gas/
[binutils-gdb.git] / gas / testsuite / gas / mips / mips.exp
1 #
2 # Some generic MIPS tests
3 #
4
5 # When adding a new test to this file, try to do the following things:
6 #
7 # * If testing assembly and disassembly of code, don't forget to test
8 # the actual bit encodings of the instructions (using the
9 # --show-raw-insn flag to objdump).
10 #
11 # * Try to run the test for as many architectures as appropriate,
12 # using the "run_dump_test_arches" or "run_list_test_arches" functions,
13 # along with the output from a call to "mips_arch_list_matching."
14 #
15 # * Be sure to compare the test output before and after your testsuite
16 # changes, to verify that existing and new tests were run as expected.
17 # Look for expect ERROR messages in the testsuite .log file to make sure
18 # the new expect code did not contain errors.
19
20 # To add support for a new CPU to this file, add an appropriate entry
21 # to the sequence of "mips_arch_create" function calls below, and test
22 # the result. The new CPU should automatically be used when running
23 # various tests. If the new CPU is the default CPU for any tool
24 # targets, make sure the call to "mips_arch_create" reflects that fact.
25
26
27 # "LOSE" marks information about tests which fail at a particular point
28 # in time, but which are not XFAILed. Either they used to pass
29 # and indicate either regressions or the need to tweak the tests to keep
30 # up the with code, or they are new tests and it is unknown whether or not
31 # they should pass as-is for the given object formats.
32
33
34 # The functions below create and manipulate an "architecture data
35 # array" which contains entries for each MIPS architecture (or CPU)
36 # known to these tests. The array contains the following information
37 # for each architecture, indexed by the name of the architecture
38 # described by the entry:
39 #
40 # displayname: The name of the entry to be used for pretty-printing.
41 #
42 # gprsize: The size in bits of General Purpose Registers provided by
43 # the architecture (must be 32 or 64).
44 #
45 # props: A list of text strings which are associated with the
46 # architecture. These include the architecture name as well as
47 # information about what instructions the CPU supports. When matching
48 # based on properties, an additional property is added to the normal
49 # property list, "gpr<gprsize>" so that tests can match CPUs which
50 # have GPRs of a specific size. The following properties are most
51 # useful when matching properties for generic (i.e., not CPU-specific)
52 # tests:
53 #
54 # mips1, mips2, mips3, mips4, mips5, mips32, mips64
55 # The architecture includes the instructions defined
56 # by that MIPS ISA.
57 #
58 # fpisa3, fpisa4, fpisa5
59 # The architecture includes the floating-point
60 # instructions defined by that MIPS ISA.
61 #
62 # gpr_ilocks
63 # The architecture interlocks GPRs accesses. (That is,
64 # there are no load delay slots.)
65 #
66 # mips3d The architecture includes the MIPS-3D ASE.
67 #
68 # ror The architecture includes hardware rotate instructions.
69 #
70 # gpr32, gpr64
71 # The architecture provides 32- or 64-bit General Purpose
72 # Registers.
73 #
74 # as_flags: The assembler flags used when assembling tests for this
75 # architecture.
76 #
77 # objdump_flags: The objdump flags used when disassembling tests for
78 # this architecture.
79 #
80 # Most entries in the architecture array will have values in all of
81 # the fields above. One entry, "default" represents the default CPU
82 # based on the target of the assembler being built. If always has
83 # empty "as_flags" and "objdump_flags."
84
85 # mips_arch_init
86 #
87 # This function initializes the architecture data array ("mips_arches")
88 # to be empty.
89 proc mips_arch_init {} {
90 global mips_arches
91
92 # Catch because the variable won't be set the first time through.
93 catch {unset mips_arches}
94 }
95
96 # mips_arch_create ARCH GPRSIZE EXTENDS PROPS AS_FLAGS OBJDUMP_FLAGS \
97 # (optional:) DEFAULT_FOR_TARGETS
98 #
99 # This function creates a new entry in the architecture data array,
100 # for the architecture or CPU named ARCH, and fills in the entry
101 # according to the rest of the arguments.
102 #
103 # The new entry's property list is initialized to contain ARCH, any
104 # properties specified by PROPS, and the properties associated with
105 # the entry specified by EXTENDS. (The new architecture is considered
106 # to extend the capabilities provided by that architecture.)
107 #
108 # If DEFAULT_FOR_TARGETS is specified, it is a list of targets for which
109 # this architecture is the default architecture. If "istarget" returns
110 # true for any of the targets in the list, a "default" entry will be
111 # added to the architecture array which indicates that ARCH is the default
112 # architecture.
113 proc mips_arch_create {arch gprsize extends props as_flags objdump_flags
114 {default_for_targets {}}} {
115 global mips_arches
116
117 if { [info exists mips_arches($arch)] } {
118 error "mips_arch_create: arch \"$arch\" already exists"
119 }
120 if { $gprsize != 32 && $gprsize != 64 } {
121 error "mips_arch_create: invalid GPR size $gprsize"
122 }
123
124 set archdata(displayname) $arch
125 set archdata(gprsize) $gprsize
126 set archdata(as_flags) $as_flags
127 set archdata(objdump_flags) $objdump_flags
128 set archdata(props) $arch
129 eval lappend archdata(props) $props
130 if { [string length $extends] != 0 } {
131 eval lappend archdata(props) [mips_arch_properties $extends 0]
132 }
133
134 set mips_arches($arch) [array get archdata]
135
136 # Set as default if appropriate.
137 foreach target $default_for_targets {
138 if { [istarget $target] } {
139 if { [info exists mips_arches(default)] } {
140 error "mips_arch_create: default arch already exists"
141 }
142
143 set archdata(displayname) "default = $arch"
144 set archdata(as_flags) ""
145 set archdata(objdump_flags) ""
146
147 set mips_arches(default) [array get archdata]
148 break
149 }
150 }
151 }
152
153 # mips_arch_destroy ARCH
154 #
155 # The opposite of the above. This function removes an entry from
156 # the architecture data array, for the architecture or CPU named ARCH.
157
158 proc mips_arch_destroy {arch} {
159 global mips_arches
160
161 if { [info exists mips_arches($arch)] } {
162 unset mips_arches($arch)
163 }
164 }
165
166 # mips_arch_list_all
167 #
168 # This function returns the list of all names of entries in the
169 # architecture data array (including the default entry, if a default
170 # is known).
171 proc mips_arch_list_all {} {
172 global mips_arches
173 return [lsort -dictionary [array names mips_arches]]
174 }
175
176 # mips_arch_data ARCH
177 #
178 # This function returns the information associated with ARCH
179 # in the architecture data array, in "array get" form.
180 proc mips_arch_data {arch} {
181 global mips_arches
182
183 if { ! [info exists mips_arches($arch)] } {
184 error "mips_arch_data: unknown arch \"$arch\""
185 }
186 return $mips_arches($arch)
187 }
188
189 # mips_arch_displayname ARCH
190 #
191 # This function returns the printable name associated with ARCH in
192 # the architecture data array.
193 proc mips_arch_displayname {arch} {
194 array set archdata [mips_arch_data $arch]
195 return $archdata(displayname)
196 }
197
198 # mips_arch_properties ARCH (optional:) INCLUDE_GPRSIZE
199 #
200 # This function returns the property list associated with ARCH in the
201 # architecture data array, including the "canonical" target name as the
202 # first element.
203 #
204 # If INCLUDE_GPRSIZE is non-zero, an additional "gpr32" or "gpr64"
205 # property will be returned as part of the list based on the
206 # architecture's GPR size.
207 proc mips_arch_properties {arch {include_gprsize 1}} {
208 array set archdata [mips_arch_data $arch]
209 set props $archdata(props)
210 if { $include_gprsize } {
211 lappend props gpr$archdata(gprsize)
212 }
213 return $props
214 }
215
216 # mips_arch_as_flags ARCH
217 #
218 # This function returns the assembler flags associated with ARCH in
219 # the architecture data array.
220 proc mips_arch_as_flags {arch} {
221 array set archdata [mips_arch_data $arch]
222 return $archdata(as_flags)
223 }
224
225 # mips_arch_objdump_flags ARCH
226 #
227 # This function returns the objdump disassembly flags associated with
228 # ARCH in the architecture data array.
229 proc mips_arch_objdump_flags {arch} {
230 array set archdata [mips_arch_data $arch]
231 return $archdata(objdump_flags)
232 }
233
234 # mips_arch_matches ARCH PROPMATCHLIST
235 #
236 # This function returns non-zero if ARCH matches the set of properties
237 # described by PROPMATCHLIST. Each entry in PROPMATCHLIST can either
238 # be the name of a property which must be matched, or "!" followed by
239 # the name of a property which must not be matched. ARCH matches
240 # PROPMATCHLIST if and only if all of the conditions specified by
241 # PROPMATCHLIST are satisfied.
242 proc mips_arch_matches {arch propmatchlist} {
243 foreach pm $propmatchlist {
244 if { [string match {!*} $pm] } {
245 # fail if present.
246 set inverted 1
247 set p [string range $pm 1 end]
248 } {
249 # fail if not present.
250 set inverted 0
251 set p $pm
252 }
253
254 set loc [lsearch -exact [mips_arch_properties $arch] $p]
255
256 # required-absent and found, or required-present and not found: fail.
257 if { ($inverted && $loc != -1) || (! $inverted && $loc == -1) } {
258 return 0
259 }
260 }
261 return 1
262 }
263
264 # mips_arch_list_matching ARGS
265 #
266 # This function returns a list of all architectures which match
267 # the conditions described by its arguments. Its arguments are
268 # taken as a list and used as the PROPMATCHLIST in a call to
269 # "mips_arch_matches" for each known architecture.
270 proc mips_arch_list_matching {args} {
271 set l ""
272 foreach arch [mips_arch_list_all] {
273 # For now, don't match default arch until we know what its
274 # properties actually are.
275 if { [string compare $arch default] == 0
276 && [string length [mips_arch_properties default]] == 0} {
277 continue
278 }
279 if { [mips_arch_matches $arch $args] } {
280 lappend l $arch
281 }
282 }
283 return $l
284 }
285
286
287 # The functions below facilitate running various types of tests.
288
289 # run_dump_test_arch NAME OPTS ARCH
290 #
291 # Invoke "run_dump_test" for test NAME with additional assembler options OPTS.
292 # Add the assembler and disassembler flags that are associated with
293 # architecture ARCH.
294 #
295 # You can override the expected output for particular architectures
296 # and file formats. The possible test names are, in order of preference:
297 #
298 # 1. CARCH@FORMAT@NAME.d
299 # 2. CARCH@NAME.d
300 # 3. FORMAT@NAME.d
301 # 4. NAME.d
302 #
303 # where CARCH is the "canonical" name of architecture ARCH as recorded
304 # in its associated property list, and where FORMAT is the target's
305 # file format (one of "elf", "ecoff" or "aout").
306 proc run_dump_test_arch { name opts arch } {
307 upvar elf elf ecoff ecoff aout aout
308 global subdir srcdir
309
310 set format [expr { $elf ? "elf" : $ecoff ? "ecoff" : "aout" }]
311 set proparch [lindex [mips_arch_properties $arch 0] 0]
312 set prefixes [list ${proparch}@${format}@ ${proparch}@ ]
313 if { [ string match "octeon*" $proparch ] && $proparch != "octeon" } {
314 lappend prefixes octeon@
315 lappend prefixes octeon@${format}@
316 }
317 lappend prefixes ${format}@
318 foreach prefix ${prefixes} {
319 set archname ${prefix}${name}
320 if { [file exists "$srcdir/$subdir/${archname}.d"] } {
321 set name $archname
322 break
323 }
324 }
325
326 if [catch {run_dump_test $name \
327 "{name {([concat $opts [mips_arch_displayname $arch]])}}
328 {objdump {[mips_arch_objdump_flags $arch]}}
329 {as {[concat $opts [mips_arch_as_flags $arch]]}}"} rv] {
330 perror "$rv"
331 untested "$subdir/$name ($arch)"
332 }
333 }
334
335 # run_dump_test_arches NAME [OPTS] ARCH_LIST
336 #
337 # Invoke "run_dump_test_arch" for test NAME, for each architecture
338 # listed in ARCH_LIST. OPTS, if specified, is a list of additional
339 # assembler options that should be used for all architectures.
340 proc run_dump_test_arches { name args } {
341 upvar elf elf ecoff ecoff aout aout
342 set opts ""
343 if { [llength $args] > 1 } {
344 set opts [lindex $args 0]
345 set args [lrange $args 1 end]
346 }
347 set arch_list [lindex $args 0]
348 foreach arch $arch_list {
349 run_dump_test_arch $name $opts $arch
350 }
351 }
352
353 # run_list_test_arch NAME OPTS ARCH
354 #
355 # Invoke "run_list_test" for test NAME with additional assembler options OPTS.
356 # Add the assembler flags that are associated with architecture ARCH.
357 proc run_list_test_arch { name opts arch } {
358 global subdir
359
360 set testname "MIPS $name ([concat $opts [mips_arch_displayname $arch]])"
361 if [catch {run_list_test \
362 $name \
363 [concat $opts [mips_arch_as_flags $arch]] \
364 $testname} rv] {
365 perror "$rv"
366 untested "$testname"
367 }
368 }
369
370 # run_list_test_arches NAME [OPTS] ARCH_LIST
371 #
372 # Invoke "run_list_test_arch" for test NAME, for each architecture listed
373 # in ARCH_LIST. OPTS, if specified, is a list of additional assembler
374 # options that should be used for all architectures.
375 proc run_list_test_arches { name args } {
376 set opts ""
377 if { [llength $args] > 1 } {
378 set opts [lindex $args 0]
379 set args [lrange $args 1 end]
380 }
381 set arch_list [lindex $args 0]
382 foreach arch $arch_list {
383 run_list_test_arch "$name" "$opts" "$arch"
384 }
385 }
386
387
388 # Create the architecture data array by providing data for all
389 # known architectures.
390 #
391 # Note that several targets pick default CPU based on ABI. We
392 # can't easily handle that; do NOT list those targets as defaulting
393 # to any architecture.
394 mips_arch_init
395 mips_arch_create mips1 32 {} {} \
396 { -march=mips1 -mtune=mips1 } { -mmips:3000 }
397 mips_arch_create mips2 32 mips1 { gpr_ilocks } \
398 { -march=mips2 -mtune=mips2 } { -mmips:6000 }
399 mips_arch_create mips3 64 mips2 { fpisa3 } \
400 { -march=mips3 -mtune=mips3 } { -mmips:4000 }
401 mips_arch_create mips4 64 mips3 { fpisa4 } \
402 { -march=mips4 -mtune=mips4 } { -mmips:8000 }
403 mips_arch_create mips5 64 mips4 { fpisa5 } \
404 { -march=mips5 -mtune=mips5 } { -mmips:mips5 }
405 mips_arch_create mips32 32 mips2 {} \
406 { -march=mips32 -mtune=mips32 } { -mmips:isa32 } \
407 { mipsisa32-*-* mipsisa32el-*-* }
408 mips_arch_create mips32r2 32 mips32 { fpisa3 fpisa4 fpisa5 ror } \
409 { -march=mips32r2 -mtune=mips32r2 } \
410 { -mmips:isa32r2 } \
411 { mipsisa32r2-*-* mipsisa32r2el-*-* }
412 mips_arch_create mips64 64 mips5 { mips32 } \
413 { -march=mips64 -mtune=mips64 } { -mmips:isa64 } \
414 { mipsisa64-*-* mipsisa64el-*-* }
415 mips_arch_create mips64r2 64 mips64 { mips32r2 ror } \
416 { -march=mips64r2 -mtune=mips64r2 } \
417 { -mmips:isa64r2 } \
418 { mipsisa64r2-*-* mipsisa64r2el-*-* }
419 mips_arch_create mips16 32 {} {} \
420 { -march=mips1 -mips16 } { -mmips:16 }
421 mips_arch_create micromips 64 mips64r2 {} \
422 { -march=mips64 -mmicromips } {}
423 mips_arch_create r3000 32 mips1 {} \
424 { -march=r3000 -mtune=r3000 } { -mmips:3000 }
425 mips_arch_create r3900 32 mips1 { gpr_ilocks } \
426 { -march=r3900 -mtune=r3900 } { -mmips:3900 } \
427 { mipstx39-*-* mipstx39el-*-* }
428 mips_arch_create r4000 64 mips3 {} \
429 { -march=r4000 -mtune=r4000 } { -mmips:4000 }
430 mips_arch_create vr5400 64 mips4 { ror } \
431 { -march=vr5400 -mtune=vr5400 } { -mmips:5400 }
432 mips_arch_create sb1 64 mips64 { mips3d } \
433 { -march=sb1 -mtune=sb1 } { -mmips:sb1 } \
434 { mipsisa64sb1-*-* mipsisa64sb1el-*-* }
435 mips_arch_create octeon 64 mips64r2 {} \
436 { -march=octeon -mtune=octeon } { -mmips:octeon } \
437 { mips64octeon*-*-* }
438 mips_arch_create octeonp 64 octeon {} \
439 { -march=octeon+ -mtune=octeon+ } { -mmips:octeon+ } \
440 { }
441 mips_arch_create octeon2 64 octeonp {} \
442 { -march=octeon2 -mtune=octeon2 } { -mmips:octeon2 } \
443 { }
444 mips_arch_create xlr 64 mips64 {} \
445 { -march=xlr -mtune=xlr } { -mmips:xlr }
446
447 #
448 # And now begin the actual tests! VxWorks uses RELA rather than REL
449 # relocations, so most of the generic dump tests will not work there.
450 #
451 if { [istarget mips*-*-vxworks*] } {
452 run_dump_test "vxworks1"
453 run_dump_test "vxworks1-xgot"
454 run_dump_test "vxworks1-el"
455 run_dump_test "vxworks1-xgot-el"
456 } elseif { [istarget mips*-*-*] } {
457 set elf [expr [istarget *-*-elf*] || [istarget *-*-irix5*] || [istarget *-*-irix6* ] || [istarget *-*-linux*] || [istarget *-*-netbsd*] ]
458 set ecoff [expr [istarget *-*-ecoff*] || [istarget *-*-ultrix*] || [istarget *-*-irix\[1-4\]*] ]
459 set aout [expr [istarget *-*-bsd*] || [istarget *-*-openbsd*] ]
460 set addr32 [expr [istarget mipstx39*-*-*] || [istarget mips-*-linux*] || [istarget mipsel-*-linux*] || [istarget mips*-*-ecoff]]
461 set has_newabi [expr [istarget *-*-irix6*] || [istarget mips64*-*-linux*]]
462 set no_mips16 [expr !$elf]
463 set no_micromips [expr !$elf]
464
465 if { [istarget "mips*-*-*linux*"] || [istarget "mips*-sde-elf*"] } then {
466 set tmips "t"
467 } else {
468 set tmips ""
469 }
470 if [istarget mips*el-*-*] {
471 set el "el"
472 } {
473 set el ""
474 }
475 if { $no_mips16 } {
476 mips_arch_destroy mips16
477 }
478 if { $no_micromips } {
479 mips_arch_destroy micromips
480 }
481
482 run_dump_test_arches "abs" [mips_arch_list_matching mips1]
483 run_dump_test_arches "add" [mips_arch_list_matching mips1]
484 run_dump_test_arches "and" [mips_arch_list_matching mips1]
485 run_dump_test_arches "mips1-fp" [mips_arch_list_matching mips1]
486 run_list_test_arches "mips1-fp" "-32 -msoft-float" \
487 [mips_arch_list_matching mips1]
488 run_dump_test "break20"
489 run_dump_test "trap20"
490
491 # LOSE: As of 2002-02-08, "beq" through "bltu" fail for target mips-ecoff.
492 # See http://sources.redhat.com/ml/binutils/2001-10/msg00418.html for
493 # more information. Not sure if the fixes there are correct; should
494 # branches to external labels be allowed for ECOFF?
495 run_dump_test_arches "beq" [mips_arch_list_matching mips1]
496 run_dump_test_arches "bge" [mips_arch_list_matching mips1]
497 run_dump_test_arches "bgeu" [mips_arch_list_matching mips1]
498 run_dump_test_arches "blt" [mips_arch_list_matching mips1]
499 run_dump_test_arches "bltu" [mips_arch_list_matching mips1]
500 run_dump_test_arches "branch-likely" [mips_arch_list_matching mips2]
501 run_dump_test_arches "branch-misc-1" [mips_arch_list_matching mips1]
502 run_dump_test_arches "branch-misc-2" [mips_arch_list_matching mips1]
503 run_dump_test_arches "branch-misc-2pic" [mips_arch_list_matching mips1]
504 run_dump_test_arches "branch-misc-2-64" [mips_arch_list_matching mips3]
505 run_dump_test_arches "branch-misc-2pic-64" [mips_arch_list_matching mips3]
506 run_dump_test "branch-misc-3"
507 run_dump_test "branch-swap"
508
509 if $elf {
510 # Sweep a range of branch offsets so that it hits a position where
511 # it is at the beginning of a frag and then swapped with a 16-bit
512 # instruction from the preceding frag. The offset will be somewhere
513 # close below 4096 as this is the default obstack size limit that
514 # we use and some space will have been already consumed. The exact
515 # amount depends on the host's programming model.
516 for { set count 960 } { $count <= 1024 } { incr count } {
517 run_list_test "branch-swap-2" "--defsym count=$count" \
518 "MIPS branch swapping ($count)"
519 }
520 }
521
522 run_dump_test "div"
523
524 if { !$addr32 } {
525 run_dump_test_arches "dli" [mips_arch_list_matching mips3]
526 }
527 if $elf {
528 run_dump_test_arches "elf-jal" [mips_arch_list_matching mips1]
529 } else {
530 run_dump_test "jal"
531 }
532 run_dump_test_arches "jal-mask-11" [mips_arch_list_matching mips1]
533 run_dump_test_arches "jal-mask-12" [mips_arch_list_matching mips1]
534 run_dump_test_arches "jal-mask-21" [mips_arch_list_matching micromips]
535 run_dump_test_arches "jal-mask-22" [mips_arch_list_matching micromips]
536 run_dump_test "eret-1"
537 run_dump_test "eret-2"
538 run_dump_test "eret-3"
539 run_dump_test_arches "24k-branch-delay-1" \
540 [mips_arch_list_matching mips1]
541 run_dump_test_arches "24k-triple-stores-1" \
542 [mips_arch_list_matching fpisa5 !octeon]
543 run_dump_test_arches "24k-triple-stores-2" \
544 [mips_arch_list_matching mips2]
545 run_dump_test_arches "24k-triple-stores-3" \
546 [mips_arch_list_matching mips2]
547 run_dump_test_arches "24k-triple-stores-4" \
548 [mips_arch_list_matching mips2]
549 run_dump_test_arches "24k-triple-stores-5" \
550 [mips_arch_list_matching mips1]
551 run_dump_test_arches "24k-triple-stores-6" \
552 [mips_arch_list_matching mips2]
553 run_dump_test_arches "24k-triple-stores-7" \
554 [mips_arch_list_matching mips2]
555 run_dump_test_arches "24k-triple-stores-8" \
556 [mips_arch_list_matching mips1]
557 run_dump_test_arches "24k-triple-stores-9" \
558 [mips_arch_list_matching mips1]
559 run_dump_test_arches "24k-triple-stores-10" \
560 [mips_arch_list_matching mips1]
561 if $elf {
562 run_dump_test_arches "24k-triple-stores-11" \
563 [mips_arch_list_matching mips1]
564 }
565
566 if $elf {
567 run_dump_test_arches "jal-svr4pic" \
568 [mips_arch_list_matching mips1]
569 run_dump_test_arches "jal-svr4pic-noreorder" \
570 [mips_arch_list_matching mips1]
571 }
572 if $elf { run_dump_test "jal-xgot" }
573 run_list_test_arches "jal-range" "-32" [mips_arch_list_matching mips1]
574 if $has_newabi { run_dump_test "jal-newabi" }
575 if !$aout { run_dump_test "la" }
576 if $elf { run_dump_test "la-svr4pic" }
577 if $elf { run_dump_test "la-xgot" }
578 if $elf { run_dump_test "lca-svr4pic" }
579 if $elf { run_dump_test "lca-xgot" }
580 if !$aout {
581 # XXX FIXME: Has mips2 and later insns with mips1 disassemblies.
582 # (Should split and then use appropriate arch lists.)
583 run_dump_test_arches "lb" [mips_arch_list_matching mips1 !mips2]
584 }
585 if $elf {
586 run_dump_test_arches "lb-svr4pic" \
587 [mips_arch_list_matching mips1 !gpr_ilocks]
588 run_dump_test_arches "lb-svr4pic-ilocks" [mips_arch_list_matching gpr_ilocks]
589 }
590 if $elf {
591 # Both versions specify the cpu, so we can run both regardless of
592 # the interlocking in the configured default cpu.
593 run_dump_test "lb-xgot"
594 run_dump_test "lb-xgot-ilocks"
595 }
596 if !$aout {
597 run_dump_test_arches "ld" [mips_arch_list_matching mips1]
598 run_dump_test_arches "ld-forward" \
599 [mips_arch_list_matching mips1]
600 run_dump_test_arches "sd" [mips_arch_list_matching mips1]
601 run_dump_test_arches "sd-forward" \
602 [mips_arch_list_matching mips1]
603 run_dump_test_arches "l_d" [mips_arch_list_matching mips1]
604 run_dump_test_arches "l_d-forward" \
605 [mips_arch_list_matching mips1]
606 run_dump_test_arches "s_d" [mips_arch_list_matching mips1]
607 run_dump_test_arches "s_d-forward" \
608 [mips_arch_list_matching mips1]
609 run_dump_test_arches "ldc1" [mips_arch_list_matching mips2]
610 run_dump_test_arches "ldc1-forward" \
611 [mips_arch_list_matching mips2]
612 run_dump_test_arches "sdc1" [mips_arch_list_matching mips2]
613 run_dump_test_arches "sdc1-forward" \
614 [mips_arch_list_matching mips2]
615 if $has_newabi {
616 run_dump_test_arches "ld-n32" \
617 [mips_arch_list_matching mips3]
618 run_dump_test_arches "ld-forward-n32" \
619 [mips_arch_list_matching mips3]
620 run_dump_test_arches "sd-n32" \
621 [mips_arch_list_matching mips3]
622 run_dump_test_arches "sd-forward-n32" \
623 [mips_arch_list_matching mips3]
624 run_dump_test_arches "l_d-n32" \
625 [mips_arch_list_matching mips3]
626 run_dump_test_arches "l_d-forward-n32" \
627 [mips_arch_list_matching mips3]
628 run_dump_test_arches "s_d-n32" \
629 [mips_arch_list_matching mips3]
630 run_dump_test_arches "s_d-forward-n32" \
631 [mips_arch_list_matching mips3]
632 run_dump_test_arches "ldc1-n32" \
633 [mips_arch_list_matching mips3]
634 run_dump_test_arches "ldc1-forward-n32" \
635 [mips_arch_list_matching mips3]
636 run_dump_test_arches "sdc1-n32" \
637 [mips_arch_list_matching mips3]
638 run_dump_test_arches "sdc1-forward-n32" \
639 [mips_arch_list_matching mips3]
640 run_dump_test_arches "ld-n64" \
641 [mips_arch_list_matching mips3]
642 run_dump_test_arches "ld-forward-n64" \
643 [mips_arch_list_matching mips3]
644 run_dump_test_arches "sd-n64" \
645 [mips_arch_list_matching mips3]
646 run_dump_test_arches "sd-forward-n64" \
647 [mips_arch_list_matching mips3]
648 run_dump_test_arches "l_d-n64" \
649 [mips_arch_list_matching mips3]
650 run_dump_test_arches "l_d-forward-n64" \
651 [mips_arch_list_matching mips3]
652 run_dump_test_arches "s_d-n64" \
653 [mips_arch_list_matching mips3]
654 run_dump_test_arches "s_d-forward-n64" \
655 [mips_arch_list_matching mips3]
656 run_dump_test_arches "ldc1-n64" \
657 [mips_arch_list_matching mips3]
658 run_dump_test_arches "ldc1-forward-n64" \
659 [mips_arch_list_matching mips3]
660 run_dump_test_arches "sdc1-n64" \
661 [mips_arch_list_matching mips3]
662 run_dump_test_arches "sdc1-forward-n64" \
663 [mips_arch_list_matching mips3]
664 }
665 }
666 if $elf { run_dump_test "ld-svr4pic" }
667 if $elf { run_dump_test "ld-xgot" }
668 run_dump_test_arches "li" [mips_arch_list_matching mips1]
669 if !$aout { run_dump_test "lifloat" }
670 if $elf { run_dump_test "lif-svr4pic" }
671 if $elf { run_dump_test "lif-xgot" }
672 run_dump_test_arches "mips4" [mips_arch_list_matching mips4]
673 run_dump_test_arches "mips4-fp" "-32" \
674 [mips_arch_list_matching fpisa4]
675 run_dump_test_arches "mips4-fp" "-mabi=o64" \
676 [mips_arch_list_matching fpisa4 gpr64]
677 run_list_test_arches "mips4-fp" "-32 -msoft-float" \
678 [mips_arch_list_matching fpisa4]
679 run_dump_test_arches "mips4-branch-likely" \
680 [mips_arch_list_matching mips4]
681 run_list_test_arches "mips4-branch-likely" "-32 -msoft-float" \
682 [mips_arch_list_matching mips4]
683 run_dump_test_arches "mips5-fp" "-32" \
684 [mips_arch_list_matching fpisa5]
685 run_dump_test_arches "mips5-fp" "-mabi=o64" \
686 [mips_arch_list_matching fpisa5 gpr64]
687 run_dump_test "mul"
688
689 run_dump_test_arches "rol" [mips_arch_list_matching mips1 !ror]
690 run_dump_test_arches "rol-hw" [mips_arch_list_matching ror]
691
692 run_dump_test_arches "rol64" [mips_arch_list_matching gpr64 !ror]
693 run_dump_test_arches "rol64-hw" [mips_arch_list_matching gpr64 ror]
694
695 if !$aout { run_dump_test "sb" }
696 run_dump_test "trunc"
697 if !$aout { run_dump_test "ulh" }
698 run_dump_test_arches "ulh2-eb" [mips_arch_list_matching mips1]
699 run_dump_test_arches "ulh2-el" [mips_arch_list_matching mips1]
700 if $elf { run_dump_test "ulh-svr4pic" }
701 if $elf { run_dump_test "ulh-xgot" }
702 if !$aout {
703 run_dump_test "ulw"
704 run_dump_test "uld"
705 run_dump_test "ush"
706 run_dump_test "usw"
707 run_dump_test "usd"
708 }
709 run_dump_test_arches "ulw2-eb" \
710 [mips_arch_list_matching mips1 !gpr_ilocks]
711 run_dump_test_arches "ulw2-eb-ilocks" [mips_arch_list_matching gpr_ilocks]
712 run_dump_test_arches "ulw2-el" \
713 [mips_arch_list_matching mips1 !gpr_ilocks]
714 run_dump_test_arches "ulw2-el-ilocks" [mips_arch_list_matching gpr_ilocks]
715
716 run_dump_test_arches "uld2-eb" [mips_arch_list_matching mips3]
717 run_dump_test_arches "uld2-el" [mips_arch_list_matching mips3]
718
719 # The mips16 test can only be run on ELF, because only ELF
720 # supports the necessary mips16 reloc.
721 if { $elf && !$no_mips16 } {
722 run_dump_test "mips16"
723 run_dump_test "mips16-64"
724 # Check MIPS16e extensions
725 run_dump_test_arches "mips16e" \
726 [mips_arch_list_matching mips32 !micromips]
727 # Check jalx handling
728 run_dump_test "mips16-jalx"
729 run_dump_test "mips-jalx"
730 run_dump_test "mips-jalx-2"
731 # Check MIPS16 HI16/LO16 relocations
732 run_dump_test "mips16-hilo"
733 if $has_newabi {
734 run_dump_test "mips16-hilo-n32"
735 }
736 run_dump_test "mips16-hilo-match"
737 }
738 run_dump_test "delay"
739 run_dump_test "nodelay"
740 run_dump_test "mips4010"
741 run_dump_test "mips4650"
742 run_dump_test "mips4100"
743 run_dump_test "vr4111"
744 run_dump_test "vr4120"
745 run_dump_test "vr4120-2"
746 run_dump_test "vr4130"
747 run_dump_test "vr5400"
748 run_dump_test "vr5500"
749 run_dump_test "rm7000"
750 run_dump_test "perfcount"
751 run_dump_test "lineno"
752 run_dump_test "sync"
753
754 run_dump_test_arches "mips32" [mips_arch_list_matching mips32]
755 run_dump_test_arches "mips32-imm" [mips_arch_list_matching mips32]
756
757 run_dump_test_arches "mips32-sf32" [mips_arch_list_matching mips32]
758 run_list_test_arches "mips32-sf32" "-32 -msoft-float" \
759 [mips_arch_list_matching mips32]
760 run_dump_test_arches "mips32-cp2" [mips_arch_list_matching mips32 \
761 !octeon]
762
763 run_dump_test_arches "mips32r2" [mips_arch_list_matching mips32r2]
764 run_dump_test_arches "mips32r2-cp2" [mips_arch_list_matching mips32r2 \
765 !octeon]
766 run_dump_test_arches "mips32r2-fp32" \
767 [mips_arch_list_matching mips32r2]
768 run_list_test_arches "mips32r2-fp32" "-32 -msoft-float" \
769 [mips_arch_list_matching mips32r2]
770 run_list_test_arches "mips32r2-ill" "-32" \
771 [mips_arch_list_matching mips32r2 gpr32]
772 run_list_test_arches "mips32r2-ill-fp64" "-mabi=o64" \
773 [mips_arch_list_matching mips32r2 gpr64]
774 run_list_test_arches "mips32r2-ill-nofp" "-32 -msoft-float" \
775 [mips_arch_list_matching mips32r2]
776
777 run_dump_test_arches "mips64" [mips_arch_list_matching mips64]
778 run_dump_test_arches "mips64-cp2" [mips_arch_list_matching mips64 \
779 !octeon]
780
781 run_dump_test_arches "mips64r2" [mips_arch_list_matching mips64r2]
782 run_list_test_arches "mips64r2-ill" [mips_arch_list_matching mips64r2]
783
784 run_dump_test "set-arch"
785
786 if { !$addr32 } {
787 run_dump_test "mips64-mips3d"
788 run_dump_test_arches "mips64-mips3d-incl" [mips_arch_list_matching mips3d]
789
790 run_dump_test "mips64-mdmx"
791 run_dump_test "sb1-ext-mdmx"
792 run_dump_test "sb1-ext-ps"
793 run_dump_test "xlr-ext"
794 }
795
796 run_dump_test_arches "relax" [mips_arch_list_matching mips2]
797 run_dump_test_arches "relax-at" [mips_arch_list_matching mips2]
798 run_dump_test "relax-swap1-mips1"
799 run_dump_test "relax-swap1-mips2"
800 run_dump_test "relax-swap2"
801 run_dump_test_arches "relax-swap3" [mips_arch_list_all]
802 run_list_test_arches "relax-bposge" "-mdsp -relax-branch" \
803 [mips_arch_list_matching mips64r2 \
804 !micromips]
805
806 run_list_test "illegal" "-32"
807 run_list_test "baddata1" "-32"
808 run_list_test "jalr" ""
809
810 # LOSE: As of 2002-02-08, the next 4 tests fail for target mips-ecoff.
811 # It's unknown whether they _should_ pass as-is, or whether different
812 # variants are needed for ELF and ECOFF.
813 run_dump_test "mips-gp32-fp32"
814 run_dump_test "mips-gp32-fp64"
815 run_dump_test "mips-gp64-fp32"
816 run_dump_test "mips-gp64-fp64"
817
818 if $elf {
819 # Make sure that -mcpu=FOO and -mFOO are equivalent. Assemble a file
820 # containing 4650-specific instructions with -m4650 and -mcpu=4650,
821 # and verify that they're the same. Specifically, we're checking
822 # that the EF_MIPS_MACH field is set, and that the 4650 'mul'
823 # instruction does get used. In previous versions of GAS,
824 # only -mcpu=4650 would set the EF_MIPS_MACH field; -m4650 wouldn't.
825 run_dump_test "elf_e_flags1"
826 run_dump_test "elf_e_flags2"
827 run_dump_test "elf_e_flags3"
828 run_dump_test "elf_e_flags4"
829
830 # Check EF_MIPS_ARCH markings for each supported architecture.
831 run_dump_test "elf_arch_mips1"
832 run_dump_test "elf_arch_mips2"
833 run_dump_test "elf_arch_mips3"
834 run_dump_test "elf_arch_mips4"
835 run_dump_test "elf_arch_mips5"
836 run_dump_test "elf_arch_mips32"
837 run_dump_test "elf_arch_mips32r2"
838 run_dump_test "elf_arch_mips64"
839 run_dump_test "elf_arch_mips64r2"
840
841 # Verify that ASE markings are handled properly.
842 if { !$no_mips16 } {
843 run_dump_test "elf_ase_mips16"
844 run_dump_test "elf_ase_mips16-2"
845 }
846 if { !$no_micromips } {
847 run_dump_test "elf_ase_micromips"
848 run_dump_test "elf_ase_micromips-2"
849 }
850
851 run_dump_test "mips-gp32-fp32-pic"
852 run_dump_test "mips-gp32-fp64-pic"
853 run_dump_test "mips-gp64-fp32-pic"
854 run_dump_test "mips-gp64-fp64-pic"
855
856 run_dump_test "mips-abi32"
857 run_dump_test "mips-abi32-pic"
858 run_dump_test "mips-abi32-pic2"
859
860 run_dump_test "elf${el}-rel"
861 run_dump_test_arches "elf${el}-rel2" [mips_arch_list_matching gpr64]
862 run_dump_test "e32${el}-rel2"
863 run_dump_test "elf${el}-rel3"
864 run_dump_test_arches "elf-rel4" [mips_arch_list_matching gpr64]
865 run_dump_test "e32-rel4"
866 run_dump_test "elf-rel5"
867 run_dump_test "elf-rel6"
868 if $has_newabi {
869 run_dump_test "elf-rel6-n32"
870 run_dump_test "elf-rel6-n64"
871 }
872 run_dump_test "elf-rel7"
873 run_dump_test "elf-rel8"
874 run_dump_test "elf-rel8-mips16"
875 run_dump_test "elf-rel9"
876 run_dump_test "elf-rel9-mips16"
877 if $has_newabi {
878 run_dump_test "elf-rel10"
879 run_dump_test "elf-rel11"
880 }
881 run_dump_test "elf-rel12"
882 run_dump_test "elf-rel13"
883 run_dump_test "elf-rel13-mips16"
884 run_dump_test "elf-rel14"
885
886 if $has_newabi {
887 run_dump_test "elf-rel15"
888 run_dump_test "elf-rel16"
889
890 run_dump_test "elf-rel-got-n32"
891 run_dump_test "elf-rel-xgot-n32"
892 run_dump_test "elf-rel-got-n64"
893 run_dump_test "elf-rel-xgot-n64"
894 }
895 run_dump_test "elf-rel17"
896 if $has_newabi {
897 run_dump_test "elf-rel18"
898 }
899 run_dump_test "elf-rel19"
900 run_dump_test "elf-rel20"
901 if $has_newabi {
902 run_dump_test "elf-rel21"
903 run_dump_test "elf-rel22"
904 run_dump_test "elf-rel23"
905 run_dump_test "elf-rel23a"
906 run_dump_test "elf-rel23b"
907 run_dump_test "elf-rel24"
908 }
909
910 run_dump_test "elf-rel25"
911 run_dump_test "elf-rel25a"
912 run_dump_test "elf-rel26"
913
914 run_dump_test_arches "elf-rel27" [mips_arch_list_all]
915
916 if $has_newabi {
917 run_dump_test "elf-rel28-n32"
918 run_dump_test "elf-rel28-n64"
919 }
920
921 if { !$no_mips16 } {
922 run_dump_test "${tmips}mips${el}16-e"
923 run_dump_test "${tmips}mips${el}16-f"
924 }
925 run_dump_test "elf-consthilo"
926 run_dump_test "expr1"
927
928 run_list_test "tls-ill" "-32"
929 run_dump_test "tls-o32"
930 run_dump_test "tls-relw"
931 run_dump_test "jalr2"
932
933 run_dump_test_arches "aent" [mips_arch_list_matching mips1]
934
935 run_dump_test_arches "branch-misc-4" \
936 [mips_arch_list_matching mips1]
937 run_dump_test_arches "branch-misc-4-64" \
938 [mips_arch_list_matching mips3]
939
940 run_dump_test_arches "loc-swap" [mips_arch_list_all]
941 run_dump_test_arches "loc-swap-dis" \
942 [mips_arch_list_all]
943 run_dump_test_arches "loc-swap-2" [mips_arch_list_all]
944 }
945
946 if $has_newabi {
947 run_dump_test "n32-consec"
948 }
949
950 # tests of objdump's ability to disassemble using different
951 # register names.
952 run_dump_test "gpr-names-numeric"
953 run_dump_test "gpr-names-32"
954 run_dump_test "gpr-names-n32"
955 run_dump_test "gpr-names-64"
956
957 run_dump_test "fpr-names-numeric"
958 run_dump_test "fpr-names-32"
959 run_dump_test "fpr-names-n32"
960 run_dump_test "fpr-names-64"
961
962 run_dump_test "cp0-names-numeric"
963 run_dump_test "cp0-names-r3000"
964 run_dump_test "cp0-names-r4000" \
965 { { {name} {(r4000)} } { {objdump} {-M cp0-names=r4000} } }
966 run_dump_test "cp0-names-r4000" \
967 { { {name} {(r4400)} } { {objdump} {-M cp0-names=r4400} } }
968 run_dump_test "cp0-names-mips32"
969 run_dump_test "cp0-names-mips32r2"
970 run_dump_test "cp0-names-mips64"
971 run_dump_test "cp0-names-mips64r2"
972 run_dump_test "cp0-names-sb1"
973
974 run_dump_test "cp0sel-names-numeric"
975 run_dump_test "cp0sel-names-mips32"
976 run_dump_test "cp0sel-names-mips32r2"
977 run_dump_test "cp0sel-names-mips64"
978 run_dump_test "cp0sel-names-mips64r2"
979 run_dump_test "cp0sel-names-sb1"
980
981 run_dump_test "hwr-names-numeric"
982 run_dump_test "hwr-names-mips32r2"
983 run_dump_test "hwr-names-mips64r2"
984
985 run_dump_test "ldstla-32"
986 run_dump_test "ldstla-32-mips3"
987 run_dump_test "ldstla-32-shared"
988 run_dump_test "ldstla-32-mips3-shared"
989 run_list_test "ldstla-32-1" "-mabi=32" \
990 "MIPS ld-st-la bad constants (ABI o32)"
991 run_list_test "ldstla-32-mips3-1" "-mabi=32" \
992 "MIPS ld-st-la bad constants (ABI o32, mips3)"
993 run_list_test "ldstla-32-1" "-KPIC -mabi=32" \
994 "MIPS ld-st-la bad constants (ABI o32, shared)"
995 run_list_test "ldstla-32-mips3-1" "-KPIC -mabi=32" \
996 "MIPS ld-st-la bad constants (ABI o32, mips3, shared)"
997 run_dump_test "ldstla-eabi64"
998 if $has_newabi {
999 run_dump_test "ldstla-n64"
1000 run_dump_test "ldstla-n64-shared"
1001 run_dump_test "ldstla-n64-sym32"
1002 }
1003
1004 run_dump_test "macro-warn-1"
1005 run_dump_test "macro-warn-2"
1006 run_dump_test "macro-warn-3"
1007 run_dump_test "macro-warn-4"
1008 if $has_newabi {
1009 run_dump_test "macro-warn-1-n32"
1010 run_dump_test "macro-warn-2-n32"
1011 }
1012
1013 run_dump_test "noat-1"
1014 run_list_test "noat-2" ""
1015 run_list_test "noat-3" ""
1016 run_list_test "noat-4" ""
1017 run_list_test "noat-5" ""
1018 run_list_test "noat-6" ""
1019 run_list_test "noat-7" ""
1020
1021 run_dump_test "at-1"
1022 run_list_test "at-2" "-32 -mips1" "MIPS at-2"
1023
1024 run_dump_test "loongson-2e"
1025 run_dump_test "loongson-2f"
1026 run_dump_test "loongson-2f-2"
1027 run_dump_test "loongson-2f-3"
1028
1029 run_dump_test "loongson-3a"
1030 run_dump_test "loongson-3a-2"
1031 run_dump_test "loongson-3a-3"
1032
1033 run_dump_test_arches "octeon" [mips_arch_list_matching octeon]
1034 run_dump_test_arches "octeon-saa-saad" [mips_arch_list_matching octeonp]
1035 run_list_test_arches "octeon-ill" [mips_arch_list_matching octeon]
1036 run_dump_test_arches "octeon-pref" [mips_arch_list_matching octeon]
1037 run_dump_test_arches "octeon2" [mips_arch_list_matching octeon2]
1038
1039 run_dump_test "smartmips"
1040 run_dump_test_arches "mips32-dsp" [mips_arch_list_matching mips32r2 \
1041 !octeon]
1042 run_dump_test_arches "mips32-dspr2" [mips_arch_list_matching mips32r2 \
1043 !octeon]
1044 run_dump_test "mips64-dsp"
1045 run_dump_test "mips32-mt"
1046
1047 if { $elf && !$no_mips16 } {
1048 run_dump_test "mips16-dwarf2"
1049 if $has_newabi {
1050 run_dump_test "mips16-dwarf2-n32"
1051 }
1052 }
1053 if { !$no_mips16 } {
1054 run_dump_test "mips16e-jrc"
1055 run_dump_test "mips16e-save"
1056 run_dump_test "mips16e-64"
1057 run_list_test "mips16e-64" "-march=mips32 -32"
1058 run_dump_test "mips16-intermix"
1059 }
1060 run_dump_test "vxworks1"
1061 run_dump_test "vxworks1-xgot"
1062 run_dump_test "vxworks1-el"
1063 run_dump_test "vxworks1-xgot-el"
1064
1065 run_dump_test "noreorder"
1066 run_dump_test "align"
1067 run_dump_test "align2"
1068 run_dump_test "align2-el"
1069 run_dump_test "align3"
1070 run_dump_test "odd-float"
1071
1072 run_list_test_arches "mips-macro-ill-sfp" "-32 -msingle-float" \
1073 [mips_arch_list_matching mips2]
1074 run_list_test_arches "mips-macro-ill-nofp" "-32 -msoft-float" \
1075 [mips_arch_list_matching mips2]
1076
1077 run_list_test_arches "mips-hard-float-flag" \
1078 "-32 -msoft-float -mhard-float" \
1079 [mips_arch_list_matching mips1]
1080 run_list_test_arches "mips-double-float-flag" \
1081 "-32 -msingle-float -mdouble-float" \
1082 [mips_arch_list_matching mips1]
1083
1084 run_dump_test "mips16-vis-1"
1085 run_dump_test "call-nonpic-1"
1086 run_dump_test "mips32-sync"
1087 run_dump_test_arches "mips32r2-sync" \
1088 [mips_arch_list_matching mips32r2]
1089 run_dump_test_arches "alnv_ps-swap" [mips_arch_list_matching fpisa5]
1090 run_dump_test_arches "cache" [lsort -dictionary -unique [concat \
1091 [mips_arch_list_matching mips3] \
1092 [mips_arch_list_matching mips32] ] ]
1093 run_dump_test_arches "daddi" [mips_arch_list_matching mips3]
1094 run_dump_test_arches "pref" [lsort -dictionary -unique [concat \
1095 [mips_arch_list_matching mips4] \
1096 [mips_arch_list_matching mips32] ] ]
1097
1098 if $has_newabi { run_dump_test "cfi-n64-1" }
1099
1100 run_dump_test "pr12915"
1101 run_dump_test "reginfo-1a"
1102 run_dump_test "reginfo-1b"
1103
1104 if { !$no_micromips } {
1105 run_dump_test "micromips"
1106 run_dump_test "micromips-trap"
1107 run_list_test "micromips-size-0" \
1108 "-32 -march=mips64 -mmicromips" "microMIPS instruction size 0"
1109 run_dump_test "micromips-size-1"
1110 run_dump_test "micromips-branch-relax"
1111 run_dump_test "micromips-branch-relax-pic"
1112 run_dump_test "micromips-branch-delay"
1113 }
1114
1115 run_dump_test_arches "mcu" [mips_arch_list_matching mips32r2 \
1116 !octeon]
1117 }