2f', a), ('fneg', ('b2f', b))), 0.0), ('ieq', a, b)), 192 (('feq', ('b2f', a) , ('b2f', b) ), ('ieq', a, b)), 193 (('feq', ('fneg', ('b2f', a)), ('fneg', ('b2f', b))), ('ieq', a, b)), 194 195 # -(b2f(a) + b2f(b)) < 0 196 # 0 < b2f(a) + b2f(b) 197 # 0 != b2f(a) + b2f(b) b2f must be 0 or 1, so the sum is non-negative 198 # a || b 199 (('flt', ('fneg', ('fadd', ('b2f', a), ('b2f', b))), 0.0), ('ior', a, b)), 200 (('flt', 0.0, ('fadd', ('b2f', a), ('b2f', b))), ('ior', a, b)), 201 202 # -(b2f(a) + b2f(b)) >= 0 203 # 0 >= b2f(a) + b2f(b) 204 # 0 == b2f(a) + b2f(b) b2f must be 0 or 1, so the sum is non-negative 205 # !(a || b) 206 (('fge', ('fneg', ('fadd', ('b2f', a), ('b2f', b))), 0.0), ('inot', ('ior', a, b))), 207 (('fge', 0.0, ('fadd', ('b2f', a), ('b2f', b))), ('inot', ('ior', a, b))), 208 209 # Some optimizations (below) convert things like (a < b || c < b) into 210 # (min(a, c) < b). However, this interfers with the previous optimizations 211 # that try to remove comparisons with negated sums of b2f. This just 212 # breaks that apart. 213 (('flt', ('fmin', c, ('fneg', ('fadd', ('b2f', a), ('b2f', b)))), 0.0), 214 ('ior', ('flt', c, 0.0), ('ior', a, b))), 215 216 (('~flt', ('fadd', a, b), a), ('flt', b, 0.0)), 217 (('~fge', ('fadd', a, b), a), ('fge', b, 0.0)), 218 (('~feq', ('fadd', a, b), a), ('feq', b, 0.0)), 219 (('~fne', ('fadd', a, b), a), ('fne', b, 0.0)), 220 221 # Cannot remove the addition from ilt or ige due to overflow. 222 (('ieq', ('iadd', a, b), a), ('ieq', b, 0)), 223 (('ine', ('iadd', a, b), a), ('ine', b, 0)), 224 225 # fmin(-b2f(a), b) >= 0.0 226 # -b2f(a) >= 0.0 && b >= 0.0 227 # -b2f(a) == 0.0 && b >= 0.0 -b2f can only be 0 or -1, never >0 228 # b2f(a) == 0.0 && b >= 0.0 229 # a == False && b >= 0.0 230 # !a && b >= 0.0 231 # 232 # The fge in the second replacement is not a typo. I leave the proof that 233 # "fmin(-b2f(a), b) >= 0 <=> fmin(-b2f(a), b) == 0" as an exercise for the 234 # reader. 235 (('fge', ('fmin', ('fneg', ('b2f', a)), b), 0.0), ('iand', ('inot', a), ('fge', b, 0.0))), 236 (('feq', ('fmin', ('fneg', ('b2f', a)), b), 0.0), ('iand', ('inot', a), ('fge', b, 0.0))), 237 238 (('feq', ('b2f', a), 0.0), ('inot', a)), 239 (('fne', ('b2f', a), 0.0), a), 240 (('ieq', ('b2i', a), 0), ('inot', a)), 241 (('ine', ('b2i', a), 0), a), 242 243 (('fne', ('u2f32', a), 0.0), ('ine', a, 0)), 244 (('feq', ('u2f32', a), 0.0), ('ieq', a, 0)), 245 (('fge', ('u2f32', a), 0.0), True), 246 (('fge', 0.0, ('u2f32', a)), ('uge', 0, a)), # ieq instead? 247 (('flt', ('u2f32', a), 0.0), False), 248 (('flt', 0.0, ('u2f32', a)), ('ult', 0, a)), # ine instead? 249 (('fne', ('i2f32', a), 0.0), ('ine', a, 0)), 250 (('feq', ('i2f32', a), 0.0), ('ieq', a, 0)), 251 (('fge', ('i2f32', a), 0.0), ('ige', a, 0)), 252 (('fge', 0.0, ('i2f32', a)), ('ige', 0, a)), 253 (('flt', ('i2f32', a), 0.0), ('ilt', a, 0)), 254 (('flt', 0.0, ('i2f32', a)), ('ilt', 0, a)), 255 256 # 0.0 < fabs(a) 257 # fabs(a) > 0.0 258 # fabs(a) != 0.0 because fabs(a) must be >= 0 259 # a != 0.0 260 (('~flt', 0.0, ('fabs', a)), ('fne', a, 0.0)), 261 262 # -fabs(a) < 0.0 263 # fabs(a) > 0.0 264 (('~flt', ('fneg', ('fabs', a)), 0.0), ('fne', a, 0.0)), 265 266 # 0.0 >= fabs(a) 267 # 0.0 == fabs(a) because fabs(a) must be >= 0 268 # 0.0 == a 269 (('fge', 0.0, ('fabs', a)), ('feq', a, 0.0)), 270 271 # -fabs(a) >= 0.0 272 # 0.0 >= fabs(a) 273 (('fge', ('fneg', ('fabs', a)), 0.0), ('feq', a, 0.0)), 274 275 (('fmax', ('b2f(is_used_once)', a), ('b2f', b)), ('b2f', ('ior', a, b))), 276 (('fmax', ('fneg(is_used_once)', ('b2f(is_used_once)', a)), ('fneg', ('b2f', b))), ('fneg', ('b2f', ('ior', a, b)))), 277 (('fmin', ('b2f(is_used_once)', a), ('b2f', b)), ('b2f', ('iand', a, b))), 278 (('fmin', ('fneg(is_used_once)', ('b2f(is_used_once)', a)), ('fneg', ('b2f', b))), ('fneg', ('b2f', ('iand', a, b)))), 279 280 # fmin(b2f(a), b) 281 # bcsel(a, fmin(b2f(a), b), fmin(b2f(a), b)) 282 # bcsel(a, fmin(b2f(True), b), fmin(b2f(False), b)) 283 # bcsel(a, fmin(1.0, b), fmin(0.0, b)) 284 # 285 # Since b is a constant, constant folding will eliminate the fmin and the 286 # fmax. If b is > 1.0, the bcsel will be replaced with a b2f. 287 (('fmin', ('b2f', a), '#b'), ('bcsel', a, ('fmin', b, 1.0), ('fmin', b, 0.0))), 288 289 (('flt', ('fadd(is_used_once)', a, ('fneg', b)), 0.0), ('flt', a, b)), 290 291 (('fge', ('fneg', ('fabs', a)), 0.0), ('feq', a, 0.0)), 292 (('~bcsel', ('flt', b, a), b, a), ('fmin', a, b)), 293 (('~bcsel', ('flt', a, b), b, a), ('fmax', a, b)), 294 (('~bcsel', ('fge', a, b), b, a), ('fmin', a, b)), 295 (('~bcsel', ('fge', b, a), b, a), ('fmax', a, b)), 296 (('bcsel', ('inot', a), b, c), ('bcsel', a, c, b)), 297 (('bcsel', a, ('bcsel', a, b, c), d), ('bcsel', a, b, d)), 298 (('bcsel', a, b, ('bcsel', a, c, d)), ('bcsel', a, b, d)), 299 (('bcsel', a, ('bcsel', b, c, d), ('bcsel(is_used_once)', b, c, 'e')), ('bcsel', b, c, ('bcsel', a, d, 'e'))), 300 (('bcsel', a, ('bcsel(is_used_once)', b, c, d), ('bcsel', b, c, 'e')), ('bcsel', b, c, ('bcsel', a, d, 'e'))), 301 (('bcsel', a, ('bcsel', b, c, d), ('bcsel(is_used_once)', b, 'e', d)), ('bcsel', b, ('bcsel', a, c, 'e'), d)), 302 (('bcsel', a, ('bcsel(is_used_once)', b, c, d), ('bcsel', b, 'e', d)), ('bcsel', b, ('bcsel', a, c, 'e'), d)), 303 (('bcsel', a, True, 'b@bool'), ('ior', a, b)), 304 (('fmin', a, a), a), 305 (('fmax', a, a), a), 306 (('imin', a, a), a), 307 (('imax', a, a), a), 308 (('umin', a, a), a), 309 (('umax', a, a), a), 310 (('fmax', ('fmax', a, b), b), ('fmax', a, b)), 311 (('umax', ('umax', a, b), b), ('umax', a, b)), 312 (('imax', ('imax', a, b), b), ('imax', a, b)), 313 (('fmin', ('fmin', a, b), b), ('fmin', a, b)), 314 (('umin', ('umin', a, b), b), ('umin', a, b)), 315 (('imin', ('imin', a, b), b), ('imin', a, b)), 316 (('fmax', a, ('fneg', a)), ('fabs', a)), 317 (('imax', a, ('ineg', a)), ('iabs', a)), 318 (('fmin', a, ('fneg', a)), ('fneg', ('fabs', a))), 319 (('imin', a, ('ineg', a)), ('ineg', ('iabs', a))), 320 (('fmin', a, ('fneg', ('fabs', a))), ('fneg', ('fabs', a))), 321 (('imin', a, ('ineg', ('iabs', a))), ('ineg', ('iabs', a))), 322 (('fmin', a, ('fabs', a)), a), 323 (('imin', a, ('iabs', a)), a), 324 (('fmax', a, ('fneg', ('fabs', a))), a), 325 (('imax', a, ('ineg', ('iabs', a))), a), 326 (('fmax', a, ('fabs', a)), ('fabs', a)), 327 (('imax', a, ('iabs', a)), ('iabs', a)), 328 (('fmax', a, ('fneg', a)), ('fabs', a)), 329 (('imax', a, ('ineg', a)), ('iabs', a)), 330 (('~fmin', ('fmax', a, 0.0), 1.0), ('fsat', a), '!options->lower_fsat'), 331 (('~fmax', ('fmin', a, 1.0), 0.0), ('fsat', a), '!options->lower_fsat'), 332 (('fsat', ('fsign', a)), ('b2f', ('flt', 0.0, a))), 333 (('fsat', a), ('fmin', ('fmax', a, 0.0), 1.0), 'options->lower_fsat'), 334 (('fsat', ('fsat', a)), ('fsat', a)), 335 (('fmin', ('fmax', ('fmin', ('fmax', a, b), c), b), c), ('fmin', ('fmax', a, b), c)), 336 (('imin', ('imax', ('imin', ('imax', a, b), c), b), c), ('imin', ('imax', a, b), c)), 337 (('umin', ('umax', ('umin', ('umax', a, b), c), b), c), ('umin', ('umax', a, b), c)), 338 (('fmax', ('fsat', a), '#b@32(is_zero_to_one)'), ('fsat', ('fmax', a, b))), 339 (('fmin', ('fsat', a), '#b@32(is_zero_to_one)'), ('fsat', ('fmin', a, b))), 340 (('extract_u8', ('imin', ('imax', a, 0), 0xff), 0), ('imin', ('imax', a, 0), 0xff)), 341 (('~ior', ('flt(is_used_once)', a, b), ('flt', a, c)), ('flt', a, ('fmax', b, c))), 342 (('~ior', ('flt(is_used_once)', a, c), ('flt', b, c)), ('flt', ('fmin', a, b), c)), 343 (('~ior', ('fge(is_used_once)', a, b), ('fge', a, c)), ('fge', a, ('fmin', b, c))), 344 (('~ior', ('fge(is_used_once)', a, c), ('fge', b, c)), ('fge', ('fmax', a, b), c)), 345 (('~ior', ('flt', a, '#b'), ('flt', a, '#c')), ('flt', a, ('fmax', b, c))), 346 (('~ior', ('flt', '#a', c), ('flt', '#b', c)), ('flt', ('fmin', a, b), c)), 347 (('~ior', ('fge', a, '#b'), ('fge', a, '#c')), ('fge', a, ('fmin', b, c))), 348 (('~ior', ('fge', '#a', c), ('fge', '#b', c)), ('fge', ('fmax', a, b), c)), 349 (('~iand', ('flt(is_used_once)', a, b), ('flt', a, c)), ('flt', a, ('fmin', b, c))), 350 (('~iand', ('flt(is_used_once)', a, c), ('flt', b, c)), ('flt', ('fmax', a, b), c)), 351 (('~iand', ('fge(is_used_once)', a, b), ('fge', a, c)), ('fge', a, ('fmax', b, c))), 352 (('~iand', ('fge(is_used_once)', a, c), ('fge', b, c)), ('fge', ('fmin', a, b), c)), 353 (('~iand', ('flt', a, '#b'), ('flt', a, '#c')), ('flt', a, ('fmin', b, c))), 354 (('~iand', ('flt', '#a', c), ('flt', '#b', c)), ('flt', ('fmax', a, b), c)), 355 (('~iand', ('fge', a, '#b'), ('fge', a, '#c')), ('fge', a, ('fmax', b, c))), 356 (('~iand', ('fge', '#a', c), ('fge', '#b', c)), ('fge', ('fmin', a, b), c)), 357 358 (('ior', ('ilt(is_used_once)', a, b), ('ilt', a, c)), ('ilt', a, ('imax', b, c))), 359 (('ior', ('ilt(is_used_once)', a, c), ('ilt', b, c)), ('ilt', ('imin', a, b), c)), 360 (('ior', ('ige(is_used_once)', a, b), ('ige', a, c)), ('ige', a, ('imin', b, c))), 361 (('ior', ('ige(is_used_once)', a, c), ('ige', b, c)), ('ige', ('imax', a, b), c)), 362 (('ior', ('ult(is_used_once)', a, b), ('ult', a, c)), ('ult', a, ('umax', b, c))), 363 (('ior', ('ult(is_used_once)', a, c), ('ult', b, c)), ('ult', ('umin', a, b), c)), 364 (('ior', ('uge(is_used_once)', a, b), ('uge', a, c)), ('uge', a, ('umin', b, c))), 365 (('ior', ('uge(is_used_once)', a, c), ('uge', b, c)), ('uge', ('umax', a, b), c)), 366 (('iand', ('ilt(is_used_once)', a, b), ('ilt', a, c)), ('ilt', a, ('imin', b, c))), 367 (('iand', ('ilt(is_used_once)', a, c), ('ilt', b, c)), ('ilt', ('imax', a, b), c)), 368 (('iand', ('ige(is_used_once)', a, b), ('ige', a, c)), ('ige', a, ('imax', b, c))), 369 (('iand', ('ige(is_used_once)', a, c), ('ige', b, c)), ('ige', ('imin', a, b), c)), 370 (('iand', ('ult(is_used_once)', a, b), ('ult', a, c)), ('ult', a, ('umin', b, c))), 371 (('iand', ('ult(is_used_once)', a, c), ('ult', b, c)), ('ult', ('umax', a, b), c)), 372 (('iand', ('uge(is_used_once)', a, b), ('uge', a, c)), ('uge', a, ('umax', b, c))), 373 (('iand', ('uge(is_used_once)', a, c), ('uge', b, c)), ('uge', ('umin', a, b), c)), 374 375 (('ior', 'a@bool', ('ieq', a, False)), True), 376 (('ior', a, ('inot', a)), -1), 377 378 (('iand', ('ieq', 'a@32', 0), ('ieq', 'b@32', 0)), ('ieq', ('ior', 'a@32', 'b@32'), 0)), 379 380 # These patterns can result when (a < b || a < c) => (a < min(b, c)) 381 # transformations occur before constant propagation and loop-unrolling. 382 (('~flt', a, ('fmax', b, a)), ('flt', a, b)), 383 (('~flt', ('fmin', a, b), a), ('flt', b, a)), 384 (('~fge', a, ('fmin', b, a)), True), 385 (('~fge', ('fmax', a, b), a), True), 386 (('~flt', a, ('fmin', b, a)), False), 387 (('~flt', ('fmax', a, b), a), False), 388 (('~fge', a, ('fmax', b, a)), ('fge', a, b)), 389 (('~fge', ('fmin', a, b), a), ('fge', b, a)), 390 391 (('ilt', a, ('imax', b, a)), ('ilt', a, b)), 392 (('ilt', ('imin', a, b), a), ('ilt', b, a)), 393 (('ige', a, ('imin', b, a)), True), 394 (('ige', ('imax', a, b), a), True), 395 (('ult', a, ('umax', b, a)), ('ult', a, b)), 396 (('ult', ('umin', a, b), a), ('ult', b, a)), 397 (('uge', a, ('umin', b, a)), True), 398 (('uge', ('umax', a, b), a), True), 399 (('ilt', a, ('imin', b, a)), False), 400 (('ilt', ('imax', a, b), a), False), 401 (('ige', a, ('imax', b, a)), ('ige', a, b)), 402 (('ige', ('imin', a, b), a), ('ige', b, a)), 403 (('ult', a, ('umin', b, a)), False), 404 (('ult', ('umax', a, b), a), False), 405 (('uge', a, ('umax', b, a)), ('uge', a, b)), 406 (('uge', ('umin', a, b), a), ('uge', b, a)), 407 408 (('ilt', '#a', ('imax', '#b', c)), ('ior', ('ilt', a, b), ('ilt', a, c))), 409 (('ilt', ('imin', '#a', b), '#c'), ('ior', ('ilt', a, c), ('ilt', b, c))), 410 (('ige', '#a', ('imin', '#b', c)), ('ior', ('ige', a, b), ('ige', a, c))), 411 (('ige', ('imax', '#a', b), '#c'), ('ior', ('ige', a, c), ('ige', b, c))), 412 (('ult', '#a', ('umax', '#b', c)), ('ior', ('ult', a, b), ('ult', a, c))), 413 (('ult', ('umin', '#a', b), '#c'), ('ior', ('ult', a, c), ('ult', b, c))), 414 (('uge', '#a', ('umin', '#b', c)), ('ior', ('uge', a, b), ('uge', a, c))), 415 (('uge', ('umax', '#a', b), '#c'), ('ior', ('uge', a, c), ('uge', b, c))), 416 (('ilt', '#a', ('imin', '#b', c)), ('iand', ('ilt', a, b), ('ilt', a, c))), 417 (('ilt', ('imax', '#a', b), '#c'), ('iand', ('ilt', a, c), ('ilt', b, c))), 418 (('ige', '#a', ('imax', '#b', c)), ('iand', ('ige', a, b), ('ige', a, c))), 419 (('ige', ('imin', '#a', b), '#c'), ('iand', ('ige', a, c), ('ige', b, c))), 420 (('ult', '#a', ('umin', '#b', c)), ('iand', ('ult', a, b), ('ult', a, c))), 421 (('ult', ('umax', '#a', b), '#c'), ('iand', ('ult', a, c), ('ult', b, c))), 422 (('uge', '#a', ('umax', '#b', c)), ('iand', ('uge', a, b), ('uge', a, c))), 423 (('uge', ('umin', '#a', b), '#c'), ('iand', ('uge', a, c), ('uge', b, c))), 424 425 (('fabs', ('slt', a, b)), ('slt', a, b)), 426 (('fabs', ('sge', a, b)), ('sge', a, b)), 427 (('fabs', ('seq', a, b)), ('seq', a, b)), 428 (('fabs', ('sne', a, b)), ('sne', a, b)), 429 (('slt', a, b), ('b2f', ('flt', a, b)), 'options->lower_scmp'), 430 (('sge', a, b), ('b2f', ('fge', a, b)), 'options->lower_scmp'), 431 (('seq', a, b), ('b2f', ('feq', a, b)), 'options->lower_scmp'), 432 (('sne', a, b), ('b2f', ('fne', a, b)), 'options->lower_scmp'), 433 (('fne', ('fneg', a), a), ('fne', a, 0.0)), 434 (('feq', ('fneg', a), a), ('feq', a, 0.0)), 435 # Emulating booleans 436 (('imul', ('b2i', a), ('b2i', b)), ('b2i', ('iand', a, b))), 437 (('fmul', ('b2f', a), ('b2f', b)), ('b2f', ('iand', a, b))), 438 (('fsat', ('fadd', ('b2f', a), ('b2f', b))), ('b2f', ('ior', a, b))), 439 (('iand', 'a@bool', 1.0), ('b2f', a), '!options->lower_b2f'), 440 # True/False are ~0 and 0 in NIR. b2i of True is 1, and -1 is ~0 (True). 441 (('ineg', ('b2i@32', a)), a), 442 (('flt', ('fneg', ('b2f', a)), 0), a), # Generated by TGSI KILL_IF. 443 (('flt', ('fsub', 0.0, ('b2f', a)), 0), a), # Generated by TGSI KILL_IF. 444 # Comparison with the same args. Note that these are not done for 445 # the float versions because NaN always returns false on float 446 # inequalities. 447 (('ilt', a, a), False), 448 (('ige', a, a), True), 449 (('ieq', a, a), True), 450 (('ine', a, a), False), 451 (('ult', a, a), False), 452 (('uge', a, a), True), 453 # Logical and bit operations 454 (('fand', a, 0.0), 0.0), 455 (('iand', a, a), a), 456 (('iand', a, ~0), a), 457 (('iand', a, 0), 0), 458 (('ior', a, a), a), 459 (('ior', a, 0), a), 460 (('ior', a, True), True), 461 (('fxor', a, a), 0.0), 462 (('ixor', a, a), 0), 463 (('ixor', a, 0), a), 464 (('inot', ('inot', a)), a), 465 (('ior', ('iand', a, b), b), b), 466 (('ior', ('ior', a, b), b), ('ior', a, b)), 467 (('iand', ('ior', a, b), b), b), 468 (('iand', ('iand', a, b), b), ('iand', a, b)), 469 # DeMorgan's Laws 470 (('iand', ('inot', a), ('inot', b)), ('inot', ('ior', a, b))), 471 (('ior', ('inot', a), ('inot', b)), ('inot', ('iand', a, b))), 472 # Shift optimizations 473 (('ishl', 0, a), 0), 474 (('ishl', a, 0), a), 475 (('ishr', 0, a), 0), 476 (('ishr', a, 0), a), 477 (('ushr', 0, a), 0), 478 (('ushr', a, 0), a), 479 (('iand', 0xff, ('ushr@32', a, 24)), ('ushr', a, 24)), 480 (('iand', 0xffff, ('ushr@32', a, 16)), ('ushr', a, 16)), 481 # Exponential/logarithmic identities 482 (('~fexp2', ('flog2', a)), a), # 2^lg2(a) = a 483 (('~flog2', ('fexp2', a)), a), # lg2(2^a) = a 484 (('fpow', a, b), ('fexp2', ('fmul', ('flog2', a), b)), 'options->lower_fpow'), # a^b = 2^(lg2(a)*b) 485 (('~fexp2', ('fmul', ('flog2', a), b)), ('fpow', a, b), '!options->lower_fpow'), # 2^(lg2(a)*b) = a^b 486 (('~fexp2', ('fadd', ('fmul', ('flog2', a), b), ('fmul', ('flog2', c), d))), 487 ('~fmul', ('fpow', a, b), ('fpow', c, d)), '!options->lower_fpow'), # 2^(lg2(a) * b + lg2(c) + d) = a^b * c^d 488 (('~fexp2', ('fmul', ('flog2', a), 2.0)), ('fmul', a, a)), 489 (('~fexp2', ('fmul', ('flog2', a), 4.0)), ('fmul', ('fmul', a, a), ('fmul', a, a))), 490 (('~fpow', a, 1.0), a), 491 (('~fpow', a, 2.0), ('fmul', a, a)), 492 (('~fpow', a, 4.0), ('fmul', ('fmul', a, a), ('fmul', a, a))), 493 (('~fpow', 2.0, a), ('fexp2', a)), 494 (('~fpow', ('fpow', a, 2.2), 0.454545), a), 495 (('~fpow', ('fabs', ('fpow', a, 2.2)), 0.454545), ('fabs', a)), 496 (('~fsqrt', ('fexp2', a)), ('fexp2', ('fmul', 0.5, a))), 497 (('~frcp', ('fexp2', a)), ('fexp2', ('fneg', a))), 498 (('~frsq', ('fexp2', a)), ('fexp2', ('fmul', -0.5, a))), 499 (('~flog2', ('fsqrt', a)), ('fmul', 0.5, ('flog2', a))), 500 (('~flog2', ('frcp', a)), ('fneg', ('flog2', a))), 501 (('~flog2', ('frsq', a)), ('fmul', -0.5, ('flog2', a))), 502 (('~flog2', ('fpow', a, b)), ('fmul', b, ('flog2', a))), 503 (('~fmul', ('fexp2(is_used_once)', a), ('fexp2(is_used_once)', b)), ('fexp2', ('fadd', a, b))), 504 # Division and reciprocal 505 (('~fdiv', 1.0, a), ('frcp', a)), 506 (('fdiv', a, b), ('fmul', a, ('frcp', b)), 'options->lower_fdiv'), 507 (('~frcp', ('frcp', a)), a), 508 (('~frcp', ('fsqrt', a)), ('frsq', a)), 509 (('fsqrt', a), ('frcp', ('frsq', a)), 'options->lower_fsqrt'), 510 (('~frcp', ('frsq', a)), ('fsqrt', a), '!options->lower_fsqrt'), 511 # Boolean simplifications 512 (('ieq', 'a@bool', True), a), 513 (('ine(is_not_used_by_if)', 'a@bool', True), ('inot', a)), 514 (('ine', 'a@bool', False), a), 515 (('ieq(is_not_used_by_if)', 'a@bool', False), ('inot', 'a')), 516 (('bcsel', a, True, False), a), 517 (('bcsel', a, False, True), ('inot', a)), 518 (('bcsel@32', a, 1.0, 0.0), ('b2f', a)), 519 (('bcsel@32', a, 0.0, 1.0), ('b2f', ('inot', a))), 520 (('bcsel@32', a, -1.0, -0.0), ('fneg', ('b2f', a))), 521 (('bcsel@32', a, -0.0, -1.0), ('fneg', ('b2f', ('inot', a)))), 522 (('bcsel', True, b, c), b), 523 (('bcsel', False, b, c), c), 524 (('bcsel', a, ('b2f(is_used_once)', b), ('b2f', c)), ('b2f', ('bcsel', a, b, c))), 525 # The result of this should be hit by constant propagation and, in the 526 # next round of opt_algebraic, get picked up by one of the above two. 527 (('bcsel', '#a', b, c), ('bcsel', ('ine', 'a', 0), b, c)), 528 529 (('bcsel', a, b, b), b), 530 (('fcsel', a, b, b), b), 531 532 # Conversions 533 (('i2b', ('b2i', a)), a), 534 (('i2b', 'a@bool'), a), 535 (('f2i32', ('ftrunc', a)), ('f2i32', a)), 536 (('f2u32', ('ftrunc', a)), ('f2u32', a)), 537 (('i2b', ('ineg', a)), ('i2b', a)), 538 (('i2b', ('iabs', a)), ('i2b', a)), 539 (('fabs', ('b2f', a)), ('b2f', a)), 540 (('iabs', ('b2i', a)), ('b2i', a)), 541 (('inot', ('f2b', a)), ('feq', a, 0.0)), 542 543 # Ironically, mark these as imprecise because removing the conversions may 544 # preserve more precision than doing the conversions (e.g., 545 # uint(float(0x81818181u)) == 0x81818200). 546 (('~f2i32', ('i2f32', 'a@32')), a), 547 (('~f2i32', ('u2f32', 'a@32')), a), 548 (('~f2u32', ('i2f32', 'a@32')), a), 549 (('~f2u32', ('u2f32', 'a@32')), a), 550 551 # Packing and then unpacking does nothing 552 (('unpack_64_2x32_split_x', ('pack_64_2x32_split', a, b)), a), 553 (('unpack_64_2x32_split_y', ('pack_64_2x32_split', a, b)), b), 554 (('pack_64_2x32_split', ('unpack_64_2x32_split_x', a), 555 ('unpack_64_2x32_split_y', a)), a), 556 557 # Byte extraction 558 (('ushr', ('ishl', 'a@32', 24), 24), ('extract_u8', a, 0), '!options->lower_extract_byte'), 559 (('ushr', ('ishl', 'a@32', 16), 24), ('extract_u8', a, 1), '!options->lower_extract_byte'), 560 (('ushr', ('ishl', 'a@32', 8), 24), ('extract_u8', a, 2), '!options->lower_extract_byte'), 561 (('ushr', 'a@32', 24), ('extract_u8', a, 3), '!options->lower_extract_byte'), 562 (('ishr', ('ishl', 'a@32', 24), 24), ('extract_i8', a, 0), '!options->lower_extract_byte'), 563 (('ishr', ('ishl', 'a@32', 16), 24), ('extract_i8', a, 1), '!options->lower_extract_byte'), 564 (('ishr', ('ishl', 'a@32', 8), 24), ('extract_i8', a, 2), '!options->lower_extract_byte'), 565 (('ishr', 'a@32', 24), ('extract_i8', a, 3), '!options->lower_extract_byte'), 566 (('iand', 0xff, ('ushr', a, 16)), ('extract_u8', a, 2), '!options->lower_extract_byte'), 567 (('iand', 0xff, ('ushr', a, 8)), ('extract_u8', a, 1), '!options->lower_extract_byte'), 568 (('iand', 0xff, a), ('extract_u8', a, 0), '!options->lower_extract_byte'), 569 570 # Word extraction 571 (('ushr', ('ishl', 'a@32', 16), 16), ('extract_u16', a, 0), '!options->lower_extract_word'), 572 (('ushr', 'a@32', 16), ('extract_u16', a, 1), '!options->lower_extract_word'), 573 (('ishr', ('ishl', 'a@32', 16), 16), ('extract_i16', a, 0), '!options->lower_extract_word'), 574 (('ishr', 'a@32', 16), ('extract_i16', a, 1), '!options->lower_extract_word'), 575 (('iand', 0xffff, a), ('extract_u16', a, 0), '!options->lower_extract_word'), 576 577 # Subtracts 578 (('~fsub', a, ('fsub', 0.0, b)), ('fadd', a, b)), 579 (('isub', a, ('isub', 0, b)), ('iadd', a, b)), 580 (('ussub_4x8', a, 0), a), 581 (('ussub_4x8', a, ~0), 0), 582 (('fsub', a, b), ('fadd', a, ('fneg', b)), 'options->lower_sub'), 583 (('isub', a, b), ('iadd', a, ('ineg', b)), 'options->lower_sub'), 584 (('fneg', a), ('fsub', 0.0, a), 'options->lower_negate'), 585 (('ineg', a), ('isub', 0, a), 'options->lower_negate'), 586 (('~fadd', a, ('fsub', 0.0, b)), ('fsub', a, b)), 587 (('iadd', a, ('isub', 0, b)), ('isub', a, b)), 588 (('fabs', ('fsub', 0.0, a)), ('fabs', a)), 589 (('iabs', ('isub', 0, a)), ('iabs', a)), 590 591 # Propagate negation up multiplication chains 592 (('fmul', ('fneg', a), b), ('fneg', ('fmul', a, b))), 593 (('imul', ('ineg', a), b), ('ineg', ('imul', a, b))), 594 595 # Propagate constants up multiplication chains 596 (('~fmul(is_used_once)', ('fmul(is_used_once)', 'a(is_not_const)', 'b(is_not_const)'), '#c'), ('fmul', ('fmul', a, c), b)), 597 (('imul(is_used_once)', ('imul(is_used_once)', 'a(is_not_const)', 'b(is_not_const)'), '#c'), ('imul', ('imul', a, c), b)), 598 (('~fadd(is_used_once)', ('fadd(is_used_once)', 'a(is_not_const)', 'b(is_not_const)'), '#c'), ('fadd', ('fadd', a, c), b)), 599 (('iadd(is_used_once)', ('iadd(is_used_once)', 'a(is_not_const)', 'b(is_not_const)'), '#c'), ('iadd', ('iadd', a, c), b)), 600 601 # Reassociate constants in add/mul chains so they can be folded together. 602 # For now, we mostly only handle cases where the constants are separated by 603 # a single non-constant. We could do better eventually. 604 (('~fmul', '#a', ('fmul', b, '#c')), ('fmul', ('fmul', a, c), b)), 605 (('imul', '#a', ('imul', b, '#c')), ('imul', ('imul', a, c), b)), 606 (('~fadd', '#a', ('fadd', b, '#c')), ('fadd', ('fadd', a, c), b)), 607 (('~fadd', '#a', ('fneg', ('fadd', b, '#c'))), ('fadd', ('fadd', a, ('fneg', c)), ('fneg', b))), 608 (('iadd', '#a', ('iadd', b, '#c')), ('iadd', ('iadd', a, c), b)), 609 610 # By definition... 611 (('bcsel', ('ige', ('find_lsb', a), 0), ('find_lsb', a), -1), ('find_lsb', a)), 612 (('bcsel', ('ige', ('ifind_msb', a), 0), ('ifind_msb', a), -1), ('ifind_msb', a)), 613 (('bcsel', ('ige', ('ufind_msb', a), 0), ('ufind_msb', a), -1), ('ufind_msb', a)), 614 615 (('bcsel', ('ine', a, 0), ('find_lsb', a), -1), ('find_lsb', a)), 616 (('bcsel', ('ine', a, 0), ('ifind_msb', a), -1), ('ifind_msb', a)), 617 (('bcsel', ('ine', a, 0), ('ufind_msb', a), -1), ('ufind_msb', a)), 618 619 (('bcsel', ('ine', a, -1), ('ifind_msb', a), -1), ('ifind_msb', a)), 620 621 # Misc. lowering 622 (('fmod@32', a, b), ('fsub', a, ('fmul', b, ('ffloor', ('fdiv', a, b)))), 'options->lower_fmod32'), 623 (('fmod@64', a, b), ('fsub', a, ('fmul', b, ('ffloor', ('fdiv', a, b)))), 'options->lower_fmod64'), 624 (('frem', a, b), ('fsub', a, ('fmul', b, ('ftrunc', ('fdiv', a, b)))), 'options->lower_fmod32'), 625 (('uadd_carry@32', a, b), ('b2i', ('ult', ('iadd', a, b), a)), 'options->lower_uadd_carry'), 626 (('usub_borrow@32', a, b), ('b2i', ('ult', a, b)), 'options->lower_usub_borrow'), 627 628 (('bitfield_insert', 'base', 'insert', 'offset', 'bits'), 629 ('bcsel', ('ilt', 31, 'bits'), 'insert', 630 ('bfi', ('bfm', 'bits', 'offset'), 'insert', 'base')), 631 'options->lower_bitfield_insert'), 632 633 # Alternative lowering that doesn't rely on bfi. 634 (('bitfield_insert', 'base', 'insert', 'offset', 'bits'), 635 ('bcsel', ('ilt', 31, 'bits'), 636 'insert', 637 ('ior', 638 ('iand', 'base', ('inot', ('bfm', 'bits', 'offset'))), 639 ('iand', ('ishl', 'insert', 'offset'), ('bfm', 'bits', 'offset')))), 640 'options->lower_bitfield_insert_to_shifts'), 641 642 # bfm lowering -- note that the NIR opcode is undefined if either arg is 32. 643 (('bfm', 'bits', 'offset'), 644 ('ishl', ('isub', ('ishl', 1, 'bits'), 1), 'offset'), 645 'options->lower_bfm'), 646 647 (('ibitfield_extract', 'value', 'offset', 'bits'), 648 ('bcsel', ('ilt', 31, 'bits'), 'value', 649 ('ibfe', 'value', 'offset', 'bits')), 650 'options->lower_bitfield_extract'), 651 652 (('ubitfield_extract', 'value', 'offset', 'bits'), 653 ('bcsel', ('ult', 31, 'bits'), 'value', 654 ('ubfe', 'value', 'offset', 'bits')), 655 'options->lower_bitfield_extract'), 656 657 (('ibitfield_extract', 'value', 'offset', 'bits'), 658 ('bcsel', ('ieq', 0, 'bits'), 659 0, 660 ('ishr', 661 ('ishl', 'value', ('isub', ('isub', 32, 'bits'), 'offset')), 662 ('isub', 32, 'bits'))), 663 'options->lower_bitfield_extract_to_shifts'), 664 665 (('ubitfield_extract', 'value', 'offset', 'bits'), 666 ('iand', 667 ('ushr', 'value', 'offset'), 668 ('bcsel', ('ieq', 'bits', 32), 669 0xffffffff, 670 ('bfm', 'bits', 0))), 671 'options->lower_bitfield_extract_to_shifts'), 672 673 (('ifind_msb', 'value'), 674 ('ufind_msb', ('bcsel', ('ilt', 'value', 0), ('inot', 'value'), 'value')), 675 'options->lower_ifind_msb'), 676 677 (('find_lsb', 'value'), 678 ('ufind_msb', ('iand', 'value', ('ineg', 'value'))), 679 'options->lower_find_lsb'), 680 681 (('extract_i8', a, 'b@32'), 682 ('ishr', ('ishl', a, ('imul', ('isub', 3, b), 8)), 24), 683 'options->lower_extract_byte'), 684 685 (('extract_u8', a, 'b@32'), 686 ('iand', ('ushr', a, ('imul', b, 8)), 0xff), 687 'options->lower_extract_byte'), 688 689 (('extract_i16', a, 'b@32'), 690 ('ishr', ('ishl', a, ('imul', ('isub', 1, b), 16)), 16), 691 'options->lower_extract_word'), 692 693 (('extract_u16', a, 'b@32'), 694 ('iand', ('ushr', a, ('imul', b, 16)), 0xffff), 695 'options->lower_extract_word'), 696 697 (('pack_unorm_2x16', 'v'), 698 ('pack_uvec2_to_uint', 699 ('f2u32', ('fround_even', ('fmul', ('fsat', 'v'), 65535.0)))), 700 'options->lower_pack_unorm_2x16'), 701 702 (('pack_unorm_4x8', 'v'), 703 ('pack_uvec4_to_uint', 704 ('f2u32', ('fround_even', ('fmul', ('fsat', 'v'), 255.0)))), 705 'options->lower_pack_unorm_4x8'), 706 707 (('pack_snorm_2x16', 'v'), 708 ('pack_uvec2_to_uint', 709 ('f2i32', ('fround_even', ('fmul', ('fmin', 1.0, ('fmax', -1.0, 'v')), 32767.0)))), 710 'options->lower_pack_snorm_2x16'), 711 712 (('pack_snorm_4x8', 'v'), 713 ('pack_uvec4_to_uint', 714 ('f2i32', ('fround_even', ('fmul', ('fmin', 1.0, ('fmax', -1.0, 'v')), 127.0)))), 715 'options->lower_pack_snorm_4x8'), 716 717 (('unpack_unorm_2x16', 'v'), 718 ('fdiv', ('u2f32', ('vec2', ('extract_u16', 'v', 0), 719 ('extract_u16', 'v', 1))), 720 65535.0), 721 'options->lower_unpack_unorm_2x16'), 722 723 (('unpack_unorm_4x8', 'v'), 724 ('fdiv', ('u2f32', ('vec4', ('extract_u8', 'v', 0), 725 ('extract_u8', 'v', 1), 726 ('extract_u8', 'v', 2), 727 ('extract_u8', 'v', 3))), 728 255.0), 729 'options->lower_unpack_unorm_4x8'), 730 731 (('unpack_snorm_2x16', 'v'), 732 ('fmin', 1.0, ('fmax', -1.0, ('fdiv', ('i2f32', ('vec2', ('extract_i16', 'v', 0), 733 ('extract_i16', 'v', 1))), 734 32767.0))), 735 'options->lower_unpack_snorm_2x16'), 736 737 (('unpack_snorm_4x8', 'v'), 738 ('fmin', 1.0, ('fmax', -1.0, ('fdiv', ('i2f32', ('vec4', ('extract_i8', 'v', 0), 739 ('extract_i8', 'v', 1), 740 ('extract_i8', 'v', 2), 741 ('extract_i8', 'v', 3))), 742 127.0))), 743 'options->lower_unpack_snorm_4x8'), 744] 745 746invert = OrderedDict([('feq', 'fne'), ('fne', 'feq'), ('fge', 'flt'), ('flt', 'fge')]) 747 748for left, right in itertools.combinations_with_replacement(invert.keys(), 2): 749 optimizations.append((('inot', ('ior(is_used_once)', (left, a, b), (right, c, d))), 750 ('iand', (invert[left], a, b), (invert[right], c, d)))) 751 optimizations.append((('inot', ('iand(is_used_once)', (left, a, b), (right, c, d))), 752 ('ior', (invert[left], a, b), (invert[right], c, d)))) 753 754# Optimize x2yN(b2x(x)) -> b2y 755optimizations.append((('f2b', ('b2f', a)), a)) 756optimizations.append((('i2b', ('b2i', a)), a)) 757for x, y in itertools.product(['f', 'u', 'i'], ['f', 'u', 'i']): 758 if x != 'f' and y != 'f' and x != y: 759 continue 760 761 b2x = 'b2f' if x == 'f' else 'b2i' 762 b2y = 'b2f' if y == 'f' else 'b2i' 763 764 for N in [8, 16, 32, 64]: 765 if y == 'f' and N == 8: 766 continue 767 768 x2yN = '{}2{}{}'.format(x, y, N) 769 optimizations.append(((x2yN, (b2x, a)), (b2y, a))) 770 771def fexp2i(exp, bits): 772 # We assume that exp is already in the right range. 773 if bits == 32: 774 return ('ishl', ('iadd', exp, 127), 23) 775 elif bits == 64: 776 return ('pack_64_2x32_split', 0, ('ishl', ('iadd', exp, 1023), 20)) 777 else: 778 assert False 779 780def ldexp(f, exp, bits): 781 # First, we clamp exp to a reasonable range. The maximum possible range 782 # for a normal exponent is [-126, 127] and, throwing in denormals, you get 783 # a maximum range of [-149, 127]. This means that we can potentially have 784 # a swing of +-276. If you start with FLT_MAX, you actually have to do 785 # ldexp(FLT_MAX, -278) to get it to flush all the way to zero. The GLSL 786 # spec, on the other hand, only requires that we handle an exponent value 787 # in the range [-126, 128]. This implementation is *mostly* correct; it 788 # handles a range on exp of [-252, 254] which allows you to create any 789 # value (including denorms if the hardware supports it) and to adjust the 790 # exponent of any normal value to anything you want. 791 if bits == 32: 792 exp = ('imin', ('imax', exp, -252), 254) 793 elif bits == 64: 794 exp = ('imin', ('imax', exp, -2044), 2046) 795 else: 796 assert False 797 798 # Now we compute two powers of 2, one for exp/2 and one for exp-exp/2. 799 # (We use ishr which isn't the same for -1, but the -1 case still works 800 # since we use exp-exp/2 as the second exponent.) While the spec 801 # technically defines ldexp as f * 2.0^exp, simply multiplying once doesn't 802 # work with denormals and doesn't allow for the full swing in exponents 803 # that you can get with normalized values. Instead, we create two powers 804 # of two and multiply by them each in turn. That way the effective range 805 # of our exponent is doubled. 806 pow2_1 = fexp2i(('ishr', exp, 1), bits) 807 pow2_2 = fexp2i(('isub', exp, ('ishr', exp, 1)), bits) 808 return ('fmul', ('fmul', f, pow2_1), pow2_2) 809 810optimizations += [ 811 (('ldexp@32', 'x', 'exp'), ldexp('x', 'exp', 32), 'options->lower_ldexp'), 812 (('ldexp@64', 'x', 'exp'), ldexp('x', 'exp', 64), 'options->lower_ldexp'), 813] 814 815# Unreal Engine 4 demo applications open-codes bitfieldReverse() 816def bitfield_reverse(u): 817 step1 = ('ior', ('ishl', u, 16), ('ushr', u, 16)) 818 step2 = ('ior', ('ishl', ('iand', step1, 0x00ff00ff), 8), ('ushr', ('iand', step1, 0xff00ff00), 8)) 819 step3 = ('ior', ('ishl', ('iand', step2, 0x0f0f0f0f), 4), ('ushr', ('iand', step2, 0xf0f0f0f0), 4)) 820 step4 = ('ior', ('ishl', ('iand', step3, 0x33333333), 2), ('ushr', ('iand', step3, 0xcccccccc), 2)) 821 step5 = ('ior', ('ishl', ('iand', step4, 0x55555555), 1), ('ushr', ('iand', step4, 0xaaaaaaaa), 1)) 822 823 return step5 824 825optimizations += [(bitfield_reverse('x@32'), ('bitfield_reverse', 'x'))] 826 827# For any float comparison operation, "cmp", if you have "a == a && a cmp b" 828# then the "a == a" is redundant because it's equivalent to "a is not NaN" 829# and, if a is a NaN then the second comparison will fail anyway. 830for op in ['flt', 'fge', 'feq']: 831 optimizations += [ 832 (('iand', ('feq', a, a), (op, a, b)), (op, a, b)), 833 (('iand', ('feq', a, a), (op, b, a)), (op, b, a)), 834 ] 835 836# Add optimizations to handle the case where the result of a ternary is 837# compared to a constant. This way we can take things like 838# 839# (a ? 0 : 1) > 0 840# 841# and turn it into 842# 843# a ? (0 > 0) : (1 > 0) 844# 845# which constant folding will eat for lunch. The resulting ternary will 846# further get cleaned up by the boolean reductions above and we will be 847# left with just the original variable "a". 848for op in ['flt', 'fge', 'feq', 'fne', 849 'ilt', 'ige', 'ieq', 'ine', 'ult', 'uge']: 850 optimizations += [ 851 ((op, ('bcsel', 'a', '#b', '#c'), '#d'), 852 ('bcsel', 'a', (op, 'b', 'd'), (op, 'c', 'd'))), 853 ((op, '#d', ('bcsel', a, '#b', '#c')), 854 ('bcsel', 'a', (op, 'd', 'b'), (op, 'd', 'c'))), 855 ] 856 857 858# For example, this converts things like 859# 860# 1 + mix(0, a - 1, condition) 861# 862# into 863# 864# mix(1, (a-1)+1, condition) 865# 866# Other optimizations will rearrange the constants. 867for op in ['fadd', 'fmul', 'iadd', 'imul']: 868 optimizations += [ 869 ((op, ('bcsel(is_used_once)', a, '#b', c), '#d'), ('bcsel', a, (op, b, d), (op, c, d))) 870 ] 871 872# This section contains "late" optimizations that should be run before 873# creating ffmas and calling regular optimizations for the final time. 874# Optimizations should go here if they help code generation and conflict 875# with the regular optimizations. 876before_ffma_optimizations = [ 877 # Propagate constants down multiplication chains 878 (('~fmul(is_used_once)', ('fmul(is_used_once)', 'a(is_not_const)', '#b'), 'c(is_not_const)'), ('fmul', ('fmul', a, c), b)), 879 (('imul(is_used_once)', ('imul(is_used_once)', 'a(is_not_const)', '#b'), 'c(is_not_const)'), ('imul', ('imul', a, c), b)), 880 (('~fadd(is_used_once)', ('fadd(is_used_once)', 'a(is_not_const)', '#b'), 'c(is_not_const)'), ('fadd', ('fadd', a, c), b)), 881 (('iadd(is_used_once)', ('iadd(is_used_once)', 'a(is_not_const)', '#b'), 'c(is_not_const)'), ('iadd', ('iadd', a, c), b)), 882 883 (('~fadd', ('fmul', a, b), ('fmul', a, c)), ('fmul', a, ('fadd', b, c))), 884 (('iadd', ('imul', a, b), ('imul', a, c)), ('imul', a, ('iadd', b, c))), 885 (('~fadd', ('fneg', a), a), 0.0), 886 (('iadd', ('ineg', a), a), 0), 887 (('iadd', ('ineg', a), ('iadd', a, b)), b), 888 (('iadd', a, ('iadd', ('ineg', a), b)), b), 889 (('~fadd', ('fneg', a), ('fadd', a, b)), b), 890 (('~fadd', a, ('fadd', ('fneg', a), b)), b), 891] 892 893# This section contains "late" optimizations that should be run after the 894# regular optimizations have finished. Optimizations should go here if 895# they help code generation but do not necessarily produce code that is 896# more easily optimizable. 897late_optimizations = [ 898 # Most of these optimizations aren't quite safe when you get infinity or 899 # Nan involved but the first one should be fine. 900 (('flt', ('fadd', a, b), 0.0), ('flt', a, ('fneg', b))), 901 (('flt', ('fneg', ('fadd', a, b)), 0.0), ('flt', ('fneg', a), b)), 902 (('~fge', ('fadd', a, b), 0.0), ('fge', a, ('fneg', b))), 903 (('~fge', ('fneg', ('fadd', a, b)), 0.0), ('fge', ('fneg', a), b)), 904 (('~feq', ('fadd', a, b), 0.0), ('feq', a, ('fneg', b))), 905 (('~fne', ('fadd', a, b), 0.0), ('fne', a, ('fneg', b))), 906 907 (('~fge', ('fmin(is_used_once)', ('fadd(is_used_once)', a, b), ('fadd', c, d)), 0.0), ('iand', ('fge', a, ('fneg', b)), ('fge', c, ('fneg', d)))), 908 909 (('fdot2', a, b), ('fdot_replicated2', a, b), 'options->fdot_replicates'), 910 (('fdot3', a, b), ('fdot_replicated3', a, b), 'options->fdot_replicates'), 911 (('fdot4', a, b), ('fdot_replicated4', a, b), 'options->fdot_replicates'), 912 (('fdph', a, b), ('fdph_replicated', a, b), 'options->fdot_replicates'), 913 914 (('b2f(is_used_more_than_once)', ('inot', a)), ('bcsel', a, 0.0, 1.0)), 915 (('fneg(is_used_more_than_once)', ('b2f', ('inot', a))), ('bcsel', a, -0.0, -1.0)), 916 917 # we do these late so that we don't get in the way of creating ffmas 918 (('fmin', ('fadd(is_used_once)', '#c', a), ('fadd(is_used_once)', '#c', b)), ('fadd', c, ('fmin', a, b))), 919 (('fmax', ('fadd(is_used_once)', '#c', a), ('fadd(is_used_once)', '#c', b)), ('fadd', c, ('fmax', a, b))), 920 921 # Lowered for backends without a dedicated b2f instruction 922 (('b2f@32', a), ('iand', a, 1.0), 'options->lower_b2f'), 923] 924 925print(nir_algebraic.AlgebraicPass("nir_opt_algebraic", optimizations).render()) 926print(nir_algebraic.AlgebraicPass("nir_opt_algebraic_before_ffma", 927 before_ffma_optimizations).render()) 928print(nir_algebraic.AlgebraicPass("nir_opt_algebraic_late", 929 late_optimizations).render()) 930