nir: Merge redudant integer clamping.
[mesa.git] / src / compiler / nir / nir_opt_algebraic.py
1 #! /usr/bin/env python
2 #
3 # Copyright (C) 2014 Intel Corporation
4 #
5 # Permission is hereby granted, free of charge, to any person obtaining a
6 # copy of this software and associated documentation files (the "Software"),
7 # to deal in the Software without restriction, including without limitation
8 # the rights to use, copy, modify, merge, publish, distribute, sublicense,
9 # and/or sell copies of the Software, and to permit persons to whom the
10 # Software is furnished to do so, subject to the following conditions:
11 #
12 # The above copyright notice and this permission notice (including the next
13 # paragraph) shall be included in all copies or substantial portions of the
14 # Software.
15 #
16 # THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 # IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 # FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 # THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 # LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
21 # FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
22 # IN THE SOFTWARE.
23 #
24 # Authors:
25 # Jason Ekstrand (jason@jlekstrand.net)
26
27 import nir_algebraic
28
29 # Convenience variables
30 a = 'a'
31 b = 'b'
32 c = 'c'
33 d = 'd'
34
35 # Written in the form (<search>, <replace>) where <search> is an expression
36 # and <replace> is either an expression or a value. An expression is
37 # defined as a tuple of the form ([~]<op>, <src0>, <src1>, <src2>, <src3>)
38 # where each source is either an expression or a value. A value can be
39 # either a numeric constant or a string representing a variable name.
40 #
41 # If the opcode in a search expression is prefixed by a '~' character, this
42 # indicates that the operation is inexact. Such operations will only get
43 # applied to SSA values that do not have the exact bit set. This should be
44 # used by by any optimizations that are not bit-for-bit exact. It should not,
45 # however, be used for backend-requested lowering operations as those need to
46 # happen regardless of precision.
47 #
48 # Variable names are specified as "[#]name[@type]" where "#" inicates that
49 # the given variable will only match constants and the type indicates that
50 # the given variable will only match values from ALU instructions with the
51 # given output type.
52 #
53 # For constants, you have to be careful to make sure that it is the right
54 # type because python is unaware of the source and destination types of the
55 # opcodes.
56
57 optimizations = [
58 (('fneg', ('fneg', a)), a),
59 (('ineg', ('ineg', a)), a),
60 (('fabs', ('fabs', a)), ('fabs', a)),
61 (('fabs', ('fneg', a)), ('fabs', a)),
62 (('iabs', ('iabs', a)), ('iabs', a)),
63 (('iabs', ('ineg', a)), ('iabs', a)),
64 (('~fadd', a, 0.0), a),
65 (('iadd', a, 0), a),
66 (('usadd_4x8', a, 0), a),
67 (('usadd_4x8', a, ~0), ~0),
68 (('~fadd', ('fmul', a, b), ('fmul', a, c)), ('fmul', a, ('fadd', b, c))),
69 (('iadd', ('imul', a, b), ('imul', a, c)), ('imul', a, ('iadd', b, c))),
70 (('~fadd', ('fneg', a), a), 0.0),
71 (('iadd', ('ineg', a), a), 0),
72 (('iadd', ('ineg', a), ('iadd', a, b)), b),
73 (('iadd', a, ('iadd', ('ineg', a), b)), b),
74 (('~fadd', ('fneg', a), ('fadd', a, b)), b),
75 (('~fadd', a, ('fadd', ('fneg', a), b)), b),
76 (('~fmul', a, 0.0), 0.0),
77 (('imul', a, 0), 0),
78 (('umul_unorm_4x8', a, 0), 0),
79 (('umul_unorm_4x8', a, ~0), a),
80 (('fmul', a, 1.0), a),
81 (('imul', a, 1), a),
82 (('fmul', a, -1.0), ('fneg', a)),
83 (('imul', a, -1), ('ineg', a)),
84 (('~ffma', 0.0, a, b), b),
85 (('~ffma', a, 0.0, b), b),
86 (('~ffma', a, b, 0.0), ('fmul', a, b)),
87 (('ffma', a, 1.0, b), ('fadd', a, b)),
88 (('ffma', 1.0, a, b), ('fadd', a, b)),
89 (('~flrp', a, b, 0.0), a),
90 (('~flrp', a, b, 1.0), b),
91 (('~flrp', a, a, b), a),
92 (('~flrp', 0.0, a, b), ('fmul', a, b)),
93 (('~flrp', a, b, ('b2f', c)), ('bcsel', c, b, a), 'options->lower_flrp'),
94 (('flrp', a, b, c), ('fadd', ('fmul', c, ('fsub', b, a)), a), 'options->lower_flrp'),
95 (('ffract', a), ('fsub', a, ('ffloor', a)), 'options->lower_ffract'),
96 (('~fadd', ('fmul', a, ('fadd', 1.0, ('fneg', ('b2f', c)))), ('fmul', b, ('b2f', c))), ('bcsel', c, b, a), 'options->lower_flrp'),
97 (('~fadd', ('fmul', a, ('fadd', 1.0, ('fneg', c ))), ('fmul', b, c )), ('flrp', a, b, c), '!options->lower_flrp'),
98 (('~fadd', a, ('fmul', ('b2f', c), ('fadd', b, ('fneg', a)))), ('bcsel', c, b, a), 'options->lower_flrp'),
99 (('~fadd', a, ('fmul', c , ('fadd', b, ('fneg', a)))), ('flrp', a, b, c), '!options->lower_flrp'),
100 (('ffma', a, b, c), ('fadd', ('fmul', a, b), c), 'options->lower_ffma'),
101 (('~fadd', ('fmul', a, b), c), ('ffma', a, b, c), '!options->lower_ffma'),
102 # Comparison simplifications
103 (('~inot', ('flt', a, b)), ('fge', a, b)),
104 (('~inot', ('fge', a, b)), ('flt', a, b)),
105 (('~inot', ('feq', a, b)), ('fne', a, b)),
106 (('~inot', ('fne', a, b)), ('feq', a, b)),
107 (('inot', ('ilt', a, b)), ('ige', a, b)),
108 (('inot', ('ige', a, b)), ('ilt', a, b)),
109 (('inot', ('ieq', a, b)), ('ine', a, b)),
110 (('inot', ('ine', a, b)), ('ieq', a, b)),
111
112 # 0.0 >= b2f(a)
113 # b2f(a) <= 0.0
114 # b2f(a) == 0.0 because b2f(a) can only be 0 or 1
115 # inot(a)
116 (('fge', 0.0, ('b2f', a)), ('inot', a)),
117
118 # 0.0 < fabs(a)
119 # fabs(a) > 0.0
120 # fabs(a) != 0.0 because fabs(a) must be >= 0
121 # a != 0.0
122 (('flt', 0.0, ('fabs', a)), ('fne', a, 0.0)),
123
124 (('fge', ('fneg', ('fabs', a)), 0.0), ('feq', a, 0.0)),
125 (('bcsel', ('flt', b, a), b, a), ('fmin', a, b)),
126 (('bcsel', ('flt', a, b), b, a), ('fmax', a, b)),
127 (('bcsel', ('inot', 'a@bool'), b, c), ('bcsel', a, c, b)),
128 (('bcsel', a, ('bcsel', a, b, c), d), ('bcsel', a, b, d)),
129 (('bcsel', a, True, 'b@bool'), ('ior', a, b)),
130 (('fmin', a, a), a),
131 (('fmax', a, a), a),
132 (('imin', a, a), a),
133 (('imax', a, a), a),
134 (('umin', a, a), a),
135 (('umax', a, a), a),
136 (('~fmin', ('fmax', a, 0.0), 1.0), ('fsat', a), '!options->lower_fsat'),
137 (('~fmax', ('fmin', a, 1.0), 0.0), ('fsat', a), '!options->lower_fsat'),
138 (('fsat', a), ('fmin', ('fmax', a, 0.0), 1.0), 'options->lower_fsat'),
139 (('fsat', ('fsat', a)), ('fsat', a)),
140 (('fmin', ('fmax', ('fmin', ('fmax', a, b), c), b), c), ('fmin', ('fmax', a, b), c)),
141 (('imin', ('imax', ('imin', ('imax', a, b), c), b), c), ('imin', ('imax', a, b), c)),
142 (('umin', ('umax', ('umin', ('umax', a, b), c), b), c), ('umin', ('umax', a, b), c)),
143 (('extract_u8', ('imin', ('imax', a, 0), 0xff), 0), ('imin', ('imax', a, 0), 0xff)),
144 (('~ior', ('flt', a, b), ('flt', a, c)), ('flt', a, ('fmax', b, c))),
145 (('~ior', ('flt', a, c), ('flt', b, c)), ('flt', ('fmin', a, b), c)),
146 (('~ior', ('fge', a, b), ('fge', a, c)), ('fge', a, ('fmin', b, c))),
147 (('~ior', ('fge', a, c), ('fge', b, c)), ('fge', ('fmax', a, b), c)),
148 (('fabs', ('slt', a, b)), ('slt', a, b)),
149 (('fabs', ('sge', a, b)), ('sge', a, b)),
150 (('fabs', ('seq', a, b)), ('seq', a, b)),
151 (('fabs', ('sne', a, b)), ('sne', a, b)),
152 (('slt', a, b), ('b2f', ('flt', a, b)), 'options->lower_scmp'),
153 (('sge', a, b), ('b2f', ('fge', a, b)), 'options->lower_scmp'),
154 (('seq', a, b), ('b2f', ('feq', a, b)), 'options->lower_scmp'),
155 (('sne', a, b), ('b2f', ('fne', a, b)), 'options->lower_scmp'),
156 (('fne', ('fneg', a), a), ('fne', a, 0.0)),
157 (('feq', ('fneg', a), a), ('feq', a, 0.0)),
158 # Emulating booleans
159 (('imul', ('b2i', a), ('b2i', b)), ('b2i', ('iand', a, b))),
160 (('fmul', ('b2f', a), ('b2f', b)), ('b2f', ('iand', a, b))),
161 (('fsat', ('fadd', ('b2f', a), ('b2f', b))), ('b2f', ('ior', a, b))),
162 (('iand', 'a@bool', 1.0), ('b2f', a)),
163 (('flt', ('fneg', ('b2f', a)), 0), a), # Generated by TGSI KILL_IF.
164 (('flt', ('fsub', 0.0, ('b2f', a)), 0), a), # Generated by TGSI KILL_IF.
165 # Comparison with the same args. Note that these are not done for
166 # the float versions because NaN always returns false on float
167 # inequalities.
168 (('ilt', a, a), False),
169 (('ige', a, a), True),
170 (('ieq', a, a), True),
171 (('ine', a, a), False),
172 (('ult', a, a), False),
173 (('uge', a, a), True),
174 # Logical and bit operations
175 (('fand', a, 0.0), 0.0),
176 (('iand', a, a), a),
177 (('iand', a, ~0), a),
178 (('iand', a, 0), 0),
179 (('ior', a, a), a),
180 (('ior', a, 0), a),
181 (('fxor', a, a), 0.0),
182 (('ixor', a, a), 0),
183 (('ixor', a, 0), a),
184 (('inot', ('inot', a)), a),
185 # DeMorgan's Laws
186 (('iand', ('inot', a), ('inot', b)), ('inot', ('ior', a, b))),
187 (('ior', ('inot', a), ('inot', b)), ('inot', ('iand', a, b))),
188 # Shift optimizations
189 (('ishl', 0, a), 0),
190 (('ishl', a, 0), a),
191 (('ishr', 0, a), 0),
192 (('ishr', a, 0), a),
193 (('ushr', 0, a), 0),
194 (('ushr', a, 0), a),
195 (('iand', 0xff, ('ushr', a, 24)), ('ushr', a, 24)),
196 (('iand', 0xffff, ('ushr', a, 16)), ('ushr', a, 16)),
197 # Exponential/logarithmic identities
198 (('~fexp2', ('flog2', a)), a), # 2^lg2(a) = a
199 (('~flog2', ('fexp2', a)), a), # lg2(2^a) = a
200 (('fpow', a, b), ('fexp2', ('fmul', ('flog2', a), b)), 'options->lower_fpow'), # a^b = 2^(lg2(a)*b)
201 (('~fexp2', ('fmul', ('flog2', a), b)), ('fpow', a, b), '!options->lower_fpow'), # 2^(lg2(a)*b) = a^b
202 (('~fexp2', ('fadd', ('fmul', ('flog2', a), b), ('fmul', ('flog2', c), d))),
203 ('~fmul', ('fpow', a, b), ('fpow', c, d)), '!options->lower_fpow'), # 2^(lg2(a) * b + lg2(c) + d) = a^b * c^d
204 (('~fpow', a, 1.0), a),
205 (('~fpow', a, 2.0), ('fmul', a, a)),
206 (('~fpow', a, 4.0), ('fmul', ('fmul', a, a), ('fmul', a, a))),
207 (('~fpow', 2.0, a), ('fexp2', a)),
208 (('~fpow', ('fpow', a, 2.2), 0.454545), a),
209 (('~fpow', ('fabs', ('fpow', a, 2.2)), 0.454545), ('fabs', a)),
210 (('~fsqrt', ('fexp2', a)), ('fexp2', ('fmul', 0.5, a))),
211 (('~frcp', ('fexp2', a)), ('fexp2', ('fneg', a))),
212 (('~frsq', ('fexp2', a)), ('fexp2', ('fmul', -0.5, a))),
213 (('~flog2', ('fsqrt', a)), ('fmul', 0.5, ('flog2', a))),
214 (('~flog2', ('frcp', a)), ('fneg', ('flog2', a))),
215 (('~flog2', ('frsq', a)), ('fmul', -0.5, ('flog2', a))),
216 (('~flog2', ('fpow', a, b)), ('fmul', b, ('flog2', a))),
217 (('~fadd', ('flog2', a), ('flog2', b)), ('flog2', ('fmul', a, b))),
218 (('~fadd', ('flog2', a), ('fneg', ('flog2', b))), ('flog2', ('fdiv', a, b))),
219 (('~fmul', ('fexp2', a), ('fexp2', b)), ('fexp2', ('fadd', a, b))),
220 # Division and reciprocal
221 (('~fdiv', 1.0, a), ('frcp', a)),
222 (('fdiv', a, b), ('fmul', a, ('frcp', b)), 'options->lower_fdiv'),
223 (('~frcp', ('frcp', a)), a),
224 (('~frcp', ('fsqrt', a)), ('frsq', a)),
225 (('fsqrt', a), ('frcp', ('frsq', a)), 'options->lower_fsqrt'),
226 (('~frcp', ('frsq', a)), ('fsqrt', a), '!options->lower_fsqrt'),
227 # Boolean simplifications
228 (('ieq', 'a@bool', True), a),
229 (('ine', 'a@bool', True), ('inot', a)),
230 (('ine', 'a@bool', False), a),
231 (('ieq', 'a@bool', False), ('inot', 'a')),
232 (('bcsel', a, True, False), ('ine', a, 0)),
233 (('bcsel', a, False, True), ('ieq', a, 0)),
234 (('bcsel', True, b, c), b),
235 (('bcsel', False, b, c), c),
236 # The result of this should be hit by constant propagation and, in the
237 # next round of opt_algebraic, get picked up by one of the above two.
238 (('bcsel', '#a', b, c), ('bcsel', ('ine', 'a', 0), b, c)),
239
240 (('bcsel', a, b, b), b),
241 (('fcsel', a, b, b), b),
242
243 # Conversions
244 (('i2b', ('b2i', a)), a),
245 (('f2i', ('ftrunc', a)), ('f2i', a)),
246 (('f2u', ('ftrunc', a)), ('f2u', a)),
247 (('i2b', ('ineg', a)), ('i2b', a)),
248 (('i2b', ('iabs', a)), ('i2b', a)),
249 (('fabs', ('b2f', a)), ('b2f', a)),
250 (('iabs', ('b2i', a)), ('b2i', a)),
251
252 # Byte extraction
253 (('ushr', a, 24), ('extract_u8', a, 3), '!options->lower_extract_byte'),
254 (('iand', 0xff, ('ushr', a, 16)), ('extract_u8', a, 2), '!options->lower_extract_byte'),
255 (('iand', 0xff, ('ushr', a, 8)), ('extract_u8', a, 1), '!options->lower_extract_byte'),
256 (('iand', 0xff, a), ('extract_u8', a, 0), '!options->lower_extract_byte'),
257
258 # Word extraction
259 (('ushr', a, 16), ('extract_u16', a, 1), '!options->lower_extract_word'),
260 (('iand', 0xffff, a), ('extract_u16', a, 0), '!options->lower_extract_word'),
261
262 # Subtracts
263 (('~fsub', a, ('fsub', 0.0, b)), ('fadd', a, b)),
264 (('isub', a, ('isub', 0, b)), ('iadd', a, b)),
265 (('ussub_4x8', a, 0), a),
266 (('ussub_4x8', a, ~0), 0),
267 (('fsub', a, b), ('fadd', a, ('fneg', b)), 'options->lower_sub'),
268 (('isub', a, b), ('iadd', a, ('ineg', b)), 'options->lower_sub'),
269 (('fneg', a), ('fsub', 0.0, a), 'options->lower_negate'),
270 (('ineg', a), ('isub', 0, a), 'options->lower_negate'),
271 (('~fadd', a, ('fsub', 0.0, b)), ('fsub', a, b)),
272 (('iadd', a, ('isub', 0, b)), ('isub', a, b)),
273 (('fabs', ('fsub', 0.0, a)), ('fabs', a)),
274 (('iabs', ('isub', 0, a)), ('iabs', a)),
275
276 # Propagate negation up multiplication chains
277 (('fmul', ('fneg', a), b), ('fneg', ('fmul', a, b))),
278 (('imul', ('ineg', a), b), ('ineg', ('imul', a, b))),
279
280 # Reassociate constants in add/mul chains so they can be folded together.
281 # For now, we only handle cases where the constants are separated by
282 # a single non-constant. We could do better eventually.
283 (('~fmul', '#a', ('fmul', b, '#c')), ('fmul', ('fmul', a, c), b)),
284 (('imul', '#a', ('imul', b, '#c')), ('imul', ('imul', a, c), b)),
285 (('~fadd', '#a', ('fadd', b, '#c')), ('fadd', ('fadd', a, c), b)),
286 (('iadd', '#a', ('iadd', b, '#c')), ('iadd', ('iadd', a, c), b)),
287
288 # Misc. lowering
289 (('fmod', a, b), ('fsub', a, ('fmul', b, ('ffloor', ('fdiv', a, b)))), 'options->lower_fmod'),
290 (('uadd_carry', a, b), ('b2i', ('ult', ('iadd', a, b), a)), 'options->lower_uadd_carry'),
291 (('usub_borrow', a, b), ('b2i', ('ult', a, b)), 'options->lower_usub_borrow'),
292
293 (('bitfield_insert', 'base', 'insert', 'offset', 'bits'),
294 ('bcsel', ('ilt', 31, 'bits'), 'insert',
295 ('bfi', ('bfm', 'bits', 'offset'), 'insert', 'base')),
296 'options->lower_bitfield_insert'),
297
298 (('ibitfield_extract', 'value', 'offset', 'bits'),
299 ('bcsel', ('ilt', 31, 'bits'), 'value',
300 ('ibfe', 'value', 'offset', 'bits')),
301 'options->lower_bitfield_extract'),
302
303 (('ubitfield_extract', 'value', 'offset', 'bits'),
304 ('bcsel', ('ult', 31, 'bits'), 'value',
305 ('ubfe', 'value', 'offset', 'bits')),
306 'options->lower_bitfield_extract'),
307
308 (('extract_i8', a, b),
309 ('ishr', ('ishl', a, ('imul', ('isub', 3, b), 8)), 24),
310 'options->lower_extract_byte'),
311
312 (('extract_u8', a, b),
313 ('iand', ('ushr', a, ('imul', b, 8)), 0xff),
314 'options->lower_extract_byte'),
315
316 (('extract_i16', a, b),
317 ('ishr', ('ishl', a, ('imul', ('isub', 1, b), 16)), 16),
318 'options->lower_extract_word'),
319
320 (('extract_u16', a, b),
321 ('iand', ('ushr', a, ('imul', b, 16)), 0xffff),
322 'options->lower_extract_word'),
323
324 (('pack_unorm_2x16', 'v'),
325 ('pack_uvec2_to_uint',
326 ('f2u', ('fround_even', ('fmul', ('fsat', 'v'), 65535.0)))),
327 'options->lower_pack_unorm_2x16'),
328
329 (('pack_unorm_4x8', 'v'),
330 ('pack_uvec4_to_uint',
331 ('f2u', ('fround_even', ('fmul', ('fsat', 'v'), 255.0)))),
332 'options->lower_pack_unorm_4x8'),
333
334 (('pack_snorm_2x16', 'v'),
335 ('pack_uvec2_to_uint',
336 ('f2i', ('fround_even', ('fmul', ('fmin', 1.0, ('fmax', -1.0, 'v')), 32767.0)))),
337 'options->lower_pack_snorm_2x16'),
338
339 (('pack_snorm_4x8', 'v'),
340 ('pack_uvec4_to_uint',
341 ('f2i', ('fround_even', ('fmul', ('fmin', 1.0, ('fmax', -1.0, 'v')), 127.0)))),
342 'options->lower_pack_snorm_4x8'),
343
344 (('unpack_unorm_2x16', 'v'),
345 ('fdiv', ('u2f', ('vec2', ('extract_u16', 'v', 0),
346 ('extract_u16', 'v', 1))),
347 65535.0),
348 'options->lower_unpack_unorm_2x16'),
349
350 (('unpack_unorm_4x8', 'v'),
351 ('fdiv', ('u2f', ('vec4', ('extract_u8', 'v', 0),
352 ('extract_u8', 'v', 1),
353 ('extract_u8', 'v', 2),
354 ('extract_u8', 'v', 3))),
355 255.0),
356 'options->lower_unpack_unorm_4x8'),
357
358 (('unpack_snorm_2x16', 'v'),
359 ('fmin', 1.0, ('fmax', -1.0, ('fdiv', ('i2f', ('vec2', ('extract_i16', 'v', 0),
360 ('extract_i16', 'v', 1))),
361 32767.0))),
362 'options->lower_unpack_snorm_2x16'),
363
364 (('unpack_snorm_4x8', 'v'),
365 ('fmin', 1.0, ('fmax', -1.0, ('fdiv', ('i2f', ('vec4', ('extract_i8', 'v', 0),
366 ('extract_i8', 'v', 1),
367 ('extract_i8', 'v', 2),
368 ('extract_i8', 'v', 3))),
369 127.0))),
370 'options->lower_unpack_snorm_4x8'),
371 ]
372
373 # Unreal Engine 4 demo applications open-codes bitfieldReverse()
374 def bitfield_reverse(u):
375 step1 = ('ior', ('ishl', u, 16), ('ushr', u, 16))
376 step2 = ('ior', ('ishl', ('iand', step1, 0x00ff00ff), 8), ('ushr', ('iand', step1, 0xff00ff00), 8))
377 step3 = ('ior', ('ishl', ('iand', step2, 0x0f0f0f0f), 4), ('ushr', ('iand', step2, 0xf0f0f0f0), 4))
378 step4 = ('ior', ('ishl', ('iand', step3, 0x33333333), 2), ('ushr', ('iand', step3, 0xcccccccc), 2))
379 step5 = ('ior', ('ishl', ('iand', step4, 0x55555555), 1), ('ushr', ('iand', step4, 0xaaaaaaaa), 1))
380
381 return step5
382
383 optimizations += [(bitfield_reverse('x'), ('bitfield_reverse', 'x'))]
384
385
386 # Add optimizations to handle the case where the result of a ternary is
387 # compared to a constant. This way we can take things like
388 #
389 # (a ? 0 : 1) > 0
390 #
391 # and turn it into
392 #
393 # a ? (0 > 0) : (1 > 0)
394 #
395 # which constant folding will eat for lunch. The resulting ternary will
396 # further get cleaned up by the boolean reductions above and we will be
397 # left with just the original variable "a".
398 for op in ['flt', 'fge', 'feq', 'fne',
399 'ilt', 'ige', 'ieq', 'ine', 'ult', 'uge']:
400 optimizations += [
401 ((op, ('bcsel', 'a', '#b', '#c'), '#d'),
402 ('bcsel', 'a', (op, 'b', 'd'), (op, 'c', 'd'))),
403 ((op, '#d', ('bcsel', a, '#b', '#c')),
404 ('bcsel', 'a', (op, 'd', 'b'), (op, 'd', 'c'))),
405 ]
406
407 # This section contains "late" optimizations that should be run after the
408 # regular optimizations have finished. Optimizations should go here if
409 # they help code generation but do not necessarily produce code that is
410 # more easily optimizable.
411 late_optimizations = [
412 # Most of these optimizations aren't quite safe when you get infinity or
413 # Nan involved but the first one should be fine.
414 (('flt', ('fadd', a, b), 0.0), ('flt', a, ('fneg', b))),
415 (('~fge', ('fadd', a, b), 0.0), ('fge', a, ('fneg', b))),
416 (('~feq', ('fadd', a, b), 0.0), ('feq', a, ('fneg', b))),
417 (('~fne', ('fadd', a, b), 0.0), ('fne', a, ('fneg', b))),
418
419 (('fdot2', a, b), ('fdot_replicated2', a, b), 'options->fdot_replicates'),
420 (('fdot3', a, b), ('fdot_replicated3', a, b), 'options->fdot_replicates'),
421 (('fdot4', a, b), ('fdot_replicated4', a, b), 'options->fdot_replicates'),
422 (('fdph', a, b), ('fdph_replicated', a, b), 'options->fdot_replicates'),
423 ]
424
425 print nir_algebraic.AlgebraicPass("nir_opt_algebraic", optimizations).render()
426 print nir_algebraic.AlgebraicPass("nir_opt_algebraic_late",
427 late_optimizations).render()