range: Replace internal representation of Range
Range represents a range as follows. Member @start is the inclusive lower bound, member @end is the exclusive upper bound. Zero @end is special: if @start is also zero, the range is empty, else @end is to be interpreted as 2^64. No other empty ranges may occur. The range [0,2^64-1] cannot be represented. If you try to create it with range_set_bounds1(), you get the empty range instead. If you try to create it with range_set_bounds() or range_extend(), assertions fail. Before range_set_bounds() existed, the open-coded creation usually got you the empty range instead. Open deathtrap. Moreover, the code dealing with the janus-faced @end is too clever by half. Dumb this down to a more pedestrian representation: members @lob and @upb are inclusive lower and upper bounds. The empty range is encoded as @lob = 1, @upb = 0. Signed-off-by: Markus Armbruster <armbru@redhat.com> Reviewed-by: Eric Blake <eblake@redhat.com> Reviewed-by: Michael S. Tsirkin <mst@redhat.com> Signed-off-by: Michael S. Tsirkin <mst@redhat.com>
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@ -26,37 +26,38 @@
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/*
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* Operations on 64 bit address ranges.
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* Notes:
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* - ranges must not wrap around 0, but can include the last byte ~0x0LL.
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* - this can not represent a full 0 to ~0x0LL range.
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* - Ranges must not wrap around 0, but can include UINT64_MAX.
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*/
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/* A structure representing a range of addresses. */
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struct Range {
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uint64_t begin; /* First byte of the range, or 0 if empty. */
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uint64_t end; /* 1 + the last byte. 0 if range empty or ends at ~0x0LL. */
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/*
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* Do not access members directly, use the functions!
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* A non-empty range has @lob <= @upb.
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* An empty range has @lob == @upb + 1.
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*/
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uint64_t lob; /* inclusive lower bound */
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uint64_t upb; /* inclusive upper bound */
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};
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static inline void range_invariant(Range *range)
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{
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assert((!range->begin && !range->end) /* empty */
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|| range->begin <= range->end - 1); /* non-empty */
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assert(range->lob <= range->upb || range->lob == range->upb + 1);
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}
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/* Compound literal encoding the empty range */
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#define range_empty ((Range){ .begin = 0, .end = 0 })
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#define range_empty ((Range){ .lob = 1, .upb = 0 })
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/* Is @range empty? */
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static inline bool range_is_empty(Range *range)
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{
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range_invariant(range);
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return !range->begin && !range->end;
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return range->lob > range->upb;
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}
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/* Does @range contain @val? */
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static inline bool range_contains(Range *range, uint64_t val)
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{
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return !range_is_empty(range)
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&& val >= range->begin && val <= range->end - 1;
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return val >= range->lob && val <= range->upb;
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}
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/* Initialize @range to the empty range */
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@ -71,14 +72,11 @@ static inline void range_make_empty(Range *range)
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* Both bounds are inclusive.
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* The interval must not be empty, i.e. @lob must be less than or
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* equal @upb.
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* The interval must not be [0,UINT64_MAX], because Range can't
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* represent that.
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*/
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static inline void range_set_bounds(Range *range, uint64_t lob, uint64_t upb)
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{
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assert(lob <= upb);
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range->begin = lob;
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range->end = upb + 1; /* may wrap to zero, that's okay */
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range->lob = lob;
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range->upb = upb;
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assert(!range_is_empty(range));
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}
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@ -91,8 +89,12 @@ static inline void range_set_bounds(Range *range, uint64_t lob, uint64_t upb)
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static inline void range_set_bounds1(Range *range,
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uint64_t lob, uint64_t upb_plus1)
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{
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range->begin = lob;
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range->end = upb_plus1;
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if (!lob && !upb_plus1) {
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*range = range_empty;
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} else {
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range->lob = lob;
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range->upb = upb_plus1 - 1;
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}
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range_invariant(range);
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}
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@ -100,20 +102,18 @@ static inline void range_set_bounds1(Range *range,
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static inline uint64_t range_lob(Range *range)
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{
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assert(!range_is_empty(range));
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return range->begin;
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return range->lob;
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}
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/* Return @range's upper bound. @range must not be empty. */
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static inline uint64_t range_upb(Range *range)
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{
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assert(!range_is_empty(range));
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return range->end - 1;
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return range->upb;
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}
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/*
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* Extend @range to the smallest interval that includes @extend_by, too.
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* This must not extend @range to cover the interval [0,UINT64_MAX],
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* because Range can't represent that.
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*/
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static inline void range_extend(Range *range, Range *extend_by)
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{
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@ -124,15 +124,13 @@ static inline void range_extend(Range *range, Range *extend_by)
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*range = *extend_by;
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return;
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}
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if (range->begin > extend_by->begin) {
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range->begin = extend_by->begin;
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if (range->lob > extend_by->lob) {
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range->lob = extend_by->lob;
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}
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/* Compare last byte in case region ends at ~0x0LL */
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if (range->end - 1 < extend_by->end - 1) {
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range->end = extend_by->end;
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if (range->upb < extend_by->upb) {
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range->upb = extend_by->upb;
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}
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/* Must not extend to { .begin = 0, .end = 0 }: */
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assert(!range_is_empty(range));
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range_invariant(range);
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}
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/* Get last byte of a range from offset + length.
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16
util/range.c
16
util/range.c
@ -22,20 +22,18 @@
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#include "qemu/range.h"
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/*
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* Operations on 64 bit address ranges.
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* Notes:
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* - ranges must not wrap around 0, but can include the last byte ~0x0LL.
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* - this can not represent a full 0 to ~0x0LL range.
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* Return -1 if @a < @b, 1 @a > @b, and 0 if they touch or overlap.
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* Both @a and @b must not be empty.
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*/
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/* Return -1 if @a < @b, 1 if greater, and 0 if they touch or overlap. */
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static inline int range_compare(Range *a, Range *b)
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{
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/* Zero a->end is 2**64, and therefore not less than any b->begin */
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if (a->end && a->end < b->begin) {
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assert(!range_is_empty(a) && !range_is_empty(b));
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/* Careful, avoid wraparound */
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if (b->lob && b->lob - 1 > a->upb) {
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return -1;
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}
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if (b->end && a->begin > b->end) {
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if (a->lob && a->lob - 1 > b->upb) {
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return 1;
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}
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return 0;
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