Veres Lajos 79c44b4e30 Fix some typos 4 lat temu
..
aes 79c44b4e30 Fix some typos 4 lat temu
aria 25f2138b0a Reorganize private crypto header files 5 lat temu
asn1 00db8c60aa Update source files for pre-3.0 deprecation 4 lat temu
async 12a765a523 Explicitly test against NULL; do not use !p or similar 5 lat temu
bf ae4186b004 Fix header file include guard names 5 lat temu
bio 287e1a7eac bss_dgram.c: fix unaligned access 4 lat temu
bn 8736f95381 Improve the overflow handling in rsaz_512_sqr 4 lat temu
buffer dec95d7589 Rework how our providers are built 5 lat temu
camellia ae4186b004 Fix header file include guard names 5 lat temu
cast 706457b7bd Reorganize local header files 5 lat temu
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cmac f6dead1b72 [KDF] Add feedback-mode and CMAC support to KBKDF 5 lat temu
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conf c15faa8d5c Fix an uninitialised read in conf_def.c 4 lat temu
crmf ae4186b004 Fix header file include guard names 5 lat temu
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des 79c44b4e30 Fix some typos 4 lat temu
dh 00db8c60aa Update source files for pre-3.0 deprecation 4 lat temu
dsa 00db8c60aa Update source files for pre-3.0 deprecation 4 lat temu
dso 706457b7bd Reorganize local header files 5 lat temu
ec cff7d199e0 ECDSA: don't clear free memory after verify. 4 lat temu
engine 9bada854de Engine: Add NULL check. 4 lat temu
err 79c44b4e30 Fix some typos 4 lat temu
ess 25f2138b0a Reorganize private crypto header files 5 lat temu
evp 79c44b4e30 Fix some typos 4 lat temu
hmac 00db8c60aa Update source files for pre-3.0 deprecation 4 lat temu
idea 706457b7bd Reorganize local header files 5 lat temu
kdf 905b097fd5 Deprecate ERR_load_KDF_strings() 4 lat temu
lhash dec95d7589 Rework how our providers are built 5 lat temu
md2 4911f55362 Following the license change, modify the boilerplates in crypto/mdN/ 5 lat temu
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modes 64fd90fbe9 Fix missing Assembler defines 5 lat temu
objects 648b53b88e Fix long name of some Microsoft objects 5 lat temu
ocsp 12a765a523 Explicitly test against NULL; do not use !p or similar 5 lat temu
pem cb58d81e68 PROV SERIALIZER: add common functionality to serialize keys 4 lat temu
perlasm 34ab13b7d8 crypto/perlasm/ppc-xlate.pl: add linux64v2 flavour 4 lat temu
pkcs12 00db8c60aa Update source files for pre-3.0 deprecation 4 lat temu
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rand 79c44b4e30 Fix some typos 4 lat temu
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ripemd 64fd90fbe9 Fix missing Assembler defines 5 lat temu
rsa 79c44b4e30 Fix some typos 4 lat temu
seed ae4186b004 Fix header file include guard names 5 lat temu
serializer 79c44b4e30 Fix some typos 4 lat temu
sha 0969e2592e Move U64 macro from sha.h to sha512.c 4 lat temu
siphash 25f2138b0a Reorganize private crypto header files 5 lat temu
sm2 25f2138b0a Reorganize private crypto header files 5 lat temu
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srp 00db8c60aa Update source files for pre-3.0 deprecation 4 lat temu
stack dec95d7589 Rework how our providers are built 5 lat temu
store 2897b00905 OSSL_STORE: add tracing 4 lat temu
ts 1af26e53bc Fix typo and create compatibility macro 5 lat temu
txt_db 0e9725bcb9 Following the license change, modify the boilerplates in crypto/ 5 lat temu
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whrlpool 64fd90fbe9 Fix missing Assembler defines 5 lat temu
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armcap.c 5f40dd158c crypto/armcap.c, crypto/ppccap.c: stricter use of getauxval() 5 lat temu
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asn1_dsa.c 79c44b4e30 Fix some typos 4 lat temu
bsearch.c 5c3f1e34b5 ossl_bsearch(): New generic internal binary search utility function 5 lat temu
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core_algorithm.c 695d195bbb Replumbing: make it possible for providers to specify multiple names 5 lat temu
core_fetch.c 36fa4d8a0d CORE: pass the full algorithm definition to the method constructor 4 lat temu
core_namemap.c 3d83c73536 CORE: ossl_namemap_add_names(): new function to add multiple names 4 lat temu
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provider.c dca97d0062 Rename provider and core get_param_types functions 5 lat temu
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README.sparse_array

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.