chore: checkpoint before Python removal

This commit is contained in:
2026-03-26 22:33:59 +00:00
parent 683cec9307
commit e568ddf82a
29972 changed files with 11269302 additions and 2 deletions

23
vendor/bitflags/src/tests/all.rs vendored Normal file
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@@ -0,0 +1,23 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(1 | 1 << 1 | 1 << 2, TestFlags::all);
case(0, TestZero::all);
case(0, TestEmpty::all);
case(!0, TestExternal::all);
}
#[track_caller]
fn case<T: Flags>(expected: T::Bits, inherent: impl FnOnce() -> T)
where
<T as Flags>::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(expected, inherent().bits(), "T::all()");
assert_eq!(expected, T::all().bits(), "Flags::all()");
}

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@@ -0,0 +1,93 @@
bitflags! {
#[derive(PartialEq)]
struct Flags: u8 {
const A = 1 << 0;
const B = 1 << 1;
const C = 1 << 2;
const D = 1 << 3;
}
}
fn flag_to_string(flag: Flags) -> String {
bitflags_match!(flag, {
Flags::A => "A".to_string(),
Flags::B => { "B".to_string() }
Flags::C => "C".to_string(),
Flags::D => "D".to_string(),
Flags::A | Flags::B => "A or B".to_string(),
Flags::A & Flags::B => { "A and B | empty".to_string() },
Flags::A ^ Flags::B => "A xor B".to_string(),
Flags::A | Flags::B | Flags::C => "A or B or C".to_string(),
Flags::A & Flags::B & Flags::C => "A and B and C".to_string(),
Flags::A ^ Flags::B ^ Flags::C => "A xor B xor C".to_string(),
Flags::A | Flags::B | Flags::C | Flags::D => "All flags".to_string(),
_ => "Unknown combination".to_string()
})
}
#[test]
fn test_single_flags() {
assert_eq!(flag_to_string(Flags::A), "A");
assert_eq!(flag_to_string(Flags::B), "B");
assert_eq!(flag_to_string(Flags::C), "C");
assert_eq!(flag_to_string(Flags::D), "D");
}
#[test]
fn test_or_operations() {
assert_eq!(flag_to_string(Flags::A | Flags::B), "A or B");
assert_eq!(
flag_to_string(Flags::A | Flags::B | Flags::C),
"A or B or C"
);
assert_eq!(
flag_to_string(Flags::A | Flags::B | Flags::C | Flags::D),
"All flags"
);
}
#[test]
fn test_and_operations() {
assert_eq!(flag_to_string(Flags::A & Flags::A), "A");
assert_eq!(flag_to_string(Flags::A & Flags::B), "A and B | empty");
assert_eq!(
flag_to_string(Flags::A & Flags::B & Flags::C),
"A and B | empty"
); // Since A, B, and C are mutually exclusive, the result of A & B & C is 0 ==> A & B & C = 0000 (i.e., empty).
// However, in the bitflags_match! statement (actually is if {..} else if {..} .. else {..}),
// the "A & B = 0000" condition is listed first, so 0000 will match "A & B" first,
// resulting in the output of the "A and B | empty" branch.
assert_eq!(
flag_to_string(Flags::A & Flags::B & Flags::C & Flags::D),
"A and B | empty"
);
}
#[test]
fn test_xor_operations() {
assert_eq!(flag_to_string(Flags::A ^ Flags::B), "A or B"); // A | B = A ^ B == 0011
assert_eq!(flag_to_string(Flags::A ^ Flags::A), "A and B | empty");
assert_eq!(
flag_to_string(Flags::A ^ Flags::B ^ Flags::C),
"A or B or C"
);
}
#[test]
fn test_complex_operations() {
assert_eq!(flag_to_string(Flags::A | (Flags::B & Flags::C)), "A");
assert_eq!(
flag_to_string((Flags::A | Flags::B) & (Flags::B | Flags::C)),
"B"
);
assert_eq!(
flag_to_string(Flags::A ^ (Flags::B | Flags::C)),
"A or B or C"
);
}
#[test]
fn test_empty_and_full_flags() {
assert_eq!(flag_to_string(Flags::empty()), "A and B | empty");
assert_eq!(flag_to_string(Flags::all()), "All flags");
}

36
vendor/bitflags/src/tests/bits.rs vendored Normal file
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@@ -0,0 +1,36 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(0, TestFlags::empty(), TestFlags::bits);
case(1, TestFlags::A, TestFlags::bits);
case(1 | 1 << 1 | 1 << 2, TestFlags::ABC, TestFlags::bits);
case(!0, TestFlags::from_bits_retain(u8::MAX), TestFlags::bits);
case(1 << 3, TestFlags::from_bits_retain(1 << 3), TestFlags::bits);
case(1 << 3, TestZero::from_bits_retain(1 << 3), TestZero::bits);
case(1 << 3, TestEmpty::from_bits_retain(1 << 3), TestEmpty::bits);
case(
1 << 4 | 1 << 6,
TestExternal::from_bits_retain(1 << 4 | 1 << 6),
TestExternal::bits,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(
expected: T::Bits,
value: T,
inherent: impl FnOnce(&T) -> T::Bits,
) where
T::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(expected, inherent(&value), "{:?}.bits()", value);
assert_eq!(expected, Flags::bits(&value), "Flags::bits({:?})", value);
}

27
vendor/bitflags/src/tests/clear.rs vendored Normal file
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@@ -0,0 +1,27 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(TestFlags::from_bits_retain(0));
case(TestFlags::from_bits_retain(1 << 3));
case(TestFlags::ABC | TestFlags::from_bits_retain(1 << 3));
case(TestZero::empty());
case(TestZero::all());
case(TestFlags::from_bits_retain(1 << 3) | TestFlags::all());
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(mut flags: T)
where
T: std::fmt::Debug + PartialEq + Copy,
{
flags.clear();
assert_eq!(flags, T::empty(), "{:?}.clear()", flags);
}

53
vendor/bitflags/src/tests/complement.rs vendored Normal file
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@@ -0,0 +1,53 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(0, TestFlags::all(), TestFlags::complement);
case(0, TestFlags::from_bits_retain(!0), TestFlags::complement);
case(1 | 1 << 1, TestFlags::C, TestFlags::complement);
case(
1 | 1 << 1,
TestFlags::C | TestFlags::from_bits_retain(1 << 3),
TestFlags::complement,
);
case(
1 | 1 << 1 | 1 << 2,
TestFlags::empty(),
TestFlags::complement,
);
case(
1 | 1 << 1 | 1 << 2,
TestFlags::from_bits_retain(1 << 3),
TestFlags::complement,
);
case(0, TestZero::empty(), TestZero::complement);
case(0, TestEmpty::empty(), TestEmpty::complement);
case(1 << 2, TestOverlapping::AB, TestOverlapping::complement);
case(!0, TestExternal::empty(), TestExternal::complement);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + std::ops::Not<Output = T> + Copy>(
expected: T::Bits,
value: T,
inherent: impl FnOnce(T) -> T,
) where
T::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(expected, inherent(value).bits(), "{:?}.complement()", value);
assert_eq!(
expected,
Flags::complement(value).bits(),
"Flags::complement({:?})",
value
);
assert_eq!(expected, (!value).bits(), "!{:?}", value);
}

108
vendor/bitflags/src/tests/contains.rs vendored Normal file
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@@ -0,0 +1,108 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::empty(),
&[
(TestFlags::empty(), true),
(TestFlags::A, false),
(TestFlags::B, false),
(TestFlags::C, false),
(TestFlags::from_bits_retain(1 << 3), false),
],
TestFlags::contains,
);
case(
TestFlags::A,
&[
(TestFlags::empty(), true),
(TestFlags::A, true),
(TestFlags::B, false),
(TestFlags::C, false),
(TestFlags::ABC, false),
(TestFlags::from_bits_retain(1 << 3), false),
(TestFlags::from_bits_retain(1 | (1 << 3)), false),
],
TestFlags::contains,
);
case(
TestFlags::ABC,
&[
(TestFlags::empty(), true),
(TestFlags::A, true),
(TestFlags::B, true),
(TestFlags::C, true),
(TestFlags::ABC, true),
(TestFlags::from_bits_retain(1 << 3), false),
],
TestFlags::contains,
);
case(
TestFlags::from_bits_retain(1 << 3),
&[
(TestFlags::empty(), true),
(TestFlags::A, false),
(TestFlags::B, false),
(TestFlags::C, false),
(TestFlags::from_bits_retain(1 << 3), true),
],
TestFlags::contains,
);
case(
TestZero::ZERO,
&[(TestZero::ZERO, true)],
TestZero::contains,
);
case(
TestOverlapping::AB,
&[
(TestOverlapping::AB, true),
(TestOverlapping::BC, false),
(TestOverlapping::from_bits_retain(1 << 1), true),
],
TestOverlapping::contains,
);
case(
TestExternal::all(),
&[
(TestExternal::A, true),
(TestExternal::B, true),
(TestExternal::C, true),
(TestExternal::from_bits_retain(1 << 5 | 1 << 7), true),
],
TestExternal::contains,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + Copy>(
value: T,
inputs: &[(T, bool)],
mut inherent: impl FnMut(&T, T) -> bool,
) {
for (input, expected) in inputs {
assert_eq!(
*expected,
inherent(&value, *input),
"{:?}.contains({:?})",
value,
input
);
assert_eq!(
*expected,
Flags::contains(&value, *input),
"Flags::contains({:?}, {:?})",
value,
input
);
}
}

92
vendor/bitflags/src/tests/difference.rs vendored Normal file
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@@ -0,0 +1,92 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::A | TestFlags::B,
&[
(TestFlags::A, 1 << 1),
(TestFlags::B, 1),
(TestFlags::from_bits_retain(1 << 3), 1 | 1 << 1),
],
TestFlags::difference,
);
case(
TestFlags::from_bits_retain(1 | 1 << 3),
&[
(TestFlags::A, 1 << 3),
(TestFlags::from_bits_retain(1 << 3), 1),
],
TestFlags::difference,
);
case(
TestExternal::from_bits_retain(!0),
&[(TestExternal::A, 0b1111_1110)],
TestExternal::difference,
);
assert_eq!(
0b1111_1110,
(TestExternal::from_bits_retain(!0) & !TestExternal::A).bits()
);
assert_eq!(
0b1111_1110,
(TestFlags::from_bits_retain(!0).difference(TestFlags::A)).bits()
);
// The `!` operator unsets bits that don't correspond to known flags
assert_eq!(
1 << 1 | 1 << 2,
(TestFlags::from_bits_retain(!0) & !TestFlags::A).bits()
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + std::ops::Sub<Output = T> + std::ops::SubAssign + Copy>(
value: T,
inputs: &[(T, T::Bits)],
mut inherent: impl FnMut(T, T) -> T,
) where
T::Bits: std::fmt::Debug + PartialEq + Copy,
{
for (input, expected) in inputs {
assert_eq!(
*expected,
inherent(value, *input).bits(),
"{:?}.difference({:?})",
value,
input
);
assert_eq!(
*expected,
Flags::difference(value, *input).bits(),
"Flags::difference({:?}, {:?})",
value,
input
);
assert_eq!(
*expected,
(value - *input).bits(),
"{:?} - {:?}",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
value -= *input;
value
}
.bits(),
"{:?} -= {:?}",
value,
input,
);
}
}

23
vendor/bitflags/src/tests/empty.rs vendored Normal file
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@@ -0,0 +1,23 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(0, TestFlags::empty);
case(0, TestZero::empty);
case(0, TestEmpty::empty);
case(0, TestExternal::empty);
}
#[track_caller]
fn case<T: Flags>(expected: T::Bits, inherent: impl FnOnce() -> T)
where
<T as Flags>::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(expected, inherent().bits(), "T::empty()");
assert_eq!(expected, T::empty().bits(), "Flags::empty()");
}

10
vendor/bitflags/src/tests/eq.rs vendored Normal file
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@@ -0,0 +1,10 @@
use super::*;
#[test]
fn cases() {
assert_eq!(TestFlags::empty(), TestFlags::empty());
assert_eq!(TestFlags::all(), TestFlags::all());
assert!(TestFlags::from_bits_retain(1) < TestFlags::from_bits_retain(2));
assert!(TestFlags::from_bits_retain(2) > TestFlags::from_bits_retain(1));
}

42
vendor/bitflags/src/tests/extend.rs vendored Normal file
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@@ -0,0 +1,42 @@
use super::*;
#[test]
fn cases() {
let mut flags = TestFlags::empty();
flags.extend(TestFlags::A);
assert_eq!(TestFlags::A, flags);
flags.extend(TestFlags::A | TestFlags::B | TestFlags::C);
assert_eq!(TestFlags::ABC, flags);
flags.extend(TestFlags::from_bits_retain(1 << 5));
assert_eq!(TestFlags::ABC | TestFlags::from_bits_retain(1 << 5), flags);
}
mod external {
use super::*;
#[test]
fn cases() {
let mut flags = TestExternal::empty();
flags.extend(TestExternal::A);
assert_eq!(TestExternal::A, flags);
flags.extend(TestExternal::A | TestExternal::B | TestExternal::C);
assert_eq!(TestExternal::ABC, flags);
flags.extend(TestExternal::from_bits_retain(1 << 5));
assert_eq!(
TestExternal::ABC | TestExternal::from_bits_retain(1 << 5),
flags
);
}
}

46
vendor/bitflags/src/tests/flags.rs vendored Normal file
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@@ -0,0 +1,46 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
let flags = TestFlags::FLAGS
.iter()
.map(|flag| (flag.name(), flag.value().bits()))
.collect::<Vec<_>>();
assert_eq!(
vec![
("A", 1u8),
("B", 1 << 1),
("C", 1 << 2),
("ABC", 1 | 1 << 1 | 1 << 2),
],
flags,
);
assert_eq!(0, TestEmpty::FLAGS.iter().count());
}
mod external {
use super::*;
#[test]
fn cases() {
let flags = TestExternal::FLAGS
.iter()
.map(|flag| (flag.name(), flag.value().bits()))
.collect::<Vec<_>>();
assert_eq!(
vec![
("A", 1u8),
("B", 1 << 1),
("C", 1 << 2),
("ABC", 1 | 1 << 1 | 1 << 2),
("", !0),
],
flags,
);
}
}

97
vendor/bitflags/src/tests/fmt.rs vendored Normal file
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@@ -0,0 +1,97 @@
use super::*;
#[test]
fn cases() {
case(TestFlags::empty(), "TestFlags(0x0)", "0", "0", "0", "0");
case(TestFlags::A, "TestFlags(A)", "1", "1", "1", "1");
case(
TestFlags::all(),
"TestFlags(A | B | C)",
"7",
"7",
"7",
"111",
);
case(
TestFlags::from_bits_retain(1 << 3),
"TestFlags(0x8)",
"8",
"8",
"10",
"1000",
);
case(
TestFlags::A | TestFlags::from_bits_retain(1 << 3),
"TestFlags(A | 0x8)",
"9",
"9",
"11",
"1001",
);
case(TestZero::ZERO, "TestZero(0x0)", "0", "0", "0", "0");
case(
TestZero::ZERO | TestZero::from_bits_retain(1),
"TestZero(0x1)",
"1",
"1",
"1",
"1",
);
case(TestZeroOne::ONE, "TestZeroOne(ONE)", "1", "1", "1", "1");
case(
TestOverlapping::from_bits_retain(1 << 1),
"TestOverlapping(0x2)",
"2",
"2",
"2",
"10",
);
case(
TestExternal::from_bits_retain(1 | 1 << 1 | 1 << 3),
"TestExternal(A | B | 0x8)",
"B",
"b",
"13",
"1011",
);
case(
TestExternal::all(),
"TestExternal(A | B | C | 0xf8)",
"FF",
"ff",
"377",
"11111111",
);
case(
TestExternalFull::all(),
"TestExternalFull(0xff)",
"FF",
"ff",
"377",
"11111111",
);
}
#[track_caller]
fn case<
T: std::fmt::Debug + std::fmt::UpperHex + std::fmt::LowerHex + std::fmt::Octal + std::fmt::Binary,
>(
value: T,
debug: &str,
uhex: &str,
lhex: &str,
oct: &str,
bin: &str,
) {
assert_eq!(debug, format!("{:?}", value));
assert_eq!(uhex, format!("{:X}", value));
assert_eq!(lhex, format!("{:x}", value));
assert_eq!(oct, format!("{:o}", value));
assert_eq!(bin, format!("{:b}", value));
}

45
vendor/bitflags/src/tests/from_bits.rs vendored Normal file
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@@ -0,0 +1,45 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(Some(0), 0, TestFlags::from_bits);
case(Some(1), 1, TestFlags::from_bits);
case(
Some(1 | 1 << 1 | 1 << 2),
1 | 1 << 1 | 1 << 2,
TestFlags::from_bits,
);
case(None, 1 << 3, TestFlags::from_bits);
case(None, 1 | 1 << 3, TestFlags::from_bits);
case(Some(1 | 1 << 1), 1 | 1 << 1, TestOverlapping::from_bits);
case(Some(1 << 1), 1 << 1, TestOverlapping::from_bits);
case(Some(1 << 5), 1 << 5, TestExternal::from_bits);
}
#[track_caller]
fn case<T: Flags>(
expected: Option<T::Bits>,
input: T::Bits,
inherent: impl FnOnce(T::Bits) -> Option<T>,
) where
<T as Flags>::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(
expected,
inherent(input).map(|f| f.bits()),
"T::from_bits({:?})",
input
);
assert_eq!(
expected,
T::from_bits(input).map(|f| f.bits()),
"Flags::from_bits({:?})",
input
);
}

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@@ -0,0 +1,38 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(0, TestFlags::from_bits_retain);
case(1, TestFlags::from_bits_retain);
case(1 | 1 << 1 | 1 << 2, TestFlags::from_bits_retain);
case(1 << 3, TestFlags::from_bits_retain);
case(1 | 1 << 3, TestFlags::from_bits_retain);
case(1 | 1 << 1, TestOverlapping::from_bits_retain);
case(1 << 1, TestOverlapping::from_bits_retain);
case(1 << 5, TestExternal::from_bits_retain);
}
#[track_caller]
fn case<T: Flags>(input: T::Bits, inherent: impl FnOnce(T::Bits) -> T)
where
<T as Flags>::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(
input,
inherent(input).bits(),
"T::from_bits_retain({:?})",
input
);
assert_eq!(
input,
T::from_bits_retain(input).bits(),
"Flags::from_bits_retain({:?})",
input
);
}

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@@ -0,0 +1,42 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(0, 0, TestFlags::from_bits_truncate);
case(1, 1, TestFlags::from_bits_truncate);
case(
1 | 1 << 1 | 1 << 2,
1 | 1 << 1 | 1 << 2,
TestFlags::from_bits_truncate,
);
case(0, 1 << 3, TestFlags::from_bits_truncate);
case(1, 1 | 1 << 3, TestFlags::from_bits_truncate);
case(1 | 1 << 1, 1 | 1 << 1, TestOverlapping::from_bits_truncate);
case(1 << 1, 1 << 1, TestOverlapping::from_bits_truncate);
case(1 << 5, 1 << 5, TestExternal::from_bits_truncate);
}
#[track_caller]
fn case<T: Flags>(expected: T::Bits, input: T::Bits, inherent: impl FnOnce(T::Bits) -> T)
where
<T as Flags>::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(
expected,
inherent(input).bits(),
"T::from_bits_truncate({:?})",
input
);
assert_eq!(
expected,
T::from_bits_truncate(input).bits(),
"Flags::from_bits_truncate({:?})",
input
);
}

42
vendor/bitflags/src/tests/from_name.rs vendored Normal file
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@@ -0,0 +1,42 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(Some(1), "A", TestFlags::from_name);
case(Some(1 << 1), "B", TestFlags::from_name);
case(Some(1 | 1 << 1 | 1 << 2), "ABC", TestFlags::from_name);
case(None, "", TestFlags::from_name);
case(None, "a", TestFlags::from_name);
case(None, "0x1", TestFlags::from_name);
case(None, "A | B", TestFlags::from_name);
case(Some(0), "ZERO", TestZero::from_name);
case(Some(2), "", TestUnicode::from_name);
case(None, "_", TestExternal::from_name);
case(None, "", TestExternal::from_name);
}
#[track_caller]
fn case<T: Flags>(expected: Option<T::Bits>, input: &str, inherent: impl FnOnce(&str) -> Option<T>)
where
<T as Flags>::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(
expected,
inherent(input).map(|f| f.bits()),
"T::from_name({:?})",
input
);
assert_eq!(
expected,
T::from_name(input).map(|f| f.bits()),
"Flags::from_name({:?})",
input
);
}

91
vendor/bitflags/src/tests/insert.rs vendored Normal file
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@@ -0,0 +1,91 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::empty(),
&[
(TestFlags::A, 1),
(TestFlags::A | TestFlags::B, 1 | 1 << 1),
(TestFlags::empty(), 0),
(TestFlags::from_bits_retain(1 << 3), 1 << 3),
],
TestFlags::insert,
TestFlags::set,
);
case(
TestFlags::A,
&[
(TestFlags::A, 1),
(TestFlags::empty(), 1),
(TestFlags::B, 1 | 1 << 1),
],
TestFlags::insert,
TestFlags::set,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + Copy>(
value: T,
inputs: &[(T, T::Bits)],
mut inherent_insert: impl FnMut(&mut T, T),
mut inherent_set: impl FnMut(&mut T, T, bool),
) where
T::Bits: std::fmt::Debug + PartialEq + Copy,
{
for (input, expected) in inputs {
assert_eq!(
*expected,
{
let mut value = value;
inherent_insert(&mut value, *input);
value
}
.bits(),
"{:?}.insert({:?})",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
Flags::insert(&mut value, *input);
value
}
.bits(),
"Flags::insert({:?}, {:?})",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
inherent_set(&mut value, *input, true);
value
}
.bits(),
"{:?}.set({:?}, true)",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
Flags::set(&mut value, *input, true);
value
}
.bits(),
"Flags::set({:?}, {:?}, true)",
value,
input
);
}
}

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@@ -0,0 +1,79 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::empty(),
&[(TestFlags::empty(), 0), (TestFlags::all(), 0)],
TestFlags::intersection,
);
case(
TestFlags::all(),
&[
(TestFlags::all(), 1 | 1 << 1 | 1 << 2),
(TestFlags::A, 1),
(TestFlags::from_bits_retain(1 << 3), 0),
],
TestFlags::intersection,
);
case(
TestFlags::from_bits_retain(1 << 3),
&[(TestFlags::from_bits_retain(1 << 3), 1 << 3)],
TestFlags::intersection,
);
case(
TestOverlapping::AB,
&[(TestOverlapping::BC, 1 << 1)],
TestOverlapping::intersection,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + std::ops::BitAnd<Output = T> + std::ops::BitAndAssign + Copy>(
value: T,
inputs: &[(T, T::Bits)],
mut inherent: impl FnMut(T, T) -> T,
) where
T::Bits: std::fmt::Debug + PartialEq + Copy,
{
for (input, expected) in inputs {
assert_eq!(
*expected,
inherent(value, *input).bits(),
"{:?}.intersection({:?})",
value,
input
);
assert_eq!(
*expected,
Flags::intersection(value, *input).bits(),
"Flags::intersection({:?}, {:?})",
value,
input
);
assert_eq!(
*expected,
(value & *input).bits(),
"{:?} & {:?}",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
value &= *input;
value
}
.bits(),
"{:?} &= {:?}",
value,
input,
);
}
}

91
vendor/bitflags/src/tests/intersects.rs vendored Normal file
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@@ -0,0 +1,91 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::empty(),
&[
(TestFlags::empty(), false),
(TestFlags::A, false),
(TestFlags::B, false),
(TestFlags::C, false),
(TestFlags::from_bits_retain(1 << 3), false),
],
TestFlags::intersects,
);
case(
TestFlags::A,
&[
(TestFlags::empty(), false),
(TestFlags::A, true),
(TestFlags::B, false),
(TestFlags::C, false),
(TestFlags::ABC, true),
(TestFlags::from_bits_retain(1 << 3), false),
(TestFlags::from_bits_retain(1 | (1 << 3)), true),
],
TestFlags::intersects,
);
case(
TestFlags::ABC,
&[
(TestFlags::empty(), false),
(TestFlags::A, true),
(TestFlags::B, true),
(TestFlags::C, true),
(TestFlags::ABC, true),
(TestFlags::from_bits_retain(1 << 3), false),
],
TestFlags::intersects,
);
case(
TestFlags::from_bits_retain(1 << 3),
&[
(TestFlags::empty(), false),
(TestFlags::A, false),
(TestFlags::B, false),
(TestFlags::C, false),
(TestFlags::from_bits_retain(1 << 3), true),
],
TestFlags::intersects,
);
case(
TestOverlapping::AB,
&[
(TestOverlapping::AB, true),
(TestOverlapping::BC, true),
(TestOverlapping::from_bits_retain(1 << 1), true),
],
TestOverlapping::intersects,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + Copy>(
value: T,
inputs: &[(T, bool)],
mut inherent: impl FnMut(&T, T) -> bool,
) {
for (input, expected) in inputs {
assert_eq!(
*expected,
inherent(&value, *input),
"{:?}.intersects({:?})",
value,
input
);
assert_eq!(
*expected,
Flags::intersects(&value, *input),
"Flags::intersects({:?}, {:?})",
value,
input
);
}
}

32
vendor/bitflags/src/tests/is_all.rs vendored Normal file
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@@ -0,0 +1,32 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(false, TestFlags::empty(), TestFlags::is_all);
case(false, TestFlags::A, TestFlags::is_all);
case(true, TestFlags::ABC, TestFlags::is_all);
case(
true,
TestFlags::ABC | TestFlags::from_bits_retain(1 << 3),
TestFlags::is_all,
);
case(true, TestZero::empty(), TestZero::is_all);
case(true, TestEmpty::empty(), TestEmpty::is_all);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(expected: bool, value: T, inherent: impl FnOnce(&T) -> bool) {
assert_eq!(expected, inherent(&value), "{:?}.is_all()", value);
assert_eq!(
expected,
Flags::is_all(&value),
"Flags::is_all({:?})",
value
);
}

31
vendor/bitflags/src/tests/is_empty.rs vendored Normal file
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@@ -0,0 +1,31 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(true, TestFlags::empty(), TestFlags::is_empty);
case(false, TestFlags::A, TestFlags::is_empty);
case(false, TestFlags::ABC, TestFlags::is_empty);
case(
false,
TestFlags::from_bits_retain(1 << 3),
TestFlags::is_empty,
);
case(true, TestZero::empty(), TestZero::is_empty);
case(true, TestEmpty::empty(), TestEmpty::is_empty);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(expected: bool, value: T, inherent: impl FnOnce(&T) -> bool) {
assert_eq!(expected, inherent(&value), "{:?}.is_empty()", value);
assert_eq!(
expected,
Flags::is_empty(&value),
"Flags::is_empty({:?})",
value
);
}

299
vendor/bitflags/src/tests/iter.rs vendored Normal file
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@@ -0,0 +1,299 @@
use super::*;
use crate::Flags;
#[test]
#[cfg(not(miri))] // Very slow in miri
fn roundtrip() {
for a in 0u8..=255 {
for b in 0u8..=255 {
let f = TestFlags::from_bits_retain(a | b);
assert_eq!(f, f.iter().collect::<TestFlags>());
assert_eq!(
TestFlags::from_bits_truncate(f.bits()),
f.iter_names().map(|(_, f)| f).collect::<TestFlags>()
);
let f = TestExternal::from_bits_retain(a | b);
assert_eq!(f, f.iter().collect::<TestExternal>());
}
}
}
mod collect {
use super::*;
#[test]
fn cases() {
assert_eq!(0, [].into_iter().collect::<TestFlags>().bits());
assert_eq!(1, [TestFlags::A,].into_iter().collect::<TestFlags>().bits());
assert_eq!(
1 | 1 << 1 | 1 << 2,
[TestFlags::A, TestFlags::B | TestFlags::C,]
.into_iter()
.collect::<TestFlags>()
.bits()
);
assert_eq!(
1 | 1 << 3,
[
TestFlags::from_bits_retain(1 << 3),
TestFlags::empty(),
TestFlags::A,
]
.into_iter()
.collect::<TestFlags>()
.bits()
);
assert_eq!(
1 << 5 | 1 << 7,
[
TestExternal::empty(),
TestExternal::from_bits_retain(1 << 5),
TestExternal::from_bits_retain(1 << 7),
]
.into_iter()
.collect::<TestExternal>()
.bits()
);
}
}
mod iter {
use super::*;
#[test]
fn cases() {
case(&[], TestFlags::empty(), TestFlags::iter);
case(&[1], TestFlags::A, TestFlags::iter);
case(&[1, 1 << 1], TestFlags::A | TestFlags::B, TestFlags::iter);
case(
&[1, 1 << 1, 1 << 3],
TestFlags::A | TestFlags::B | TestFlags::from_bits_retain(1 << 3),
TestFlags::iter,
);
case(&[1, 1 << 1, 1 << 2], TestFlags::ABC, TestFlags::iter);
case(
&[1, 1 << 1, 1 << 2, 1 << 3],
TestFlags::ABC | TestFlags::from_bits_retain(1 << 3),
TestFlags::iter,
);
case(
&[1 | 1 << 1 | 1 << 2],
TestFlagsInvert::ABC,
TestFlagsInvert::iter,
);
case(&[], TestZero::ZERO, TestZero::iter);
case(
&[1, 1 << 1, 1 << 2, 0b1111_1000],
TestExternal::all(),
TestExternal::iter,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + IntoIterator<Item = T> + Copy>(
expected: &[T::Bits],
value: T,
inherent: impl FnOnce(&T) -> crate::iter::Iter<T>,
) where
T::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(
expected,
inherent(&value).map(|f| f.bits()).collect::<Vec<_>>(),
"{:?}.iter()",
value
);
assert_eq!(
expected,
Flags::iter(&value).map(|f| f.bits()).collect::<Vec<_>>(),
"Flags::iter({:?})",
value
);
assert_eq!(
expected,
value.into_iter().map(|f| f.bits()).collect::<Vec<_>>(),
"{:?}.into_iter()",
value
);
}
}
mod iter_names {
use super::*;
#[test]
fn cases() {
case(&[], TestFlags::empty(), TestFlags::iter_names);
case(&[("A", 1)], TestFlags::A, TestFlags::iter_names);
case(
&[("A", 1), ("B", 1 << 1)],
TestFlags::A | TestFlags::B,
TestFlags::iter_names,
);
case(
&[("A", 1), ("B", 1 << 1)],
TestFlags::A | TestFlags::B | TestFlags::from_bits_retain(1 << 3),
TestFlags::iter_names,
);
case(
&[("A", 1), ("B", 1 << 1), ("C", 1 << 2)],
TestFlags::ABC,
TestFlags::iter_names,
);
case(
&[("A", 1), ("B", 1 << 1), ("C", 1 << 2)],
TestFlags::ABC | TestFlags::from_bits_retain(1 << 3),
TestFlags::iter_names,
);
case(
&[("ABC", 1 | 1 << 1 | 1 << 2)],
TestFlagsInvert::ABC,
TestFlagsInvert::iter_names,
);
case(&[], TestZero::ZERO, TestZero::iter_names);
case(
&[("A", 1)],
TestOverlappingFull::A,
TestOverlappingFull::iter_names,
);
case(
&[("A", 1), ("D", 1 << 1)],
TestOverlappingFull::A | TestOverlappingFull::D,
TestOverlappingFull::iter_names,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(
expected: &[(&'static str, T::Bits)],
value: T,
inherent: impl FnOnce(&T) -> crate::iter::IterNames<T>,
) where
T::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(
expected,
inherent(&value)
.map(|(n, f)| (n, f.bits()))
.collect::<Vec<_>>(),
"{:?}.iter_names()",
value
);
assert_eq!(
expected,
Flags::iter_names(&value)
.map(|(n, f)| (n, f.bits()))
.collect::<Vec<_>>(),
"Flags::iter_names({:?})",
value
);
}
}
mod iter_defined_names {
use crate::Flags;
#[test]
fn test_defined_names() {
bitflags! {
#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash)]
struct TestFlags: u32 {
const A = 0b00000001;
const ZERO = 0;
const B = 0b00000010;
const C = 0b00000100;
const CC = Self::C.bits();
const D = 0b10000100;
const ABC = Self::A.bits() | Self::B.bits() | Self::C.bits();
const AB = Self::A.bits() | Self::B.bits();
const AC = Self::A.bits() | Self::C.bits();
const CB = Self::B.bits() | Self::C.bits();
}
}
// Test all named flags produced by the iterator
let all_named: Vec<(&'static str, TestFlags)> = TestFlags::iter_defined_names().collect();
// Verify all named flags are included
let expected_flags = vec![
("A", TestFlags::A),
("ZERO", TestFlags::ZERO),
("B", TestFlags::B),
("C", TestFlags::C),
// Note: CC and C have the same bit value, but both are named flags
("CC", TestFlags::CC),
("D", TestFlags::D),
("ABC", TestFlags::ABC),
("AB", TestFlags::AB),
("AC", TestFlags::AC),
("CB", TestFlags::CB),
];
assert_eq!(
all_named.len(),
expected_flags.len(),
"Should have 10 named flags"
);
// Verify each expected flag is in the result
for expected_flag in &expected_flags {
assert!(
all_named.contains(expected_flag),
"Missing flag: {:?}",
expected_flag
);
}
// Test if iterator order is consistent with definition order
let flags_in_order: Vec<(&'static str, TestFlags)> =
TestFlags::iter_defined_names().collect();
assert_eq!(
flags_in_order, expected_flags,
"Flag order should match definition order"
);
// Test that iterator can be used multiple times
let first_iteration: Vec<(&'static str, TestFlags)> =
TestFlags::iter_defined_names().collect();
let second_iteration: Vec<(&'static str, TestFlags)> =
TestFlags::iter_defined_names().collect();
assert_eq!(
first_iteration, second_iteration,
"Multiple iterations should produce the same result"
);
// Test consistency with FLAGS constant
let flags_from_iter: std::collections::HashSet<u32> = TestFlags::iter_defined_names()
.map(|(_, f)| f.bits())
.collect();
let flags_from_const: std::collections::HashSet<u32> = TestFlags::FLAGS
.iter()
.filter(|f| f.is_named())
.map(|f| f.value().bits())
.collect();
assert_eq!(
flags_from_iter, flags_from_const,
"iter_defined_names() should be consistent with named flags in FLAGS"
);
}
}

47
vendor/bitflags/src/tests/known_bits.rs vendored Normal file
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@@ -0,0 +1,47 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(0, TestFlags::empty(), TestFlags::known_bits);
case(1, TestFlags::A, TestFlags::known_bits);
case(1 | 1 << 1 | 1 << 2, TestFlags::all(), TestFlags::known_bits);
case(
1 | 1 << 1 | 1 << 2,
TestFlags::ABC | TestFlags::from_bits_retain(1 << 3),
TestFlags::known_bits,
);
case(
0,
TestFlags::from_bits_retain(1 << 3),
TestFlags::known_bits,
);
case(0, TestZero::empty(), TestZero::known_bits);
case(
0xFF,
TestExternal::from_bits_retain(0xFF),
TestExternal::known_bits,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(
expected: T::Bits,
value: T,
inherent: impl FnOnce(&T) -> T::Bits,
) where
T::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(expected, inherent(&value), "{:?}.known_bits()", value);
assert_eq!(
expected,
Flags::known_bits(&value),
"Flags::known_bits({:?})",
value,
);
}

332
vendor/bitflags/src/tests/parser.rs vendored Normal file
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@@ -0,0 +1,332 @@
use super::*;
use crate::{parser::*, Flags};
#[test]
#[cfg(not(miri))] // Very slow in miri
fn roundtrip() {
let mut s = String::new();
for a in 0u8..=255 {
for b in 0u8..=255 {
let f = TestFlags::from_bits_retain(a | b);
s.clear();
to_writer(&f, &mut s).unwrap();
assert_eq!(f, from_str::<TestFlags>(&s).unwrap());
}
}
}
#[test]
#[cfg(not(miri))] // Very slow in miri
fn roundtrip_truncate() {
let mut s = String::new();
for a in 0u8..=255 {
for b in 0u8..=255 {
let f = TestFlags::from_bits_retain(a | b);
s.clear();
to_writer_truncate(&f, &mut s).unwrap();
assert_eq!(
TestFlags::from_bits_truncate(f.bits()),
from_str_truncate::<TestFlags>(&s).unwrap()
);
}
}
}
#[test]
#[cfg(not(miri))] // Very slow in miri
fn roundtrip_strict() {
let mut s = String::new();
for a in 0u8..=255 {
for b in 0u8..=255 {
let f = TestFlags::from_bits_retain(a | b);
s.clear();
to_writer_strict(&f, &mut s).unwrap();
let mut strict = TestFlags::empty();
for (_, flag) in f.iter_names() {
strict |= flag;
}
let f = strict;
if let Ok(s) = from_str_strict::<TestFlags>(&s) {
assert_eq!(f, s);
}
}
}
}
mod from_str {
use super::*;
#[test]
fn valid() {
assert_eq!(0, from_str::<TestFlags>("").unwrap().bits());
assert_eq!(1, from_str::<TestFlags>("A").unwrap().bits());
assert_eq!(1, from_str::<TestFlags>(" A ").unwrap().bits());
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str::<TestFlags>("A | B | C").unwrap().bits()
);
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str::<TestFlags>("A\n|\tB\r\n| C ").unwrap().bits()
);
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str::<TestFlags>("A|B|C").unwrap().bits()
);
assert_eq!(1 << 3, from_str::<TestFlags>("0x8").unwrap().bits());
assert_eq!(1 | 1 << 3, from_str::<TestFlags>("A | 0x8").unwrap().bits());
assert_eq!(
1 | 1 << 1 | 1 << 3,
from_str::<TestFlags>("0x1 | 0x8 | B").unwrap().bits()
);
assert_eq!(
1 | 1 << 1,
from_str::<TestUnicode>("一 | 二").unwrap().bits()
);
}
#[test]
fn invalid() {
assert!(from_str::<TestFlags>("a")
.unwrap_err()
.to_string()
.starts_with("unrecognized named flag"));
assert!(from_str::<TestFlags>("A & B")
.unwrap_err()
.to_string()
.starts_with("unrecognized named flag"));
assert!(from_str::<TestFlags>("0xg")
.unwrap_err()
.to_string()
.starts_with("invalid hex flag"));
assert!(from_str::<TestFlags>("0xffffffffffff")
.unwrap_err()
.to_string()
.starts_with("invalid hex flag"));
}
}
mod to_writer {
use super::*;
#[test]
fn cases() {
assert_eq!("", write(TestFlags::empty()));
assert_eq!("A", write(TestFlags::A));
assert_eq!("A | B | C", write(TestFlags::all()));
assert_eq!("0x8", write(TestFlags::from_bits_retain(1 << 3)));
assert_eq!(
"A | 0x8",
write(TestFlags::A | TestFlags::from_bits_retain(1 << 3))
);
assert_eq!("", write(TestZero::ZERO));
assert_eq!("ABC", write(TestFlagsInvert::all()));
assert_eq!("0x1", write(TestOverlapping::from_bits_retain(1)));
assert_eq!("A", write(TestOverlappingFull::C));
assert_eq!(
"A | D",
write(TestOverlappingFull::C | TestOverlappingFull::D)
);
}
fn write<F: Flags>(value: F) -> String
where
F::Bits: crate::parser::WriteHex,
{
let mut s = String::new();
to_writer(&value, &mut s).unwrap();
s
}
}
mod from_str_truncate {
use super::*;
#[test]
fn valid() {
assert_eq!(0, from_str_truncate::<TestFlags>("").unwrap().bits());
assert_eq!(1, from_str_truncate::<TestFlags>("A").unwrap().bits());
assert_eq!(1, from_str_truncate::<TestFlags>(" A ").unwrap().bits());
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str_truncate::<TestFlags>("A | B | C").unwrap().bits()
);
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str_truncate::<TestFlags>("A\n|\tB\r\n| C ")
.unwrap()
.bits()
);
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str_truncate::<TestFlags>("A|B|C").unwrap().bits()
);
assert_eq!(0, from_str_truncate::<TestFlags>("0x8").unwrap().bits());
assert_eq!(1, from_str_truncate::<TestFlags>("A | 0x8").unwrap().bits());
assert_eq!(
1 | 1 << 1,
from_str_truncate::<TestFlags>("0x1 | 0x8 | B")
.unwrap()
.bits()
);
assert_eq!(
1 | 1 << 1,
from_str_truncate::<TestUnicode>("一 | 二").unwrap().bits()
);
}
}
mod to_writer_truncate {
use super::*;
#[test]
fn cases() {
assert_eq!("", write(TestFlags::empty()));
assert_eq!("A", write(TestFlags::A));
assert_eq!("A | B | C", write(TestFlags::all()));
assert_eq!("", write(TestFlags::from_bits_retain(1 << 3)));
assert_eq!(
"A",
write(TestFlags::A | TestFlags::from_bits_retain(1 << 3))
);
assert_eq!("", write(TestZero::ZERO));
assert_eq!("ABC", write(TestFlagsInvert::all()));
assert_eq!("0x1", write(TestOverlapping::from_bits_retain(1)));
assert_eq!("A", write(TestOverlappingFull::C));
assert_eq!(
"A | D",
write(TestOverlappingFull::C | TestOverlappingFull::D)
);
}
fn write<F: Flags>(value: F) -> String
where
F::Bits: crate::parser::WriteHex,
{
let mut s = String::new();
to_writer_truncate(&value, &mut s).unwrap();
s
}
}
mod from_str_strict {
use super::*;
#[test]
fn valid() {
assert_eq!(0, from_str_strict::<TestFlags>("").unwrap().bits());
assert_eq!(1, from_str_strict::<TestFlags>("A").unwrap().bits());
assert_eq!(1, from_str_strict::<TestFlags>(" A ").unwrap().bits());
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str_strict::<TestFlags>("A | B | C").unwrap().bits()
);
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str_strict::<TestFlags>("A\n|\tB\r\n| C ")
.unwrap()
.bits()
);
assert_eq!(
1 | 1 << 1 | 1 << 2,
from_str_strict::<TestFlags>("A|B|C").unwrap().bits()
);
assert_eq!(
1 | 1 << 1,
from_str_strict::<TestUnicode>("一 | 二").unwrap().bits()
);
}
#[test]
fn invalid() {
assert!(from_str_strict::<TestFlags>("a")
.unwrap_err()
.to_string()
.starts_with("unrecognized named flag"));
assert!(from_str_strict::<TestFlags>("A & B")
.unwrap_err()
.to_string()
.starts_with("unrecognized named flag"));
assert!(from_str_strict::<TestFlags>("0x1")
.unwrap_err()
.to_string()
.starts_with("invalid hex flag"));
assert!(from_str_strict::<TestFlags>("0xg")
.unwrap_err()
.to_string()
.starts_with("invalid hex flag"));
assert!(from_str_strict::<TestFlags>("0xffffffffffff")
.unwrap_err()
.to_string()
.starts_with("invalid hex flag"));
}
}
mod to_writer_strict {
use super::*;
#[test]
fn cases() {
assert_eq!("", write(TestFlags::empty()));
assert_eq!("A", write(TestFlags::A));
assert_eq!("A | B | C", write(TestFlags::all()));
assert_eq!("", write(TestFlags::from_bits_retain(1 << 3)));
assert_eq!(
"A",
write(TestFlags::A | TestFlags::from_bits_retain(1 << 3))
);
assert_eq!("", write(TestZero::ZERO));
assert_eq!("ABC", write(TestFlagsInvert::all()));
assert_eq!("", write(TestOverlapping::from_bits_retain(1)));
assert_eq!("A", write(TestOverlappingFull::C));
assert_eq!(
"A | D",
write(TestOverlappingFull::C | TestOverlappingFull::D)
);
}
fn write<F: Flags>(value: F) -> String
where
F::Bits: crate::parser::WriteHex,
{
let mut s = String::new();
to_writer_strict(&value, &mut s).unwrap();
s
}
}

100
vendor/bitflags/src/tests/remove.rs vendored Normal file
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@@ -0,0 +1,100 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::empty(),
&[
(TestFlags::A, 0),
(TestFlags::empty(), 0),
(TestFlags::from_bits_retain(1 << 3), 0),
],
TestFlags::remove,
TestFlags::set,
);
case(
TestFlags::A,
&[
(TestFlags::A, 0),
(TestFlags::empty(), 1),
(TestFlags::B, 1),
],
TestFlags::remove,
TestFlags::set,
);
case(
TestFlags::ABC,
&[
(TestFlags::A, 1 << 1 | 1 << 2),
(TestFlags::A | TestFlags::C, 1 << 1),
],
TestFlags::remove,
TestFlags::set,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + Copy>(
value: T,
inputs: &[(T, T::Bits)],
mut inherent_remove: impl FnMut(&mut T, T),
mut inherent_set: impl FnMut(&mut T, T, bool),
) where
T::Bits: std::fmt::Debug + PartialEq + Copy,
{
for (input, expected) in inputs {
assert_eq!(
*expected,
{
let mut value = value;
inherent_remove(&mut value, *input);
value
}
.bits(),
"{:?}.remove({:?})",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
Flags::remove(&mut value, *input);
value
}
.bits(),
"Flags::remove({:?}, {:?})",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
inherent_set(&mut value, *input, false);
value
}
.bits(),
"{:?}.set({:?}, false)",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
Flags::set(&mut value, *input, false);
value
}
.bits(),
"Flags::set({:?}, {:?}, false)",
value,
input
);
}
}

View File

@@ -0,0 +1,110 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::empty(),
&[
(TestFlags::empty(), 0),
(TestFlags::all(), 1 | 1 << 1 | 1 << 2),
(TestFlags::from_bits_retain(1 << 3), 1 << 3),
],
TestFlags::symmetric_difference,
TestFlags::toggle,
);
case(
TestFlags::A,
&[
(TestFlags::empty(), 1),
(TestFlags::A, 0),
(TestFlags::all(), 1 << 1 | 1 << 2),
],
TestFlags::symmetric_difference,
TestFlags::toggle,
);
case(
TestFlags::A | TestFlags::B | TestFlags::from_bits_retain(1 << 3),
&[
(TestFlags::ABC, 1 << 2 | 1 << 3),
(TestFlags::from_bits_retain(1 << 3), 1 | 1 << 1),
],
TestFlags::symmetric_difference,
TestFlags::toggle,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + std::ops::BitXor<Output = T> + std::ops::BitXorAssign + Copy>(
value: T,
inputs: &[(T, T::Bits)],
mut inherent_sym_diff: impl FnMut(T, T) -> T,
mut inherent_toggle: impl FnMut(&mut T, T),
) where
T::Bits: std::fmt::Debug + PartialEq + Copy,
{
for (input, expected) in inputs {
assert_eq!(
*expected,
inherent_sym_diff(value, *input).bits(),
"{:?}.symmetric_difference({:?})",
value,
input
);
assert_eq!(
*expected,
Flags::symmetric_difference(value, *input).bits(),
"Flags::symmetric_difference({:?}, {:?})",
value,
input
);
assert_eq!(
*expected,
(value ^ *input).bits(),
"{:?} ^ {:?}",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
value ^= *input;
value
}
.bits(),
"{:?} ^= {:?}",
value,
input,
);
assert_eq!(
*expected,
{
let mut value = value;
inherent_toggle(&mut value, *input);
value
}
.bits(),
"{:?}.toggle({:?})",
value,
input,
);
assert_eq!(
*expected,
{
let mut value = value;
Flags::toggle(&mut value, *input);
value
}
.bits(),
"{:?}.toggle({:?})",
value,
input,
);
}
}

29
vendor/bitflags/src/tests/truncate.rs vendored Normal file
View File

@@ -0,0 +1,29 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::ABC | TestFlags::from_bits_retain(1 << 3),
TestFlags::ABC,
);
case(TestZero::empty(), TestZero::empty());
case(TestZero::all(), TestZero::all());
case(
TestFlags::from_bits_retain(1 << 3) | TestFlags::all(),
TestFlags::all(),
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(mut before: T, after: T)
where
T: std::fmt::Debug + PartialEq + Copy,
{
before.truncate();
assert_eq!(before, after, "{:?}.truncate()", before);
}

71
vendor/bitflags/src/tests/union.rs vendored Normal file
View File

@@ -0,0 +1,71 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(
TestFlags::empty(),
&[
(TestFlags::A, 1),
(TestFlags::all(), 1 | 1 << 1 | 1 << 2),
(TestFlags::empty(), 0),
(TestFlags::from_bits_retain(1 << 3), 1 << 3),
],
TestFlags::union,
);
case(
TestFlags::A | TestFlags::C,
&[
(TestFlags::A | TestFlags::B, 1 | 1 << 1 | 1 << 2),
(TestFlags::A, 1 | 1 << 2),
],
TestFlags::union,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug + std::ops::BitOr<Output = T> + std::ops::BitOrAssign + Copy>(
value: T,
inputs: &[(T, T::Bits)],
mut inherent: impl FnMut(T, T) -> T,
) where
T::Bits: std::fmt::Debug + PartialEq + Copy,
{
for (input, expected) in inputs {
assert_eq!(
*expected,
inherent(value, *input).bits(),
"{:?}.union({:?})",
value,
input
);
assert_eq!(
*expected,
Flags::union(value, *input).bits(),
"Flags::union({:?}, {:?})",
value,
input
);
assert_eq!(
*expected,
(value | *input).bits(),
"{:?} | {:?}",
value,
input
);
assert_eq!(
*expected,
{
let mut value = value;
value |= *input;
value
}
.bits(),
"{:?} |= {:?}",
value,
input,
);
}
}

40
vendor/bitflags/src/tests/unknown.rs vendored Normal file
View File

@@ -0,0 +1,40 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(false, TestFlags::empty(), TestFlags::contains_unknown_bits);
case(false, TestFlags::A, TestFlags::contains_unknown_bits);
case(
true,
TestFlags::ABC | TestFlags::from_bits_retain(1 << 3),
TestFlags::contains_unknown_bits,
);
case(
true,
TestFlags::empty() | TestFlags::from_bits_retain(1 << 3),
TestFlags::contains_unknown_bits,
);
case(false, TestFlags::all(), TestFlags::contains_unknown_bits);
case(false, TestZero::empty(), TestZero::contains_unknown_bits);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(expected: bool, value: T, inherent: impl FnOnce(&T) -> bool) {
assert_eq!(
expected,
inherent(&value),
"{:?}.contains_unknown_bits()",
value
);
assert_eq!(
expected,
Flags::contains_unknown_bits(&value),
"Flags::contains_unknown_bits({:?})",
value
);
}

View File

@@ -0,0 +1,53 @@
use super::*;
use crate::Flags;
#[test]
fn cases() {
case(0, TestFlags::empty(), TestFlags::unknown_bits);
case(0, TestFlags::A, TestFlags::unknown_bits);
case(0, TestFlags::all(), TestFlags::unknown_bits);
case(
1 << 3,
TestFlags::ABC | TestFlags::from_bits_retain(1 << 3),
TestFlags::unknown_bits,
);
case(
1 << 3,
TestFlags::from_bits_retain(1 << 3),
TestFlags::unknown_bits,
);
case(
0b11111000,
TestFlags::from_bits_retain(0b11111000),
TestFlags::unknown_bits,
);
case(0, TestZero::empty(), TestZero::unknown_bits);
case(
0,
TestExternal::from_bits_retain(0xFF),
TestExternal::unknown_bits,
);
}
#[track_caller]
fn case<T: Flags + std::fmt::Debug>(
expected: T::Bits,
value: T,
inherent: impl FnOnce(&T) -> T::Bits,
) where
T::Bits: std::fmt::Debug + PartialEq,
{
assert_eq!(expected, inherent(&value), "{:?}.unknown_bits()", value);
assert_eq!(
expected,
Flags::unknown_bits(&value),
"Flags::unknown_bits({:?})",
value,
);
}