#ifndef OPENSSL_HEADER_STACK_H
#define OPENSSL_HEADER_STACK_H
#include <openssl/base.h>
#include <openssl/type_check.h>
#if defined(__cplusplus)
extern "C" {
#endif
#define STACK_OF(type) struct stack_st_##type
#define DECLARE_STACK_OF(type) STACK_OF(type);
#define DEFINE_NAMED_STACK_OF(name, type) \
BORINGSSL_DEFINE_STACK_OF_IMPL(name, type *, const type *) \
BORINGSSL_DEFINE_STACK_TRAITS(name, type, false)
#define DEFINE_STACK_OF(type) DEFINE_NAMED_STACK_OF(type, type)
#define DEFINE_CONST_STACK_OF(type) \
BORINGSSL_DEFINE_STACK_OF_IMPL(type, const type *, const type *) \
BORINGSSL_DEFINE_STACK_TRAITS(type, const type, true)
#if 0
typedef void (*sk_SAMPLE_free_func)(SAMPLE *);
typedef SAMPLE *(*sk_SAMPLE_copy_func)(SAMPLE *);
typedef int (*sk_SAMPLE_cmp_func)(const SAMPLE **a, const SAMPLE **b);
STACK_OF(SAMPLE) *sk_SAMPLE_new(sk_SAMPLE_cmp_func comp);
STACK_OF(SAMPLE) *sk_SAMPLE_new_null(void);
size_t sk_SAMPLE_num(const STACK_OF(SAMPLE) *sk);
void sk_SAMPLE_zero(STACK_OF(SAMPLE) *sk);
SAMPLE *sk_SAMPLE_value(const STACK_OF(SAMPLE) *sk, size_t i);
SAMPLE *sk_SAMPLE_set(STACK_OF(SAMPLE) *sk, size_t i, SAMPLE *p);
void sk_SAMPLE_free(STACK_OF(SAMPLE) *sk);
void sk_SAMPLE_pop_free(STACK_OF(SAMPLE) *sk, sk_SAMPLE_free_func free_func);
size_t sk_SAMPLE_insert(STACK_OF(SAMPLE) *sk, SAMPLE *p, size_t where);
SAMPLE *sk_SAMPLE_delete(STACK_OF(SAMPLE) *sk, size_t where);
SAMPLE *sk_SAMPLE_delete_ptr(STACK_OF(SAMPLE) *sk, const SAMPLE *p);
int sk_SAMPLE_find(const STACK_OF(SAMPLE) *sk, size_t *out_index,
const SAMPLE *p);
SAMPLE *sk_SAMPLE_shift(STACK_OF(SAMPLE) *sk);
size_t sk_SAMPLE_push(STACK_OF(SAMPLE) *sk, SAMPLE *p);
SAMPLE *sk_SAMPLE_pop(STACK_OF(SAMPLE) *sk);
STACK_OF(SAMPLE) *sk_SAMPLE_dup(const STACK_OF(SAMPLE) *sk);
void sk_SAMPLE_sort(STACK_OF(SAMPLE) *sk);
int sk_SAMPLE_is_sorted(const STACK_OF(SAMPLE) *sk);
sk_SAMPLE_cmp_func sk_SAMPLE_set_cmp_func(STACK_OF(SAMPLE) *sk,
sk_SAMPLE_cmp_func comp);
STACK_OF(SAMPLE) *sk_SAMPLE_deep_copy(const STACK_OF(SAMPLE) *sk,
sk_SAMPLE_copy_func copy_func,
sk_SAMPLE_free_func free_func);
#endif
typedef void (*OPENSSL_sk_free_func)(void *ptr);
typedef void *(*OPENSSL_sk_copy_func)(void *ptr);
typedef int (*OPENSSL_sk_cmp_func)(const void **a, const void **b);
typedef void (*OPENSSL_sk_call_free_func)(OPENSSL_sk_free_func, void *);
typedef void *(*OPENSSL_sk_call_copy_func)(OPENSSL_sk_copy_func, void *);
typedef int (*OPENSSL_sk_call_cmp_func)(OPENSSL_sk_cmp_func,
const void *const *,
const void *const *);
typedef struct stack_st {
size_t num;
void **data;
int sorted;
size_t num_alloc;
OPENSSL_sk_cmp_func comp;
} _STACK;
OPENSSL_EXPORT _STACK *sk_new(OPENSSL_sk_cmp_func comp);
OPENSSL_EXPORT _STACK *sk_new_null(void);
OPENSSL_EXPORT size_t sk_num(const _STACK *sk);
OPENSSL_EXPORT void sk_zero(_STACK *sk);
OPENSSL_EXPORT void *sk_value(const _STACK *sk, size_t i);
OPENSSL_EXPORT void *sk_set(_STACK *sk, size_t i, void *p);
OPENSSL_EXPORT void sk_free(_STACK *sk);
OPENSSL_EXPORT void sk_pop_free_ex(_STACK *sk,
OPENSSL_sk_call_free_func call_free_func,
OPENSSL_sk_free_func free_func);
OPENSSL_EXPORT size_t sk_insert(_STACK *sk, void *p, size_t where);
OPENSSL_EXPORT void *sk_delete(_STACK *sk, size_t where);
OPENSSL_EXPORT void *sk_delete_ptr(_STACK *sk, const void *p);
OPENSSL_EXPORT int sk_find(const _STACK *sk, size_t *out_index, const void *p,
OPENSSL_sk_call_cmp_func call_cmp_func);
OPENSSL_EXPORT void *sk_shift(_STACK *sk);
OPENSSL_EXPORT size_t sk_push(_STACK *sk, void *p);
OPENSSL_EXPORT void *sk_pop(_STACK *sk);
OPENSSL_EXPORT _STACK *sk_dup(const _STACK *sk);
OPENSSL_EXPORT void sk_sort(_STACK *sk, OPENSSL_sk_call_cmp_func call_cmp_func);
OPENSSL_EXPORT int sk_is_sorted(const _STACK *sk);
OPENSSL_EXPORT OPENSSL_sk_cmp_func sk_set_cmp_func(_STACK *sk,
OPENSSL_sk_cmp_func comp);
OPENSSL_EXPORT _STACK *sk_deep_copy(const _STACK *sk,
OPENSSL_sk_call_copy_func call_copy_func,
OPENSSL_sk_copy_func copy_func,
OPENSSL_sk_call_free_func call_free_func,
OPENSSL_sk_free_func free_func);
OPENSSL_EXPORT void sk_pop_free(_STACK *sk, OPENSSL_sk_free_func free_func);
#if !defined(BORINGSSL_NO_CXX)
extern "C++" {
BSSL_NAMESPACE_BEGIN
namespace internal {
template <typename T>
struct StackTraits {};
}
BSSL_NAMESPACE_END
}
#define BORINGSSL_DEFINE_STACK_TRAITS(name, type, is_const) \
extern "C++" { \
BSSL_NAMESPACE_BEGIN \
namespace internal { \
template <> \
struct StackTraits<STACK_OF(name)> { \
static constexpr bool kIsStack = true; \
using Type = type; \
static constexpr bool kIsConst = is_const; \
}; \
} \
BSSL_NAMESPACE_END \
}
#else
#define BORINGSSL_DEFINE_STACK_TRAITS(name, type, is_const)
#endif
#define BORINGSSL_DEFINE_STACK_OF_IMPL(name, ptrtype, constptrtype) \
\
OPENSSL_MSVC_PRAGMA(warning(push)) \
OPENSSL_MSVC_PRAGMA(warning(disable : 4191)) \
\
DECLARE_STACK_OF(name) \
\
typedef void (*sk_##name##_free_func)(ptrtype); \
typedef ptrtype (*sk_##name##_copy_func)(ptrtype); \
typedef int (*sk_##name##_cmp_func)(constptrtype *a, constptrtype *b); \
\
OPENSSL_INLINE void sk_##name##_call_free_func( \
OPENSSL_sk_free_func free_func, void *ptr) { \
((sk_##name##_free_func)free_func)((ptrtype)ptr); \
} \
\
OPENSSL_INLINE void *sk_##name##_call_copy_func( \
OPENSSL_sk_copy_func copy_func, void *ptr) { \
return (void *)((sk_##name##_copy_func)copy_func)((ptrtype)ptr); \
} \
\
OPENSSL_INLINE int sk_##name##_call_cmp_func(OPENSSL_sk_cmp_func cmp_func, \
const void *const *a, \
const void *const *b) { \
\
constptrtype a_ptr = (constptrtype)*a; \
constptrtype b_ptr = (constptrtype)*b; \
return ((sk_##name##_cmp_func)cmp_func)(&a_ptr, &b_ptr); \
} \
\
OPENSSL_INLINE STACK_OF(name) *sk_##name##_new(sk_##name##_cmp_func comp) { \
return (STACK_OF(name) *)sk_new((OPENSSL_sk_cmp_func)comp); \
} \
\
OPENSSL_INLINE STACK_OF(name) *sk_##name##_new_null(void) { \
return (STACK_OF(name) *)sk_new_null(); \
} \
\
OPENSSL_INLINE size_t sk_##name##_num(const STACK_OF(name) *sk) { \
return sk_num((const _STACK *)sk); \
} \
\
OPENSSL_INLINE void sk_##name##_zero(STACK_OF(name) *sk) { \
sk_zero((_STACK *)sk); \
} \
\
OPENSSL_INLINE ptrtype sk_##name##_value(const STACK_OF(name) *sk, \
size_t i) { \
return (ptrtype)sk_value((const _STACK *)sk, i); \
} \
\
OPENSSL_INLINE ptrtype sk_##name##_set(STACK_OF(name) *sk, size_t i, \
ptrtype p) { \
return (ptrtype)sk_set((_STACK *)sk, i, (void *)p); \
} \
\
OPENSSL_INLINE void sk_##name##_free(STACK_OF(name) *sk) { \
sk_free((_STACK *)sk); \
} \
\
OPENSSL_INLINE void sk_##name##_pop_free(STACK_OF(name) *sk, \
sk_##name##_free_func free_func) { \
sk_pop_free_ex((_STACK *)sk, sk_##name##_call_free_func, \
(OPENSSL_sk_free_func)free_func); \
} \
\
OPENSSL_INLINE size_t sk_##name##_insert(STACK_OF(name) *sk, ptrtype p, \
size_t where) { \
return sk_insert((_STACK *)sk, (void *)p, where); \
} \
\
OPENSSL_INLINE ptrtype sk_##name##_delete(STACK_OF(name) *sk, \
size_t where) { \
return (ptrtype)sk_delete((_STACK *)sk, where); \
} \
\
OPENSSL_INLINE ptrtype sk_##name##_delete_ptr(STACK_OF(name) *sk, \
constptrtype p) { \
return (ptrtype)sk_delete_ptr((_STACK *)sk, (const void *)p); \
} \
\
OPENSSL_INLINE int sk_##name##_find(const STACK_OF(name) *sk, \
size_t *out_index, constptrtype p) { \
return sk_find((const _STACK *)sk, out_index, (const void *)p, \
sk_##name##_call_cmp_func); \
} \
\
OPENSSL_INLINE ptrtype sk_##name##_shift(STACK_OF(name) *sk) { \
return (ptrtype)sk_shift((_STACK *)sk); \
} \
\
OPENSSL_INLINE size_t sk_##name##_push(STACK_OF(name) *sk, ptrtype p) { \
return sk_push((_STACK *)sk, (void *)p); \
} \
\
OPENSSL_INLINE ptrtype sk_##name##_pop(STACK_OF(name) *sk) { \
return (ptrtype)sk_pop((_STACK *)sk); \
} \
\
OPENSSL_INLINE STACK_OF(name) *sk_##name##_dup(const STACK_OF(name) *sk) { \
return (STACK_OF(name) *)sk_dup((const _STACK *)sk); \
} \
\
OPENSSL_INLINE void sk_##name##_sort(STACK_OF(name) *sk) { \
sk_sort((_STACK *)sk, sk_##name##_call_cmp_func); \
} \
\
OPENSSL_INLINE int sk_##name##_is_sorted(const STACK_OF(name) *sk) { \
return sk_is_sorted((const _STACK *)sk); \
} \
\
OPENSSL_INLINE sk_##name##_cmp_func sk_##name##_set_cmp_func( \
STACK_OF(name) *sk, sk_##name##_cmp_func comp) { \
return (sk_##name##_cmp_func)sk_set_cmp_func((_STACK *)sk, \
(OPENSSL_sk_cmp_func)comp); \
} \
\
OPENSSL_INLINE STACK_OF(name) *sk_##name##_deep_copy( \
const STACK_OF(name) *sk, sk_##name##_copy_func copy_func, \
sk_##name##_free_func free_func) { \
return (STACK_OF(name) *)sk_deep_copy( \
(const _STACK *)sk, sk_##name##_call_copy_func, \
(OPENSSL_sk_copy_func)copy_func, sk_##name##_call_free_func, \
(OPENSSL_sk_free_func)free_func); \
} \
\
OPENSSL_MSVC_PRAGMA(warning(pop))
typedef char *OPENSSL_STRING;
DEFINE_STACK_OF(void)
DEFINE_NAMED_STACK_OF(OPENSSL_STRING, char)
#if defined(__cplusplus)
} #endif
#if !defined(BORINGSSL_NO_CXX)
extern "C++" {
#include <type_traits>
BSSL_NAMESPACE_BEGIN
namespace internal {
template <typename Stack>
struct DeleterImpl<
Stack, typename std::enable_if<StackTraits<Stack>::kIsConst>::type> {
static void Free(Stack *sk) { sk_free(reinterpret_cast<_STACK *>(sk)); }
};
template <typename Stack>
struct DeleterImpl<
Stack, typename std::enable_if<!StackTraits<Stack>::kIsConst>::type> {
static void Free(Stack *sk) {
using Type = typename StackTraits<Stack>::Type;
sk_pop_free_ex(reinterpret_cast<_STACK *>(sk),
[](OPENSSL_sk_free_func , void *ptr) {
DeleterImpl<Type>::Free(reinterpret_cast<Type *>(ptr));
},
nullptr);
}
};
template <typename Stack>
class StackIteratorImpl {
public:
using Type = typename StackTraits<Stack>::Type;
StackIteratorImpl() : sk_(nullptr), idx_(0) {}
StackIteratorImpl(const Stack *sk, size_t idx) : sk_(sk), idx_(idx) {}
bool operator==(StackIteratorImpl other) const {
return sk_ == other.sk_ && idx_ == other.idx_;
}
bool operator!=(StackIteratorImpl other) const {
return !(*this == other);
}
Type *operator*() const {
return reinterpret_cast<Type *>(
sk_value(reinterpret_cast<const _STACK *>(sk_), idx_));
}
StackIteratorImpl &operator++() {
idx_++;
return *this;
}
StackIteratorImpl operator++(int ) {
StackIteratorImpl copy(*this);
++(*this);
return copy;
}
private:
const Stack *sk_;
size_t idx_;
};
template <typename Stack>
using StackIterator = typename std::enable_if<StackTraits<Stack>::kIsStack,
StackIteratorImpl<Stack>>::type;
}
template <typename Stack>
inline
typename std::enable_if<!internal::StackTraits<Stack>::kIsConst, bool>::type
PushToStack(Stack *sk,
UniquePtr<typename internal::StackTraits<Stack>::Type> elem) {
if (!sk_push(reinterpret_cast<_STACK *>(sk), elem.get())) {
return false;
}
elem.release();
return true;
}
BSSL_NAMESPACE_END
template <typename Stack>
inline bssl::internal::StackIterator<Stack> begin(const Stack *sk) {
return bssl::internal::StackIterator<Stack>(sk, 0);
}
template <typename Stack>
inline bssl::internal::StackIterator<Stack> end(const Stack *sk) {
return bssl::internal::StackIterator<Stack>(
sk, sk_num(reinterpret_cast<const _STACK *>(sk)));
}
} #endif
#endif