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std.cache_hash: temporary workaround for mtime precision on linux
See #6082
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@ -451,10 +451,17 @@ fn isProblematicTimestamp(fs_clock: i128) bool {
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// to detect precision of seconds, because looking at the zero bits in base
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// 2 would not detect precision of the seconds value.
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const fs_sec = @intCast(i64, @divFloor(fs_clock, std.time.ns_per_s));
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const fs_nsec = @intCast(i64, @mod(fs_clock, std.time.ns_per_s));
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var fs_nsec = @intCast(i64, @mod(fs_clock, std.time.ns_per_s));
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var wall_sec = @intCast(i64, @divFloor(wall_clock, std.time.ns_per_s));
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var wall_nsec = @intCast(i64, @mod(wall_clock, std.time.ns_per_s));
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if (std.Target.current.os.tag == .linux) {
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// TODO As a temporary measure while we figure out how to solve
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// https://github.com/ziglang/zig/issues/6082, we cut the granularity of nanoseconds
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// by a large amount.
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fs_nsec &= @as(i64, -1) << 23;
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}
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// First make all the least significant zero bits in the fs_clock, also zero bits in the wall clock.
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if (fs_nsec == 0) {
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wall_nsec = 0;
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@ -466,16 +473,7 @@ fn isProblematicTimestamp(fs_clock: i128) bool {
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} else {
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wall_nsec &= @as(i64, -1) << @intCast(u6, @ctz(i64, fs_nsec));
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}
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if (wall_nsec == fs_nsec and wall_sec == fs_sec)
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return true;
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// I have also observed precision problems at a millisecond granularity.
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const fs_msec = @intCast(i64, @divFloor(fs_clock, std.time.ns_per_ms * 2));
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const wall_msec = @intCast(i64, @divFloor(wall_clock, std.time.ns_per_ms * 2));
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if (fs_msec == wall_msec)
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return true;
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return false;
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return wall_nsec == fs_nsec and wall_sec == fs_sec;
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}
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test "cache file and then recall it" {
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