xref: /xnu-10002.81.5/iokit/DriverKit/bounded_array_ref.h (revision 5e3eaea39dcf651e66cb99ba7d70e32cc4a99587)
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27*5e3eaea3SApple OSS Distributions //
28*5e3eaea3SApple OSS Distributions 
29*5e3eaea3SApple OSS Distributions #ifndef XNU_LIBKERN_LIBKERN_CXX_BOUNDED_ARRAY_REF_H
30*5e3eaea3SApple OSS Distributions #define XNU_LIBKERN_LIBKERN_CXX_BOUNDED_ARRAY_REF_H
31*5e3eaea3SApple OSS Distributions 
32*5e3eaea3SApple OSS Distributions #if !TAPI
33*5e3eaea3SApple OSS Distributions 
34*5e3eaea3SApple OSS Distributions #if DRIVERKIT_FRAMEWORK_INCLUDE
35*5e3eaea3SApple OSS Distributions #include <DriverKit/bounded_array.h>
36*5e3eaea3SApple OSS Distributions #include <DriverKit/bounded_ptr.h>
37*5e3eaea3SApple OSS Distributions #else
38*5e3eaea3SApple OSS Distributions #include <libkern/c++/bounded_array.h>
39*5e3eaea3SApple OSS Distributions #include <libkern/c++/bounded_ptr.h>
40*5e3eaea3SApple OSS Distributions #endif /* DRIVERKIT_FRAMEWORK_INCLUDE */
41*5e3eaea3SApple OSS Distributions 
42*5e3eaea3SApple OSS Distributions #include <stddef.h>
43*5e3eaea3SApple OSS Distributions #include <os/base.h>
44*5e3eaea3SApple OSS Distributions 
45*5e3eaea3SApple OSS Distributions namespace libkern {
46*5e3eaea3SApple OSS Distributions namespace bar_detail {
47*5e3eaea3SApple OSS Distributions using nullptr_t = decltype(nullptr);
48*5e3eaea3SApple OSS Distributions }
49*5e3eaea3SApple OSS Distributions 
50*5e3eaea3SApple OSS Distributions // Represents a reference to a sequence of 0 or more elements consecutively in
51*5e3eaea3SApple OSS Distributions // memory, i.e. a start pointer and a length.
52*5e3eaea3SApple OSS Distributions //
53*5e3eaea3SApple OSS Distributions // When elements of the sequence are accessed, `bounded_array_ref` ensures
54*5e3eaea3SApple OSS Distributions // that those elements are in the bounds of the sequence (which are provided
55*5e3eaea3SApple OSS Distributions // when the `bounded_array_ref` is constructed).
56*5e3eaea3SApple OSS Distributions //
57*5e3eaea3SApple OSS Distributions // This class does not own the underlying data. It is expected to be used in
58*5e3eaea3SApple OSS Distributions // situations where the data resides in some other buffer, whose lifetime
59*5e3eaea3SApple OSS Distributions // extends past that of the `bounded_array_ref`. For this reason, storing a
60*5e3eaea3SApple OSS Distributions // `bounded_array_ref` adds the risk of a dangling pointer if the lifetime of
61*5e3eaea3SApple OSS Distributions // the `bounded_array_ref` extends past that of the underlying data.
62*5e3eaea3SApple OSS Distributions //
63*5e3eaea3SApple OSS Distributions // `bounded_array_ref` is trivially copyable and it should be passed by value.
64*5e3eaea3SApple OSS Distributions template <typename T, typename TrappingPolicy>
65*5e3eaea3SApple OSS Distributions struct bounded_array_ref {
66*5e3eaea3SApple OSS Distributions 	// Creates an empty `bounded_array_ref`.
67*5e3eaea3SApple OSS Distributions 	//
68*5e3eaea3SApple OSS Distributions 	// An empty `bounded_array_ref` does not reference anything, so its
69*5e3eaea3SApple OSS Distributions 	// `data()` is null and its `size()` is 0.
bounded_array_refbounded_array_ref70*5e3eaea3SApple OSS Distributions 	explicit constexpr bounded_array_ref() noexcept : data_(nullptr), size_(0)
71*5e3eaea3SApple OSS Distributions 	{
72*5e3eaea3SApple OSS Distributions 	}
73*5e3eaea3SApple OSS Distributions 
74*5e3eaea3SApple OSS Distributions 	// Creates a `bounded_array_ref` from a bounded pointer and a size.
75*5e3eaea3SApple OSS Distributions 	//
76*5e3eaea3SApple OSS Distributions 	// The resulting `bounded_array_ref` starts at the location where the
77*5e3eaea3SApple OSS Distributions 	// pointer points, and has the given number of elements. All the elements
78*5e3eaea3SApple OSS Distributions 	// must be in the bounds of the `bounded_ptr`, otherwise this constructor
79*5e3eaea3SApple OSS Distributions 	// will trap.
bounded_array_refbounded_array_ref80*5e3eaea3SApple OSS Distributions 	explicit constexpr bounded_array_ref(bounded_ptr<T, TrappingPolicy> data, size_t n)
81*5e3eaea3SApple OSS Distributions 		: data_(data.unsafe_discard_bounds()), size_(static_cast<uint32_t>(n))
82*5e3eaea3SApple OSS Distributions 	{
83*5e3eaea3SApple OSS Distributions 		if (n != 0) {
84*5e3eaea3SApple OSS Distributions 			data[n - 1]; // make sure the bounds are valid
85*5e3eaea3SApple OSS Distributions 			// TODO: find a better way to do that
86*5e3eaea3SApple OSS Distributions 		}
87*5e3eaea3SApple OSS Distributions 		if (__improbable(n > UINT32_MAX)) {
88*5e3eaea3SApple OSS Distributions 			TrappingPolicy::trap("bounded_array_ref: Can't construct from a size greater than UINT32_MAX");
89*5e3eaea3SApple OSS Distributions 		}
90*5e3eaea3SApple OSS Distributions 	}
91*5e3eaea3SApple OSS Distributions 
92*5e3eaea3SApple OSS Distributions 	// Creates a `bounded_array_ref` from a raw pointer and a size.
93*5e3eaea3SApple OSS Distributions 	//
94*5e3eaea3SApple OSS Distributions 	// The resulting `bounded_array_ref` starts at the location where the
95*5e3eaea3SApple OSS Distributions 	// pointer points, and has the given number of elements. This constructor
96*5e3eaea3SApple OSS Distributions 	// trusts that `n` elements are reachable from the given pointer.
bounded_array_refbounded_array_ref97*5e3eaea3SApple OSS Distributions 	explicit constexpr bounded_array_ref(T* data, size_t n) : data_(data), size_(static_cast<uint32_t>(n))
98*5e3eaea3SApple OSS Distributions 	{
99*5e3eaea3SApple OSS Distributions 		if (__improbable(n > UINT32_MAX)) {
100*5e3eaea3SApple OSS Distributions 			TrappingPolicy::trap("bounded_array_ref: Can't construct from a size greater than UINT32_MAX");
101*5e3eaea3SApple OSS Distributions 		}
102*5e3eaea3SApple OSS Distributions 	}
103*5e3eaea3SApple OSS Distributions 
104*5e3eaea3SApple OSS Distributions 	// Creates a `bounded_array_ref` from a `[first, last)` half-open range.
105*5e3eaea3SApple OSS Distributions 	//
106*5e3eaea3SApple OSS Distributions 	// The resulting `bounded_array_ref` starts at the location pointed-to by
107*5e3eaea3SApple OSS Distributions 	// `first`, and contains `last - first` elements. The `[first, last)`
108*5e3eaea3SApple OSS Distributions 	// half-open range must be a valid range, i.e. it must be the case that
109*5e3eaea3SApple OSS Distributions 	// `first <= last`, otherwise the constructor traps.
bounded_array_refbounded_array_ref110*5e3eaea3SApple OSS Distributions 	explicit constexpr bounded_array_ref(T* first, T* last) : data_(first), size_(static_cast<uint32_t>(last - first))
111*5e3eaea3SApple OSS Distributions 	{
112*5e3eaea3SApple OSS Distributions 		if (__improbable(first > last)) {
113*5e3eaea3SApple OSS Distributions 			TrappingPolicy::trap("bounded_array_ref: The [first, last) constructor requires a valid range.");
114*5e3eaea3SApple OSS Distributions 		}
115*5e3eaea3SApple OSS Distributions 		if (__improbable(last - first > UINT32_MAX)) {
116*5e3eaea3SApple OSS Distributions 			TrappingPolicy::trap("bounded_array_ref: Can't construct from a size greater than UINT32_MAX");
117*5e3eaea3SApple OSS Distributions 		}
118*5e3eaea3SApple OSS Distributions 	}
119*5e3eaea3SApple OSS Distributions 
120*5e3eaea3SApple OSS Distributions 	// Creates a `bounded_array_ref` from a `bounded_array`.
121*5e3eaea3SApple OSS Distributions 	//
122*5e3eaea3SApple OSS Distributions 	// The resulting `bounded_array_ref` starts at the first element of the
123*5e3eaea3SApple OSS Distributions 	// `bounded_array`, and has the number of elements in the `bounded_array`.
124*5e3eaea3SApple OSS Distributions 	template <size_t N>
bounded_array_refbounded_array_ref125*5e3eaea3SApple OSS Distributions 	constexpr bounded_array_ref(bounded_array<T, N, TrappingPolicy>& data) : data_(data.data()), size_(static_cast<uint32_t>(data.size()))
126*5e3eaea3SApple OSS Distributions 	{
127*5e3eaea3SApple OSS Distributions 		if (__improbable(data.size() > UINT32_MAX)) {
128*5e3eaea3SApple OSS Distributions 			TrappingPolicy::trap("bounded_array_ref: Can't construct from a size greater than UINT32_MAX");
129*5e3eaea3SApple OSS Distributions 		}
130*5e3eaea3SApple OSS Distributions 	}
131*5e3eaea3SApple OSS Distributions 
132*5e3eaea3SApple OSS Distributions 	// Creates a `bounded_array_ref` from a C-style array.
133*5e3eaea3SApple OSS Distributions 	//
134*5e3eaea3SApple OSS Distributions 	// The resulting `bounded_array_ref` starts at the first element of the
135*5e3eaea3SApple OSS Distributions 	// C-style array, and has the number of elements in that array.
136*5e3eaea3SApple OSS Distributions 	template <size_t N>
bounded_array_refbounded_array_ref137*5e3eaea3SApple OSS Distributions 	constexpr bounded_array_ref(T (&array)[N]) : data_(array), size_(static_cast<uint32_t>(N))
138*5e3eaea3SApple OSS Distributions 	{
139*5e3eaea3SApple OSS Distributions 		if (__improbable(N > UINT32_MAX)) {
140*5e3eaea3SApple OSS Distributions 			TrappingPolicy::trap("bounded_array_ref: Can't construct from a size greater than UINT32_MAX");
141*5e3eaea3SApple OSS Distributions 		}
142*5e3eaea3SApple OSS Distributions 	}
143*5e3eaea3SApple OSS Distributions 
144*5e3eaea3SApple OSS Distributions 	constexpr
145*5e3eaea3SApple OSS Distributions 	bounded_array_ref(bounded_array_ref const&) = default;
146*5e3eaea3SApple OSS Distributions 	constexpr
147*5e3eaea3SApple OSS Distributions 	bounded_array_ref(bounded_array_ref&& other) noexcept = default;
148*5e3eaea3SApple OSS Distributions 
149*5e3eaea3SApple OSS Distributions 	constexpr bounded_array_ref& operator=(bounded_array_ref const&) = default;
150*5e3eaea3SApple OSS Distributions 	constexpr bounded_array_ref& operator=(bounded_array_ref&& other) = default;
151*5e3eaea3SApple OSS Distributions 	~bounded_array_ref() = default;
152*5e3eaea3SApple OSS Distributions 
153*5e3eaea3SApple OSS Distributions 	// Returns whether the `bounded_array_ref` points to a sequence or not.
154*5e3eaea3SApple OSS Distributions 	//
155*5e3eaea3SApple OSS Distributions 	// Note that pointing to a sequence at all is different from pointing to
156*5e3eaea3SApple OSS Distributions 	// a valid sequence, or having a size of 0. If a `bounded_array_ref`
157*5e3eaea3SApple OSS Distributions 	// points to a sequence (regardless of whether it is valid or whether
158*5e3eaea3SApple OSS Distributions 	// the size of that sequence is 0), this operator will return true.
159*5e3eaea3SApple OSS Distributions 	explicit
160*5e3eaea3SApple OSS Distributions 	operator bool() const noexcept
161*5e3eaea3SApple OSS Distributions 	{
162*5e3eaea3SApple OSS Distributions 		return data_ != nullptr;
163*5e3eaea3SApple OSS Distributions 	}
164*5e3eaea3SApple OSS Distributions 
165*5e3eaea3SApple OSS Distributions 	using iterator = bounded_ptr<T, TrappingPolicy>;
166*5e3eaea3SApple OSS Distributions 
167*5e3eaea3SApple OSS Distributions 	// The following methods allow obtaining iterators (i.e. cursors) to
168*5e3eaea3SApple OSS Distributions 	// objects inside a `bounded_array_ref`.
169*5e3eaea3SApple OSS Distributions 	//
170*5e3eaea3SApple OSS Distributions 	// The iterators of a `bounded_array_ref` are `bounded_ptr`s, which know
171*5e3eaea3SApple OSS Distributions 	// the bounds of the sequence and will trap when dereferenced outside
172*5e3eaea3SApple OSS Distributions 	// of those bounds.
173*5e3eaea3SApple OSS Distributions 	//
174*5e3eaea3SApple OSS Distributions 	// `begin()` returns an iterator to the first element in the range, and
175*5e3eaea3SApple OSS Distributions 	// `end()` returns an iterator to one-past-the-last element in the range.
176*5e3eaea3SApple OSS Distributions 	// The `end()` iterator can't be dereferenced, since it is out of bounds.
177*5e3eaea3SApple OSS Distributions 	//
178*5e3eaea3SApple OSS Distributions 	// If the `bounded_array_ref` is empty, these methods will return null
179*5e3eaea3SApple OSS Distributions 	// `bounded_ptr`s, which can be checked for equality but can't be
180*5e3eaea3SApple OSS Distributions 	// dereferenced.
181*5e3eaea3SApple OSS Distributions 	OS_ALWAYS_INLINE iterator
beginbounded_array_ref182*5e3eaea3SApple OSS Distributions 	begin() const noexcept
183*5e3eaea3SApple OSS Distributions 	{
184*5e3eaea3SApple OSS Distributions 		return iterator(data_, data_, data_ + size_);
185*5e3eaea3SApple OSS Distributions 	}
186*5e3eaea3SApple OSS Distributions 	iterator
endbounded_array_ref187*5e3eaea3SApple OSS Distributions 	end() const noexcept
188*5e3eaea3SApple OSS Distributions 	{
189*5e3eaea3SApple OSS Distributions 		return iterator(data_ + size_, data_, data_ + size_);
190*5e3eaea3SApple OSS Distributions 	}
191*5e3eaea3SApple OSS Distributions 
192*5e3eaea3SApple OSS Distributions 	// Returns the number of elements in the range referenced by the
193*5e3eaea3SApple OSS Distributions 	// `bounded_array_ref`.
194*5e3eaea3SApple OSS Distributions 	//
195*5e3eaea3SApple OSS Distributions 	// This method returns `0` if the `bounded_array_ref` is null, since
196*5e3eaea3SApple OSS Distributions 	// such an array ref behaves the same as an empty range.
197*5e3eaea3SApple OSS Distributions 	constexpr size_t
sizebounded_array_ref198*5e3eaea3SApple OSS Distributions 	size() const noexcept
199*5e3eaea3SApple OSS Distributions 	{
200*5e3eaea3SApple OSS Distributions 		return size_;
201*5e3eaea3SApple OSS Distributions 	}
202*5e3eaea3SApple OSS Distributions 
203*5e3eaea3SApple OSS Distributions 	// This has the same behavior as size(), but is intended to avoid confusion
204*5e3eaea3SApple OSS Distributions 	// about whether it is returning an array count or size in bytes.
205*5e3eaea3SApple OSS Distributions 	constexpr size_t
lengthbounded_array_ref206*5e3eaea3SApple OSS Distributions 	length() const noexcept
207*5e3eaea3SApple OSS Distributions 	{
208*5e3eaea3SApple OSS Distributions 		return size_;
209*5e3eaea3SApple OSS Distributions 	}
210*5e3eaea3SApple OSS Distributions 
211*5e3eaea3SApple OSS Distributions 	// Returns a non-owning pointer to the underlying memory referenced by a
212*5e3eaea3SApple OSS Distributions 	// `bounded_array_ref`.
213*5e3eaea3SApple OSS Distributions 	//
214*5e3eaea3SApple OSS Distributions 	// This method can be called even if the `bounded_array_ref` is null, in
215*5e3eaea3SApple OSS Distributions 	// which case the returned pointer will be null.
216*5e3eaea3SApple OSS Distributions 	constexpr T*
databounded_array_ref217*5e3eaea3SApple OSS Distributions 	data() const noexcept
218*5e3eaea3SApple OSS Distributions 	{
219*5e3eaea3SApple OSS Distributions 		return data_;
220*5e3eaea3SApple OSS Distributions 	}
221*5e3eaea3SApple OSS Distributions 
222*5e3eaea3SApple OSS Distributions 	// Access the n-th element of a `bounded_array_ref`.
223*5e3eaea3SApple OSS Distributions 	//
224*5e3eaea3SApple OSS Distributions 	// If `n` is out of the bounds of the sequence, this operation will
225*5e3eaea3SApple OSS Distributions 	// trap. If the array ref is null, this operation will trap too.
226*5e3eaea3SApple OSS Distributions 	//
227*5e3eaea3SApple OSS Distributions 	// Design note:
228*5e3eaea3SApple OSS Distributions 	// We voluntarily use a signed type to represent the index even though a
229*5e3eaea3SApple OSS Distributions 	// negative index will always cause a trap. If we used an unsigned type,
230*5e3eaea3SApple OSS Distributions 	// we could get an implicit conversion from signed to unsigned, which
231*5e3eaea3SApple OSS Distributions 	// could silently wrap around. We think trapping early is more likely
232*5e3eaea3SApple OSS Distributions 	// to be helpful in this situation.
233*5e3eaea3SApple OSS Distributions 	OS_ALWAYS_INLINE T&
234*5e3eaea3SApple OSS Distributions 	operator[](ptrdiff_t n) const
235*5e3eaea3SApple OSS Distributions 	{
236*5e3eaea3SApple OSS Distributions 		return begin()[n];
237*5e3eaea3SApple OSS Distributions 	}
238*5e3eaea3SApple OSS Distributions 
239*5e3eaea3SApple OSS Distributions 	// Chop off the first `n` elements of the array, and keep `m` elements
240*5e3eaea3SApple OSS Distributions 	// in the array.
241*5e3eaea3SApple OSS Distributions 	//
242*5e3eaea3SApple OSS Distributions 	// The resulting range can be described by `[beg + n, beg + n + m)`, where
243*5e3eaea3SApple OSS Distributions 	// `beg` is the `begin()` of the range being sliced. This operation traps
244*5e3eaea3SApple OSS Distributions 	// if `n + m` is larger than the number of elements in the array.
245*5e3eaea3SApple OSS Distributions 	//
246*5e3eaea3SApple OSS Distributions 	// Since `bounded_array_ref` checks (or assumes) that the range it is
247*5e3eaea3SApple OSS Distributions 	// given on construction is within bounds and `slice()` checks that the
248*5e3eaea3SApple OSS Distributions 	// produced slice is within the original range, it is impossible to create
249*5e3eaea3SApple OSS Distributions 	// a `bounded_array_ref` that isn't a subset of a valid range using this
250*5e3eaea3SApple OSS Distributions 	// function.
251*5e3eaea3SApple OSS Distributions 	bounded_array_ref<T, TrappingPolicy>
slicebounded_array_ref252*5e3eaea3SApple OSS Distributions 	slice(size_t n, size_t m) const
253*5e3eaea3SApple OSS Distributions 	{
254*5e3eaea3SApple OSS Distributions 		uint32_t total;
255*5e3eaea3SApple OSS Distributions 		if (__improbable(os_add_overflow(n, m, &total))) {
256*5e3eaea3SApple OSS Distributions 			TrappingPolicy::trap("bounded_array_ref: n + m is larger than the size of any bounded_array_ref");
257*5e3eaea3SApple OSS Distributions 		}
258*5e3eaea3SApple OSS Distributions 		if (__improbable(total > size())) {
259*5e3eaea3SApple OSS Distributions 			TrappingPolicy::trap("bounded_array_ref: invalid slice provided, the indices are of bounds for the bounded_array_ref");
260*5e3eaea3SApple OSS Distributions 		}
261*5e3eaea3SApple OSS Distributions 		return bounded_array_ref(data_ + n, m);
262*5e3eaea3SApple OSS Distributions 	}
263*5e3eaea3SApple OSS Distributions 
264*5e3eaea3SApple OSS Distributions private:
265*5e3eaea3SApple OSS Distributions 	T* data_;
266*5e3eaea3SApple OSS Distributions 	uint32_t size_;
267*5e3eaea3SApple OSS Distributions };
268*5e3eaea3SApple OSS Distributions 
269*5e3eaea3SApple OSS Distributions // The comparison functions against `nullptr` all return whether the
270*5e3eaea3SApple OSS Distributions // `bounded_array_ref` references a sequence or not.
271*5e3eaea3SApple OSS Distributions template <typename T, typename P>
272*5e3eaea3SApple OSS Distributions bool
273*5e3eaea3SApple OSS Distributions operator==(bounded_array_ref<T, P> const& x, bar_detail::nullptr_t)
274*5e3eaea3SApple OSS Distributions {
275*5e3eaea3SApple OSS Distributions 	return !static_cast<bool>(x);
276*5e3eaea3SApple OSS Distributions }
277*5e3eaea3SApple OSS Distributions 
278*5e3eaea3SApple OSS Distributions template <typename T, typename P>
279*5e3eaea3SApple OSS Distributions bool
280*5e3eaea3SApple OSS Distributions operator!=(bounded_array_ref<T, P> const& x, bar_detail::nullptr_t)
281*5e3eaea3SApple OSS Distributions {
282*5e3eaea3SApple OSS Distributions 	return !(x == nullptr);
283*5e3eaea3SApple OSS Distributions }
284*5e3eaea3SApple OSS Distributions 
285*5e3eaea3SApple OSS Distributions template <typename T, typename P>
286*5e3eaea3SApple OSS Distributions bool
287*5e3eaea3SApple OSS Distributions operator==(bar_detail::nullptr_t, bounded_array_ref<T, P> const& x)
288*5e3eaea3SApple OSS Distributions {
289*5e3eaea3SApple OSS Distributions 	return x == nullptr;
290*5e3eaea3SApple OSS Distributions }
291*5e3eaea3SApple OSS Distributions 
292*5e3eaea3SApple OSS Distributions template <typename T, typename P>
293*5e3eaea3SApple OSS Distributions bool
294*5e3eaea3SApple OSS Distributions operator!=(bar_detail::nullptr_t, bounded_array_ref<T, P> const& x)
295*5e3eaea3SApple OSS Distributions {
296*5e3eaea3SApple OSS Distributions 	return x != nullptr;
297*5e3eaea3SApple OSS Distributions }
298*5e3eaea3SApple OSS Distributions } // end namespace libkern
299*5e3eaea3SApple OSS Distributions 
300*5e3eaea3SApple OSS Distributions #endif /* !TAPI */
301*5e3eaea3SApple OSS Distributions 
302*5e3eaea3SApple OSS Distributions #endif // !XNU_LIBKERN_LIBKERN_CXX_BOUNDED_ARRAY_REF_H
303