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58 lines
1.6 KiB
Go
58 lines
1.6 KiB
Go
package bug
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type BugsByCreationTime []*Bug
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func (b BugsByCreationTime) Len() int {
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return len(b)
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}
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func (b BugsByCreationTime) Less(i, j int) bool {
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if b[i].createTime < b[j].createTime {
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return true
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}
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if b[i].createTime > b[j].createTime {
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return false
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}
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// When the logical clocks are identical, that means we had a concurrent
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// edition. In this case we rely on the timestamp. While the timestamp might
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// be incorrect due to a badly set clock, the drift in sorting is bounded
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// by the first sorting using the logical clock. That means that if users
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// synchronize their bugs regularly, the timestamp will rarely be used, and
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// should still provide a kinda accurate sorting when needed.
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return b[i].FirstOp().Time().Before(b[j].FirstOp().Time())
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}
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func (b BugsByCreationTime) Swap(i, j int) {
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b[i], b[j] = b[j], b[i]
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}
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type BugsByEditTime []*Bug
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func (b BugsByEditTime) Len() int {
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return len(b)
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}
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func (b BugsByEditTime) Less(i, j int) bool {
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if b[i].editTime < b[j].editTime {
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return true
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}
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if b[i].editTime > b[j].editTime {
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return false
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}
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// When the logical clocks are identical, that means we had a concurrent
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// edition. In this case we rely on the timestamp. While the timestamp might
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// be incorrect due to a badly set clock, the drift in sorting is bounded
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// by the first sorting using the logical clock. That means that if users
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// synchronize their bugs regularly, the timestamp will rarely be used, and
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// should still provide a kinda accurate sorting when needed.
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return b[i].LastOp().Time().Before(b[j].LastOp().Time())
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}
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func (b BugsByEditTime) Swap(i, j int) {
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b[i], b[j] = b[j], b[i]
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}
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