Fix a few more "unreachable code" warnings
This commit is contained in:
parent
2304856340
commit
11e3ec444a
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@ -42,7 +42,7 @@ HB_BEGIN_DECLS
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#ifndef HB_DEBUG_BLOB
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#define HB_DEBUG_BLOB HB_DEBUG+0
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#define HB_DEBUG_BLOB (HB_DEBUG+0)
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#endif
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hb_blob_t _hb_blob_nil = {
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@ -60,7 +60,7 @@ typedef struct {
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/* Debug */
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#ifndef HB_DEBUG_OBJECT
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#define HB_DEBUG_OBJECT HB_DEBUG+0
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#define HB_DEBUG_OBJECT (HB_DEBUG+0)
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#endif
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static inline void
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@ -68,11 +68,11 @@ _hb_trace_object (const void *obj,
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hb_reference_count_t *ref_count,
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const char *function)
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{
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if (HB_DEBUG_OBJECT)
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fprintf (stderr, "OBJECT(%p) refcount=%d %s\n",
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obj,
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HB_REFERENCE_COUNT_GET_VALUE (*ref_count),
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function);
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(void) (HB_DEBUG_OBJECT &&
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fprintf (stderr, "OBJECT(%p) refcount=%d %s\n",
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obj,
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HB_REFERENCE_COUNT_GET_VALUE (*ref_count),
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function));
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}
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#define TRACE_OBJECT(obj) _hb_trace_object (obj, &obj->ref_count, __FUNCTION__)
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@ -152,8 +152,8 @@ ASSERT_STATIC (Type::min_size + 1 <= sizeof (_Null##Type))
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template <int max_depth>
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struct hb_trace_t {
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explicit hb_trace_t (unsigned int *pdepth, const char *what, const char *function, const void *obj) : pdepth(pdepth) {
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if (*pdepth < max_depth)
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fprintf (stderr, "%s(%p) %-*d-> %s\n", what, obj, *pdepth, *pdepth, function);
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(void) (*pdepth < max_depth &&
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fprintf (stderr, "%s(%p) %-*d-> %s\n", what, obj, *pdepth, *pdepth, function));
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if (max_depth) ++*pdepth;
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}
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~hb_trace_t (void) { if (max_depth) --*pdepth; }
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@ -173,7 +173,7 @@ struct hb_trace_t<0> {
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*/
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#ifndef HB_DEBUG_SANITIZE
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#define HB_DEBUG_SANITIZE HB_DEBUG+0
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#define HB_DEBUG_SANITIZE (HB_DEBUG+0)
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#endif
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@ -192,17 +192,17 @@ struct hb_sanitize_context_t
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this->edit_count = 0;
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this->debug_depth = 0;
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if (HB_DEBUG_SANITIZE)
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(void) (HB_DEBUG_SANITIZE &&
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fprintf (stderr, "sanitize %p init [%p..%p] (%lu bytes)\n",
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this->blob, this->start, this->end,
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(unsigned long) (this->end - this->start));
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(unsigned long) (this->end - this->start)));
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}
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inline void finish (void)
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{
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if (HB_DEBUG_SANITIZE)
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(void) (HB_DEBUG_SANITIZE &&
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fprintf (stderr, "sanitize %p fini [%p..%p] %u edit requests\n",
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this->blob, this->start, this->end, this->edit_count);
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this->blob, this->start, this->end, this->edit_count));
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hb_blob_unlock (this->blob);
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hb_blob_destroy (this->blob);
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@ -217,13 +217,13 @@ struct hb_sanitize_context_t
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p <= this->end &&
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(unsigned int) (this->end - p) >= len;
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if (HB_DEBUG_SANITIZE && (int) this->debug_depth < (int) HB_DEBUG_SANITIZE) \
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fprintf (stderr, "SANITIZE(%p) %-*d-> range [%p..%p] (%d bytes) in [%p..%p] -> %s\n", \
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(void) (HB_DEBUG_SANITIZE && (int) this->debug_depth < (int) HB_DEBUG_SANITIZE &&
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fprintf (stderr, "SANITIZE(%p) %-*d-> range [%p..%p] (%d bytes) in [%p..%p] -> %s\n",
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p,
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this->debug_depth, this->debug_depth,
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p, p + len, len,
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this->start, this->end,
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ret ? "pass" : "FAIL");
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ret ? "pass" : "FAIL"));
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return likely (ret);
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}
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@ -233,13 +233,13 @@ struct hb_sanitize_context_t
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const char *p = (const char *) base;
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bool overflows = record_size > 0 && len >= ((unsigned int) -1) / record_size;
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if (HB_DEBUG_SANITIZE && (int) this->debug_depth < (int) HB_DEBUG_SANITIZE)
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fprintf (stderr, "SANITIZE(%p) %-*d-> array [%p..%p] (%d*%d=%ld bytes) in [%p..%p] -> %s\n", \
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(void) (HB_DEBUG_SANITIZE && (int) this->debug_depth < (int) HB_DEBUG_SANITIZE &&
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fprintf (stderr, "SANITIZE(%p) %-*d-> array [%p..%p] (%d*%d=%ld bytes) in [%p..%p] -> %s\n",
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p,
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this->debug_depth, this->debug_depth,
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p, p + (record_size * len), record_size, len, (unsigned long) record_size * len,
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this->start, this->end,
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!overflows ? "does not overflow" : "OVERFLOWS FAIL");
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!overflows ? "does not overflow" : "OVERFLOWS FAIL"));
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return likely (!overflows && this->check_range (base, record_size * len));
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}
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@ -255,14 +255,14 @@ struct hb_sanitize_context_t
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const char *p = (const char *) base;
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this->edit_count++;
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if (HB_DEBUG_SANITIZE && (int) this->debug_depth < (int) HB_DEBUG_SANITIZE)
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fprintf (stderr, "SANITIZE(%p) %-*d-> edit(%u) [%p..%p] (%d bytes) in [%p..%p] -> %s\n", \
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(void) (HB_DEBUG_SANITIZE && (int) this->debug_depth < (int) HB_DEBUG_SANITIZE &&
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fprintf (stderr, "SANITIZE(%p) %-*d-> edit(%u) [%p..%p] (%d bytes) in [%p..%p] -> %s\n",
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p,
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this->debug_depth, this->debug_depth,
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this->edit_count,
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p, p + len, len,
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this->start, this->end,
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this->writable ? "granted" : "REJECTED");
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this->writable ? "granted" : "REJECTED"));
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return this->writable;
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}
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@ -290,8 +290,8 @@ struct Sanitizer
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return hb_blob_create_empty ();
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retry:
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if (HB_DEBUG_SANITIZE)
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fprintf (stderr, "Sanitizer %p start %s\n", blob, HB_FUNC);
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(void) (HB_DEBUG_SANITIZE &&
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fprintf (stderr, "Sanitizer %p start %s\n", blob, HB_FUNC));
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c->init (blob);
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@ -305,17 +305,17 @@ struct Sanitizer
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sane = t->sanitize (c);
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if (sane) {
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if (c->edit_count) {
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if (HB_DEBUG_SANITIZE)
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(void) (HB_DEBUG_SANITIZE &&
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fprintf (stderr, "Sanitizer %p passed first round with %d edits; doing a second round %s\n",
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blob, c->edit_count, HB_FUNC);
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blob, c->edit_count, HB_FUNC));
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/* sanitize again to ensure no toe-stepping */
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c->edit_count = 0;
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sane = t->sanitize (c);
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if (c->edit_count) {
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if (HB_DEBUG_SANITIZE)
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(void) (HB_DEBUG_SANITIZE &&
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fprintf (stderr, "Sanitizer %p requested %d edits in second round; FAILLING %s\n",
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blob, c->edit_count, HB_FUNC);
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blob, c->edit_count, HB_FUNC));
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sane = false;
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}
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}
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@ -325,14 +325,14 @@ struct Sanitizer
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c->finish ();
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if (edit_count && !hb_blob_is_writable (blob) && hb_blob_try_writable (blob)) {
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/* ok, we made it writable by relocating. try again */
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if (HB_DEBUG_SANITIZE)
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fprintf (stderr, "Sanitizer %p retry %s\n", blob, HB_FUNC);
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(void) (HB_DEBUG_SANITIZE &&
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fprintf (stderr, "Sanitizer %p retry %s\n", blob, HB_FUNC));
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goto retry;
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}
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}
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if (HB_DEBUG_SANITIZE)
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fprintf (stderr, "Sanitizer %p %s %s\n", blob, sane ? "passed" : "FAILED", HB_FUNC);
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(void) (HB_DEBUG_SANITIZE &&
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fprintf (stderr, "Sanitizer %p %s %s\n", blob, sane ? "passed" : "FAILED", HB_FUNC));
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if (sane)
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return blob;
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else {
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@ -577,18 +577,16 @@ struct GenericArrayOf
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inline bool sanitize (hb_sanitize_context_t *c) {
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TRACE_SANITIZE ();
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if (unlikely (!sanitize_shallow (c))) return false;
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/* Note: for structs that do not reference other structs,
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* we do not need to call their sanitize() as we already did
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* a bound check on the aggregate array size, hence the return.
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* a bound check on the aggregate array size. We just include
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* a small unreachable expression to make sure the structs
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* pointed to do have a simple sanitize(), ie. they do not
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* reference other structs via offsets.
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*/
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return true;
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/* We do keep this code though to make sure the structs pointed
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* to do have a simple sanitize(), ie. they do not reference
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* other structs. */
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unsigned int count = len;
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for (unsigned int i = 0; i < count; i++)
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if (unlikely (!array[i].sanitize (c)))
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return false;
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(void) (false && array[0].sanitize (c));
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return true;
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}
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inline bool sanitize (hb_sanitize_context_t *c, void *base) {
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@ -688,18 +686,16 @@ struct HeadlessArrayOf
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inline bool sanitize (hb_sanitize_context_t *c) {
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TRACE_SANITIZE ();
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if (unlikely (!sanitize_shallow (c))) return false;
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/* Note: for structs that do not reference other structs,
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* we do not need to call their sanitize() as we already did
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* a bound check on the aggregate array size, hence the return.
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* a bound check on the aggregate array size. We just include
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* a small unreachable expression to make sure the structs
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* pointed to do have a simple sanitize(), ie. they do not
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* reference other structs via offsets.
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*/
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return true;
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/* We do keep this code though to make sure the structs pointed
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* to do have a simple sanitize(), ie. they do not reference
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* other structs. */
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unsigned int count = len ? len - 1 : 0;
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for (unsigned int i = 0; i < count; i++)
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if (unlikely (!array[i].sanitize (c)))
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return false;
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(void) (false && array[0].sanitize (c));
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return true;
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}
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@ -41,7 +41,7 @@ HB_BEGIN_DECLS
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#ifndef HB_DEBUG_APPLY
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#define HB_DEBUG_APPLY HB_DEBUG+0
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#define HB_DEBUG_APPLY (HB_DEBUG+0)
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#endif
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#define TRACE_APPLY() \
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@ -257,8 +257,7 @@ _hb_trace (const char *what,
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unsigned int depth,
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unsigned int max_depth)
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{
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if (depth < max_depth)
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fprintf (stderr, "%s(%p) %-*d-> %s\n", what, obj, depth, depth, function);
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(void) ((depth < max_depth) && fprintf (stderr, "%s(%p) %-*d-> %s\n", what, obj, depth, depth, function));
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return TRUE;
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}
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