2020-04-14 19:10:58 +00:00
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// Require a gdb or lldb that can read DW_TAG_variant_part.
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2018-09-26 18:58:10 +00:00
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//@ min-gdb-version: 8.2
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2023-04-14 09:40:07 +00:00
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//@ needs-rust-lldb
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2013-12-13 23:45:08 +00:00
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2014-02-07 03:57:09 +00:00
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//@ compile-flags:-g
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2014-07-09 12:46:09 +00:00
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// === GDB TESTS ===================================================================================
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2014-04-24 09:35:48 +00:00
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// gdb-command:run
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2013-07-11 08:17:31 +00:00
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2014-04-24 09:35:48 +00:00
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// gdb-command:print *the_a
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2016-10-25 21:32:04 +00:00
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// gdbr-check:$1 = unique_enum::ABC::TheA{x: 0, y: 8970181431921507452}
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2013-07-11 08:17:31 +00:00
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2014-04-24 09:35:48 +00:00
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// gdb-command:print *the_b
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2016-10-25 21:32:04 +00:00
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// gdbr-check:$2 = unique_enum::ABC::TheB(0, 286331153, 286331153)
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2013-07-11 08:17:31 +00:00
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2014-04-24 09:35:48 +00:00
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// gdb-command:print *univariant
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2016-10-25 21:32:04 +00:00
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// gdbr-check:$3 = unique_enum::Univariant::TheOnlyCase(123234)
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2013-07-11 08:17:31 +00:00
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2014-07-09 12:46:09 +00:00
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// === LLDB TESTS ==================================================================================
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// lldb-command:run
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2024-03-15 14:05:57 +00:00
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// lldb-command:v *the_a
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2018-09-26 18:58:10 +00:00
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// lldbr-check:(unique_enum::ABC::TheA) *the_a = TheA { TheA: 0, TheB: 8970181431921507452 }
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2014-07-09 12:46:09 +00:00
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2024-03-15 14:05:57 +00:00
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// lldb-command:v *the_b
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2018-10-02 16:13:30 +00:00
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// lldbr-check:(unique_enum::ABC::TheB) *the_b = { = 0 = 286331153 = 286331153 }
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2014-07-09 12:46:09 +00:00
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2024-03-15 14:05:57 +00:00
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// lldb-command:v *univariant
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2018-09-26 18:58:10 +00:00
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// lldbr-check:(unique_enum::Univariant) *univariant = { TheOnlyCase = { = 123234 } }
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2014-07-09 12:46:09 +00:00
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2014-10-27 22:37:07 +00:00
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#![allow(unused_variables)]
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2015-09-19 20:33:47 +00:00
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#![feature(omit_gdb_pretty_printer_section)]
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2014-12-03 22:48:18 +00:00
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#![omit_gdb_pretty_printer_section]
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2013-08-17 15:37:42 +00:00
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2013-07-11 08:17:31 +00:00
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// The first element is to ensure proper alignment, irrespective of the machines word size. Since
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// the size of the discriminant value is machine dependent, this has be taken into account when
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// datatype layout should be predictable as in this case.
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enum ABC {
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2014-02-05 22:33:10 +00:00
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TheA { x: i64, y: i64 },
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TheB (i64, i32, i32),
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2013-07-11 08:17:31 +00:00
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}
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// This is a special case since it does not have the implicit discriminant field.
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enum Univariant {
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TheOnlyCase(i64)
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}
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fn main() {
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2015-03-28 15:09:51 +00:00
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// In order to avoid endianness trouble all of the following test values consist of a single
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2013-07-11 08:17:31 +00:00
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// repeated byte. This way each interpretation of the union should look the same, no matter if
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// this is a big or little endian machine.
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2014-02-05 22:33:10 +00:00
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// 0b0111110001111100011111000111110001111100011111000111110001111100 = 8970181431921507452
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// 0b01111100011111000111110001111100 = 2088533116
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// 0b0111110001111100 = 31868
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// 0b01111100 = 124
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2021-08-25 00:39:40 +00:00
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let the_a: Box<_> = Box::new(ABC::TheA { x: 0, y: 8970181431921507452 });
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2013-07-11 08:17:31 +00:00
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// 0b0001000100010001000100010001000100010001000100010001000100010001 = 1229782938247303441
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// 0b00010001000100010001000100010001 = 286331153
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// 0b0001000100010001 = 4369
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// 0b00010001 = 17
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2021-08-25 00:39:40 +00:00
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let the_b: Box<_> = Box::new(ABC::TheB (0, 286331153, 286331153));
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2013-07-11 08:17:31 +00:00
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2021-08-25 00:39:40 +00:00
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let univariant: Box<_> = Box::new(Univariant::TheOnlyCase(123234));
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2013-07-11 08:17:31 +00:00
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2014-07-09 12:46:09 +00:00
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zzz(); // #break
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2013-07-11 08:17:31 +00:00
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}
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2013-08-17 15:37:42 +00:00
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fn zzz() {()}
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