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avs_commons_config.h.in
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avs_commons_config.h.in
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/*
* Copyright 2024 AVSystem <[email protected]>
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#ifndef AVS_COMMONS_CONFIG_H
#define AVS_COMMONS_CONFIG_H
/**
* @file avs_commons_config.h
*
* avs_commons library configuration.
*
* The preferred way to compile avs_commons is to use CMake, in which case this
* file will be generated automatically by CMake.
*
* However, to provide compatibility with various build systems used especially
* by embedded platforms, it is alternatively supported to compile avs_commons
* by other means, in which case this file will need to be provided manually.
*
* In the repository, this file is provided as <c>avs_commons_config.h.in</c>,
* intended to be processed by CMake. If editing this file manually, please copy
* or rename it to <c>avs_commons_config.h</c> and for each of the
* <c>#cmakedefine</c> directives, please either replace it with regular
* <c>#define</c> to enable it, or comment it out to disable. You may also need
* to replace variables wrapped in <c>@</c> signs with concrete values. Please
* refer to the comments above each of the specific definition for details.
*
* If you are editing a file previously generated by CMake, these
* <c>#cmakedefine</c>s will be already replaced by either <c>#define</c> or
* commented out <c>#undef</c> directives.
*/
/**
* Options that describe capabilities of the build environment.
*
* NOTE: If you leave some of these macros undefined, even though the given
* feature is actually available in the system, avs_commons will attempt to use
* its own substitutes, which may be incompatible with the definition in the
* system and lead to undefined behaviour.
*/
/**@{*/
/**
* Is the target platform big-endian?
*
* If undefined, little-endian is assumed. Mixed-endian architectures are not
* supported.
*
* Affects <c>avs_convert_be*()</c> and <c>avs_[hn]to[hn]*()</c> calls in
* avs_utils and, by extension, avs_persistence.
*/
#cmakedefine AVS_COMMONS_BIG_ENDIAN
/**
* Is GNU __builtin_add_overflow() extension available?
*
* Affects time handling functions in avs_utils. If disabled, software overflow
* checking will be compiled. Note that this software overflow checking code
* relies on U2 representation of signed integers.
*/
#cmakedefine AVS_COMMONS_HAVE_BUILTIN_ADD_OVERFLOW
/**
* Is GNU __builtin_mul_overflow() extension available?
*
* Affects time handling functions in avs_utils. If disabled, software overflow
* checking will be compiled. Note that this software overflow checking code
* relies on U2 representation of signed integers.
*/
#cmakedefine AVS_COMMONS_HAVE_BUILTIN_MUL_OVERFLOW
/**
* Is net/if.h available in the system?
*
* NOTE: If the header is indeed available, but this option is not defined, the
* <c>IF_NAMESIZE</c> macro will be defined <strong>publicly by avs_commons
* headers</strong>, which may conflict with system definitions.
*/
#cmakedefine AVS_COMMONS_HAVE_NET_IF_H
/**
* Are GNU diagnostic pragmas (#pragma GCC diagnostic push/pop/ignored)
* available?
*
* If defined, those pragmas will be used to suppress compiler warnings for some
* code known to generate them and cannot be improved in a more robust way, e.g.
* for code that is known to generate warnings from within system headers.
*/
#cmakedefine AVS_COMMONS_HAVE_PRAGMA_DIAGNOSTIC
/**
* Are GNU visibility pragmas (#pragma GCC visibility push/pop) available?
*
* Meaningful mostly if avs_commons will be directly or indirectly linked into
* a shared library. Causes all symbols except those declared in public headers
* to be hidden, i.e. not exported outside the shared library. If not defined,
* default compiler visibility settings will be used, but you still may use
* compiler flags and linker version scripts to replicate this manually if
* needed.
*/
#cmakedefine AVS_COMMONS_HAVE_VISIBILITY
/**
* Specify an optional compatibility header that allows use of POSIX-specific
* code that is not compliant with POSIX enough to be compiled directly.
*
* This header, if specified, will be included only by the following components,
* which may be enabled or disabled depending on state of the referenced flags:
* - avs_compat_threading implementation based on POSIX Threads
* (@ref AVS_COMMONS_COMPAT_THREADING_WITH_PTHREAD)
* - default avs_net socket implementation
* (@ref AVS_COMMONS_NET_WITH_POSIX_AVS_SOCKET)
* - avs_unit (@ref AVS_COMMONS_WITH_AVS_UNIT)
* - default implementation of avs_time routines
* (@ref AVS_COMMONS_UTILS_WITH_POSIX_AVS_TIME)
*
* Compatibility headers for lwIP and Microsoft Windows are provided with the
* library (see the <c>compat</c> directory).
*
* If this macro is not defined, the afore-mentioned components, if enabled,
* will use system headers directly, assuming they are POSIX-compliant.
*
* If this macro is enabled, the specified file will be included through an
* <c>#include AVS_COMMONS_POSIX_COMPAT_HEADER</c> statement. Thus, if editing
* this file manually, <c>@AVS_COMMONS_POSIX_COMPAT_HEADER@</c> shall be
* replaced with a path to such file.
*/
#cmakedefine AVS_COMMONS_POSIX_COMPAT_HEADER "@AVS_COMMONS_POSIX_COMPAT_HEADER@"
/**
* Set if printf implementation doesn't support 64-bit format specifiers.
* If defined, custom implementation of conversion is used in
* @c AVS_UINT64_AS_STRING instead of using @c snprintf .
*/
#cmakedefine AVS_COMMONS_WITHOUT_64BIT_FORMAT_SPECIFIERS
/**
* Set if printf implementation doesn't support floating-point numbers.
* If defined, custom implementation of conversion is used in
* @c AVS_DOUBLE_AS_STRING instead of using @c snprintf . This might increase
* compatibility with some embedded libc implementations that do not provide
* this functionality.
*
* NOTE: In order to keep the custom implementation small in code size, it is
* not intended to be 100% accurate. Rounding errors may occur - according to
* empirical checks, they show up around the 16th significant decimal digit.
*/
#cmakedefine AVS_COMMONS_WITHOUT_FLOAT_FORMAT_SPECIFIERS
/**@}*/
/**
* Enable poisoning of unwanted symbols when compiling avs_commons.
*
* Requires a compiler that supports #pragma GCC poison.
*
* This is mostly useful during development, to ensure that avs_commons do not
* attempt to call functions considered harmful in this library, such as printf.
* This is not guaranteed to work as intended on every platform, e.g. on macOS
* it is known to generate false positives due to different dependencies between
* system headers.
*/
#cmakedefine AVS_COMMONS_WITH_POISONING
/**
* Options that control compilation of avs_commons components.
*
* Each of the configuration options below enables, if defined, one of the core
* components of the avs_commons library.
*
* NOTE: Enabling avs_unit will cause an object file with an implementation of
* main() to be generated.
*/
/**@{*/
#cmakedefine AVS_COMMONS_WITH_AVS_ALGORITHM
#cmakedefine AVS_COMMONS_WITH_AVS_BUFFER
#cmakedefine AVS_COMMONS_WITH_AVS_COMPAT_THREADING
#cmakedefine AVS_COMMONS_WITH_AVS_CRYPTO
#cmakedefine AVS_COMMONS_WITH_AVS_HTTP
#cmakedefine AVS_COMMONS_WITH_AVS_LIST
#cmakedefine AVS_COMMONS_WITH_AVS_LOG
#cmakedefine AVS_COMMONS_WITH_AVS_NET
#cmakedefine AVS_COMMONS_WITH_AVS_PERSISTENCE
#cmakedefine AVS_COMMONS_WITH_AVS_RBTREE
#cmakedefine AVS_COMMONS_WITH_AVS_SORTED_SET
#cmakedefine AVS_COMMONS_WITH_AVS_SCHED
#cmakedefine AVS_COMMONS_WITH_AVS_STREAM
#cmakedefine AVS_COMMONS_WITH_AVS_UNIT
#cmakedefine AVS_COMMONS_WITH_AVS_URL
#cmakedefine AVS_COMMONS_WITH_AVS_UTILS
#cmakedefine AVS_COMMONS_WITH_AVS_VECTOR
/**@}*/
/**
* Options that control compilation of avs_compat_threading implementations.
*
* If CMake is not used, in the typical scenario at most one of the following
* implementations may be enabled at the same time. If none is enabled, the
* relevant symbols will need to be provided by the user, if used.
*
* These are meaningful only if <c>AVS_COMMONS_WITH_AVS_COMPAT_THREADING</c> is
* defined.
*/
/**@{*/
/**
* Enable implementation based on spinlocks.
*
* This implementation is usually very inefficient, and requires C11 stdatomic.h
* header to be available.
*/
#cmakedefine AVS_COMMONS_COMPAT_THREADING_WITH_ATOMIC_SPINLOCK
/**
* Enable implementation based on the POSIX Threads library.
*
* This implementation is preferred over the spinlock-based one, but the POSIX
* Threads library is normally available only in UNIX-like environments.
*/
#cmakedefine AVS_COMMONS_COMPAT_THREADING_WITH_PTHREAD
/**
* Is the <c>pthread_condattr_setclock()</c> function available?
*
* This flag only makes sense when
* <c>AVS_COMMONS_COMPAT_THREADING_WITH_PTHREAD</c> is enabled.
*
* If this flag is disabled, or if <c>CLOCK_MONOTONIC</c> macro is not
* available, the <c>avs_condvar_wait()</c> will internally use the real-time
* clock instead of the monotonic clock. Time values will be converted so that
* this change does not affect API usage.
*/
#cmakedefine AVS_COMMONS_COMPAT_THREADING_PTHREAD_HAVE_PTHREAD_CONDATTR_SETCLOCK
/**@}*/
/**
* Options that control compilation of code depending on TLS backend library.
*
* If CMake is not used, in the typical scenario at most one of the following
* DTLS backends may be enabled at the same time. If none is enabled,
* functionalities that depends on cryptography will be disabled.
*
* Affects avs_crypto, avs_net, and avs_stream (for the MD5 implementation).
*
* mbed TLS is the main development backend, and is preferred as such. OpenSSL
* backend supports most functionality as well, but is not as thoroughly tested.
* TinyDTLS support is only rudimentary.
*/
/**@{*/
#cmakedefine AVS_COMMONS_WITH_MBEDTLS
#cmakedefine AVS_COMMONS_WITH_OPENSSL
#cmakedefine AVS_COMMONS_WITH_TINYDTLS
/**
* Enable support for custom TLS socket implementation.
*
* If enabled, the user needs to provide their own implementations of
* <c>_avs_net_create_ssl_socket()</c>, <c>_avs_net_create_dtls_socket()</c>,
* <c>_avs_net_initialize_global_ssl_state() and
* <c>_avs_net_cleanup_global_ssl_state()</c>.
*/
#cmakedefine AVS_COMMONS_WITH_CUSTOM_TLS
/**@}*/
/**
* Options related to avs_crypto.
*/
/**@{*/
/**
* Enable AEAD and HKDF support in avs_crypto. Requires MbedTLS in version at
* least 2.14.0, OpenSSL in version at least 1.1.0, or custom implementation in
* case of <c>AVS_COMMONS_WITH_CUSTOM_TLS</c>.
*/
#cmakedefine AVS_COMMONS_WITH_AVS_CRYPTO_ADVANCED_FEATURES
/**
* If the TLS backend is either mbed TLS or OpenSSL, enables APIs related to
* public-key cryptography.
*
* Public-key cryptography is not currently supported with TinyDTLS.
*
* It also enables support for X.509 certificates in avs_net, if that module is
* also enabled.
*/
#cmakedefine AVS_COMMONS_WITH_AVS_CRYPTO_PKI
/**
* If the TLS backend is either mbed TLS, OpenSSL or TinyDTLS, enables support
* of pre-shared key security.
*
* PSK is the only supported security mode for the TinyDTLS backend, so this
* option MUST be enabled to utilize it.
*
* It also enables support for pre-shared key security in avs_net, if that
* module is also enabled.
*/
#cmakedefine AVS_COMMONS_WITH_AVS_CRYPTO_PSK
/**
* Enables usage of Valgrind API to suppress some of the false positives
* generated by the OpenSSL backend.
*/
#cmakedefine AVS_COMMONS_WITH_AVS_CRYPTO_VALGRIND
/**
* Enables high-level support for hardware-based PKI security, i.e. loading,
* generating and managing key pairs and certificates via external engines.
*
* Requires @ref AVS_COMMONS_WITH_AVS_CRYPTO_PKI to be enabled.
*
* An actual implementation is required to use this feature. You may provide
* your own, or use one of the default ones that come with the HSM engine
* commercial feature (see @ref AVS_COMMONS_WITH_MBEDTLS_PKCS11_ENGINE,
* @ref AVS_COMMONS_WITH_MBEDTLS_PSA_ENGINE and
* @ref AVS_COMMONS_WITH_OPENSSL_PKCS11_ENGINE).
*
* The functions that need to be provided in case of a custom implementation:
* - <c>avs_crypto_pki_engine_certificate_rm()</c>
* - <c>avs_crypto_pki_engine_certificate_store()</c>
* - <c>avs_crypto_pki_engine_key_gen()</c>
* - <c>avs_crypto_pki_engine_key_rm()</c>
* - <c>avs_crypto_pki_engine_key_store()</c>
* - When targeting the Mbed TLS backend:
* - <c>_avs_crypto_mbedtls_engine_initialize_global_state()</c>
* - <c>_avs_crypto_mbedtls_engine_cleanup_global_state()</c>
* - <c>_avs_crypto_mbedtls_engine_append_cert()</c>
* - <c>_avs_crypto_mbedtls_engine_append_crl()</c>
* - <c>_avs_crypto_mbedtls_engine_load_private_key()</c>
* - When targeting the OpenSSL backend:
* - <c>_avs_crypto_openssl_engine_initialize_global_state()</c>
* - <c>_avs_crypto_openssl_engine_cleanup_global_state()</c>
* - <c>_avs_crypto_openssl_engine_load_certs()</c>
* - <c>_avs_crypto_openssl_engine_load_crls()</c>
* - <c>_avs_crypto_openssl_engine_load_private_key()</c>
*
* External PKI engines are NOT supported in the TinyDTLS backend.
*/
#cmakedefine AVS_COMMONS_WITH_AVS_CRYPTO_PKI_ENGINE
/**
* Enables high-level support for hardware-based PSK security, i.e. loading
* and managing PSK keys and identities via external engine.
*
* Requires @ref AVS_COMMONS_WITH_AVS_CRYPTO_PKI to be enabled.
*
* An actual implementation is required to use this feature. You may provide
* your own, or use the default PSA-based one that comes with the HSM engine
* commercial feature (see @ref AVS_COMMONS_WITH_MBEDTLS_PSA_ENGINE).
*
* The functions that need to be provided in case of a custom implementation:
* - <c>avs_crypto_psk_engine_identity_store()</c>
* - <c>avs_crypto_psk_engine_identity_rm()</c>
* - <c>avs_crypto_psk_engine_key_store()</c>
* - <c>avs_crypto_psk_engine_key_rm()</c>
* - When targeting the Mbed TLS backend:
* - <c>_avs_crypto_mbedtls_engine_initialize_global_state()</c>
* - <c>_avs_crypto_mbedtls_engine_cleanup_global_state()</c>
* - <c>_avs_crypto_mbedtls_engine_load_psk_key()</c>
*
* External PSK engines are NOT supported in the OpenSSL and TinyDTLS backend.
*/
#cmakedefine AVS_COMMONS_WITH_AVS_CRYPTO_PSK_ENGINE
/**
* Enables the default implementation of avs_crypto engine, based on Mbed TLS
* and PKCS#11.
*
* Requires @ref AVS_COMMONS_WITH_AVS_CRYPTO_PKI_ENGINE to be enabled.
*
* NOTE: Query string format for this engine is a subset of the PKCS#11 URI
* scheme (see RFC 7512), modelled after the format accepted by libp11 OpenSSL
* engine.
*
* NOTE: The unit tests for this feature depend on SoftHSM and pkcs11-tool.
* These must be installed for the tests to pass.
*
* IMPORTANT: Only available as part of the HSM support commercial feature.
* Ignored in the open source version.
*/
#cmakedefine AVS_COMMONS_WITH_MBEDTLS_PKCS11_ENGINE
/**
* Enables the default implementation of avs_crypto engine, based on Mbed TLS
* and Platform Security Architecture (PSA).
*
* Requires @ref AVS_COMMONS_WITH_AVS_CRYPTO_PKI_ENGINE or
* @ref AVS_COMMONS_WITH_AVS_CRYPTO_PSK_ENGINE to be enabled.
*
* NOTE: Query string format for this engine is:
*
* <pre>
* kid=<key_ID>[,lifetime=<lifetime>]|uid=<persistent_storage_UID>
* </pre>
*
* The values are parsed using strtoull() with base=0, so may be in decimal,
* 0-prefixed octal or 0x-prefixed hexadecimal. On key generation and
* certificate storage, the specified lifetime will be used, or lifetime 1
* (default persistent storage) will be used if not. On key or certificate use,
* the lifetime of the actual key will be verified if present on the query
* string and the key will be rejected if different.
*
* Certificates are stored as PSA_KEY_TYPE_RAW_DATA key entries containing
* X.509 DER data. Alternatively, the PSA Protected Storage API can be used if
* @ref AVS_COMMONS_WITH_MBEDTLS_PSA_ENGINE_PROTECTED_STORAGE is enabled, by
* using the <c>uid=...</c> syntax.
*
* IMPORTANT: Only available as part of the HSM support commercial feature.
* Ignored in the open source version.
*/
#cmakedefine AVS_COMMONS_WITH_MBEDTLS_PSA_ENGINE
/**
* Enables support for the PSA Protected Storage API in the PSA-based avs_crypto
* engine.
*
* Requires @ref AVS_COMMONS_WITH_MBEDTLS_PSA_ENGINE to be enabled.
*
* IMPORTANT: Only available as part of the HSM support commercial feature.
* Ignored in the open source version.
*/
#cmakedefine AVS_COMMONS_WITH_MBEDTLS_PSA_ENGINE_PROTECTED_STORAGE
/**
* Enables use of the <c>psa_generate_random()</c> function as the default
* random number generator when using the Mbed TLS crypto backend, instead of
* CTR-DRBG seeded by the Mbed TLS entropy pool.
*
* It's meaningful only when @ref AVS_COMMONS_WITH_MBEDTLS is enabled. However,
* it is independent from the above PSA engine settings.
*/
#cmakedefine AVS_COMMONS_WITH_MBEDTLS_PSA_RNG
/**
* Is the <c>dlsym()</c> function available?
*
* This is currently only used if @ref AVS_COMMONS_WITH_MBEDTLS_PKCS11_ENGINE is
* enabled. If enabled, the PKCS#11 module is loaded dynamically from a library
* specified by the <c>PKCS11_MODULE_PATH</c> environment variable. If disabled,
* a function with the following signature, realizing the PKCS#11
* <c>C_GetFunctionList</c> method, must be provided manually:
*
* <pre>
* CK_RV _avs_crypto_mbedtls_pkcs11_get_function_list(CK_FUNCTION_LIST_PTR_PTR);
* </pre>
*/
#cmakedefine AVS_COMMONS_HAVE_DLSYM
/**
* Enables the default implementation of avs_crypto engine, based on OpenSSL and
* PKCS#11.
*
* Requires @ref AVS_COMMONS_WITH_AVS_CRYPTO_PKI_ENGINE to be enabled.
*
* NOTE: Query string format for this engine is a subset of the PKCS#11 URI
* scheme (see RFC 7512), modelled after the format accepted by libp11 OpenSSL
* engine.
*
* NOTE: The unit tests for this feature depend on SoftHSM and pkcs11-tool.
* These must be installed for the tests to pass.
*
* IMPORTANT: Only available as part of the HSM support commercial feature.
* Ignored in the open source version.
*/
#cmakedefine AVS_COMMONS_WITH_OPENSSL_PKCS11_ENGINE
/**@}*/
/**
* Enable support for HTTP content compression in avs_http.
*
* Requires linking with zlib.
*/
#cmakedefine AVS_COMMONS_HTTP_WITH_ZLIB
/**
* Options related to avs_log and logging support within avs_commons.
*/
/**@{*/
/* clang-format off */
/**
* Size, in bytes, of the avs_log buffer.
*
* Log messages that would (including the level, module name and code location)
* otherwise be longer than this value minus one (for the terminating null
* character) will be truncated.
*
* NOTE: This macro MUST be defined if avs_log is enabled.
*
* If editing this file manually, <c>@AVS_COMMONS_LOG_MAX_LINE_LENGTH@</c> shall
* be replaced with a positive integer literal. The default value defined in
* CMake build scripts is 512.
*/
#cmakedefine AVS_COMMONS_LOG_MAX_LINE_LENGTH @AVS_COMMONS_LOG_MAX_LINE_LENGTH@
/* clang-format on */
/**
* Configures avs_log to use a synchronized global buffer instead of allocating
* a buffer on the stack when constructing log messages.
*
* Requires avs_compat_threading to be enabled.
*
* Enabling this option would reduce the stack space required to use avs_log, at
* the expense of global storage and the complexity of using a mutex.
*/
#cmakedefine AVS_COMMONS_LOG_USE_GLOBAL_BUFFER
/**
* Provides a default avs_log handler that prints log messages on stderr.
*
* Disabling this option will cause logs to be discarded by default, until a
* custom log handler is set using <c>avs_log_set_handler()</c>.
*/
#cmakedefine AVS_COMMONS_LOG_WITH_DEFAULT_HANDLER
/**
* Enables the "micro logs" feature.
*
* Replaces all occurrences of the <c>AVS_DISPOSABLE_LOG()</c> macro with single
* space strings. This is intended to reduce the size of the compiled code, by
* stripping it of almost all log string data.
*
* Note that this setting will propagate both to avs_commons components
* themselves (as all its internal logs make use of <c>AVS_DISPOSABLE_LOG()</c>)
* and the user code that uses it.
*/
#cmakedefine AVS_COMMONS_WITH_MICRO_LOGS
/**
* Enables logging inside avs_commons.
*
* Requires @ref AVS_COMMONS_WITH_AVS_LOG to be enabled.
*
* If this macro is not defined at avs_commons compile time, calls to avs_log
* will not be generated inside avs_commons components.
*/
#cmakedefine AVS_COMMONS_WITH_INTERNAL_LOGS
/**
* Enables TRACE-level logs inside avs_commons.
*
* Only meaningful if AVS_COMMONS_WITH_INTERNAL_LOGS is enabled.
*
* If this macro is not defined at avs_commons compile time, calls to avs_log
* with the level set to TRACE will not be generated inside avs_commons
* components.
*/
#cmakedefine AVS_COMMONS_WITH_INTERNAL_TRACE
/**
* Enables external implementation of logger subsystem with provided header.
*
* Default logger implementation can be found in avs_log_impl.h
*/
#cmakedefine AVS_COMMONS_WITH_EXTERNAL_LOGGER_HEADER "@AVS_COMMONS_WITH_EXTERNAL_LOGGER_HEADER@"
/**
* If specified, the process of checking if avs_log should be written out
* takes place in compile time.
*
* Specify an optional header with a list of modules for which log level
* is set. If a log level for specific module is not set, the DEFAULT level
* will be taken into account. Value of the default logging level is set to
* DEBUG, but can be overwritten in this header file with AVS_LOG_LEVEL_DEFAULT
* define. Messages with lower level than the one set will be removed during
* compile time. Possible values match @ref avs_log_level_t.
*
* That file should contain C preprocesor defines in the:
* - "#define AVS_LOG_LEVEL_FOR_MODULE_<Module> <Level>" format,
* where <Module> is the module name and <Level> is allowed logging level
* - "#define AVS_LOG_LEVEL_DEFAULT <Level>" format, where <Level> is the
* allowed logging level
*
* Example file content:
*
* <code>
* #ifndef AVS_COMMONS_EXTERNAL_LOG_LEVELS_H
* #define AVS_COMMONS_EXTERNAL_LOG_LEVELS_H
*
* // global log level value
* #define AVS_LOG_LEVEL_DEFAULT INFO
*
* //for "coap" messages only WARNING and ERROR messages will be present
* #define AVS_LOG_LEVEL_FOR_MODULE_coap WARNING
*
* //logs are disable for "net" module
* #define AVS_LOG_LEVEL_FOR_MODULE_net QUIET
*
* #endif
* </code>
*/
#cmakedefine AVS_COMMONS_WITH_EXTERNAL_LOG_LEVELS_HEADER "@AVS_COMMONS_WITH_EXTERNAL_LOG_LEVELS_HEADER@"
/**
* Disable log level check in runtime. Allows to save at least 1.3kB of memory.
*
* The macros avs_log_set_level and avs_log_set_default_level
* will not be available.
*
*/
#cmakedefine AVS_COMMONS_WITHOUT_LOG_CHECK_IN_RUNTIME
/**@}*/
/**
* Options related to avs_net.
*/
/**@{*/
/**
* Enables support for IPv4 connectivity.
*
* At least one of AVS_COMMONS_NET_WITH_IPV4 and AVS_COMMONS_NET_WITH_IPV6
* MUST be defined if avs_net is enabled.
*/
#cmakedefine AVS_COMMONS_NET_WITH_IPV4
/**
* Enables support for IPv6 connectivity.
*
* At least one of AVS_COMMONS_NET_WITH_IPV4 and AVS_COMMONS_NET_WITH_IPV6
* MUST be defined if avs_net is enabled.
*/
#cmakedefine AVS_COMMONS_NET_WITH_IPV6
/**
* If the TLS backend is set to OpenSSL, enables support for DTLS.
*
* DTLS is always enabled for the mbed TLS and TinyDTLS backends.
*/
#cmakedefine AVS_COMMONS_NET_WITH_DTLS
/**
* Enables debug logs generated by mbed TLS.
*
* An avs_log-backed handler, logging for the "mbedtls" module on the TRACE
* level, is installed using <c>mbedtls_ssl_conf_dbg()</c> for each (D)TLS
* socket created if this option is enabled.
*/
#cmakedefine AVS_COMMONS_NET_WITH_MBEDTLS_LOGS
/**
* Enables the default implementation of avs_net TCP and UDP sockets.
*
* Requires either a UNIX-like operating environment, or a compatibility layer
* with a high degree of compatibility with standard BSD sockets with an
* appropriate compatibility header (see @ref AVS_COMMONS_POSIX_COMPAT_HEADER) -
* lwIP and Winsock are currently supported for this scenario.
*/
#cmakedefine AVS_COMMONS_NET_WITH_POSIX_AVS_SOCKET
/**
* Enables support for logging socket communication to file.
*
* If this option is enabled, avs_net_socket_debug() can be used to enable
* logging all communication to a file called DEBUG.log. If disabled,
* avs_net_socket_debug() will always return an error.
*/
#cmakedefine AVS_COMMONS_NET_WITH_SOCKET_LOG
/**
* If the TLS backend is either mbed TLS or OpenSSL, enables support for (D)TLS
* session persistence.
*
* Session persistence is not currently supported for the TinyDTLS backend.
*/
#cmakedefine AVS_COMMONS_NET_WITH_TLS_SESSION_PERSISTENCE
/**@}*/
/**
* Options related to avs_net's default implementation of TCP and UDP sockets.
*
* These options make sense only when @ref AVS_COMMONS_NET_WITH_POSIX_AVS_SOCKET
* is enabled. They describe capabilities of the Unix-like environment in which
* the library is built.
*
* Note that if @ref AVS_COMMONS_POSIX_COMPAT_HEADER is defined, it might
* redefine these flags independently of the settings in this file.
*/
/**@{*/
/**
* Is the <c>gai_strerror()</c> function available?
*
* Enabling this flag will provide more detailed log messages in case that
* <c>getaddrinfo()</c> fails. If this flag is disabled, numeric error codes
* values will be logged.
*/
#cmakedefine AVS_COMMONS_NET_POSIX_AVS_SOCKET_HAVE_GAI_STRERROR
/**
* Is the <c>getifaddrs()</c> function available?
*
* Disabling this flag will cause <c>avs_net_socket_interface_name()</c> to use
* a less optimal implementation based on the <c>SIOCGIFCONF</c> ioctl.
*
* If <c>SIOCGIFCONF</c> is not defined, either, then
* <c>avs_net_socket_interface_name()</c> will always return an error.
*/
#cmakedefine AVS_COMMONS_NET_POSIX_AVS_SOCKET_HAVE_GETIFADDRS
/**
* Is the <c>getnameinfo()</c> function available?
*
* Disabling this flag will cause <c>avs_net_socket_receive_from()</c>,
* <c>avs_net_socket_accept()</c>,
* <c>avs_net_resolved_endpoint_get_host_port()</c>,
* <c>avs_net_resolved_endpoint_get_host()</c> and
* <c>avs_net_resolve_host_simple()</c> to use a custom reimplementation of
* <c>getnameinfo()</c> based on <c>inet_ntop()</c>.
*/
#cmakedefine AVS_COMMONS_NET_POSIX_AVS_SOCKET_HAVE_GETNAMEINFO
/**
* Is the <c>IN6_IS_ADDR_V4MAPPED</c> macro available and usable?
*
* Disabling this flag will cause a custom code that compares IPv6 addresses
* with the <c>::ffff:0.0.0.0/32</c> mask to be used instead.
*/
#cmakedefine AVS_COMMONS_NET_POSIX_AVS_SOCKET_HAVE_IN6_IS_ADDR_V4MAPPED
/**
* Should be defined if IPv4-mapped IPv6 addresses (<c>::ffff:0.0.0.0/32</c>)
* are <strong>NOT</strong> supported by the underlying platform.
*
* Enabling this flag will prevent avs_net from using IPv4-mapped IPv6 addresses
* and instead re-open and re-bind the socket if a connection to an IPv4 address
* is requested on a previously created IPv6 socket.
*
* This may result in otherwise redundant <c>socket()</c>, <c>bind()</c> and
* <c>close()</c> system calls to be performed, but may be necessary for
* interoperability with some platforms.
*/
#cmakedefine AVS_COMMONS_NET_POSIX_AVS_SOCKET_WITHOUT_IN6_V4MAPPED_SUPPORT
/**
* Is the <c>inet_ntop()</c> function available?
*
* Disabling this flag will cause an internal implementation of this function
* adapted from BIND 4.9.4 to be used instead.
*/
#cmakedefine AVS_COMMONS_NET_POSIX_AVS_SOCKET_HAVE_INET_NTOP
/**
* Is the <c>poll()</c> function available?
*
* Disabling this flag will cause a less robust code based on <c>select()</c> to
* be used instead.
*/
#cmakedefine AVS_COMMONS_NET_POSIX_AVS_SOCKET_HAVE_POLL
/**
* Is the <c>recvmsg()</c> function available?
*
* Disabling this flag will cause <c>recvfrom()</c> to be used instead. Note
* that for UDP sockets, this will cause false positives for datagram truncation
* detection (<c>AVS_EMSGSIZE</c>) to be reported when the received message is
* exactly the size of the buffer.
*/
#cmakedefine AVS_COMMONS_NET_POSIX_AVS_SOCKET_HAVE_RECVMSG
/**@}*/
/**
* Enable thread safety in avs_sched.
*
* Makes all scheduler accesses synchronized and thread-safe, at the cost of
* requiring avs_compat_threading to be enabled, and higher resource usage.
*/
#cmakedefine AVS_COMMONS_SCHED_THREAD_SAFE
/**
* Enable support for file I/O in avs_stream.
*
* Disabling this flag will cause the functions declared in
* <c>avs_stream_file.h</c> to not be defined.
*/
#cmakedefine AVS_COMMONS_STREAM_WITH_FILE
/**
* Enable usage of <c>backtrace()</c> and <c>backtrace_symbols()</c> when
* reporting assertion failures from avs_unit.
*
* Requires the afore-mentioned GNU-specific functions to be available.
*
* If this flag is disabled, stack traces will not be displayed with assertion
* failures.
*/
#cmakedefine AVS_COMMONS_UNIT_POSIX_HAVE_BACKTRACE
/**
* Options related to avs_utils.
*/
/**@{*/
/**
* Enable the default implementation of avs_time_real_now() and
* avs_time_monotonic_now().
*
* Requires an operating environment that supports a clock_gettime() call
* compatible with POSIX.
*/
#cmakedefine AVS_COMMONS_UTILS_WITH_POSIX_AVS_TIME
/**
* Enable the default implementation of avs_malloc(), avs_free(), avs_calloc()
* and avs_realloc() that forwards to system malloc(), free(), calloc() and
* realloc() calls.
*
* You might disable this option if for any reason you need to use a custom
* allocator.
*/
#cmakedefine AVS_COMMONS_UTILS_WITH_STANDARD_ALLOCATOR
/**
* Enable the alternate implementation of avs_malloc(), avs_free(), avs_calloc()
* and avs_realloc() that uses system malloc(), free() and realloc() calls, but
* includes additional fixup code that ensures proper alignment to
* <c>AVS_ALIGNOF(avs_max_align_t)</c> (usually 8 bytes on common platforms).
*
* <c>AVS_COMMONS_UTILS_WITH_STANDARD_ALLOCATOR</c> and
* <c>AVS_COMMONS_UTILS_WITH_ALIGNFIX_ALLOCATOR</c> cannot be enabled at the
* same time.
*
* NOTE: This implementation is only intended for platforms where the system
* allocator does not properly conform to the alignment requirements.
*
* It comes with an additional runtime costs:
*
* - <c>AVS_ALIGNOF(avs_max_align_t)</c> bytes (usually 8) of additional
* overhead for each allocated memory block
* - Additional memmove() for every realloc() that returned a block that is not
* properly aligned
* - avs_calloc() is implemented as avs_malloc() followed by an explicit
* memset(); this may be suboptimal on some platforms
*
* If these costs are unacceptable for you, you may want to consider fixing,
* replacing or reconfiguring your system allocator for conformance, or
* implementing a custom one instead.
*
* Please note that some code in avs_commons and dependent projects (e.g. Anjay)
* may include runtime assertions for proper memory alignment that will be
* triggered when using a non-conformant standard allocator. Such allocators are
* relatively common in embedded SDKs. This "alignfix" allocator is intended to
* work around these issues. On some platforms (e.g. x86) those alignment issues
* may not actually cause any problems - so you may want to consider disabling
* runtime assertions instead. Please carefully examine your target platform's
* alignment requirements and behavior of misaligned memory accesses (including
* 64-bit data types such as <c>int64_t</c> and <c>double</c>) before doing so.
*/
#cmakedefine AVS_COMMONS_UTILS_WITH_ALIGNFIX_ALLOCATOR
/**@}*/
#endif /* AVS_COMMONS_CONFIG_H */