fangming.fang cd7a8e96bb Fix big-endian issue in chacha20 SVE implementation on aarch64 1 anno fa
..
aes ef917549f5 Add vpaes-loongarch64.pl module. 1 anno fa
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async e077455e9e Stop raising ERR_R_MALLOC_FAILURE in most places 1 anno fa
bf 1567a821a4 crypto: Fix various typos, repeated words, align some spelling to LDP. 1 anno fa
bio 68801bcb76 Add BIO poll descriptors 1 anno fa
bn 30667f5c30 Limit size of modulus for bn_mul_mont and BN_mod_exp_mont_consttime 1 anno fa
buffer e077455e9e Stop raising ERR_R_MALLOC_FAILURE in most places 1 anno fa
camellia 9968c77539 Rename x86-32 assembly files from .s to .S. 2 anni fa
cast 1567a821a4 crypto: Fix various typos, repeated words, align some spelling to LDP. 1 anno fa
chacha cd7a8e96bb Fix big-endian issue in chacha20 SVE implementation on aarch64 1 anno fa
cmac e077455e9e Stop raising ERR_R_MALLOC_FAILURE in most places 1 anno fa
cmp fc93335760 OSSL_CMP_validate_msg(): make sure to reject protection type mismatch 1 anno fa
cms bf3f8f2c0e Ensure ossl_cms_EncryptedContent_init_bio() reports an error on no OID 1 anno fa
comp 3840271e98 Add zlib oneshot compression 1 anno fa
conf a8086e6bfc stack: Do not add error if pop/shift/value accesses outside of the stack 1 anno fa
crmf 084d3afd26 Compensate for CMP-related TODOs removed by PR #15539 1 anno fa
ct e077455e9e Stop raising ERR_R_MALLOC_FAILURE in most places 1 anno fa
des 1567a821a4 crypto: Fix various typos, repeated words, align some spelling to LDP. 1 anno fa
dh 7c639f0b8e DH_check[_params]() use libctx of the dh for prime checks 1 anno fa
dsa f3090fc710 Implement deterministic ECDSA sign (RFC6979) 1 anno fa
dso 89d7231132 crypto/dso/dso_vms.c: Better definition of DSO_MALLOC() 1 anno fa
ec 836080a89a Support all five EdDSA instances from RFC 8032 1 anno fa
encode_decode 9ab57f29c7 Coverity 1515953: negative loop bound 1 anno fa
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ess e077455e9e Stop raising ERR_R_MALLOC_FAILURE in most places 1 anno fa
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ffc c734058309 crypto/*: Fix various typos, repeated words, align some spelling to LDP. 1 anno fa
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hpke cae72eefc3 prevent HPKE sender setting seq unwisely 1 anno fa
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pkcs12 9eaf07ffe3 PKCS12_SAFEBAG_set0_attrs: Remove const from function signature 1 anno fa
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property 92a25e24e6 Fix occasional assertion failure when storing properties 1 anno fa
rand a88e97fcac Release the drbg in the global default context before engines 1 anno fa
rc2 bb4a32ba24 remove unused macro in rc2_local.h and rc5_local.h 1 anno fa
rc4 9968c77539 Rename x86-32 assembly files from .s to .S. 2 anni fa
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sha 119b7b5f2a crypto/sha/asm/sha512-ia64.pl: When checking assembler file names, ignore case 1 anno fa
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srp f44d32fdfb add a check for the return of sk_SRP_gN_new_null() so that capture the potential memory error in time 1 anno fa
stack 3a09dfb4f9 Errors raised from OPENSSL_sk_set should have ERR_LIB_CRYPTO 1 anno fa
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thread 14c593e003 Don't set cancel state/type 1 anno fa
ts c734058309 crypto/*: Fix various typos, repeated words, align some spelling to LDP. 1 anno fa
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ui e077455e9e Stop raising ERR_R_MALLOC_FAILURE in most places 1 anno fa
whrlpool 9968c77539 Rename x86-32 assembly files from .s to .S. 2 anni fa
x509 dd1f28427b Refine the documents of several APIs 1 anno fa
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bsearch.c 5c3f1e34b5 ossl_bsearch(): New generic internal binary search utility function 5 anni fa
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core_algorithm.c e077455e9e Stop raising ERR_R_MALLOC_FAILURE in most places 1 anno fa
core_fetch.c e1eafe8c87 "Reserve" the method store when constructing methods 1 anno fa
core_namemap.c 5317b6ee1f Add deprecation macro for 3.1 and deprecate OPENSSL_LH_stats 1 anno fa
cpt_err.c 826da1451b err: add additional errors 2 anni fa
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ctype.c a53d4f83fc Fixed typos in documentation and comments 1 anno fa
cversion.c 26b7cc0d20 Cleanup include/openssl/opensslv.h.in 4 anni fa
der_writer.c 59196250cb der_writer: Use uint32_t instead of long. 1 anno fa
deterministic_nonce.c 5e42118de2 Address coverity issue CID 1517105 1 anno fa
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getenv.c fecb3aae22 Update copyright year 2 anni fa
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info.c 9c3de01512 info.c: Fix typos in seed macro name and description string 1 anno fa
init.c caf9317d7d Add ZSTD compression support (RFC8478bis) 1 anno fa
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README-sparse_array.md

Sparse Arrays

The sparse_array.c file contains an implementation of a sparse array that attempts to be both space and time efficient.

The sparse array is represented using a tree structure. Each node in the tree contains a block of pointers to either the user supplied leaf values or to another node.

There are a number of parameters used to define the block size:

OPENSSL_SA_BLOCK_BITS   Specifies the number of bits covered by each block
SA_BLOCK_MAX            Specifies the number of pointers in each block
SA_BLOCK_MASK           Specifies a bit mask to perform modulo block size
SA_BLOCK_MAX_LEVELS     Indicates the maximum possible height of the tree

These constants are inter-related:

SA_BLOCK_MAX        = 2 ^ OPENSSL_SA_BLOCK_BITS
SA_BLOCK_MASK       = SA_BLOCK_MAX - 1
SA_BLOCK_MAX_LEVELS = number of bits in size_t divided by
                      OPENSSL_SA_BLOCK_BITS rounded up to the next multiple
                      of OPENSSL_SA_BLOCK_BITS

OPENSSL_SA_BLOCK_BITS can be defined at compile time and this overrides the built in setting.

As a space and performance optimisation, the height of the tree is usually less than the maximum possible height. Only sufficient height is allocated to accommodate the largest index added to the data structure.

The largest index used to add a value to the array determines the tree height:

    +----------------------+---------------------+
    | Largest Added Index  |   Height of Tree    |
    +----------------------+---------------------+
    | SA_BLOCK_MAX     - 1 |          1          |
    | SA_BLOCK_MAX ^ 2 - 1 |          2          |
    | SA_BLOCK_MAX ^ 3 - 1 |          3          |
    | ...                  |          ...        |
    | size_t max           | SA_BLOCK_MAX_LEVELS |
    +----------------------+---------------------+

The tree height is dynamically increased as needed based on additions.

An empty tree is represented by a NULL root pointer. Inserting a value at index 0 results in the allocation of a top level node full of null pointers except for the single pointer to the user's data (N = SA_BLOCK_MAX for brevity):

    +----+
    |Root|
    |Node|
    +-+--+
      |
      |
      |
      v
    +-+-+---+---+---+---+
    | 0 | 1 | 2 |...|N-1|
    |   |nil|nil|...|nil|
    +-+-+---+---+---+---+
      |
      |
      |
      v
    +-+--+
    |User|
    |Data|
    +----+
Index 0

Inserting at element 2N+1 creates a new root node and pushes down the old root node. It then creates a second second level node to hold the pointer to the user's new data:

    +----+
    |Root|
    |Node|
    +-+--+
      |
      |
      |
      v
    +-+-+---+---+---+---+
    | 0 | 1 | 2 |...|N-1|
    |   |nil|   |...|nil|
    +-+-+---+-+-+---+---+
      |       |
      |       +------------------+
      |                          |
      v                          v
    +-+-+---+---+---+---+      +-+-+---+---+---+---+
    | 0 | 1 | 2 |...|N-1|      | 0 | 1 | 2 |...|N-1|
    |nil|   |nil|...|nil|      |nil|   |nil|...|nil|
    +-+-+---+---+---+---+      +---+-+-+---+---+---+
      |                              |
      |                              |
      |                              |
      v                              v
    +-+--+                         +-+--+
    |User|                         |User|
    |Data|                         |Data|
    +----+                         +----+
Index 0                       Index 2N+1

The nodes themselves are allocated in a sparse manner. Only nodes which exist along a path from the root of the tree to an added leaf will be allocated. The complexity is hidden and nodes are allocated on an as needed basis. Because the data is expected to be sparse this doesn't result in a large waste of space.

Values can be removed from the sparse array by setting their index position to NULL. The data structure does not attempt to reclaim nodes or reduce the height of the tree on removal. For example, now setting index 0 to NULL would result in:

    +----+
    |Root|
    |Node|
    +-+--+
      |
      |
      |
      v
    +-+-+---+---+---+---+
    | 0 | 1 | 2 |...|N-1|
    |   |nil|   |...|nil|
    +-+-+---+-+-+---+---+
      |       |
      |       +------------------+
      |                          |
      v                          v
    +-+-+---+---+---+---+      +-+-+---+---+---+---+
    | 0 | 1 | 2 |...|N-1|      | 0 | 1 | 2 |...|N-1|
    |nil|nil|nil|...|nil|      |nil|   |nil|...|nil|
    +---+---+---+---+---+      +---+-+-+---+---+---+
                                     |
                                     |
                                     |
                                     v
                                   +-+--+
                                   |User|
                                   |Data|
                                   +----+
                              Index 2N+1

Accesses to elements in the sparse array take O(log n) time where n is the largest element. The base of the logarithm is SA_BLOCK_MAX, so for moderately small indices (e.g. NIDs), single level (constant time) access is achievable. Space usage is O(minimum(m, n log(n)) where m is the number of elements in the array.

Note: sparse arrays only include pointers to types. Thus, SPARSE_ARRAY_OF(char) can be used to store a string.