Update copyright year range in all GDB files.
[deliverable/binutils-gdb.git] / gdb / testsuite / gdb.arch / e500-regs.exp
1 # Copyright 2003-2020 Free Software Foundation, Inc.
2 #
3 # This program is free software; you can redistribute it and/or modify
4 # it under the terms of the GNU General Public License as published by
5 # the Free Software Foundation; either version 3 of the License, or
6 # (at your option) any later version.
7 #
8 # This program is distributed in the hope that it will be useful,
9 # but WITHOUT ANY WARRANTY; without even the implied warranty of
10 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 # GNU General Public License for more details.
12 #
13 # You should have received a copy of the GNU General Public License
14 # along with this program. If not, see <http://www.gnu.org/licenses/>.
15 #
16
17 # Tests for Powerpc E500 register setting and fetching
18
19 #
20 # Test the use of registers, especially E500 registers, for Powerpc.
21 # This file uses e500-regs.c for input.
22 #
23
24
25 if ![istarget "powerpc-*eabispe"] then {
26 verbose "Skipping e500 register tests."
27 return
28 }
29
30 set testfile "e500-regs"
31 set binfile ${objdir}/${subdir}/${testfile}
32 set src1 ${srcdir}/${subdir}/${testfile}.c
33
34 if { [gdb_compile ${src1} ${binfile} executable {debug nowarnings}] != "" } {
35 untested "failed to compile"
36 return -1
37 }
38
39 gdb_start
40 gdb_reinitialize_dir $srcdir/$subdir
41 gdb_load ${binfile}
42
43 #
44 # Run to `main' where we begin our tests.
45 #
46
47 if ![runto_main] then {
48 fail "can't run to main"
49 return 0
50 }
51
52 # set all the registers integer portions to 1
53 for {set i 0} {$i < 32} {incr i 1} {
54 for {set j 0} {$j < 2} {incr j 1} {
55 gdb_test "set \$ev$i.v2_int32\[$j\] = 1" "" "set reg ev$i.v4si.f\[$j\]"
56 }
57 }
58
59 # Now execute some target code, so that GDB's register cache is flushed.
60
61 #gdb_test "next" "" ""
62
63 set endianness [get_endianness]
64
65 # And then read the E500 registers back, to see that
66 # a) the register write above worked, and
67 # b) the register read (below) also works.
68
69 if {$endianness == "big"} {
70 set vector_register ".uint64 = 0x100000001, v2_float = .0x0, 0x0., v2_int32 = .0x1, 0x1., v4_int16 = .0x0, 0x1, 0x0, 0x1., v8_int8 = .0x0, 0x0, 0x0, 0x1, 0x0, 0x0, 0x0, 0x1.."
71 } else {
72 set vector_register ".uint64 = 0x100000001, v2_float = .0x0, 0x0., v2_int32 = .0x1, 0x1., v4_int16 = .0x1, 0x0, 0x1, 0x0., v8_int8 = .0x1, 0x0, 0x0, 0x0, 0x1, 0x0, 0x0, 0x0.."
73 }
74
75 for {set i 0} {$i < 32} {incr i 1} {
76 gdb_test "info reg ev$i" "ev$i.*$vector_register" "info reg ev$i"
77 }
78
79 # Test wether the GPRs are updated accordingly. (GPRs are just the lower
80 # 32 bits of the EV registers.)
81
82 set general_register "0x1\[ \t\]+1"
83
84 for {set i 0} {$i < 32} {incr i 1} {
85 gdb_test "info reg r$i" "r$i.*$general_register" "info reg r$i"
86 }
87
88 # Now redo the same tests, but using the print command.
89
90 if {$endianness == "big"} {
91 set decimal_vector ".uint64 = 4294967297, v2_float = .1.*e-45, 1.*e-45., v2_int32 = .1, 1., v4_int16 = .0, 1, 0, 1., v8_int8 = .0, 0, 0, 1, 0, 0, 0, 1.."
92 } else {
93 set decimal_vector ".uint64 = 4294967297, v2_float = .1.*e-45, 1.*e-45., v2_int32 = .1, 1., v4_int16 = .1, 0, 1, 0., v8_int8 = .1, 0, 0, 0, 1, 0, 0, 0.."
94 }
95
96 for {set i 0} {$i < 32} {incr i 1} {
97 gdb_test "print \$ev$i" ".* = $decimal_vector" "print ev$i"
98 }
99
100 for {set i 0} {$i < 32} {incr i 1} {
101 set pattern$i ".*ev$i.*"
102 append pattern$i $vector_register
103 }
104
105 send_gdb "info vector\n"
106 gdb_expect_list "info vector" ".*$gdb_prompt $" {
107 [$pattern0]
108 [$pattern1]
109 [$pattern2]
110 [$pattern3]
111 [$pattern4]
112 [$pattern5]
113 [$pattern6]
114 [$pattern7]
115 [$pattern8]
116 [$pattern9]
117 [$pattern10]
118 [$pattern11]
119 [$pattern12]
120 [$pattern13]
121 [$pattern14]
122 [$pattern15]
123 [$pattern16]
124 [$pattern17]
125 [$pattern18]
126 [$pattern19]
127 [$pattern20]
128 [$pattern21]
129 [$pattern22]
130 [$pattern23]
131 [$pattern24]
132 [$pattern25]
133 [$pattern26]
134 [$pattern27]
135 [$pattern28]
136 [$pattern29]
137 [$pattern30]
138 [$pattern31]
139 }
140
141 # We must restart everything, because we have set important registers to
142 # some unusual values.
143
144 gdb_exit
145 gdb_start
146 gdb_reinitialize_dir $srcdir/$subdir
147 gdb_load ${binfile}
148 if ![runto_main] then {
149 fail "can't run to main"
150 return 0
151 }
152
153 gdb_test "break vector_fun" \
154 "Breakpoint 2 at.*e500-regs.c, line \[0-9\]+\\." \
155 "set breakpoint at vector_fun"
156
157 # Actually it is nuch easier to see these results printed in hex.
158 # gdb_test "set output-radix 16" \
159 # "Output radix now set to decimal 16, hex 10, octal 20." \
160 # "set output radix to hex"
161
162 gdb_test "continue" \
163 "Breakpoint 2, vector_fun .a=.-2, -2., b=.1, 1.*e500-regs.c.*ev_create_s32 .2, 2.;" \
164 "continue to vector_fun"
165
166 # Do a next over the assignment to vector 'a'.
167 gdb_test "next" ".*b = \\(vector int\\) __ev_create_s32 \\(3, 3\\);" \
168 "next (1)"
169
170 # Do a next over the assignment to vector 'b'.
171 gdb_test "next" "c = __ev_and \\(a, b\\);" \
172 "next (2)"
173
174 # Now 'a' should be '0x02020202...' and 'b' should be '0x03030303...'
175 gdb_test "print/x a" \
176 ".*= .0x2, 0x2." \
177 "print vector parameter a"
178
179 gdb_test "print/x b" \
180 ".*= .0x3, 0x3." \
181 "print vector parameter b"
182
183 # If we do an 'up' now, and print 'x' and 'y' we should see the values they
184 # have in main, not the values they have in vector_fun.
185 gdb_test "up" ".1.*main \\(\\) at.*e500-regs.c.*z = vector_fun \\(x, y\\);" \
186 "up to main"
187
188 gdb_test "print x" \
189 ".*= .-2, -2." \
190 "print vector x"
191
192 gdb_test "print y" \
193 ".*= .1, 1." \
194 "print vector y"
195
196 # now go back to vector_func and do a finish, to see if we can print the return
197 # value correctly.
198
199 gdb_test "down" \
200 ".0 vector_fun \\(a=.2, 2., b=.3, 3.\\) at.*e500-regs.c.*c = __ev_and \\(a, b\\);" \
201 "down to vector_fun"
202
203 gdb_test "finish" \
204 "Run till exit from .0 vector_fun \\(a=.2, 2., b=.3, 3.\\) at.*e500-regs.c.*main \\(\\) at.*e500-regs.c.*z = vector_fun \\(x, y\\);.*Value returned is.*= .2, 2." \
205 "finish returned correct value"
206
207
208
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